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Cast Iron And Mineral Cast Applied For Machine Tool Bed - Dynamic Behavior Analysis

机译:铸铁和矿物铸件在机床床身中的应用-动态行为分析。

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Cast iron and mineral cast are the materials most often used in the machine structural elements design (bodies, housings, machine tools beds etc.). The materials significantly differ in physical and mechanical properties. The ability to suppress vibration is one of the most important factors determining the dynamic properties of the machine and has a significant impact on the machining capabilities of a machine tool. Recent research and development trends show that there is a clear tendency to move away from the traditional iron casting to the mineral casting, due to better dynamic properties of the latter. However mineral cast as a structural material for the whole machine tools bed turns out to be insufficient due to its poor mechanical strength properties. The best solution should benefit from the advantages of the cast iron and mineral cast materials while minimizing their drawbacks. The paper presents numerical modal analysis of two lathe beds: the first one made of gray cast iron and the second one made of hybrid connection of cast iron and mineral cast. The analysis was conducted in order to determine the dynamic properties of two bodies of similar shapes made in the traditional (cast iron) and innovative hybrid (cast iron and mineral cast) technology. In addition, an analysis of the static structure rigidity of the two beds was performed. During the simulation studies it was found a significant increase in dynamic stiffness and static rigidity of the machine tool body made of hybrid connection of cast iron and mineral cast. The results of numerical simulations have confirmed the desirability of using hybrid construction because the dynamic properties of such a body are more advantageous in comparison with the conventional body made of cast iron.
机译:铸铁和矿物铸件是机械结构元素设计(主体,外壳,机床床身等)中最常用的材料。这些材料的物理和机械性能明显不同。抑制振动的能力是确定机床动态特性的最重要因素之一,并且对机床的加工能力有重大影响。最近的研究和发展趋势表明,由于矿物铸件具有更好的动态特性,因此有明显的趋势从传统的铁铸件转向矿物铸件。然而,由于机械强度性能差,作为整个机床床身的结构材料铸造的矿物​​却不足。最好的解决方案应受益于铸铁和矿物铸造材料的优点,同时将其缺点降到最低。本文介绍了两个车床的数值模态分析:第一个由灰铸铁制成,第二个由铸铁与矿物铸件混合连接制成。进行分析是为了确定采用传统(铸铁)和创新混合(铸铁和矿物铸铁)技术制成的形状相似的两个物体的动力学特性。另外,对两张床的静态结构刚度进行了分析。在模拟研究中,发现由铸铁和矿物铸件的混合连接制成的机床主体的动态刚度和静态刚度显着提高。数值模拟的结果已经证实了使用混合结构的必要性,因为与传统的铸铁制成的车身相比,这种车身的动态特性更为有利。

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