Design practice

M. Veringa
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Abstract

Presently, however, the improvement to more traditional materials, e.g. metals, are such that new ceramics have a serious problem in making themselves acceptable alternatives. In spite of the generally high level of skills available to make ceramics, to bond them to metals and to achieve well con­ trolled surface finishes, besides the under­ standing of the behaviour of the materials under service conditions, it can be conclu­ ded that the introduction in technological structures intended for mass production is seriously behind schedule. But this should not lead to the conclusion that interest in engineering ceramics is reducing. Defect control and reliability during fabrication deserve more attention, along with promoting a willingness to accept materials which still have a lower reliability level than metals. In this respect, the particular advantages of ceramics such as chemical or thermal resistance and wear properties, are presently in an exploratory stage over a broad range of applications. Slightly out­ side the scope of the workshop, it was emphasized that in the process industry and activities related to energy production and the environment, a number of applica­ tions of advanced ceramics are within reach. These applications often involve porous ceramic materials to control pro­ cesses and fulfill tasks involving separa­ tion and clearing.
设计实践
然而,目前,对更传统的材料,如金属的改进是如此之快,以至于新型陶瓷在制造可接受的替代品方面存在严重问题。尽管制造陶瓷、将其与金属结合以及实现良好控制表面光洁度的技术水平普遍很高,而且对材料在使用条件下的行为也有所了解,但可以得出结论,用于大规模生产的技术结构的引入严重落后于计划。但这不应导致对工程陶瓷的兴趣正在减少的结论。制造过程中的缺陷控制和可靠性值得更多关注,同时促进人们接受可靠性水平仍低于金属的材料。在这方面,陶瓷的特殊优势,如化学或耐热性和磨损性能,目前正处于探索阶段,在广泛的应用。稍微超出了讲习班的范围,有人强调,在与能源生产和环境有关的过程工业和活动中,先进陶瓷的一些应用是触手可及的。这些应用通常涉及多孔陶瓷材料,以控制过程并完成涉及分离和清理的任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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