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GB/T 21838.1-2019 English PDF

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GB/T 21838.1-2019: Metallic materials -- Instrumented indentation test for hardness and materials parameters -- Part 1: Test method
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GB/T 21838.1: Evolution and historical versions

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GB/T 21838.1-2019English724 Add to Cart 7 days [Need to translate] Metallic materials -- Instrumented indentation test for hardness and materials parameters -- Part 1: Test method Valid GB/T 21838.1-2019
GB/T 21838.1-2008EnglishRFQ ASK 5 days [Need to translate] Metallic materials -- Instrumented indentation test for hardness and materials parameters -- Part 1: Test method Obsolete GB/T 21838.1-2008

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Basic data

Standard ID GB/T 21838.1-2019 (GB/T21838.1-2019)
Description (Translated English) Metallic materials -- Instrumented indentation test for hardness and materials parameters -- Part 1: Test method
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard H22
Classification of International Standard 77.040.10
Word Count Estimation 38,340
Date of Issue 2019-08-30
Date of Implementation 2020-07-01
Older Standard (superseded by this standard) GB/T 21838.1-2008
Quoted Standard ISO 14577-2-2015; ISO/IEC GUIDE 98-3-2008(GUM: 1995)
Adopted Standard ISO 14577-1-2015, IDT
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration
Summary This standard specifies the method for the determination of hardness and other material parameters by the instrumented indentation test method for metal materials in the following three ranges: 1. Macroscopic range: 2N��F��30kN; 2. Microscopic range

GB/T 21838.1-2019: Metallic materials -- Instrumented indentation test for hardness and materials parameters -- Part 1: Test method


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Metallic materials - Instrumented indentation test for hardness and materials parameters - Part 1. Test method ICS 77.040.10 H22 National Standards of People's Republic of China Replace GB/T 21838.1-2008 Metal material hardness and material parameters Instrumented indentation test - Part 1. Test methods andmaterialsparameters-Part 1.Testmethod (ISO 14577-1.2015, IDT) Published on.2019-08-30 2020-07-01 implementation State market supervision and administration China National Standardization Administration issued

Content

Foreword III Introduction IV 1 Scope 1 2 Normative references 1 3 symbols and descriptions 1 4 Test principle 3 5 testing machine 4 6 sample 4 7 Test procedure 5 8 Uncertainty of test results 7 9 Test report 7 Appendix A (Normative Appendix) Determination of material parameters based on test force-indentation depth data 9 Appendix B (informative) The control method used to press the test process 18 Appendix C (Normative) Test Machine Flexibility and Head Area Function 19 Appendix D (informative) Notes on diamond indenters 20 Appendix E (Normative Appendix) Effect of surface roughness of test specimens on the accuracy of test results 21 Appendix F (informative) Conversion of hardness HIT and Vickers hardness HV 22 Appendix G (Normative Appendix) Determination of Drift Rate and Creep Rate 23 Appendix H (informative) Assessment of the uncertainty of hardness and material parameter values 25 Appendix I (Normative Appendix) Correction Calculation of Radial Displacement 31 Reference 32

Foreword

GB/T 21838 "Instrumental Compression Test of Metallic Material Hardness and Material Parameters" is divided into four parts. --- Part 1. Test methods; --- Part 2. Testing and calibration of testing machines; --- Part 3. Calibration of standard blocks; --- Part 4. Test methods for metallic and non-metallic coatings. This part is the first part of GB/T 21838. This part is drafted in accordance with the rules given in GB/T 1.1-2009. This part replaces GB/T 21838.1-2008 "Mechanical indentation test for hardness and material parameters of metallic materials - Part 1. Test Test method, compared with GB/T 21838.1-2008, the main technical changes are as follows. ---The standard name is changed from "Metal indentation test of metal material hardness and material parameters Part 1. Test method" to "Metal Instrumented indentation test for material hardness and material parameters - Part 1. Test methods; --- Added symbols and descriptions (see Chapter 3); --- Added test surface cleaning method (see Chapter 6); --- Increased the determination of Martens hardness HMdiff (see A.3.3); --- Refine the determination of the indentation modulus EIT (see A.5.1,.2008 edition of A.5.1); --- Increased measurement of plane strain modulus E* (see A.5.2); --- Added normative appendix G "Drift rate and creep rate determination" (see Appendix G); --- Added the informative Appendix H "Uncertainty Evaluation of Hardness and Material Parameter Values" (see Appendix F); --- Added normative appendix I "Correction calculation of radial displacement" (see Appendix I). This part uses the translation method equivalent to the international standard ISO 14577-1.2015 "Metal material hardness and material parameters of the instrumentation pressure Into the test Part 1. Test methods. The documents of our country that have a consistent correspondence with the international documents referenced in this part are as follows. GB/T 21838.2-2008 Instrumentation indentation test for hardness and material parameters of metallic materials - Part 2 Inspection and calibration (ISO 14577-2.2002, MOD); ---GB/T 27418-2017 Measurement uncertainty assessment and representation (ISO /IEC Guide 98-3.2008, MOD). This part was proposed by the China Iron and Steel Association. This part is under the jurisdiction of the National Steel Standardization Technical Committee (SAC/TC183). This section drafted by. Shanghai Materials Research Institute, Wuhan Huatuo Measurement Technology Co., Ltd., Wuhan Iron and Steel Co., Ltd., Steel Research Technology Co., Ltd. The main drafters of this section. Wang Bin, Hou Xiaodong, Li Rongfeng, Gao Yifei, Sha Fei, Wang Chunliang, Wang Boya. The previous versions of the standards replaced by this section are. ---GB/T 21838.1-2008.

Introduction

The classic definition of hardness is the ability of one material to resist the indentation of another harder material to create a permanent indentation. Carrying Rockwell, Vickers and Cloth The test results obtained during the hardness test were measured after the test force was removed. Therefore, the elastic deformation of the material under the action of the indenter is neglected. Impact. The development of GB/T 21838 (all parts) enables the user to study the force and deformation during the plastic and elastic deformation of the material. The relationship of the person to assess the indentation characteristics of the material. By monitoring the entire cycle of test force application and removal, the method can be determined and traditional Hardness value equivalent hardness value. Significantly, the method is also capable of determining the hardness values under compression modulus and elastic-plastic conditions, All of the above values can be calculated by measuring the indentation size optically. In addition, with various techniques, instrumented indentation tests can be recorded Record the distribution of hardness and modulus along the depth in a potentially complex press-in test cycle. The development of GB/T 21838 (all parts) enables in-depth analysis of the various post-test data. Metal material hardness and material parameters Instrumented indentation test - Part 1. Test methods

1 Scope

This part of GB/T 21838 specifies the following three ranges of metal materials instrumented indentation test method for the determination of hardness and other materials Number method. --- Macro range. 2N ≤ F ≤ 30kN; ---Microscopic range. F < 2N, h> 0.2 μm; ---Nano range. h ≤ 0.2 μm. For the nanometer range, the mechanical deformation is heavily dependent on the actual shape of the tip of the indenter, and the function of the contact area of the indenter used in the testing machine will be severely affected. The calculation of the material parameters. Therefore, in order to make the reproducibility of the material parameters measured by different instruments within an acceptable range, a careful calibrator is required. And indenter shape. The macroscopic and microscopic ranges are distinguished by the magnitude of the test force relative to the depth of penetration. Note that the upper limit of the microscopic range is expressed by the test force (2N), and the lower limit is expressed by the penetration depth (0.2 μm). See Appendix A for the determination of hardness and other material parameters. Carbide indenters are usually used in the macro range because the head is easily damaged when the contact pressure is high. For detecting hardness values and elastic modulus For higher samples, the standard block can be used to detect the permanent deformation that can be generated by the indenter, and the permanent deformation of the indenter should be considered. Impact. This section can also be applied to thin metallic and non-metallic coverings as well as non-metallic materials. In this case, it is advisable to refer to the relevant standards. (See 6.3 and ISO 14577-4).

2 Normative references

The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. ISO 14577-2.2015. Indentation test for hardness and material parameters of metallic materials - Part 2. Examination and testing of test machines Calibration (Metalicmaterials-Instrumentedindentationtestforhardnessandmaterialsparameters-Part 2. Verification andcalibrationoftestingmachines) ISO /IEC Guide 98-3.2008 (GUM.1995) Measurement uncertainty - Part 3. Guide to measurement uncertainty [Uncertaintyofmeasurement-Part 3. Guidetotheexpressionofuncertaintyin measurement (GUM..1995)]

3 symbols and instructions

The symbols used in this section and the corresponding descriptions are shown in Table 1, Figure 1 and Figure 2.

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