期刊文献+

215/70R17.5全钢载重子午线轮胎胎冠性能优化 被引量:1

Optimization on Crown Performance of 215/70R17.5 Truck and Bus Radial Tire
下载PDF
导出
摘要 以215/70R17.5全钢载重子午线轮胎为研究对象,通过内轮廓调整和带束层结构优化,探讨内轮廓设计及材料分布优化对轮胎性能的影响。结果表明,通过以减小胎肩及肩下厚度为设计目标的内轮廓和材料分布优化及带束层结构由3层调整为3层+1层0°带束层,轮胎强度提升26%,胎冠部位整体的充气膨胀量和负荷下轮胎下沉量减小,轮廓的径向稳定性提升,轮胎耐久性能大幅提升,滚动阻力系数减小。 Taking 215/70R17.5 truck and bus radial tires as the research object,the effects of inner contour design and material distribution optimization on the tire performance were discussed through inner contour adjustment and belt structure optimization.The results showed that through the optimization of the inner contour and material distribution which reduced the thickness of the tire shoulder and the layer under the shoulder,and the adjustment of the belt structure from 3 layers to 3 layers with an additional layer of 0°belt,the tire strength was increased by 26%,the overall inflation expansion of the crown and the tire deformation under typical load were reduced,the radial stability of the contour was improved,the durability of the tire was greatly improved,and the rolling resistance coefficient was reduced.
作者 孙佳佳 孙宝余 鲁强 SUN Jiajia;SUN Baoyu;LU Qiang(Triangle Tire Co.,Ltd,Weihai 264200,China)
出处 《轮胎工业》 CAS 2023年第5期275-278,共4页 Tire Industry
关键词 全钢载重子午线轮胎 胎冠性能 材料分布 内轮廓设计 成品轮胎性能 truck and bus radial tire crown performance material distribution internal contour design finished tire performance
  • 相关文献

参考文献11

二级参考文献45

  • 1何晓玫,吴桂忠,王铭新.低断面轿车子午线轮胎PDEP设计理论[J].橡胶工业,1995,42(2):67-71. 被引量:10
  • 2陈蔚,马改陵,崔文勇.带束层角度对全钢子午线轮胎应力影响的有限元分析[J].北京化工大学学报(自然科学版),2005,32(6):82-86. 被引量:4
  • 3伍江涛,夏松茂.汽车轮胎滚动阻力及其测试方法[J].中国橡胶,2007,23(21):27-33. 被引量:15
  • 4Robecchi E, Amici L. Mechanics of the Pneumatic Tire. Part 1. The Tire under Inflation Alone[J]. Tire Science and Technology, 1973,1 (3) :290-345.
  • 5Frank F, Hofferberth W M. Mechanics of the Pneu- matic Tire [J]. Rubber Chemistry and Technology, 1967, 40(1):271-322.
  • 6Lim W W, Yoon K Y, Cho C T. Effects of Carcass Cords' Properties on Sidewall Indentation in a Monoply Tire [J]. Tire Science and Technology, 2000,28(1) . 50-57.
  • 7Akasaka T, Katok M, Nihei S. Two-dimensional Contact Pressure Distribution of a Radial Tire[J]. Tire Science and Technology, 1990,18 (2) 80-103.
  • 8Akasaka T. Structural Mechanics of Radial Tires [J]. Rubber Chemistry and Technology, 1981, 54 (3) . 461-492.
  • 9Thiel K H,Ruehmer T.Novel functionalized synthetic rubbers for tire applications[J].KGK-Kautschuk Gummi Kunststoffe,2013,66(2):38-44.
  • 10Reverberi F.What 2013and beyond holds for SSBR[J].Rubber World,2013,247(4):6-8.

共引文献68

同被引文献5

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部