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微波辅助热处理对烧结透辉石微晶玻璃的益处。

Benefits of Microwave-Assisted Heat Treatment for Sintered Diopside Glass-Ceramics.

作者信息

Karamanov Alexander, Colombini Elena, Ferrante Dario, Georgiev Ivan, Raykovska Miryana, Karamanova Emilia, Atanasova Stela, Veronesi Paolo, Leonelli Cristina

机构信息

Institute of Physical Chemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 11, 1113 Sofia, Bulgaria.

Department of Engineering "Enzo Ferrari", University of Modena and Reggio Emilia, Via P. Vivarelli 10, 41125 Modena, Italy.

出版信息

Materials (Basel). 2025 Jan 17;18(2):421. doi: 10.3390/ma18020421.

Abstract

Sinter-crystallization is a specific method of producing glass-ceramics that allows the manufacture of complexly shaped products, composites and solder. However, it usually is limited when the glass powders used are characterized by a high crystallization trend. This study proposes a new opportunity to improve the sinter-crystallization and demonstrates the benefits of microwave processing using diopside (CaMg(SiO)) glass-ceramics with an enhanced crystallinity of ~70%. The advantages of microwave processing are shown by comparing the results obtained with scanning electron microscopy, X-ray computed tomography and gas pycnometry for two glass-ceramic specimens. The first sample is obtained in the heat resistant furnace of an optical dilatometer, while the second is obtained by heating it with high-power microwave irradiation at 2.45 GHz, 1kW. Intense crystallization was observed in the sample sintered in an electric furnace, which blocked the sintering process and resulted in significant open porosity (7.1%). In addition, closed pores caused by the crystallization are observed in the centers of the sintered particles (5.2%). At the same time, the overall porosity of the microwave-sintered glass-ceramic is reduced by about two times, and the open porosity is practically eliminated (0.5%). In this sample, together with the crystallization-induced pores, some residual closed spherical pores, typical for a well-sintered sample, are also observed.

摘要

烧结结晶是一种生产微晶玻璃的特定方法,它能够制造形状复杂的产品、复合材料和焊料。然而,当所使用的玻璃粉末具有较高的结晶趋势时,该方法通常会受到限制。本研究提出了一种改善烧结结晶的新机会,并展示了使用透辉石(CaMg(SiO))微晶玻璃进行微波处理的优势,其结晶度提高到了约70%。通过对两个微晶玻璃样品进行扫描电子显微镜、X射线计算机断层扫描和气密度测定,并比较所得结果,展示了微波处理的优势。第一个样品是在光学膨胀仪的耐热炉中制备的,而第二个样品是通过在2.45GHz、1kW的高功率微波辐射下加热制备的。在电炉中烧结的样品中观察到强烈的结晶现象,这阻碍了烧结过程,并导致了显著的开孔率(7.1%)。此外,在烧结颗粒的中心观察到由结晶引起的闭孔(5.2%)。同时,微波烧结微晶玻璃的总孔隙率降低了约两倍,开孔率实际上消除了(0.5%)。在这个样品中,除了结晶诱导的孔隙外,还观察到一些残留的闭球形孔隙,这是烧结良好的样品所特有的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f41/11767068/578fd6931cf3/materials-18-00421-g001.jpg

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