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Three-point bending test passed

Three-point bending test passed, Total:95 items.

In the international standard classification, Three-point bending test passed involves: Materials for aerospace construction, Glass, Products of the textile industry, Farming and forestry, Plastics, Construction materials, Inorganic chemicals, Refractories, Road vehicle systems, Medical equipment, Waxes, bituminous materials and other petroleum products, Valves, Paper and board, Pipeline components and pipelines, Materials for the reinforcement of composites, Reinforced plastics, Ceramics, Aerospace fluid systems and components, Insulating materials, Products of the chemical industry, Raw materials for rubber and plastics, Road engineering, Semiconductor devices.


British Standards Institution (BSI), Three-point bending test passed

  • BS EN 2746:1998 Glass fibre reinforced plastics - Flexural test - Three point bend method
  • 18/30356322 DC BS ISO 21914. Test methods for fibre-reinforced cementitious composites. Bending moment-curvature curve by four-point bending test
  • 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 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 ISO 8574:2008 Aerospace. Hydraulic system tubing. Qualification tests for bent tubes
  • 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 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)

German Institute for Standardization, Three-point bending test passed

  • 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 51902:2020-12 Testing of carbonaceous materials - Determination of flexural strength by three point method - Solid materials
  • 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 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 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

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, Three-point bending test passed

  • GB/T 34171-2017 Test method for flexural property of thin and ultrathin glass—Three-point bending method
  • GB/T 33621-2017 Test method for bending properties of 3D braided fabric and its polymer matrix composites

American Society for Testing and Materials (ASTM), Three-point bending test passed

  • 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 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 D8058-23 Standard Test Method for Determining the Flexural Strength of a Geosynthetic Cementitious Composite Mat (GCCM) Using the Three-Point Bending Test
  • ASTM D5023-15 Standard Test Method for Plastics: Dynamic Mechanical Properties: In Flexure (Three-Point Bending)
  • 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 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 D8458-22 Standard Test Method for Evaluation of Fatigue Performance of Asphalt Mixtures Using the Three-Point Bending Cylinder (3PBC) Test
  • ASTM E2092-13 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • 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 E2092-23 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • 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 E2092-09 Standard Test Method for Distortion Temperature in Three-Point Bending by Thermomechanical Analysis
  • 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 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 D7972-14(2020) Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Three-Point Loading at Room Temperature
  • 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 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 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 C947-03(2023) Standard Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced Concrete (Using Simple Beam With Third-Point Loading)
  • 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

American National Standards Institute (ANSI), Three-point bending test passed

European Committee for Standardization (CEN), Three-point bending test passed

  • EN 2746:1998 Aerospace series - Glass fibre reinforced plastics - Flexural test - Three point bend method
  • 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 12100:1997 Plastics piping systems - Polyethylene (PE) valves - Test method for resistance to bending between supports
  • 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)
  • 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)

Danish Standards Foundation, Three-point bending test passed

  • 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 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/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)

Lithuanian Standards Office , Three-point bending test passed

  • LST EN 2746-2001 Aerospace series - Glass fibre reinforced plastics - Flexural test - Three point bend method
  • 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)

International Organization for Standardization (ISO), Three-point bending test passed

  • ISO 21914:2019 Test methods for fibre-reinforced cementitious composites — Bending moment — Curvature curve by four-point bending test
  • 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

国家市场监督管理总局、中国国家标准化管理委员会, Three-point bending test passed

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

Society of Automotive Engineers (SAE), Three-point bending test passed

  • 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

Professional Standard - Medicine, Three-point bending test passed

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

Malaysia Standards, Three-point bending test passed

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

Professional Standard - Aerospace, Three-point bending test passed

  • QJ 2099-1991 Test method for flexural properties of three-dimensional fiber reinforced composite materials

Association Francaise de Normalisation, Three-point bending test passed

  • 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
  • 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 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 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 P98-261-1:2001 Test relating to pavements - Determination of the fatigue resistance of bituminous mixtures - Part 1 : two points flexural fatigue test with constant displacement on trapezoidal isocel specimens.

Korean Agency for Technology and Standards (KATS), Three-point bending test passed

  • 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 11093-6:2016 Paper and board - Testing of cores - Part 6 : Determination of bending strength by the three-point method

KR-KS, Three-point bending test passed

  • KS M ISO 11093-6-2022 Paper and board — Testing of cores — Part 6: Determination of bending strength by the three-point method

未注明发布机构, Three-point bending test passed

  • 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

Professional Standard - Textile, Three-point bending test passed

  • FZ/T 60042-2014 3D braided polymer matrix composites.Test method for bending properties
  • FZ/T 60042-2013 Test method for flexural properties of resin-based three-dimensional braided composites

Japanese Industrial Standards Committee (JISC), Three-point bending test passed

  • JIS K 7084:1993 Testing method for impact properties of carbon fibre reinforced plastics by instrumented 3-point bending impact test

AT-ON, Three-point bending test passed

  • 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)

ES-UNE, Three-point bending test passed

  • 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.)

International Electrotechnical Commission (IEC), Three-point bending test passed

  • IEC 62047-31:2019 Semiconductor devices - Micro-electromechanical devices - Part 31: Four-point bending test method for interfacial adhesion energy of layered MEMS materials




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