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Structural design and kinematic analysis of high-speed automatic casing system for lithium-ion battery

机译:锂离子电池高速自动外壳系统的结构设计与运动学分析

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Purpose - The purpose of this paper is to design the whole structure of high-speed automatic casing system (HSACS) for lithium-ion battery (LIB), and verify its rationality and reliability by kinematic simulation and casing test. Design/methodology/approach - Based on the software of SolidWorks and ADAMS, the structure of working mechanisms for HSACS was designed, and virtual prototype models of HSACS and main turntable were established to realize the kinematic analysis. The HSACS casing test was also carried out and compared with simulation. Findings - Simulation results for the designed HSACS were presented graphically and analyzed. The graphical results indicate that the coordination motions among the working mechanisms of HSACS are reasonable and no interference occurs. Casing test results show that the casing quality and production efficiency of HSACS equipment are satisfying. Originality/value - In the present work, the developed virtual prototype models of HSACS provide reliable kinematic analysis results for the structural design of HSACS, and reasonable motion relations are realized in the designed structure of HSACS. Furthermore, not only the casing quality requirements can be met, but also the production efficiency of high-speed automatic casing machine for LIB is greatly improved via this kind of new HSACS structure.
机译:目的 - 本文的目的是设计用于锂离子电池(LIB)的高速自动壳体系统(HSAC)的整体结构,并通过运动仿真和套管测试验证其合理性和可靠性。设计/方法/方法 - 基于SolidWorks和Adams的软件,设计了HSAC的工作机制的结构,并建立了HSACS和主转盘的虚拟原型模型来实现运动学分析。 HSACS套管测试也与模拟进行并进行比较。调查结果 - 以图形方式呈现设计HSAC的仿真结果。图形结果表明,HSAC的工作机制中的协调运动是合理的,并且不会发生干扰。套管测试结果表明,HSACS设备的套管质量和生产效率令人满意。原创性/值 - 在本作工作中,HSAC的发达的虚拟原型模型为HSAC的结构设计提供了可靠的运动学分析结果,并且在HSAC的设计结构中实现了合理的运动关系。此外,不仅可以满足外壳质量要求,而且通过这种新的HSACS结构大大提高了LIB的高速自动套管机的生产效率。

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