Preparation and study of thermostable composites based on solid magnesium phosphate and calcium phosphate binders

Natalia Apanasevich, K. Lapko, Alexander N. Kudlash, A. Sokal, Yury D. Kliaulin, K. Vishnevskii
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Abstract

Thermostable composite materials based on solid magnesium phosphate and calcium phosphate, as well as hybrid calcium magnesium phosphate binders have been developed and investigated. Thermal and phase transformations of the phosphate composites have been studied. Strength characteristics of composite materials have been determined in the temperature range of 20–1000 °C. It is shown that the obtained phosphate composites have high strength properties (compressive strength reaches 120–130 MPa) and are characterised by high thermal stability in the temperature range up to 1000 °С. The low weight loss of the studied composites (no more than 10 %) and the absence of significant thermal effects indicate that they are promising for use as a thermostable matrix for obtaining functional composite materials.
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固体磷酸镁-磷酸钙复合材料的制备与研究
基于固体磷酸镁和磷酸钙的热稳定复合材料,以及杂化磷酸钙镁粘结剂的开发和研究。研究了磷酸盐复合材料的相变和相变。复合材料的强度特性在20-1000℃的温度范围内进行了测定。结果表明,制备的磷酸盐复合材料具有较高的强度(抗压强度达到120-130 MPa),并且在高达1000°С的温度范围内具有较高的热稳定性。所研究的复合材料的失重率低(不超过10%),并且没有明显的热效应,这表明它们有希望用作获得功能复合材料的热稳定基体。
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