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FINITE ELEMENT ANALYSIS OF AXIAL FEED BAR ROLLING
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作者 C.G. Xu G.H. Liu G.S. Ren Z. Shen C.P. Ma W. W. Ren 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2007年第6期463-468,共6页
A flexible technique of hot working of bars by axial feed rolling was introduced. The process deformation, strain field, stress field, and temperature fie M of the parts are analyzed by finite element method ( FEM)-... A flexible technique of hot working of bars by axial feed rolling was introduced. The process deformation, strain field, stress field, and temperature fie M of the parts are analyzed by finite element method ( FEM)-simulation software DEFORM-3D. The material flow rule and tool load have been investigated. 展开更多
关键词 axial feed bar rolling DEFORMATION FEM (finite element method) stress field strain feld temperature field
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Research on Machined Surface Veins Based on Turn-milling Technology
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作者 金成哲 《Defence Technology(防务技术)》 SCIE EI CAS 2009年第4期241-245,共5页
Turn-milling which history dates from the end of the 20th century is one of the advanced metal cutting technologies. It could precisely machine hard materials as an alternative to turning for certain limitations. A se... Turn-milling which history dates from the end of the 20th century is one of the advanced metal cutting technologies. It could precisely machine hard materials as an alternative to turning for certain limitations. A series of orthogonal turn-milling surface veins experiments have been done on the turn-milling machining center by machining aluminum alloy,and then the nexus between the surface veins and the cutting regimes is studied. The mathematical model for surface vein direction angle is established,also the forming mechanics of surface vein direction is analyzed. Its variety regulation presents decreasing trend with as axial feed and cutter rotary speed increasing. For different eccentric distance of orthogonal turn-milling,the surface veins are different. 展开更多
关键词 machinofature technique and equipment axial feed cutter rotary speed eccentric distance surface veins TURN-MILLING
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