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High-speed 3D digital image correlation of low-velocity impacts on composite plates

机译:低速冲击复合板的高速3D数字图像关联

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Composites are beginning to be used in a variety of different applications throughout industry. However, certification and damage tolerance is a growing concern in many aerospace and marine applications. Transverse impact of composites results in damage in the form of transverse matrix crack, delamination, fiber breakage and permanent deformation. Low-velocity impact experiments were conducted on 3.2 mm thick IM7/977-3 composites with 10 J of energy (1.888 m/s). High-speed digital photography was used to capture impact phenomenon of a composite's back surface. The specimens were speckled to perform 3D digital image correlation to analyze the displacements and strains that occurred on the back surface. The results from this study provide basic knowledge of the impact event such as deformation, strains, residual strains, damage threshold load, transverse matrix crack initiation and propagation. Published by Elsevier Ltd.
机译:复合材料已开始在整个行业中用于各种不同的应用中。然而,在许多航空航天和海洋应用中,认证和损坏容忍度日益受到关注。复合材料的横向冲击以横向基体裂纹,分层,纤维断裂和永久变形的形式导致损坏。在3.2 mm厚的IM7 / 977-3复合材料上进行了低速冲击实验,能量为10 J(1.888 m / s)。高速数字摄影用于捕获复合材料背面的撞击现象。对标本进行斑点处理以执行3D数字图像关联,以分析背面发生的位移和应变。这项研究的结果为冲击事件提供了基础知识,例如变形,应变,残余应变,损伤阈值载荷,横向基体裂纹的萌生和扩展。由Elsevier Ltd.发布

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