Method for processing drilling hexagonal polycrystalline diamond
A polycrystalline diamond and processing method technology, applied in the application of ultra-high pressure process and other directions, can solve the problems of difficulty in processing polycrystalline diamond into various shapes, low qualification rate, etc., and achieve significant economic benefits, high qualification rate, The effect of high impact strength
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Embodiment 1
[0021] The present invention drills with the processing method of hexagonal polycrystalline diamond, and the detailed steps of described processing method are as follows:
[0022] a, raw material composition: expressed in weight percent, the raw material adopted is composed of diamond powder 80%, silicon Si 3% and nickel Ni 17%;
[0023] 80% of the raw diamond powder is composed of W40, W20 and W5-7 diamond powder, of which the weight percentages of W40, W20 and W5-7 in the composition of the raw diamond powder are 40%, 35%, respectively. % and 25%;
[0024] B, according to the raw material composition described in step a, take by weighing raw material diamond powder, silicon and nickel, add the catalyst boron that accounts for 0.30% of raw material total amount in addition after mixing uniformly , The mixed raw material and catalyst boron are packed into a hexagonal carbon synthesis mold, and then the carbon synthesis mold with raw materials and catalyst is placed in a vacuu...
Embodiment 2
[0029] The present invention drills with the processing method of hexagonal polycrystalline diamond, and the detailed steps of described processing method are as follows:
[0030] a. Raw material composition: represented by weight percentage, the adopted raw material is composed of diamond powder 82%, silicon Si 2% and nickel Ni 16%;
[0031] 82% of the raw diamond powder is composed of W40, W20 and W5-7 diamond powder, of which the weight percentages of W40, W20 and W5-7 in the composition of the raw diamond powder are 40%, 35%, respectively. % and 25%;
[0032] B, according to the raw material composition described in step a, take by weighing raw material diamond powder, silicon and nickel, add the catalyst boron that accounts for 0.28% of raw material total amount in addition after mixing uniformly , The mixed raw material and catalyst boron are packed into the hexagonal carbon synthesis mold, and then the carbon synthesis mold with raw material and catalyst is placed in a...
Embodiment 3
[0037] The present invention drills with the processing method of hexagonal polycrystalline diamond, and the detailed steps of described processing method are as follows:
[0038] a, raw material composition: expressed in weight percentage, the raw material adopted is composed of diamond powder 78%, silicon Si 4% and nickel Ni 18%;
[0039] 78% of the raw diamond powder is composed of three kinds of diamond powders W40, W20 and W5-7, of which the weight percentages of W40, W20 and W5-7 in the composition of the raw diamond powder are 40%, 35%, respectively. % and 25%;
[0040] B, according to the raw material composition described in step a, take by weighing raw material diamond powder, silicon and nickel, add the catalyst boron that accounts for 0.32% of raw material total amount in addition after mixing uniformly , The mixed raw material and catalyst boron are packed into the hexagonal carbon synthesis mold, and then the carbon synthesis mold with raw material and catalyst ...
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