高级检索+

基于田间实测载荷的拖拉机转向驱动桥壳疲劳寿命分析

赵雪彦, 张青岳, 温昌凯, 尹宜勇, 宋正河

赵雪彦, 张青岳, 温昌凯, 尹宜勇, 宋正河. 基于田间实测载荷的拖拉机转向驱动桥壳疲劳寿命分析[J]. 农业机械学报, 2021, 52(3): 373-381.
引用本文: 赵雪彦, 张青岳, 温昌凯, 尹宜勇, 宋正河. 基于田间实测载荷的拖拉机转向驱动桥壳疲劳寿命分析[J]. 农业机械学报, 2021, 52(3): 373-381.
ZHAO Xue-yan, ZHANG Qing-yue, WEN Chang-kai, YIN Yi-yong, SONG Zheng-he. Fatigue Life Analysis of Tractor Steering Drive Axle Housing Based on Field Measured Loads[J]. Transactions of the Chinese Society for Agricultural Machinery, 2021, 52(3): 373-381.
Citation: ZHAO Xue-yan, ZHANG Qing-yue, WEN Chang-kai, YIN Yi-yong, SONG Zheng-he. Fatigue Life Analysis of Tractor Steering Drive Axle Housing Based on Field Measured Loads[J]. Transactions of the Chinese Society for Agricultural Machinery, 2021, 52(3): 373-381.

基于田间实测载荷的拖拉机转向驱动桥壳疲劳寿命分析

基金项目: 

国家重点研发计划项目(2017YFD0700301)

详细信息
    作者简介:

    赵雪彦(1985—),女,副教授,博士,主要从事农业机械动力学研究,E-mail:xyzhao@cau.edu.cn

    通讯作者:

    宋正河(1973—),男,教授,博士,主要从事农业装备试验验证方法与技术研究,E-mail:songzhenghe@cau.edu.cn

  • 中图分类号: S219

Fatigue Life Analysis of Tractor Steering Drive Axle Housing Based on Field Measured Loads

  • 摘要: 针对拖拉机作业过程中承载幅值大、随机非对称的特点,综合考虑应力集中、尺寸效应、表面质量和载荷特性等因素对疲劳寿命的影响,从相对应力梯度、疲劳损伤区域和实测载荷应力比3方面对传统应力场强法进行优化,获取修正S-N曲线,结合拖拉机田间作业的实测载荷数据,分析某88 kW拖拉机转向驱动桥壳的疲劳寿命,并与传统应力场强法的预测结果进行对比。结果表明,相比于传统方法的预测结果(31 860 h),优化后的应力场强法的预测结果(25 467 h)更接近实际工作寿命(24 000 h)。本研究可为农机装备关键零部件的疲劳寿命预测提供分析方法。
    Abstract: When a tractor is working in the field,its key components are usually subjected to harsh geographical environment and weather conditions,moreover,the complex and variable loads,these make the key components of the tractor prone to fatigue failure. In order to accurately predict the fatigue life of large-horsepower tractors and provide theoretical basis for the design of key components of tractors,the stress field intensity method was adopted to analyze the fatigue life of steering drive axle housing of an88 k W tractor. The fatigue-life influencing factors,including stress concentration,size effect,surface quality and load characteristics were considered to optimize the traditional stress field intensity method.Traditional stress field intensity method was optimized from three aspects,i. e. the relative stress gradient,the fatigue damage area,and the measured load stress ratio,in order to obtain the modified S-N curve. The modified S-N curve was combined with the field measured load data to perform the fatigue life analysis of the steering drive axle housing,followed by comparing the prediction results of the optimizing stress field intensity method with the traditional method. The fatigue life of the dangerous point predicted by the optimizing method was 25 467 h,while the fatigue life obtained from the traditional method was 31 860 h. The comparison results showed that the optimized stress field intensity method was more accurate,since the perdition result was closer to the actual working life( 24 000 h). The research result provided a more practical method for predicting the fatigue life of the key components of agricultural machinery equipment.
  • [1] 温昌凯,谢斌,杨子涵,等.基于功率密度的大功率拖拉机变速箱壳体疲劳分析[J/OL].农业机械学报,2019,50(6):389-396.WEN Changkai,XIE Bin,YANG Zihan,et al. Fatigue analysis of gearbox shell of high horsepower tractor based on power density[J/OL]. Transactions of the Chinese Society for Agricultural Machinery,2019,50(6):389-396. http:∥www. jcsam. org/jcsam/ch/reader/view_abstract. aspx? file_no=20190646&flag=1. DOI:10. 6041/j. issn. 1000-1298. 2019. 06. 046.(in Chinese)
    [2] 宋清椿.大马力拖拉机转向驱动桥实测载荷谱研究[D].北京:中国农业大学,2019.SONG Qingchun. Study on measured load spectrum for steering drive axle of high-horsepower tractor[D]. Beijing:China Agricultural University,2019.(in Chinese)
    [3] 饶向林.水田适用大中功率拖拉机转向驱动桥研究[D].镇江:江苏大学,2016.RAO Xianglin. Study on steering drive axle of large and medium power tractor in paddy field[D]. Zhenjiang:Jiangsu University,2016.(in Chinese)
    [4] 姚卫星.结构疲劳寿命分析[M].北京:国防工业出版社,2003.
    [5] 李威.基于强度退化累积损伤模型的承载结构疲劳寿命预测研究[D].北京:北京交通大学,2019.LI Wei. Fatigue life prediction research of load bearing structure based on cumulative damage model considering strength degradation[D]. Beijing:Beijing Jiaotong University,2019.(in Chinese)
    [6] 马志全.基于新的场强法模型的抽油机关键部件疲劳寿命预测研究[D].成都:西南石油大学,2017.MA Zhiquan. Study on fatigue life prediction of key components of pumping unit based on new stress field intensity method model[D]. Chengdu:Southwest Petroleum University,2017.(in Chinese)
    [7]

    ZHAO Peng,LU Tianyang,GONG Jianguo,et al. A modified stress field intensity approach for fatigue life prediction of components[J]. Materials&Design,2020,190:108537.

    [8] 申杰斌,唐东林.一种考虑应力梯度的疲劳寿命预测方法[J].中国机械工程,2017,28(1):40-44.SHEN Jiebin,TANG Donglin. A fatigue life prediction method considering stress gradient[J]. China Mechanical Engineering,2017,28(1):40-44.(in Chinese)
    [9]

    ZHAO Bingfeng,XIE Liyang,SONG Jiaxin,et al. Fatigue life prediction of aero-engine compressor disk based on a new stress field intensity approach[J]. International Journal of Mechanical Sciences,2020,165:105190.

    [10]

    ZENG Yun,LI Meiqi,ZHOU Yang,et al. Development of a new method for estimating the fatigue life of notched specimens based on stress field intensity[J]. Theoretical and Applied Fracture Mechanics,2019,104:102339.

    [11]

    TANG Donglin,HOU Jun,MA Zhiquan,et al. Fatigue life predictions based on a new stress field intensity approach[J].KSCE Journal of Civil Engineering,2019,23(5):2198-2203.

    [12] 陈健,崔海涛,温卫东.基于应力场强法的缺口构件疲劳寿命预测方法研究[J].长春理工大学学报(自然科学版),2010,33(4):87-91.CHEN Jian,CUI Haitao,WEN Weidong. Research on fatigue life prediction method of notched member based on stress field intensity method[J]. Journal of Changchun University of Science and Technology(Natural Science Edition),2010,33(4):87-91.(in Chinese)
    [13] 苏莹,黄世鸿,秦胜欢,等.纯铜圆棒缺口试件拉压循环下的疲劳寿命分析[J].科学技术与工程,2016,16(30):157-164.SU Ying,HUANG Shihong,QIN Shenghuan,et al. Fatigue life analysis of copper notched round specimen under tensioncompression cyclic loading[J]. Science Technology and Engineering,2016,16(30):157-164.(in Chinese)
    [14] 马志全,唐东林.关于应力场强法中损伤区的研究[J].机械强度,2018,40(3):721-726.MA Zhiquan,TANG Donglin. Study on damage area in stress field intensity method[J]. Mechanical Strength,2018,40(3):721-726.(in Chinese)
    [15] 黄宁.大型结构件的疲劳寿命预测方法研究[D].长沙:中南大学,2013.HUANG Ning,Study on fatigue life prediction method for large structural parts[D]. Changsha:Central South University,2013.(in Chinese)
    [16] 丁遂栋,杨国战.钛合金光滑试样非对称循环疲劳极限的估算[J].机械强度,2001,23(3):371-372.DING Suidong,YANG Guozhan. Estimation of unsymmetrical cyclic fatigue limits for titanium alloy smooth specimens[J].Mechanical Strength,2001,23(3):371-372.(in Chinese)
    [17]

    SCHNBAUER B M,STANZL-TSCHEGG S E,PERLEGA A,et al. Fatigue life estimation of pitted 12%Cr steam turbine blade steel in different environments and at different stress ratios[J]. International Journal of Fatigue,2014,65:33-43.

    [18] 江民圣.ANSYS Workbench 19. 0基础入门与工程实践[M].北京:人民邮电出版社,2019.
    [19] 裴滨.大马力拖拉机后桥壳有限元分析及轻量化研究[D].淄博:山东理工大学,2018.PEI Bin. Finite element analysis and lightweight study of rear axle housing of high horsepower tractor[D]. Zibo:Shandong University of Technology,2018.(in Chinese)
    [20] 邓善熙.测试信号分析与处理[M].北京:中国计量出版社,2003.
    [21] 钱同慧.信号分析与处理[M].北京:机械工业出版社,2007.
    [22]

    SHANNON C E. Communication in the presence of noise[J]. Proceedings of the IEEE,1998,86(2):447-457.

    [23] 姚艳春,杜岳峰,朱忠祥,等.基于模态的玉米收获机车架振动特性分析与优化[J].农业工程学报,2015,31(19):46-53.YAO Yanchun,DU Yuefeng,ZHU Zhongxiang,et al. Analysis and optimization of vibration characteristics of maize harvesting locomotive frame based on mode[J]. Transactions of the CSAE,2015,31(19):46-53.(in Chinese)
    [24] 赵少汴.抗疲劳设计[M].北京:机械工业出版社,1994.
    [25] 李莉,谢里阳,何雪浤,等.考虑表面加工的疲劳缺口系数研究与应用[J].组合机床与自动化加工技术,2009(2):1-3.LI Li,XIE Liyang,HE Xuehong,et al. Research and application of fatigue notch factor of machined surface[J]. Modular Machine Tools and Automatic Processing Technology,2009(2):1-3.(in Chinese)
计量
  • 文章访问数:  3
  • HTML全文浏览量:  0
  • PDF下载量:  0
  • 被引次数: 0
出版历程
  • 收稿日期:  2020-06-09
  • 刊出日期:  2021-03-24

目录

    /

    返回文章
    返回