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A new methodology to guarantee the structural integrity of ceramics component using self- crack - healing ability

机译:利用自裂修复能力保证陶瓷部件结构完整性的新方法

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摘要

A new methodology to guarantee the structural integrity of ceramics component has been proposed. This methodology consists of following three stages ; (a) Crack-healing at the best conditions, (b) Proof test and (c) In-situ crack-healing. Above (a) is suitable to heal the surface cracks those were introduced by machining. Above (b) is necessary, because embedded flaws such as cracks and pores can not be healed at the present stage. For the flaw-healing, oxygen is necessary. If, crack initiated during service, structural integrity maybe reduced considerably depending on crack size. However, if material has in-situ crack-healing ability and heal the crack during service, it would be desirable for the high structural integrity. Using the past studies related to crack-healing, bending and fatigue strength of crack-healed member at elevated temperature, in-situ crack-healing behavior and proof test theory, usefulness of this new concept has been explained concretely.
机译:提出了一种新的方法来保证陶瓷部件的结构完整性。该方法包括以下三个阶段; (a)最佳条件下的裂纹修复,(b)证明测试和(c)原位裂纹修复。以上(a)适用于修复通过机械加工引入的表面裂纹。 (b)以上是必要的,因为在目前阶段无法治愈诸如裂缝和孔洞之类的嵌入缺陷。为了修复缺陷,需要氧气。如果在使用过程中产生裂纹,则根据裂纹尺寸可能会大大降低结构完整性。但是,如果材料具有原位裂纹修复能力并在使用过程中修复裂纹,则对于高结构完整性将是理想的。利用以往有关高温下裂纹愈合构件的裂纹愈合,弯曲和疲劳强度,原位裂纹愈合行为以及验证试验理论的研究,已具体说明了这一新概念的实用性。

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