Acidic whey as a novel coupling agent for composites based on E-Glass fibers and low-density polyethylene

Hussein Mushatti, Mohammad Makharzeh, Raed Ma’ali, S. Sawalha
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引用次数: 0

Abstract

In order to enhance the interfacial-adhesion between short E-glass fibers and low-density polyethylene (LDPE), acidic whey; a dairy byproduct was applied as coupling agent. The fibers were immersed in acidic whey for 12, 24, 36, 48 and 60 hours. Composite materials containing 20 wt.% E- glass fibers and LDPE were prepared by extrusion process. The tensile strength and modulus of the produced composites were improved by using acidic whey, and the improvement in those properties was strongly affected by the immersion time of E-glass fibers in acidic whey. An increase of about 289%, 107%, 291% and 721% in modulus of elasticity, tensile strength, modulus efficiency and strength efficiency factors respectively were achieved after 60 hours of immersion of glass fibers in acidic whey. The effects of acidic whey on tensile properties and efficiency factors could be ascribed to the mend in interfacial-adhesion between glass fibers and LDPE polymer.
酸性乳清作为e -玻璃纤维-低密度聚乙烯复合材料的新型偶联剂
为了增强e -玻璃短纤维与低密度聚乙烯(LDPE)之间的界面附着力,酸性乳清;以一种乳制品副产品为偶联剂。将纤维浸泡在酸性乳清中12、24、36、48和60小时。采用挤压法制备了含20 wt.% E-玻璃纤维和LDPE的复合材料。酸性乳清可提高复合材料的抗拉强度和模量,而e -玻璃纤维在酸性乳清中的浸泡时间对这些性能的提高有很大影响。玻璃纤维在酸性乳清中浸泡60 h后,弹性模量、抗拉强度、模量效率和强度效率因子分别提高289%、107%、291%和721%。酸性乳清对拉伸性能和效率因子的影响可归因于玻璃纤维与LDPE聚合物之间界面粘附的改善。
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