期刊
COMPOSITES SCIENCE AND TECHNOLOGY
卷 68, 期 6, 页码 1376-1383出版社
ELSEVIER SCI LTD
DOI: 10.1016/j.compscitech.2007.11.015
关键词
hygrothermal effect; mechanical properties; strength; impact behavior
This study investigated the combined effects of water absorption and thermal environment on compression after impact (CAI) characteristics of CFRP laminates. Specimens were immersed in 71 degrees C water for over 10,000 h to quantify the ratio of water absorption in the CFRP laminates. Numerical simulation based on Fick's law was conducted to predict moisture diffusion using the measured orthotropic diffusivities. Compression tests after drop-weight impact tests were carried out at various temperatures, i.e. -54 degrees C, 22 degrees C, 82 degrees C, 121 degrees C, 149 degrees C, 177 degrees C. Delamination area and the number of transverse cracks of the wet specimen were smaller than those of dry specimens. Smaller delamination area of the wet specimens provides higher CAI strength than the dry specimens at mid-high temperatures of 22 degrees C, 82 degrees C and 121 degrees C. The CAI strength of the wet CFRP decreased slightly at 149 'C and significantly at 177 degrees C because the glass transition temperature deteriorates seriously due to the water absorption. The failure mode changes at high temperature, i.e. impact induced delamination is not the trigger of the failure but buckling induced crippling causes final failure at 177 degrees C. (c) 2007 Elsevier Ltd. All rights reserved.
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