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燃烧合成(Ti,W)C的形成过程 被引量:5
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作者 李劲风 张昭 +1 位作者 郑子樵 徐协文 《稀有金属与硬质合金》 CAS CSCD 2001年第4期1-6,共6页
研究了W /(Ti+W ) =0 .4 0 ,0 .5 4两种配比的Ti-W -C体系在不同反应条件下的燃烧合成产物相组成及燃烧块断面组织 ;结合燃烧前沿激冷淬熄法 ,分析了其燃烧前沿高温动态反应过程。研究表明 ,体系燃烧过程中存在两种反应模式。熔化 -溶... 研究了W /(Ti+W ) =0 .4 0 ,0 .5 4两种配比的Ti-W -C体系在不同反应条件下的燃烧合成产物相组成及燃烧块断面组织 ;结合燃烧前沿激冷淬熄法 ,分析了其燃烧前沿高温动态反应过程。研究表明 ,体系燃烧过程中存在两种反应模式。熔化 -溶解 -析出机制 :燃烧高温使燃烧前沿Ti粉熔化 ,W、C溶解于熔融Ti中 ,而后 (Ti,W)C从Ti-W -C熔体中析出。扩散 -固溶机制 :当燃烧温度不足以使燃烧前沿Ti粉熔化时 ,C沿燃烧过程中形成的Ti颗粒裂纹快速扩散 ,与固态Ti核反应形成TiC ;同时通过C的扩散 ,W与C反应先形成W2 C ,然后转变成WC ;而后WC固溶至TiC中 ,形成 (Ti,W)C。 展开更多
关键词 燃烧合成 熔化-溶解-析出机制 扩散-固溶机制 碳化钛 碳化钨 石实合金
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Simulation and experiment analysis on thermal deformation of tool system in single-point diamond turning of aluminum alloy 被引量:4
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作者 ZHANG Yuan-jing DONG Guo-jun ZHOU Ming 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2223-2229,共7页
The aim of this work is to simulate thermal deformation of tool system and investigate the influence of cutting parameters on it in single-point diamond turning(SPDT) of aluminum alloy. The experiments with various cu... The aim of this work is to simulate thermal deformation of tool system and investigate the influence of cutting parameters on it in single-point diamond turning(SPDT) of aluminum alloy. The experiments with various cutting parameters were conducted. Cutting temperature was measured by FLIR A315 infrared thermal imager. Tool wear was measured by scanning electron microscope(SEM). The numerical model of heat flux considering tool wear generated in cutting zone was established. Then two-step finite element method(FEM) simulations matching the experimental conditions were carried out to simulate the thermal deformation. In addition, the tests of deformation of tool system were performed to verify previous simulation results. And then the influence of cutting parameters on thermal deformation was investigated. The results show that the temperature and thermal deformation from simulations agree well with the results from experiments in the same conditions. The maximum thermal deformation of tool reaches to 7 μm. The average flank wear width and cutting speed are the dominant factors affecting thermal deformation, and the effective way to decrease the thermal deformation of tool is to control the tool wear and the cutting speed. 展开更多
关键词 ultra-precision cutting tool wear DIAMOND thermal deformation form accuracy
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