用TiO2/BN颗粒增强航空级铝复合材料的干滑动和力学特性

IF 4.7 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Anil Chourasiya, C.M. Krishna
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引用次数: 0

摘要

目前的工作是利用液体冶金工艺结合超声波换能器,研究用不同重量百分比的TiO2(1,2 %)和BN(0.5, 1,1.5 %)颗粒增强AA7050复合材料的发展。研究了复合材料的晶体结构、力学性能和干滑动磨损性能。采用先进的表征技术,如光学显微镜,FESEM和光学轮廓仪分析来研究微观结构和磨损表面形貌。在干滑动情况下,采用针盘结构进行复合磨损试验,使用各种滑动距离和典型载荷。复合材料的微观结构分析表明,增强颗粒在基体上均匀分布。力学和磨损试验结果表明,TiO2质量分数为2%,BN颗粒质量分数为1%的复合材料具有最佳性能。显微硬度和抗压强度最大值分别为177 HV和541.73 MPa。复合材料机械性能的提高是由于TiO2/BN颗粒的硬性质。磨损的磨损销的FESEM检查显示表面有磨损碎片、小沟槽、裂纹和犁沟。利用光学轮廓仪对磨损表面进行了表面粗糙度和三维分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dry sliding and mechanical characteristics of aerospace grade aluminium composite reinforced with TiO2/BN particle
The current work examined the development of the AA7050 composite reinforced with different weight percentages of TiO2 (1, 2 %) and BN (0.5, 1, 1.5 %) particles utilizing a liquid metallurgy process combined with an ultrasonic transducer. The crystal structural, mechanical, and dry sliding wear behaviour of the manufactured composite was investigated. Advanced characterization techniques like as optical microscopy, FESEM, and optical profilometer analysis were employed to investigate microstructure and worn surface morphology. The composite wear test was carried out on a pin-on-disc configuration under dry sliding circumstances, using various sliding distances and typical loads. Microstructure analysis of the composite reveals a homogeneous division of reinforcing particles across the matrix. The results of the mechanical and wear tests revealed that the compound with 2 % TiO2 by weight and 1 % BN particles has optimum value. The maximum values of microhardness and compressive strength are found to be 177 HV and 541.73 MPa, respectively. This increase in the mechanical properties of the composite is due to the hard nature of TiO2/BN particles. FESEM examination of worn out wear pin shows wear debris, small grooves, cracks, and ploughing on the surface. Surface roughness and 3D analysis of worn surfaces were analyzed using an optical profilometer.
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来源期刊
Materials Chemistry and Physics
Materials Chemistry and Physics 工程技术-材料科学:综合
CiteScore
8.70
自引率
4.30%
发文量
1515
审稿时长
69 days
期刊介绍: Materials Chemistry and Physics is devoted to short communications, full-length research papers and feature articles on interrelationships among structure, properties, processing and performance of materials. The Editors welcome manuscripts on thin films, surface and interface science, materials degradation and reliability, metallurgy, semiconductors and optoelectronic materials, fine ceramics, magnetics, superconductors, specialty polymers, nano-materials and composite materials.
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