Method for preparing quinary P-type hard alloy

A technology of cemented carbide and hard phase, which is applied in the field of preparation of five-element P-type cemented carbide, can solve the problems of improving efficiency, short tool life and low efficiency of rough machining heavy machinery, so as to improve cutting efficiency and tool life. Long, good red hardness effect

Active Publication Date: 2011-07-20
ZHEJIANG HENGCHENG CEMENTED CARBIDE CO LTD
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Problems solved by technology

[0004] The technical problem to be solved by the present invention is that in the prior art, hard alloy rough machining large steel forgings is easy to hit the knife, the efficiency is low and the tool life is short, and a kind of preparation method of 5-element P type hard alloy is provided, the prepared The product not only has high bending strength and impact resistance, but also has ideal tool life, and can also improve processing efficiency, thus solving the problem of rough machining of large alloy steel forgings and the bottleneck problem of improving efficiency in the heavy machinery industry

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  • Method for preparing quinary P-type hard alloy

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Embodiment Construction

[0015] The technical solutions of the present invention will be described in further detail below with reference to the drawings and examples, but the protection scope of the present invention is not limited thereto.

[0016] refer to figure 1 , a preparation method of five-element P-type cemented carbide, the five-element P-type cemented carbide is composed of the following components in weight percentage: hard phase titanium carbide 16%, tantalum carbide 8%, niobium carbide 6%, cobalt 10%, lanthanum 0.006%, and the balance is hard phase tungsten carbide;

[0017] The preparation method comprises the following steps: after mixing the components, wet grinding by an inclined wet mill, and unloading after wet grinding; adding wax by spray drying, granulating, pressing and forming by an automatic press, vacuum sintering, and tempering Processing to obtain sintered products.

[0018] In the wet milling process: the wet milling time is 60 hours, the pellet ratio is 5:1, and the w...

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Abstract

The invention relates to a method for preparing a quinary P-type hard alloy. The quinary P-type hard alloy consists of the following components in percentage by weight: 16 percent of hard-phase titanium carbide, 8 percent of tantalum carbide, 6 percent of niobium carbide, 10 percent of cobalt, 0.006 percent of lanthanum, and the balance of hard-phase tungsten carbide. The preparation method comprises the following steps: mixing the components, wet-milling the mixture by a tilting wet mill, and discharging the mixture after wet-milling; and waxing and pelletizing the mixture through spray drying, pressing the mixture to form a shape by an automatic press, sintering the mixture in vacuum, and tempering the mixture to obtain a sintered finished product. The product prepared by the method hashigh bending strength, good impact strength and good red hardness; and when the product is coarsely processed into a large-size alloy forged piece, a cutter is not driven during use, the processing efficiency can be properly improved, and the service life of the cutter is long.

Description

(1) Technical field [0001] The invention relates to a preparation method of five-element P-type hard alloy. (2) Background technology [0002] Large alloy steel forgings such as heavy equipment such as hydropower, thermal power, nuclear power, petroleum cracking and coal liquefaction. Due to the large amount of rough machining and difficult machining of large alloy forgings, it is the bottleneck of the heavy equipment manufacturing industry. The bottleneck in the processing of heavy equipment is mainly caused by the following characteristics: First, after the rough casting of large alloy steel forgings It is freely forged on a large hydraulic press, and the weight of a single piece is tens of tons or hundreds of tons. The precision of forging cannot be compared with that of small forgings. The cutting workload of forgings is very large. Second, during the natural and slow cooling process of large alloy steel forgings after forging, the hardness of the surface layer is uneve...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22C1/05C22C29/08
Inventor 金益民吴晓娜杨明文
Owner ZHEJIANG HENGCHENG CEMENTED CARBIDE CO LTD
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