【AS澳大利亚标准】AS 181722002 Metallic materialsVickers hardness test Method 2 Verification of te.doc

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1、iAustralian StandardTMAS 1817.22002ISO 6507-2:1997Accessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 2007AS 1817.2Metallic materialsVickers hardness testMethod 2:Verification of testing machinesPREFACEThis Standard was prepared by Standards Australia Committee MT-006, Mechanical T esting ofMetals t

2、o supersede (in part) AS 18171991, Metallic materialsVickers hardness test.This Standard is identical with and is reproduced from ISO 6507-2:1997, Metallic materialsVickers hardness test, Part 2: Verification of testing machines.This Standard is Method 2 of a series of Standards covering the Vickers

3、 harness testing of metallic materials.The series comprises the following Methods: AS1817Vickers hardness test1817.1Method 1:Test method (ISO 6507-1:1997, MOD)1817.2Method 2:Verification of testing machines1817.3Method 3:Calibration of reference blocksThe force values in this Method were calculated

4、from kilogram force values. They were introduced before the SI-system was adopted. It was decided to keep the values based on the old units for this Method but in the next revision it will be necessary to consider the advantage of introducing rounded values of test force and their effect on the hard

5、ness scales.Attention is drawn to the fact that in this revision the following aspects should be considered:(a)Addition of a new table (Table 3) for the estimation capability and the maximum permissible error of the measuring device.(b)Changes of the values for the repeatability of the hardness test

6、ing machines in Table 4. (c)Addition of a new Clause 6 concerning the intervals between the verifications.(d)Addition of a new Annex A Example of a method for an indirect verification of the measuring device (using a reference indentation).(e)Addition of a new Annex B Notes on diamond indentors.As t

7、his Standard is reproduced from an International Standard, the following applies:(i)Its number does not appear on each page of text and its identity is shown only on the cover and title page.(ii)In the source text this part of ISO 6507 should read this Australian Standard.(iii)A full point should be

8、 substituted for a comma when referring to a decimal marker.References to International Standards should be replaced by references to equivalent AustralianStandards, as follows:iiReference to International StandardAustralian StandardISOAS376Metallic materialsCalibration offorce-proving instruments u

9、sed for theverification of uniaxial testing machines3878HardmetalsVickers hardness test1817Metallic materialsVickers hardness testing1817.1Part 1: Test method(ISO 6507-1:1997, MOD)ISO6507Metallic materialsVickers hardness test1817MetallicmaterialsVickershardness testAccessed by UNIVERSITY OF SOUTH A

10、USTRALIA on 23 Jul 20076507-1Part 1: Test method1817.1Method 1: Test method(ISO 6507-1:1997, MOD)6507-3Part 3: Calibration of reference blocks1817.3Method 3: Calibration of reference blocksThe term informative has been used in this Standard to define the application of the appendix to which it appli

11、es. An informative appendix is only for information and guidance.10Accessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 20071 ScopeThis part of ISO 6507 specifies a method of verification of testing machines for determiningVickers hardness in accordance with ISO 6507-1.It describes a direct verificat

12、ion method for checking the main functions of the machine, and an indirect verification method suitable for the overall checking of the machine. The indirect verification method may be used on its own for periodic routine checking of the machine in service.If a testing machine is also to be used for

13、 other methods of hardness testing, it is essential that it is verified independently for each method.Portable hardness testing machines shall comply with all the requirements of this part ofISO 6507, but the word relocation in 6.1a) does not apply.The force values in this part of ISO 6507 were calc

14、ulated from kilogram force values. They were introduced before the SI-system was adopted. It was decided to keep the values based on the old units for this edition, but for the next revision it will be necessary to consider the advantage of introducing rounded values of test force and the consequenc

15、e on the hardness scales.2 Normative referencesThe following standards contain provisions which, through reference in this text, constitute provisions of this part of ISO 6507. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreem

16、ents based on this part of ISO 6507 are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. Members of IEC and ISO maintain registers of currently valid International Standards.ISO 376:1), Metallic materials Calibration of force-proving in

17、struments used for the verification of uniaxial testing machines.ISO 3878:1983, Hardmetals Vickers hardness test.ISO 6507-1:1997, Metallic materials Vickers hardness test Part 1: Test method.ISO 6507-3:1997, Metallic materials Vickers hardness test Part 3: Calibration of reference blocks.1) To be pu

18、blished. (Revision of ISO 376:1987)www.standar ds.c om.au Standar ds Austr aliaAccessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 20073 General conditionsBefore a Vickers hardness testing machine is verified, it shall be checked to ensure that a) the machine is properly set up;b) the plunger holdin

19、g the indenter is capable of sliding in its guide;c) the indenter-holder is firmly mounted in the plunger;d) the test force can be applied and removed without shock or vibration and in such a manner that the readings are not influenced;e) if the measuring device is integral with the machine1) the ch

20、ange from removing the test force to measuring mode does not influence the readings,2) illumination does not affect the readings,3) the centre of the indentation is in the centre of the field of view, if necessary.The illumination device of the measuring microscope shall produce uniform lighting of

21、the whole observed field and maximum contrast between the indentation and the surrounding surface.4 Direct verificationDirect verification should be carried out at a temperature of (23 5) C. If the verification is made outside this temperature range, this shall be reported in the verification report

22、.The instruments used for verification shall have a certified traceability using the InternationalSystem of Units (SI).Direct verification involvesa) verification of the test force;b) verification of the indenter;c) verification of the measuring device;d) verification of the testing cycle.4.1 Verifi

23、cation of the test force4.1.1 Each test force used within the working range of the testing machine shall be measured. Whenever applicable, this shall be done at not less than three positions of the plunger uniformly spaced throughout its range of movement during testing.4.1.2 The test force shall be

24、 measured by one of the following two methods:a) by means of an elastic proving device in accordance with ISO 376, class 1,b) by balancing against a force, accurate to 0,2 %, applied by means of standardized masses with mechanical advantage.4.1.3 Three readings shall be taken for each test force at

25、each position of the plunger. Immediately before each reading is taken, the plunger shall have been moved in the same direction as during testing.4.1.4 Each measurement for the force shall be within the tolerances of the nominal value of the test force, as given in table 1.Accessed by UNIVERSITY OF

26、SOUTH AUSTRALIA on 23 Jul 2007Table 1Ranges of test force, FNTolerances%F 1,961 1,00,098 07 F 1,961 1,54.2 Verification of the indenter4.2.1 The four faces of the square-based diamond pyramid shall be polished and free from surface defects.4.2.2 The verification of the shape of the indenter can be m

27、ade by direct measurement or by measurement of its projection on a screen.4.2.3 The angle between the opposite faces at the vertex of the diamond pyramid shall be136 0,5 (see figure 1).4.2.4 The angle between the axis of the diamond pyramid and the axis of the indenter-holder (normal to the seating

28、surface) shall be less than 0,5. The four faces shall meet in a point; the maximum permissible length of the line of conjunction between opposite faces is given in table 2 (see also figure 2).Independent of the intervals between the direct verifications of the testing machines, the indenter shall be

29、 verified at intervals not exceeding two years.Figure 1 Angle of the diamond pyramidAccessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 2007a = length of line of conjunctionFigure 2 Line of junction on the top of the indenter (schematic)Table 2Ranges of test force, FNMaximum permissible length of th

30、e line of conjunction, ammF 49,031,961 F 49,030,098 07 F 1,9610,0020,0010,000 54.3 Verification of the measuring device4.3.1 The estimation capability required of the measuring device depends on the size of the smallest indentation to be measured.The scale of the measuring device shall be graduated

31、to permit estimation of the diagonals of the indentation in accordance with table 3.Table 3Diagonal length, dmmEstimation capability of the measuring deviceMaximum permissible errord 0,040d 0,0400,000 2 mm0,5 % of d0,000 4 mm1,0 % of dThe estimation capability of the measuring device for Vickers har

32、dness testing of hardmetals is specified in ISO 3878.Accessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 20074.3.2 The measuring device shall be verified by measurements made on a stage micrometer at a minimum of five intervals over each working range.The maximum permissible error shall not exceed t

33、he values given in table 3.4.3.3 In addition to this direct verification, an indirect verification of the measuring device may be carried out in accordance with the procedure described in annex A.4.4 Verification of the testing cycleThe testing cycle shall be timed with a tolerance of 1 s and shall

34、conform to the testing cycle ofISO 6507-1.5 Indirect verificationIndirect verification should be carried out at a temperature of (23 5) C by means of reference blocks calibrated in accordance with ISO 6507-3. If the verification is made outside this temperature range, this shall be reported in the v

35、erification report.5.1 When verifying testing machines which use several test forces, at least two forces shall be chosen. One of the forces shall be the test force most frequently used. For each test force chosen, two different reference blocks shall be selected from the different hardness ranges s

36、pecified below. The forces and blocks shall be chosen so that at least one reference block in each hardness range shall be used for the verification. 225 HV400 HV to 600 HV 700 HV5.2 When verifying testing machines using only one test force, three reference blocks shall be used, one in each of the r

37、anges specified in 5.1.5.3 For special purposes, a hardness testing machine may be verified at one hardness value only, corresponding approximately to that of the tests to be made.5.4 On each reference block, five indentations shall be made and measured. The test shall be made in accordance with ISO

38、 6507-1.5.5 For each reference block, let d1, d2, ., d5, be the arithmetic mean values of the measured length of the two diagonals of the indentations, arranged in increasing order of magnitude.5.6 The repeatability of the testing machine under the particular verification conditions is determined by

39、 the differenced5 - d1The repeatability of the testing machine verified is not considered satisfactory unless it satisfies the conditions given in table 4.Table 4Hardness of the reference blockRepeatibility of the testing machinemax.d 1)HVHV 5 toHV 100HV 0,2 to HV 5 HV 0,2HV 5 to HV 100HV 0,2 to 225

40、 HV0,02 d0,04 d0,05 d25035060075010142430250350600750202848601) d = d1 + d 2 + . + d 555.7 The error of the testing machine under the particular verification conditions is characterized by the difference:H HwhereH = H1 + H2+ . + H55Accessed by UNIVERSITY OF SOUTH AUSTRALIA on 23 Jul 2007whereH1, H2,

41、 ., H5 are the hardness values corresponding to d1, d2, ., d5 ;H is the specified hardness of the reference block used.The maximum error of the testing machine, expressed as a percentage of the specified hardness of the reference block, shall not exceed the values given in table 5.Accessed by UNIVER

42、SITY OF SOUTH AUSTRALIA on 23 Jul 2007Table 5Hardness symbolMaximum permissible percentage error of the hardness testing machineHardness, HV5010015020025030035040045050060070080090010001500HV 0,01HV 0,015HV 0,02HV 0,025HV 0,05HV 0,1HV 0,2HV 0,3HV 0,5HV 1HV 2HV 3HV 5HV 10HV 20HV 30HV 50HV 10010886510864433333333397108655433333333898654333332221010976443333222111086543333222119754433322211107544333222121086443332221211865433322211965443322211865433222NOTES1 Values are not given when the length of the indentation diagonal is less than 0,020 mm.

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