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Standard Test Methods for Determination of Fracture Toughness of Advanced Ceramics at Ambient Temperature
Automaticky přeložený název:
Standardní metody zkoušení pro zjišťování lomové houževnatosti pokročilých keramiky při teplotě okolí
NORMA vydána dne 1.1.2016
Označení normy: ASTM C1421-16
Poznámka: NEPLATNÁ
Datum vydání normy: 1.1.2016
Kód zboží: NS-633378
Počet stran: 33
Přibližná hmotnost: 99 g (0.22 liber)
Země: Americká technická norma
Kategorie: Technické normy ASTM
Keywords:
advanced ceramics, chevron notch, fracture toughness, precracked beam, surface crack in flexure,, ICS Number Code 81.060.30 (Advanced ceramics)
Significance and Use | ||||||||||||||||||||||||||||||||||||||||||||||||||
5.1 Fracture toughness, KIc, is a measure of the resistance to crack extension in a brittle material. These test methods may be used for material development, material comparison, quality assessment, and characterization. 5.2 The pb and the vb fracture toughness values provide information on the fracture resistance of advanced ceramics containing large sharp cracks, while the sc fracture toughness value provides this information for small cracks comparable in size to natural fracture sources. Cracks of different sizes may be used for the sc method. If the fracture toughness values vary as a function of the crack size it can be expected that 1.1 These test methods cover the fracture toughness, Note 1: The figures on the right show the test specimen cross sections and crack types. Four-point loading may be used with all three methods. Three-point may be used with the pb and vb specimens. Note 1: The terms bend(ing) and flexure are synonymous in
these test methods.
1.2 These test methods are applicable to materials with either flat or with rising R-curves. Differences in test procedure and analysis may cause the values from each test method to be different. For many materials, such as the silicon nitride Standard Reference Material 2100, the three methods give identical results at room temperature in ambient air. 1.3 The fracture toughness values for a material can be functions of environment, test rate and temperature. These test methods give fracture toughness values for specific conditions of environment, test rate and temperature. 1.4 These test methods are intended primarily for use with advanced ceramics that are macroscopically homogeneous and microstructurally dense. Certain whisker- or particle-reinforced ceramics may also meet the macroscopic behavior assumptions. Single crystals may also be tested. 1.5 This standard begins with a main body that provides information on fracture toughness testing in general. It is followed by annexes and appendices with specific information for the particular test methods.
1.6 Values expressed in these test methods are in accordance with the International System of Units (SI) and Practice IEEE/ASTM SI 10. 1.7 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.8 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. |
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2. Referenced Documents | ||||||||||||||||||||||||||||||||||||||||||||||||||
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