The grinding fluid for processing the ceramic ferrule is characterized by comprising the following components in parts by weight: 1-9 parts of diamond particles; kerosene 400-; 200-300 parts of palmitic acid; 200-300 parts of oleic acid; 40-100 parts of linoleic acid; 60-80% of. The grinding fluid for processing the ceramic ferrule is characterized by comprising the following components in parts by weight: 1-9 parts of diamond particles; kerosene 400-; 200-300 parts of palmitic acid; 200-300 parts of oleic acid; 40-100 parts of linoleic acid; 60-80% of. The grinding fluid for processing the ceramic ferrule is characterized by comprising the following components in parts by weight: 1-9 parts of diamond particles; kerosene 400-; 200-300 parts of palmitic acid; 200-300 parts of oleic acid; 40-100 parts of linoleic acid; 60-80% of white oil. The. In this paper, the design and development of a zirconia ceramics microhole grinding system is proposed to overcome the problems. 3 also mentions the defects of the above-mentioned grinding method in the prior art description of the grinding of the inner hole of the ceramic ferrule, that is, the processing time is long However, it is obvious that it is only suitable for. The ceramic ferrule blank contains a small hole of 0. 1mm, and the concentricity requirement is very high, which can only be achieved through the technology of ceramic powder injection molding. The ceramic ferrule manufacturing process is divided into two parts, namely blank manufacturing and. - ments, heat exchanges, and heat engines. The main applications for these advanced materials are listed in Table 1. tll According to the Office of Technology Assessment (1988), the mar- ket for structural ceramics will double every 5 to 7 years and increas to five billion dollars by the year. By combining the femtosecond laser and diamond micro drill, we have established ultra-precision hole processing from micron- to nano-level order. These ultra-fine holes are mass-produced as nozzles for microfluidic devices. Minute volumes of various liquids and gasses can be precisely controlled.