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UHMWPE fibre-based composites: Prestress-induced enhancement of impact properties

机译:UHMWPE纤维基复合材料:预应力诱导的冲击性能增强

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The impact properties of continuous unidirectional UHMWPE fibre-reinforced polyester resin composites have been investigated, to elucidate the effects of prestress on energy absorption characteristics. Pre-stress within composite samples was produced by subjecting the UHMWPE fibres to a creep load, which was then released prior to moulding. From Charpy impact tests, these viscoelastically prestressed samples absorbed ~20% more energy than their control (unstressed) counterparts, with some batches reaching 30-40%. Generally, whether prestress is created through elastic or viscoelastic means, fibre-matrix debonding is regarded as being a major energy absorption mechanism in this type of composite, but this was not evident in the current study. Instead, evidence of debonding at the skin-core interface within the UHMWPE fibres was found, the skin regions possessing lower stiffness and longer term viscoelastic activity. Skin-core debonding appears to have a significant energy absorbing role within the prestressed samples and we believe it is a previously unrecognised mechanism.
机译:研究了连续单向UHMWPE纤维增强聚酯树脂复合材料的冲击性能,以阐明预应力对能量吸收特性的影响。复合样品中的预应力是通过使UHMWPE纤维承受蠕变载荷而产生的,然后在模塑之前将其释放。根据夏比冲击试验,这些粘弹性预应力样品比对照样品(无应力)吸收的能量多20%左右,有些批次达到30-40%。通常,无论是通过弹性方式还是通过粘弹性方式产生预应力,纤维基质剥离都是这种复合材料的主要能量吸收机制,但这在当前研究中并不明显。取而代之的是,发现在UHMWPE纤维内的皮肤-核心界面处发生剥离的证据,皮肤区域具有较低的硬度和较长期的粘弹性。皮芯剥离在预应力样品中似乎具有重要的能量吸收作用,我们认为这是以前无法识别的机制。

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