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爆炸粉末烧结微孔隙塌缩沉能分析
引用本文:王金相,李晓杰,闫鸿浩.爆炸粉末烧结微孔隙塌缩沉能分析[J].高压物理学报,2005,19(2):145-150.
作者姓名:王金相  李晓杰  闫鸿浩
作者单位:大连理工大学工程力学系,工业装备与结构分析国家重点实验室,辽宁,大连,116024;大连理工大学工程力学系,工业装备与结构分析国家重点实验室,辽宁,大连,116024;大连理工大学工程力学系,工业装备与结构分析国家重点实验室,辽宁,大连,116024
基金项目:国家自然科学基金(10172025),辽宁省自然科学基金
摘    要: 对爆炸粉末烧结过程中颗粒间的结合和沉能机制进行了分析,用反映微孔隙闭合的一维球对称塌缩模型对爆炸粉末烧结后期由微孔隙闭合引起的沉能现象进行了研究。在球对称塌缩一维流动的控制方程中引入传热项的影响,采用刚塑性假设并引入热粘塑性本构关系,利用有限差分法对球壳收缩过程中的温度分布进行了计算。结果表明:热传导的影响随孔隙尺度的变小而变大;球壳收缩过程中其内壁经历了从弹塑性体到流体的转变,其温升远高于其它部位的温升,其它部位较低的温度将对熔化的球心起到低温淬火作用。

关 键 词:爆炸粉末烧结  球对称塌缩  一维塑性流动  热粘塑性
文章编号:1000-5773(2005)02-0145-06
收稿时间:2004-06-04;
修稿时间:2004年6月4日

Analysis of Energy Deposition Caused by Micro-Void Collapse in Explosive Consolidation of Powders
WANG Jin-xiang,LI Xiao-jie,YAN Hong-hao.Analysis of Energy Deposition Caused by Micro-Void Collapse in Explosive Consolidation of Powders[J].Chinese Journal of High Pressure Physics,2005,19(2):145-150.
Authors:WANG Jin-xiang  LI Xiao-jie  YAN Hong-hao
Affiliation:Department of Engineering Mechanics of Dalian University of Technology, State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian 116023, China
Abstract:In this paper,the mechanism of distortion and energy deposition at the interface of the particles in explosive consolidation of powders is analyzed.A one-dimension model of spherical symmetry is used to describe the closure of the micro-holes in powders.Effect of heat conduction is added to the one-dimensional flow equations of spherical symmetry,and the temperature distribution during the closure of the hollow sphere is solved by finite-difference under the condition that the material is rigid-plastic fluid and the constitutive equations are thermo-visco-plastic.The results show that effect of heat conduction becomes more remarkable when the scale of the holes become small;during the closure of the holes the state of the interior surface changes from elastic-plastic to fluid,and its temperature is much higher than other part of the spherical shell.
Keywords:explosive sintering of powders  spherical-symmetric collapse  one-dimensional plastic flow  thermo-visco-plasticity
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