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碳化硅-碳化钨混合颗粒增强自润滑铜-6石墨复合材料的力学和摩擦学性能评估

Evaluation of Mechanical and Tribological Aspect of Self-Lubricating Cu-6Gr Composites Reinforced with SiC-WC Hybrid Particles.

作者信息

Usca Üsame Ali, Şap Serhat, Uzun Mahir, Giasin Khaled, Pimenov Danil Yurievich

机构信息

Department of Mechanical Engineering, Bingöl University, Bingöl 12000, Turkey.

Department of Electricty and Energy, Bingöl University, Bingöl 12000, Turkey.

出版信息

Nanomaterials (Basel). 2022 Jun 23;12(13):2154. doi: 10.3390/nano12132154.

Abstract

Because of their high thermal conductivity, good corrosion resistance, and great mechanical qualities, copper matrix composites are appealing materials utilized in a variety of industries. This study investigates the mechanical properties of copper-graphite (Cu-Gr) matrix composites reinforced with silicon carbide (SiC) and tungsten carbide (WC) particles by hot pressing using powder metallurgy method. The goal is to investigate the influence of the reinforcement ratio on the mechanical characteristics of copper composite materials generated (density, hardness, flexural strength, and wear resistance). SEM, EDS, and X-RD analysis were used to perform metallographic examinations. The highest relative density with a value of 98.558% was determined in the C3 sample. The findings revealed that when the reinforcement ratio was raised, the hardness rose. The highest hardness value was observed in the C6 sample with an increase of 12.52%. Sample C4 (with the lowest SiC and WC particles ratio) had the highest bending stress (233.18 MPa). Bending stress increased by 35.56% compared to the C1 sample. The lowest specific wear rates were found in the C4 sample, with a decrease of 82.57% compared to the C1 sample. The lowest wear rate (6.853 × 10 mm/Nm) also occurred in the C4 sample. The microstructural analysis showed that the hybrid reinforcement particles exhibited a homogeneous distribution in the copper matrix. X-RD analysis showed that there was no intermediate reaction between the parent matrix and the hybrid reinforcements. A good interfacial bond was observed between the matrix structure and the hybrid reinforcements. The motivation of this research was to utilise the advantages of the unique features of SiC-WC hybrid particles to improve the performance of newly developed Cu-6Gr composites for wear-resistance applications.

摘要

由于具有高导热性、良好的耐腐蚀性和出色的机械性能,铜基复合材料是在各种行业中使用的有吸引力的材料。本研究采用粉末冶金法通过热压研究了用碳化硅(SiC)和碳化钨(WC)颗粒增强的铜-石墨(Cu-Gr)基复合材料的力学性能。目的是研究增强比例对所制备的铜复合材料力学特性(密度、硬度、弯曲强度和耐磨性)的影响。使用扫描电子显微镜(SEM)、能谱仪(EDS)和X射线衍射仪(X-RD)分析进行金相检验。在C3样品中确定了最高相对密度,值为98.558%。研究结果表明,当增强比例提高时,硬度增加。在C6样品中观察到最高硬度值,增加了12.52%。样品C4(SiC和WC颗粒比例最低)具有最高弯曲应力(233.18MPa)。与C1样品相比,弯曲应力增加了35.56%。在C4样品中发现最低的比磨损率,与C1样品相比降低了82.57%。最低磨损率(6.853×10mm/Nm)也出现在C4样品中。微观结构分析表明,混合增强颗粒在铜基体中呈现均匀分布。X-RD分析表明,母基体与混合增强体之间没有中间反应。在基体结构与混合增强体之间观察到良好的界面结合。本研究的目的是利用SiC-WC混合颗粒独特特性的优势,提高新开发的用于耐磨应用的Cu-6Gr复合材料的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcc5/9268748/50bd9d7e1f1e/nanomaterials-12-02154-g001.jpg

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