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新型3层悬挂式摇床三维设计及运动学仿真分析 被引量:2

3D design and kinematic simulation of new-type three-layered suspension shaking table
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摘要 针对单层传统摇床选矿效率低、占地面积大等缺点,设计一种3层悬挂式摇床,并对其进行了运动动力学仿真分析,以提高选矿效率。用SolidWorks三维机械设计软件,对3层悬挂式摇床的零部件进行了三维特征造型设计,并完成了该机的整体装配设计;用ADAMS软件对其进行运动学仿真,并对仿真结果进行了分析。可根据不同矿物、矿料调整相应冲程、冲次,得到对应技术参数,以提供给不同的矿物选别。 In view of low beneficiation efficiency and large land area of the traditional monolayer shaking table, a kind of three-layered suspension shaking table was designed, and its kinematic simulation and analysis were conducted so as to improve the beneficiation efficiency. SolidWorks was applied to carry out 3D feature and profle design of main components of the three-layered suspension shaking table, and overall assembly design was achieved. ADAMS was applied to conduct kinematic simulation of the shaking table, and the simulation results were analyzed. Various technical parameters could be obtained through adjusting impact stroke and impact frequency according to different mineral features, so as to provide different beneficiation process.
出处 《矿山机械》 北大核心 2013年第3期96-100,共5页 Mining & Processing Equipment
关键词 3层悬挂式摇床 三维设计 SOLIDWORKS ADAMS 仿真分析 three-layered suspension shaking table 3D design SolidWorks ADAMS simulation and analysis
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