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1.江西理工大学 机电工程学院, 江西 赣州 341000
2.广东顺德创新设计研究院, 广东 佛山 528311
夏中瑞(1999— ),男,江西吉安人,在读硕士研究生;主要研究方向为结构动力学;757762160@qq.com。
纸质出版日期:2024-01-15,
收稿日期:2022-10-05,
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夏中瑞,王慧鹏,区健彬.折弯机链轮的修形研究及其影响[J].机械传动,2024,48(01):159-164.
Xia Zhongrui,Wang Huipeng,Ou Jianbin.Research on Modification of Bending Machine Sprockets and Its Influence[J].Journal of Mechanical Transmission,2024,48(01):159-164.
夏中瑞,王慧鹏,区健彬.折弯机链轮的修形研究及其影响[J].机械传动,2024,48(01):159-164. DOI: 10.16578/j.issn.1004.2539.2024.01.023.
Xia Zhongrui,Wang Huipeng,Ou Jianbin.Research on Modification of Bending Machine Sprockets and Its Influence[J].Journal of Mechanical Transmission,2024,48(01):159-164. DOI: 10.16578/j.issn.1004.2539.2024.01.023.
针对某折弯机链传动系统引起的冲击和疲劳破坏问题,对链传动的动态特性和链轮的修形进行了分析研究。从理论角度上分析了链传动的运行特点;利用RecurDyn软件建立了折弯机链传动系统的仿真模型,对其进行了动力学仿真分析和轮齿静强度分析;采用齿顶圆修形的方法,建立了短修形和长修形两种修形后的仿真模型,得到修形后从动链轮受力、啮合力、传动误差和链轮轮齿静强度的变化曲线图。研究结果表明,短修形有效降低了折弯机链传动过程中的啮合冲击力,链轮链条间啮合力峰值下降了43.64%,轮齿所受等效应力最大值降低了14.69%,有效提高了齿面强度,增加了链轮的使用寿命,相较于长修形更适用于折弯机链传动系统。
In view of the impact and fatigue failure caused by the chain transmission system of a bending machine
the dynamic characteristics of the chain drive and the modification of the sprocket are analyzed and studied. First of all
the operation characteristics of the chain drive are analyzed theoretically.Then the simulation model of the bending machine chain drive system is established by using the RecurDyn software
and the dynamic simulation analysis and gear tooth static strength analysis are carried out. Finally
by using the method of tooth tip circle modification
the simulation models of short-modification and long-modification are established
and the variation curves of force
meshing force
transmission error and static strength of sprocket teeth are obtained. The research results show that the short-modification effectively reduces the meshing impact force in the meshing process of the bending machine chain transmission
the peak meshing force between the sprocket chains is reduced by 43.64%
and the maximum equivalent stress of the gear teeth is reduced by 14.69%. It effectively improves the tooth surface strength
increases the service life of the sprocket
and is more suitable for the chain transmission system of the bending machine than the long-modification.
链传动动力学仿真静强度分析链轮齿顶圆修形
Chain driveDynamics simulationStatic strength analysisSprocketTooth tip circle modification
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