Experimental Study on Strength of Concrete using Glass Fiber

K. Rajendhiran
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Abstract

Abstract. Plain concrete retains veritably low tensile strength, limited rigidity and little resistance to cracking. Cracks are innately present in concrete and their poor tensile strength is due to propagation of similar micro-crack filaments when added at certain chance in the concrete to ameliorate the strain parcels as well as crack resistance, to rigidity as flexure strength and durability. Substantly, the studies and exploration of fiber corroborating concrete has been diverted to sword filaments. In recent times, glass filaments have also become available which are free from erosion problems associated with sword filaments. In this design, examination was conducted using glass fiber with concrete. Anti crack, hyperactive dissipation, alkali resistance glass fiber of periphery 14 microns, having an aspect ratio of 857 were employed in probabilities, varying from 0.33 to 1 chance weight in concrete and the parcels of this fiber corroborated concretelike contraction,flexure strength, durability,and tensile strength was studied.
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玻璃纤维混凝土强度试验研究
摘要素混凝土的抗拉强度很低,刚性有限,抗裂性很小。裂缝天生就存在于混凝土中,它们的抗拉强度差是由于在混凝土中添加类似的微裂缝细丝以改善应变包和抗裂性、刚度、抗弯强度和耐久性时,在一定的机会下,类似的微裂缝细丝的传播。在很大程度上,纤维对混凝土的研究和探索已经转向了剑丝。在最近的时代,玻璃长丝也成为可用的,它没有与剑丝相关的侵蚀问题。在本设计中,使用玻璃纤维与混凝土进行了试验。抗裂、超活跃耗散、抗碱玻璃纤维的周长为14微米,长径比为857,在混凝土中的概率变化从0.33到1的机会重量,该纤维的包裹证实了混凝土的收缩、弯曲强度、耐久性和抗拉强度。
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