CFRP层合板火烧后拉伸行为及失效机理研究
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华东交通大学土木建筑学院,江西 南昌 330013

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雷祖祥(1986—),男,教授,博士,博士生导师,德国洪堡学者,江西省双千计划人才,研究方向为岩土工程及复合材料。E-mail:zxlei@ecjtu.edu.cn。

中图分类号:

TB332

基金项目:

国家自然科学基金面上项目(12172130);江西省自然科学基金重点项目(20232ACB201007)


Experimental Investigation on Tensile Behavior and Failure Mechanism of CFRP Laminates After Fire Exposure
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School of Civil Engineering and Architecture, East China Jiaotong University, Nanchang 330013 , China

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    摘要:

    为了研究CFRP层合板火烧后的拉伸行为及失效机理,对3种不同铺层的CFRP层合板进行了火烧后的拉伸试验。采用红外热像仪进行热稳定性监控,并通过SEM进一步分析了火烧温度、纤维铺层对CFRP层合板热解行为的影响,最后通过载荷-位移、应力-应变曲线和失效形貌研究了其抗拉强度及失效机理。试验表明:CFRP层合板在高温火烧时发生了热解行为和质量损失,损伤主要包括基体分解、纤维/基体界面脱粘和分层。与400 ℃相比,600 ℃下试件的质量损失成倍增加,损伤程度更为严重。±45°层合板的曲线趋势相近,但强度差异最明显,这是由于其性能高度依赖于树脂和纤维/基体黏结。对比高温火烧后的强度,0°层合板最高,0°/90°层合板次之,±45°层合板最低,且0°层合板的退化率最小。

    Abstract:

    To investigate the tensile behavior and failure mechanism of carbon fiber reinforced polymer (CFRP) composites after fire exposure, tensile tests were conducted on three different layups of CFRP laminates subjected to fire exposure. Thermal stability was monitored using an infrared thermal imager, followed by microstructural analysis via SEM to investigate the effects of burn temperature and fiber lay-up on the pyrolysis behavior of CFRP laminates. Finally, their tensile strength and failure mechanisms were evaluated through load-displacement curves, stress-strain curves, and failure morphologies. The results show that CFRP laminates subjected to high-temperature exposure exhibit significant pyrolysis and mass loss, and their damage mechanisms include matrix decomposition, fiber/matrix interface debonding, and interlaminar delamination. Compared to 400 ℃, specimens exhibit a twofold increase in mass loss and more severe damage at 600 ℃. A similar trend in curves and a significant difference in strength are found in ±45° laminates, whose mechanical performance depends greatly on the resin properties and fiber/matrix adhesion. The ranking of tensile strength for specimens after fire exposure is as follows: 0° laminate, 0°/90° laminate, and ±45° laminate. Furthermore, the 0° laminate experiences the smallest degradation rate.

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雷祖祥,张和,潘锐,等. CFRP层合板火烧后拉伸行为及失效机理研究[J]. 华东交通大学学报,2025,42(5): 104-112.

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  • 收稿日期:2025-02-17
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  • 在线发布日期: 2025-11-25
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