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首页> 外文期刊>Journal of Composite Materials >PLANE-STRAIN FINITE ELEMENT MODEL FOR PROCESS-INDUCED RESIDUAL STRESSES IN A GRAPHITE/PEEK COMPOSITE
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PLANE-STRAIN FINITE ELEMENT MODEL FOR PROCESS-INDUCED RESIDUAL STRESSES IN A GRAPHITE/PEEK COMPOSITE

机译:石墨/ PEEK复合材料过程中残余应力的平面应变有限元模型

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摘要

A plane-strain, linear elastic finite element model with temperature-dependent matrix properties was developed to analyze residual stresses in graphite/PEEK composites. The residual stress model takes into account the mismatch of the thermal expansion coefficients and the crystallization shrinkage of the matrix, Good agreement between the reported transverse normal stress data and the modeling result was observed in the analysis of a [0(40)](T) APC-2 laminate processed at a 35 degrees C/s surface cooling rate. Furthermore, [0(10)/90(6)](T) APC-2 laminates were manufactured at different cooling rates to verify the model. The induced residual thermal deformations were measured by a shadow moire system. The model estimated the out-of-plane displacement of the non-symmetrical laminates accurately. The optimum processing cycles, which minimize the residual stresses and maximize the mechanical properties of composite materials, were found to be different for different lay-ups. Therefore, in order to minimize the residual stresses and to optimize the mechanical performance of the composite laminates, an appropriate processing cycle must be chosen for each specific lay-up. [References: 25]
机译:建立了具有随温度变化的基体特性的平面应变线性弹性有限元模型,以分析石墨/ PEEK复合材料中的残余应力。残余应力模型考虑了热膨胀系数和基体的结晶收缩的不匹配,在[0(40)](T )APC-2层压板以35摄氏度/秒的表面冷却速率加工。此外,以不同的冷却速率制造了[0(10)/ 90(6)](T)APC-2层压板以验证模型。所产生的残余热变形通过阴影波纹系统测量。该模型准确地估计了非对称层压板的平面外位移。发现对于不同的铺层来说,最小化残余应力和最大化复合材料的机械性能的最佳加工周期是不同的。因此,为了最小化残余应力并优化复合层压板的机械性能,必须为每个特定的铺层选择合适的加工周期。 [参考:25]

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