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Influence of the resin on interlaminar mixed-mode fracture

机译:树脂对层间混合模式断裂的影响

摘要

Both literature review data and new data on toughness behavior of seven matrix and adhesive systems in four types of tests were studied in order to assess the influence of the resin on interlaminar fracture. Mixed mode (i.e., various combinations of opening mode 1, G sub 1, and shearing mode 2; G sub 2) fracture toughness data showed that the mixed mode relationship for failure appears to be linear in terms of G sub 1 and G sub 2. The study further indicates that fracture of brittle resins is controlled by the G sub 1 component, and that fracture of many tough resins is controlled by total strain-energy release rate, G sub T. Regarding the relation of polymer structure and the mixed mode fracture: high mode 1 toughness requires resin dilatation; dilatation is low in unmodified epoxies at room temperature/dry conditions; dilatation is higher in plasticized epoxies, heated epoxies, and in modified epoxies; modification improves mode 2 toughness only slightly compared with mode 1 improvements. Analytical aspects of the cracked lap shear test specimen were explored.
机译:为了评估树脂对层间断裂的影响,研究了文献综述数据和关于四种基质测试中的七个基体和粘合剂体系的韧性行为的新数据。混合模式(即,打开模式1,G子1和剪切模式2; G子2的各种组合)断裂韧性数据表明,失效的混合模式关系在G子1和G子2方面似乎是线性的研究进一步表明,脆性树脂的断裂是由G sub 1组分控制的,而许多韧性树脂的断裂是由总应变能释放速率G sub T所控制的。断裂:高模1韧性要求树脂膨胀;在室温/干燥条件下,未经修饰的环氧树脂的膨胀很小;在增塑环氧树脂,加热环氧树脂和改性环氧树脂中,膨胀较高;与模式1的改进相比,修改仅稍微改善了模式2的韧性。探讨了破裂的搭接剪切试样的分析方面。

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