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Control of Residual Stress in Multilayered Alumina Composites Prepared Using EPD in a Strong Magnetic Field

机译:EPD在强磁场中控制多层氧化铝复合材料残余应力的控制

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摘要

The mechanical properties of ceramics materials can be tailored by designing their microstructures. Residual stress is one of the important factors for controlling the crack propagation and consequently improving the mechanical properties. On the other hand, development of the crystallographic orientation even in a diamagnetic ceramic can be controlled by colloidal processing in a strong magnetic field. In this study, alumina/alumina laminar composites with different crystalline-oriented layers were fabricated by EPD in a strong magnetic field in order to control the residual stress using the difference in the thermal expansion of each layer.
机译:陶瓷材料的机械性能可以通过设计其微观结构进行调整。残余应力是控制裂纹扩展并因此改善机械性能的重要因素之一。另一方面,即使在抗磁性陶瓷中,也可以通过在强磁场中的胶体处理来控制结晶取向的发展。在这项研究中,EPD在强磁场中制造了具有不同晶体取向层的氧化铝/氧化铝层状复合材料,以便利用每一层的热膨胀差异来控制残余应力。

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