ASTM E140-2007 Standard Hardness Conversion Tables for Metals Relationship Among Brinell Hardness Vickers Hardness Rockwell Hardness Superficial Hardness Knoop Hardness and Scleros.pdf
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1、Designation: E 140 07Standard Hardness Conversion Tables for MetalsRelationship Among Brinell Hardness, Vickers Hardness,Rockwell Hardness, Superficial Hardness, Knoop Hardness,and Scleroscope Hardness1This standard is issued under the fixed designation E 140; the number immediately following the de
2、signation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.This standard has been approved for use
3、 by agencies of the Department of Defense.1. Scope*1.1 Conversion Table 1 presents data in the Rockwell Chardness range on the relationship among Brinell hardness,Vickers hardness, Rockwell hardness, Rockwell superficialhardness, Knoop hardness, and Scleroscope hardness of non-austenitic steels incl
4、uding carbon, alloy, and tool steels in theas-forged, annealed, normalized, and quenched and temperedconditions provided that they are homogeneous.1.2 Conversion Table 2 presents data in the Rockwell Bhardness range on the relationship among Brinell hardness,Vickers hardness, Rockwell hardness, Rock
5、well superficialhardness, Knoop hardness, and Scleroscope hardness of non-austenitic steels including carbon, alloy, and tool steels in theas-forged, annealed, normalized, and quenched and temperedconditions provided that they are homogeneous.1.3 Conversion Table 3 presents data on the relationshipa
6、mong Brinell hardness, Vickers hardness, Rockwell hardness,Rockwell superficial hardness, and Knoop hardness of nickeland high-nickel alloys (nickel content over 50 %). Thesehardness conversion relationships are intended to apply par-ticularly to the following: nickel-aluminum-silicon specimensfinis
7、hed to commercial mill standards for hardness testing,covering the entire range of these alloys from their annealed totheir heavily cold-worked or age-hardened conditions, includ-ing their intermediate conditions.1.4 Conversion Table 4 presents data on the relationshipamong Brinell hardness, Vickers
8、 hardness, Rockwell hardness,and Rockwell superficial hardness of cartridge brass.1.5 Conversion Table 5 presents data on the relationshipbetween Brinell hardness and Rockwell B hardness of austen-itic stainless steel plate in the annealed condition.1.6 Conversion Table 6 presents data on the relati
9、onshipbetween Rockwell hardness and Rockwell superficial hardnessof austenitic stainless steel sheet.1.7 Conversion Table 7 presents data on the relationshipamong Brinell hardness, Vickers hardness, Rockwell hardness,Rockwell superficial hardness, and Knoop hardness of copper.1.8 Conversion Table 8
10、presents data on the relationshipamong Brinell hardness, Rockwell hardness, and Vickershardness of alloyed white iron.1.9 Conversion Table 9 presents data on the relationshipamong Brinell hardness, Vickers hardness, Rockwell hardness,and Rockwell superficial hardness of wrought aluminum prod-ucts.1.
11、10 Many of the conversion values presented herein wereobtained from computer-generated curves of actual test data.Most Rockwell hardness numbers are presented to the nearest0.1 or 0.5 hardness number to permit accurate reproduction ofthese curves. Since all converted hardness values must beconsidere
12、d approximate, however, all converted Rockwellhardness numbers shall be rounded to the nearest wholenumber in accordance with Practice E29.1.11 Appendix X1-Appendix X9 contain equations devel-oped from the data in Tables 1-9, respectively, to convert fromone hardness scale to another. Since all conv
13、erted hardnessvalues must be considered approximate, however, all convertedhardness numbers shall be rounded in accordance with PracticeE29.1.12 Conversion of hardness values should be used onlywhen it is impossible to test the material under the conditionsspecified, and when conversion is made it s
14、hould be done withdiscretion and under controlled conditions. Each type ofhardness test is subject to certain errors, but if precautions arecarefully observed, the reliability of hardness readings made oninstruments of the indentation type will be found comparable.Differences in sensitivity within t
15、he range of a given hardnessscale (for example, Rockwell B) may be greater than betweentwo different scales or types of instruments. The conversion1These conversion tables are under the jurisdiction ofASTM Committee E28 onMechanical Testing and are the direct responsibility of Subcommittee E28.06 on
16、Indentation Hardness Testing.Current edition approved Jan. 1, 2007. Published January 2007. Originallyapproved in 1958. Last previous edition approved in 2005 as E 140 05e1.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box
17、C700, West Conshohocken, PA 19428-2959, United States.values, whether from the tables or calculated from the equa-tions, are only approximate and may be inaccurate for specificapplication.2. Referenced Documents2.1 ASTM Standards:2E10 Test Method for Brinell Hardness of Metallic Materi-alsE18 Test M
18、ethods for Rockwell Hardness and RockwellSuperficial Hardness of Metallic MaterialsE29 Practice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE92 Test Method for Vickers Hardness of Metallic Mate-rialsE 384 Test Method for Microindentation Hardness of Ma-terial
19、sE 448 Practice for Scleroscope HardnessTesting of MetallicMaterials3. Methods for Hardness Determinations3.1 The hardness readings used with these conversion tablesshall be determined in accordance with one of the followingASTM test methods:3.1.1 Vickers HardnessTest Method E92.3.1.2 Brinell Hardne
20、ssTest Method E10.3.1.3 Rockwell HardnessTest Method E18Scales A, B,C, D, E, F, G, H, K, 15-N, 30-N, 45-N, 15-T, 30-T, 45-T, 15-W.3.1.4 Knoop HardnessTest Method E 384.3.1.5 Scleroscope3HardnessPractice E 448.NOTE 1The comparative hardness test done to generate the conver-sion tables in this standar
21、d were preformed in past years usingASTM testmethods in effect at the time of testing. In some cases, the standards havechanged in ways that could affect the final results. For example, currentlyboth the Rockwell and Brinell hardness standards (Test Method E 18 andE 10, respectively) allow or requir
22、e the use of tungsten carbide ballindenters; however, all of the ball scale Rockwell hardness tests (HRB,HR30T, etc.) and most of the Brinell hardness tests preformed to developthese tables used hardened steel ball indenters.The use of tungsten carbideballs will produce slightly different hardness r
23、esults than steel balls.Therefore, the user is cautioned to consider these differences and to keepin mind the approximate nature of these conversions when applying themto the results of tests using tungsten carbide balls.4. Apparatus and Reference Standards4.1 The apparatus and reference standards s
24、hall conform tothe description in Test Methods E92, E10, E18, E 384, andPractice E 448.5. Principle of Method of Conversion5.1 Tests have proved that even the most reliable datacannot be fitted to a single conversion relationship for allmetals. Indentation hardness is not a single fundamentalpropert
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