CN102433487A - N100 hard alloy and preparation method thereof - Google Patents

N100 hard alloy and preparation method thereof Download PDF

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Publication number
CN102433487A
CN102433487A CN2011104413211A CN201110441321A CN102433487A CN 102433487 A CN102433487 A CN 102433487A CN 2011104413211 A CN2011104413211 A CN 2011104413211A CN 201110441321 A CN201110441321 A CN 201110441321A CN 102433487 A CN102433487 A CN 102433487A
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China
Prior art keywords
powder
preparation
particle diameter
wimet
content
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CN2011104413211A
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Chinese (zh)
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苏华
谷亩
杨剑忠
张晓艳
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SICHUAN KELITE CEMENTED CARBIDE CO Ltd
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SICHUAN KELITE CEMENTED CARBIDE CO Ltd
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Priority to CN2011104413211A priority Critical patent/CN102433487A/en
Publication of CN102433487A publication Critical patent/CN102433487A/en
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Abstract

The invention relates to the preparation technical field of alloys, and in particular relates to an N100 hard alloy and a preparation method thereof. The invention aims to solve the technical problems that the existing WC-Co hard alloy has poor high-pressure resistance and corrosion resistance in an alkaline environment and the like. The N100 hard alloy comprises the following components by weight percent: 6.09%-6.11% of Ni powder, 0.19%-0.21% of Cr3C2 powder, 0.19%-0.21% of TaC, 0.19%-0.21% of Mo powder and the balance WC powder.

Description

N100 wimet and preparation method thereof
Technical field
The present invention relates to alloy manufacturing technology field, particularly a kind of is the tungsten carbide base carbide alloy of phase and preparation method thereof that bonds with nickel.
 
Background technology
Hard in the wimet is often referred to WC, TiC, VC etc. mutually, and bonding is often referred to Co, Ni, Fe etc. mutually.Wimet starts from the WC-Co wimet, and it is that composition is the simplest, the most a kind of alloy of use range.But in alkaline environment, use; High pressure resistant, the corrosion resistant ability of the conventional wimet of tradition is relatively poor; Can not reach comparatively strict technical requirement, and replace cobalt can solve WC-Co series hard alloy not high pressure resistant and not corrosion resistant problem in acid or alkaline environment mutually to a great extent as bonding with nickel.
 
Summary of the invention
The present invention is intended to solve existing WC-Co wimet and in alkaline environment, has technical problems such as high pressure resistant, that corrosion resistance is relatively poor, with provide a kind of and can in alkaline environment, use, have high pressure resistant preferably, corrosion resistance, production cost is low and a kind of N100 wimet of cost performance advantages of higher and preparation method thereof.
The objective of the invention is to realize through following technical scheme.
A kind of N100 wimet of the present invention, contain following components by weight proportion:
Ni 6.09?%~6.11%
Cr3C2 0.19%~0.21%
TaC 0.19%~0.21%
Mo 0.19%~0.21%
The WC surplus
A kind of N100 wimet of the present invention and preparation method thereof comprises the steps:
A) get by weight percentage following component: Ni powder 6.09 %~6.11%, Cr3C2 powder 0.19%~0.21%; TaC powder 0.19%~0.21%; Mo powder 0.19%~0.21%; Surplus is the WC powder, is 1-2 μ m with wet-milling to powder size in the aforementioned component mixture adding ball mill, gets mixed slurry;
B) with above-mentioned mixed slurry filter, dry back adds rubber solutions, stir the back 90~110 ℃ dry 15~25 minutes down, cross 80 mesh sieves afterwards and get mixture;
C) the above-mentioned mixture that is obtained by step b) is dropped in the mould, in the moulding of 25~63T pressure pressed;
D) with the above-mentioned moulding product that obtains by step c) place vacuum tightness 5~20Pa, temperature be incubated 1~2 hour under 1420~1440 ℃ the condition finished product.
A kind of N100 wimet of the present invention and preparation method thereof, the particle diameter of Ni powder is 1~2 μ m, Ni content in the wherein said step a)>99.0 wt %; The particle diameter of TaC powder is that 1~1.5 μ m, total carbon content are 6.1%~6.3%; The particle diameter of Cr3C2 powder is≤2 μ m, Cr content>85.3%, total carbon content is 12.8%~13.5%; The particle diameter of Mo powder is 2~3 μ m, Mo content>99.8 wt %; The particle diameter of WC powder is that 1~2 μ m, total carbon content are 5.90~5.94wt%.
The preparation method of a kind of N100 wimet of the present invention, the used solvent of wet-milling is an absolute ethyl alcohol in the wherein said step a), its addition is that every kg of component mixture adds absolute ethyl alcohol 200-300ml.
The preparation method of a kind of N100 wimet of the present invention, the addition of rubber solutions is the 0.8-1.0% of mixed slurry gross weight in the wherein said step b).
 
The beneficial effect of a kind of N100 wimet of the present invention and preparation method thereof:
1. to adopt Ni be that bonding phase, WC are the hard phase in the present invention, both possessed original wimet each item use properties, has and can in alkaline environment, use, and reduces production costs simultaneously.
2. the present invention adopts Mo as additive, improves the hardness of alloy material, and wear resistance, erosion resistance have better erosion resistance than single use Ni.
3. the alloy material hardness of the present invention's preparation is high, wear resistance, good corrosion resistance, and strategic resource consumes low.
 
Embodiment
A kind of N100 wimet of the present invention and preparation method thereof further specifies through following embodiment.
The material proportion table of embodiment 1-3
? Ni powder content (%) Cr3C2 powder content (%) TaC powder content (%) Mo powder content (%) WC powder content (%)
Embodiment 1 6.09 0.21 0.21 0.21 93.28
Embodiment 2 6.1 0.2 0.2 0.2 93.3
Embodiment 3 6.11 0.19 0.19 0.19 93.32
Material proportion table by embodiment 1-3 is got component by weight percentage: Ni powder 6.09 %~6.11%, Cr3C2 powder 0.19%~0.21%, and TaC powder 0.19%~0.21%, Mo powder 0.19%~0.21%, surplus is the WC powder.Ni powder, Cr3C2 powder, TaC powder, Mo powder and WC powder are added in the tilting-type ball mill; Drum's speed of rotation is 240r/min; WC-6wt%Ni base cemented carbide ball about ball milling uses alloy ball as diameter 10mm, ball-to-powder weight ratio is 3.5:1, the ball milling time is 42~44h; The wet-milling solvent for use is an absolute ethyl alcohol, and wet-milling to powder size is that 1~2 μ m gets mixed slurry.
Afterwards; With the SD rubber solutions that above-mentioned mixed slurry filters, dry back adds raw material total mass 0.8~1.0%; Mix even back 80 mesh sieves of after 90~110 ℃ of following vacuum-drying 15-25 minutes, crossing and get mixture; Said mixture is dropped in the mould in the moulding of 25~63T pressure pressed, places vacuum tightness 5~20Pa then, temperature be incubated 1~2 hour under 1420~1440 ℃ the condition finished product.
The addition of absolute ethyl alcohol is that every kg of component mixture adds 200~300ml during practical implementation; The particle diameter of used Ni powder is 1~2 μ m, Ni content>99.0 wt %; The particle diameter of TaC powder is that 1~1.5 μ m, total carbon content are 6.1%~6.3%; The particle diameter of Cr3C2 powder is≤2 μ m, Cr content>85.3%, total carbon content is 12.8%~13.5%; The particle diameter of Mo powder is 2~3 μ m, Mo content>99.8 wt %; The particle diameter of WC powder is that 1~2 μ m, total carbon content are 5.90~5.94wt%.
According to mentioned component and prepared with WC be hard mutually, Ni is the bonding phase cemented carbide homogeneous microstructure, its grain size is about 1.0~2.0 μ m, bending strength>=1450N/mm 2
In sum, a kind of N100 wimet of the present invention and preparation method thereof has that hardness and wear resistance are high, corrosion resistance nature is more excellent, production cost is low and the cost performance advantages of higher.

Claims (5)

1. N100 wimet is characterized in that containing following components by weight proportion:
Ni 6.09?%~6.11%
Cr3C2 0.19%~0.21%
TaC 0.19%~0.21%
Mo 0.19%~0.21%
The WC surplus.
2. the preparation method of a kind of N100 wimet according to claim 1 is characterized in that comprising the steps:
A) get by weight percentage following component: Ni powder 6.09 %~6.11%, Cr3C2 powder 0.19%~0.21%; TaC powder 0.19%~0.21%, Mo powder 0.19%~0.21%, surplus is the WC powder; With wet-milling to powder size in the aforementioned component mixture adding ball mill is 1-2 μ m, gets mixed slurry;
B) with above-mentioned mixed slurry filter, dry back adds rubber solutions, stir the back 90~110 ℃ dry 15~25 minutes down, cross 80 mesh sieves afterwards and get mixture;
C) the above-mentioned mixture that is obtained by step b) is dropped in the mould, in the moulding of 25~63T pressure pressed;
D) with the above-mentioned moulding product that obtains by step c) place vacuum tightness 5~20Pa, temperature be incubated 1~2 hour under 1420~1440 ℃ the condition finished product.
3. the preparation method of a kind of N100 wimet according to claim 2 is characterized in that: the particle diameter of Ni powder is 1~2 μ m, Ni content in the said step a)>99.0 wt %; The particle diameter of TaC powder is that 1~1.5 μ m, total carbon content are 6.1%~6.3%; The particle diameter of Cr3C2 powder is≤2 μ m, Cr content>85.3%, total carbon content is 12.8%~13.5%; The particle diameter of Mo powder is 2~3 μ m, Mo content>99.8 wt %; The particle diameter of WC powder is that 1~2 μ m, total carbon content are 5.90~5.94wt%.
4. the preparation method of a kind of N100 wimet according to claim 2 is characterized in that: the used solvent of wet-milling is an absolute ethyl alcohol in the said step a), and its addition is that every kg of component mixture adds absolute ethyl alcohol 200-300ml.
5. the preparation method of a kind of N100 wimet according to claim 2 is characterized in that: the addition of rubber solutions is the 0.8-1.0% of mixed slurry gross weight in the said step b).
CN2011104413211A 2011-12-26 2011-12-26 N100 hard alloy and preparation method thereof Pending CN102433487A (en)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103060652A (en) * 2013-01-25 2013-04-24 地质矿产部无锡钻探工具厂 High-temperature-resistant alloy and production process thereof
CN106048358A (en) * 2016-08-19 2016-10-26 河源富马硬质合金股份有限公司 Hard alloy material
CN106544566A (en) * 2016-10-28 2017-03-29 四川科力特硬质合金股份有限公司 A kind of corrosion-resistant and high-temperature resistant hard alloy and preparation method thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101215662A (en) * 2008-01-07 2008-07-09 刘嵘 Tungsten alloy used for jewelry and ornamental article, and preparation method thereof
US20090044415A1 (en) * 2005-03-28 2009-02-19 Kyocera Corporation Cemented Carbide and Cutting Tool
CN101397614A (en) * 2008-11-04 2009-04-01 四川大学 Method for preparing Ni cementing WC base cemented carbide

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090044415A1 (en) * 2005-03-28 2009-02-19 Kyocera Corporation Cemented Carbide and Cutting Tool
CN101215662A (en) * 2008-01-07 2008-07-09 刘嵘 Tungsten alloy used for jewelry and ornamental article, and preparation method thereof
CN101397614A (en) * 2008-11-04 2009-04-01 四川大学 Method for preparing Ni cementing WC base cemented carbide

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
梁平等: "添加Cr3C2对WC-Ni硬质合金性能的影响", 《稀有金属与硬质合金》 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103060652A (en) * 2013-01-25 2013-04-24 地质矿产部无锡钻探工具厂 High-temperature-resistant alloy and production process thereof
CN106048358A (en) * 2016-08-19 2016-10-26 河源富马硬质合金股份有限公司 Hard alloy material
CN106544566A (en) * 2016-10-28 2017-03-29 四川科力特硬质合金股份有限公司 A kind of corrosion-resistant and high-temperature resistant hard alloy and preparation method thereof

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Application publication date: 20120502