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Experimental investigation of (FRSC) cementitious composite functionally graded slabs under projectile and drop weight impacts

机译:(FRSC)胶结复合材料功能梯度板在弹丸和落锤冲击下的实验研究

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The purpose of this study was to investigate the impact strength of functionally graded reinforce concrete (FGRC) slabs made with self-compacting cementitious composites. To this end, 60 slabs measuring 40 x 40 x 7.5 cm which had been reinforced with 1% fixed volume of steel and nylon fibers were made. Some of them were entirely reinforced concrete slabs, and their constituent fibers were uniformly distributed in them. Others were FGRC slabs, and their constituent fibers were non-uniformly distributed in them. Non-uniform distribution in the present study means that the fibers were increased in the peripheral layers and they were decreased in the inner layers, although the whole volume of fibers were equally used in all the slabs. Projectile impact tests (high speed) and drop weight impact tests (low speed) were performed on the slabs. The results of these tests showed the considerable effects of steel fibers, and insignificant effects of nylon fibers, on the impact strengths of slabs. The non-uniform distribution of fibers in the FGRC slabs led to their behavior improvement. The FGRC slabs had lower penetration depths and destroyed volume in the projectile impact tests, and they had higher failure strength and energy absorption in the drop weight impact tests, as compared to the entirely reinforced slabs. (C) 2019 Published by Elsevier Ltd.
机译:本研究的目的是研究由自密实水泥复合材料制成的功能梯度钢筋混凝土(FGRC)板的冲击强度。为此,制备了60块尺寸为40×40×7.5cm的板,这些板用1%固定体积的钢和尼龙纤维增强。其中一些是完全钢筋混凝土板,其组成纤维均匀地分布在其中。其他是FGRC平板,其组成纤维分布不均匀。在本研究中,不均匀的分布意味着纤维在外围层中增加,而在内层中减少,尽管在所有平板中均使用了全部纤维。在平板上进行了弹丸冲击试验(高速)和落锤冲击试验(低速)。这些测试的结果表明,钢纤维对平板的冲击强度具有显着影响,而尼龙纤维则具有微不足道的影响。 FGRC平板中纤维的不均匀分布导致其行为得到改善。与全增强板相比,FGRC板在弹丸冲击试验中具有较低的穿透深度和破坏体积,并且在落锤冲击试验中具有较高的破坏强度和能量吸收能力。 (C)2019由Elsevier Ltd.发布

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