不同编织角度编织波纹软管轴向力学性能的数值研究

Dacheng Huang, Jianrun Zhang
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引用次数: 0

摘要

编织波纹软管具有良好的位移补偿和减振性能,广泛应用于航空航天、船舶、化工等领域。本文采用有限元法研究了编织角度对编织波纹软管轴向力学性能的影响。数值计算结果表明,编织波纹软管的轴向刚度是非线性的,可以分为三个阶段来解释。第一阶段为线性阶段,波纹管的刚度起主要作用。第二阶段是非线性阶段,称为“软特性”阶段,第三阶段是线性阶段。编织角度主要影响“软特性”阶段。随着编织角的增大,“软特性”变化越快,编织波纹软管的轴向刚度增大越大。所得结论可为编织波纹软管的设计提供理论依据。
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Numerical study of the axial mechanical properties of braided corrugated hose with different braiding angles
The braided corrugated hose is widely used in aerospace, marine, chemical and other fields due to its good displacement compensation and vibration damping. This paper uses finite element method to explore the effect of braiding angle on the axial mechanical properties of the braided corrugated hose. The numerical results show that the axial stiffness of the braided corrugated hose is nonlinear, which can be explained in three stages. The first stage is a linear stage, and the stiffness of the bellows plays a major role. The second stage is the non-linear stage called the ‘soft characteristic’ stage and the third stage is the linear stage. The braiding angle mainly affects the ‘the soft characteristic’ stage. As the braiding angle increases, the faster the ‘soft characteristic’ changes, the greater the axial stiffness of the braided corrugated hose increases. The conclusion can provide a theoretical basis for the design of braided corrugated hoses.
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