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.
[2]
LEE B L,LIIU D S.Cumulative damage of fiber-reinforced elastomer composite under fatigue loading[J].Journal of Composite Materials,1994,28(13):1261-1286.
[3]
LEE B L,KU B H,LIU D S,et al.Fatigue of cord-rubber composites:II strain-based fatigue failure criteria[J].Rubber Chemistry and Technology,1998,71(2):866-888.
[4]
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):889-1009.
CROSCH K.Rolling resistance and fatigue life of tires[J].Rubber Chemistry and Technology,1988,61(1):42-63.
[8]
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,1997.4-5.
[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]
CAUSA A G.Fatigue testing of polymeric reinforcing cords[J].Tire Technology International,1996,22(4):1101-1103.
[14]
POKLUDA I.Fatigue of steel cords[J].Kautsch Gummi Kunstst,1989,42(5):410-414.
[15]
ANDREAS T E,BJORN E,LEIF B.Lifetime and Young's modulus changes of glass/phenolic and glass/polyester composites under fatigue[J].Composites,1995,26(1):10-16.
[16]
TIAN Z H,SONG H W,WAN Z M,et al.Fatigue properties of steel cord-rubber composite[J].Journal of Elastomers & Plastics,2001,33(4):283-296.