
基本信息:
- 专利标题: 一种远红外陶瓷材料及其制造方法
- 专利标题(英):Far-infrared ceramic material and manufacturing method thereof
- 申请号:CN201310700735.0 申请日:2013-12-17
- 公开(公告)号:CN103664149A 公开(公告)日:2014-03-26
- 发明人: 蔡晓峰 , 于伟东
- 申请人: 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心
- 申请人地址: 广东省佛山市禅城区华宝南路13号佛山国家火炬创新创业园C座5楼
- 专利权人: 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心
- 当前专利权人: 佛山中科产业技术研究院
- 当前专利权人地址: 广东省佛山市禅城区华宝南路13号佛山国家火炬创新创业园C座5楼
- 代理机构: 北京品源专利代理有限公司
- 代理人: 巩克栋
- 主分类号: C04B35/14
- IPC分类号: C04B35/14 ; C04B35/622
The invention provides a far-infrared ceramic material and a manufacturing method thereof, and relates to the field of ceramic materials and the technical field of infrared rays. The manufacturing method comprises the steps as follows: step 1) material weighing and mixing: weighing raw materials in percentage by weight as follows: 75-90% of silicon dioxide, 6-13% of an oxide or salt of zirconium, 1-3% of an oxide or salt of neodymium, 1-3% of an oxide or salt of europium, 0-2% of an oxide or salt of chromium, 0-2.5% of an oxide or salt of cobalt and 0-3% of silicon boride, mixing and crushing the raw materials until the particle size is smaller than 5.0 mum, and preparing into a mixture; step 2) forming: forming the mixture to obtain a green body; step 3) sintering: putting the green body in a kiln for sintering at the temperature of 1160-1260 DEG C for 60-120 min to obtain the far-infrared ceramic material. The far-infrared ceramic material has the advantages of stable far-infrared radiation wave band, high radiation efficiency, high thermal stability and the like and can be better applied to frequent and rapid cooling and heating environments.
公开/授权文献:
- CN103664149B 一种远红外陶瓷材料及其制造方法 公开/授权日:2015-05-27