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首页> 外文期刊>Journal of Applied Polymer Science >Atomic force and scanning electron microscopic studies of effect of crosslinking system on properties of maleated ethylene-propylene-diene monomer rubber composites filled with short melamine fibers
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Atomic force and scanning electron microscopic studies of effect of crosslinking system on properties of maleated ethylene-propylene-diene monomer rubber composites filled with short melamine fibers

机译:交联体系对三聚氰胺短纤维填充的马来酸乙烯-丙烯-二烯单体橡胶复合材料性能影响的原子力和扫描电镜研究

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摘要

This article reports the development of new composites based on maleated ethylene-propylene-diene monomer (EPDM) rubber and melamine fiber. The compositions are cured using three different types of curing systems: conventional covalent crosslinking based on sulfur and an accelerator, fully ionic crosslinking based on zinc oxide/zinc stearate, and mixed crosslinking involving both covalent and ionic bonds. A dry bonding system comprising resorcinol, hexamethylene tetramine, and hydrated silica, popularly known as HRH, is found to increase the mechanical properties of the composites cured using both the sulfur/accelerator and mixed crosslinking systems. However, incorporation of the dry bonding system and/or melamine fiber adversely affects the strength of the composites if the linkages are fully ionic. Among the three crosslinking systems employed, composites prepared by using the mixed crosslinking system give higher tensile strength and modulus. Aging at 150degreesC for 48 h causes improvement in the strength and modulus of the composites cured by using the sulfur/accelerator system, particularly at higher fiber loading. However, in the case of an ionic system, both the modulus and strength drop with aging; in the case of the mixed crosslinking system, the modulus increases, but there is a drop in strength on aging. Rheological studies of the uncured compounds show that the presence of zinc stearate in the formulations of mixed and ionic crosslinking systems results in reduced viscosity and a smoother extrudate as compared to the sulfur crosslinking system. An atomic force microscopy analysis of the roughness reveals that the fiber surface roughness is reduced because of aging for the ionic crosslinking system. This is attributable to the formation of a zinc stearate layer on the fiber surface, which also reduces the adhesion between the fiber and the matrix, thereby reducing the hysteresis after aging. However, for the sulfur and mixed crosslinking system, the roughness of the fiber surface is increased and there is a concomitant increase in hysteresis. (C) 2003 Wiley Periodicals, Inc. [References: 30]
机译:本文报道了基于马来化乙烯-丙烯-二烯单体(EPDM)橡胶和三聚氰胺纤维的新型复合材料的开发。使用三种不同类型的固化系统固化组合物:基于硫和促进剂的常规共价交联,基于氧化锌/硬脂酸锌的完全离子交联以及涉及共价键和离子键的混合交联。发现一种包含间苯二酚,六亚甲基四胺和水合二氧化硅的干粘结体系(通常称为HRH)可提高使用硫/促进剂和混合交联体系固化的复合材料的机械性能。但是,如果键是完全离子的,则干式粘合系统和/或三聚氰胺纤维的掺入会不利地影响复合材料的强度。在使用的三种交联体系中,通过使用混合交联体系制备的复合材料具有更高的拉伸强度和模量。在150℃下老化48小时会导致通过使用硫/促进剂系统固化的复合材料的强度和模量得到改善,特别是在较高的纤维负载下。但是,在离子系统中,模量和强度均会随老化而降低。在混合交联体系的情况下,模量增加,但老化强度降低。对未固化化合物的流变学研究表明,与硫交联体系相比,在混合交联和离子交联体系的配方中存在硬脂酸锌会导致粘度降低,挤出物更光滑。原子力显微镜对粗糙度的分析表明,由于离子交联体系的老化,降低了纤维表面的粗糙度。这归因于在纤维表面上形成硬脂酸锌层,这也降低了纤维与基体之间的粘附性,从而降低了老化后的滞后现象。然而,对于硫和混合交联体系,纤维表面的粗糙度增加,并且磁滞也随之增加。 (C)2003 Wiley Periodicals,Inc. [参考:30]

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