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Balance Analysis of Reciprocating Inertia Force Based on Multi-Body System Simulation

机译:基于多体系统模拟的往复惯性力平衡分析

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In signal cylinder diesel engine we often use dual shaft balance mechanism to balance reciprocating inertia force produced by the piston and moving parts, and reduce vibration of diesel engine. For this paper, the model crank -connecting rod and balance mechanism of a signal cylinder diesel engine were built in simulation software ADAMS. Piston's movement law and its force curve have got through multi-body dynamics simulation to the model. By further processing to the simulation results, we got curves of piston's reciprocating inertia force and balance shaft's balance force. Comparing the two curves, we got the following conclusions: the difference between positive and negative peak for reciprocating inertia force that haven't balanced was about 5500 Newton, which was equal to around 34% of the difference between the positive and negative peak for reciprocating inertia force, and the main reason for this is the dual shaft balance mechanism only balanced one step reciprocating inertia force; Though the balance effect was quite obvious, for ideal conditions there is a difference, and further improve can be done.
机译:在信号气缸柴油发动机中,我们经常使用双轴平衡机制来平衡由活塞和运动部件产生的往复惯性力,并减少柴油发动机的振动。为此,用仿真软件亚当,建立了信号缸柴油机的模型曲柄杆和平衡机制。活塞的运动法及其力量曲线通过了模型的多体动力学模拟。通过进一步处理模拟结果,我们得到了活塞往复惯性力和平衡轴的平衡力的曲线。比较两条曲线,我们得到了以下结论:积极峰值与往复惯性力的往复峰值的差异约为5500牛顿,其等于正负峰之间的差异的约34%以进行往复运动惯性力量,而且为此的主要原因是双轴平衡机构,只能平衡一步往复惯性力;虽然平衡效果非常明显,但理想条件有差异,可以做出进一步的改进。

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