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Hose Reinforcement Analysis

机译:软管加固分析

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Hose design has been neglected as an engineering topic. Hose Technology, 2nd ed., Colin W. Evans, applied science publishers, Essex, England, 1979; has been cited as a design resource. This paper recommends a correction to the Evan’s design equation. The hose nipple and hose tube inside diameter determine the forces the reinforcement has to support. Introduction: This paper documents how to determine the hydrostatic forces developed within the hose construction. Method/Approach: The articles use a conventional force balance approach. This paper uses force balances to show how the forces and the reinforcement geometry align to establish equilibrium. The assumption of the hose design equation requires the forces, R, to be equally distributed among the reinforcement strands. The number of strands, N, is empirically determined. Conclusion: The forces are developed at the wetted surfaces and those forces must be supported by the reinforcement.
机译:软管设计已被忽略为工程主题。 Hose Technology,第二版,Colin W. Evans,应用科学出版社,英格兰埃塞克斯,1979年;已被引用为设计资源。本文建议对Evan的设计方程式进行更正。软管接头和软管内径决定了加强件必须承受的力。简介:本文介绍了如何确定软管结构中产生的静水压力。方法/方法:文章使用常规的力平衡方法。本文使用力平衡来显示力和钢筋几何形状如何对齐以建立平衡。软管设计方程式的假设要求力R在钢筋股之间平均分配。股数N是凭经验确定的。结论:在润湿的表面上产生了力,这些力必须由钢筋来支撑。

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