课程编号0390079课程名称中文:无机非金属材料理论及先进技术英文:Principles and Advanced Processing of   Ceramics任课教师龚红宇、孙晓宁主要教材参考书目1. Ceramics and composites processing methods, Narottam P. Bansal Hoboken, N.J. : Wiley,   c2012. TB3212. Ceramics science and technology, Ralf Riedel Weinheim:   Wiley-VCH, c2008. TB321课程说明“principles and advanced processing of ceramics” foc..." />
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Principles and Advanced Processing of Ceramics
发布时间:2023年12月26日 17:33    作者:    点击:[]

课程编号

0390079

课程名称

中文:无机非金属材料理论及先进技术

英文:Principles and Advanced Processing of   Ceramics

任课教师

龚红宇、孙晓宁

主要教材


参考书目

1. Ceramics and composites processing methods, Narottam P. Bansal Hoboken, N.J. : Wiley,   c2012. TB321

2. Ceramics science and technology, Ralf Riedel Weinheim:   Wiley-VCH, c2008. TB321

课程说明

principles and advanced processing of ceramics” focuses on the   fundamental concepts and advanced processes of inorganic nonmetallic   materials. It aims at leading students to master the relationship between the   basic principles and the cutting-edge technology in the world, know about the   development direction of advanced ceramics, have a solid foundation for the   future research and development of new materials.


With the pursuit   of new products with high performances, new technology is constantly updated.   The development of new technology needs to followed the basic principle of   materials. The importance understanding the effects of processing variables   on the evolution of microstructural parameters should be emphasized. This   course presents advanced processes of inorganic nonmetallic materials and   interpret the basic principle underlying the behavior of materials.

It aims at   leading students to master the relationship between the basic principles and   the cutting-edge technology in the world, know about the development   direction of advanced ceramics, have a solid foundation for the future   research and development of new materials.

On successful   completion of this course students will be able to:

Master the   latest process technology of ceramic materials involving semiconductors,   microwave absorbing materials, permanent magnets, heat capacitors and thermal   insulators.

Comprehend   fundamental theory concepts and apply them to analyze and improve processes   of ceramics, finding relations between materials properties and relevant   microstructural parameters on one side and to understand which process   parameter changes a certain microstructural parameter on the other hand.

develop a   vocabulary for the description of the processes, properties and   microstructures of ceramics.

内容简介

(系统填写要求不少于200字)

1、无机非金属材料简介;

2、无机非金属材料先进生产工艺;

3、无机非金属材料性能;

4、先进结构材料;

5、先进功能材料;

6、先进无机材料展望。


随着人们对高性能材料的不断追求,新的材料制备技术也不断被开发出来。先进材料制备技术的开发和应用依然源于对基础科学的深入理解。同时工艺过程对材料微观结构和性能变化的影响也是非常重要的。本课程介绍当前无机非金属材料的先进技术及其相关基本原理。

课程目的是使本专业学生掌握无机非金属材料基本理论和当今世界前沿技术之间的关系,了解当今新型陶瓷材料的发展方向,为今后研究、开发新型材料打下坚实的基础。通过课程学习,使学生掌握有关新型材料,如半导体材料、微波吸收材料、永磁体材料、热管理材料等的先进制备技术;深入理解基础理论并能应用理论对分析和改进相关工艺方法,一方面建立材料性能与微观结构的关系,另一方面通过工艺实现对材料微观结构的设计;掌握英文专业词汇,并能熟练用英语就本专业知识进行交流。


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