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Creation of Harmonic Structure Materials with Outstanding Mechanical Properties

机译:具有优异机械性能的谐波结构材料的创建

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Conventional material developments have emphasized ultrafine grain refinement and homogenization. However, "nano- and homo-" materials do not usually satisfy the need to be both strong but ductile, which are of course rather contradictory characteristics. To solve such a problem, we have succeeded in designing a "Harmonic Structure Material" that is both a "nano- and harmonic" material which has overcome that antinomy through use of one of the non-equilibrium powder metallurgy (PM) processes called the severe plastic deformation (SPD) PM process. In the present study, pure Ti, Ti-6A1-4V alloy and SUS316L stainless steel powders are subjected to mechanical milling (MM) for various periods of time. The MM powders have two kinds of microstructure, which can be controlled by the MM conditions. They include ultra fine and coarse grain structures known as "shell" and "core", respectively. Subsequently, these MM powders are sintered using conventional sintering processes. The sintered materials with the shell and the core have a network structure of continuously connected shells, which we refer to as a harmonic structure. The sintered materials with the harmonic structure simultaneously demonstrate both high strength and elongation. These outstanding mechanical properties are influenced by harmonic structure characteristics such as shell and core grain sizes, shell area fraction and shell network size. Thus, the harmonic structure can be considered as a remarkable design for improving the mechanical properties of materials.
机译:常规材料的发展强调了超细晶粒的细化和均质化。但是,“纳米”和“均质”材料通常不能满足既坚固又易延展的要求,这当然是相当矛盾的特性。为解决此问题,我们成功设计了一种既是“纳米又是谐波”的“谐波结构材料”,该材料通过使用一种称为“非平衡粉末冶金”(PM)的工艺克服了这种矛盾。严重的塑性变形(SPD)PM工艺。在本研究中,纯Ti,Ti-6A1-4V合金和SUS316L不锈钢粉末经过不同时间的机械研磨(MM)。 MM粉末具有两种微观结构,可以通过MM条件进行控制。它们包括分别称为“壳”和“核”的超细和粗晶粒结构。随后,使用常规烧结工艺将这些MM粉末烧结。具有壳和芯的烧结材料具有连续连接的壳的网络结构,我们将其称为谐波结构。具有谐波结构的烧结材料同时显示出高强度和伸长率。这些出色的机械性能受谐波结构特性的影响,例如壳和核的晶粒尺寸,壳面积分数和壳网络尺寸。因此,谐波结构可以被认为是改善材料机械性能的出色设计。

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