首页> 外文期刊>Journal of Sandwich Structures and Materials >Degradation mechanisms of balsa wood and PVC foam sandwich core composites due to freeze/thaw exposure in saline solution
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Degradation mechanisms of balsa wood and PVC foam sandwich core composites due to freeze/thaw exposure in saline solution

机译:Balsa木材和PVC泡沫夹层芯复合材料的降解机制由于盐水溶液中的冷冻/解冻暴露

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摘要

Structural engineers commonly use balsa wood and PVC foam as core materials for sandwich composite structures. These structures are frequently exposed to thermal cycling in sea water. The long-term performance and damage mechanism of these composite sandwich structures under such environmental conditions are still unclear. To simulate these effects, sandwich panels using balsa wood (SB100) and foam core (Airex C70.55) with fiber glass/vinyl ester face sheets were exposed to 100 days of freeze/thaw exposure (-20celcius to 20celcius). The freezing and thawing occurred in presence of a saline solution. A total of 150 samples were tested for core shear, core compression, and peel tests. Results confirmed that exposure reduced the balsa wood core shear strength by 14%, compression strength by 36%, and compression modulus by 33%. Interestingly, the PVC foam core shear modulus increased by 25% after exposure, whereas the compression modulus reduced by 12%. Simulated lifetime core shear fatigue curves were developed and evaluated. Additional testing techniques such as scanning electron microscopy, optical microscopy, dynamical mechanical analysis, and X-ray computed tomography were used to rationalize the static and fatigue behavior of the core materials.
机译:结构工程师通常使用Balsa Wood和PVC泡沫作为夹层复合结构的核心材料。这些结构经常暴露于海水中的热循环。在这种环境条件下,这些复合夹层结构的长期性能和损坏机制仍不清楚。为了模拟这些效果,使用Balsa Wood(SB100)和泡沫芯(AIREX C70.55)与纤维玻璃/乙烯基酯面板的夹层面板暴露于100天的冷冻/解冻暴露(-20celcius至20cellcius)。在存在盐溶液存在下发生冷冻和解冻。测试芯剪,核心压缩和剥离试验的总共150个样品。结果证实,曝光将BALSA木芯剪切强度降低14%,压缩强度,缩小36%,压缩模量33%。有趣的是,PVC泡沫芯剪切模量曝光后增加25%,而压缩模量减少了12%。模拟寿命核心剪切疲劳曲线开发和评估。诸如扫描电子显微镜,光学显微镜,动力学机械分析和X射线计算机断层扫描的额外测试技术用于合理化核心材料的静态和疲劳行为。

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