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This page provides an overview of all ISO standards referenced on the ISO homepage, per 02/04-2023.

ISO standards


Name Description Abstract Status Publication date Edition Number of pages Technical committee ICS
ISO 377-1:1989 Selection and preparation of samples and test pieces of wrought steels — Part 1: Samples and test pieces for mechanical test  Withdrawn 1989-11 Edition : 1 Number of pages : 7 Technical Committee 77.040.10 Mechanical testing of metals
ISO 377:2013 Steel and steel products — Location and preparation of samples and test pieces for mechanical testing ISO 377:2013 specifies requirements for the identification, location and preparation of samples and test pieces intended for mechanical tests on steel sections, bars, rod, flat products and tubular products as defined in ISO 6929. If agreed in the order, ISO 377:2013 can also apply to other metallic products. These samples and test pieces are for use in tests that are carried out in conformity with the methods specified in the product or material standard or, in the absence of this, in the standard for the test method. Where the requirements of the order or product standard differ from those given in ISO 377:2013, then the requirements of the order or product standard apply.  Withdrawn 2013-07 Edition : 3 Number of pages : 22 Technical Committee 77.040.10 Mechanical testing of metals
ISO 377:2017 Steel and steel products — Location and preparation of samples and test pieces for mechanical testing ISO 377:2017 specifies requirements for the identification, location and preparation of samples and test pieces intended for mechanical tests on steel sections, bars, rod, flat products and tubular products as defined in ISO 6929. If agreed in the order, ISO 377:2017 can also apply to other metallic products. These samples and test pieces are for use in tests that are carried out in conformity with the methods specified in the product or material standard or, in the absence of this, in the standard for the test method. Where the requirements of the order or product standard differ from those given in ISO 377:2017, then the requirements of the order or product standard apply.  Published 2017-06 Edition : 4 Number of pages : 22 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 397:1964 Wrapping test for copper and copper alloy wire  Withdrawn 1964-11 Edition : 1 Number of pages : 1 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO/R 398:1964 Bend test for copper and copper alloys  Withdrawn 1964-11 Edition : 1 Number of pages : 4 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 399:1964 Vickers hardness test for copper and copper alloys (Test loads from 2.5 to 50 kgf)  Withdrawn 1964-11 Edition : 1 Number of pages : 4 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 400:1964 Tensile testing of copper and copper alloys  Withdrawn 1964-11 Edition : 1 Number of pages : 9 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 401:1964 Tensile testing of copper and copper alloy tubes of circular section  Withdrawn 1964-11 Edition : 1 Number of pages : 10 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO/R 402:1964 Tensile testing of copper and copper alloy wire  Withdrawn 1964-11 Edition : 1 Number of pages : 8 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO/R 403:1964 Brinell hardness test for copper and copper alloys  Withdrawn 1964-11 Edition : 1 Number of pages : 3 Technical Committee 77.040.10 Mechanical testing of metals
ISO 409-1:1982 Metallic materials — Hardness test — Tables of Vickers hardness values for use in tests made on flat surfaces — Part 1: HV 5 to HV 100  Withdrawn 1982-09 Edition : 1 Number of pages : 21 Technical Committee 77.040.10 Mechanical testing of metals
ISO 409-2:1983 Metallic materials — Hardness test — Tables of Vickers hardness values for use in tests made on flat surfaces — Part 2: HV 0,2 to less than HV 5  Withdrawn 1983-10 Edition : 1 Number of pages : 12 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 409:1964 Tables of Vickers hardness values (HV) for metallic materials  Withdrawn 1964-12 Edition : 1 Number of pages : 32 Technical Committee 77.040.10 Mechanical testing of metals
ISO 410:1982 Metallic materials — Hardness test — Tables of Brinell hardness values for use in tests made on flat surfaces  Withdrawn 1982-07 Edition : 1 Number of pages : 9 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 442:1965 Verification of pendulum impact testing machines for testing steels  Withdrawn 1965-07 Edition : 1 Number of pages : 10 Technical Committee 77.040.10 Mechanical testing of metals
ISO 640-2:1993 Metallic materials — Calibration of standardized blocks to be used for Vickers hardness testing machines — Part 2: Less than HV 0,2  Withdrawn 1993-07 Edition : 1 Number of pages : 4 Technical Committee 77.040.10 Mechanical testing of metals
ISO 946:1975 Grey cast iron — Beam unnotched impact test Specifies requirements for the determination of the impact strength. The test consists in breaking a series of unnotched machined cylindrical test pieces resting freely between supports, and measuring the difference between the kinetic energy of the hammer before and after fracture of the test piece. Annex A includes non-standard test pieces, annex B includes notes on coefficients for calculation of impact strength.  Withdrawn 1975-11 Edition : 1 Number of pages : 3 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 952:1969 Tensile testing of light metal and light metal alloy tubes  Withdrawn 1969-01 Edition : 1 Number of pages : 8 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 953:1969 Drift expanding test on light metal and light metal alloy tubes  Withdrawn 1969-01 Edition : 1 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 954:1969 Simple bend test for light metal and light metal alloy sheet and strip of thickness between 0,2 mm (0.008 in) and 7 mm (0.25 in)  Withdrawn 1969-01 Edition : 1 Number of pages : 3 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 955:1969 Flattening test on aluminium and aluminium alloy tubes  Withdrawn 1969-01 Edition : 1 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.10 Aluminium products
ISO/R 956:1969 Tensile test for light metal and light metal alloy wires  Withdrawn 1969-01 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 957:1969 Simple torsion test for aluminium and aluminium alloy wire  Withdrawn 1969-01 Edition : 1 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.10 Aluminium products
ISO/R 958:1969 Wrapping test for aluminium and aluminium alloy wire  Withdrawn 1969-01 Edition : 1 Number of pages : 1 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.10 Aluminium products
ISO 1024:1989 Metallic materials — Hardness test — Rockwell superficial test (scales 15N, 30N, 45N, 15T, 30T and 45T)  Withdrawn 1989-10 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 1024:1969 Rockwell superficial hardness test (N and T scales) for steel  Withdrawn 1969-03 Edition : 1 Number of pages : 10 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1079:1989 Metallic materials — Hardness test — Verification of Rockwell superficial hardness testing machines (scales 15N, 30N, 45N, 15T, 30T and 45T)  Withdrawn 1989-10 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 1079:1969 Verification of Rockwell superficial N and T scale hardness testing machines  Withdrawn 1969-05 Edition : 1 Number of pages : 8 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1099:1975 Metals — Axial load fatigue testing The tests are made to determine fatigue properties. Theys are carried out at room temperature, in air, the loading applied to the test piece being along the longitudinal axis passing through the centroid of each croll-section. ISO 1099 describes form, preparation and testing of test pieces. Does not cover component testing and testing on very thin test pieces.  Withdrawn 1975-11 Edition : 1 Number of pages : 5 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1099:2006 Metallic materials — Fatigue testing — Axial force-controlled method ISO 1099:2006 specifies the conditions for carrying out axial, constant-amplitude, force-controlled fatigue tests at ambient temperature on metallic specimens, without deliberately introduced stress concentrations. The object of testing is to provide fatigue information, such as the relation between applied stress and number of cycles to failure for given materials at various stress ratios. While the form, preparation and testing of specimens of circular and rectangular cross-section are described, component testing and other specialized forms of testing are not included in ISO 1099:2006.  Withdrawn 2006-04 Edition : 2 Number of pages : 21 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 2101:1971 Aluminium and aluminium alloys — Shear test for rivet wire and rivets  Withdrawn 1971-07 Edition : 1 Number of pages : 2 Technical Committee 21.060.40 Rivets ; 77.040.10 Mechanical testing of metals
ISO 1099:2017 Metallic materials — Fatigue testing — Axial force-controlled method ISO 1099:2017 specifies the conditions for conducting axial, constant-amplitude, force-controlled, fatigue tests at ambient temperature on metallic specimens, without deliberately introduced stress concentrations. The object of testing while employing this document is to provide fatigue information, such as the relation between applied stress and number of cycles to failure for a given material condition, such as hardness and microstructure, at various stress ratios. While the form, preparation and testing of specimens of circular and rectangular cross-section are described, component testing and other specialized forms of testing are not included in this document.  Published 2017-06 Edition : 3 Number of pages : 24 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1143:1975 Metals — Rotating bar bending fatigue testing The tests are made to determine fatigue properties. They are carried out at room temperature, in air, the test piece being rotated. Test piece diameters are between 5 mm and 12,5 mm. The results may be affected by atmospheric conditions.  Withdrawn 1975-11 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1143:2010 Metallic materials — Rotating bar bending fatigue testing ISO 1143:2010 specifies the method for rotating bar bending fatigue testing of metallic materials. The tests are conducted at room temperature or elevated temperature in air, the specimen being rotated.  Withdrawn 2010-11 Edition : 2 Number of pages : 26 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1143:2021 Metallic materials — Rotating bar bending fatigue testing This document specifies the method for rotating bar bending fatigue testing of metallic materials. The tests are conducted at room temperature or elevated temperature in air, the specimen being rotated. Fatigue tests on notched specimens are not covered by this document, since the shape and size of notched specimens have not been standardized. However, fatigue test procedures described in this document can be applied to fatigue tests of notched specimens.  Published 2021-07 Edition : 3 Number of pages : 26 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1352:1977 Steel — Torsional stress fatigue testing The tests are carried out at room temperature, in air, by applying to the test piece a pure couple about its longitudinal axid. Test piece diameters are between 5 mm and 12,5 mm. The proparation, form and testing of test pieces of circular cross-section are specified. Does not specify component testing and high strain torsional fatigue tests, which lead to failure in a few thousand cycles.  Withdrawn 1977-12 Edition : 1 Number of pages : 4 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1352:2011 Metallic materials — Torque-controlled fatigue testing ISO 1352:2011 specifies the conditions for performing torsional, constant-amplitude, nominally elastic stress fatigue tests on metallic specimens without deliberately introducing stress concentrations. The tests are carried out at ambient temperature (ideally at between 10 °C and 35 °C) in air by applying a pure couple to the specimen about its longitudinal axis. While the form, preparation and testing of specimens of circular cross-section and tubular cross-section are described in ISO 1352:2011, component and other specialized types of testing are not included. Similarly, low-cycle torsional fatigue tests carried out under constant-amplitude angular displacement control, which lead to failure in a few thousand cycles, are also excluded.  Withdrawn 2011-04 Edition : 2 Number of pages : 23 Technical Committee 77.040.10 Mechanical testing of metals
ISO 1352:2021 Metallic materials — Torque-controlled fatigue testing This document specifies the conditions for performing torsional, constant-amplitude, nominally elastic stress fatigue tests on metallic specimens without deliberately introducing stress concentrations. The tests are typically carried out at ambient temperature or an elevated temperature in air by applying a pure couple to the specimen about its longitudinal axis. While the form, preparation and testing of specimens of circular cross-section and tubular cross-section are described in this document, component and other specialized types of testing are not included. Similarly, low-cycle torsional fatigue tests carried out under constant-amplitude angular displacement control, which lead to failure in a few thousand cycles, are also excluded.  Published 2021-12 Edition : 3 Number of pages : 27 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 1355:1970 Calibration of standardized blocks to be used for Rockwell superficial N and T scale hardness testing machines  Withdrawn 1970-08 Edition : 1 Number of pages : 5 Technical Committee 77.040.10 Mechanical testing of metals
ISO/R 1555:1971 Copper and copper alloy rolled flat products (thickness less than 2,5 mm (0.1 in)) — Tensile test  Withdrawn 1971-08 Edition : 1 Number of pages : 5 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO/R 1556:1971 Copper and copper alloy tubes of circular section — Flattening test  Withdrawn 1971-08 Edition : 1 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO 2142:1981 Wrought aluminium, magnesium and their alloys — Selection of specimens and test pieces for mechanical testing Specifies location, size and number of specimens, identification and preparation of specimens and test pieces, and machining of test pieces. Test pieces used for tensile test can be: rolled flat products, solid products with a given section, tubes, forgings and other semi-finished products. Test pieces used for bend test are sheet and strip.  Withdrawn 1981-08 Edition : 1 Number of pages : 3 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2566-1:1973 Steel — Conversion of elongation values — Part 1: Carbon and low alloy steels  Withdrawn 1973-07 Edition : 1 Number of pages : 22 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2566-1:1984 Steel — Conversion of elongation values — Part 1: Carbon and low alloy steels Specifies a method of converting room temperature percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths. The conversions are not applicable to cold reduced steels, quenched and tempered steels and austenitic steels, or where certain tensile strength ranges and dimensions are exceeded.  Withdrawn 1984-07 Edition : 2 Number of pages : 28 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2566-1:2021 Steel — Conversion of elongation values — Part 1: Carbon and low-alloy steels This document specifies a method of converting room temperature percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths. Formula (1), on which conversions are based, is considered to be reliable when applied to carbon, carbon manganese, molybdenum and chromium molybdenum steels within the tensile strength range 300 N/mm2 to 700 N/mm2 and in the hot-rolled, hot-rolled and normalized or annealed conditions, with or without tempering. These conversions are not applicable to: a) cold reduced steels; b) quenched and tempered steels; c) austenitic steels. These conversions are not applicable when the gauge length exceeds  or where the width to thickness ratio of the test piece exceeds 20.  Published 2021-12 Edition : 3 Number of pages : 33 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2566-2:1984 Steel — Conversion of elongation values — Part 2: Austenitic steels Specifies a method of converting room temperature percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths. The conversions are not applicable to cold reduced steels, quenched and tempered steels and non-austenitic steels, or where certain tensile strength ranges and dimensions are exceeded.  Withdrawn 1984-08 Edition : 1 Number of pages : 28 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2566-2:2021 Steel — Conversion of elongation values — Part 2: Austenitic steels This document specifies a method of converting room temperature percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths. Formula (1), on which conversions are based, is considered to be reliable when applied to austenitic stainless steels within the tensile strength range 450 to 750 N/mm2 and in the solution treated condition. These conversions are not applicable to: a) cold reduced steels; b) quenched and tempered steels; c) non-austenitic steels. These conversions are not applicable when the gauge length exceeds 25√S0 or where the width to thickness ratio of the test piece exceeds 20.  Published 2021-12 Edition : 2 Number of pages : 32 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2573:1977 Tensile testing systems — Determination of K-value  Withdrawn 1977-08 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2625:1973 Copper and copper alloys — Reverse bend testing of wire  Withdrawn 1973-11 Edition : 1 Number of pages : 3 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO 2627:1973 Copper and copper alloys — Simple torsion testing of wire  Withdrawn 1973-10 Edition : 1 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals ; 77.150.30 Copper products
ISO 2712:1973 Copper and copper alloys — Rockwell superficial hardness test (N and T scales)  Withdrawn 1973-11 Edition : 1 Number of pages : 7 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2713:1973 Copper and copper alloys — Rockwell hardness test (B, F and G scales)  Withdrawn 1973-11 Edition : 1 Number of pages : 5 Technical Committee 77.040.10 Mechanical testing of metals
ISO 2739:1973 Sintered metal bushes — Determination of radial crushing strength Specifies a method of measuring the radial crushing strength of sintered metal parts in the form of hollow cylinders commonly known as bushes. The method is applicable to sintered bushes composed of pure or alloyed metal powders. Gives principle, apparatus, test piece, procedure, expression of results and test report.  Withdrawn 1973-12 Edition : 1 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2739:2006 Sintered metal bushes — Determination of radial crushing strength ISO 2739:2006 specifies a method of measuring the radial crushing strength of sintered metal parts in the form of hollow cylinders, commonly known as bushes. This method is applicable to sintered bushes composed of pure or alloyed metal powders.  Withdrawn 2006-11 Edition : 2 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2739:2012 Sintered metal bushings — Determination of radial crushing strength ISO 2739:2012 specifies a method of measuring the radial crushing strength of sintered metal parts in the form of hollow cylinders, commonly known as bushings. This method is applicable to sintered bushings composed of pure or alloyed metal powders.  Published 2012-06 Edition : 3 Number of pages : 4 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2740:1973 Sintered metal materials (excluding hardmetal) — Tensile test pieces  Withdrawn 1973-12 Edition : 1 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2740:1986 Sintered metal materials (excluding hardmetal) — Tensile test pieces  Withdrawn 1986-09 Edition : 2 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2740:1999 Sintered metal materials, excluding hardmetals — Tensile test pieces  Withdrawn 1999-11 Edition : 3 Number of pages : 7 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2740:2007 Sintered metal materials, excluding hardmetals — Tensile test pieces ISO 2740:2007 is applicable to all sintered metals and alloys, excluding hardmetals. ISO 2740:2007 specifies: the die cavity dimensions used for making tensile test pieces by pressing and sintering, and by Metal Injection Moulding (MIM) and sintering;the dimensions of tensile test pieces machined from sintered and powder forged materials.  Withdrawn 2007-03 Edition : 4 Number of pages : 7 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 2740:2009 Sintered metal materials, excluding hardmetals — Tensile test pieces ISO 2740:2009 is applicable to all sintered metals and alloys, excluding hardmetals. ISO 2740:2009 specifies: 1) the die cavity dimensions used for making tensile test pieces by pressing and sintering, and by Metal Injection Moulding (MIM) and sintering; and 2) the dimensions of tensile test pieces machined from sintered and powder forged materials.  Published 2009-05 Edition : 5 Number of pages : 7 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO/FDIS 2740 Sintered metal materials, excluding hardmetals — Tensile test pieces  Under development Edition : 6 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3312:1975 Sintered metal materials and hardmetals — Determination of Young's modulus  Withdrawn 1975-02 Edition : 1 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3312:1987 Sintered metal materials and hardmetals — Determination of Young modulus This second edition cancels and replaces the first edition (i.e. ISO 3312:1975). Specifies a method for the determination of the dynamic (adiabatic) Young moduls by longitudinal oscillations of sintered metal materials and hardmetals. Gives principle, symbols and units, apparatus, preparation of the pieces, procedure, expression of results and test report.  Published 1987-07 Edition : 2 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3325:1975 Sintered metal materials, excluding hardmetals — Determination of transverse rupture strength  Withdrawn 1975-07 Edition : 1 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3325:1996 Sintered metal materials, excluding hardmetals — Determination of transverse rupture strength Gives a method for the determination of the transverse rupture strength of sintered metals, excluding hardmetals. Particularly suitable for comparing the sintered strength of a batch of metal powder with that of a reference powder or with a reference strength.  Published 1996-11 Edition : 2 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3325:1996/Amd 1:2001 Sintered metal materials, excluding hardmetals — Determination of transverse rupture strength — Amendment 1: Precision statement  Published 2001-02 Edition : 2 Number of pages : 1 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3327:1982 Hardmetals — Determination of transverse rupture strength This second edition cancels and replaces the first edition (i.e. ISO 3327:1975). Is applicable to hardmetals of negligible ductility. If it is used for hardmetals showing significant plastic deformation before breaking, incorrect results may be obtained. In such instances, the method may be used for comparison purposes only. Gives symbols and designations in table 1, dimensions of test pieces in table 2, and values of chamfer correction factor in table 3.  Withdrawn 1982-08 Edition : 2 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3327:2009 Hardmetals — Determination of transverse rupture strength ISO 3327:2009 specifies a method for the determination of the transverse rupture strength of hardmetals. This method is applicable to hardmetals of negligible ductility. If it is used for hardmetals showing significant plastic deformation before breaking, incorrect results may be obtained. In such cases, the method may be used for comparison purposes only.  Published 2009-05 Edition : 3 Number of pages : 5 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3738-1:1982 Hardmetals — Rockwell hardness test (scale A) — Part 1: Test method Cancels and replaces ISO 3738:1976. Gives principle,symbols, designations and values of parameters, apparatus, test pieces, procedure, expression of results and test report.  Published 1982-10 Edition : 1 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3738-2:1988 Hardmetals — Rockwell hardness test (scale A) — Part 2: Preparation and calibration of standard test blocks Specifies primary standard test blocks, secondary standard test blocks and working standard test blocks calibrated from master standard test blocks to be used for the verification of Rockwell hardness testing machines and indenters for testing hardmetals. This part of ISO 3738 should be read in conjunction with ISO 3738-1.  Published 1988-12 Edition : 1 Number of pages : 4 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3738:1976 Hardmetals — Rockwell hardness test (Scale A)  Withdrawn 1976-07 Edition : 1 Number of pages : 4 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3785:1976 Steel — Designation of test piece axes Specifies a method for the identification of test piece axes in relation to the grain flow, by means of a system of co-ordinates. Applies to both unnotched metal test pieces. The system present is only intended to be applied in situations where a uniform grain flow can be unambiguously indentified (see also 4.2 and the annex).  Withdrawn 1976-12 Edition : 1 Number of pages : 6 Technical Committee 77.040.10 Mechanical testing of metals
ISO 3785:2006 Metallic materials — Designation of test specimen axes in relation to product texture ISO 3785:2006 specifies a method for designating test specimen axes in relation to product texture by means of an X-Y-Z orthogonal coordinate system. The system applies equally to unnotched and notched (or precracked) test specimens. The method is intended only for metallic materials with uniform texture that can be unambiguously determined.  Published 2006-02 Edition : 2 Number of pages : 7 Technical Committee 77.040.10 Mechanical testing of metals
ISO 3785 Metallic materials — Designation of test specimen axes in relation to product texture  Under development Edition : 3 Technical Committee 77.040.10 Mechanical testing of metals
ISO 3878:1983 Hardmetals — Vickers hardness test This second edition cancels and replaces the first edition (i.e. ISO 3878:1976). Specifies principle, symbols and designations, apparatus, test pieces, procedure, expression of results and test report.  Withdrawn 1983-08 Edition : 2 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3928:1977 Sintered metal materials, excluding hardmetals — Fatigue test pieces  Withdrawn 1977-01 Edition : 1 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3928:1999 Sintered metal materials, excluding hardmetals — Fatigue test pieces  Withdrawn 1999-11 Edition : 2 Number of pages : 7 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3928:2016 Sintered metal materials, excluding hardmetals — Fatigue test pieces ISO 3928:2016 specifies - the die cavity dimensions used for making fatigue test pieces by pressing and sintering, together with certain dimensions of the test piece obtained from such a die, and - the dimensions of the test pieces machined from sintered and powder forged materials. ISO 3928:2016 is applicable to all sintered metals and alloys, excluding hardmetals.  Published 2016-11 Edition : 3 Number of pages : 8 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3995:1977 Metallic powders — Determination of green strength by transverse rupture of rectangular compacts  Withdrawn 1977-03 Edition : 1 Number of pages : 5 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 3995:1985 Metallic powders — Determination of green strength by transverse rupture of rectangular compacts This second edition cancels and replaces the first edition (i. e. ISO 3995:1977). The method subjects a compact pressed form metallic powder to a uniformly increasing transverse force under controlled conditions until fracture occurs. the green strength is determined on compacts either having a particular density or after compaction at a specific compacting pressure.  Published 1985-07 Edition : 2 Number of pages : 5 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO/FDIS 3995 Metallic powders — Determination of green strength by transverse rupture of rectangular compacts This second edition cancels and replaces the first edition (i. e. ISO 3995:1977). The method subjects a compact pressed form metallic powder to a uniformly increasing transverse force under controlled conditions until fracture occurs. the green strength is determined on compacts either having a particular density or after compaction at a specific compacting pressure.  Under development Edition : 3 Number of pages : 8 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4498-1:1978 Sintered metal materials, excluding hardmetals — Determination of apparent hardness — Part 1: Materials of essentially uniform section hardness  Withdrawn 1978-07 Edition : 1 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4498-1:1990 Sintered metal materials, excluding hardmetals — Determination of apparent hardness — Part 1: Materials of essentially uniform section hardness Applies to sintered materials not subjected to heat treatment and sintered materials heat treated in such a way that hardness is essentially uniform to a depth of at least 5 mm below the surface. Gives apparatus, sampling and preparation of test pieces, test requirements, expression of results and test report. An annex contains conditions for Rockwell hardness test.  Withdrawn 1990-08 Edition : 2 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4498-2:1981 Sintered metal materials, excluding hardmetals — Determination of apparent hardness — Part 2: Case-hardened ferrous materials, surface enriched by carbon or carbon and nitrogen Applies to sintered materials which have been heat treated in such a way that hardness is not uniform in the section to a depth of 5 mm below the surface (by treatments such as carburizing, carbonitriding, nitrocarburizing or sulphidizing). Gives principle, apparatus, sampling and preparation of test pieces, test requirements, expression of results and test report.t.  Withdrawn 1981-12 Edition : 1 Number of pages : 2 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4498:2005 Sintered metal materials, excluding hardmetals — Determination of apparent hardness and microhardness ISO 4498:2005 specifies methods of hardness testing of sintered metal materials, excluding hardmetals. Procedure 1 determines the apparent hardness of the whole material. Procedure 2 determines the microhardness of the metal phase.  Withdrawn 2005-06 Edition : 1 Number of pages : 12 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4545-2:2005 Metallic materials — Knoop hardness test — Part 2: Verification and calibration of testing machines ISO 4545-2:2005 specifies the method of verification of testing machines for determining Knoop hardness for metallic materials in accordance with ISO 4545-1. It covers test forces from 0,098 07 N to 19,614 N. The method is recommended only for indentations with diagonals greater than or equal to 0,020 mm.  Withdrawn 2005-11 Edition : 1 Number of pages : 14 Technical Committee 77.040.10 Mechanical testing of metals
ISO 6508-2:2005 Metallic materials — Rockwell hardness test — Part 2: Verification and calibration of testing machines (scales A, B, C, D, E, F, G, H, K, N, T) ISO 6508-2:2005 specifies a method of verification of testing machines for determining Rockwell hardness (scales A, B, C, D, E, F, G, H, K, N, T) in accordance with ISO 6508-1.  Withdrawn 2005-12 Edition : 2 Number of pages : 18 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4498:2010 Sintered metal materials, excluding hardmetals — Determination of apparent hardness and microhardness ISO 4498:2010 specifies methods of hardness testing of sintered metal materials, excluding hardmetals. Procedure 1 determines the apparent hardness of the whole material. Procedure 1 applies to sintered metal materials which have either not been subjected to any heat treatment, or which have been heat treated in such a way that the hardness is essentially uniform to a depth of at least 5 mm below the surface, applies to the surfaces of sintered metal materials which have been treated in such a way that the hardness is not uniform in the section to a depth of 5 mm below the surface, therefore applies to materials in which the hardness is obtained essentially by surface enrichment by carbon, or by carbon and nitrogen (for example, by carburizing, carbonitriding, nitrocarburizing or sulphidizing), and applies to materials which have been induction hardened. Procedure 2 determines the microhardness of the metal phase. Procedure 2 applies to all types of sintered metal materials, is used, in particular, to determine the hardness profile of case‑hardened or carbonitrided materials in accordance with the method described in ISO 4507, and also applies to any sintered metallic materials which have been subjected to surface treatments such as electrodeposited plating, chemical coating, chemical vapour deposition (CVD), physical vapour deposition (PVD), laser, ion bombardment, etc. To determine the microhardness of treated surfaces, Procedure 2 applies.  Published 2010-06 Edition : 2 Number of pages : 12 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4506:1979 Hardmetals — Compression test Specifies a method of determining the ultimate strength and proof stress of hardmetals under uniaxial compressive loads: a test piece, placed between two hardmetal bearing blocks, is axial loaded, until the intended deformation occurs or until the test apparatus, test piece, procedure, expression of results and test report.  Withdrawn 1979-10 Edition : 1 Number of pages : 4 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4506:2018 Hardmetals — Compression test ISO 4506:2018 specifies a method of determining the ultimate strength and proof stress of cemented carbide under uniaxial compressive loads.  Published 2018-02 Edition : 2 Number of pages : 6 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4507:1978 Sintered ferrous materials, carburized or carbonitrided — Determination and verification of effective case depth by the Vickers microhardness testing method  Withdrawn 1978-09 Edition : 1 Number of pages : 3 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4507:2000 Sintered ferrous materials, carburized or carbonitrided — Determination and verification of case-hardening depth by a micro-hardness test  Published 2000-03 Edition : 2 Number of pages : 6 Technical Committee 77.160 Powder metallurgy ; 77.040.10 Mechanical testing of metals
ISO 4545-1:2005 Metallic materials — Knoop hardness test — Part 1: Test method ISO 4545-1:2005 specifies the Knoop hardness test method for metallic materials, for test forces from 0,098 07 N to 19,614 N. The method is recommended only for indentations with diagonals greater than or equal to 0,020 mm.  Withdrawn 2005-11 Edition : 1 Number of pages : 14 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4545-1:2017 Metallic materials — Knoop hardness test — Part 1: Test method ISO 4545-1:2017 specifies the Knoop hardness test method for metallic materials for test forces from 0,009 807 N to 19,613 N. The Knoop hardness test is specified in this document for lengths of indentation diagonals ≥0,020 mm. Using this method to determine Knoop hardness from smaller indentations is outside the scope of this document as results would suffer from large uncertainties due to the limitations of optical measurement and imperfections in tip geometry. ISO 14577-1 allows the determination of hardness from smaller indentations. A periodic verification method is specified for routine checking of the testing machine in service by the user. Special considerations for Knoop testing of metallic coatings can be found in ISO 4516.  Published 2017-12 Edition : 2 Number of pages : 24 Technical Committee 77.040.10 Mechanical testing of metals
ISO/DIS 4545-1 Metallic materials — Knoop hardness test — Part 1: Test method ISO 4545-1:2017 specifies the Knoop hardness test method for metallic materials for test forces from 0,009 807 N to 19,613 N. The Knoop hardness test is specified in this document for lengths of indentation diagonals ≥0,020 mm. Using this method to determine Knoop hardness from smaller indentations is outside the scope of this document as results would suffer from large uncertainties due to the limitations of optical measurement and imperfections in tip geometry. ISO 14577-1 allows the determination of hardness from smaller indentations. A periodic verification method is specified for routine checking of the testing machine in service by the user. Special considerations for Knoop testing of metallic coatings can be found in ISO 4516.  Under development Edition : 3 Number of pages : 28 Technical Committee 77.040.10 Mechanical testing of metals
ISO 8492:1998 Metallic materials — Tube — Flattening test  Withdrawn 1998-10 Edition : 2 Number of pages : 2 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4545-2:2017 Metallic materials — Knoop hardness test — Part 2: Verification and calibration of testing machines ISO 4545-2:2017 specifies the method of verification and calibration of testing machines for determining Knoop hardness for metallic materials in accordance with ISO 4545‑1. A direct method of verification and calibration is specified for the testing machine, indenter, and the diagonal length measuring system. An indirect verification method using reference blocks is specified for the overall checking of the machine. If a testing machine is also to be used for other methods of hardness testing, it will be verified independently for each method.  Published 2017-12 Edition : 2 Number of pages : 18 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4545-3:2005 Metallic materials — Knoop hardness test — Part 3: Calibration of reference blocks ISO 4545-3:2005 specifies the method for the calibration of reference blocks to be used for the indirect verification of Knoop hardness testing machines as specified in ISO 4545-2. The method is applicable only for indentations with long diagonals greater than or equal to 0,020 mm.  Withdrawn 2005-11 Edition : 1 Number of pages : 9 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4545-3:2017 Metallic materials — Knoop hardness test — Part 3: Calibration of reference blocks ISO 4545-3:2017 specifies the method for the calibration of reference blocks to be used for the indirect verification of Knoop hardness testing machines as specified in ISO 4545‑2. The method is applicable only for indentations with long diagonals ≥0,020 mm.  Published 2017-12 Edition : 2 Number of pages : 12 Technical Committee 77.040.10 Mechanical testing of metals
ISO 4545-4:2005 Metallic materials — Knoop hardness test — Part 4: Table of hardness values ISO 4545-4:2005 gives a table for the calculation of Knoop hardness values for use in tests made on flat surfaces carried out in accordance with ISO 4545-1.  Withdrawn 2005-11 Edition : 1 Number of pages : 22 Technical Committee 77.040.10 Mechanical testing of metals