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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >A Novel Cell for Studying Ionic Transport in Powders During Compaction and Its Application to Lithium Silicate Glass Powder
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A Novel Cell for Studying Ionic Transport in Powders During Compaction and Its Application to Lithium Silicate Glass Powder

机译:研究压实过程中粉末中离子迁移的新型电池及其在硅酸锂玻璃粉中的应用

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A new cell was developed to study the behavior of powders during axial compaction at temperatures up to 950 K and pressures up to 1 GPa. Electrical conductivity of the sample is measured by impedance spectroscopy. Change of sample volume can be simultaneously monitored using linear variable differential transducers. Flushing with gases allows pre-conditioning of material surfaces before compaction. The cell was tested with two different grain size fractions (60-150 mu m and 200-250 mu m) of lithium trisilicate glass in the brittle deformation range (315 K) and in the partially plastic deformation range (ca. 660 K). The DC conductivity increases linearly with pressure up to 750 MPa at about 660 K. Lower conductivity for the smaller grain size fraction under these conditions is attributed to higher shares of pores between the grains, acting as resistors.
机译:开发了一个新的单元来研究粉末在高达950 K的温度和高达1 GPa的压力下的轴向压缩过程中的行为。样品的电导率通​​过阻抗光谱法测量。样本量的变化可以使用线性可变差动传感器同时进行监控。用气体冲洗可以在压实之前对材料表面进行预处理。在脆性变形范围(315 K)和部分塑性变形范围(约660 K)中,用三硅酸锂玻璃的两种不同晶粒度分数(60-150μm和200-250μm)对电池进行了测试。在约660 K的压力下,直流电导率随压力高达750 MPa线性增加。在这些条件下,较小晶粒度分数的电导率较低是由于晶粒之间用作电阻的孔隙比例更高。

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