Densification Mechanism, Elastic-Plastic Deformations and Stress-Strain Relations of Compacted Metal-Ceramic Powder Mixtures (Review)

I. Popescu, R. Vidu
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引用次数: 6

Abstract

Abstract The basic purpose of compaction is to obtain a green compact with sufficient strength to withstand further handling operations. The strength of green compact is influenced by the characteristics of the powders (apparent density, particle size and shape, internal pores etc.), the processing parameters (applied force, pressing type, and temperature) and testing conditions (strain rate etc.) Successful powder cold compaction is determined by the densification and structural transformations of powders (metallic powders, ceramic powders and metal-ceramic powder mixtures) during the compaction stages. In this paper, for understanding the factors that determine a required strength of compacted metal-ceramic powder mixtures, we present the densification mechanisms of different mixtures according to densification theories of compaction, the elastic-plastic deformations of mixture powders, the stressstrain relations and the relaxation behavior of compacted metal-ceramic composite parts and the particularities of each of them.
压实金属-陶瓷粉末混合物的致密化机理、弹塑性变形及应力-应变关系(综述)
压实的基本目的是获得具有足够强度的绿色压实,以承受进一步的处理操作。粉末的特性(表观密度、颗粒大小和形状、内部孔隙等)、工艺参数(施加力、压制类型和温度)和测试条件(应变率等)影响粉末的强度。粉末冷压成功与否取决于粉末(金属粉末、陶瓷粉末和金属-陶瓷粉末混合物)在压实阶段的致密化和结构转变。本文根据压实理论、混合粉末的弹塑性变形、压实金属陶瓷复合材料部件的应力-应变关系和弛豫行为,以及每种压实金属陶瓷复合材料的特殊性,提出了不同混合物的致密化机理,以了解决定压实金属陶瓷粉末混合物所需强度的因素。
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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