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Investigation of transverse residual stresses in a thick pultruded composite using digital image correlation with hole drilling

机译:利用数字图像关联和钻孔研究厚拉挤复合材料的横向残余应力

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Process induced residual stresses are one of the main sources of defects such as (pre) mature matrix cracking during pultrusion of fiber reinforced polymer composite profiles. Recently, comprehensive process models have been developed to understand and describe the underlying mechanisms of the residual stresses in pultrusion processes. The predicted stresses however have not been validated with experimental measurements which are necessary to verify the implemented material models and assumptions in the process models. A hole drilling method with digital image correlation (DIC) is used in the present work to measure the transverse strain relaxation due to material removal in a pultruded thick composite profile (20 x 20 mm) made of unidirectional glass/polyester. The corresponding residual stress state is back calculated using the measured strains in a finite element based numerical model. The estimated level of transverse residual stress in the core of the profile was found to be 6.1 MPa in tension.
机译:过程引起的残余应力是缺陷的主要来源之一,例如在纤维增强的聚合物复合材料型材的拉挤过程中(预)成熟的基体开裂。最近,已经开发了综合的过程模型来理解和描述拉挤成型过程中残余应力的潜在机理。但是,预测的应力尚未通过实验测量验证,这对于验证已实现的材料模型和过程模型中的假设是必要的。在本工作中,采用了具有数字图像相关性(DIC)的钻孔方法,以测量由单向玻璃/聚酯制成的拉挤厚复合型材(20 x 20 mm)中由于材料去除而引起的横向应变松弛。在基于有限元的数值模型中,使用测得的应变反算出相应的残余应力状态。发现轮廓中心的横向残余应力水平为6.1 MPa。

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