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Mechanical Behavior Analysis of Apus Bamboo (Gygantochloa sp) Thin Plate Composite Due to Adhesive Joint and Water Absorption Using Experimental and Finite Element Method

机译:APUS竹子(Gygantochloa SP)薄板复合材料的力学行为分析由于粘接接头和吸水性使用实验和有限元法

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The mechanics of adhesive-lap joints of apus bamboo thin plate composite were investigated experimentally and numerically. Tensile load were applied to determine mechanical strength of adhesive joint overlaps. Modal analysis were employed to determine natural frequency of bamboo apus single-lap joint for different overlap and plate thickness configurations. This research found the strength of bamboo adhesive joints decreased 11% due to the effect of 24 hours water immersion. Natural frequencies of single-lap adhesive joint configuration were equivalently decreased in decreament of overlap joint and thickness plate. Finite element models using ABAQUS Software were developed for static and dynamic analysis and compared with the experimental results. Compared to experimental results, numerical analysis gives the prediction with 4% difference for the mean shear stress at failure, and 7-12% difference for the natural frequencies.
机译:实验和数值研究了APUS竹薄板复合材料的粘合剂接头的力学。施加拉伸载荷以确定粘合剂关节重叠的机械强度。使用模态分析来确定不同重叠和板厚配置的竹APUS单圈接头的固有频率。本研究发现,由于24小时水浸的效果,竹粘合剂的强度降低了11%。在重叠接头和厚度板的下降时,单圈粘合剂构造的自然频率等效地降低。使用ABAQUS软件的有限元模型开发用于静态和动态分析,并与实验结果相比。与实验结果相比,数值分析给出了对失败的平均剪切应力的4%差异,对自然频率的差异为7%。

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