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Determination of interlaminar residual thermal stresses in a woven 8HS graphite/PMR-15 composite using X-ray diffraction measurements

机译:使用X射线衍射测量确定编织的8HS石墨/ PMR-15复合材料中的层间残余热应力

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This work is a continuation of the research recently presented in [1] and [2] on the determination of residual thermal stresses in graphitelpolyimide composites with and without externally applied bending loads. In the previous work [1, 2] a combined experimental and numerical methodology for the determination of the residual stresses in unidirectional graphite/PMR-15 composites based on X-ray diffraction (XRD) measurements of residual strains in embedded aluminum (Al) and silver (Ag) inclusions has been presented. In this research, the previously developed approach has been applied to evaluate the residual thermal interlaminar stresses in an 8 harness satin (8HS) woven graphite/PMR-15 composite. First, residual thermal stresses have been measured by XRD in aluminum inclusions embedded between the first and second plies of a four-ply 8HS woven graphite/PMR-15 composite. The measurements have been conducted with the composite specimens subjected to four-point bending deformations. Second, viscoelastic computations of interlaminar residual stresses in the composite have been performed using classical laminated plate theory (CLPT) following the manufacturing procedure. Third, the residual strains and stresses in the inclusions have been numerically predicted using the viscoelastic Eshelby model for multiple spherical inclusions. Finally, the interlaminar residual stresses in the composite have been extracted from the XRD strains in the Al inclusions, again using the viscoelastic Eshelby model, and subsequently compared with the residual stresses from the CLPT. It has been shown in this study that the residual interlaminar thermal stresses can be accurately determined not only in unidirectional graphite/polyimide systems as presented in [1] and [2], but also in woven graphite polymer matrix composites.
机译:这项工作是[1]和[2]中最近提出的关于确定有无外部弯曲载荷的石墨聚酰亚胺复合材料中残余热应力的研究的延续。在先前的工作[1,2]中,基于X射线衍射(XRD)测量埋藏在铝(Al)和铝中残余应变的基础上,确定了单向石墨/ PMR-15复合材料残余应力的组合实验和数值方法已经提出了银(Ag)夹杂物。在这项研究中,先前开发的方法已应用于评估8线缎(8HS)编织石墨/ PMR-15复合材料中的残余层间热应力。首先,已经通过XRD测量了嵌入在四层8HS编织石墨/ PMR-15复合材料的第一层和第二层之间的铝夹杂物中的残余热应力。测量是在经受四点弯曲变形的复合材料试样上进行的。其次,遵循制造程序,使用经典的层压板理论(CLPT)对复合材料中的层间残余应力进行了粘弹性计算。第三,已使用粘弹性Eshelby模型对多个球形夹杂物进行了数值预测,以预测夹杂物中的残余应变和应力。最后,再次使用粘弹性Eshelby模型从铝夹杂物的XRD应变中提取复合材料的层间残余应力,然后将其与CLPT的残余应力进行比较。这项研究表明,不仅在[1]和[2]中提出的单向石墨/聚酰亚胺体系中,而且在机织石墨聚合物基复合材料中,也可以精确确定残余层间热应力。

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