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首页> 外文期刊>International Journal of Adhesion & Adhesives >Effect of green modification of nanoclay on the adhesion behavior of EPDM rubber to polyester fabric
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Effect of green modification of nanoclay on the adhesion behavior of EPDM rubber to polyester fabric

机译:纳米粘土绿色改性对涤纶织物EPDM橡胶粘附性能的影响

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摘要

Rubber-coated fabrics have received much attention because of their excellent processability and unique mechanical properties. In this research, two approaches were used to prepare organoclay/ethylene propylene diene terpolymer (OC/EPDM) nanocomposites. One of them was based upon a nonpolar EPDM in which the EPDM was grafted with maleic anhydride (EPg) with OC namely (OC/EPg/EPDM); while the other was based on a green modified organoclay in which stearic acid was used to form an expanded organoclay (EOC) namely (EPDM/EOC). The EPDM compounds were loaded with 20 wt% of a long oil alkyd resin based on soyabean oil (LAR). The bonding system applied in the mixes consisted of hexamethylenetetramine-resorcinol-hydrated silica (HRH). The different mixes were loaded with different concentrations of OC and EOC. The rubber nanocomposites were immersed in an equal weight of toluene to prepare a rubber dough. This dough was spread over a polyester fabric; cured to form the final proofed product. The peel strength technique was used to assess the adhesion strength between the EPDM rubber and the polyester fabric. The reaction mechanism of EOC with the EPDM/ polyester fabric in the presence of a bio-alkyd resin was studied. Moreover, the rubber proofed fabric was subjected to ultraviolet (UV) irradiation at different doses. The net product of proofed fabric was also subjected to various tests such as air and water permeability, flammability and antimicrobial activity. In all cases, the use of the EOC/EPDM or the OC/EPg/EPDM systems enhanced the physico-mechanical and physico-chemical properties of the rubber-proofed fabrics with the exception of thermal stability as determined from themogravimetric analysis which decreased, especially the degradation onset temperature (T-10%). These materials provide a promising approach for use in advanced rubber technology applications.
机译:橡胶涂层面料由于其优异的可加工性和独特的机械性能而受到多大关注。在该研究中,使用两种方法来制备有机粘土/乙烯丙烯二烯三元共聚物(OC / EPDM)纳米复合材料。其中一个基于非极性EPDM,其中将EPDM用马来酸酐(EPG)与OC即(OC / EPG / EPDM)接枝;虽然另一个基于绿色改性的有机粘土,但是使用硬脂酸形成膨胀的有机粘土(EOC)即(EPDM / EOC)。将EPDM化合物加载基于大豆油(LAR)的20wt%的长油醇酸树脂。在混合物中施加的粘合系统由六亚甲基四胺 - 间苯二酚 - 水合二氧化硅(HRH)组成。用不同浓度的OC和EoC加载不同的混合物。将橡胶纳米复合材料浸入相等的甲苯中以制备橡胶面团。这面团涂在聚酯面料上;固化以形成最终证明产品。剥离强度技术用于评估EPDM橡胶和聚酯织物之间的粘合强度。研究了EOC与EPDM /聚酯织物在生物 - 醇酸树脂存在下的反应机理。此外,将橡胶样织物以不同剂量的紫外线(UV)照射进行紫外线(UV)辐照。检测织物的净产物也经受各种试验,例如空气和水渗透性,易燃性和抗微生物活性。在所有情况下,使用EOC / EPDM或OC / EPG / EPDM系统的使用增强了橡胶防护织物的物理 - 机械和物理化学性质,除了从Themoogimetric分析中确定的热稳定性外,特别是降解发作温度(T-10%)。这些材料提供了一种有希望的方法,用于高级橡胶技术应用。

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