Process for vacuum pressure casting copper parts

A vacuum pressure casting and process technology, which is applied in the field of copper vacuum pressure casting technology, can solve the problems of long contact time, large copper shrinkage rate, and inability to improve the yield, and achieve high molding precision, long high temperature time, and high casting quality. Good results

Inactive Publication Date: 2007-07-25
戴绍收 +2
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AI Technical Summary

Problems solved by technology

However, there are several problems in the existing copper casting process. One is that the shrinkage rate of copper is large, and the shrinkage rate of pure copper is about 4.5%. So casting cost is very high
The second is that traditional casting molds have sand molds and wax molds. Their nozzles are on the top or side of the mold. When the copper liquid is injected into the mold, it is extremely difficult to completely empty the air in the mold, so that there are a large number of defects in the casting, and the yield rate cannot be obtained. improve
The third is that pure copper itself has strong oxygen absorption. It is cast by traditional technology. During the casting process, it is in contact with air for too long, absorbing a large amount of gas and forming bubbles, which makes the casting solid have pores and hydrogen embrittlement.
For electrical castings, it will increase the resistance and reduce the conductivity
Fourth, pure copper has a high melting point and fast cooling, which reduces the fluidity of copper liquid and makes it impossible to cast complex copper parts

Method used

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Embodiment Construction

[0007] The details and process flow of the present invention will be described in detail below. This copper vacuum pressure casting process puts pure copper or copper alloy into the furnace. Since the casting temperature of pure copper and each copper alloy formula is different, the temperature to be adjusted is different. Generally, after the casting temperature reaches 950°C-1250°C, the furnace body is sealed immediately, and then filled with nitrogen. The upper part of the furnace body is provided with a vent hole outlet, which sinks due to the high density of nitrogen gas, while the oxygen gas with low density is blown by nitrogen gas. Press and float, and finally the aerobic gas in the furnace is discharged from the exhaust hole, so that the furnace is in an oxygen-free state. When the copper material is melted to a castable liquid state, the furnace body is pressurized so that the copper liquid overflows to the vacuum conveying pipeline. Since the temperature of the conv...

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Abstract

A vacuum-pressure casting technology for copper product includes such steps as smelting in furnace, sealing the furnace body, isolating the molten copper from O2 contained gas, pressurizing to furnace body for overflow of molten copper, delivering the molten copper via vacuum tube into a metallic mould from its bottom, and solidifying.

Description

technical field [0001] The invention relates to a copper vacuum pressure casting process. Background technique [0002] Cast copper alloy has good mechanical properties, casting performance, corrosion resistance, and the casting structure is fine, so it is widely used in various industrial products such as automobiles, ships, petrochemicals, machinery and equipment, so the casting process of copper is well known Pay attention to. However, there are several problems in the existing copper casting process. One is that the shrinkage rate of copper is large, and the shrinkage rate of pure copper is about 4.5%. So the casting cost is very high. The second is that traditional casting molds have sand molds and wax molds. Their nozzles are on the top or side of the mold. When the copper liquid is injected into the mold, it is extremely difficult to completely empty the air in the mold, so that there are a large number of defects in the casting, and the yield rate cannot be obtaine...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D18/06
Inventor 戴绍收林永国南建设
Owner 戴绍收
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