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Fabrication of Metal Matrix Composite by Laser Metal Deposition—A New Process Approach by Direct Dry Injection of Nanopowders

机译:激光金属沉积制备金属基复合材料—纳米粉末直接干式注射的新工艺方法

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摘要

Laser Metal Deposition (LMD) offers new perspectives for the fabrication of metal matrix nanocomposites (MMnCs). Current methods to produce MMnCs by LMD systematically involve the premixing of the nanopowders and the micropowders or require in-situ strategies, thereby restricting the possibilities to adjust the nature, content and location of the nano-reinforcement during printing. The objective of this study is to overcome such restrictions and propose a new process approach by direct injection of nanoparticles into a metallic matrix. Alumina (n-Al O ) nanoparticles were introduced into a titanium matrix by using two different direct dry injection modes in order to locally increase the hardness. Energy dispersive X-ray spectroscopy (EDS) analyses validate the successful incorporation of the n-Al O at chosen locations. Optical and high resolution transmission electron microscopic (HR-TEM) observations as well as X-ray diffraction (XRD) analyses indicate that n-Al O powders are partly or totally dissolved into the Ti melted pool leading to the in-situ formation of a composite consisting of fine α lamellar microstructure within a Ti matrix and a solid solution with oxygen. Mechanical tests show a significant increase in hardness with the increase of injected n-Al O amount. A maximum of 620 HV was measured that is almost 4 times higher than the pure LMD-printed Ti structure.
机译:激光金属沉积(LMD)为金属基纳米复合材料(MMnC)的制造提供了新的视角。当前通过LMD生产MMnC的方法系统地涉及纳米粉和微粉的预混合或需要原位策略,从而限制了在印刷过程中调节纳米增强物的性质,含量和位置的可能性。这项研究的目的是克服这些限制,并提出一种通过将纳米颗粒直接注入金属基质中的新工艺方法。通过使用两种不同的直接干式注射模式将氧化铝(n-Al O)纳米颗粒引入钛基体中,以局部提高硬度。能量色散X射线光谱(EDS)分析验证了在选定位置成功掺入n-AlO。光学和高分辨率透射电子显微镜(HR-TEM)观察以及X射线衍射(XRD)分析表明,n-Al O粉末部分或全部溶解在Ti熔池中,导致原位形成Ti。这种复合材料由Ti基体内的精细α层状微结构和氧固溶体组成。机械测试表明,随着注入的n-Al O量的增加,硬度显着增加。测得的最大620 HV几乎是纯LMD印刷的Ti结构的4倍。

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