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首页> 外文期刊>Journal of nanomaterials >Formation Behavior of Continuous Graded Composition in Ti-ZrO2Functionally Graded Materials Fabricated by Mixed-Powder Pouring Method
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Formation Behavior of Continuous Graded Composition in Ti-ZrO2Functionally Graded Materials Fabricated by Mixed-Powder Pouring Method

机译:用混合粉末浇注法制造的Ti-ZrO2函数分级材料中连续分级组成的形成行为

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A mixed-powder pouring method has been proposed to fabricate functionally graded materials (FGMs) with the desired compositional gradient. The experimental procedure involves preparation of mixed powders consisting of more than two types of particles with different size and/or density, which exhibit different velocities in suspension and sedimentation to form the green body under gravity conditions. The green body was sintered by a spark plasma sintering (SPS) method. The initiation of the particle settlement was precisely controlled by using crushed ice as the suspension medium. Ti-ZrO2FGMs were fabricated, in this study, using different sizes of ZrO2and Ti particles. Vickers hardness confirmed the compositional gradient in the fabricated FGMs. A numerical simulation was also carried out to analyze the particle movement inside the suspension medium during the formation process and predict compositional gradient in the FGMs.
机译:已经提出了一种混合粉末浇注方法以用所需的组成梯度制造功能梯度的材料(FGM)。实验程序涉及制备由具有不同尺寸和/或密度的两种以上的颗粒组成的混合粉末,其表现出悬浮液中的不同速度,以在重力条件下形成生坯。通过火花等离子体烧结(SPS)方法烧结绿体。通过使用碎冰作为悬浮介质,精确地控制颗粒沉降的启动。在本研究中,使用不同尺寸的ZrO2和Ti颗粒制造Ti-ZrO2FGM。维氏硬度证实了制造的FGM中的组成梯度。还进行了数值模拟,以在地层过程中分析悬浮液内的颗粒运动,并在FGM中预测组成梯度。

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