Preparation method of high-precision ceramic ferrule
A ceramic ferrule and high-precision technology, which is applied in the field of ceramic electronic components, can solve the problems of easy cracks, easy deformation of the ferrule, and low precision, and achieve the effect of not easy to crack, excellent thermal stress performance, and high precision
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[0035] The embodiment of the present invention discloses a method for preparing a high-precision ceramic ferrule, which includes the following steps:
[0036] Step a) mixing silicon oxide, scandium oxide, molybdenum oxide, holmium oxide, zinc oxide and zirconia, adding oleic acid after pre-calcination, mixing by ball milling, and obtaining partially stabilized zirconia powder after sieving;
[0037] Step b) Add the partially stabilized zirconia powder and HDPE (high-density polyethylene) into the internal mixer, add polyethylene glycol monomethyl ether and polyethylene wax after mixing, and add ethylene-vinyl acetate copolymer after stirring , TPEE (thermoplastic polyester elastomer), PTT (polytrimethylene terephthalate) and polyoxymethylene, stir, heat up to 140-150°C, then add dioctyl phthalate, stir and heat up to 160-180°C ℃, cooling after banburying to obtain a gelatinous substance;
[0038] Step c) compressing the gelatinous substance into tablets, pulverizing it, and o...
Embodiment 1
[0085] Step 1, preparing partially stabilized zirconia powder,
[0086] Mix 1 part by weight of silicon oxide, 2 parts by weight of scandium oxide, 1 part by weight of molybdenum oxide, 1 part by weight of holmium oxide, 1 part by weight of zinc oxide and 94 parts by weight of zirconia Pre-sintering was carried out for 2 hours, and then 4 parts by weight of oleic acid was added for ball milling, mixing and sieving to obtain partially stabilized zirconia powder.
[0087] Step 2. Mixing of ceramic powder and organic binder
[0088] Mix the partially stabilized zirconia powder prepared above with organic carriers such as binders, surface active agents and plasticizers in a certain proportion. The raw materials used in this step include in parts by weight:
[0089]
[0090] First raise the temperature of the internal mixer to 105°C, then add the corresponding parts by weight of the partially stabilized zirconia powder substrate and HDPE prepared in step 1 to the above internal...
Embodiment 2
[0110] Step 1, preparing partially stabilized zirconia powder,
[0111] Mix 1 part by weight of silicon oxide, 2 parts by weight of scandium oxide, 1 part by weight of molybdenum oxide, 1 part by weight of holmium oxide, 1 part by weight of zinc oxide and 94 parts by weight of zirconia Pre-sintering was carried out for 2 hours, and then 4 parts by weight of oleic acid was added for ball milling, mixing and sieving to obtain partially stabilized zirconia powder.
[0112] Step 2. Mixing of ceramic powder and organic binder
[0113] Mix the partially stabilized zirconia powder prepared above with organic carriers such as binders, surface active agents and plasticizers in a certain proportion. The raw materials used in this step include in parts by weight:
[0114]
[0115] First raise the temperature of the internal mixer to 105°C, then add the corresponding parts by weight of the partially stabilized zirconia powder substrate and HDPE prepared in step 1 to the above internal...
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