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Research on dynamic characteristics of compensation mechanism for large-power wind turbine disc brake

机译:大功率风力涡轮机圆盘制动器补偿机构的动态特性研究

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Purpose - The purpose of this paper is to establish a rigid-flexible coupling model of wind turbine disc brake to simulate the actual working condition of the wind turbine brake and to study the dynamic characteristics of the compensation mechanism under different friction coefficients and braking force. It provides reference for the structure design and optimization of the compensation mechanism (compensation brake wear) in the wind turbine brake. Design/methodology/approach - Based on multi-body contact dynamics theory, the rigid-flexible coupling dynamic model of wind turbine brakes with compensation mechanism is established, in which the contact process of the components in the compensation mechanism and the phenomenon of rotation and return are described dynamically, and the rotation angle of the compensation nut and the axial displacement response of the compensation screw are calculated under different parameters. Findings - The analysis results show that the braking reliability of the brake compensation mechanism can be effectively improved by increasing the friction coefficient of threads or increasing the friction of push rod contact surface; increasing the braking force can also improve the reliability of brake compensation mechanism, but when the braking force comes over a critical value, the effect of braking force on the reliability of the brake is very small. The braking test verifies the effectiveness of the simulation results. Originality/value - Analyzing the influence of compensation mechanism on braking reliability in the braking process is of great practical significance for improving the braking efficiency and process safety of wind turbine brake.
机译:目的 - 本文的目的是建立风力涡轮机盘式制动器的刚性柔和耦合模型,以模拟风力涡轮机制动器的实际工作状态,并研究不同摩擦系数和制动力下补偿机制的动态特性。它为风力涡轮机制动器中的补偿机构(补偿制动磨损)的结构设计和优化提供了参考。设计/方法/方法 - 基于多主体接触动力学理论,建立了带补偿机构的风力涡轮机制动器刚性柔性耦合动态模型,其中补偿机构中的组件接触过程及旋转现象及其现象动态描述返回,并且补偿螺母的旋转角度和补偿螺钉的轴向位移响应在不同的参数下计算。结果 - 分析结果表明,通过增加螺纹摩擦系数或增加推杆接触表面的摩擦,可以有效地改善制动补偿机构的制动可靠性。增加制动力也可以提高制动补偿机构的可靠性,但是当制动力达到临界值时,制动力对制动器的可靠性的影响非常小。制动测试验证仿真结果的有效性。原创性/值 - 分析补偿机制对制动过程制动可靠性的影响对于提高风力涡轮机制动器的制动效率和工艺安全性具有很大的实际意义。

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