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A study of the effect of strain rate and temperature on the characteristics of quasi-unidirectional natural fibre reinforced composites

机译:应变速率和温度对准单向天然纤维增强复合材料性能影响的研究

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摘要

The responses of quasi-unidirectional vegetable fibres (sisal and flax) - styrene polyester matrix composites under 6J nominal strike energy at different sample temperatures and at higher impact energies of 9J and 12J for samples at room temperature have been studied and indentation properties realized from static loading at different crosshead displacement speeds. The findings are explained in terms of the impact characteristics. At temperatures above ambient there were changes in the impact characteristics. The drop impact tests were carried out on samples (70mm x 70mm x 5mm) at an ambient temperature of 180C and elevated temperatures of 400C, 600C, 800C and 1000C using an instrumented drop tester with a 12.1 mm diameter hemispheric tup and the load history and energy profile were obtained. The actual damage response depends on many intrinsic and extrinsic factors, including the thickness of the laminate, the exact stacking sequence, the shape and kinetic energy of the impactor and the degree to which the laminate is supported against bending. The examination of the impact and post impact characteristics at elevated temperatures revealed a plastic mode of failure and the performance was assessed in terms of contact time, post impact displacement and total energy. Composites are generally brittle in nature and respond elastically with little or no plastic deformation, but this is not the case for natural fibre - styrene polyester matrix composites especially at high temperatures as there exists some degree of plasticity seen in the after impact state of the samples. Low energy impact (6J) results in cracking of the matrix leading to reduction in the strength of the composite. But higher energy impact strikes produce cracking of the matrix and splintering of the fibres. From the load - indentation curves average power coefficients of 3.6 and 15.4 were obtained for sisal and flax composites respectively as against 1.5 for the special Hertz contact of two elastic bodies.
机译:研究了准单向植物纤维(剑麻和亚麻)-苯乙烯聚酯基复合材料在6J标称打击能量下,在不同样品温度下以及在9J和12J较高冲击能量下在室温下对样品的响应,并通过静态实现压痕性能以不同的十字头位移速度加载。根据影响特征对发现进行了解释。在高于环境温度的情况下,冲击特性会发生变化。跌落冲击测试是在具有180°C的环境温度和400°C,600°C,800°C和1000°C的高温下,使用直径为12.1毫米的半球形塞子的仪器跌落测试仪对样品(70mm x 70mm x 5mm)进行的,以及载荷历史和获得能量分布。实际的损坏响应取决于许多内在和外在因素,包括层压板的厚度,确切的堆叠顺序,冲击器的形状和动能以及层压板被支撑以防弯曲的程度。在高温下对撞击和撞击后特性的检查揭示了塑性破坏模式,并根据接触时间,撞击后位移和总能量评估了性能。复合材料通常是易碎的,并且具有弹性响应,几乎没有或没有塑性变形,但是对于天然纤维-苯乙烯聚酯基复合材料却不是这种情况,尤其是在高温下,因为样品在撞击后的状态下存在一定程度的可塑性。低能量冲击(6J)会导致基体开裂,从而降低复合材料的强度。但是,较高的能量冲击会导致基体开裂和纤维分裂。从载荷-压痕曲线可以得出,剑麻和亚麻复合材料的平均功率系数分别为3.6和15.4,而两个弹性体的特殊赫兹接触则为1.5。

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