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首页> 外文期刊>Journal of the European Ceramic Society >Toughness measurement on ball specimens. Part II: Experimental procedure and measurement uncertainties
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Toughness measurement on ball specimens. Part II: Experimental procedure and measurement uncertainties

机译:球形试样的韧性测量。第二部分:实验程序和测量不确定度

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摘要

The "Surface Crack in Flexure" method is widely used for fracture toughness (K_(Ic)) determination of ceramics. In part I of the paper we developed the theoretical fundamentals to apply this procedure to ceramic balls by using the stress application as developed for the so-called "Notched ball test". The new test (SCF-NB) can be used to test spherical components without the need to cut out special specimens such as bending bars. In this work the practical part is presented including suggestions for crack introduction and specimen preparation and possible measurement errors arc discussed. It is concluded that a measurement error less than ±5% is possible.Experiments on balls and bars made from the same silicon nitride ceramic indicate that SCF-NB delivers the same K_(Ic) -values as standardised measurements on bars. Additionally, K_(Ic)-values obtained for silicon carbide, alumina and zirconia ceramics are presented. They coincide with K_(Ic)-data from the literature.
机译:“弯曲表面裂纹”方法被广泛用于确定陶瓷的断裂韧性(K_(Ic))。在本文的第一部分中,我们通过使用为所谓的“缺口球测试”开发的应力应用程序,开发了将这一程序应用于陶瓷球的理论基础。新的测试(SCF-NB)可用于测试球形零件,而无需切出弯曲弯杆之类的特殊样品。在这项工作中,将介绍实际部分,包括裂纹引入和样品制备的建议以及可能的测量误差。结论是,测量误差可能小于±5%。用相同氮化硅陶瓷制成的球和棒的实验表明,SCF-NB提供的K_(Ic)值与棒上的标准测量值相同。此外,给出了碳化硅,氧化铝和氧化锆陶瓷的K_(Ic)值。它们与文献中的K_(Ic)-数据一致。

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