首页> 外文会议>Functional materials and metallurgy >Synthesis and Characterization Investigations of Laboratory-Synthesized VB-VB_2-V_3B_4 Reinforced Al-7wt. Si Composites via Mechanical Alloying and Pressureless Sintering
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Synthesis and Characterization Investigations of Laboratory-Synthesized VB-VB_2-V_3B_4 Reinforced Al-7wt. Si Composites via Mechanical Alloying and Pressureless Sintering

机译:机械合金化和无压烧结实验室合成的VB-VB_2-V_3B_4增强Al-7wt。%Si复合材料的合成与表征研究

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摘要

In this study, the effect of mechanical alloying (MA) on the microstructural, mechanical and physical properties of vanadium boride particulate reinforced Al-7 wt. % Si matrix composites were investigated. VB-VB_2-V_3B_4 containing vanadium boride hybrid powders were mechanochemically synthesized for 5 h from the V_2O_5-B_ 2O_3-Mgpowder blends and leached with hydrochloric acid (HC1) for purification. Laboratory-synthesized VB-VB_2-V_3B_4 powders were incorporated into the Al-7wt. % Si matrix powders with the amount of 2 wt.% via MA for 4h in a Spex™ Mixer/Mill using hardened steel vial/balls with a ball-to-powder weight ratio of 7/1. After the MA process, phase analysis (X-ray diffraction), particle size analysis (laser particle size measurement), surface area analysis (Brunauer-Emmett-Teller measurement) and microstructural characterization (scanning electron microscope (SEM) micrograph) and thermal analysis (differential scanning calorimetry (DSC)) of the non-milled/milled Al-7 wt.% Si-2wt.% (VB-VB_2-V_3B_4) powders were conducted. As-blended and MA'd powders were compacted at a uniaxial hydraulic press to obtain cylindrical compacts with a diameter of 12 mm under a pressure of 400 MPa. Green bodies were sintered at 570℃ for 2 h under Ar gas flowing conditions. Microstructural characterizations of the sintered samples were carried out using XRD and optical microscope (OM). Physical and mechanical properties of the composites were investigated in terms of density (Archimedes method), Vickers microhardness and wear rate. The microhardness and wear rate of the 4h of MA'd and sintered sample respectively increased to 0.865±0.256 GPa and 0.0036 mm~3/N.m as compared with those of as-blended and sintered sample.
机译:在这项研究中,机械合金化(MA)对硼化钒颗粒增强的Al-7 wt。的组织,力学和物理性能的影响。研究了%Si基复合材料。从V_2O_5-B_2O_3_Mgpowder混合物中机械化学合成了含VB-VB_2-V_3B_4的硼化钒杂化粉末5小时,并用盐酸(HCl)浸提以纯化。将实验室合成的VB-VB_2-V_3B_4粉末掺入Al-7wt中。在Spex™混合器/研磨机中,使用硬化钢瓶/小球(球粉重量比为7/1)在4个小时内通过MA以2%。%的量添加2%的Si基粉末。 MA处理后,进行相分析(X射线衍射),粒度分析(激光粒度测量),表面积分析(Brunauer-Emmett-Teller测量)和微观结构表征(扫描电子显微镜(SEM)显微照片)以及热分析(未扫描/已研磨的Al-7重量%Si-2重量%(VB-VB_2-V_3B_4)粉末)(差示扫描量热法(DSC))被进行。将混合的粉末和MA'd粉末在单轴液压机上压实,以在400 MPa的压力下获得直径为12 mm的圆柱形压块。在氩气流动条件下,将生坯在570℃烧结2 h。使用XRD和光学显微镜(OM)进行了烧结样品的微观结构表征。根据密度(阿基米德法),维氏显微硬度和磨损率研究了复合材料的物理和机械性能。 MA'd和烧结后样品的4h显微硬度和磨损率分别比掺和烧结后样品高0.865±0.256 GPa和0.0036 mm〜3 / N.m。

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  • 来源
  • 会议地点 Shanghai(CN)
  • 作者单位

    lstanbul Technical University, Chemical and Metallurgical Engineering Faculty, Metallurgical and Materials Engineering Department, Particulate Materials Laboratories (PML), 34469 Maslak, Istanbul, Turkey;

    lstanbul Technical University, Chemical and Metallurgical Engineering Faculty, Metallurgical and Materials Engineering Department, Particulate Materials Laboratories (PML), 34469 Maslak, Istanbul, Turkey;

    Adnan Tekin Materials Science and Production Technologies Applied Research Center (ATARC), Istanbul Technical University, 34469 Maslak, Istanbul, Turkey;

    lstanbul Technical University, Chemical and Metallurgical Engineering Faculty, Metallurgical and Materials Engineering Department, Particulate Materials Laboratories (PML), 34469 Maslak, Istanbul, Turkey;

    lstanbul Technical University, Chemical and Metallurgical Engineering Faculty, Metallurgical and Materials Engineering Department, Particulate Materials Laboratories (PML), 34469 Maslak, Istanbul, Turkey;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mechanical alloying; Aluminum based metal matrix composites; Vanadium borides; mechanochemical synthesis;

    机译:机械合金化;铝基金属基复合材料;硼化钒;机械化学合成;
  • 入库时间 2022-08-26 14:00:12

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