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Multi-layered two stage fibrous composites against low-velocity falling mass and projectile impact

机译:多层两级纤维复合材料,抵抗低速下降质量和射弹冲击

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The Multi-layer Two Stage Fibrous Composite (MTSFC) is an innovative type of composite that has gained popularity in recent years and pulled the attention of researchers on global level. The process of preparation composes the subsequent two key actions; first, the natural coarse aggregate skeleton is formed by piling the coarse aggregates and fibres in a particular way; second, the artificially formed skeleton is fully filled with cement grout by gravity method. In the present study, the effect of Glass Fibre Mesh (GFM) insertion on MTSFC is researched by subjecting to falling mass and projectile impacts. Totally, twenty one mixtures with insertion of GFM of varied diameters and with different layout in between the layers are designed and tested under falling mass and projectile impacts. Additionally, the hooked end fibre at a dosage of 2.5% volume of composite was constantly used for all designed mixtures. The purpose of inserting glass fibre mesh in between the top-middle and middle-bottom layer is to play a role of trapping layer in order to prevent/delay the crack propagation. The multiple number of hits to provoke crack initiation and crack ultimate, impact energy at crack initiation and crack ultimate, impact ductility index, front damage area, bottom damage area, damage ratio, depth of penetration and damage pattern are studied hereby. The findings revealed that the GFM reinforcement stratagem combined with steel fibres in MTSFC, turned out to deliver high resistance against impact load and extends the failure duration by absorbing more energy. Also, findings indicated that the depth of penetration, damage area and damage ratio were raised with the number of hits and were lessened by the high content steel fibres together with GFM and coarse aggregate. Consequently, the effect of GFM insertion is minimal when it is placed inbetween top-middle layer. Preferably, it is best to insert GFM inbetween mid-bottom layer in the MTSFC, which extends to delay the crack proliferation while tensile stress are being transformed and offers more impact energy absorbance. The research outcomes obtained from this study is to deliver a baseline information for continuing a deeper research work on MTSFC under impact. (C) 2020 Elsevier Ltd. All rights reserved.
机译:多层两级纤维复合物(MTSFC)是近年来越来越受欢迎的创新类型,并拉动了研究人员对全球层面的关注。准备过程构成后续的两个关键行动;首先,通过以特定方式堆放粗骨料和纤维来形成天然粗骨料骨架;其次,人工形成的骨架通过重力法完全填充水泥灌浆。在本研究中,通过对肿块和射弹冲击进行落下的玻璃纤维网(GFM)在MTSFC上的影响。完全,在物质下降和射弹冲击下,设计并在层之间插入具有不同直径的GFM和不同布局的20个混合物。另外,钩状端纤维在2.5%体积的复合材料中持续用于所有设计的混合物。在上部和中间层之间插入玻璃纤维网的目的是发挥捕获层的作用,以防止/延迟裂缝传播。在此,研究了抗裂启动和裂纹裂纹启动和裂缝终极,冲击延展性指数,前损伤区域,底部损伤区域,损伤比,穿透和损伤深度深度的裂缝启动和裂缝终极的次数。结果表明,MTSFC中的GFM加固架与钢纤维结合,结果通过吸收更多能量来提供高抗撞击载荷的高阻,并延长故障持续时间。此外,调查结果表明,用击球的数量升高了渗透,损伤区域和损伤比,并通过高含量的钢纤维与GFM和粗骨料一起减小。因此,当在顶部中间层中放置时,GFM插入的效果最小。优选地,最好在MTSFC中插入MTSFC中的中间底层中的GFM,这延伸以延迟裂缝增殖,同时抗拉应力被转化并提供更多的冲击能量吸光度。本研究中获得的研究结果是提供基线信息,以继续对MTSFC进行更深入的研究。 (c)2020 elestvier有限公司保留所有权利。

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