Hydraulic equipment, widely used in various industries such as construction machinery, agricultural machinery, and military vehicles, essentially requires hydraulic pipes for power transmission. Since the inflow of hydraulic fluid and pressure transmission are necessary to drive each attachment, hydraulic pumps are designed with multiple hydraulic lines. Conventional methods require the individual connection and disconnection of 4 to 6 hydraulic couplers when changing attachments, resulting in low work efficiency and potential safety hazards. Therefore, this study designed a device capable of simultaneously connecting a 6-way hydraulic line and verified its mechanism and stability. Specifically, a multi-coupler device capable of simultaneously connecting six hydraulic couplers was developed, and the structural stability of the fastening mechanism was analyzed. CATIA was utilized for 3D modeling, while ANSYS was employed to conduct structural analysis. The results of the analysis at each mechanism stage confirmed that sufficient structural stability was secured during the simultaneous coupling process of the 6-way hydraulic coupler
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Abstract 1. 서론 2. 메커니즘 분석 2.1 메커니즘 분석 2.2 해석을 통한 안정성 검증 3. 결론 후기 References