ASTM C1292-2016 Standard Test Method for Shear Strength of Continuous Fiber-Reinforced Advanced Ceramics at Ambient Temperatures《环境温度下连续纤维强化先进陶瓷的抗剪切强度的试验方法》.pdf
《ASTM C1292-2016 Standard Test Method for Shear Strength of Continuous Fiber-Reinforced Advanced Ceramics at Ambient Temperatures《环境温度下连续纤维强化先进陶瓷的抗剪切强度的试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1292-2016 Standard Test Method for Shear Strength of Continuous Fiber-Reinforced Advanced Ceramics at Ambient Temperatures《环境温度下连续纤维强化先进陶瓷的抗剪切强度的试验方法》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C1292 10C1292 16Standard Test Method forShear Strength of Continuous Fiber-Reinforced AdvancedCeramics at Ambient Temperatures1This standard is issued under the fixed designation C1292; the number immediately following the designation indicates the year oforiginal adoption or, in the ca
2、se of revision, the 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 the determination of shear strength of continuous fiber-reinforced
3、 ceramic composites (CFCCs) atambient temperature. The test methods addressed are (1) the compression of a double-notched test specimen to determineinterlaminar shear strength and (2) the Iosipescu test method to determine the shear strength in any one of the material planes oflaminated composites.
4、Test specimen fabrication methods, testing modes (load or displacement control), testing rates (load rate ordisplacement rate), data collection, and reporting procedures are addressed.1.2 This test method is used for testing advanced ceramic or glass matrix composites with continuous fiber reinforce
5、ment havinguni-directional (1-D) or bi-directional (2-D) fiber architecture. This test method does not address composites with (3-D) fiberarchitecture or discontinuous fiber-reinforced, whisker-reinforced, or particulate-reinforced ceramics.1.3 The values stated in SI units are to be regarded as the
6、 standard and are in accordance with IEEE/ASTM SI 10.1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of
7、 regulatorylimitations prior to use. Specific hazard statements are given in 8.1 and 8.2.2. Referenced Documents2.1 ASTM Standards:2C1145 Terminology of Advanced CeramicsD695 Test Method for Compressive Properties of Rigid PlasticsD3846 Test Method for In-Plane Shear Strength of Reinforced PlasticsD
8、3878 Terminology for Composite MaterialsD5379/D5379M Test Method for Shear Properties of Composite Materials by the V-Notched Beam MethodE4 Practices for Force Verification of Testing MachinesE6 Terminology Relating to Methods of Mechanical TestingE122 Practice for Calculating Sample Size to Estimat
9、e, With Specified Precision, the Average for a Characteristic of a Lot orProcessE177 Practice for Use of the Terms Precision and Bias in ASTM Test MethodsE337 Test Method for Measuring Humidity with a Psychrometer (the Measurement of Wet- and Dry-Bulb Temperatures)E691 Practice for Conducting an Int
10、erlaboratory Study to Determine the Precision of a Test MethodIEEE/ASTM SI 10 American National Standard for Use of the International System of Units (SI): The Modern Metric System3. Terminology3.1 Definitions:3.1.1 The definitions of terms relating to shear strength testing appearing in Terminology
11、 E6 apply to the terms used in this testmethod. The definitions of terms relating to advanced ceramics appearing in Terminology C1145 apply to the terms used in thistest method. The definitions of terms relating to fiber-reinforced composites appearing in Terminology D3878 apply to the termsused in
12、this test method. Additional terms used in conjunction with this test method are defined in the following.1 This test method is under the jurisdiction of ASTM Committee C28 on Advanced Ceramics and is the direct responsibility of Subcommittee C28.07 on Ceramic MatrixComposites.Current edition approv
13、ed Dec. 1, 2010Jan. 15, 2016. Published January 2011February 2016. Originally approved in 1995. Last previous edition approved in 20052010as C1292 00C1292 10. (2005). DOI: 10.1520/C1292-10.10.1520/C1292-16.2 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer S
14、ervice at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the prev
15、ious version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.Copyright ASTM In
16、ternational, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.1.2 advanced ceramicengineered high-performance predominately nonmetallic, inorganic, ceramic material having specificfunctional attributes.3.1.3 continuous fiber-reinforced ceramic matrix composite (C
17、FCC)ceramic matrix composite in which the reinforcing phaseconsists of a continuous fiber, continuous yarn, or a woven fabric.3.1.4 shear failurebreaking force (F)maximum force required to fracture a shear-loaded test specimen.3.1.5 shear strength (F/L2)maximum shear stress that a material is capabl
18、e of sustaining. Shear strength is calculated frombreaking force in shear and shear area.4. Summary of Test Method4.1 This test method addresses two methods to determine the shear strength of CFCCs: (1) the compression test method todetermine interlaminar shear strength of a double-notched test spec
19、imen,3 and (2) the Iosipescu test method to determine the shearstrength in any one of the material planes of laminated CFCCs.44.1.1 Shear Test by Compression Loading of Double-Notched Test SpecimensThe interlaminar shear strength of CFCCs, asdetermined by this method is measured by loading in compre
20、ssion a double-notched test specimen of uniform width. Failure ofthe test specimen occurs by shear between two centrally located notches machined halfway through the thickness and spaced afixed distance apart on opposing faces. Schematics of the test setup and the test specimen are shown in Fig. 1 a
21、nd Fig. 2.4.1.2 Shear Test By the Iosipescu MethodThe shear strength of one of the different material shear planes of laminated CFCCsmay be determined by loading a test specimen in the form of a rectangular flat strip with symmetric centrally located V-notchesusing a mechanical testing machine and a
22、 four-point asymmetric fixture. The loading can be idealized as asymmetric flexure bythe shear and bending diagrams in Fig. 3. Failure of the test specimen occurs by shear between the V-notches. Different testspecimen configurations are addressed for this test method. Schematics of the test setup an
23、d test specimen are shown in Fig. 4 andFig. 5. The determination of shear properties of polymer matrix composites by the Iosipescu method has been presented in TestMethod D5379/D5379M.5. Significance and Use5.1 Continuous fiber-reinforced ceramic composites are candidate materials for structural app
24、lications requiring high degreesof wear and corrosion resistance, and damage tolerance at high temperatures.5.2 Shear tests provide information on the strength and deformation of materials under shear stresses.5.3 This test method may be used for material development, material comparison, quality as
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