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Preparation method of ceramic powder and process for preparing ceramic nozzle by using powder
The invention discloses a preparation method of ceramic powder and a process for preparing a ceramic nozzle by using the powder, an yttria-stabilized zirconia material is added into an existing toughened alumina material, so that the conditions that the existing nozzle is easy to damage, difficult to form, high in cost and the like in the processing process can be effectively avoided; according to the invention, a good and uniform sand blasting effect can be realized, the sand blasting yield is improved, the toughness is strong, microcracks are reduced, and meanwhile, the purposes of prolonging the service life and improving the production efficiency can be achieved.
本发明公开一种陶瓷粉料的制备方法以及使用该粉料制备陶瓷喷嘴的工艺,采用在现有的增韧氧化铝材料中增加氧化钇稳定氧化锆材料,可有效避免现有的喷嘴在加工过程中易损坏、难成型、成本高等情况发生,能实现良好均匀的喷砂效果,提高喷砂良率,韧性强,减少微裂纹的出现,同时又能达到延长使用寿命,提高生产效率的目的。
Preparation method of ceramic powder and process for preparing ceramic nozzle by using powder
The invention discloses a preparation method of ceramic powder and a process for preparing a ceramic nozzle by using the powder, an yttria-stabilized zirconia material is added into an existing toughened alumina material, so that the conditions that the existing nozzle is easy to damage, difficult to form, high in cost and the like in the processing process can be effectively avoided; according to the invention, a good and uniform sand blasting effect can be realized, the sand blasting yield is improved, the toughness is strong, microcracks are reduced, and meanwhile, the purposes of prolonging the service life and improving the production efficiency can be achieved.
本发明公开一种陶瓷粉料的制备方法以及使用该粉料制备陶瓷喷嘴的工艺,采用在现有的增韧氧化铝材料中增加氧化钇稳定氧化锆材料,可有效避免现有的喷嘴在加工过程中易损坏、难成型、成本高等情况发生,能实现良好均匀的喷砂效果,提高喷砂良率,韧性强,减少微裂纹的出现,同时又能达到延长使用寿命,提高生产效率的目的。
Preparation method of ceramic powder and process for preparing ceramic nozzle by using powder
一种陶瓷粉料的制备方法以及使用该粉料制备陶瓷喷嘴的工艺
ZUO HOUSONG (Autor:in) / LYU JUNNAN (Autor:in) / HUANG YIZHEN (Autor:in) / ZHU CHENHONG (Autor:in) / WANG JUN (Autor:in) / XIE WANGFU (Autor:in) / ZHAN HUAN (Autor:in) / WU BING (Autor:in) / PAN ZHENGKE (Autor:in)
30.06.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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