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Al-Si-Mn alloy and its preparing process

A manganese alloy, aluminum-silicon technology, applied in the field of deoxidizers and additives and their preparation, can solve the problems of easy pulverization, high cost, difficult storage, etc., and achieve the effects of large specific gravity, reduction of steelmaking costs, and reduction of aluminum consumption.

Inactive Publication Date: 2002-12-04
GEBREIER ALLOY CHANGZHOU
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented new type material with low density makes possible for better utilization of useful materials like iron or manganese during production processes without causing environmental concerns due to its high weight percentage compared to traditional methods used today (aluminium). Additionally, this new method allows for efficient removal of harmful substances from the liquid metal while maintaining good quality properties. Overall, these technical improvements make the product more effective than previously available options.

Problems solved by technology

This patented technical problem addressed in this patents relates to improving the performance of traditional methods used during manufacturing process steps such as melting and casting of molten metal (M) ingots made from Mn-, Al-, Si-, Fe--Si alloys containing impurities like iron). These existing techniques have limitations that make it difficult to produce an effective combination of two different types of oxides: monosilane and phosphorus dioxygen gas.

Method used

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Embodiment Construction

[0013] The preparation method embodiment of aluminum silicon manganese alloy, taking 500KG intermediate frequency furnace as an example, the total feeding amount is 470KG, proceed according to the following steps in turn:

[0014] A, heating and remelting, 346KG of silicon-manganese alloy (Kunming Alloy Factory production) with a silicon content of 17% and a manganese content of 67% is put into an intermediate frequency induction furnace, and the temperature is raised to 1500° C.;

[0015] B. Make slag and remove carbon, add modifier (NaCl), stir well, make the carbide float to the upper layer of the melt, and then manually remove the slag;

[0016] C, adding aluminum and silicon, adding 95KG of metal aluminum with an aluminum content of 99.99%, adding 29KG of metal silicon with a silicon content of 99%, stirring evenly, and heating up to 1240°C;

[0017] D. Rapid ingot casting, quickly cast into an iron mold with a wall thickness of 10 cm;

[0018] E. Demoulding and air cool...

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PUM

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Abstract

An AlSiMn-alloy contains A (19-21 wt.%), Si (16-20 wt.%), Mn (48-52 wt.%), C (0-1.8 wt.%), P (0-0.25 wt.%), S (0-0.04 wt.%) and Fe (rest), and is prepared through thermal resmelting, slogging to remove carbon, adding Al and Si, fastly casting ingots, demoulding, cooling in air. Its advantages are short smelting time and less consumption of Al.

Description

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Claims

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Application Information

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Owner GEBREIER ALLOY CHANGZHOU
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