1.株洲时代新材料科技股份有限公司,湖南 株洲 412007
王永冠(1976—),男,硕士,高级工程师,主要从事轨道交通结构有限元和多体动力学CAE计算以及橡胶弹性元件产品设计开发工作;E-mail:wangyongguan@csrzic.com
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王永冠, 李心, 丁行武, 等. 一种机车橡胶堆刚度性能设计新思路探讨[J]. 机车电传动, 2021,(1):29-33.
Yongguan WANG, Xin LI, Xingwu DING, et al. A New Approach of the Design for Stiffness of Locomotive Bearer Springs[J]. Electric Drive for Locomotives, 2021,(1):29-33.
王永冠, 李心, 丁行武, 等. 一种机车橡胶堆刚度性能设计新思路探讨[J]. 机车电传动, 2021,(1):29-33. DOI: 10.13890/j.issn.1000-128x.2021.01.006.
Yongguan WANG, Xin LI, Xingwu DING, et al. A New Approach of the Design for Stiffness of Locomotive Bearer Springs[J]. Electric Drive for Locomotives, 2021,(1):29-33. DOI: 10.13890/j.issn.1000-128x.2021.01.006.
随着材料科学技术的进步,橡胶配方中的各种材料、工艺和胶粘剂得到了长足发展,金属橡胶粘结强度甚至可以超过橡胶本体强度,这导致机车橡胶堆可尝试采用新型的橡胶自由外型面。以一个典型的机车二系橡胶堆刚度设计为案例,提出了一种利用有限元分析方法进行垂向刚度设计的新方法。在材料参数、结构型式和接口尺寸不变的条件下,仅通过橡胶自由外型面的“外凸”型设计,就显著调整了橡胶堆的垂向刚度性能,初步探讨了这种橡胶堆刚度性能设计的新方法和新思路。
With the development of material science technology, the various materials, process methods and adhesives of rubber formula have been developed as well. The bond strength between rubber and metal can even exceed the tensile strength of the rubber itself, which results in the rubber free profile of convex shape could be adopted in the design of locomotive bearer spring. Taking the design of classic bearer springs as an example, a new design approach of the vertical stiffness with the FEA method was proposed. The new method and the new idea of the approach proposed based on the research was discussed that the vertical stiffness of bearer spring can be changed significantly when the rubber free profile was designed to be convex shape under the condition of unchanged material parameters, structure type and interface size.
机车橡胶堆橡胶自由外型面有限元刚度性能
locomotive bearer springrubber free profilefinite elementstiffness
刘建勋, 卜继玲. 轨道车辆转向架橡胶弹性元件应用技术[M]. 北京: 中国铁道出版社, 2012.
LIU Jianxun, BU Jiling. Rubber elastic elements applied technology on the bogie of railway locomotive and car[M]. Beijing: China Railway Publishing House, 2012.
户原春彦. 防振橡胶及其应用[M]. 牟传文,译. 北京: 中国铁道出版社, 1982.
TOHARA Haruhiko. Vibration isolation rubber and the application[M]. Beijing: China Railway Publishing House, 1982.
龚积球, 龚震震, 赵熙雍. 橡胶件的工程设计及应用[M]. 上海: 上海交通大学出版社, 2003.
GONG Jiqiu, GONG Zhenzhen, ZHAO Xiyong. Engineering design and application with rubber components[M]. Shanghai: Shanghai Jiaotong University Press, 2003.
严济宽. 机械振动隔离技术[M]. 上海: 上海科学技术文献出版社, 1986.
YAN Jikuan. Mechanical vibration and isolation technology[M]. Shanghai: Shanghai Scientific and Technological Literature Press, 1986.
A.N. 詹特. 橡胶工程—如何设计橡胶配件[M]. 张立群, 田明, 刘力, 等,译. 北京: 化学工业出版社, 2002.
GENT A N. Engineering with rubber: how to design rubber components[M]. Beijing: Chemical Industry Press, 2002.
卜继玲, 黄友剑. 轨道车辆橡胶弹性元件设计计算方法[M]. 北京: 中国铁道出版社, 2010.
BU Jiling, HUANG Youjian. Design and calculation of rubber elastic elements on railway locomotive and car[M]. Beijing: China Railway Publishing House, 2010.
卜继玲, 王永冠, 宋传江. 铁道车辆橡胶弹性元件设计仿真与校验[J]. 铁道机车车辆, 2011, 31(1): 98-101.
BU Jiling, WANG Yongguan, SONG Chuanjiang. Design simulation and verification for the rubber suspension elements of rolling stock[J]. Railway Locomotive and Car, 2011, 31(1): 98-101.
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