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首页> 外文期刊>Applied Composite Materials >Experimental and Numerical Investigation of Mixed-Mode Interlaminar Fracture of Carbon-Polyester Laminated Woven Composite by Using Arcan Set-up
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Experimental and Numerical Investigation of Mixed-Mode Interlaminar Fracture of Carbon-Polyester Laminated Woven Composite by Using Arcan Set-up

机译:碳-聚酯层状编织复合材料混合模式层间断裂的Arcan装置实验与数值研究

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摘要

Composite materials are widely used in marine, aerospace and automobile industries. These materials are often subjected to defects and damages from both in-service and manufacturing process. Delamination is the most important of these defects. This paper reports investigation of mixed-mode fracture toughness in carbon–polyester composite by using numerical and experimental methods. All tests were performed by Arcan set-up. By changing the loading angle, α, from 0° to 90° at 15° intervals, mode-I, mixed-mode and mode-II fracture data were obtained. Correction factors for various conditions were obtained by using ABAQUS software. Effects of the crack length and the loading angle on fracture were also studied. The interaction j-integral method was used to separate the mixed–mode stress intensity factors at the crack tip under different loading conditions. As the result, it can be seen that the shearing mode interlaminar fracture toughness is larger than the opening mode interlaminar fracture toughness. This means that interlaminar cracked specimen is tougher in shear loading condition and weaker in tensile loading condition.
机译:复合材料广泛用于船舶,航空航天和汽车工业。这些材料在使用和制造过程中经常遭受缺陷和损坏。分层是这些缺陷中最重要的。本文通过数值和实验方法报道了碳-聚酯复合材料混合模式断裂韧性的研究。所有测试均通过Arcan设置进行。通过以15°的间隔将加载角度α从0°更改为90°,可以获得I型,混合模式和II型断裂数据。通过使用ABAQUS软件获得各种条件的校正因子。还研究了裂纹长度和加载角度对断裂的影响。相互作用j积分法用于分离不同载荷条件下裂纹尖端的混合模式应力强度因子。结果,可以看出,剪切模式层间断裂韧性大于开放模式层间断裂韧性。这意味着层间开裂试样在剪切载荷条件下较坚韧,在拉伸载荷条件下较弱。

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