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New silicate glass-ceramic materials and composites

机译:新型硅酸盐玻璃陶瓷材料和复合材料

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New silicate glass-ceramic compositions have been investigated due to their interesting chemical, mechanical, thermal, and electrical properties. LZSA glass-ceramics based on P-spodumene (Li2O-Al2O3-4-10SiO2) and zircon (ZrSiO4) crystalline phases have shown good chemical resistance, high bending strength as well as high abrasion resistance, when compared with traditional ceramic materials, and coefficient of thermal expansion from 4.6 to 9.1x10~(-6)°C~(-1). These features basically depend on the nature, size and distribution of the formed crystals as well as on the residual glassy phase. The nature of the formed crystalline phases and consequently the final properties can be controlled by modifying the chemical composition of the parent glass and also by adequate selection of the heat-treatment parameters. The classical fabrication of glass-ceramic materials consists on the preparation of monolithic glass components followed by heat treatments for crystallisation. However, this technology requires high investments and can be justified only for large production. A viable alternative could be the production of glass-ceramics processed from glass powders and consolidated by sintering using the same equipments of traditional ceramic plants. This work reports the manufacturing and characterization of glass-ceramic materials and composites processed by pressing, injection moulding, extrusion, casting, replication, and rapid prototyping.
机译:由于其有趣的化学,机械,热和电性能,已经研究了新的硅酸盐玻璃陶瓷组合物。基于P-氧化铵(Li2O-Al2O3-4-10SiO2)和锆石(ZrsiO4)结晶相的LZSA玻璃陶瓷已经显示出良好的耐化学性,高弯曲强度以及高耐磨性,与传统陶瓷材料相比,系数热膨胀从4.6到9.1×10〜(-6)°C〜(-1)。这些特征基本上取决于所形成的晶体的性质,尺寸和分布以及残留的玻璃相。 The nature of the formed crystalline phases and consequently the final properties can be controlled by modifying the chemical composition of the parent glass and also by adequate selection of the heat-treatment parameters.玻璃 - 陶瓷材料的经典制造包括制备整体玻璃组分,然后进行热处理进行结晶。然而,这项技术需要高投资,并且只能为大型生产而合理。可行的替代方案可以是从玻璃粉末加工的玻璃陶瓷的生产,并通过使用相同的传统陶瓷植物的设备烧结固结。这项工作报告了通过按压,注塑,挤出,铸造,复制和快速原型加工的玻璃陶瓷材料和复合材料的制造和表征。

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