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CT601型弹簧操动机构机械运动学特性研究

张亚辉 裴沛 刘力 张帆 何洲 张爱芳 刘璐 周琦森

高压电器2025,Vol.61Issue(3):214-221,8.
高压电器2025,Vol.61Issue(3):214-221,8.DOI:10.13296/j.1001-1609.hva.2025.03.026

CT601型弹簧操动机构机械运动学特性研究

Study on Mechanical Kinematics Characteristics of Type CT601 Spring Operating Mechanism

张亚辉 1裴沛 1刘力 1张帆 1何洲 1张爱芳 1刘璐 1周琦森1

作者信息

  • 1. 平高集团有限公司,河南 平顶山 467001
  • 折叠

摘要

Abstract

The transmission system in the spring operating mechanism is the key part to transmit force and motion,and the deviation of the motion trajectory from the design position will greatly affect the motion characteristics of the mechanism.In view of the flywheel disk offset fault which is found in the mechanical endurance test of a clamping plate spring operating mechanism in this paper,the rigid body kinematics model is set up by RecurDyn and its me-chanical characteristics of closing and opening process are analyzed.The experimental platform of mechanical char-acteristics is set up,and the obtained experimental results are compared with the simulation results,which verifies the accuracy of the simulation.By changing the angle of flywheel disc,the variation of mechanical characteristics with different deviation degrees is analyzed.The results show that the deviation of flywheel disc will lead to faster closing speed and shorter closing time,and even lead to the failure of closing lock system,thus leading to direct closing after the charging.The work done in this paper provides a theoretical basis for the comparison between the subsequent structural improvement and various parameter schemes,thus shortening the research and development cycle and de-sign guidance.

关键词

弹簧操动机构/机械运动特性/刚体运动学/故障机械特性规律

Key words

spring operating mechanism/mechanical motion characteristics/rigid body kinematics/mechanical characteristics law of fault

引用本文复制引用

张亚辉,裴沛,刘力,张帆,何洲,张爱芳,刘璐,周琦森..CT601型弹簧操动机构机械运动学特性研究[J].高压电器,2025,61(3):214-221,8.

基金项目

辽宁省教育厅高校基本科研项目(TBM刀盘系统疲劳寿命可靠性预估方法研究).Project Supported by Basic Research Project of Liaoning Provincial Department of Education for Universities(Research on Reliability Estimation Method for Fatigue Life of TBM Cutterhead System). (TBM刀盘系统疲劳寿命可靠性预估方法研究)

高压电器

OA北大核心

1001-1609

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