ZH

RU

ES

High temperature three point bending

High temperature three point bending, Total:292 items.

In the international standard classification, High temperature three point bending involves: Fibre optic communications, Materials for aerospace construction, Ceramics, Glass, Plastics, Farming and forestry, Reinforced plastics, Paper and board, Adhesives, Testing of metals, Rubber and plastics products, Inorganic chemicals, Refractories, Electrical and electronic testing, Products of the textile industry, Waxes, bituminous materials and other petroleum products, Paints and varnishes, Construction materials, Products of the chemical industry, Pipeline components and pipelines, Medical equipment, Valves, Road vehicle systems, Insulating materials, Mechanical testing, On-board equipment and instruments, Aerospace electric equipment and systems, Wood-based panels, Materials for the reinforcement of composites, Surface treatment and coating, Raw materials for rubber and plastics, Mechanical structures for electronic equipment.


American National Standards Institute (ANSI), High temperature three point bending

British Standards Institution (BSI), High temperature three point bending

  • BS EN 2746:1998 Glass fibre reinforced plastics - Flexural test - Three point bend method
  • 19/30375027 DC BS ISO 23242. Fine ceramics (advanced ceramics, advanced technical ceramics). Test method for flexural strength of monolithic ceramic thin plates at room temperature by three-point or four-point bending
  • BS ISO 11093-7:2011 Paper and board. Testing of cores. Determination of flexural modulus by the three-point method
  • BS ISO 5628:2012 Paper and board. Determination of bending stiffness. General principles for two-point, three-point and four-point methods
  • BS ISO 23242:2020 Fine ceramics (advanced ceramics, advanced technical ceramics). Test method for flexural strength of monolithic ceramic thin plates at room temperature by three-point or four-point bending
  • BS EN ISO 899-2:2003+A1:2015 Plastics. Determination of creep behaviour. Flexural creep by three-point loading
  • BS ISO 11093-6:2005 Paper and board. Testing of cores - Determination of bending strength by the three-point method
  • BS PD CEN/TS 15963:2014 Bitumen and bituminous binders. Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • BS DD CEN/TS 15963:2010 Bitumen and bituminous binders - Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • BS EN 658-5:2003 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Determination of interlaminar shear strength by short span bend test (three points)
  • BS EN 658-5:2002 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Determination of interlaminar shear strength by short span bend test (three points)
  • BS ISO 10619-3:2011 Rubber and plastics hoses and tubing. Measurement of flexibility and stiffness. Bending tests at high and low temperatures
  • DD ENV 1966-1996 Structural adhesives. Characterization of a surface by measuring adhesion by means of the three point bending method
  • BS 2782-10 Method 1005:1977 Methods of testing plastics. Glass reinforced plastics. Determination of flexural properties. Three point method
  • BS ISO 5628:2019 Tracked Changes. Paper and board. Determination of bending stiffness. General principles for two-point, three-point and four-point methods
  • 23/30449747 DC BS EN ISO 899-2. Plastics. Determination of creep behaviour - Part 2. Flexural creep by three-point loading
  • BS EN 658-3:2002 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Determination of flexural strength
  • BS EN 1966:2002 Structural adhesives - Characterisation of a surface by measuring adhesion by means of the three point bending method
  • BS EN 1966:2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method
  • BS EN 3745-405:2012 Aerospace series. Fibres and cables, optical, aircraft use. Test methods. Low/High temperature bend test
  • BS ISO 28704:2011 Fine ceramics (advanced ceramics, advanced technical ceramics). Test method for cyclic bending fatigue of porous ceramics at room temperature
  • BS EN 843-1:2007 Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Determination of flexural strength
  • 20/30382553 DC BS ISO 23486. Metallic and other inorganic coatings. Measurement of Young’s modulus of thermal barrier coatings at elevated temperature by flexural resonance method
  • BS EN 843-1:2006 Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 1: Determination of flexural strength
  • BS ISO 23486:2021 Metallic and other inorganic coatings. Measurement of Young's modulus of thermal barrier coatings at elevated temperature by flexural resonance method
  • 15/30326422 DC BS ISO 14704. Fine ceramics (advanced ceramics, advanced technical ceramics). Test method for flexural strength of monolithic ceramics at room temperature
  • BS EN ISO 18756:2006 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method

FI-SFS, High temperature three point bending

International Organization for Standardization (ISO), High temperature three point bending

  • ISO 23242:2020 Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for flexural strength of monolithic ceramic thin plates at room temperature by three-point or four-point bending
  • ISO 6602:1985 Plastics; Determination of flexural creep by three-point loading
  • ISO 5628:2019 Paper and board — Determination of bending stiffness — General principles for two-point, three-point and four-point methods
  • ISO 5628:2012 Paper and board - Determination of bending stiffness - General principles for two-point, three-point and four-point methods
  • ISO/DIS 899-2:1968 Plastics — Determination of creep behaviour — Part 2: Flexural creep by three-point loading
  • ISO 815:1972 Vulcanized rubbers; Determination of compression set under constant deflection at normal and high temperatures
  • ISO 899-2:2003/Amd 1:2015 Plastics — Determination of creep behaviour — Part 2: Flexural creep by three-point loading — Amendment 1
  • ISO 10619-3:2011 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures
  • ISO 17565:2003 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for flexural strength of monolithic ceramics at elevated temperature
  • ISO 14704:2000 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for flexural strength of monolithic ceramics at room temperature
  • ISO 28704:2011 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for cyclic bending fatigue of porous ceramics at room temperature
  • ISO 22214:2006 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for cyclic bending fatigue of monolithic ceramics at room temperature
  • ISO 23486:2021 Metallic and other inorganic coatings - Measurement of Young's modulus of thermal barrier coatings at elevated temperature by flexural resonance method
  • ISO 14704:2000/Cor 1:2004 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for flexural strength of monolithic ceramics at room temperature; Technical Corrigendum 1
  • ISO 18756:2003 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method
  • ISO 17167:2018 Fine ceramics (advanced ceramics, advanced technical ceramics) — Mechanical properties of monolithic ceramics at room temperature — Determination of flexural strength by the ring-on-ring test

German Institute for Standardization, High temperature three point bending

  • DIN EN 2746:1998-10 Aerospace series - Glass fibre reinforced plastics - Flexural test, three point bend method; German version EN 2746:1998
  • DIN 51902:1997 Testing of carbon materials - Determination of flexural strength by three point method - Solid matters
  • DIN EN 2746:1998 Aerospace series - Glass fibre reinforced plastics - Flexural test, three point bend method; German version EN 2746:1998
  • DIN 51902:2020 Testing of carbonaceous materials - Determination of flexural strength by three point method - Solid materials
  • DIN ISO 11093-6:2005-09 Paper and board - Testing of cores - Part 6: Determination of bending strength by the three-point method (ISO 11093-6:2005)
  • DIN 51902:2020-12 Testing of carbonaceous materials - Determination of flexural strength by three point method - Solid materials
  • DIN EN ISO 899-2:2003 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO 899-2:2003); German version EN ISO 899-2:2003
  • DIN EN ISO 899-2:2015-06 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO 899-2:2003 + Amd.1:2015); German version EN ISO 899-2:2003 + A1:2015 / Note: To be replaced by DIN EN ISO 899-2 (2023-03) (in preparation).
  • DIN EN 1966:2009-07 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method; German version EN 1966:2009
  • DIN EN 12100:1997 Plastics piping systems - Polyethylene (PE) valves - Test method for the resistance to bending between supports; German version EN 12100:1997
  • DIN ISO 11093-7:2012-10 Paper and board - Testing of cores - Part 7: Determination of flexural modulus by the three-point method (ISO 11093-7:2011)
  • DIN SPEC 1026:2010 Bitumen and bituminous binders - Determination of the fracture toughness temperature by a three point bending test on a notched specimen; German version CEN/TS 15963:2010
  • DIN EN ISO 899-2:2023-03 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO/DIS 899-2:2023); German and English version prEN ISO 899-2:2023 / Note: Date of issue 2023-02-03*Intended as replacement for DIN EN ISO 899-2 (2015-06).
  • DIN EN 1966:2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method; English version of DIN EN 1966:2009-07
  • DIN EN 658-5:2003-03 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of interlaminar shear strength by short span bend test (three-points); German version EN 658-5:2002
  • DIN EN ISO 10619-3:2012-03 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures (ISO 10619-3:2011); German version EN ISO 10619-3:2011
  • DIN EN 60191-6-19:2010 Mechanical standardization of semiconductor devices - Part 6-19: Measurement methods of the package warpage at elevated temperature and the maximum permissible warpage (IEC 60191-6-19:2010); German version EN 60191-6-19:2010
  • DIN EN ISO 10619-3:2012 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures (ISO 10619-3:2011); German version EN ISO 10619-3:2011
  • DIN EN 3745-405:2012-10 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: Low/high temperature bend test; German and English version EN 3745-405:2012
  • DIN EN 820-4:2013-01 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures; German version EN 820-4:2009
  • DIN EN ISO 18756:2005 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method (ISO 18756:2003); German version EN ISO 18756:2005
  • DIN 53424:1978 Testing of Rigid Cellular Materials; Determination of Dimensional Stability at Elevated Temperatures with Flexural Load and with Compressive Load
  • DIN EN 12789:2003-01 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under air at atmospheric pressure - Determination of flexural strength; German version EN 12789:2002
  • DIN EN 12788:2005-11 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under inert atmosphere - Determination of flexural strength; German version EN 12788:2005
  • DIN EN 820-4:2013 Advanced technical ceramics.Thermomechanical properties of monolithic ceramics.Part 4: Determination of flexural creep deformation at elevated temperatures; German version EN 820-4:2009
  • DIN EN 820-4:2009 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures; English version of DIN EN 820-4:2009-10
  • DIN EN 820-1:2003-01 Advanced technical ceramics - Methods of testing monolithic ceramics; Thermo-mechanical properties - Part 1: Determination of flexural strength at elevated temperatures; German version EN 820-1:2002

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会, High temperature three point bending

  • GB/T 34171-2017 Test method for flexural property of thin and ultrathin glass—Three-point bending method
  • GB/T 33099-2016 Test methods of stiffness for dipped reinforcing material—Three-point bending
  • GB/T 5565.3-2017 Rubber and plastics hoses and tubing—Measurement of flexibility and stiffness—Part 3:Bending tests at high and low temperatures

American Society for Testing and Materials (ASTM), High temperature three point bending

  • ASTM E2092-00 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM E2092-04 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM E2092-03 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM E2092-18 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM E2092-18a Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM D5023-01 Standard Test Method for Measuring the Dynamic Mechanical Properties: In Flexure (Three-Point Bending)
  • ASTM D5023-07 Standard Test Method for Plastics: Dynamic Mechanical Properties: In Flexure (Three-Point Bending)
  • ASTM E2092-13 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM E2092-23 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM D5023-15 Standard Test Method for Plastics: Dynamic Mechanical Properties: In Flexure (Three-Point Bending)
  • ASTM E2092-09 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • ASTM D8058-19 Standard Test Method for Determining the Flexural Strength of a Geosynthetic Cementitious Composite Mat (GCCM) Using the Three-Point Bending Test
  • ASTM D7972-14(2020) Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Three-Point Loading at Room Temperature
  • ASTM D8058-23 Standard Test Method for Determining the Flexural Strength of a Geosynthetic Cementitious Composite Mat (GCCM) Using the Three-Point Bending Test
  • ASTM F2606-08 Standard Guide for Three-Point Bending of Balloon Expandable Vascular Stents and Stent Systems
  • ASTM F2606-08(2014) Standard Guide for Three-Point Bending of Balloon Expandable Vascular Stents and Stent Systems
  • ASTM F2606-08(2021) Standard Guide for Three-Point Bending of Balloon-Expandable Vascular Stents and Stent Systems
  • ASTM C1161-02c(2008) Standard Test Method for Flexural Strength of Advanced Ceramics at Ambient Temperature
  • ASTM C78/C78M-10 Standard Test Method for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading)
  • ASTM C78/C78M-10e1 Standard Test Method for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading)
  • ASTM D5023-99 Standard Test Method for Measuring the Dynamic Mechanical Properties: In Flexure (Three-Point Bending)
  • ASTM C78/C78M-22 Standard Test Method for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading)
  • ASTM C78/C78M-15 Standard Test Method for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading)
  • ASTM C1609/C1609M-19 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-05 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-06 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-07 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-19a Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-12 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C1609/C1609M-10 Standard Test Method for Flexural Performance of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading)
  • ASTM C947-03 Standard Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced Concrete (Using Simple Beam With Third-Point Loading)
  • ASTM C947-99 Standard Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced Concrete (Using Simple Beam With Third-Point Loading)
  • ASTM C1684-18(2023) Standard Test Method for Flexural Strength of Advanced Ceramics at Ambient Temperature—Cylindrical Rod Strength
  • ASTM D8458-22 Standard Test Method for Evaluation of Fatigue Performance of Asphalt Mixtures Using the Three-Point Bending Cylinder (3PBC) Test
  • ASTM D8058-17 Standard Test Method for Determining the Flexural Strength of a Geosynthetic Cementitious Composite Mat (GCCM) Using the Three-Point Bending Test
  • ASTM D8058-17e1 Standard Test Method for Determining the Flexural Strength of a Geosynthetic Cementitious Composite Mat (GCCM) Using the Three-Point Bending Test
  • ASTM D5516-17 Standard Test Method for Evaluating the Flexural Properties of Fire-Retardant Treated Softwood Plywood Exposed to Elevated Temperatures
  • ASTM D5516-18 Standard Test Method for Evaluating the Flexural Properties of Fire-Retardant Treated Softwood Plywood Exposed to Elevated Temperatures
  • ASTM D5516-09 Standard Test Method for Evaluating the Flexural Properties of Fire-Retardant Treated Softwood Plywood Exposed to Elevated Temperatures
  • ASTM E2769-13 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM E2769-15 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM E2769-16 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM E2769-18 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM E2769-22 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM E2769-11 Standard Test Method for Elastic Modulus by Thermomechanical Analysis Using Three-Point Bending and Controlled Rate of Loading
  • ASTM C651-91(2005)e1 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C651-91(2010)e1 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C651-20 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C651-11 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C651-13 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C651-15 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Four-Point Loading at Room Temperature
  • ASTM C1465-08(2019) Standard Test Method for Determination of Slow Crack Growth Parameters of Advanced Ceramics by Constant Stress-Rate Flexural Testing at Elevated Temperatures
  • ASTM C1899-21 Standard Test Method for Flexural Strength of Continuous Fiber-Reinforced Advanced Ceramic Tubular Test Specimens at Ambient Temperature
  • ASTM C1834-16 Standard Test Method for Determination of Slow Crack Growth Parameters of Advanced Ceramics by Constant Stress Flexural Testing (Stress Rupture) at Elevated Temperatures
  • ASTM D5934-96 Standard Test Method for Determination of Modulus of Elasticity for Rigid and Semi-Rigid Plastic Specimens by Controlled Rate of Loading Using Three-Point Bending
  • ASTM C947-03(2016) Standard Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced Concrete (Using Simple Beam With Third-Point Loading)
  • ASTM C1018-97 Standard Test Method for Flexural Toughness and First-Crack Strength of Fiber-Reinforced Concrete (Using Beam With Third-Point Loading) (Withdrawn 2006)
  • ASTM D5516-03 Standard Test Method for Evaluating the Flexural Properties of Fire-Retardant Treated Softwood Plywood Exposed to Elevated Temperatures
  • ASTM C947-03(2023) Standard Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced Concrete (Using Simple Beam With Third-Point Loading)
  • ASTM D7972-14 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Three-Point Loading at Room Temperature
  • ASTM D5934-02 Standard Test Method for Determination of Modulus of Elasticity for Rigid and Semi-Rigid Plastic Specimens by Controlled Rate of Loading Using Three-Point Bending
  • ASTM C1368-00 Standard Test Method for Determination of Slow Crack Growth Parameters of Advanced Ceramics by Constant Stress-Rate Flexural Testing at Ambient Temperature
  • ASTM C1576-05(2017) Standard Test Method for Determination of Slow Crack Growth Parameters of Advanced Ceramics by Constant Stress Flexural Testing (Stress Rupture) at Ambient Temperature

AENOR, High temperature three point bending

  • UNE-EN 2746:1999 AEROSPACE SERIES. GLASS FIBRE REINFORCED PLASTICS. FLEXURAL TEST. THREE POINT BEND METHOD.
  • UNE-EN 1966:2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method
  • UNE-EN ISO 899-2:2003 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO 899-2:2003)
  • UNE-EN ISO 899-2:2003/A1:2015 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading - Amendment 1 (ISO 899-2:2003/Amd 1:2015)

RU-GOST R, High temperature three point bending

  • GOST 34368.2-2017 Plastics. Method of determination of flexural creep by three-point loading
  • GOST 9454-1978 Metals. Method for testing the impact strength at low, room and high temperature
  • GOST 25.604-1982 Design calculation and strength testings. Methods of mechanical testing of polymeric composite materials. Test for bending properties at normal, elevated and low temperatures

TIA - Telecommunications Industry Association, High temperature three point bending

Association Francaise de Normalisation, High temperature three point bending

  • NF T51-120-3:1995 Plastiques et composites - Détermination des propriétés de fatigue en flexion - - Partie 3 : essai en flexion trois points sur éprouvettes non encastrées.
  • XP CEN/TS 15963:2014 Bitumes et liants bitumineux - Détermination de la température de résistance à la fissuration par un essai de flexion 3 points sur un barreau entaillé
  • NF Q03-127:2012 Paper and board - Determination of bending stiffness - General principles for two-point, three-point and four-point methods.
  • XP T66-078*XP CEN/TS 15963:2014 Bitumen and bituminous binders - Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • NF T30-010:1992 Paints and varnishes. Evaluation of adhesion or cohesion. Three point bending method.
  • NF EN ISO 899-2:2003 Plastiques - Détermination du comportement au fluage - Partie 2 : fluage en flexion par mise en charge en trois points
  • NF EN 1966:2009 Adhésifs structuraux - Caractérisation d'une surface par mesure de l'adhérence au moyen de la méthode de la flexion en trois points
  • NF T76-143*NF EN 1966:2009 Structural adhesives - Characterisation of a surface by measuring adhesion by means of the three point bending method.
  • NF T47-203-3*NF EN ISO 10619-3:2012 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3 : bending tests at high and low temperatures.
  • NF T51-103-2/A1*NF EN ISO 899-2/A1:2015 Plastics - Determination of creep behaviour - Part 2 : flexural creep by three-point loading - Amendment 1
  • NF EN 658-5:2003 Céramiques techniques avancées - Propriétés mécaniques des céramiques composites à température ambiante - Partie 5 : détermination de la résistance au cisaillement interlaminaire par essai de flexion sur appuis rapprochés (trois points)
  • NF EN ISO 899-2/A1:2015 Plastiques - Détermination du comportement au fluage - Partie 2 : fluage en flexion par mise en charge en trois points - Amendement 1
  • NF EN 3745-405:2013 Série aérospatiale - Fibres et câbles optiques à usage aéronautique - Méthodes d'essais - Partie 405 : essai de courbure aux températures basse/haute
  • NF L52-400-405*NF EN 3745-405:2013 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: low/High temperature bend test
  • NF EN ISO 10619-3:2012 Tuyaux et tubes en caoutchouc et en plastique - Mesurage de la flexibilité et de la rigidité - Partie 3 : essais de courbure à des températures basses et élevées
  • NF B43-205*NF EN 658-5:2003 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5 : determination of interlaminar shear strength by short span bend test (three points).
  • NF EN 12789:2003 Céramiques techniques avancées - Propriétés mécaniques des céramiques composites à haute température sous air à pression atmosphérique - Détermination de la résistance en flexion
  • NF EN 12788:2006 Céramiques techniques avancées - Propriétés mécaniques des céramiques composites à haute température sous atmosphère inerte - Détermination de la résistance en flexion
  • NF EN 820-4:2009 Céramiques techniques avancées - Propriétés thermomécaniques des céramiques monolithiques - Partie 4 : détermination de la déformation par fluage en flexion, à températures élevées
  • NF B41-217*NF EN ISO 18756:2005 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method.
  • NF EN 820-1:2003 Céramiques techniques avancées - Méthode d'essai des céramiques monolithiques - Propriétés thermomécaniques - Partie 1 : détermination de la résistance à la flexion à températures élevées
  • NF EN 61063:2003 Céramiques techniques avancées - Méthode d'essai des céramiques monolithiques - Propriétés thermomécaniques - Partie 1 : détermination de la résistance à la flexion à températures élevées
  • NF EN 1186-13:2003 Céramiques techniques avancées - Méthode d'essai des céramiques monolithiques - Propriétés thermomécaniques - Partie 1 : détermination de la résistance à la flexion à températures élevées
  • XP CEN/TS 14234:2003 Céramiques techniques avancées - Méthode d'essai des céramiques monolithiques - Propriétés thermomécaniques - Partie 1 : détermination de la résistance à la flexion à températures élevées

European Committee for Standardization (CEN), High temperature three point bending

  • EN 2746:1998 Aerospace series - Glass fibre reinforced plastics - Flexural test - Three point bend method
  • EN 63:1977 Glass Reinforced Plastics: Determination of Flexural Properties; Three Point Method
  • EN 1966:2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method
  • DD ENV 658-5-1993 Advanced technical ceramics; mechanical properties of ceramic composites at room temperature; part 5: determination of shear strength by short span bend test (three-point)
  • PD CEN/TS 15963:2014 Bitumen and bituminous binders - Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • EN ISO 899-2:1996 Plastics - Determination of Creep Behaviour - Part 2: Flexural Creep by Three-Point Loading ISO 899-2: 1993
  • EN 12100:1997 Plastics piping systems - Polyethylene (PE) valves - Test method for resistance to bending between supports
  • EN ISO 10619-3:2011 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures (ISO 10619-3:2011)
  • EN ISO 899-2:2003 Plastics - Determination of Creep Behaviour - Part 2: Flexural Creep by Three-Point Loading ISO 899-2: 2003
  • prEN ISO 899-2 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO/DIS 899-2:2023)
  • EN 658-5:2002 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of interlaminar shear strength by short span bend test (three points)
  • EN ISO 899-2:2003/A1:2015 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading - Amendment 1 (ISO 899-2:2003/Amd 1:2015)
  • DD ENV 820-1-1993 Advanced Technical Ceramics - Monolithic Ceramics - Thermomechanical Properties - Part 1: Determination of Flexural Strength at Elevated Temperatures
  • EN 1966:2002 Structural adhesives Characterisation of a surface by measuring adhesion by means of the three point bending method Supersedes ENV 1966: 1995
  • EN 3745-405:2012 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: Low/High temperature bend test
  • EN 820-4:2009 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures
  • DD ENV 12789-1998 Advanced Technical Ceramics - Mechanical Properties of Ceramic Composites at High Temperature under Air at Atmospheric Pressure - Determination of Flexural Strength

Danish Standards Foundation, High temperature three point bending

  • DS/EN 2746:1999 Aerospace series - Glass fibre reinforced plastics - Flexural test - Three point bend method
  • DS/CEN/TS 15963:2010 Bitumen and bituminous binders - Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • DS/EN 1966:2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method
  • DS/ENV 658-5:1993 Advanced technical ceramic. Mechanical properties of ceramic composites at room temperature. Part 5: Determination of shear strength by short span bend test (three-point)
  • DS/EN ISO 899-2:2003 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading
  • DS/EN 658-5:2003 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of interlaminar shear strength by short span bend test (three points)
  • DS/EN 3745-405:2012 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: Low/High temperature bend test
  • DS/EN 820-4:2009 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures
  • DS/EN ISO 10619-3:2012 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures
  • DS/EN 820-1:2003 Advanced technical ceramics - Methods of testing monolithic ceramics - Thermomechanical properties - Part 1: Determination of flexural strength at elevated temperatures
  • DS/ISO 23486:2021 Metallic and other inorganic coatings – Measurement of Young's modulus of thermal barrier coatings at elevated temperature by flexural resonance method
  • DS/EN ISO 18756:2005 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method
  • DS/EN 12788:2005 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under inert atmosphere - Determination of flexural strength
  • DS/EN 12789:2003 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under air at atmospheric pressure - Determination of flexural strength

Lithuanian Standards Office , High temperature three point bending

  • LST EN 2746-2001 Aerospace series - Glass fibre reinforced plastics - Flexural test - Three point bend method
  • LST EN 1966-2009 Structural adhesives - Characterization of a surface by measuring adhesion by means of the three point bending method
  • LST EN ISO 899-2:2003 Plastics - Determination of creep behaviour - Part 2: Flexural creep by three-point loading (ISO 899-2:2003)
  • LST EN 658-5-2003 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of interlaminar shear strength by short span bend test (three points)
  • LST EN 3745-405-2012 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: Low/High temperature bend test
  • LST EN 820-4-2009 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures
  • LST EN 820-1-2003 Advanced technical ceramics - Methods of testing monolithic ceramics - Thermonechanical properties - Part 1: Determination of flexural strength at elevated temperatures
  • LST EN 12789-2003 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under air at atmospheric pressure - Determination of flexural strength
  • LST EN 12788-2005 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under inert atmosphere - Determination of flexural strength
  • LST EN ISO 10619-3:2012 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures (ISO 10619-3:2011)
  • LST EN ISO 18756:2005 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method (ISO 18756:2003)

(U.S.) Telecommunications Industries Association , High temperature three point bending

IPC - Association Connecting Electronics Industries, High temperature three point bending

AT-ON, High temperature three point bending

  • ONORM EN 63-1979 Glass reinforced plastics. Determination of flexural properties. Three point method.
  • ONORM ENV 658-5-1993 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of shear strength by short span bend test (three-point)

Korean Agency for Technology and Standards (KATS), High temperature three point bending

  • KS M ISO 14679-2007(2017) Adhesives-Measurement of adhesion characteristics by a three-point bending method
  • KS M ISO 14679-2007(2022) Adhesives-Measurement of adhesion characteristics by a three-point bending method
  • KS M ISO 14679:2007 Adhesives-Measurement of adhesion characteristics by a three-point bending method
  • KS M ISO 899-2-2016(2021) Plastics-Determination of creep behavior-Part 2:Flexural creep by three-point loading
  • KS M ISO 11093-7:2020 Paper and board — Testing of cores — Part 7: Determination of flexural modulus by the three-point method
  • KS M ISO 11093-6:2022 Paper and board — Testing of cores — Part 6: Determination of bending strength by the three-point method
  • KS M ISO 11093-7:2014 Paper and board — Testing of cores — Part 7: Determination of flexural modulus by the three-point method
  • KS M ISO 11093-6:2016 Paper and board - Testing of cores - Part 6 : Determination of bending strength by the three-point method
  • KS L ISO 17565-2006(2021) Fine ceramics(advanced ceramics, advanced technical ceramics)-Test method for flexural strength of monolithic ceramics at elevated temperature
  • KS L ISO 17565:2006 Fine ceramics(advanced ceramics, advanced technical ceramics)-Test method for flexural strength of monolithic ceramics at elevated temperature
  • KS M ISO 11093-7:2008 Paper and board-Testing of cores-Part 7:Determination of flexural modulus by the three-point method
  • KS M ISO 10619-3:2014 Rubber and plastics hoses and tubing — Measurement of flexibility and stiffness — Part 3: Bending tests at high and low temperatures
  • KS M ISO 10619-3-2014(2019) Rubber and plastics hoses and tubing — Measurement of flexibility and stiffness — Part 3: Bending tests at high and low temperatures
  • KS M ISO 12986-1-2004(2009) Carbonaceous materials used in the production of aluminium-Prebaked anodes and cathode blocks-Part 1:Determination of bending/shear strength by a three-point method
  • KS L ISO 18756-2006(2016) Fine ceramics(advanced ceramics, advanced technical ceramics)-Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure(SCF) method
  • KS L ISO 18756-2006(2021) Fine ceramics(advanced ceramics, advanced technical ceramics)-Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure(SCF) method
  • KS L ISO 18756:2006 Fine ceramics(advanced ceramics, advanced technical ceramics)-Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure(SCF) method

Taiwan Provincial Standard of the People's Republic of China, High temperature three point bending

  • CNS 12703-1990 Method of Test for Flexural Strength (Modulus of Rupture) of High Performance Ceramics at Elevated Temperature
  • CNS 11788-1986 Method of Test for Fiber Optic Devices (FOTP-37 Cable Bend Test Low and High Temperature)

ASD-STAN - Aerospace and Defence Industries Association of Europe - Standardization, High temperature three point bending

  • PREN 2746-1990 Aerospace Series Glass Fibre Reinforced Plastics Determination of Flexural Properties Three Point Bend Method (Issue P 1)
  • PREN 3745-405-2010 Aerospace series Fibres and cables@ optical@ aircraft use Test methods Part 405: Low/high temperature bend test (Edition P 1)

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, High temperature three point bending

  • GB/T 14390-1993 Test method for flexural strength of high performance ceramics at elevated temperature
  • GB/T 2107-1980 Metal material--Twisting fatigue test
  • GB/T 14390-2008 Fine ceramics (advanced ceramics,advanced technical ceramics).Test methos for flexural strength of monolithic ceramics at elevated temperature
  • GB/T 11546.2-2022 Plastics—Determination of creep behaviour—Part 2:Flexural creep by three-point loading
  • GB/T 22906.6-2008 Testing of cores.Part 6:Determination of bending strength by three-point method
  • GB/T 31295-2014 The core to wind turbine blade.Determination of dimensional stability at elevated temperatures with flexural load and with compressive load

Professional Standard - Aviation, High temperature three point bending

  • HB 5153-1980 High temperature rotating bending fatigue test method for metals
  • HB 5153-1996 High temperature rotating bending fatigue test method for metals

国家市场监督管理总局、中国国家标准化管理委员会, High temperature three point bending

  • GB/T 38978-2020 Refractory products—Determination of stress-strain (three-point bending method)

Society of Automotive Engineers (SAE), High temperature three point bending

  • SAE AMS3368A-1988 Silicone Resin, Elastomeric, Transparent Elevated Temperature Cure
  • SAE AMS3368B-2012 Silicone Resin, Elastomeric, Transparent, Elevated Temperature Cure
  • SAE AMS3372A-1988 Silicone Resin, Elastomeric High Tear Strength Elevated Temperature Cure
  • SAE AMS3372B-2012 Silicone Resin, Elastomeric, High Tear Strength, Elevated Temperature Cure
  • SAE J949-2009 Test Method for Determining Stiffness of Interior Trim Materials and Substrates by a Three Point Bending Test
  • SAE J949-2022 Test Method for Determining Stiffness of Interior Trim Materials and Substrates by a Three-Point Bending Test

Japanese Industrial Standards Committee (JISC), High temperature three point bending

  • JIS R 1658:2003 Testing methods for bending fatigue of fine ceramics at elevated temperatures
  • JIS Z 2286:2003 Method for high temperature rotating bending fatigue testing of metallic materials
  • JIS R 1658:2008 Testing method for bending fatigue of fine ceramics at elevated temperature
  • JIS R 1642-2:2002 The testing method for internal friction of fine ceramics at elevated temperatures -- Part 2: Flexural resonance method
  • JIS K 7084:1993 Testing method for impact properties of carbon fibre reinforced plastics by instrumented 3-point bending impact test

GM North America, High temperature three point bending

  • GM GMP.PU.021-1999 Polyurea RRIM - High Heat, 20% Calcium Silicate (9986021), 1625 MPA Flexural Modulus

未注明发布机构, High temperature three point bending

  • BS PD CEN TS 15963:2014 Bitumen and bituminous binders — Determination of the fracture toughness temperature by a three point bending test on a notched specimen
  • DIN EN 1966:2003 Structural adhesives — Characterization of a surface by measuring adhesion by means of the three point bending method
  • DIN EN ISO 17138:2022 High-performance ceramics – Mechanical properties of ceramic composite materials at room temperature – Determination of flexural strength
  • BS EN 820-1:2002(2003) Advanced technical ceramics — Methods of testing monolithic ceramics — Thermomechanical properties — Part 1 : Determination of flexural strength at elevated temperatures

Professional Standard - Medicine, High temperature three point bending

  • YY/T 0858-2011 Standard guide for three-piont bending of balloon expandable vascular stents and stent systems

Malaysia Standards, High temperature three point bending

  • MS 1473-1999 Method of test for measuring the dynamic mechanical properties of plastics using three point bending

KR-KS, High temperature three point bending

  • KS M ISO 899-2-2016 Plastics-Determination of creep behavior-Part 2:Flexural creep by three-point loading
  • KS M ISO 11093-6-2016 Paper and board - Testing of cores - Part 6 : Determination of bending strength by the three-point method
  • KS M ISO 11093-7-2020 Paper and board — Testing of cores — Part 7: Determination of flexural modulus by the three-point method
  • KS M ISO 11093-6-2022 Paper and board — Testing of cores — Part 6: Determination of bending strength by the three-point method

CEN - European Committee for Standardization, High temperature three point bending

  • DD ENV 1966-1995 Structural Adhesives - Characterization of a Surface by a Measuring Adhesion by Means of the Three Point Bending Method

TH-TISI, High temperature three point bending

  • TIS 2246.2-2005 Plastics.determination of creep behaviour.part 2: flexural creep by three.point loading

European Association of Aerospace Industries, High temperature three point bending

  • AECMA PREN 2746-1990 Aerospace Series Glass Fibre Reinforced Plastics Determination of Flexural Properties Three Point Bend Method Issue P 1

NL-NEN, High temperature three point bending

  • NVN-ENV 658-5-1994 Advanced technical ceramics. Mechanical properties for ceramic composites at room temperature. Part 5: Determination of shear strength by short span bend test (three-point)

The American Road & Transportation Builders Association, High temperature three point bending

  • AASHTO T 97-2014 Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third- Point Loading)

AASHTO - American Association of State Highway and Transportation Officials, High temperature three point bending

  • T 97-2017 Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third- Point Loading)
  • T 97-2014 Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third- Point Loading)

Aerospace, Security and Defence Industries Association of Europe (ASD), High temperature three point bending

  • ASD-STAN PREN 2746-1990 Aerospace Series Glass Fibre Reinforced Plastics Determination of Flexural Properties Three Point Bend Method (Issue P 1)
  • ASD-STAN PREN 3745-405-2010 Aerospace series Fibres and cables, optical, aircraft use Test methods Part 405: Low/high temperature bend test (Edition P 1)

ES-UNE, High temperature three point bending

  • UNE-EN ISO 10619-3:2012 Rubber and plastics hoses and tubing - Measurement of flexibility and stiffness - Part 3: Bending tests at high and low temperatures (ISO 10619-3:2011)
  • UNE-EN 658-5:2002 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 5: Determination of interlaminar shear strength by short span bend test (three points) (Endorsed by AENOR in February of 2003.)
  • UNE-EN 12788:2005 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under inert atmosphere - Determination of flexural strength (Endorsed by AENOR in October of 2005.)
  • UNE-EN 3745-405:2012 Aerospace series - Fibres and cables, optical, aircraft use - Test methods - Part 405: Low/High temperature bend test (Endorsed by AENOR in August of 2012.)
  • UNE-EN 820-4:2009 Advanced technical ceramics - Thermomechanical properties of monolithic ceramics - Part 4: Determination of flexural creep deformation at elevated temperatures (Endorsed by AENOR in September of 2009.)
  • UNE-EN 12789:2002 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature under air at atmospheric pressure - Determination of flexural strength (Endorsed by AENOR in July of 2003.)
  • UNE-EN 820-1:2002 Advanced technical ceramics - Methods of testing monolithic ceramics - Thermonechanical properties - Part 1: Determination of flexural strength at elevated temperatures

WRC - Welding Research Council, High temperature three point bending

  • BULLETIN 299-1984 ENGINEERING ASPECTS OF CTOD FRACTURE TOUGHNESS TESTING ; THREE-DIMENSIONAL ELASTIC-PLASTIC FINITE ELEMENT ANALYSIS OF THREE-POINT BEND SPECIMEN ; FAILURE PREDICTION OF NOTCHED PRESSURE VESSELS USING T




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved