Abstract Fracture toughness of silicon nitride balls via thermal shock
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Fracture toughness of silicon nitride balls via thermal shock

机译:通过热冲击弥合氮化硅球的破裂韧性

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AbstractA new method for fracture toughness determination of ceramic balls is presented. The starter crack is introduced into the surface of the ball by a Knoop indentation followed by grinding off the deformed zone. The loading through surface tensile stresses is realized by water quenching, i.e. dropping the heated ball into water. The temperature difference is stepwise increased to find the critical temperature difference for the initiation of crack growth. The geometric factor is calculated in a parametric finite element study, whereas the temperature distribution in the ball was previously determined by using the Biot concept. Combining experimentally measured critical temperature differences for different cracksizes and ball diameters with numerical results of the geometric factor, the fracture toughness of the silicon nitride balls is evaluated. For the evaluation, the knowledge of several material properties (e.g. the CTE) and other parameters is necessary, which have influence on the precision of the measurement. The overall measurement uncertainty is estimated to be about ±10 %, what roughly corresponds to the value determined with standard measurement procedures. There is an excellent agreement with published fracture toughness results of these balls determined by the modified Surface Crack in Flexure procedure.]]>
机译:摘要“>提出了一种测定陶瓷球断裂韧性的新方法。通过努氏压痕将起始裂纹引入球表面,然后磨掉变形区。通过水淬火,即将加热的球放入水中,通过表面拉伸应力加载。逐步增加温差,以找到临界温度裂纹扩展起始的温差。几何因子是在参数化有限元研究中计算出来的,而球中的温度分布以前是使用Biot概念确定的。结合实验测量的不同裂纹尺寸和球直径的临界温差和几何因子的数值结果,评估了氮化硅球的断裂韧性。对于评估,需要了解几种材料特性(例如CTE)和其他参数,这些参数对测量精度有影响。总体测量不确定度估计约为±10%,大致相当于标准测量程序确定的值。这些球的断裂韧度结果与已发表的结果非常一致,这些结果是由弯曲过程中的改性表面裂纹确定的]>

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