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Numerical simulation on process-induced deformation of autoclaved V-shaped composite parts

机译:高压灭菌的V形复合材料零件过程变形的数值模拟

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Anisotropic thermal contraction, resin chemical shrinkage and tool-part interaction are the key parameters which induce residual stress in composite parts. For V-shaped composite parts, when released from the tool after autoclave processing, the residual stress causes deformation which acts as a decrease of the enclosed angle called spring-in. Spring-in will affect the manufacturing precision and cause difficulty in assembling. This paper presents a linear elastic model to study the spring-in of V-shaped composite parts made of ZT7H/5429, considering the effect of thermal contraction, resin shrinkage and tool interaction. An experiment was conducted to study the spring-in of ZT7H/5429 parts. The validity of the linear elastic model was demonstrated by comparing with experimental results. The effect of lay-up, thickness, parts angles and corner radius on spring-in was studied by the model and the result was given in the paper.
机译:各向异性热收缩,树脂化学收缩和工具零件之间的相互作用是引起复合零件残余应力的关键参数。对于V形复合材料零件,当高压釜处理后从工具中释放时,残余应力会引起变形,该变形会导致被称为弹入的封闭角的减小。弹入会影响制造精度并导致组装困难。考虑到热收缩,树脂收缩和工具相互作用的影响,本文提出了一种线性弹性模型来研究由ZT7H / 5429制成的V形复合零件的弹跳。进行了一项实验,以研究ZT7H / 5429零件的弹入。通过与实验结果的比较证明了线性弹性模型的有效性。通过模型研究了叠层,厚度,零件角度和拐角半径对弹入的影响,并在结果中给出了结果。

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