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Parametric study on design of composite-foam-resin concrete sandwich structures for precision machine tool structures

机译:精密机床结构复合泡沫树脂混凝土夹芯结构设计的参数研究

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摘要

In this paper, sandwich structures for micro-EDM machines are optimized by using parametric study varying composite geometries and parameters like stacking sequence, thickness and rib geometry. The structures are composed of fibre reinforced composites for skin material and resin concrete and PVC foam (Closed cell, Divinycell) for core materials. Column structure was designed by a beam with cruciform rib and performance indices such as static bending stiffness (EI) and specific bending stiffness (EI/ρ) for dynamic stability are examined by controlling the thickness and stacking sequence of composites. For the machine tool bed, which usually has a plate shape, was designed to have high stiffness in two directions at the same time controlling stacking sequence and rib geometry; that is, rib thickness and number of ribs. The sensitivity of design parameters like rib thickness and composite skin thickness was examined and the optimal condition for high stiffness structure was suggested. Finite element analysis was also performed to verify the static and dynamic robustness of the machine structure. L-shaped joint for combining bed and column of the micro-EDM machine was proposed and fabricated using adhesive bonding. The dynamic performance such as damping characteristics was investigated by vibration tests. From the results optimal configuration and materials for high precision micro-EDM machines are proposed.
机译:在本文中,微型EDM机的夹层结构是通过使用参数研究来改变复合材料的几何形状和参数(例如堆叠顺序,厚度和肋骨几何形状)进行优化的。该结构由用于表皮材料和树脂混凝土的纤维增强复合材料以及用于芯材的PVC泡沫塑料(闭孔,Divinycell)组成。通过具有十字形肋的梁设计柱结构,并通过控制复合材料的厚度和堆叠顺序来检查性能指标,例如静态弯曲刚度(EI)和特定弯曲刚度(EI /ρ)的动态稳定性。对于通常为板状的机床床,设计为在两个方向上具有高刚度,同时控制堆垛顺序和肋的几何形状。即肋的厚度和肋的数量。检查了诸如肋骨厚度和复合蒙皮厚度等设计参数的敏感性,并提出了高刚度结构的最佳条件。还进行了有限元分析,以验证机器结构的静态和动态鲁棒性。提出并采用胶粘剂制造了用于微型EDM机床与柱结合的L形接头。通过振动试验研究了诸如阻尼特性的动态性能。根据结果​​,提出了用于高精度微型EDM机的最佳配置和材料。

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