期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
无机化学实验教学融入前沿科研成果初探——以TiC负载Ir的合成及其在电解水中的应用为例
1
作者 章本天 张婷 +3 位作者 柏雷 姚湾湾 叶龙强 李子荣 《广东化工》 CAS 2024年第15期179-181,共3页
无机化学实验是培养应用化学专业本科生发散性思维和辩证唯物主义世界观的关键训练环节之一,鉴于纳米无机材料在新能源领域的广泛应用,结合本科生学习特点,本文以典型的无机材料合成教学内容为例,首先设计碳热还原法和液相还原法合成Ir/... 无机化学实验是培养应用化学专业本科生发散性思维和辩证唯物主义世界观的关键训练环节之一,鉴于纳米无机材料在新能源领域的广泛应用,结合本科生学习特点,本文以典型的无机材料合成教学内容为例,首先设计碳热还原法和液相还原法合成Ir/TiC催化剂,通过X射线粉末衍射仪、透射电镜仪器对催化剂晶型和形貌进行表征分析,之后应用电化学工作站和电解槽系统评价了催化剂的性能。设计成综合化学实验教学,不仅增强学生无机材料制备分析能力的同时,而且助力学生与科学前沿研究成果“接轨”,提升科学素养。 展开更多
关键词 本科实验教学 无机化学 tic纳米材料 析氧反应 前沿科学
下载PDF
Effect of TiC nanoparticle on friction and wear properties of TiC/AA2219 nanocomposites and its strengthening mechanism 被引量:4
2
作者 YANG Yi-long ZHANG Yun +2 位作者 ZHANG Hao-ming LIU Xu-he LI Xiao-qian 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第3期767-779,共13页
TiC nanoparticles reinforced 2219 aluminum matrix composites were successfully prepared by ultrasonic casting, followed by forging and T6 heat treatment. The friction and wear properties of the disc-to-column were stu... TiC nanoparticles reinforced 2219 aluminum matrix composites were successfully prepared by ultrasonic casting, followed by forging and T6 heat treatment. The friction and wear properties of the disc-to-column were studied under four separate normal values of 5, 10, 20 and 30 N. The increasing hardness value of the nanocomposite may be attributed to the large amount of TiC(i.e., 1.3 wt.% and 1.7 wt.%) introduced to the composites. The friction coefficient of the nanocomposite decreased with the increase of TiC nanoparticles(0-1.7 wt.%) under the same load. But the wear resistance of the TiC/AA2219 nanocomposite increased by 30%-90% as compared to the 2219 matrix alloy. And it decreased with the increasing load. The composite with 0.9 wt.% TiC produced the best results in terms of friction and wear because of its relatively higher hardness and perfect ability to retain a transfer layer of a comparatively larger thickness. On the wear surface, some Al2O3particles were found which aided in the development of protective shear regions and improved the wear resistance. The wear mechanism for the TiC/AA2219 nanocomposite was a combination of adhesive and oxidative wear, with the composites containing hard TiC nanoparticles being mainly abrasive. 展开更多
关键词 tic/AA2219 nanocomposite tic nanoparticle wear properties HARDNESS wear mechanism
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部