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Finite element modelling of ceramics and glass, an addendum - a bibliography (1998-2004)

机译:陶瓷和玻璃的有限元建模,附录-参考书目(1998-2004)

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Purpose - Ceramic materials and glasses have become important in modem industry as well as in the consumer environment. Heat resistant ceramics are used in the metal forming processes or as welding and brazing fixtures, etc. Ceramic materials are frequently used in industries where a wear and chemical resistance are required criteria (seals, liners, grinding wheels, machining tools, etc.). Electrical, magnetic and optical properties of ceramic materials are important in electrical and electronic industries where these materials are used as sensors and actuators, integrated circuits, piezoelectric transducers, ultrasonic devices, microwave devices, magnetic tapes, and in other applications. A significant amount of literature is available on the finite element modelling (FEM) of ceramics and glass. This paper gives a listing of these published papers and is a continuation of the author's bibliography entitled "Finite element modelling of ceramics and glass" and published in Engineering Computations, Vol. 16, 1999, pp. 510-71 for the period 1977-1998. Design/methodology/approach - The form of the paper is a bibliography. Listed references have been retrieved from the author's database, MAKEBASE. Also Compendex has been checked. The period is 1998-2004. Findings - Provides a listing of 1,432 references. The following topics are included: ceramics -material and mechanical properties in general, ceramic coatings and joining problems, ceramic composites, piezoceramics, ceramic tools and machining, material processing simulations, fracture mechanics and damage, applications of ceramic/composites in engineering; glass - material and mechanical properties in general, glass fiber composites, material processing simulations, fracture mechanics and damage, and applications of glasses in engineering. Originality/value - This paper makes it easy for professionals working with the numerical methods with applications to ceramics and glasses to be up-to-date in an effective way.
机译:目的-陶瓷材料和玻璃在现代工业以及消费环境中已变得重要。耐热陶瓷用于金属成型过程中或用作焊接和钎焊固定装置等。陶瓷材料通常用于要求耐磨性和耐化学性的行业(密封,衬里,砂轮,加工工具等)。陶瓷材料的电,磁和光学特性在电气和电子行业中很重要,在这些行业中,这些材料被用作传感器和执行器,集成电路,压电换能器,超声设备,微波设备,磁带以及其他应用。有关陶瓷和玻璃的有限元建模(FEM)的文献很多。本文列出了这些已发表的论文,是作者参考书目“陶瓷和玻璃的有限元建模”的延续,并发表在《工程计算》(Vol。 1999年6月16日,第510-71页,适用于1977-1998年。设计/方法/方法-本文的形式为参考书目。已从作者的数据库MAKEBASE中检索列出的参考文献。还检查了Compendex。期间是1998-2004。结果-提供1,432个参考文献的列表。包括以下主题:陶瓷-一般材料和机械性能,陶瓷涂层和连接问题,陶瓷复合材料,压电陶瓷,陶瓷工具和机械加工,材料加工模拟,断裂力学和损伤,陶瓷/复合材料在工程中的应用;玻璃-一般材料和机械性能,玻璃纤维复合材料,材料加工模拟,断裂力学和损伤以及玻璃在工程中的应用。原创性/价值-本文使从事陶瓷和玻璃应用数值方法研究的专业人员可以轻松有效地进行更新。

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