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Tensile Behavior of Polyurethane Organic Polymer and Polypropylene Fiber-Reinforced Sand

机译:聚氨酯有机聚合物和聚丙烯纤维增强砂的拉伸行为

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摘要

Physical and chemical reinforcements are commonly used to improve sand properties for engineering requirements. Many researchers have concluded that composite reinforcement can greatly improve sand property strength. In this paper, polyurethane organic polymer (PU) and polypropylene fiber (PF) were used to reinforce sand. It is found that composite reinforcement has great effects on tensile strength. A series of direct tensile tests were conducted to demonstrate this reinforcement and to investigate the effects of PF content, PU content, dry density, and curing time. Additionally, the reinforcement mechanism was analyzed by scanning electron microscope images. The tensile strength increases with curing time until it reaches a plateau. The composite reinforcement improves the tensile strength exponentially with the increase of PF and PU contents. For the effect due to dry density, the tensile strength first increased and then decreased with the peak at approximately 1.55 g/cm3. Through the interaction force among fibers and sand particles and the bonding force of polymer among sand particles, tensile strength of reinforced sand is greatly improved.
机译:物理和化学增强剂通常用于改善工程要求的砂子性能。许多研究人员得出的结论是,复合增强材料可以大大提高砂的强度。在本文中,聚氨酯有机聚合物(PU)和聚丙烯纤维(PF)被用来加固沙子。发现复合增强材料对拉伸强度有很大的影响。进行了一系列直接拉伸试验,以证明这种增强作用并研究PF含量,PU含量,干密度和固化时间的影响。另外,通过扫描电子显微镜图像分析了增强机理。抗拉强度随着固化时间的增加而增加,直到达到稳定状态。随着PF和PU含量的增加,复合增强材料的抗拉强度呈指数增长。对于由于干密度引起的效果,抗拉强度首先增加,然后降低,峰值约为1.55 g / cm 3 。通过纤维与砂粒之间的相互作用力以及砂粒之间聚合物的结合力,大大提高了增强砂的抗张强度。

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