Aluminum alloy adopting low-temperature die casting

文档序号:1715639 发布日期:2019-12-17 浏览:37次 中文

阅读说明:本技术 一种采用低温压铸的铝合金 (Aluminum alloy adopting low-temperature die casting ) 是由 程峰 于 2019-10-21 设计创作,主要内容包括:本发明是一种采用低温压铸的铝合金,包含添加剂和载体,配方中的原料按重量百分比组成分别是:0.5~6%硅,10~35%黄铜粉,1~10%界面活性剂,0~3%二硫化钼油膏,0~2.5%稳定剂,5~20%碳酸镍,10~20%氨基酸,30~60%铝,通过本方法制备的产品,可以保持其良好的物理性能以及低成本的价格优势,并且能在700℃左右将铝合金压铸配方的各组份加热熔融,实现低温压铸,缩短加热时间,降低加热温度,能耗更低,生产过程更加节能,也降低了生产成本。(The invention relates to an aluminum alloy adopting low-temperature die casting, which comprises an additive and a carrier, wherein the raw materials in the formula comprise the following components in percentage by weight: the aluminum alloy die-casting material is prepared from 0.5-6% of silicon, 10-35% of brass powder, 1-10% of a surfactant, 0-3% of molybdenum disulfide ointment, 0-2.5% of a stabilizer, 5-20% of nickel carbonate, 10-20% of amino acid and 30-60% of aluminum.)

1. The aluminum alloy die-cast at low temperature comprises an additive and a carrier, and is characterized in that the aluminum alloy die-cast at low temperature comprises the following raw materials in percentage by weight: 0.5-6% of silicon, 10-35% of brass powder, 1-10% of a surfactant, 0-3% of molybdenum disulfide ointment, 0-2.5% of a stabilizer, 5-20% of nickel carbonate, 10-20% of amino acid and 30-60% of aluminum.

2. The aluminum alloy die-cast at low temperature according to claim 1, wherein the aluminum alloy comprises the following raw materials in percentage by weight: 0.5% of silicon, 10% of brass powder, 1% of surfactant, 1% of molybdenum disulfide ointment, 1% of stabilizer, 5% of nickel carbonate, 10% of amino acid and 30% of aluminum.

3. The aluminum alloy die-cast at low temperature according to claim 1, wherein the aluminum alloy comprises the following raw materials in percentage by weight: 6% of silicon, 35% of brass powder, 10% of surfactant, 3% of molybdenum disulfide ointment, 2.5% of stabilizer, 20% of nickel carbonate, 20% of amino acid and 60% of aluminum.

4. The aluminum alloy die-cast at low temperature according to claim 1, wherein the aluminum alloy comprises the following raw materials in percentage by weight: 4% of silicon, 23% of brass powder, 5% of surfactant, 1.5% of molybdenum disulfide ointment, 1.25% of stabilizer, 13% of nickel carbonate, 15% of amino acid and 45% of aluminum.

Technical Field

The invention discloses an aluminum alloy adopting low-temperature die casting.

Background

Aluminum is a silver white light metal, has ductility, can form a layer of oxide film for preventing metal corrosion in humid air, is widely applied in various fields, is mostly produced by a die-casting method, and has the defects of high electric energy and high energy consumption in the heating and melting process in the production process in the prior art.

Disclosure of Invention

Aiming at the problems in the prior art, the invention provides the aluminum alloy adopting low-temperature die casting, which can keep good physical properties and low-cost price advantage, can heat and melt all components of an aluminum alloy die casting formula at about 700 ℃, realizes low-temperature die casting, shortens heating time, reduces heating temperature, has lower energy consumption, saves more energy in the production process, and also reduces production cost.

In order to achieve the purpose, the invention is realized by the following technical scheme: an aluminum alloy adopting low-temperature die casting comprises the following raw materials in percentage by weight: 0.5-6% of silicon, 10-35% of brass powder, 1-10% of a surfactant, 0-3% of molybdenum disulfide ointment, 0-2.5% of a stabilizer, 5-20% of nickel carbonate, 10-20% of amino acid and 30-60% of aluminum.

Has the advantages that: the product prepared by the method can keep good physical properties and low-cost price advantage, and can heat and melt all components of the aluminum alloy die-casting formula at about 700 ℃, so that low-temperature die-casting is realized, the heating time is shortened, the heating temperature is reduced, the energy consumption is lower, the production process is more energy-saving, and the production cost is also reduced.

Detailed Description

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