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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Power flow and efficiency analyses of dual planetary coupling mechanism based on bond graph theory
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Power flow and efficiency analyses of dual planetary coupling mechanism based on bond graph theory

机译:基于键合图理论的双行星耦合机构的功率流和效率分析

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This paper concentrates on the power flow and transmission efficiency of a two-side motors driving transmission system used in tracked vehicle. Based on the theoretical analysis of tracked vehicle's steering process, the theory of bond graph was applied in the efficiency analyses due to the properties of energy conservation and power fluxion. A bond graph model of dual planetary platoon power coupling mechanism was established. The kinematic and the dynamic characteristics of all components and the constraints between components were obtained with the constraint conditions of turning radius and speed. According to the criterion of power flow, the power flows of the transmission system were got under six different driving conditions. Based on the power flows, the transmission efficiency was obtained by the calculation method of planetary gear train's meshing efficiency, which was proposed by this paper. The results show that by using the bond graph theory, we can get all the possible power flows of the transmission system and its corresponding transmission efficiency. This method is more systematic and universal than the traditional methods, especially suitable for complex multi-input and multi-output gear transmission system.
机译:本文着重研究履带车辆中使用的两侧电机驱动传动系统的功率流和传动效率。在对履带车辆转向过程进行理论分析的基础上,结合图的理论由于其节能和功率通量的特性被应用于效率分析。建立了双行星排动力耦合机理的键合图模型。在转弯半径和速度的约束条件下,获得了所有零件的运动学和动力学特性以及零件之间的约束。根据功率流准则,在六个不同的行驶条件下获得了传动系统的功率流。根据功率流,通过本文提出的行星齿轮系啮合效率的计算方法获得传动效率。结果表明,利用键合图理论,可以得到传动系统所有可能的功率流及其对应的传动效率。该方法比传统方法更具系统性和通用性,特别适用于复杂的多输入多输出齿轮传动系统。

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