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Design of μ-CNC machining centre with carbon/epoxy composite-aluminium hybrid structures containing friction layers for high damping capacity

机译:具有碳/环氧复合铝杂化结构的μ-CNC加工中心设计

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摘要

The focus of this paper is on the design of machine tool structures, such as columns and spindle holders, for a 3-axis μ-CNC machining centre. Carbon/epoxy composite-aluminium hybrid structures with friction layers were used to increase structural damping. Two types of hybrid column structures were proposed. Finite element analyses were carried out to calculate both the static deflection of columns due to deadweight and also the first natural frequency of machine tool structures as a function of the stacking angle and thickness of the carbon/epoxy composites. To increase damping capacity, a friction layer was inserted between the aluminium-composite interface. For the design of the structures the stacking angle and the thickness ratio of the composites were considered as major design variables. And the most appropriate stacking sequence of the composite-aluminium hybrid structure employing a friction layer was determined using finite element analyses and vibration tests.
机译:本文的重点是针对3轴μ-CNC加工中心的机床结构(如立柱和主轴架)的设计。具有摩擦层的碳/环氧树脂复合材料-铝杂化结构用于增加结构阻尼。提出了两种类型的混合柱结构。进行了有限元分析,以计算由于静重引起的柱子的静态挠度,以及根据堆积角度和碳/环氧复合材料厚度而变化的机床结构的第一固有频率。为了增加阻尼能力,在铝复合材料界面之间插入了一个摩擦层。对于结构的设计,复合物的堆叠角和厚度比被认为是主要的设计变量。通过有限元分析和振动测试,确定了采用摩擦层的复合铝杂化结构最合适的堆叠顺序。

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