Contact Multiphysics: A New SPS Paradigm to Enhance Material Fabrication by Design

G. Maizza
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Abstract

Spark Plasma Sintering (SPS) is used extensively to fabricate a wide range of monolithic and advanced materials over a short time and at low temperatures which show inherent advantages over conventional hot-pressed materials. However, the presence of uncontrolled microstructure inhomogeneities, especially in relatively large SPS samples, greatly limits the successful transfer of this technology to an industrial process. The intricate complexity of the involved SPS phenomena, the nebulous role of contacts and the tight physical coupling between the powder and the device are the main concerns. This work has three aims: a) to introduce the concept of contact multiphysics in SPS: b) to illustrate that the current issues can be framed within the unifying concept of contact multiphysics: c) to point out that an in-depth understanding of contact multiphysics will contribute significantly to the shedding of the light on SPS phenomena, in order to solve the current limitations of SPS technology and to enable the desired SPS fabrication of materials by design.
接触多物理:一种通过设计增强材料制造的SPS新范式
火花等离子体烧结(SPS)被广泛用于在短时间和低温下制造各种单片和先进材料,与传统热压材料相比显示出固有的优势。然而,不受控制的微观结构不均匀性的存在,特别是在相对较大的SPS样品中,极大地限制了该技术向工业过程的成功转移。所涉及的SPS现象的复杂性、接触的模糊作用以及粉末和设备之间的紧密物理耦合是主要问题。这项工作有三个目的:a)在SPS中引入接触多物理的概念:b)说明当前的问题可以在接触多物理统一概念的框架内:c)指出深入了解接触多物理将有助于揭示SPS现象,以解决SPS技术的当前限制,并通过设计实现所需的SPS材料制造。
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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