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Experimental field investigation of impact and blast load resistance of Ultra High Performance Fibre Reinforced Cementitious Composites (UHPFRCCs)

机译:超高性能纤维增强水泥基复合材料(UHPFRCC)的抗冲击和爆炸载荷性能的实验现场研究

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Ultra High Performance Fibre Reinforced Cementitious Composites (UHPFRCCs) represent a class of cement composites which have superior characteristics in terms of material properties. These materials have, however, a significant increase in cost compared to conventional and even High Performance Concrete and it is therefore appropriate to identify applications which will fully utilise their mechanical properties and performance characteristics. A new class of UHPFRCC material has been developed through the experimental work of a research project entitled "Mix Design, Mechanical Properties and Impact Resistance of UHPFRCCs", designated UHP-CY. The material is characterised by high compressive strength, high tensile/flexural strength and high-energy absorption capacity. The research work presented in this paper focused on the experimental investigation of the quality and the behaviour of this material in a highly demanding application, such as the impact and blast resistance of structures. The impact resistance of UHP-CY slabs was experimentally verified in a range of real firing shots, using several weapons and projectile types. A purpose-built experimental setup was developed for this work. It was observed that relatively thin slabs made of this material can be an outstanding protective overlay of existing structures, since they can prevent the penetration of strong projectiles without shaped charges. Moreover, these panels can also minimise the damage of retrofitted Reinforced Concrete structures, hit by projectiles with shaped charges. The presence of a high volume fraction (i.e. 6%) of steel fibres in UHP-CY overlays contributes substantially to the control of the back face spalling and fragmentation of the RC walls. (C) 2015 Elsevier Ltd. All rights reserved.
机译:超高性能纤维增强水泥基复合材料(UHPFRCC)代表了一类水泥复合材料,在材料性能方面具有卓越的特性。但是,与常规甚至是高性能混凝土相比,这些材料的成本显着增加,因此适合确定能够充分利用其机械性能和性能特征的应用。通过名为“ UHPFRCC的混合设计,机械性能和抗冲击性”的研究项目的实验工作,开发了一种新型的UHPFRCC材料。该材料的特点是高抗压强度,高抗拉/抗弯强度和高能量吸收能力。本文提出的研究工作集中于对这种材料的质量和性能的实验研究,这种材料在要求很高的应用中(例如结构的抗冲击性和抗爆炸性)。使用多种武器和弹丸类型,在一系列实际射击中,通过实验验证了UHP-CY板的耐冲击性。为此目的开发了专用的实验装置。据观察,由这种材料制成的相对较薄的平板可以作为现有结构的出色保护层,因为它们可以防止坚固的弹丸穿透而没有成形装药。此外,这些面板还可以最大程度地减少翻新的钢筋混凝土结构受到带成形装药的射弹的伤害。 UHP-CY覆盖层中存在高体积分数(即6%)的钢纤维,这在很大程度上有助于控制RC墙的背面散裂和碎裂。 (C)2015 Elsevier Ltd.保留所有权利。

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