Peng Zhang, Bo Li, Haozhou Ma, Rui Xia, Yingwei Dong, Xuewen Wang
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Additionally, the vibration acceleration in the Y-direction correlates positively with the chain speed. Across different chain speeds and loads, the maximum equivalent stress in the chain ring exhibits dynamic variations mirroring the load spectrum. Within the elastic deformation range of the chain ring, the highest stress within the transition region correlates linearly with chain tension. Load has a greater effect on the fatigue life of chain rings than chain speed. The fatigue life within the transition region of the chain ring decreases exponentially with increasing load at a constant chain speed. Conversely, at a constant load, chain ring life correlates positively with chain speed. Specifically, the fatigue life of the chain ring in LS 22 amounts to 32.64 days. When both chain speed and load are adjusted by 25%, the chain ring's lifespan reduces by 51.66% during simultaneous increments and increases by 39.26% with concurrent reductions in speed and load.","PeriodicalId":20552,"journal":{"name":"Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering","volume":"38 1","pages":""},"PeriodicalIF":2.3000,"publicationDate":"2024-05-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Fatigue life analysis of scraper conveyor chain ring under different chain speeds and loads\",\"authors\":\"Peng Zhang, Bo Li, Haozhou Ma, Rui Xia, Yingwei Dong, Xuewen Wang\",\"doi\":\"10.1177/09544089241253057\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"This study aims to explore how different chain speeds and loads impact the fatigue life of the scraper conveyor chain ring. To achieve this, the study validates the reliability of a coupled simulation involving multi-body dynamics and the discrete element method. It also acquires time-varying tension load spectra under various operational conditions. The research evaluates the effects of distinct chain speeds and loads on parameters such as chain tension, vibration acceleration in the Y and Z-directions of the chain ring. Furthermore, finite element simulation is employed to examine stress distribution changes and fatigue life trends within the three-chain ring structure. The findings demonstrate that Y and Z-direction vibration accelerations of the chain ring correlate positively with the load. Additionally, the vibration acceleration in the Y-direction correlates positively with the chain speed. Across different chain speeds and loads, the maximum equivalent stress in the chain ring exhibits dynamic variations mirroring the load spectrum. Within the elastic deformation range of the chain ring, the highest stress within the transition region correlates linearly with chain tension. Load has a greater effect on the fatigue life of chain rings than chain speed. The fatigue life within the transition region of the chain ring decreases exponentially with increasing load at a constant chain speed. Conversely, at a constant load, chain ring life correlates positively with chain speed. Specifically, the fatigue life of the chain ring in LS 22 amounts to 32.64 days. 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引用次数: 0
摘要
本研究旨在探讨不同的链速和载荷如何影响刮板输送机链环的疲劳寿命。为此,研究验证了多体动力学和离散元素法耦合模拟的可靠性。研究还获取了各种运行条件下的时变拉伸载荷谱。研究评估了不同链条速度和载荷对链条张力、链环 Y 和 Z 方向振动加速度等参数的影响。此外,还采用了有限元模拟来研究三链环结构中的应力分布变化和疲劳寿命趋势。研究结果表明,链环的 Y 和 Z 方向振动加速度与载荷呈正相关。此外,Y 方向的振动加速度与链条速度呈正相关。在不同的链条速度和载荷下,链环的最大等效应力呈现出与载荷谱相一致的动态变化。在链环的弹性变形范围内,过渡区域内的最高应力与链条张力成线性关系。与链条速度相比,载荷对链环疲劳寿命的影响更大。在链条速度不变的情况下,链环过渡区域内的疲劳寿命随着载荷的增加呈指数下降。相反,在恒定载荷下,链环寿命与链条速度呈正相关。具体而言,LS 22 中链环的疲劳寿命为 32.64 天。当链条速度和载荷均调整 25% 时,链环的寿命在同时增加时减少 51.66%,而在同时降低速度和载荷时增加 39.26%。
Fatigue life analysis of scraper conveyor chain ring under different chain speeds and loads
This study aims to explore how different chain speeds and loads impact the fatigue life of the scraper conveyor chain ring. To achieve this, the study validates the reliability of a coupled simulation involving multi-body dynamics and the discrete element method. It also acquires time-varying tension load spectra under various operational conditions. The research evaluates the effects of distinct chain speeds and loads on parameters such as chain tension, vibration acceleration in the Y and Z-directions of the chain ring. Furthermore, finite element simulation is employed to examine stress distribution changes and fatigue life trends within the three-chain ring structure. The findings demonstrate that Y and Z-direction vibration accelerations of the chain ring correlate positively with the load. Additionally, the vibration acceleration in the Y-direction correlates positively with the chain speed. Across different chain speeds and loads, the maximum equivalent stress in the chain ring exhibits dynamic variations mirroring the load spectrum. Within the elastic deformation range of the chain ring, the highest stress within the transition region correlates linearly with chain tension. Load has a greater effect on the fatigue life of chain rings than chain speed. The fatigue life within the transition region of the chain ring decreases exponentially with increasing load at a constant chain speed. Conversely, at a constant load, chain ring life correlates positively with chain speed. Specifically, the fatigue life of the chain ring in LS 22 amounts to 32.64 days. When both chain speed and load are adjusted by 25%, the chain ring's lifespan reduces by 51.66% during simultaneous increments and increases by 39.26% with concurrent reductions in speed and load.
期刊介绍:
The Journal of Process Mechanical Engineering publishes high-quality, peer-reviewed papers covering a broad area of mechanical engineering activities associated with the design and operation of process equipment.