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Use of microwave oven in the calcination of MgO and effect on the properties of magnesium phosphate cement

机译:微波炉在氧化镁中的应用及其对磷酸镁水泥性能的影响

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There is significant interest in materials synthesized at room temperature, because they represent an alternative to current energy problems. These include magnesium phosphate cements, moldable ceramics that combine low density and good mechanical strength, obtained in short time intervals. The calcination of magnesium oxide (MgO), required due to its high reactivity with phosphates, increases the cost of processing, and the addition of retarders is required to increase the setting time of these cements. In this study, methods for increasing the setting time of these cements, and the evaluation of alternatives to reduce the calcination temperature of MgO were investigated. The microwave calcination of MgO at 1000 degrees C, in the presence of absorbers of the radiation, resulted in cements with properties superior to those obtained with conventional calcined powders at 1100 degrees C. In addition, a heating rate five-times higher and a dwell time four times less than used to conventional firing methods were used. This demonstrates the promising use of additivation and firing in a microwave oven to reduce the calcination temperature of MgO and optimize the properties of the resulting magnesium phosphate cements. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在室温下合成的材料引起了极大的兴趣,因为它们代表了当前能源问题的一种替代选择。这些产品包括磷酸镁水泥,可模制的陶瓷,可在短时间内获得低密度和良好的机械强度。由于氧化镁(MgO)与磷酸盐的高反应性而需要煅烧,这增加了加工成本,并且需要添加阻滞剂以增加这些水泥的凝结时间。在这项研究中,研究了增加这些水泥凝结时间的方法,以及评估降低MgO煅烧温度的替代方法的评估。在辐射吸收剂的存在下,在1000摄氏度下对MgO进行微波煅烧,得到的水泥的性能优于在1100摄氏度下使用常规煅烧粉末获得的水泥。此外,加热速率高五倍,并且具有保质期所使用的时间是传统射击方法的四倍。这证明了在微波炉中添加和烧制有希望的用途,以降低MgO的煅烧温度并优化所得磷酸镁水泥的性能。 (C)2018 Elsevier Ltd.保留所有权利。

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