首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >A Testing Platform for Durability Studies of Polymers and Fiber-reinforced Polymer Composites under Concurrent Hygrothermo-mechanical Stimuli
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A Testing Platform for Durability Studies of Polymers and Fiber-reinforced Polymer Composites under Concurrent Hygrothermo-mechanical Stimuli

机译:湿热力学刺激下聚合物和纤维增强聚合物复合材料耐久性研究的测试平台

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摘要

The durability of polymers and fiber-reinforced polymer composites under service condition is a critical aspect to be addressed for their robust designs and condition-based maintenance. These materials are adopted in a wide range of engineering applications, from aircraft and ship structures, to bridges, wind turbine blades, biomaterials and biomedical implants. Polymers are viscoelastic materials, and their response may be highly nonlinear and thus make it challenging to predict and monitor their in-service performance. The laboratory-scale testing platform presented herein assists the investigation of the influence of concurrent mechanical loadings and environmental conditions on these materials. The platform was designed to be low-cost and user-friendly. Its chemically resistant materials make the platform adaptable to studies of chemical degradation due to in-service exposure to fluids. An example of experiment was conducted at RT on closed-cell polyurethane foam samples loaded with a weight corresponding to ~50% of their ultimate static and dry load. Results show that the testing apparatus is appropriate for these studies. Results also highlight the larger vulnerability of the polymer under concurrent loading, based on the higher mid-point displacements and lower residual failure loads. Recommendations are made for additional improvements to the testing apparatus.
机译:聚合物和纤维增强聚合物复合材料在使用条件下的耐久性是其坚固设计和基于条件维护的关键方面。这些材料被广泛应用于各种工程应用中,从飞机和船舶结构到桥梁,风力涡轮机叶片,生物材料和生物医学植入物。聚合物是粘弹性材料,它们的响应可能是高度非线性的,因此使其难以预测和监控其在役性能。本文介绍的实验室规模的测试平台有助于调查同时发生的机械负载和环境条件对这些材料的影响。该平台被设计为低成本且用户友好的。其抗化学腐蚀的材料使该平台适用于研究由于在使用中暴露于流体而导致的化学降解。在室温下对闭孔聚氨酯泡沫样品进行了实验,该泡沫样品的重量相当于其最终静态和干负荷的〜50%。结果表明该测试仪器适用于这些研究。基于较高的中点位移和较低的残余破坏载荷,结果还突出显示了聚合物在同时载荷下的更大脆弱性。提出了对测试设备进行其他改进的建议。

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