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Dynamic analysis and robust reliability design of pan mechanism for a cooking robot

机译:烹饪机器人锅具机构的动力学分析和鲁棒可靠性设计

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As a novel service robot, the automatic cooking robot (ACR) has been attracting many people's attentions. But the existing products still have some disadvantages, especially the quick-return mechanism used as the main mechanism to turn over the pan. There are always large vibrations and noises accompanying with the motions of the quick-return turning-over mechanism. And its stability and reliability which are the important factors influencing the quality of the dishes are not high. Therefore, a proved turning-over mechanism is introduced based on the purpose of vibration and noise reduction. The dynamic analyses of the two turning-over mechanisms are done through Ansys and their low-order natural frequencies and vibration modes are presented in this paper. And it is concluded that the proved mechanism has smaller vibration and noise through the comparison of natural frequencies and integer displacements. Then, the key factors influencing the reliability of the turning-over motion are analyzed through the design and analysis of robust reliability.
机译:作为一种新颖的服务机器人,自动烹饪机器人(ACR)吸引了很多人的注意。但是现有的产品仍然存在一些缺点,特别是快速翻转机构作为翻转锅的主要机构。快速返回翻转机构的动作始终伴随着较大的振动和噪音。并且其稳定性和可靠性是影响碗碟质量的重要因素,其可靠性不高。因此,基于减少振动和降低噪音的目的,引入了一种行之有效的翻转机构。通过Ansys对这两种翻转机制进行了动力学分析,并给出了它们的低阶固有频率和振动模式。通过对固有频率和整数位移的比较,可以证明该机构具有较小的振动和噪声。然后,通过鲁棒可靠性的设计和分析,分析了影响翻转运动可靠性的关键因素。

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