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Modeling of strain in multifilamentary wires deformed by thermal contraction and transverse forces

机译:热收缩和横向力变形的多丝线中应变的建模

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摘要

A previously published analytical model that describes a simplified wire geometry with three stacked cylinders is compared with finite element model calculations. The thermal strain from the matrix on the superconducting filaments is considered first. It appears that the analytical model is able to describe the strain that occurs in the filaments relatively accurate. Especially the radial dependence of the strain if a central core of normal material is present, is described quit well by the analytical model. The strain inside a wire surrounded by epoxy and subjected to a transverse load is almost uniform and can be approximated with an analytical model too. When yielding is involved to simulate a more localised transverse load inside a multifilamentary wire it is necessary to consider a numerical model.
机译:将先前发布的分析模型与有限元模型计算进行比较,该模型描述了具有三个堆叠圆柱体的简化导线几何形状。首先考虑超导细丝上来自基质的热应变。看来分析模型能够相对准确地描述长丝中发生的应变。尤其是,如果存在正常材料的中心核,则应变的径向相关性将通过分析模型很好地描述。导线周围被环氧树脂包围并承受横向载荷的应变几乎是均匀的,并且也可以用分析模型来近似。当涉及屈服以模拟复丝内部更局部的横向载荷时,有必要考虑数值模型。

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