CN206891165U - A kind of vacuum melting furnace of melting magnesium alloy - Google Patents

A kind of vacuum melting furnace of melting magnesium alloy Download PDF

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Publication number
CN206891165U
CN206891165U CN201720701879.1U CN201720701879U CN206891165U CN 206891165 U CN206891165 U CN 206891165U CN 201720701879 U CN201720701879 U CN 201720701879U CN 206891165 U CN206891165 U CN 206891165U
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China
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vacuum
melting furnace
pump
furnace
vacuum melting
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CN201720701879.1U
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Inventor
侯华
丁志兵
鲁若鹏
程鹏
赵宇宏
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North University of China
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North University of China
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Abstract

It the utility model is related to a kind of vacuum melting furnace of melting magnesium alloy, primary structure includes stove seat, furnace chamber, workbench, escape pipe, air outlet valve, melting kettle, medium frequency induction heater, bottom blowing pump, vavuum pump, protective gas bottle, electric cabinet, vacuum melting furnace is vertical structure, using Frequency Induction Heating, homogeneous heating, time saving power saving, provided with outlet pipe valve, with security, equipped with protective gas bottle, bottom blowing pump, this vacuum melting furnace advanced design, configuration is reasonable, it is compact-sized, safety and stability is reliable, it is easy for operation, it is the vacuum melting furnace of advanced melting magnesium alloy.

Description

A kind of vacuum melting furnace of melting magnesium alloy
Technical field
A kind of vacuum melting furnace of melting magnesium alloy is the utility model is related to, belongs to the design and system of smelting non-ferrous metal equipment The technical field made.
Background technology
Magnesium and magnesium alloy are most light non-ferrous alloys, often in electronics industry, Aero-Space, are answered in health care industry With.
Magnesium and magnesium alloy are due to low intensity, hardness is low, poor corrosion resistance, make application in the industry by very big office Limit;In order to improve the mechanical property of magnesium and magnesium alloy, often rare earth doped element and enhancing material in the fusion process of magnesium alloy, This requires smelting equipment to have shielding;The smelting equipment used at present mostly relatively falls behind, such as mode of heating falls behind, furnace chamber It is interior to extract air, protective gas can not be inputted in fusion process, the melting of magnesium and magnesium alloy is not reached requirement.
The content of the invention
Goal of the invention
The purpose of the present invention is the situation for background technology, designs a kind of vacuum melting furnace of new magnesium alloy, is used Frequency Induction Heating, argon gas bottom-blowing device, make the melting of magnesium alloy more advanced.
Technical scheme
The utility model primary structure includes:Vacuum melting furnace, stove seat, furnace chamber, escape pipe, air outlet valve, workbench, melting Crucible, medium frequency induction heater, left socle, right support, bottom blowing pump, bottom blowpipe, vavuum pump, vacuum tube, protective gas bottle, gas Pipe, gas trap, electric cabinet, display screen, indicator lamp, power supply open the light, Frequency Induction Heating controller, bottom blowing pump controller, vacuum Pump controller, wire, gas-permeable nets.
Vacuum melting furnace is vertical, is stove seat in the bottom of vacuum melting furnace, the lower left quarter of stove seat is left socle, right lower quadrant For right support, bottom blowing pump is provided with left socle, vavuum pump is provided with right support;The inside of vacuum melting furnace is furnace chamber, right Top is provided with escape pipe, air outlet valve;Workbench is provided with the inner bottom part of furnace chamber, portion is provided with melting kettle, melting on the table It is medium frequency induction heater outside crucible;Protective gas bottle is provided with the left part of vacuum melting furnace, protective gas bottle top is provided with Flue, gas trap, and bottom blowing pump is connected, bottom blowing pump connects bottom blowpipe, and gas-permeable nets, bottom blowpipe are provided with bottom blowpipe upper end outlet Workbench through stove seat, vacuum melting furnace connects melting kettle;Vavuum pump connects vacuum tube, and vacuum tube passes through stove seat, vacuum Smelting furnace connects furnace chamber;Electric cabinet is provided with the right part of vacuum melting furnace, display screen, indicator lamp, power supply are provided with electric cabinet Switch, Frequency Induction Heating controller, bottom blowing pump controller, controller for vacuum pump;Electric cabinet connects intermediate frequency by the first wire Sensing heater, pass through the second wire connection bottom blowing pump, vavuum pump.
Beneficial effect
The utility model has obvious advance compared with background technology, and the vacuum melting furnace of melting magnesium alloy is vertical Structure, vavuum pump, gas bottom blowing pump are provided with furnace bottom, melting kettle is heated using medium frequency induction heater, homogeneous heating, is saved Shi Sheng electricity, provided with outlet pipe valve, there is security, be configured with protective gas bottle, electric cabinet, this vacuum melting furnace advanced design, Compact-sized, safety and stability is reliable, easy for operation, is the vacuum melting furnace of advanced melting magnesium alloy.
Brief description of the drawings
Fig. 1, the vacuum melting furnace structure chart of melting magnesium alloy
Shown in figure, list of numerals is as follows:
1st, vacuum melting furnace, 2, stove seat, 3, furnace chamber, 4, escape pipe, 5, air outlet valve, 6, workbench, 7, melting kettle, 8, in Frequency sensing heater, 9, left socle, 10, right support, 11, bottom blowing pump, 12, bottom blowpipe, 13, vavuum pump, 14, vacuum tube, 15, protect Protect gas bottle, 16, flue, 17, gas trap, 18, electric cabinet, 19, display screen, 20, indicator lamp, 21, power switch, 22, in Frequency sensing heating controller, 23, bottom blowing pump controller, 24, controller for vacuum pump, the 25, first wire, the 26, second wire, 27, Gas-permeable nets.
Embodiment
The utility model is described further below in conjunction with accompanying drawing:
It is the vacuum melting furnace structure chart of melting magnesium alloy shown in Fig. 1, each portion position, annexation are correct, installation jail Gu.
Vacuum melting furnace is vertical, is stove seat 2 in the bottom of vacuum melting furnace 1, the lower left quarter of stove seat 2 is left socle 9, the right side Bottom is right support 10, and bottom blowing pump 11 is provided with left socle 9, and vavuum pump 13 is provided with right support 10;Vacuum melting furnace 1 Inside is furnace chamber 3, upper right quarter is provided with escape pipe 4, air outlet valve 5;Workbench 6 is provided with the inner bottom part of furnace chamber 3, on workbench 6 Portion is provided with melting kettle 7, and the outside of melting kettle 7 is medium frequency induction heater 8;Protection gas is provided with the left part of vacuum melting furnace 1 Body bottle 15, the top of protective gas bottle 15 is provided with flue 16, gas trap 17, and connects bottom blowing pump 11, and bottom blowing pump 11 connects bottom blowing Pipe 12, gas-permeable nets 27 are provided with the upper end outlet of bottom blowpipe 12, and bottom blowpipe 12 connects through stove seat 2, the workbench 6 of vacuum melting furnace 1 Connect melting kettle 7;Vavuum pump 13 connects vacuum tube 14, and vacuum tube 14 connects furnace chamber 3 through stove seat 2, vacuum melting furnace 1;True The right part of empty smelting furnace 1 is provided with electric cabinet 18, and display screen 19, indicator lamp 20, power switch 21, intermediate frequency are provided with electric cabinet 18 Sensing heating controller 22, bottom blowing pump controller 23, controller for vacuum pump 24;Electric cabinet 18 connects intermediate frequency by the first wire 25 Sensing heater 8, pass through the second wire 26 connection bottom blowing pump 11, vavuum pump 13.

Claims (1)

  1. A kind of 1. vacuum melting furnace of melting magnesium alloy, it is characterised in that:Primary structure include vacuum melting furnace, stove seat, furnace chamber, Escape pipe, air outlet valve, workbench, melting kettle, medium frequency induction heater, left socle, right support, bottom blowing pump, bottom blowpipe, vacuum Pump, vacuum tube, protective gas bottle, flue, gas trap, electric cabinet, display screen, indicator lamp, power supply open the light, Frequency Induction Heating Device, bottom blowing pump controller, controller for vacuum pump, wire, gas-permeable nets;
    Vacuum melting furnace be stove seat in the bottom of vacuum melting furnace to be vertical, and the lower left quarter of stove seat is left socle, right lower quadrant is the right side Support, bottom blowing pump is provided with left socle, vavuum pump is provided with right support;The inside of vacuum melting furnace is furnace chamber, upper right quarter Provided with escape pipe, air outlet valve;Workbench is provided with the inner bottom part of furnace chamber, portion is provided with melting kettle, melting kettle on the table Outside is medium frequency induction heater;Protective gas bottle is provided with the left part of vacuum melting furnace, protective gas bottle top is provided with gas Pipe, gas trap, and bottom blowing pump is connected, bottom blowing pump connects bottom blowpipe, is provided with gas-permeable nets at bottom blowpipe upper end outlet, bottom blowpipe passes through The workbench connection melting kettle of stove seat, vacuum melting furnace;Vavuum pump connects vacuum tube, and vacuum tube passes through stove seat, vacuum melting Stove connects furnace chamber;Be provided with electric cabinet in the right part of vacuum melting furnace, on electric cabinet be provided with display screen, indicator lamp, power switch, Frequency Induction Heating controller, bottom blowing pump controller, controller for vacuum pump;Electric cabinet connects Medium frequency induction by the first wire and added Hot device, pass through the second wire connection bottom blowing pump, vavuum pump.
CN201720701879.1U 2017-06-16 2017-06-16 A kind of vacuum melting furnace of melting magnesium alloy Active CN206891165U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720701879.1U CN206891165U (en) 2017-06-16 2017-06-16 A kind of vacuum melting furnace of melting magnesium alloy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720701879.1U CN206891165U (en) 2017-06-16 2017-06-16 A kind of vacuum melting furnace of melting magnesium alloy

Publications (1)

Publication Number Publication Date
CN206891165U true CN206891165U (en) 2018-01-16

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109579524A (en) * 2018-11-22 2019-04-05 重庆大学 A kind of high melt device based on intermediate frequency furnace
CN110864547A (en) * 2019-11-13 2020-03-06 浙江悦世新材料技术有限公司 Improved intermediate frequency induction heating furnace
CN111238227A (en) * 2020-01-13 2020-06-05 云南科威液态金属谷研发有限公司 Vacuum melting furnace
CN114592136A (en) * 2022-01-28 2022-06-07 哈尔滨工业大学 Device and method for preparing magnesium-based hydrogen storage alloy with assistance of ultrasonic waves

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109579524A (en) * 2018-11-22 2019-04-05 重庆大学 A kind of high melt device based on intermediate frequency furnace
CN110864547A (en) * 2019-11-13 2020-03-06 浙江悦世新材料技术有限公司 Improved intermediate frequency induction heating furnace
CN111238227A (en) * 2020-01-13 2020-06-05 云南科威液态金属谷研发有限公司 Vacuum melting furnace
CN114592136A (en) * 2022-01-28 2022-06-07 哈尔滨工业大学 Device and method for preparing magnesium-based hydrogen storage alloy with assistance of ultrasonic waves
CN114592136B (en) * 2022-01-28 2022-11-29 哈尔滨工业大学 Device and method for preparing magnesium-based hydrogen storage alloy with assistance of ultrasonic waves

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