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首页> 外文期刊>The Journal of Adhesion >Predicted and Measured Bond-Line Read-Through Response in Composite Automotive Body Panels Subjected to Elevated Temperature Cure
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Predicted and Measured Bond-Line Read-Through Response in Composite Automotive Body Panels Subjected to Elevated Temperature Cure

机译:高温固化的复合材料车身面板的预测和测量粘合线直通响应

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摘要

Visible distortions in automotive Class "A" surfaces, while being merely cosmetic defects, are unacceptable to customers. One type of surface distortion, referred to as bond-line read-through (BLRT), can occur due to the elevated temperature cure of an adhesive in bonded panel assemblies. The severity of these distortions can be measured by the local curvature of the surface. A finite element (FE) model capable of predicting the occurrence and severity of BLRT-induced surface distortions is being developed and validated. FE model predictions for the surface curvature of the outer panel in a bonded, laboratory scale assembly subjected to a simulated cool-down from the adhesive cure temperature to room temperature were compared with measured results. FE model predictions based on linear elastic material properties for the adhesive and substrate over-predicted the magnitude of the curvature in the outer panel as compared with the measured results. FE model predictions based on viscoelastic material properties for the adhesive and linear elastic material properties for the substrate resulted in substantially better correlation between predicted and measured distortions.
机译:客户不能接受汽车“ A”类表面上的可见变形,而仅仅是外观缺陷。由于粘合面板组件中粘合剂的高温固化,可能会发生一种类型的表面变形,称为粘合线直通(BLRT)。这些变形的严重程度可以通过表面的局部曲率来衡量。一个能够预测BLRT引起的表面变形的发生和严重程度的有限元(FE)模型正在开发和验证中。将粘合后的实验室规模组件中的外板表面曲率的有限元模型预测与从粘合剂固化温度到室温的模拟冷却进行了比较,并将其与测量结果进行了比较。基于线性弹性材料特性的胶粘剂和基材的有限元模型预测与测量结果相比,过度预测了外板的曲率大小。基于粘合剂的粘弹性材料特性和基材的线性弹性材料特性的有限元模型预测导致预测的变形和测量的变形之间的相关性更好。

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