This part of EN 10319 specifies the test method for determining the stress relaxation of bolts tensioned in bolted joint models subjected throughout the test to overall constant strain and constant temperature conditions.

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This document specifies the method for the determination of yield strength increase by the effect of heat treatment (Bake-Hardening-Index) for steel.
NOTE   This test is applied in particular, to steels showing a mechanism of bake hardening, which are specially intended for automotive industry.

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This European Standard specifies the test method for the determination of relaxation of stress of metallic test pieces subjected throughout the test to nominally constant strain and constant temperature conditions.

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Specifies the method for determining the ability of sheet and strip to undergo plastic deformation in reverse bending. Can be applied to aluminium and its alloys only after previous agreement. The reverse bend test consists of repeated bending through 90 , in opposite directions, of a rectangular test piece held at one end, each bend being over a cylindrical support of specified radius.

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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.

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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.

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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.

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ISO 6507-4:2005 gives tables of Vickers hardness for use in tests made on flat surfaces.

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ISO 6507-1:2005 specifies the Vickers hardness test method for the three different ranges of test force for metallic materials.
The Vickers hardness test is specified in ISO 6507-1:2005 for lengths of indentation diagonals between 0,020 mm and 1,400 mm.

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ISO 6507-2:2005 specifies a method of verification of testing machines for determining Vickers hardness in accordance with ISO 6507-1.

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ISO 6507-3:2005 specifies a method for the calibration of reference blocks to be used for the indirect verification of Vickers hardness testing machines, as specified in ISO 6507-2.
The method is applicable only for indentations with diagonals greater than or equal to 0,020 mm.

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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.

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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.

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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.

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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.

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Definition of the Instrumented Charpy V-notch pendulum impact testing on steel products and definition of the requirements concerning the measurement and recording equipment.

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ISO 14577-3 specifies a method for the calibration of reference blocks to be used for the indirect verification of testing machines for the instrumented indentation test, as specified in ISO 14577-2.

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ISO 14577-1 specifies the method of instrumented indentation test for the determination of hardness and other materials parameters for the three ranges:
macro (test force between 2 N and 30 kN);
micro (test force less than 2 N; indentation depth greater than 0, 2 m);
nano (indentation depth equal to or less than than 0,2 m).

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ISO 14577-2 specifies the method of verification and calibration of testing machines for carrying out the instrumented test in accordance with ISO 14577-1.
It describes a direct verification method for checking the main functions of the testing machine and an indirect verification method suitable for the determination of the repeatability of the testing machine.
This part of ISO 14577 is also applicable for transportable testing machines.

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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.

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ISO 6508-1:2005 specifies the method for Rockwell and Rockwell superficial hardness tests for metallic materials.

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ISO 6508-3:2005 specifies a method for the calibration of reference blocks to be used for the indirect verification of Rockwell hardness testing machines (scales A, B, C, D, E, F, G, H, K, N, T), as specified in ISO 6508-2.

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ISO 6506-3:2005 specifies a method for the calibration of reference blocks to be used for use in the indirect verification of Brinell hardness testing machines as described in ISO 6506-2.

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ISO 6506-4:2005 gives a table of the Brinell hardness values for use in tests on flat surfaces.

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ISO 6506-1:2005 specifies the method for the Brinell hardness test for metallic materials and is applicable up to the limit of 650 HBW.

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ISO 6506-2:2005 specifies a method of verification and calibration of testing machines used for determining Brinell hardness in accordance with ISO 6506-1.
ISO 6506-2:2005 specifies a direct method for checking the main functions of machine operation and an indirect method suitable for the overall checking of the machine. The indirect method may be used independently for periodic routine checking of machine operation while in service. If a testing machine is also to be used for other methods of hardness testing, it should be verified independently for each method.
ISO 6506-2:2005 is also applicable to portable hardness testing machines.

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ISO 18265:2003 specifies the principles of the conversion of hardness values and gives general information on the use of conversion tables.
The conversion tables apply to
unalloyed and low-alloy steels and cast iron;
steels for quenching and tempering;
cold working steels;
high speed steels;
hardmetals;
non-ferrous metals and alloys.

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Specification of a method for the static calibration of extensometers used in uniaxial testing.

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This European Standard specifies the method for tensile testing of metallic materials and defines the mechanical properties which can be determined thereby at elevated temperature. For certain particular metallic materials and applications, the tensile test may be subject of specific standards or particular requirements.

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ISO 12737:2005 specifies the ISO method for determining the plane-strain fracture toughness of homogeneous metallic materials using a specimen that is notched and precracked by fatigue, and subjected to a slowly increasing crack displacement force.

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This part of this European Standard describe the Charpy impact test (U and V notch) for metallic materials. For certain particular metallic materials and applications, the Charpy impact test may be the subject of specific standards and particular requirements.

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This European Standard specifies the method for tensile testing of metallic materials and defines the mechanical properties which can be determined at ambient temperature.
NOTE   Informative annex A indicates complementary recommendations for computer controlled testing machines. It is the intention, based on further developments by manufacturers and users that annex A will become normative in the next revision of this standard.

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This draft European Standard specifies the method for the uninterrupted and interrupted creep tests and defines the properties of metallic materials which can be determined from these tests, in particular the creep elongation and the time of creep rupture, at a specified temperature. NOTE: The stress rupture test is also covered by this standard.

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This EN applies to the verification of (pendulum) impact testing machines used for the Charpy impact test as described in EN 10045/1. It describes two methods - The direct method allowing the physical and geometrical properties of the different parts of the testing machine to be verified stactically and seperately - The indirect method; global verification method of the pendulum impact testing machine using Charpy V reference test pieces as specifies in 6.2.

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CMC/TC - Equation missing overlooked by CMC

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Verification of testing machines used for uniaxial creep testing in tension in accordance with ISO 204. This part applies to dead weight and lever type creep testing machines.

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Method for the indentification of test pieces axes in relation to the grain flow, by means of a system of co-ordinates. It is applied only when a uniform grain flow can be unambigously indentified

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Method for the calibration of reference blocks to be used in Brinell hardness testing machines for the indirect verification of these machines.

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Method of verification of testing machines for determining Rockwell hardness.

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Method of verification of testing machines used for determining Brinell hardness.

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Method of Rockwell and Rockwell superficial hardness tests for metallic materials.

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Method for the calibration of reference blocks to be used for the indirect verification of Rockwell testing machines.

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To specify the method for determining the ability of metallic materials to undergo plastic deformation in bending. The standard is not applicable to certain materials and/or products, for example tubes in full selection or welded joints.

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This standard covers the calibration of force-proving instruments used for the static verification of uniaxial testing machines (e.g. Tension/Compression testing machines) and describes a procedure for classifying these instruments.

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