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国家高技术研究发展计划(2008AA042509)

作品数:3 被引量:9H指数:2
相关作者:成法坤郝瑾刘一磊汪洋郝乐更多>>
相关机构:哈尔滨工业大学中国重型机械研究院更多>>
发文基金:国家高技术研究发展计划更多>>
相关领域:金属学及工艺理学一般工业技术机械工程更多>>

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液体静压导轨的仿真和实验模态分析
2013年
液体静压导轨在超精密机床中有着广泛的应用,其对机床的动态性能有重要的影响,因此要确定导轨的动态特性。本文对所设计的液体静压导轨进行了仿真和实验模态分析,得到了导轨的固有频率,模态阵型及阻尼系数等模态参数,为静压导轨的设计与使用提供参考依据,同时也为全面掌握液体静压导轨的性能与整机建模分析打下了基础。
郝乐刘一磊郝瑾马波成法坤汪洋
关键词:液体静压导轨仿真模态参数
Experimental and Finite Element Study of Steady State Micro-cutting Characteristics of Aluminum Alloy (2A12)被引量:3
2011年
This paper studies the micro-cutting characteristics of aluminum alloy (2A12) based on a series of orthogonal experiments and finite element method (FEM) simulations. An energy-based ductile failure law was proposed in the FEM simulation. The simulated cutting forces and chip morphology were compared with experimental results. The simulation result indicates that there is a close relationship between the cutting force and cutting heat. The micro-cutting force decreases as the heat flux vector increases. Both the cutting heat and the micro-cutting force need a finite time to achieve a steady state. It is observed that with the cutting speed of 169.95 m/min and uncut chip thickness of 6 μm, the heat flux vector in the workpiece increases to a stable value after 0.06 ms; meanwhile, the principal cutting force decreases to a steady state correspondingly, i.e., the micro-cutting process achieves the steady state. It is concluded that the steady state micro-cutting simulation can reflect the cutting process accurately.
陈光任成祖靳新民郭韬
关键词:微切削
Experimental Study on Surface Integrity of Ti-6Al-4V in High Speed Side Milling被引量:6
2012年
Aiming at the surface integrity of titanium alloy Ti-6Al-4V in high speed side milling, a series of side mill- ing tests were carried out with uncoated carbide milling cutter at various milling speeds. Surface roughness, residual stress, subsurface microstructure and microhardness variations were investigated. The surface roughness measurement results present that the milling speed from 80 to 120 m/min fails to produce better and more stable roughness values compared with the result obtained from 320 to 380 m/min. The residual stresses in the feed direction and axial depth of cut direction are in similar trends for the two milling speed levels mentioned above. Moreover, the residual stress pro- duced at 320 to 380 m/min is lower and more stable than that at 80 to 120 m/min. The microstructure analysis shows that the volume of β phase in the near surface becomes smaller and the deformation of β phase in the near surface be- comes obvious with the increase of the milling speed. Subsurface microhardness variation was observed down to 200 μm below the machined surface at 80 to 120 m/min and down to 160 μm at 320 to 380 m/min. It is concluded that better surface integrity and higher material removal rate can be obtained at 320 to 380 m/min than at 80 to 120 m/min.
杨晓勇任成祖王焱陈光
关键词:MICROHARDNESS
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