The zirconia ceramic ring was prepared using fused monoclinic zirconia as main starting material, adopting composite stabilizer of magnesia, yttria and calcium nitrate, and applying recombination technology of traditi...The zirconia ceramic ring was prepared using fused monoclinic zirconia as main starting material, adopting composite stabilizer of magnesia, yttria and calcium nitrate, and applying recombination technology of traditional refractories and ceramics. Effect of the preparation process on material properties was comparatively studied, and the microstructure and phase composition were analyzed. The results show that adopting the high-speed mixing granulation process and the appropriate heat treatment can realize the control on the phase composition and microstructure, the zirconia ceramic ring with good thermal shock resitance and mechanical properties can be prepared.展开更多
利用ANSYS建立齿形滑环式组合密封的二维轴对称模型,分析压缩量、介质压力及齿形滑环结构对组合密封的接触应力、变形、Von M ises应力及剪应力的影响。结果表明:随着压缩量的增加,组合密封的变形及接触应力增大,O形圈的受力减小;随着...利用ANSYS建立齿形滑环式组合密封的二维轴对称模型,分析压缩量、介质压力及齿形滑环结构对组合密封的接触应力、变形、Von M ises应力及剪应力的影响。结果表明:随着压缩量的增加,组合密封的变形及接触应力增大,O形圈的受力减小;随着介质压力的增加,组合密封的变形、接触应力及O形圈的受力增大,因此,在较大介质压力条件下,应适当增加压缩量;适当改变齿形滑环的尺寸,可以使得O形圈受力减小,且齿形滑环不易磨损,使用寿命延长。展开更多
文摘The zirconia ceramic ring was prepared using fused monoclinic zirconia as main starting material, adopting composite stabilizer of magnesia, yttria and calcium nitrate, and applying recombination technology of traditional refractories and ceramics. Effect of the preparation process on material properties was comparatively studied, and the microstructure and phase composition were analyzed. The results show that adopting the high-speed mixing granulation process and the appropriate heat treatment can realize the control on the phase composition and microstructure, the zirconia ceramic ring with good thermal shock resitance and mechanical properties can be prepared.
文摘利用ANSYS建立齿形滑环式组合密封的二维轴对称模型,分析压缩量、介质压力及齿形滑环结构对组合密封的接触应力、变形、Von M ises应力及剪应力的影响。结果表明:随着压缩量的增加,组合密封的变形及接触应力增大,O形圈的受力减小;随着介质压力的增加,组合密封的变形、接触应力及O形圈的受力增大,因此,在较大介质压力条件下,应适当增加压缩量;适当改变齿形滑环的尺寸,可以使得O形圈受力减小,且齿形滑环不易磨损,使用寿命延长。