欢迎登录材料期刊网

材料期刊网

高级检索

分别对[0°]和[±20°]橡胶复合材料在拉伸循环载荷下的疲劳损伤进行了实验研究.两类材料的周期最大应变随循环周次的变化遵循三阶段规律,三个阶段对应着疲劳损伤从萌生、稳定扩展到加速扩展直至整体破坏的过程.单层和双层材料的疲劳破坏分别为帘线控制和基体控制.实验表明,用加载最大应力表征的疲劳寿命与循环周次的对数近似成线性关系.疲劳过程中材料的滞后损失基本保持不变.滞后损失和导热系数的差异是造成不同种类试件表面温升差异的主要原因.

参考文献

[1] Crosch K. Rolling resistance and fatigue life of tires [J].Rubber Chemistry and Technology, 1988, 61(1) : 42-63.
[2] 谭惠丰.柔性复合材料双重非线性层合理论[D]哈尔滨:哈尔滨工业大学,1997.10-12.Tan H F. Study on double-nonlinear laminated theory of flexible composites [D]. Harbin: Harbin Institute of Technology, 1997. 10-12.
[3] Huang Y S, Yeoh O H. Crack initiation and propagation in model cord-rubber composites [J]. Rubber Chemistry and Technology, 1989, 62(4): 709-714.
[4] Lee B L, Liu D S. Cumulative damage of fiber-reinforced elastomer composite under fatigue loading [J]. Journal of Composite Materials, 1994, 28(13): 1261-1286.
[5] Lee B L, Ku B H, Liu D S, et al. Fatigue of cord-rubber composites( Ⅱ ): Strain-based fatigue failure criteria [J].RubberChemistry and Technology, 1998, 71(2): 866-888.
[6] Ku B H, Liu D S, Lee B L. Fatigue of cord-rubber composites( Ⅲ ): Minimum stress effect [J]. Rubber Chemistry and Technology, 1998, 71(2): 889-905.
[7] 刘宇艳,万志敏,田振辉,等.单向聚酯帘线增强橡胶材料疲劳特性研究[J].复合材料学报,1998,15(4):97-101.Liu Y Y, Wan Z M, Tian Z H, et al. Study on fatigue behavior of unidirectional polyester cord/rubber composites [J], Acta Materiae Compositae Sinica, 1998, 15 (4): 97 -101.
[8] 田振辉,刘宇艳,万志敏,等.聚酯增强橡胶疲劳破坏试验研究[J].材料工程,2000(4):34-37.Tian Z H, Liu Y Y, Wan Z M, et al. Experimental studies on fatigue damage of polyester reinforced rubber [J]. Journal of Materials Engineering, 2000(4): 34-37.
[9] Lake G J. Mechanical fatigue of rubber [J]. Rubber Chemistry and Technology, 1972, 45(1): 307-328.
[10] Young D G. Fatigue and fracture of elastomeric materials [J]. Rubber World, 1991(3): 30-34.
[11] Hamed G R. Molecular aspects of the fatigue and fracture of rubber [J]. Rubber Chemistry and Technology, 1994, 67(3): 529-535.
[12] Forster M J, Perttyman L B. A new improved tirecord fatigue tester [J]. Rubber Chemistry and Technology, 1969,42(4): 1000-1008.
[13] Pokluda I. Fatigue of steel cords [J]. Kautsch Gummi Kunstst, 1989, 42(5): 410-414.
[14] Andreas T E, Bjorn E, Buene L. Lifetime and Young's modulus changes of glass/phenolic and glass/polyester composites under fatigue [J]. Composites. 1995, 26 (1): 10-16.
[15] Tian Z H, Song H W, Wan Z M, et al. Fatigue propertie of steel cord-rubber composite [J]. Journal of Elastomers & Plastics, 2001, 33(4): 283-296.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%