PID控制器
热固性聚合物
复合数
固化(化学)
计算机科学
材料科学
复合材料
机械工程
工程类
温度控制
作者
Biao Wang,Shuaijie Fan,Jiping Chen,Weidong Yang,Weiping Liu,Yan Li
标识
DOI:10.1016/j.compositesa.2022.107321
摘要
Process-induced deformation (PID) is unavoidable during thermosetting composite manufacturing, and the PID may reduce the assembly accuracy and even cause a service life reduction of the structures. The mechanism of the PID is complex as the curing process involves strong coupling effects of thermo-chemo-mechanical behaviors of composite components. In this review, the intrinsic and extrinsic parameters affecting the PID of composites are summarized from an intuitive viewpoint. The recent progress of analytical and numerical approaches for PID prediction and optimization, as well as the application of artificial intelligence (AI)-assisted methods for optimization, fast prediction, and sensitivity analysis are summarized. Moreover, the latest process optimization strategies for minimizing the PID during manufacture are discussed in five categories, and potential research directions are discussed. Progress in AI-assisted methods for PID prediction and control, which have great application prospects for Industrial 4.0, are emphasized in this review.
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