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爆炸压涂钨铜覆层到铜表面的研究
引用本文:陈 翔,李晓杰,闫鸿浩,王小红,缪玉松.爆炸压涂钨铜覆层到铜表面的研究[J].稀有金属材料与工程,2018,47(3):968-971.
作者姓名:陈 翔  李晓杰  闫鸿浩  王小红  缪玉松
作者单位:大连理工大学工业装备结构分析国家重点实验室
摘    要:采用爆炸烧结将钨铜合金覆层烧结到纯铜表面的方法,即将钨铜合金粉末预压到铜板的表面后,进行通氢烧结,然后通过爆炸压实将混合粉末进一步压实在铜板表面,最后扩散烧结成为钨铜复合材料。先采用AUTODYN软件模拟了爆炸压实过程中粉末与铜板中的压力分布,确定了一套可以使覆层粉末中压力分布均匀,有利于钨铜合金粉末均匀致密化的参数。而后进行爆炸压实试验,制出的试样覆层密度达到了理论密度的99.3%。对爆炸后的试件进行电子探针检测,检测结果表明钨铜粉混合均匀,钨颗粒的尺寸比铜颗粒要大的多。断口分析结果显示,钨铜覆层的断口形貌不同于传统的断口形貌。钨铜结合面的形貌分析表明,钨铜合金密实的烧结在了铜基体的表面。

关 键 词:钨铜合金覆层  爆炸压实  断口分析
收稿时间:2016/1/21 0:00:00
修稿时间:2016/2/2 0:00:00

Explosive Compact-coating Tungsten Copper Alloy To Copper Surface
chen Xiang,Li Xiaojie,Yan Honghao,Wang Xiaohong and Miao Yusong.Explosive Compact-coating Tungsten Copper Alloy To Copper Surface[J].Rare Metal Materials and Engineering,2018,47(3):968-971.
Authors:chen Xiang  Li Xiaojie  Yan Honghao  Wang Xiaohong and Miao Yusong
Affiliation:Dalian University of Technology,Dalian University of Technology,,,
Abstract:This paper proposes a method to sintering tungsten-copper alloy coating layer to copper plate surface. Sintering in the hydrogen after pre-compacted tungsten-copper alloy powder to the surface of the copper plate, then compacte the powder by explosive sintering,diffusion sintering after explosive compaction.The compressing process of explosive compaction was simulated using the commercially available package AUTODYN.Numerical simulation indicates deformation of the coating layer and pressure distribution during the compressing process,ensure the parameters of experiment is well.Use these parameters we mke the coating layer up to 99.3% of the theoretical density.Microstructure characteristics indicate that tungsten copper powder well mixed.The size of the tungsten particles is larger than copper particles.The SEM fracture surface analysis is different from traditional fracture. Tungsten copper joint surface,analyzed by SEM,indicates that tungsten copper alloy sintered on the surface of the copper.
Keywords:Tungsten copper alloy coating layer  Explosive compaction  SEM fracture surface analysis
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