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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Fabrication of graded alumina by spark plasma sintering
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Fabrication of graded alumina by spark plasma sintering

机译:火花等离子烧结法制备梯度氧化铝

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摘要

Functionally graded materials (FGMs) attract considerable interest in materials science and industry, since their composition or morphology gradually changes along their length, width, or height, which provides new approach for the development of multifunctional materials. In this paper, we studied the fabrication of a gradient microstructure in alumina (Al2O3) by spark plasma sintering (SPS). During the SPS process, the applied asymmetric graphite tool configuration causes a large temperature gradient, which results in a gradually changing morphology in Al2O3 ceramics. The local temperatures were quantitatively measured through extra thermocouples during SPS processes with various asymmetric configurations. In the most asymmetric configuration, a maximum vertical temperature difference of 225 degrees C was detected within the sample treated at a sintering temperature of 1300 degrees C and a pressure of 25 MPa applied 200 degrees C center dot min(-1) heating rate. The microstructure investigations demonstrated the morphology gradient in the ceramic: one part of the Al2O3 exhibited fine, nanostructured morphology with large open and permeable pores, whereas the other part was solid without pores. Our investigations show that a gradient Al2O3 ceramic can be produced with a single-step SPS process, which offers new directions in FGMs research. With an asymmetric sintering configuration and the sintering conditions, the structure of the ceramic, such as porosity, can be designed according to the requirements of the application area.
机译:功能梯度材料(FGM)的组成或形貌沿其长度、宽度或高度逐渐变化,在材料科学和工业领域引起了极大的兴趣,这为多功能材料的开发提供了新的途径。本文研究了通过火花等离子烧结(SPS)制备氧化铝(Al2O3)梯度微观结构.在SPS过程中,施加的不对称石墨工具配置会导致较大的温度梯度,从而导致Al2O3陶瓷的形貌逐渐改变。在具有各种不对称配置的SPS过程中,通过额外的热电偶定量测量局部温度。在最不对称的配置中,在烧结温度为1300°C和压力为25MPa的压力下,在200°C中心点最小(-1)加热速率下处理的样品中检测到最大垂直温差为225°C。微观结构研究证明了陶瓷的形貌梯度:Al2O3的一部分表现出精细的纳米结构形态,具有较大的开放和可渗透孔,而另一部分是固体,没有孔隙。研究表明,采用单步SPS工艺可以制备梯度Al2O3陶瓷,为FGMs研究提供了新的方向。通过不对称烧结配置和烧结条件,可以根据应用领域的要求设计陶瓷的结构,例如孔隙率。

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