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首页> 外文期刊>Journal of Materials Research and Technology >Experimental investigation of span length for flexural test of fiber reinforced polymer composite laminates
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Experimental investigation of span length for flexural test of fiber reinforced polymer composite laminates

机译:纤维增强聚合物复合材料层压板弯曲试验跨度的实验研究

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Testing and evaluation of mechanical properties for FRP (Fiber Reinforced Polymer) composite parts play a significant role to qualify it for the end use. Among the mechanical properties, the flexural strength is significant and vital as it may vary with specimen depth, temperature and the test span length. The flexural strength varies for different materials with varying the test span length hence the current work aims to find an optimum span length to test flexural strength for the specimens made of Glass (7781, EC9756) and Carbon (HTA7, G801) prepreg materials. Experiments are conducted as per the ASTM Standard D 790 for flexural test by varying the span lengths to understand the behavior of the flexural strength and flexural modulus. The experimental data were compared with those obtained from the finite element program software Altair Hyper works 14.0. The results indicate that flexural modulus increases with the span length to a point and then it decreases. Thereby, an optimum span length can be obtained for testing flexural strength, which will be useful to the designers and the composite manufacturers to accomplish better standard testing procedures.
机译:FRP(纤维增强聚合物)复合材料零件的机械性能的测试和评估在使其最终用途合格方面起着重要作用。在机械性能中,弯曲强度非常重要,因为弯曲强度可能会随样品深度,温度和测试跨度的变化而变化。不同材料的抗弯强度会随着测试跨度的变化而变化,因此当前的工作旨在为玻璃(7781,EC9756)和碳(HTA7,G801)预浸料制成的样品找到最佳的跨度来测试抗弯强度。根据ASTM D 790标准进行弯曲试验,方法是改变跨度长度,以了解弯曲强度和弯曲模量的行为。将实验数据与从有限元程序软件Altair Hyper works 14.0获得的数据进行比较。结果表明,挠曲模量随着跨度的增加而增加,然后减小。因此,可以获得用于测试抗弯强度的最佳跨度,这对于设计者和复合材料制造商完成更好的标准测试程序将是有用的。

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