DRY SLIDING BEHAVIOUR OF BORON WASTE REINFORCED EPOXY MATRIX COMPOSITES

Bilge Yaman, N. Ç. Acikbas
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引用次数: 8

Abstract

The demand for utilization of boron wastes related to the generation of massive amounts in each year is on the rise. In order to meet this growing need and demand for fabrication of environmentally friendly products, epoxy matrix composites containing 60wt% of boron wastes was developed. The influence of boron waste addition and the particle size of boron waste on epoxy matrix composites on physico-mechanical and tribological properties were evaluated. It was found that, hardness, flexural modulus and wear resistance properties were increased with the incorporation of boron wastes. Wear resistance increased with increasing boron waste particle size. The lowest specific wear rate was achieved for the largest particle size added composites. The physico-mechanical properties as well as microstructure wear behavior correlation were evaluated comprehensively.
废硼增强环氧基复合材料的干滑动性能
每年产生大量硼废物,对硼废物利用的需求呈上升趋势。为了满足日益增长的对环保产品制造的需求,开发了含硼废物60wt%的环氧基复合材料。考察了硼渣添加量和硼渣粒径对环氧基复合材料物理力学性能和摩擦学性能的影响。硼废料的掺入提高了材料的硬度、弯曲模量和耐磨性。耐磨性能随废硼粒径的增大而增大。添加粒径最大的复合材料的比磨损率最低。综合评价了材料的物理力学性能和微观组织磨损行为的相关性。
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CiteScore
0.70
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