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Research on the Braided Corrugated Hose Subjected to Axial Tension Considering Friction Between Braid and Bellows

机译:考虑梁和波纹管之间摩擦轴向张力的编织波纹软管的研究

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The numerical simulation of the braided corrugated hose is always researched without considering the metallic braided tube, making the results of the study not match the actual situation. To address the problem, the entire braided corrugated hose model is established, and the axial mechanical properties of braided corrugated hose are studied, while the effect of the metallic braided tube on the bellows is also considered. Main conclusions are as follows: the axial stiffness of the braided corrugated hose is non-linear, in the early stages, the deformation is mainly small displacements and the axial stiffness consists of metallic braided tube and bellows respectively, in the later stages, the axial stiffness consists mainly of the contact stiffness between braided tube and bellows. For the bellows, the maximum equivalent stress and strain occur in the area where contact with metallic braided tube, with a maximum stress of 1055MPa. The maximum contact pressure between the metallic braided tube and the bellows is 151.54MPa and the friction stress is 27.717MPa. It is found that the contact characteristic between the metallic braided tube and the bellows has a great influence on the axial mechanical properties of the braided corrugated hose by compared the relationship between the axial stiffness and contact pressure.
机译:在不考虑金属编织管的情况下,始终研究编织瓦楞软管的数值模拟,使研究结果与实际情况不符。为了解决问题,建立了整个编织的波纹软管模型,研究了编织瓦楞软管的轴向力学性能,同时考虑了金属编织管对波纹管的影响。主要结论如下:编织瓦楞软管的轴向刚度是非线性的,在早期阶段,变形主要是小型位移,并且轴向刚度分别由金属编织管和波​​纹管组成,在后面的阶段,轴向刚度主要由编织管和波​​纹管之间的接触刚度组成。对于波纹管,最大等效应力和应变发生在与金属编织管接触的区域中,最大应力为1055MPa。金属编织管和波​​纹管之间的最大接触压力为151.54MPa,摩擦应力为27.717MPa。发现金属编织管和波​​纹管之间的接触特性通过比较轴向刚度和接触压力之间的关系而对编织波纹软管的轴向力学性能产生很大影响。

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