A new manufacturing method for functionally gradient materials, and its applications

S. Watanabe, N. Hayashi, Y. Kinoshita, A. Ohashi, Y. Uchida, D. Dykes, G. Touchard
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Abstract

The concept of functionally gradient materials (FGMs) has emerged recently in Japan. Application fields for such materials are found in mechanical, chemical, biological and electrical engineering. In electrical engineering, they have utilisation potential in feeler sensors, resistors, magnetic shields, lossless optical fibres and superconductors. Hitherto two kinds of techniques have been available for the manufacture of FGMs: chemical and physical vapour deposition methods. Physical vapour deposition methods include sputtering and injection of ions. This paper proposes a new physical manufacturing method developed by the authors: a progressive and gradual introduction of additives. The method itself is explained and the materials produced by it are examined with respect to their resistivity and heat emitting properties.<>
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一种新的功能梯度材料制造方法及其应用
功能梯度材料(fgm)的概念是近年来在日本兴起的。这些材料的应用领域包括机械、化学、生物和电气工程。在电气工程中,它们在触角传感器、电阻器、磁屏蔽、无损光纤和超导体中具有应用潜力。迄今为止,有两种技术可用于制造fgm:化学气相沉积法和物理气相沉积法。物理气相沉积方法包括溅射和离子注入。本文提出了作者提出的一种新的物理制造方法:逐步引入添加剂。对该方法本身进行了说明,并对用该方法制备的材料的电阻率和放热性能进行了检验
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