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Comparative Study on Mechanical Properties of CR340/CFRP Composites through Three Point Bending Test by Using Theoretical and Experimental Methods

机译:理论和实验方法通过三点弯曲试验比较CR340 / CFRP复合材料力学性能

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摘要

In this study, Cold Rolled 340 (CR340)/Carbon Fiber Reinforced Plastic (CFRP) composites were fabricated, and experiments and simulation were performed to compare their flexural properties from three-point bending tests. The mechanical properties of CR340 and CFRP were input by dividing the material regime into elastic, plastic, and fracture regions in order to improve the simulation reliability. A forming limit diagram was determined through a stretch test for the CR340 steel plate and used as data input in the simulation. For CFRP, simulation was carried out using the Hashin damage theory and damage evolution obtained from references. Results showed that the maximum bending stress, fracture displacement, and gradient in the experiments closely matched those obtained from the simulation.
机译:在这项研究中,制造了冷轧340(CR340)/碳纤维增强塑料(CFRP)复合材料,并进行了实验和模拟以比较其三点弯曲试验的弯曲性能。通过将材料范围划分为弹性,塑性和断裂区域来输入CR340和CFRP的机械性能,以提高仿真的可靠性。通过拉伸试验确定了CR340钢板的成形极限图,并将其用作模拟中的数据输入。对于CFRP,使用Hashin损伤理论进行了模拟,并从参考文献中获得了损伤演化。结果表明,最大弯曲应力,断裂位移和梯度在实验中与从模拟获得的结果非常匹配。

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