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Characterization and machining of alumina ceramic reinforced with lanthanum phosphate

机译:磷酸镧增强氧化铝陶瓷的表征与加工

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Increasing demand for materials for severe working environment necessitates the use of ceramics. Fiber/whisker reinforcement in the structure can lead to certain defects such as debonding/delamination. Hence one can resort to particulate reinforcements. Of late attempts have been made to introduce dispersion strengthened/particulate reinforced ceramic composites. Addition of lanthanum phosphate (LaPO{sub}4) and cerium phosphate (CePO{sub}4) to alumina (Al{sub}2O{sub}3) matrix has been attempted. In this study Al{sub}2O{sub}3/LaPO{sub}4 composites containing different LaPO{sub}4 content have been assessed for the significance of LaPO{sub}4 content on structure-property and consequent machinability. Ultrasonic drilling trials have been carried out. The response of the material to the machining environment has been assessed by monitoring the acoustic emission (AE) from the composites and defects induced during machining.
机译:在恶劣的工作环境中,对材料的需求不断增加,因此必须使用陶瓷。结构中的纤维/晶须增强会导致某些缺陷,例如脱胶/分层。因此,人们可以求助于颗粒增强剂。最近已经尝试引入分散增强/颗粒增强的陶瓷复合材料。已尝试将磷酸镧(LaPO {sub} 4)和磷酸铈(CePO {sub} 4)添加到氧化铝(Al {sub} 2O {sub} 3)基质中。在这项研究中,已评估了含有不同LaPO {sub} 4含量的Al {sub} 2O {sub} 3 / LaPO {sub} 4复合材料对LaPO {sub} 4含量对结构性能和可加工性的影响。超声波钻孔试验已经进行。通过监测复合材料的声发射(AE)和在加工过程中引起的缺陷,可以评估材料对加工环境的响应。

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