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首页> 外文期刊>Journal of the European Ceramic Society >On the relationship between ceramic strength and the requirements for mechanical design
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On the relationship between ceramic strength and the requirements for mechanical design

机译:关于陶瓷强度与机械设计要求之间的关系

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During the last fifty years the mechanical properties of ceramic materials have been greatly improved, their toughness and strength have been increased and the scatter of strength decreased. Adequate statistical design procedures for brittle materials exist but cracking and brittle fracture of ceramic components still occur very often.In this review the theory of brittle fracture and the underlying assumptions are critically discussed and the measurement procedures of strength are reviewed. It is shown that the strength of materials, the strength of specimens and the strength of components are often quite different properties. Three main factors are identified which - in order to avoid unexpected failure of components - have to be considered much more than in the past: (i) hidden stresses, i.e. stresses caused by thermal strain mismatch, by contact (for example in joints) and internal stresses, (ii) the quality of the component's surfaces and edges and (iii) proper handling of ceramic materials and components.It can clearly be stated that the mechanical properties of many ceramic materials are appropriate even for applications under severe loading conditions but bad or incomplete mechanical design, insufficient surface finish and mishandling are the main reasons for unexpected failure of ceramic components.
机译:在最近的五十年中,陶瓷材料的机械性能得到了极大的改善,其韧性和强度得到了提高,而强度的分散性却有所降低。尽管存在足够的脆性材料统计设计程序,但陶瓷部件的开裂和脆性断裂仍然很频繁。在这篇综述中,对脆性断裂的理论和基本假设进行了严格的讨论,并综述了强度的测量程序。结果表明,材料的强度,试样的强度和部件的强度通常具有完全不同的特性。确定了三个主要因素-为了避免组件的意外故障,必须比过去考虑更多的因素:(i)隐藏应力,即由热应变失配,接触(例如在接头中)引起的应力,以及内部应力,(ii)组件表面和边缘的质量以及(iii)陶瓷材料和组件的正确处理。可以清楚地表明,即使在恶劣的负载条件下使用,许多陶瓷材料的机械性能也很合适,但性能较差或机械设计不完整,表面光洁度不足和处理不当是陶瓷组件意外损坏的主要原因。

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