计算特定质地下六方紧密堆积晶格多晶材料的屈服强度

IF 1.1 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
A. G. Kesarev
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引用次数: 0

摘要

摘要 对于具有六方紧密堆积晶格的多晶材料,提出了一种模型,可以估算给定质地下的屈服强度。单个晶粒的塑性特性由广义冯-米塞斯准则描述。在确定多晶体的屈服强度时,考虑了最普遍的平均方法。针对塑性变形条件下的异质介质提出了一种独创的平均方法,该方法考虑到了未变形晶粒的存在,其份额是通过渗流理论确定的。利用这两种方法,解决了方形截面均质杆件在两种极限情况下的拉伸/压缩问题:无纹理和刚性基础纹理。计算结果与现有文献数据并列。考虑了纹理对屈服强度的影响。给出了产生纹理的定性解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Calculation of the Yield Strength of Polycrystalline Materials with a Hexagonal Close-Packed Lattice at a Given Texture

Calculation of the Yield Strength of Polycrystalline Materials with a Hexagonal Close-Packed Lattice at a Given Texture

Abstract

For a polycrystalline material with a hexagonal close-packed lattice, a model is proposed that allows estimating the yield strength at a given texture. The plasticity properties of an individual grain are described by the generalized von Mises criterion. The most widespread averaging approaches are considered to determine the yield strength of a polycrystal. An original averaging method for a heterogeneous medium under plastic deformation conditions is proposed that takes into account the presence of undeformed grains whose share is determined by means of the percolation theory. Using each approach, the problem about tension/compression of a homogeneous rod of square cross-section is solved for two limiting cases: no texture and rigid basis texture. The calculation results are juxtaposed with the available literature data. The effect of the texture on the yield strength is considered. A qualitative explanation of generating a texture is given.

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来源期刊
Physics of Metals and Metallography
Physics of Metals and Metallography 工程技术-冶金工程
CiteScore
2.00
自引率
25.00%
发文量
108
审稿时长
3 months
期刊介绍: The Physics of Metals and Metallography (Fizika metallov i metallovedenie) was founded in 1955 by the USSR Academy of Sciences. Its scientific profile involves the theory of metals and metal alloys, their electrical and magnetic properties, as well as their structure, phase transformations, and principal mechanical properties. The journal also publishes scientific reviews and papers written by experts involved in fundamental, application, and technological studies. The annual volume of publications amounts to some 250 papers submitted from 100 leading national scientific institutions.
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