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Stress Analysis of Pre-stressed Steel Wire Winding Ultrahigh Pressure Vessels Based on Birth and Death Element Method

机译:基于生死元法的预应力钢丝缠绕超高压容器应力分析

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The pre-stressed steel wire winding vessel is to wrap high strength steel wire on the inner cylinder with a certain initial tension, depending on the pretension force and the elastic contraction of the winding layer, the inner cylinder produces the initial pretension force, which can counteract the circumferential stress caused by the working internal pressure, thus effectively increasing the carrying capacity and fatigue life of the vessel. In order to enhance the pretightening effect of the steel wire winding layer on the inner cylinder, it is proposed to change the slope of the inner cylinder end surface, and to process the cylinder end surface into a inclined surface, so that the pretightening height of the winding layer is higher than the height of the inner wall bearing surface, so as to ensure the better pretightening effect of the inner cylinder. Based on the finite element analysis software, considering the influence of steel wire layer friction on the prestressing effect of the cylinder and the winding process of the steel wire layer by layer, the birth and death element method is adopted. Under the design requirement of working pressure of 147 Mpa and inner diameter of 160 mm, the stress of two kinds of pre-stressed steel wire wound vessels with end structure is simulated and analyzed under pretension and working condition. The simulation results show that when the volume and radius of the inner cylinder are constant, the oblique end structure is used to replace the flat end structure, and the thickness of the cylinder and the number of layers of the winding steel wire can be reduced. The overall mass of the oblique end structure is about 13.94 lower than that of the flat end structure.
机译:预应力钢丝缠绕容器是将高强度钢丝以一定的初始张力缠绕在内筒上,根据预应力和缠绕层的弹性收缩,内筒产生初始的预应力,可以抵消了由工作内压引起的周向应力,从而有效地提高了容器的承载能力和疲劳寿命。为了增强钢丝缠绕层在内筒上的预紧效果,提出了改变内筒端面的倾斜度,并将其加工成倾斜面,使内筒的预紧高度为缠绕层高于内壁支承面的高度,以保证内筒更好的预紧效果。在有限元分析软件的基础上,考虑钢丝层摩擦力对圆柱体预应力的影响以及钢丝层的缠绕过程,采用生死元法。在工作压力为147 Mpa,内径为160 mm的设计要求下,模拟并分析了两种带有端部结构的预应力钢丝缠绕容器在预应力和工作条件下的应力。仿真结果表明,在内圆柱体的体积和半径恒定的情况下,采用斜端结构代替平端结构,可以减小圆柱体的厚度和减少缠绕钢丝的层数。倾斜端部结构的总质量比平坦端部结构的总质量低约13.94。

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