CN1554790A - Process for preparing tungsten-cobalt hard alloy - Google Patents

Process for preparing tungsten-cobalt hard alloy Download PDF

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Publication number
CN1554790A
CN1554790A CNA2003101208206A CN200310120820A CN1554790A CN 1554790 A CN1554790 A CN 1554790A CN A2003101208206 A CNA2003101208206 A CN A2003101208206A CN 200310120820 A CN200310120820 A CN 200310120820A CN 1554790 A CN1554790 A CN 1554790A
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powder
alloy
granularity
fine particle
coarse particles
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CN1267571C (en
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许雄亮
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Zhuzhou Cemented Carbide Group Co Ltd
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Zhuzhou Cemented Carbide Group Co Ltd
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Abstract

The process of preparing hard W-Co alloy includes compounding material with WC powder and Co powder in 6-8 wt%, wet milling, drying, pelletizing after mixing with excipient, pressing to form, eliminating excipient, sintering and other steps. During compounding material, two kinds of WC powder, including great granularity component of 20-30 micron and fine granularity component of 1.2-1.8 micron in the weight ratio of 1.5-4.0, are used. The said process can compromise the wear resistance and toughness of hard alloy effectively to raise the comprehensive performance of alloy and expand the application range.

Description

The preparation method of tungsten-cobalt hard alloy
One, technical field
The present invention relates to a kind of preparation method's of tungsten-cobalt hard alloy, particularly mining tungsten-cobalt hard alloy preparation method.
Two, background technology
At present, a series hard alloy of using in the rock drilling field is that cobalt contents is the middle coarse grain tungsten cobalt alloy of (6~8) wt%.The preparation method of such alloy generally comprise with WC powder and Co powder through batching, wet-milling, drying, mix binder granulation, press forming, take off steps such as forming agent, sintering, wherein the size range of WC powder is at (4~13) μ m, the Co content range is controlled at (6~8) wt%, the alloy of producing like this, its hardness value is for being generally (88.0~90.5) HRA, intensity level is generally (1800~2600) MPa, and notched bar impact strength is generally (3.0~4.0) J/cm 2The wear resistance of such alloy is fabulous, but toughness is lower, and therefore, the use range of this alloy is restricted, and generally is applicable to the rock stratum that the f=10 level is following.
Three, summary of the invention
The present invention aims to provide a kind of preparation method of tungsten cobalt alloy, coordinates its wear resistance and toughness effectively, improves the over-all properties of alloy, enlarges the range of application of mine alloy, and the alloy of super quality and competitive price is provided for the rock drilling field.
In order to reach this purpose, technical scheme of the present invention comprise Co powder with WC powder and (6~8) wt% through batching, wet-milling, drying, mix binder granulation, press forming, take off steps such as forming agent, sintering, select two kinds of particulate WC of thickness powder during batching for use, wherein the granularity of coarse particles WC powder is (20~30) μ m, the granularity of fine particle WC powder is (1.2~1.8) μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 60: 40~80: 20.
Owing to adopted the WC grain heterogeneous texture, alloy structure improves: the WC grain adjacent degree reduces, and Co is more evenly distributed mutually, and porosity reduces, and formation of crack significantly reduces.Make the wear resistance of this alloy and toughness all be better than the coarse grain alloy with cobalt, this hardness of alloy value is (88.0~90.0) HRA, and intensity level is (2000~2800) MPa, and notched bar impact strength is (3.5~4.5) J/cm 2Because this alloy has the high-wearing feature and the high toughness of low cobalt alloy simultaneously,, can be used for the following rock stratum of f=12 level so its range of application obtains expanding.
As a further improvement on the present invention, adopt thin cobalt powder (1.0~1.5) μ m than better with the performance of common cobalt powder (2~3) μ m, its tough performance improves 5~10%, and after adding the TaC of (0.3~0.6) wt%, its hardness (HRA) improves 0.2~0.3, and promptly its wear resistance also can be enhanced.
Four, embodiment
Embodiment 1: the Co powder of two kinds of WC powder of thickness and 8.0wt% is prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 24.0 μ m when batching, and the granularity of fine particle WC powder is 1.4 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 70: 30, and Co powder degree is 2.0 μ m.
Embodiment 2: the Co powder of two kinds of WC powder of thickness and 7.0wt% is prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 28.4 μ m when batching, and the granularity of fine particle WC powder is 1.2 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 70: 30, and Co powder degree is 1.0 μ m.
Embodiment 3: the Co powder of two kinds of WC powder of thickness and 6.0wt% is prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 20.0 μ m when batching, and the granularity of fine particle WC powder is 1.8 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 70: 30, and Co powder degree is 1.5 μ m.
Embodiment 4: the Co powder of two kinds of WC powder of thickness, 6.0wt% and the TaC of 0.3wt% are prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 30.0 μ m when batching, and the granularity of fine particle WC powder is 1.4 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 60: 40, and Co powder degree is 2.6 μ m.
Embodiment 5: the Co powder of two kinds of WC powder of thickness and 6.0wt% is prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 24.0 μ m when batching, and the granularity of fine particle WC powder is 1.4 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 80: 20, and Co powder degree is 3.0 μ m.
Embodiment 6: the Co powder of two kinds of WC powder of thickness, 8.0wt% and the TaC of 0.5wt% are prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 24.0 μ m when batching, and the granularity of fine particle WC powder is 1.4 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 70: 30, and Co powder degree is 3.0 μ m.
Embodiment 7: the Co powder of two kinds of WC powder of thickness, 7.0wt% and the TaC of 0.6wt% are prepared burden by certain requirement, wet-milling discharging after 20~23 hours, precipitate 5~8 hours, drying shake sieve, mix binder granulation, press forming, take off forming agent and 1450 ℃ the insulation 50 minutes steps such as sintering make Wimet.Wherein, the granularity of coarse particles WC powder is 24.0 μ m when batching, and the granularity of fine particle WC powder is 1.4 μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 70: 30, and Co powder degree is 1.34 μ m.
Table 1 has been listed the granularity and the concrete proportioning of powder when embodiment 1 prepares burden in 7, table 2 provides hardness, intensity and the notched bar impact strength of the Wimet of the method preparation of adopting embodiment 1 to 7.
Table 1
Numbering ??Co ??Wt% ??WC ??Wt% Wc grain size (μ m) Co powder degree (μ m) ??TaC ??Wt% WC thickness ratio (weight ratio)
Slightly Carefully
??1 ??8.0 Surplus ??24.0 ??1.4 ??2.0 ??0 ??70∶30
??2 ??7.0 Surplus ??28.4 ??1.2 ??1.0 ??0 ??70∶30
??3 ??6.0 Surplus ??20 ??1.8 ??1.5 ??0 ??70∶30
??4 ??6.0 Surplus ??30 ??1.4 ??2.6 ??0.3 ??60∶40
??5 ??6.0 Surplus ??24.0 ??1.4 ??3.0 ??0 ??80∶20
??6 ??8.0 Surplus ??24.0 ??1.4 ??3.0 ??0.5 ??70∶30
??7 ??7.0 Surplus ??24.0 ??1.4 ??1.34 ??0.6 ??70∶30
Table 2

Claims (3)

1, a kind of preparation method of tungsten-cobalt hard alloy, comprise Co powder with WC powder and (6~8) wt% through batching, wet-milling, drying, mix binder granulation, press forming, take off steps such as forming agent, sintering, it is characterized in that: select two kinds of particulate WC of thickness powder during batching for use, wherein the granularity of coarse particles WC powder is (20~30) μ m, the granularity of fine particle WC powder is (1.2~1.8) μ m, and the weight ratio of coarse particles WC powder and fine particle WC powder is 60: 40~80: 20.
2, the preparation method of tungsten-cobalt hard alloy according to claim 1 is characterized in that: the Co powder of selecting (1.0~1.5) μ m during batching for use.
3, according to the preparation method of claim 1 or 2 described tungsten-cobalt hard alloys, it is characterized in that: the TaC that adds (0.3~0.6) wt% during batching.
CN 200310120820 2003-12-29 2003-12-29 Process for preparing tungsten-cobalt hard alloy Expired - Lifetime CN1267571C (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101655334A (en) * 2009-09-07 2010-02-24 浙江正理生能科技有限公司 Nano hydrophilic film for evaporator in air source heat pump water heater and manufacturing method thereof
CN101880809A (en) * 2010-06-09 2010-11-10 株洲肯特硬质合金有限公司 Hard alloy for spherical tooth drill bit suitable for welding processing
CN102758112A (en) * 2012-08-10 2012-10-31 王永富 Micron-nano WC-Co hard alloy, preparation process and application thereof
CN103614604A (en) * 2013-12-16 2014-03-05 重庆市科学技术研究院 Hard alloy for rotary drilling cutting drill bit for mining and preparation method of hard alloy
CN111187960A (en) * 2019-12-31 2020-05-22 株洲硬质合金集团有限公司 Double-crystal hard alloy and preparation method thereof
CN111218576A (en) * 2020-02-25 2020-06-02 自贡硬质合金有限责任公司 Preparation method of heterogeneous alloy

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101655334A (en) * 2009-09-07 2010-02-24 浙江正理生能科技有限公司 Nano hydrophilic film for evaporator in air source heat pump water heater and manufacturing method thereof
CN101880809A (en) * 2010-06-09 2010-11-10 株洲肯特硬质合金有限公司 Hard alloy for spherical tooth drill bit suitable for welding processing
CN101880809B (en) * 2010-06-09 2011-12-14 株洲肯特硬质合金有限公司 Hard alloy for spherical tooth drill bit suitable for welding processing
CN102758112A (en) * 2012-08-10 2012-10-31 王永富 Micron-nano WC-Co hard alloy, preparation process and application thereof
CN103614604A (en) * 2013-12-16 2014-03-05 重庆市科学技术研究院 Hard alloy for rotary drilling cutting drill bit for mining and preparation method of hard alloy
CN103614604B (en) * 2013-12-16 2016-02-03 重庆市科学技术研究院 For mining Wimet of rotary drilling cut drill and preparation method thereof
CN111187960A (en) * 2019-12-31 2020-05-22 株洲硬质合金集团有限公司 Double-crystal hard alloy and preparation method thereof
CN111218576A (en) * 2020-02-25 2020-06-02 自贡硬质合金有限责任公司 Preparation method of heterogeneous alloy

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