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An innovative speed reduction mechanism with self-adaptability to variable transmission angles

机译:一种创新的减速机构,可适应可变的传动角度

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摘要

An innovative speed reduction mechanism featuring self-adaptability to variable transmission angles is being proposed, the purpose of which is to be able to maintain expected reduction ratio by adapting itself to the variable intersection angles between input shaft and output shaft. The synchronous planetary pulley-based mechanism is combined with the features of RCRCR transmission structure and K-H planetary transmission mechanism. Structure analysis and force analysis of the mechanism were demonstrated to explain the working principle and kinematic feasibility of the mechanism. The NX model of the mechanism was drawn and simulated to prove the realistic kinematic results of mechanism were the same as the theoretic one. The mechanism significantly lowers the accuracy requirements of relative position between the prime mover and the working machine while shortening the transmission chain at the same time.
机译:提出了一种创新的减速机构,其具有对可变的传动角的自适应性,其目的是能够通过使自身适应于输入轴和输出轴之间的可变的相交角而保持期望的减速比。基于同步行星滑轮的机构结合了RCRCR传动结构和K-H行星传动机构的特点。通过对机构的结构分析和受力分析,说明了该机构的工作原理和运动学可行性。绘制并仿真了该机构的NX模型,以证明该机构的实际运动学结果与理论上的相同。该机构显着降低了原动机与工作机械之间相对位置的精度要求,同时缩短了传动链。

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