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A fatigue damage parameter for life assessment of off-axis unidirectional GRP composites

机译:用于离轴单向GRP复合材料寿命评估的疲劳损伤参数

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摘要

The present study develops a fatigue damage parameter to assess the fatigue damage of unidirectional glass fiber reinforced plastic (GRP) composites. The proposed parameter is based on the physics and the mechanism of fatigue cracking within three damage regions of matrix (I), fiber-matrix interface (II), and fiber (III) in these materials as the number of cycles progresses. In region I, damage was initiated in the form of microcracks within the matrix. For region II, damage progress took place along the matrix-fiber interface leading to fiber fracture in region III. The proposed fatigue damage model successfully correlated fatigue lives of unidirectional GRP composites at various off-axis angles theta and stress ratios R as compared with other earlier developed fatigue parameters.
机译:本研究开发了疲劳损伤参数,以评估单向玻璃纤维增​​强塑料(GRP)复合材料的疲劳损伤。提出的参数是基于物理和随着循环次数的增加,在这些材料中的基质(I),纤维-基质界面(II)和纤维(III)的三个损伤区域内的疲劳裂纹机理。在区域I中,损坏以基质内的微裂纹形式发生。对于区域II,破坏进程沿基质-纤维界面发生,导致区域III中的纤维断裂。与其他较早开发的疲劳参数相比,拟议的疲劳损伤模型成功地关联了单向GRP复合材料在各种偏轴角theta和应力比R下的疲劳寿命。

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