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The study of linear vibrational welding of moso bamboo

机译:莫斯竹子线性振动焊接研究

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摘要

Moso bamboo (Phyllostachys pubescens) linear-vibration welded joints with three different combinations between the inner and outer surfaces were studied in this paper. The tensile-shear strength, the microstructures and welded layer thickness observed by SEM and the density profiles measured by X-ray densitometer of the welded samples have been considered and compared. The maximum average tensile-shear strength of outer-outer, inner-inner and outer-inner welded joints were 5.91, 7.15 and 6.24MPa, respectively. And only the inner-inner welded joints have the bamboo failure after the shear test. The welded joint is composed of a lot of bamboo fibers entangled in the molten and flown intercellular materials which decide the final mechanical performance of the welded joints. The thickness of the outer-outer welded layer is the smallest and the inner-inner welded layer is the highest. However, the maximum density reached in the inner-inner welded joint is smaller than in the outer-outer welded joint owing to the different vascular distribution in the cross section of the moso bamboo. The relative density can be used to reflect the tensile-shear strength of the welded joints. The natural structure of bamboo really do have significant influences on the welded interface.
机译:在本文中研究了莫斯竹(Phyllostachys Pubescens)线性振动焊接接头,内部和外表面之间的三种不同组合。通过SEM观察到的拉伸剪切强度,通过SEM观察的微观结构和焊接层厚度和通过焊接样品的X射线密度计测量的密度分布。外部外部内部和外内焊接接头的最大平均拉伸剪切强度分别为5.91,7.15和6.24MPa。并且只有内焊接接头在剪切试验后具有竹制突发。焊接接头由大量缠绕在熔融和飞行的细胞内材料中缠结的竹纤维组成,该材料决定焊接接头的最终机械性能。外焊层的厚度是最小的,内部内部焊接层最高。然而,由于摩梭竹的横截面中的血管分布不同,内部焊接接头达到的最大密度小于外焊接接头中的外焊接接头。相对密度可用于反映焊接接头的拉伸剪切强度。竹子的自然结构确实确实对焊接界面产生了重大影响。

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