陶瓷的损伤容限和可靠性评估。

A. Suzuki, H. Baba
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引用次数: 6

摘要

即使在精心设计的陶瓷部件中,在设计过程中意想不到的过度应力下,如在部件接触区域抑制变形引起的高应力,也存在断裂的风险。要评估陶瓷构件在这种情况下的安全性和可靠性,就必须考虑材料的损伤容限。陶瓷被认为是非常脆的,没有损伤容忍度。但是,虽然很少,它有损伤容忍度。目前摆在我们面前的重要问题是如何定量地估计陶瓷材料的损伤容限程度,并弄清材料的损伤容限与构件可靠性之间的关系。本文通过对多孔堇青石试样的试验,证明了陶瓷中存在损伤容限。本文认为脆性材料的非线性应力-应变曲线是材料损伤容限的反映,所得到的非线性应力-应变曲线可以用本文建立的分布微裂纹模型进行模拟。通过若干仿真工作,讨论了损伤容限与可靠性的关系。仿真结果表明,材料的损伤容限越大,构件的可靠性越高。这一结论得到了多孔堇青石的缺口试样断裂试验结果的支持,该材料的缺口灵敏度非常小。这意味着该材料在应力集中下具有较高的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Damage Tolerance and Reliability for Ceramics.
The risk of fracture does exist even in the carefully designed ceramic components under excess stress unexpected in design procedure such as high stresses caused by restraining the deformation at the contact region of the component. To assess the safety and the reliability of ceramics components under such circumstances, it is indispensable to take the damage tolerance of the material into consideration. Ceramics is thought to be perfectly brittle and have no damage tolerance. But, though very little, it has the damage tolerance. The important problems open to us now are to estimate the extent of the damage tolerance of ceramics quantitatively and to clear the relation between the damage tolerance of the material and the reliability of the component. In this paper, we demonstrate the existence of the damage tolerance in the ceramics by tests using specimens of a porous cordierite. The nonlinear stress-strain curve of the brittle material is thought to be a reflection of the damage tolerance of the material and it is shown that the nonlinear stress-strain curve obtained can be simulated by the distributed micro cracks model developed here. The relation between the damage tolerance and the reliability is also discussed through several simulation works. These simulations show that when the damage tolerance of the material is getting larger, the reliability of the component becomes higher. This conclusion is supported by the fracture test results using notched specimens of a porous cordierite where the notch sensitivity is shown to be very small in this material. This means that this material has the high reliability under the stress concentration.
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