Rapid Sinterability of Mechanically Alloyed MgAl/MgO Composite with the Field-Assisted Sintering Technique

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
Tugce Tekin, Rasim İpek
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引用次数: 0

Abstract

In this study, a Mg22Al/10MgO composite could be produced at nearly full density by the field-assisted sintering technique at relatively low temperatures and for short time such as 400°C and 15 min under the vacuum-argon atmosphere. The Mg22Al matrix consists of 22 wt % Al, produced by mechanical alloying for 18h and then mixed 2 h with 10 wt % MgO as a reinforcement material. The microstructure of the sample was analysed using an optical microscope, SEM, EDS and XRD. Mechanical properties such as micro hardness, density and compression strength are also obtained. With a compression strength of 314.4 MPa and a hardness value of 137 HV, the composite obtained nearly theoretical density-TD of 0.99. The crystal distortion was measured and calculated by using XRD results. Furthermore, minor amounts of fine intermetallic compounds and oxides such as Al3Mg2, AlMg, γ-Al12Mg17 Al2O3 and MgO were detected. The field-assisted sintering technique, which allows rapid and low-temperature sintering, is used in this study to show that the mechanical properties of the mechanically alloyed microstructure are likely to be preserved during sintering. Furthermore, it demonstrates that when Al and Mg are mechanically alloyed, the alloying pair is a very suitable metal matrix material for composites in which a reinforcing phase, such as MgO, forms an insufficient interface.

Abstract Image

场助烧结技术制备机械合金MgAl/MgO复合材料的快速烧结性能
在本研究中,在真空-氩气气氛下,在相对较低的温度和较短的时间(400°C和15 min)下,场辅助烧结技术可以制备出接近全密度的Mg22Al/10MgO复合材料。Mg22Al基体由22wt %的Al组成,通过机械合金化18h,然后与10wt %的MgO作为增强材料混合2h。采用光学显微镜、扫描电镜、能谱仪和x射线衍射仪对样品的微观结构进行了分析。机械性能,如显微硬度,密度和抗压强度也得到了。复合材料的抗压强度为314.4 MPa,硬度值为137 HV,密度- td接近理论值0.99。利用x射线衍射(XRD)结果对晶体畸变进行了测量和计算。此外,还检测到少量细小的金属间化合物和氧化物,如Al3Mg2、AlMg、γ-Al12Mg17、Al2O3和MgO。现场辅助烧结技术允许快速和低温烧结,在本研究中表明,在烧结过程中,机械合金微观组织的力学性能很可能被保留。当Al和Mg机械合金化时,合金对是一种非常合适的金属基材料,其中MgO等增强相形成的界面不足。
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来源期刊
Russian Journal of Non-Ferrous Metals
Russian Journal of Non-Ferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.90
自引率
12.50%
发文量
59
审稿时长
3 months
期刊介绍: Russian Journal of Non-Ferrous Metals is a journal the main goal of which is to achieve new knowledge in the following topics: extraction metallurgy, hydro- and pirometallurgy, casting, plastic deformation, metallography and heat treatment, powder metallurgy and composites, self-propagating high-temperature synthesis, surface engineering and advanced protected coatings, environments, and energy capacity in non-ferrous metallurgy.
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