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Calculated value for titanium alloy

Calculated value for titanium alloy, Total:155 items.

In the international standard classification, Calculated value for titanium alloy involves: Materials for aerospace construction, Fasteners, Rubber and plastics products, Testing of metals, Coatings and related processes used in aerospace industry, Reinforced plastics, Pipeline components and pipelines, Non-ferrous metals, Vocabularies, Road vehicle systems, Products of non-ferrous metals, Natural gas, Energy and heat transfer engineering in general, Company organization and management, Power stations in general, Surface treatment and coating, Corrosion of metals, Products of the chemical industry, Fuels, Fasteners for aerospace construction, Construction industry.


Society of Automotive Engineers (SAE), Calculated value for titanium alloy

  • SAE AMS2249G-2009 Chemical Check Analysis Limits, Titanium and Titanium Alloys
  • SAE AMS2249F-2005 Chemical Check Analysis Limits, Titanium and Titanium Alloys
  • SAE AMS2488D-2018 Anodic Treatment - Titanium and Titanium Alloys Solution pH 13 or Higher
  • SAE AMS2487A-2011 Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum
  • SAE ARP1932-1994 ANODIZE TREATMENT OF TITANIUM AND TITANIUM ALLOYS pH 12.4 maximum
  • SAE AMS2488E-2019 Anodic Treatment - Titanium and Titanium Alloys Solution pH 13 or Higher
  • SAE AMS2487B-2022 Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum
  • SAE AMS2488D-2000 (R) Anodic Treatment - Titanium and Titanium Alloys Solution pH 13 or Higher
  • SAE AS5491C-2007 Calculation of Electron Vacancy Number in Superalloys
  • SAE AS5491B-2002 Calculation of Electron Vacancy Number in Superalloys
  • SAE AS5491C-2013 Calculation of Electron Vacancy Number in Superalloys
  • SAE AMS2487A-2000 (R) Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum [Superseded: SAE ARP 1932A, SAE ARP 1932, SAE ARP 1932]
  • SAE AS7112/6A-2018 National Aerospace and Defense Contractors Accreditation Program, Titanium 3al-2.5v Alloy, Seamless Hydraulic Tubing, Manufacturing Requirements
  • SAE AS7112/6-2013 National Aerospace and Defense Contractors Accreditation Program Titanium 3Al-2.5V Alloy, Seamless Hydraulic Tubing Manufacturing Requirements

German Institute for Standardization, Calculated value for titanium alloy

  • DIN 29733-3:1984 Aerospace; rivet calculation values, static load, for close tolerance bolts of titanium alloy, with countersunk head, single shear
  • DIN 29732-3:1984 Aerospace; rivet calculation-values, static load, for close tolerance bolts of titanium alloy, with protruding head, single shear
  • DIN EN ISO 2566-1:2022-10 Steel - Conversion of elongation values - Part 1: Carbon and low-alloy steels (ISO 2566-1:2021, Corrected version 2022-06); German version EN ISO 2566-1:2021
  • DIN EN 3684:2007-07 Aerospace series - Test methods - Titanium alloy wrought products - Determination of <beta> transus temperature - Metallographic method; German and English version EN 3684:2007
  • DIN EN ISO 6976:2005 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition (ISO 6976:1995 including Corrigendum 1:1997, Corrigendum 2:1997 and Corrigendum 3:1999); English version of DIN EN ISO 6976
  • DIN EN ISO 2566-1:2022 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO 2566-1:1984); German version EN ISO 2566-1:1999
  • DIN EN ISO 2566-1:1999 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO 2566-1:1984); German version EN ISO 2566-1:1999
  • DIN 51857:1997 Gaseous fuels and other gases - Calculation of calorific value, density, relative density and Wobbe index of pure gases and gas mixtures
  • DIN EN 4459:2006 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard; German and English version EN 4459:2005
  • DIN EN 4459:2006-05 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard; German and English version EN 4459:2005
  • DIN EN ISO 6976:2016 Natural gas - Calculation of calorific values, density, relative density and Wobbe indices from composition (ISO 6976:2016); German version EN ISO 6976:2016
  • DIN 51666:2007 Testing of petroleum products - Determination of composition for calculation refinery of heating gas carbon content and calorific value by gas chromatography

SAE - SAE International, Calculated value for titanium alloy

  • SAE AMS2487-1993 Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum
  • SAE AMS2487B-2018 Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum
  • SAE ARP1932-1985 Anodize Treatment of Titanium and Titanium Alloys pH 12.4 Maximum
  • SAE ARP1932A-2000 Anodize Treatment of Titanium and Titanium Alloys pH 12.4 Maximum
  • SAE AS5491A-2001 Calculation of Electron Vacancy Number in Superalloys
  • SAE AS5491-2000 Calculation of Electron Vacancy Number in Superalloys
  • SAE AS5491D-2019 Calculation of Electron Vacancy Number in Superalloys
  • SAE AS7112/6-2004 National Aerospace and Defense Contractors Accreditation Program Titanium 3Al-2.5V Alloy@ Seamless Hydraulic Tubing Manufacturing Requirements

Aerospace Industries Association/ANSI Aerospace Standards, Calculated value for titanium alloy

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Calculated value for titanium alloy

  • GB/T 3771-1983 Conversion of hardness and strength for copper alloys
  • GB/T 31309-2014 Calculation of electoron vacancy number in nickel-base superalloys

Professional Standard - Aviation, Calculated value for titanium alloy

  • HB/Z 215-1992 Conversion value of hardness and strength of aluminum alloy sheet

SE-SIS, Calculated value for titanium alloy

  • SIS MNC 1101-1980 Meta I lic materials — Hardness test — Calculation of Brinell hardness values
  • SIS MNC 1102-1980 Meta/lic materials — Hardness test — Calculation of Vickers hardness values

Professional Standard - Aerospace, Calculated value for titanium alloy

  • QJ 1654-1989 Design Criteria for Titanium Alloy Spherical Gas Cylinders

RU-GOST R, Calculated value for titanium alloy

  • GOST R 57845-2017 Polymer composites. Calculation of normative values for structural materials
  • GOST 21073.3-1975 Non-ferrous metals. Determination of grain size bu calculation of grain intersections
  • GOST 21910-1976 Metals. Helt-resistance characteristics. Names, definitions, formulae for calculations and units of quantities
  • GOST 31369-2008 Natural gas. Calculation of calorific values, density, relative density and Wobbe index from composition
  • GOST 31369-2021 Natural gas. Calculation of calorific values, mass volume, relative density and Wobbe indices from the composition
  • GOST 9.040-1974 Unified system of corrosion and ageing protection. Calculated and experimental method for accelerated test of corrosion lossen in atmospheric conditions
  • GOST R 57173-2016 Calculation and strength testing. Methods of mechanical testing of metals. Test for stress relaxation of metals and alloys at a compression. General requirements

Korean Agency for Technology and Standards (KATS), Calculated value for titanium alloy

  • KS B 0255-2007 Basis for calculation of aluminium alloy pipe flanges
  • KS B 0255-2013 Basis for calculation of aluminium alloy pipe flanges
  • KS B 0255-2007(2012) Basis for calculation of aluminium alloy pipe flanges
  • KS B 0255-1990 Basis for calculation of aluminium alloy pipe flanges
  • KS D ISO 2566-1-2005(2010) Steel-Conversion of elongation values-Part 1:Carbon and low alloy steels
  • KS D ISO 2566-1:2005 Steel-Conversion of elongation values-Part 1:Carbon and low alloy steels
  • KS D ISO 2566-1:2013 Steel-Conversion of elongation values-Part 1:Carbon and low alloy steels
  • KS B 0253-2013 Basis for calculation of aluminium alloy Pipe flanges with full face gasket
  • KS B 0253-1999 Basis for calculation of aluminium alloy Pipe flanges with full face gasket
  • KS I ISO 6976:2007 Natural gas-Calculation of calorific values, density, relative density and Wobbe index from composition
  • KS D ISO 11436:2001 Nickel and nickel alloys-Determination of total boron content -Curcumin molecular absorption spectrometric method
  • KS B 0253-1999(2009) Basis for calculation of aluminium alloy Pipe flanges with full face gasket

British Standards Institution (BSI), Calculated value for titanium alloy

  • BS EN ISO 2566-1:1999 Steel - Conversion of elongation values - Carbon and low alloy steels
  • BS EN ISO 2566-1:2021 Steel. Conversion of elongation values - Carbon and low-alloy steels
  • BS EN ISO 6976:2007 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition
  • 2TA 13-1974 Specification for forgings of titanium-aluminium-vanadium alloy (tensile strength 900-1160 MPa) (limiting ruling section 150 mm)
  • BS 7859:1996 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition
  • BS EN 4459:2005 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard
  • BS EN 15984:2011 Petroleum industry and products. Determination of composition of refinery heating gas and calculation of carbon content and calorific value. Gas chromatography method
  • BS EN 15984:2017 Petroleum industry and products. Determination of composition of refinery heating gas and calculation of carbon content and calorific value. Gas chromatography method

Japanese Industrial Standards Committee (JISC), Calculated value for titanium alloy

  • JIS B 2206:1995 Basis for calculation of aluminium alloy pipe flanges
  • JIS B 2206 AMD 1:2006 Basis for calculation of aluminium alloy pipe flanges (Amendment 1)
  • JIS B 2206:2006 Basis for calculation of aluminium alloy pipe flanges (Amendment 1)
  • JIS B 2207:1995 Basis for calculation of aluminium alloy pipe flanges with full face gasket
  • JIS B 2207 AMD 1:2006 Basis for calculation of aluminium alloy pipe flanges with full face gasket (Amendment 1)
  • JIS B 2207:2006 Basis for calculation of aluminium alloy pipe flanges with full face gasket (Amendment 1)

TR-TSE, Calculated value for titanium alloy

  • TS 2023-1975 TEEL-CONVERSION OF ELONGATION VALUES PART !: CARBON AND L0W ALLOV STEEL8

ZA-SANS, Calculated value for titanium alloy

  • SANS 2566-1:2005 Steel - Conversion of elongation values Part 1: Carbon and low alloy steels

International Organization for Standardization (ISO), Calculated value for titanium alloy

  • ISO 18868:2013/Amd 1:2020 Commercial road vehicles — Coupling equipment between vehicles in multiple vehicle combinations — Strength requirements — Amendment 1: Clarification for calculation for V-value for combinations includ
  • ISO 2566-1:1984 Steel; Conversion of elongation values; Part 1 : Carbon and low alloy steels
  • ISO 6976:2016 Natural gas - Calculation of calorific values, density, relative density and Wobbe indices from composition
  • ISO 6976:1995 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition
  • ISO 6976:1995/Cor 1:1997 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition; Technical Corrigendum 1
  • ISO 6976:1995/Cor 3:1999 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition; Technical Corrigendum 3

未注明发布机构, Calculated value for titanium alloy

European Committee for Standardization (CEN), Calculated value for titanium alloy

  • EN ISO 2566-1:2021 Steel - Conversion of elongation values - Part 1: Carbon and low-alloy steels (ISO 2566-1:2021, Corrected version 2022-06)
  • EN ISO 2566-1:1999 Steel - Conversion of Elongation Values - Part 1: Carbon and Low Alloy Steels
  • EN ISO 6976:2005 Natural gas - Calculation of calorific values, density, relative density and Wobbe index from composition
  • prEN ISO 2566-1:2021 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO/FDIS 2566-1:2021)
  • EN 4459:2005 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard
  • EN 15984:2011 Petroleum industry and products - Determination of composition of refinery heating gas and calculation of carbon content and calorific value - Gas chromatography method
  • EN 15984:2017 Petroleum industry and products - Determination of composition of refinery heating gas and calculation of carbon content and calorific value - Gas chromatography method

IN-BIS, Calculated value for titanium alloy

Danish Standards Foundation, Calculated value for titanium alloy

  • DS/EN ISO 2566-1:2000 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels
  • DS/EN 4459:2005 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard

Association Francaise de Normalisation, Calculated value for titanium alloy

  • NF A03-174*NF EN ISO 2566-1:2021 Steel - Conversion of elongation values - Part 1 : carbon and low alloy steels
  • NF A95-484*NF EN 24501:1994 Hardmetals. Determination of titanium. Photometric peroxide method.
  • NF A06-827:1968 Chemical analysis of zinc alloys. Spectrophotometric determination of titanium.
  • NF A06-574:1966 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of titanium
  • NF X20-522:1997 Natural gas. Calculation of calorific values, density, relative density and Wobbe index from composition.
  • NF EN 4459:2006 Série aérospatiale - Goujons, en alliage de titane TI-P64001, avec bague de verrouillage dentelée en acier résistant à la corrosion - Norme de conception
  • NF L23-002*NF EN 4459:2006 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard
  • NF EN 4133:2009 Série aérospatiale - Vis à tête hexagonale normale, tige normale à tolérance large, filetage long, en alliage de titane, revêtues aluminium IVD - Classification : 1 100 MPa (à température ambiante)/425 oC
  • NF EN 4130:2009 Série aérospatiale - Vis à tête hexagonale normale, tige normale à tolérance large, filetage moyen, en alliage de titane, revêtues aluminium IVD - Classification : 1 100 MPa (à température ambiante)/425 oC
  • NF EN 4071:2010 Série aérospatiale - Vis à tête hexagonale normale, fût normal à tolérance serrée, filetage court, en alliage de titane, revêtues aluminium IVD - Classification : 1 100 MPa (à température ambiante)/425 oC
  • NF EN 4074:2010 Série aérospatiale - Vis à tête cylindrique, à empreinte six lobes, tige normale à tolérance large, filetage moyen, en alliage de titane, revêtues aluminium IVD - Classification : 1100 MPa (à température ambiante)/425oC
  • NF EN 3740:2019 Série aérospatiale - Axes épaulés, à tête hexagonale basse, tige à tolérance serrée, filetage court, en alliage de titane, anodisés, lubrifiés MoS2 - Classification : 1 100 MPa (à température ambiante)/315 oC
  • NF EN 4137:2010 Série aérospatiale - Vis à tête bihexagonale normale, à tige dégagée, filetage long, en alliage de titane, anodisées, lubrifiées MoS2 - Classification : 1 100 MPa (à température ambiante)/315 oC

ES-UNE, Calculated value for titanium alloy

  • UNE-EN ISO 2566-1:2022 Steel - Conversion of elongation values - Part 1: Carbon and low-alloy steels (ISO 2566-1:2021, Corrected version 2022-06)
  • UNE-EN 4459:2005 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard (Endorsed by AENOR in March of 2006.)

CH-SNV, Calculated value for titanium alloy

Professional Standard - Non-ferrous Metal, Calculated value for titanium alloy

  • YS/T 772-2011 Aluminum and aluminum alloys strips for computer radiator
  • YS/T 437-2009 Moment of inertia calculation methods and computing software requirements of aluminium profiles
  • YS/T 121.10-1992 Heat Balance Test and Calculation Method of Cemented Carbide Resistance Heating Furnace in Non-ferrous Metal Processing Enterprises

国家市场监督管理总局、中国国家标准化管理委员会, Calculated value for titanium alloy

工业和信息化部, Calculated value for titanium alloy

  • YS/T 437-2018 Aluminum alloy profile section geometric parameter algorithm and computer program requirements

American Gear Manufacturers Association, Calculated value for titanium alloy

  • AGMA 930-A05-2005 Calculated Bending Load Capacity of Powder Metallurgy (P/M) External Spur Gears

American Society for Testing and Materials (ASTM), Calculated value for titanium alloy

  • ASTM E1338-97(2003) Guide for Identification of Metals and Alloys in Computerized Material Property Databases
  • ASTM E133-92(2016) Standard Specification for Distillation Equipment
  • ASTM E1338-97 Standard Guide for The Identification of Metals and Alloys in Computerized Material Property Databases
  • ASTM E1338-09 Guide for Identification of Metals and Alloys in Computerized Material Property Databases
  • ASTM E1338-09(2015) Standard Guide for Identification of Metals and Alloys in Computerized Material Property Databases
  • ASTM E1338-09(2021) Standard Guide for Identification of Metals and Alloys in Computerized Material Property Databases
  • ASTM E1338-09(2021)e1 Standard Guide for Identification of Metals and Alloys in Computerized Material Property Databases

Jiangsu Provincial Standard of the People's Republic of China, Calculated value for titanium alloy

  • DB32/ 2543-2013 Comparable unit comprehensive energy consumption quota and calculation method of aluminum alloy castings

Zhejiang Provincial Standard of the People's Republic of China, Calculated value for titanium alloy

  • DB33/ 802-2010 Comparable unit comprehensive energy consumption quota and calculation method of aluminum alloy castings

AT-ON, Calculated value for titanium alloy

  • ONORM M 7140 Beib.5-1999 Economic comparison calculation of energy Systems based on the extended annuity- method - Guiding values for input-data
  • OENORM EN ISO 2566-1:2021 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO/FDIS 2566-1:2021)

Lithuanian Standards Office , Calculated value for titanium alloy

  • LST EN ISO 2566-1:2000 Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO 2566-1:1984)
  • LST EN 4459-2005 Aerospace series - Studs, in titanium alloy TI-P64001, with serrated locking ring in corrosion resisting steel - Design standard

American National Standards Institute (ANSI), Calculated value for titanium alloy

  • ANSI/GPA 2172-2007 Calculation of Gross Heating Value, Specific Gravity, and Compressibility of Natural Gas Mixtures from Compositional Analysis

American Welding Society (AWS), Calculated value for titanium alloy

  • WRC 134:1968 Procedures For Fracture Toughness Characterization and Interpretations to Failure-Safe Design for Structural Titanium Alloys

American Society of Mechanical Engineers (ASME), Calculated value for titanium alloy

  • ASME SEC VIII D1 MA APP 23-2001 Appendix 23 External Pressure Design of Copper, Copper Alloy, and Titanium Alloy Condenser and Heat Exchanger Tubes with Integral Pins

ESDU - Engineering Sciences Data Unit, Calculated value for titanium alloy

  • ESDU 82015-1982 FATIGUE CRACK PROPAGATION RATES AND THRESHOLD STRESS INTENSITY FACTOR RANGES FOR TITANIUM ALLOY PLATE@ BAR AND FORGINGS
  • ESDU 82015 A-1999 Fatigue crack propagation rates and threshold stress intensity factor ranges for titanium alloy plate@ bar and forgings.
  • ESDU 91016-1991 Energy height method for flight path optimisation. Addendum A: numerical method suitable for rapid use on IBM PC compatible computers.

HU-MSZT, Calculated value for titanium alloy

Professional Standard - Electricity, Calculated value for titanium alloy

  • DL/T 1605-2016 Calculation method of calorific value, compressibility coefficient and relative density of gaseous fuel in combined cycle power station

NL-NEN, Calculated value for titanium alloy

  • NEN 2063-1988 Are welding Fatigue loaded structures Calculation of welded joints in unalloyed and low-alloy steel up to and including Fe 510 (Fe 52)

WRC - Welding Research Council, Calculated value for titanium alloy

  • BULLETIN 134-1968 PROCEDURES FOR FRACTURE TOUGHNESS CHARACTERIZATION AND INTERPRETATIONS TO FAILURE-SAFE DESIGN FOR STRUCTURAL TITANIUM ALLOYS

Association of German Mechanical Engineers, Calculated value for titanium alloy

  • DVS 2205-1 Beiblatt 4-2012 Calculation of tanks and apparatus made of thermoplastics - Characteristic values of the fluoropolymer material group
  • DVS 2205-1 Beiblatt 4-2011 Calculation of tanks and apparatus made of thermoplastics - Characteristic values of the fluoropolymer material group
  • DVS 2205-1 Beiblatt 4-2013 Calculation of tanks and apparatus made of thermoplastics - Characteristic values of the fluoropolymer material group

Natural Gas Processor's Association (NGPA), Calculated value for titanium alloy

  • GPA STD 2172-1996 Calculation of Gross Heating Value, Relative Density and Compressibility Factor for Natural Gas Mixtures from Compositional Analysis (API MPMS 14.5)
  • GPA STD 2172-2009 Calculation of Gross Heating Value, Relative Density, Compressibility and Theoretical Hydrocarbon Liquid Content for Natural Gas Mixtures for Custody Transfer (Third Edition)
  • GPA STD 2172-2014 Calculation of Gross Heating Value@ Relative Density@ Compressibility and Theoretical Hydrocarbon Liquid Content for Natural Gas Mixtures for Custody Transfer (Third Edition)

API - American Petroleum Institute, Calculated value for titanium alloy

  • API MPMS 14.5-1996 Calculation of Gross Heating Value@ Relative Density and Compressibility Factor for Natural Gas Mixtures from Compositional Analysis (GPA STD 2172-96)
  • API MPMS 14.5-2009 Calculation of Gross Heating Value@ Relative Density@ Compressibility and Theoretical Hydrocarbon Liquid Content for Natural Gas Mixtures for Custody Transfer (THIRD EDITION)

US-CFR-file, Calculated value for titanium alloy

  • CFR 5-848.502-2014 Administrative personnel. Part848:Phased retirement. SubpartE:Computation of phased retirement annuity at phased retirement and composite retirement annuity at full retirement. section848.502:Computation of composite annuity at final retirement.
  • CFR 5-848.501-2014 Administrative personnel. Part848:Phased retirement. SubpartE:Computation of phased retirement annuity at phased retirement and composite retirement annuity at full retirement. section848.501:Computation of phased retirement annuity.

AENOR, Calculated value for titanium alloy

  • UNE 36493-1:1980 ESTIMATION AND VERIFICATION OF HIGH TEMPERATURE ELASTIC VALUES IN STEEL PRODUCTS FOR PESSURE VESSELS. ELASTIC LIMIT IN CARBON STEEL PRODUCTS OR LIGHTHY ALLOYED

European Association of Aerospace Industries, Calculated value for titanium alloy

  • AECMA PREN 3071-1997 Aerospace Series Straight Bending of Sheets and Strips in Aluminium and Aluminium Alloys Dimensioning Methods and Calculations of Developed Lengths Edition 1
  • AECMA PREN 4459-1998 Aerospace Series Studs, in Titanium Alloy TI-P64001, with Serrated Locking Ring in Corrosion Resisting Steel Design Standard Edition P1
  • AECMA PREN 4459-2000 Aerospace Series Studs, in Titanium Alloy TI-P64001, with Serrated Locking Ring in Corrosion Resisting Steel Design Standard Edition P 1

ASD-STAN - Aerospace and Defence Industries Association of Europe - Standardization, Calculated value for titanium alloy

  • PREN 4459-1998 Aerospace Series Studs@ in Titanium Alloy TI-P64001@ with Serrated Locking Ring in Corrosion Resisting Steel Design Standard (Edition P1)
  • PREN 4459-2000 Aerospace Series Studs@ in Titanium Alloy TI-P64001@ with Serrated Locking Ring in Corrosion Resisting Steel Design Standard (Edition P 1)

NO-SN, Calculated value for titanium alloy

  • NS 8402:2000/A1-2007 Amendment A1 General conditions of contract for consultancy commissions with remuneration on the basis of actual time taken




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