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首页> 外文期刊>International Journal of Adhesion & Adhesives >Experimental analysis of tensile and compressive failure load in single-lap adhesive joint of green composites
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Experimental analysis of tensile and compressive failure load in single-lap adhesive joint of green composites

机译:绿色复合材料单圈粘合剂中拉伸和压缩破坏载荷的实验分析

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摘要

In this study, the tensile and compressive performance of adhesively bonded single-lap joint of green composites (bamboo fiber/Polylactic acid (PLA)) has been experimentally investigated. The green composites have been fabricated by film stacking method in compression molding. The important factors affecting the performance of the adhesively bonded joint such as overlapping length of the specimen (20, 40, and 60 mm) and width of the specimen (20, 26, and 32 mm) have been studied for epoxy, polyurethane, and parent polymer (PLA) used as bonding materials for joining of developed green composites. From the experimental analysis, it has been found that the higher levels of width and overlapping length of the joint specimen offer better tensile and compressive strength of the joint specimen. The failure loads of the joint specimens have been found to be more for epoxy as compared to PLA and polyurethane used for the purpose of joining. The relative significance of the chosen input parameters has also been found by performing analysis of variance (ANOVA). The most significant parameter has been found to be the width of the specimen for tensile failure load and type of bonding material for compressive failure load. The failure mode analysis has revealed that adhesive and cohesive failures are the major mode of failure of the adhesively bonded green composites under tensile and compressive loadings.
机译:在该研究中,经过实验研究了绿色复合材料的粘合粘结的单圈接头的拉伸和压缩性能(竹纤维/聚乳酸(PLA))。通过压缩成型中的薄膜堆叠方法制造了绿色复合材料。研究了诸如标本(20,40和60mm)的重叠长度的粘合接头的性能的重要因素已经研究了环氧树脂,聚氨酯和用于接合开发的绿色复合材料的母体聚合物(PLA)用作接合的粘合材料。从实验分析中,已经发现,关节标本的宽度和重叠长度的较高水平提供更好的拉伸和抗压强度的关节标本。与PLA和用于连接目的的聚氨酯相比,已发现联合标本的故障负荷更多用于环氧树脂。还通过执行方差分析(ANOVA)来找到所选择的输入参数的相对重要性。最重要的参数已被发现是标本的宽度,用于拉伸破坏负荷和用于压缩破坏载荷的粘合材料类型。故障模式分析揭示了粘合剂和粘性故障是在拉伸和压缩载体下粘合粘合的绿色复合材料的主要失效模式。

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