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Tool-part interaction in composites microwave curing: Experimental investigation and analysis

机译:复合材料的工具部件相互作用微波固化:实验调查和分析

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摘要

The tool-part interaction of composite materials during microwave curing is different from conventional thermal heating, mainly because of the rapid and selective heating mechanism of microwave. Novel measurement and analysis approaches of microwave curing induced tool-part shear stresses were established and verified in this article. The optical fiber sensors were placed in the groove of tool surface to measure the strain values, which were converted to the tool-part shear stresses. A comprehensive friction coefficient was calculated by the shear stresses, and it was presented by considering the thermal expansion mismatch of composite/tool and the chemical shrinkage of resin. In order to validate the accuracy of model, the shape dimension of microwave cured scaling down leading edge of the composite part was measured to compare with simulation model. The results exhibited that the presented model can significantly decrease the prediction error of composite deformation compared with other methods during microwave curing.
机译:微波固化过程中复合材料的工具部件相互作用与常规热加热不同,主要是因为微波的快速和选择性加热机制。在本文中建立并验证了微波固化诱导工具部剪切应力的新型测量和分析方法。将光纤传感器放置在工具表面的凹槽中以测量应变值,该应变值转化为刀具部分剪切应力。通过剪切应力计算综合摩擦系数,并通过考虑复合材料/工具的热膨胀和树脂的化学收缩来提出。为了验证模型的准确性,测量了复合部件的微波固化缩放的形状尺寸,以与仿真模型进行比较。结果表明,与微波固化期间的其他方法相比,所呈现的模型可以显着降低复合变形的预测误差。

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