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The invention relates to a surface roughening treatment method for a ceramic chopper, and belongs to the technical field of ceramic materials. After a composite acid solution is prepared, a ceramic chopper semi-finished product is immersed in the composite acid solution for microwave digestion treatment, and after treatment, the ceramic chopper is cleaned and dried to obtain a ceramic chopper finished product. According to the method, the surface of the ceramic chopper is roughened by adopting a method of combining composite acid corrosion with microwave digestion, so that an ideal rough surface can be obtained. By regulating and controlling the composition and concentration of the composite acid solution and the technological parameters of microwave digestion, the ceramic chopper with the surface roughness of 0.02-0.8 mu m can be obtained, and the adjustable and controllable range of the surface roughness is large; in addition, the surface roughening treatment method provided by the invention does not need an ultra-high-temperature environment, so that the energy consumption is reduced.
本发明涉及一种陶瓷劈刀表面粗化处理方法,属于陶瓷材料技术领域。本发明配制复合酸溶液后,将陶瓷劈刀半成品浸没在复合酸溶液中进行微波消解处理,处理后将陶瓷劈刀清洗、干燥,得到陶瓷劈刀成品。本发明采用复合酸腐蚀结合微波消解的方法对陶瓷劈刀的表面进行粗化,可以获得理想的粗糙表面。本发明通过调控复合酸溶液组成及浓度、微波消解的工艺参数,可以获得表面粗糙度为0.02~0.8μm的陶瓷劈刀,表面粗糙度可调控的范围较大;此外,本发明提供的表面粗化处理方法无需超高温的环境,从而减少了能耗。
The invention relates to a surface roughening treatment method for a ceramic chopper, and belongs to the technical field of ceramic materials. After a composite acid solution is prepared, a ceramic chopper semi-finished product is immersed in the composite acid solution for microwave digestion treatment, and after treatment, the ceramic chopper is cleaned and dried to obtain a ceramic chopper finished product. According to the method, the surface of the ceramic chopper is roughened by adopting a method of combining composite acid corrosion with microwave digestion, so that an ideal rough surface can be obtained. By regulating and controlling the composition and concentration of the composite acid solution and the technological parameters of microwave digestion, the ceramic chopper with the surface roughness of 0.02-0.8 mu m can be obtained, and the adjustable and controllable range of the surface roughness is large; in addition, the surface roughening treatment method provided by the invention does not need an ultra-high-temperature environment, so that the energy consumption is reduced.
本发明涉及一种陶瓷劈刀表面粗化处理方法,属于陶瓷材料技术领域。本发明配制复合酸溶液后,将陶瓷劈刀半成品浸没在复合酸溶液中进行微波消解处理,处理后将陶瓷劈刀清洗、干燥,得到陶瓷劈刀成品。本发明采用复合酸腐蚀结合微波消解的方法对陶瓷劈刀的表面进行粗化,可以获得理想的粗糙表面。本发明通过调控复合酸溶液组成及浓度、微波消解的工艺参数,可以获得表面粗糙度为0.02~0.8μm的陶瓷劈刀,表面粗糙度可调控的范围较大;此外,本发明提供的表面粗化处理方法无需超高温的环境,从而减少了能耗。
Europäisches Patentamt | 2021
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