ASTM C773-1988(2016) Standard Test Method for Compressive (Crushing) Strength of Fired Whiteware Materials《烧结白色陶瓷材料抗压 (压碎) 强度的标准试验方法》.pdf
《ASTM C773-1988(2016) Standard Test Method for Compressive (Crushing) Strength of Fired Whiteware Materials《烧结白色陶瓷材料抗压 (压碎) 强度的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C773-1988(2016) Standard Test Method for Compressive (Crushing) Strength of Fired Whiteware Materials《烧结白色陶瓷材料抗压 (压碎) 强度的标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C773 88 (Reapproved 2016)Standard Test Method forCompressive (Crushing) Strength of Fired WhitewareMaterials1This standard is issued under the fixed designation C773; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the
2、 year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers two test procedures (A and B)for the determination of the compressive strength of fir
3、edwhiteware materials.1.2 Procedure A is generally applicable to whiteware prod-ucts of low- to moderately high-strength levels (up to 150 000psi or 1030 MPa).1.3 Procedure B is specifically devised for testing of high-strength ceramics (over 100 000 psi or 690 MPa).1.4 This standard does not purpor
4、t to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E4 Pr
5、actices for Force Verification of Testing MachinesE6 Terminology Relating to Methods of Mechanical TestingE165 Practice for Liquid Penetrant Examination for GeneralIndustry3. Significance and Use3.1 Resistance to compression is the measure of the greateststrength of a ceramic material. Ideally, cera
6、mics should bestressed this way in use. This test is a measure of the potentialload-bearing usefulness of a ceramic.PROCEDURE A4. Apparatus4.1 Testing MachineAny testing machine conforming toPractices E4 and to the requirements for speed of testingprescribed in Sections 5 and 12 of this test method,
7、 may beused.4.2 Spherical Bearing BlockIn vertical testing machines,the spherical bearing block shall be spring suspended from theupper head of the machine in such a manner that the upperplaten of the machine (lower face of the spherical bearingblock) remains in a central position (spherical surface
8、s in fullcontact) when not loaded. The spherical surfaces shall be welllubricated, and the center of curvature shall lie on the lowerface of the platen. The diagonal or diameter of the platen shallbe only slightly greater than the diagonal of the 112-in.(38.1-mm) square contact blocks to facilitate
9、accurate center-ing of the specimens.4.3 Contact BlocksCold-rolled steel contact blocks shallbe used between the test specimen and the platens of themachine. These blocks shall be 112 in. (38.1 mm) square by58to34 in. (15.9 to 19.1 mm) thick, and the contact faces shall besurface ground until plane
10、and parallel. The contact blocksshall be resurfaced, if necessary, after each strength test, andmay be reused only so long as the thickness remains over12 in.(12.7 mm). If the contact block is cracked during testing, itshall be replaced.4.4 Cushion PadsCushion pads shall be used between thetest spec
11、imens and the contact blocks to aid in distributing theload. New cushion pads shall be used for each specimen.Suitable materials for cushion pads, selected in accordancewith the compressive strength range of the material beingtested, are shown in the following table:Compressive Strength Range, psi (
12、MPa) Cushion Pad5000 to 50 000 incl (34.5 to 345) blotting paper,164 in. (0.4 mm) thickOver 50 000 to 150 000 incl (345 to1030.0)mild steel,132 in. (0.8 mm) thick (65HRB max)1This test method is under the jurisdiction ofASTM Committee C21 on CeramicWhitewares and Related Products and is the direct r
13、esponsibility of SubcommitteeC21.03 on Methods for Whitewares and Environmental Concerns.Current edition approved July 1, 2016. Published July 2016. Originally approvedin 1974 to replace C407 and C528. Last previous edition approved in 2011 asC773 88 (2011). DOI: 10.1520/C0773-88R16.2For referenced
14、ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Consho
15、hocken, PA 19428-2959. United States15. Procedure5.1 Dye-check specimens in accordance with Test MethodE165 before testing. Discard any pieces exhibiting cracks orflaws visible to the unaided eye.5.2 Clean the test specimens with a suitable solvent aftergrinding and immerse in an ultrasonic bath fil
16、led with hotdetergent solution. Then rinse specimens in hot water, dry at110 6 2C (230 6 4F) for 2 h and cool to room temperaturein a desiccator.5.3 Carefully center the specimen in the machine betweenthe contact blocks. Place an appropriate guard around thespecimen to contain flying fragments at fa
17、ilure; eye protectionshould be used by the operator.5.4 Apply the load continuously and without impact shockuntil ultimate failure. The rate of loading to be used shalldepend on the compressive strength of the material beingtested, as shown in Table 1.6. Calculation6.1 Calculate the compressive stre
18、ngth of each specimen asfollows:C 5 P/A (1)where:C = compressive strength of the specimen, psi or MPa;P = total load on the specimen at failure, lbf or N; andA = calculated area of the bearing surface of the specimen,in.2or mm2.7. Report7.1 Report the following information:7.1.1 The procedure used,7
19、.1.2 Type of testing machine (hydraulic or screw),7.1.3 Material and size of contact blocks or of cushioningmaterials,7.1.4 Description of material being tested (Note 1),7.1.5 Rate of loading,7.1.6 Number of specimens tested,7.1.7 Dimensions and load at failure of each specimen, and7.1.8 Compressive
20、 strength of each specimen tested,rounded off to the nearest 100 psi (1.0 MPa), together with theaverage compressive strength of the sample tested and thestandard deviation.NOTE 1It is desirable to include details of the origin of the specimenand subsequent treatment.8. Precision and Bias8.1 Interla
21、boratory Test DataAn interlaboratory test wasrun in 1979 in which randomly drawn samples of six materialswere tested in each of five laboratories. One operator in eachlaboratory tested ten specimens of each material. The compo-nents of variance for compressive strength results expressed ascoefficien
22、ts of variation were calculated as follows:Single-operator componentBetween-laboratory component1.50 % of the average8.80 % of the average8.2 Critical DifferencesFor the components of variancereported in 8.1, two averages of observed values should beconsidered significantly different at the 95 % pro
23、bability levelif the difference equals or exceeds the following criticaldifferences listed below:Number ofObservations in EachAverageCritical Difference, % of Grand AverageASingle-OperatorPrecisionBetween-LaboratoryPrecision10 4.16 24.40AThe critical differences were calculated using t = 1.960 which
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