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负压实型铸造金属基复合材料的成型理论研究
引用本文:崔益华,陶杰,沃丁柱.负压实型铸造金属基复合材料的成型理论研究[J].南京航空航天大学学报,2002,34(3):221-225.
作者姓名:崔益华  陶杰  沃丁柱
作者单位:南京航空航天大学材料科学与技术学院,南京,210016
摘    要:负压实型铸造金属基复合材料的合金液前沿受到气化模气化产生的气体阻力Pc,凝固阻力Pf,毛细作用力Pc,自身重力G,纤维间的摩擦阻力f以及充型时端部紊流引起的非线性力等,其中气体的阻力,凝固阻力,毛细作用力是主要的作用力,文中通过分析影响这些作用力的因素,提出了改善合金液充填的有效途径;严格控制气化模中纤维的分布形态,使得合金液的充填速度均匀,控制浇注过程中的工艺参数,对纤维进行适当的表面处理,改善润湿性能等。

关 键 词:负压实型铸造  金属基复合材料  成型理论  理论研究  浸渗  润湿  影响因素  浇注
文章编号:1005-2615(2002)03-0221-05
修稿时间:2001年7月6日

Theoretical Analysis on Forming FRM by V-EPC Process
Cui Yihua Tao Jie Wo Dingzhu College of Material Science and Technology,Nanjing University of Aeronautics & Astronautics Nanjing ,P.R.China.Theoretical Analysis on Forming FRM by V-EPC Process[J].Journal of Nanjing University of Aeronautics & Astronautics,2002,34(3):221-225.
Authors:Cui Yihua Tao Jie Wo Dingzhu College of Material Science and Technology  Nanjing University of Aeronautics & Astronautics Nanjing  PRChina
Institution:Cui Yihua Tao Jie Wo Dingzhu College of Material Science and Technology,Nanjing University of Aeronautics & Astronautics Nanjing 210016,P.R.China
Abstract:To analyze the process of forming FRM by V-EPC method, a mathematical model for liquid metal infiltration of a unidirectional continuous fiber array is established. The forces exerted on the flowing melt in vacuum-evaporative casting process include the pressure of the gasified EPS (P h), the internal viscous friction of the melt (P f), the capillary pressure (P c), the pressure difference (P z) between the flowing front and the runner, the gravity (G), etc. However, the former three of these forces are the key forces. The factors affecting these forces are analyzed. On the basis of the effective ways to improve infiltration process are also developed: to strictly control the fiber distribution in the EPS, to optimize casting parameters, to treat the surface of reinforcing fibers and ameliorate infiltrating properties. Steel fiber reinforced aluminum composite materials are successfully prepared by above control factors.
Keywords:metal matrix composite  vacuum-evaporative casting  theoretical analysis  infiltration process  moisture
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