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Mechanical Behavior of Stainless Steel Fiber-Reinforced Composites Exposed to Accelerated Corrosion

机译:不锈钢纤维增强复合材料在加速腐蚀下的力学行为

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摘要

Recent advancements in metal fibers have introduced a promising new type of stainless steel fiber with high stiffness, high failure strain, and a thickness < 100 μm (<0.00394 in.) that can be utilized in a steel fiber-reinforced polymer. However, stainless steel is known to be susceptible to pitting corrosion. The main goal of this study is to compare the impact of corrosion on the mechanical properties of steel fiber-reinforced composites with those of conventional types of stainless steel. By providing experimental evidences, this study may promote the application of steel fiber-reinforced composite as a viable alternative to conventional metals. Samples of steel fiber-reinforced polymer and four different types of stainless steel were subjected to 144 and 288 h of corrosion in ferric chloride solution to simulate accelerated corrosion conditions. The weight losses due to corrosion were recorded. The corroded and control samples were tested under monotonic tensile loading to measure the ultimate stresses and strains. The effect of corrosion on the mechanical properties of the different materials was evaluated. The digital image correlation (DIC) technique was used to investigate the failure mechanism of the corrosion-damaged specimens. Overall, steel fiber-reinforced composites had the greatest corrosion resistance.
机译:金属纤维的最新进展引入了一种有前途的新型不锈钢纤维,该纤维具有高刚度,高破坏应变和小于100μm(<0.00394英寸)的厚度,可用于钢纤维增强的聚合物中。但是,已知不锈钢容易发生点蚀。这项研究的主要目的是比较腐蚀对钢纤维增强复合材料与常规类型不锈钢的机械性能的影响。通过提供实验证据,该研究可以促进钢纤维增强复合材料作为常规金属的可行替代品的应用。对钢纤维增强聚合物和四种不同类型的不锈钢样品在氯化铁溶液中进行144和288小时的腐蚀,以模拟加速腐蚀条件。记录由于腐蚀引起的重量损失。在单调拉伸载荷下测试腐蚀后的样品和对照样品,以测量极限应力和应变。评估了腐蚀对不同材料的机械性能的影响。利用数字图像相关技术(DIC)研究了腐蚀损伤试样的破坏机理。总体而言,钢纤维增强复合材料具有最大的耐腐蚀性。

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