A Study on the Optimal Design According to the Piston Shape of the 3/8″Hydraulic Quick Coupler

Namyong Kim, Yu‐Ting Wu, Zhen Qin, Yong-Min Cho, S. Lyu
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Abstract

A hydraulic quick coupler is a component used to easily connect or disconnect pipes or hoses that transfer high pressure fluid without leakage in various mechanical devices. In this study, to obtain an optimal design of a 3/8" hydraulic quick coupler, the effect of different shapes of the internal piston on the internal flow characteristics of the coupler was analyzed and evaluated through numerical analysis based on computational fluid dynamics. Subsequently, the optimal shape design of the internal piston was obtained by comparing the flow characteristics results such as velocity distribution, temperature distribution, and the pressure drop of the hydraulic quick coupler.
基于活塞形状的3/8″液压快速耦合器优化设计研究
液压快速耦合器是一种用于连接或断开各种机械装置中传输高压流体而不泄漏的管道或软管的部件。为了获得3/8”液压快速耦合器的优化设计方案,采用基于计算流体动力学的数值分析方法,分析和评价了不同形状的内活塞对耦合器内部流动特性的影响。随后,通过对液力快速耦合器的速度分布、温度分布、压降等流动特性的比较,得到了内活塞的最优形状设计。
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