Preparation method of composite diamond fretsaw
A diamond wire saw, diamond technology, applied in the direction of stone processing equipment, manufacturing tools, fine working devices, etc., can solve the difficulty in meeting the comprehensive performance requirements of sharpening and wear resistance, damage resistance, reduced service life of diamond wire, diamond distribution Unevenness and other problems, to achieve good sharpening performance, large holding capacity, and good wear resistance
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Embodiment 1
[0024] The first step: raw material preparation
[0025] Get particle size and be 5~15 μ m primary diamond micropowder and broken diamond micropowder, be by mass percentage: primary diamond: broken diamond=30%: 70% ratio is uniformly mixed, obtains mixed diamond micropowder; Get atomic ratio and be: W:Mo=1 : 1, the mixed powder of tungsten oxide powder and molybdenum oxide powder with a particle size of 45~65 μm is uniformly mixed in the ratio of mixed powder: mixed diamond micropowder=7:1 by mass ratio;
[0026] The second step: surface metallization of diamond powder
[0027] Heat the product obtained in the first step to 670 ° C ~ 700 ° C, and pass through water hydrogen; water will react with tungsten oxide powder and molybdenum oxide powder to form volatile hydrated hydroxide, and then be reduced by hydrogen to W and Mo metals Atoms are co-deposited on the surface of diamond powder, and at the same time, react with the surface of diamond powder particles to form a compos...
Embodiment 2
[0031] The first step: raw material preparation
[0032] Get particle size and be 20~30 μ m raw diamond powder and crushed diamond powder, by mass percentage be: raw diamond: crushed diamond=50%: 50% ratio is uniformly mixed, obtains mixed diamond powder; Get atomic ratio and be: W: Mo=1 : 1, particle size is the mixed powder of tungsten oxide powder and molybdenum oxide powder of 70~90 μm, by mass ratio is: mixed powder: the ratio of mixed diamond micropowder=5: 1 mixes evenly;
[0033] The second step: surface metallization of diamond powder
[0034] Heat the product obtained in the first step to 770 ° C ~ 800 ° C, and pass through water hydrogen; water will react with tungsten oxide powder and molybdenum oxide powder to form volatile hydrated hydroxide, and then be reduced by hydrogen to W and Mo metals Atoms are co-deposited on the surface of diamond powder, and at the same time, react with the surface of diamond powder particles to form a composite tungsten-molybdenum ca...
Embodiment 3
[0038] The first step: raw material preparation
[0039] Get particle size and be 35~45 μ m raw diamond powder and crushed diamond powder, by mass percentage be: raw diamond: broken diamond=70%: the ratio of 30% mixes evenly, obtains mixed diamond powder; Get atomic ratio and be: W: Mo=1 : 1, particle size is the mixed powder of tungsten oxide powder and molybdenum oxide powder of 100~120m, is by mass ratio: mixed powder: the ratio of mixed diamond micropowder=4: 1 mixes evenly;
[0040] The second step: surface metallization of diamond powder
[0041] Heat the product obtained in the first step to 870°C to 900°C, and pass through water hydrogen; water will react with tungsten oxide powder and molybdenum oxide powder to form volatile hydrated hydroxide, and then be reduced to W and Mo metals by hydrogen Atoms are co-deposited on the surface of diamond powder, and at the same time, react with the surface of diamond powder particles to form a composite tungsten-molybdenum carbi...
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