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Research on the contact-impact between balls and re-circulating mechanism using the multibody dynamics simulation

机译:多体动力学模拟研究球与循环机构之间的接触冲击

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The re-circulating mechanism of ball screws plays a vital role for its providing the path for steel balls rolling in screw grooves generally in high-speed/high-precision ball screw transmitting systems. However it is very hard to directly measure the ball's motion in the re-circulation for the closed recirculation groove. In order to investigate the impact-contact between the balls and re-circulating mechanism, a multibody dynamics model by using ADAMS is used to simulate the balls/re-circulating contact-impact behavior in ball screw mechanism. In the multibody simulation, a general elastic model for contact model was used. The influences of the contact stiffness and rotational speed of the screw, the velocity and torque of the ball screw mechanism are investigated in detail. From the obtained results, it is found that contact stiffness between the ball and re-circulating mechanism has more great effect on the above parameters. The study provides a method and useful datum for further improving the ball screw mechanism.
机译:滚珠丝杠的再循环机构起着至关重要的作用,因为它为钢球提供了在高速/高精度滚珠丝杠传动系统中通常在滚珠槽中滚动的路径。但是,对于封闭的再循环凹槽,很难直接测量再循环过程中球的运动。为了研究滚珠与循环机构之间的冲击接触,采用ADAMS的多体动力学模型来模拟滚珠丝杠机构中的滚珠/循环接触-冲击行为。在多体仿真中,使用了用于接触模型的通用弹性模型。详细研究了丝杠的接触刚度和转速,滚珠丝杠机构的速度和扭矩的影响。从获得的结果中发现,球与再循环机构之间的接触刚度对上述参数有更大的影响。该研究为进一步改进滚珠丝杠机构提供了一种方法和有用的数据。

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