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Rear-earth magnesium alloy smelting agent and preparation method thereof

A smelting agent, rare earth magnesium technology, applied in the preparation of rare earth magnesium alloy smelting agent, rare earth magnesium alloy smelting agent field, can solve the problems of affecting product use efficiency, accelerating material corrosion, reducing service life, etc., to achieve good protection effect, increase The effect of adsorption capacity and low treatment cost

Active Publication Date: 2015-01-14
YANGZHOU FENG MING METAL PROD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] (2) Volatile gases such as HCl may penetrate into the alloy liquid and become a source of corrosion during the use of the material, accelerating material corrosion and reducing the service life
The production efficiency is low, the product particles are large, and the reactor density is high, which seriously affects the use efficiency of the product

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] The preparation method of the rare earth magnesium alloy smelting agent of the present invention comprises the following steps successively:

[0027] (1) In the batching and mixing equipment, prepare a saturated aqueous solution of chloride salt at 80°C, and then preheat the saturated aqueous solution of chloride salt to 85°C; the chloride salt is lithium chloride;

[0028] In the batching and mixing equipment, prepare a saturated aqueous solution of trifluoromethanesulfonate at 80°C, and then preheat the saturated aqueous solution of trifluoromethanesulfonate to 85°C; trifluoromethanesulfonate is trifluoromethyl lithium sulfonate;

[0029] In the batching and mixing equipment, prepare a saturated aqueous solution of carbonate at 80°C, and then preheat the saturated aqueous solution of carbonate to 85°C; the carbonate is potassium carbonate.

[0030] (2) Liquid-liquid mixing: Send the saturated aqueous solution of chloride salt, the saturated aqueous solution of triflu...

Embodiment 2

[0038] The preparation method of the rare earth magnesium alloy smelting agent of the present invention comprises the following steps successively:

[0039] (1) In the batching and mixing equipment, prepare a saturated aqueous solution of chloride salt at 80°C, and then preheat the saturated aqueous solution of chloride salt to 85°C; the chloride salt is sodium chloride;

[0040] In the batching and mixing equipment, prepare a saturated aqueous solution of trifluoromethanesulfonate at 80°C, and then preheat the saturated aqueous solution of trifluoromethanesulfonate to 90°C; trifluoromethanesulfonate is trifluoromethyl sodium sulfonate;

[0041] In the batching and mixing equipment, prepare a saturated aqueous solution of carbonate at 80°C, and then preheat the saturated aqueous solution of carbonate to 85°C; the carbonate is magnesium carbonate.

[0042] (2) Liquid-liquid mixing: Send the saturated aqueous solution of chloride salt, the saturated aqueous solution of trifluor...

Embodiment 3

[0050] The preparation method of the rare earth magnesium alloy smelting agent of the present invention comprises the following steps successively:

[0051] ⑴In the batching and mixing equipment, prepare a saturated aqueous solution of chloride salt at 80°C, and then preheat the saturated aqueous solution of chloride salt to 95°C; the chloride salt is potassium chloride;

[0052] In the batching and mixing equipment, prepare a saturated aqueous solution of trifluoromethanesulfonate at 80°C, and then preheat the saturated aqueous solution of trifluoromethanesulfonate to 95°C; trifluoromethanesulfonate is trifluoromethyl Potassium sulfonate;

[0053] In the batching and mixing equipment, prepare a saturated aqueous solution of carbonate at 80°C, and then preheat the saturated aqueous solution of carbonate to 95°C; the carbonate is lanthanum carbonate.

[0054] (2) Liquid-liquid mixing: Send the saturated aqueous solution of chloride salt, the saturated aqueous solution of trifl...

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Abstract

The invention discloses rear-earth magnesium alloy smelting agent and a preparation method thereof. The rear-earth magnesium alloy smelting agent comprises the components in a molar ratio of chlorate to trifluoromethyl sulfonate to carbonate equal of (80-90):(1-3):15; the mixed solution is sprayed in to solution drops through a spraying device; the solution drops directly enters a decompression flashing device for evaporating and dehydrating; primary gas-solid separation is carried out by a gas-solid separating device; solid-phase materials are fed to a fluidization drying device, so that fluidization drying is carried out onto the solid-phase materials by the air which is pre-heated to 120 DEG C to 200 DEG C; secondary gas-solid separation is carried out by the gas-solid separating device to control the moisture content of the solid-phase materials to be within 0.2%; and the solid materials is filled in a sealed container for storage and used rear-earth magnesium alloy smelting agent for future use. The rear-earth magnesium alloy smelting agent is environment-friendly and energy-saving, low in treatment cost, good in treatment effect and high in utilization rate of valuable constituents.

Description

technical field [0001] The invention relates to a rare earth magnesium alloy, in particular to a rare earth magnesium alloy melting agent. The invention also relates to a preparation method of the rare earth magnesium alloy melting agent. Background technique [0002] Since the late 1980s, with the application of magnesium alloys in the field of aviation and aerospace, the research on the application of rare earth elements to magnesium alloys has been re-emphasized. Rare earth magnesium alloys can overcome the shortcomings of traditional magnesium alloy materials and meet the requirements of modern industry. Requirements for materials such as lightweight, energy saving, environmental protection, safety, comfort, and sustainable development. As the main alloying elements or microalloying elements, rare earths are playing an increasingly important role in the research field of magnesium alloys. Rare earth magnesium alloy is currently the lightest metal structural material in...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22C1/06C22C23/06
Inventor 眭怀明王梅赵引红
Owner YANGZHOU FENG MING METAL PROD
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