首页> 外文会议>World Congress in Mechanism and Machine Science v.1; 20040401-20040404; Tianjin; CN >Mechanism Robustness Design Based on Uncertainty Effect Resulted from Error of Profile and Position of Kinematic Pairs
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Mechanism Robustness Design Based on Uncertainty Effect Resulted from Error of Profile and Position of Kinematic Pairs

机译:基于运动副轮廓和位置误差的不确定性影响的机构鲁棒性设计

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摘要

Aimed at sensitivity to profile and position error, authors select crank-leader mechanism as example, through constraint analysis, discover that planar closed chain mechanism is subjected to ideal plane, in fact, in which there normally is redundant constraint. This kind of redundant constraint resulted that system is very sensitive to manufacture error, and require very high manufacture precision. Therefore, configure constraint and freedom rightly, and design self-adjustability mechanism, all these methods will decrease sensitivity resulted from error, reduce manufacture cost and assembly difficulty, promote transmission efficiency, and prolong using life. In this way, oriented from structure factors, it eliminate effect on machine quality resulted from error, which include manufacture, assembly and working condition, so whole mechanism's robustness has improved obviously.
机译:针对轮廓和位置误差的敏感性,作者以曲柄导杆机构为例,通过约束分析,发现平面闭链机构处于理想平面,实际上通常存在冗余约束。这种冗余约束导致系统对制造误差非常敏感,并要求很高的制造精度。因此,正确配置约束和自由度,并设计自调整机制,所有这些方法都将降低由于误差引起的灵敏度,降低制造成本和组装难度,提高传动效率,并延长使用寿命。这样,从结构因素出发,消除了制造,装配,工况等误差对机械质量的影响,使整个机构的鲁棒性得到了明显提高。

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