ASTM C1863-2018 Standard Test Method for Hoop Tensile Strength of Continuous Fiber-Reinforced Advanced Ceramic Composite Tubular Test Specimens at Ambient Temperature Using Direct .pdf
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1、Designation: C1863 18Standard Test Method forHoop Tensile Strength of Continuous Fiber-ReinforcedAdvanced Ceramic Composite Tubular Test Specimens atAmbient Temperature Using Direct Pressurization1This standard is issued under the fixed designation C1863; the number immediately following the designa
2、tion 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 () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the deter
3、mination of the hooptensile strength, including stress-strain response, of continuousfiber-reinforced advanced ceramic tubes subjected to directinternal pressurization that is applied monotonically at ambienttemperature. This type of test configuration is sometimesreferred to as “tube burst test.” T
4、his test method is specific totube geometries, because flaw populations, fiber architecture,material fabrication, and test specimen geometry factors areoften distinctly different in composite tubes, as compared toflat plates.1.2 In the test method, a composite tube/cylinder with adefined gage sectio
5、n and a known wall thickness is loaded viainternal pressurization from a pressurized fluid applied eitherdirectly to the material or through a secondary bladder insertedinto the tube. The monotonically applied uniform radial pres-sure on the inside of the tube results in hoop stress-strainresponse o
6、f the composite tube that is recorded until failure ofthe tube. The hoop tensile strength and the hoop fracturestrength are determined from the resulting maximum pressureand the pressure at fracture, respectively. The hoop tensilestrains, the hoop proportional limit stress, and the modulus ofelastic
7、ity in the hoop direction are determined from thestress-strain data. Note that hoop tensile strength as used in thistest method refers to the tensile strength in the hoop directionfrom the introduction of a monotonically applied internalpressure where monotonicrefers to a continuous nonstop testrate
8、 without reversals from test initiation to final fracture.1.3 This test method applies primarily to advanced ceramicmatrix composite tubes with continuous fiber reinforcement:unidirectional (1D, filament wound and tape lay-up), bidirec-tional (2D, fabric/tape lay-up and weave), and tridirectional(3D
9、, braid and weave). These types of ceramic matrix com-posites can be composed of a wide range of ceramic fibers(oxide, graphite, carbide, nitride, and other compositions) in awide range of crystalline and amorphous ceramic matrixcompositions (oxide, carbide, nitride, carbon, graphite, andother compo
10、sitions).1.4 This test method does not directly address discontinuousfiber-reinforced, whisker-reinforced, or particulate-reinforcedceramics, although the test methods detailed here may beequally applicable to these composites.1.5 The test method is applicable to a range of test specimentube geometr
11、ies based on the intended application that includescomposite material property and tube radius. Lengths of thecomposite tube, length of the pressurized section, and length oftube overhang are determined so as to provide a gage lengthwith uniform internal radial pressure. A wide range of combi-nation
12、s of material properties, tube radii, wall thicknesses, tubelengths, and lengths of pressurized section are possible.1.5.1 This test method is specific to ambient temperaturetesting. Elevated temperature testing requires high-temperaturefurnaces and heating devices with temperature control andmeasur
13、ement systems and temperature-capable pressurizationmethods which are not addressed in this test method.1.6 This test method addresses tubular test specimengeometries, test specimen preparation methods, testing rates(that is, induced pressure rate), and data collection and report-ing procedures in t
14、he following sections:Scope Section 1Referenced Documents Section 2Terminology Section 3Summary of Test Method Section 4Significance and Use Section 5Interferences Section 6Apparatus Section 7Hazards Section 8Test Specimens Section 9Test Procedure Section 10Calculation of Results Section 11Report Se
15、ction 12Precision and Bias Section 13Keywords Section 14AppendixReferences1.7 Values expressed in this test method are in accordancewith the International System of Units (SI) and IEEE/ASTM SI10.1This test method is under the jurisdiction of ASTM Committee C28 onAdvanced Ceramics and is the direct r
16、esponsibility of Subcommittee C28.07 onCeramic Matrix Composites.Current edition approved Jan. 1, 2018. Published January 2018. Originallyapproved in 2018. DOI: 10.1520/C1863-18.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis inte
17、rnational standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for theDevelopment of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Co
18、mmittee.11.8 This standard does not purport 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, health, and environmental practices and deter-mine the applicability of regulatory limitations pri
19、or to use.Specific hazard statements are given in Section 8.1.9 This international standard was developed in accor-dance with internationally recognized principles on standard-ization established in the Decision on Principles for theDevelopment of International Standards, Guides and Recom-mendations
20、 issued by the World Trade Organization TechnicalBarriers to Trade (TBT) Committee.2. Referenced Documents2.1 ASTM Standards:2C1145 Terminology of Advanced CeramicsC1239 Practice for Reporting Uniaxial Strength Data andEstimating Weibull Distribution Parameters for AdvancedCeramicsD3878 Terminology
21、for Composite MaterialsE4 Practices for Force Verification of Testing MachinesE6 Terminology Relating to Methods of Mechanical TestingE83 Practice for Verification and Classification of Exten-someter SystemsE337 Test Method for Measuring Humidity with a Psy-chrometer (the Measurement of Wet- and Dry
22、-Bulb Tem-peratures)E1012 Practice for Verification of Testing Frame and Speci-men Alignment Under Tensile and Compressive AxialForce ApplicationIEEE/ASTM SI 10 American National Standard for MetricPractice3. Terminology3.1 The definitions of terms relating to hoop tensile strengthtesting appearing
23、in Terminology E6 apply to the terms used inthis test method. The definitions of terms relating to advancedceramics appearing in Terminology C1145 apply to the termsused in this test method. The definitions of terms relating tofiber-reinforced composites appearing in Terminology D3878apply to the te
24、rms used in this test method. Pertinent definitionsas listed in Practice E1012 and Terminologies C1145, D3878,and E6 are shown in the following with the appropriate sourcegiven in parentheses. Additional terms used in conjunctionwith this test method are defined in the following:3.2 Definitions:3.2.
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