• ASTM E 92 : 2017

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

    Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials

    Available format(s):  Hardcopy, PDF

    Superseded date:  25-08-2023

    Language(s):  English

    Published date:  25-05-2017

    Publisher:  American Society for Testing and Materials

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    Abstract - (Show below) - (Hide below)

    1.1 These test methods cover the determination of the Vickers hardness and Knoop hardness of metallic materials by the Vickers and Knoop indentation hardness principles.

    Scope - (Show below) - (Hide below)

    1.1These test methods cover the determination of the Vickers hardness and Knoop hardness of metallic materials by the Vickers and Knoop indentation hardness principles. This standard provides the requirements for Vickers and Knoop hardness machines and the procedures for performing Vickers and Knoop hardness tests.

    1.2This standard includes additional requirements in annexes:

    Verification of Vickers and Knoop Hardness Testing Machines

    Annex A1

    Vickers and Knoop Hardness Standardizing Machines

    Annex A2

    Standardization of Vickers and Knoop Indenters

    Annex A3

    Standardization of Vickers and Knoop Hardness Test Blocks

    Annex A4

    Correction Factors for Vickers Hardness Tests Made on Spherical and Cylindrical Surfaces

    Annex A5

    1.3This standard includes nonmandatory information in an appendix which relates to the Vickers and Knoop hardness tests:

    Examples of Procedures for Determining Vickers and Knoop Hardness Uncertainty

    Appendix X1

    1.4This test method covers Vickers hardness tests made utilizing test forces ranging from 9.807 × 10-3 N to 1176.80 N (1 gf to 120 kgf), and Knoop hardness tests made utilizing test forces from 9.807 × 10-3 N to 19.613 N (1 gf to 2 kgf).

    1.5Additional information on the procedures and guidance when testing in the microindentation force range (forces 1 kgf) may be found in Test Method E384, Test Method for Microindentation Hardness of Materials.

    1.6Units—When the Vickers and Knoop hardness tests were developed, the force levels were specified in units of grams-force (gf) and kilograms-force (kgf). This standard specifies the units of force and length in the International System of Units (SI); that is, force in Newtons (N) and length in mm or µm. However, because of the historical precedent and continued common usage, force values in gf and kgf units are provided for information and much of the discussion in this standard as well as the method of reporting the test results refers to these units.

    Note 1:The Vickers and Knoop hardness numbers were originally defined in terms of the test force in kilogram-force (kgf) and the surface area or projected area in millimetres squared (mm2). Today, the hardness numbers are internationally defined in terms of SI units, that is, the test force in Newtons (N). However, in practice, the most commonly used force units are kilogram-force (kgf) and gram-force (gf). When Newton units of force are used, the force must be divided by the conversion factor 9.80665 N/kgf.

    1.7The test principles, testing procedures, and verification procedures are essentially identical for both the Vickers and Knoop hardness tests. The significant differences between the two tests are the geometries of the respective indenters, the method of calculation of the hardness numbers, and that Vickers hardness may be used at higher force levels than Knoop hardness.

    Note 2:While Committee E28 is primarily concerned with metallic materials, the test procedures described are applicable to other materials. Other materials may require special considerations, for example see C1326 and C1327 for ceramic testing.

    1.8This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

    1.9This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

    General Product Information - (Show below) - (Hide below)

    Committee E 28
    Document Type Test Method
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By
    Supersedes

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    ASTM A 182/A182M : 2023 Standard Specification for Forged or Rolled Alloy and Stainless Steel Pipe Flanges, Forged Fittings, and Valves and Parts for High-Temperature Service
    ASTM B 578 : 2021 Standard Test Method for Microindentation Hardness of Electroplated Coatings
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    ASTM F 467M : 2006 : REV A : R2018 Standard Specification for Nonferrous Nuts for General Use (Metric)
    ASTM E 140 : 2012 : REV B : R2019 : EDT 1 Standard Hardness Conversion Tables for Metals Relationship Among Brinell Hardness, Vickers Hardness, Rockwell Hardness, Superficial Hardness, Knoop Hardness, Scleroscope Hardness, and Leeb Hardness
    ASTM F 1079 : 1987 : R2022 Standard Specification for Inserted and Noninserted Surgical Scissors
    ASTM F 468M : 2006 : R2018 Standard Specification for Nonferrous Bolts, Hex Cap Screws, and Studs for General Use (Metric)
    ASTM F 1466 : 2020 Standard Specification for Iron-Nickel-Cobalt Alloys for Metal-to-Ceramic Sealing Applications
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    ASTM G 73 : 2010 : R2021 Standard Test Method for Liquid Impingement Erosion Using Rotating Apparatus
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    ASTM F 1026 : 1986 : R2022 Standard Specification for General Workmanship and Performance Measurements of Hemostatic Forceps
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    ASTM D 7688 : 2018 Standard Test Method for Evaluating Lubricity of Diesel Fuels by the High-Frequency Reciprocating Rig (HFRR) by Visual Observation
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    ASTM F 961 : 2020 Standard Specification for 35Cobalt-35Nickel-20Chromium-10Molybdenum Alloy Forgings for Surgical Implants (UNS R30035)
    ASTM F 620 : 2020 Standard Specification for Titanium Alloy Forgings for Surgical Implants in the Alpha Plus Beta Condition
    ASTM E 2546 : 2015 Standard Practice for Instrumented Indentation Testing
    ASTM F 3348 : 2023 Standard Specification for Plastic Press Insert Fittings with Factory Assembled Stainless Steel Press Sleeve for SDR9 Cross-linked Polyethylene (PEX) Tubing and SDR9 Polyethylene of Raised Temperature (PE-RT) Tubing
    ASTM E 18 : 2022 Standard Test Methods for Rockwell Hardness of Metallic Materials
    ASTM E 3246 : 2022 Standard Test Methods for Differential Indentation Depth Hardness of Metallic Materials
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    ASTM B 974/B974M : 2016 : R2021 Standard Specification for Free-Cutting Bismuth Brass Rod, Bar and Wire
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    ASTM F 561 : 2019 Standard Practice for Retrieval and Analysis of Medical Devices, and Associated Tissues and Fluids
    ASTM B 386/B386M : 2019 : EDT 1 Standard Specification for Molybdenum and Molybdenum Alloy Plate,Sheet, Strip, Foil, and Ribbon
    ASTM F 880M : 2016 Standard Specification for Stainless Steel Socket Set Screws (Metric) (Withdrawn 2023)
    ASTM E 2554 : 2018 : EDT 1 Standard Practice for Estimating and Monitoring the Uncertainty of Test Results of a Test Method Using Control Chart Techniques
    ASTM A 182/A182M : 2022 : REV A Standard Specification for Forged or Rolled Alloy and Stainless Steel Pipe Flanges, Forged Fittings, and Valves and Parts for High-Temperature Service
    ASTM F 1325 : 1991 : R2023 Standard Specification for Stainless Steel Suture Needle Holders—General Workmanship Requirements and Corresponding Test Methods
    ASTM B 388 : 2006 : R2018 Standard Specification for Thermostat Metal Sheet and Strip
    ASTM A 335/A335M : 2022 Standard Specification for Seamless Ferritic Alloy-Steel Pipe for High-Temperature Service
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    Standards Referencing This Book - (Show below) - (Hide below)

    ASTM E 177 : 1990 : REV A : R1996 Standard Practice for Use of the Terms Precision and Bias in ASTM Test Methods
    ASTM C 1326 : 1999 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM E 29 : 2013 : R2019 Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications
    ASTM C 1327 : 2015 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics
    ASTM C 1326 :2008 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM E 7 : 2017 Standard Terminology Relating to Metallography
    ASTM E 384 : 2022 Standard Test Method for Microindentation Hardness of Materials
    ASTM C 1326 : 2003 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM C 1327 : 2003 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics
    ASTM E 29 : 2002 Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications
    ASTM E 7 : 2022 Standard Terminology Relating to Metallography
    ASTM E 3 : 2011 : R2017 Standard Guide for Preparation of Metallographic Specimens
    ASTM E 384 : 2011 Standard Test Method for Knoop and Vickers Hardness of Materials
    ASTM E 6 : 2002 Standard Terminology Relating to Methods of Mechanical Testing
    ASTM E 691 : 2020 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM E 691 : 2019 : EDT 1 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM E 691 : 2023 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM C 1327 : 2008 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics
    ASTM E 691 : 2022 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM E 691 : 2009 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM C 1326 : 2008 : EDT 1 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM E 6 : 2015 : EDT 3 Standard Terminology Relating to Methods of Mechanical Testing
    ASTM C 1326 : 2013 : R2023 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM E 6 : 2023 : REV A Standard Terminology Relating to Methods of Mechanical Testing
    ASTM C 1326 : 2013 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM C 1327 : 1999 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics
    ASTM C 1326 : 2013 : R2018 Standard Test Method for Knoop Indentation Hardness of Advanced Ceramics
    ASTM E 691 : 2021 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
    ASTM E 6 : 2015 : EDT 4 : REDLINE Standard Terminology Relating to Methods of Mechanical Testing
    ASTM E 384 : 2017 Standard Test Method for Microindentation Hardness of Materials
    ASTM C 1327 : 2015 : R2019 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics
    ASTM E 6 : 2015 : EDT 4 Standard Terminology Relating to Methods of Mechanical Testing
    ASTM E 6 : 2023 Standard Terminology Relating to Methods of Mechanical Testing
    ASTM E 29 : 2022 Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications
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