CN111778430A - Preparation method of high-temperature-resistant aluminum alloy furnace end - Google Patents

Preparation method of high-temperature-resistant aluminum alloy furnace end Download PDF

Info

Publication number
CN111778430A
CN111778430A CN201910267774.3A CN201910267774A CN111778430A CN 111778430 A CN111778430 A CN 111778430A CN 201910267774 A CN201910267774 A CN 201910267774A CN 111778430 A CN111778430 A CN 111778430A
Authority
CN
China
Prior art keywords
aluminum alloy
temperature
furnace end
molten
metal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201910267774.3A
Other languages
Chinese (zh)
Inventor
沈敏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan Guoben Electric Appliance Co ltd
Original Assignee
Foshan Guoben Electric Appliance Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Foshan Guoben Electric Appliance Co ltd filed Critical Foshan Guoben Electric Appliance Co ltd
Priority to CN201910267774.3A priority Critical patent/CN111778430A/en
Publication of CN111778430A publication Critical patent/CN111778430A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C21/00Alloys based on aluminium
    • C22C21/02Alloys based on aluminium with silicon as the next major constituent
    • C22C21/04Modified aluminium-silicon alloys
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D17/00Pressure die casting or injection die casting, i.e. casting in which the metal is forced into a mould under high pressure
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/02Making non-ferrous alloys by melting
    • C22C1/026Alloys based on aluminium
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/02Making non-ferrous alloys by melting
    • C22C1/03Making non-ferrous alloys by melting using master alloys
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/06Making non-ferrous alloys with the use of special agents for refining or deoxidising

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Abstract

The invention relates to a preparation method of a high-temperature-resistant aluminum alloy furnace end, which comprises the following specific production steps: the alloy is prepared by smelting 65-70 wt% of aluminum alloy (A356), refining, removing slag, adding 1.1-1.3 wt% of Al-Sr5, 0.9-1.2 wt% of Mn, 8-10.8 wt% of Si, 0.15-0.2 wt% of Ti and 6-6.8 wt% of alterant, improving the performance of molten metal, and then performing mold closing and die casting. The high-temperature-resistant aluminum alloy furnace end produced by the method has high heat resistance, and can be burnt for a long time at the high temperature of 600 ℃ without deformation.

Description

Preparation method of high-temperature-resistant aluminum alloy furnace end
Technical Field
The invention relates to a preparation method of an aluminum alloy furnace end, in particular to a preparation method of a high-temperature-resistant aluminum alloy furnace end.
Background
The traditional stove mostly uses cast iron and copper materials, the furnace end of the cast iron is easy to rust and difficult to maintain in the using process, the cost of the copper material is high, and the processing difficulty is high; as a new furnace, the aluminum alloy furnace is more and more favored by the market due to low cost, easy processing and stainless corrosion, but the existing aluminum alloy furnace has lower melting point and is easy to deform after being used at high temperature for a long time.
Disclosure of Invention
In order to solve the technical problems in the prior art, the invention aims to provide a preparation method of a high-temperature-resistant aluminum alloy furnace end.
In order to solve the above technical problems and achieve the above object, the present invention provides the following technical solutions: a preparation method of a high-temperature-resistant aluminum alloy furnace end comprises the following steps:
(1) smelting: preheating a smelting furnace to 200 ℃, maintaining for 0.5-1 h, then adding 65-70 wt% of aluminum alloy A356, raising the temperature of the smelting furnace to 670-;
(2) refining: adding 5-7 wt% of scouring agent into the molten aluminum alloy metal in the step 1 to remove hydrogen and floating oxidation slag inclusion in the molten aluminum alloy metal;
(3) slag removal: 5-7 wt% of slag removing agent and 3-6 wt% of heating agent are scattered on the surface of the aluminum alloy molten metal in the step 2, the temperature of the molten metal is kept, and a funnel device or a degasser is used for removing oxidation slag, mainly oxides of silicon;
(4) modification: adding 1.1-1.3 wt% of Al-Sr5, 0.9-1.2 wt% of Mn, 8-10.8 wt% of Si, 0.15-0.2 wt% of Ti and 6-6.8 wt% of modifier into the aluminum alloy molten metal in the step 3, and then fully stirring the molten metal at the temperature of 670-;
(5) preparing a mould: preheating a furnace end mould to 350-400 ℃, spraying clear water on the inner surface of a furnace end mould cavity, waiting for 5 minutes, spraying 34# coating on the surface of the furnace end mould cavity, and then spraying 39# coating on the surface of the mould cavity;
(6) and (3) mold assembling: placing the sand core into the furnace end mold cavity prepared in the step 5 for mold assembling, and adjusting the temperature of the mold to 400 ℃;
(7) die casting: pouring a certain amount of the aluminum alloy molten metal at 670-700 ℃ prepared in the step 4 into the die cavity in the step 6, quickly closing the die, and pressurizing to 50-100kPa when the punch head is close to the molten metal;
(8) cooling, demolding and taking out the workpiece;
(9) surface treatment: and (3) polishing the surface of the workpiece by using corundum (80#) under the air pressure of 50-100kPa to prevent the oxidation reaction of aluminum and air.
Among them, in step 4, it is preferable to add 1.15 wt% of Al-Sr5, 0.95 wt% of Mn, 10 wt% of Si, 0.15 wt% of Ti and 6.5 wt% of a modifier, and maintain the temperature at 700 ℃.
Preferably, in the step 7, a certain amount of the aluminum alloy molten metal at 700 ℃ prepared in the step 4 is poured into the die cavity in the step 6, the die is rapidly closed, and when the punch head approaches the molten metal, the pressure is increased to 80 kPa.
Compared with the prior art, the invention has the following beneficial effects: the aluminum alloy furnace end cast by the aluminum alloy molten metal can be burnt for a long time at the high temperature of 600 ℃ without deformation, and the heat resistance of the aluminum alloy furnace end is improved.
Detailed Description
The technical solution of the present invention will be further specifically described below by way of examples.
A preparation method of a high-temperature-resistant aluminum alloy furnace end comprises the following specific materials: 65-70 wt% of aluminum alloy (A356), 5-7 wt% of scouring agent, 5-7 wt% of slag-removing agent, 3-6 wt% of heating agent, 1.1-1.3 wt% of aluminum-strontium alloy (Al-Sr5), 0.9-1.2 wt% of manganese (Mn), 8-10.8 wt% of silicon (Si), 0.15-0.2 wt% of titanium (Ti) and 6-6.8 wt% of modifier, wherein the modifier is a mixture of 2/3NaF and 1/3 NaCl. The method comprises the following steps: (1) smelting: preheating a smelting furnace to 200 ℃, maintaining for 0.5-1 h, then adding 65-70 wt% of aluminum alloy A356, raising the temperature of the smelting furnace to 670-; (2) refining: adding 5-7 wt% of scouring agent into the molten aluminum alloy metal in the step 1 to remove hydrogen and floating oxidation slag inclusion in the molten aluminum alloy metal; (3) slag removal: 5-7 wt% of slag removing agent and 3-6 wt% of heating agent are scattered on the surface of the aluminum alloy molten metal in the step 2, the temperature of the molten metal is kept, and a funnel device or a degasser is used for removing oxidation slag, mainly oxides of silicon; (4) adding 1.1-1.3 wt% of Al-Sr5, 0.9-1.2 wt% of Mn, 8-10.8 wt% of Si, 0.15-0.2 wt% of Ti and 6-6.8 wt% of modifier into the molten aluminum alloy in the step 3, and then fully stirring the molten aluminum alloy at the temperature of 670-; (5) preparing a mould: preheating a furnace end mould to 350-; (6) and (3) mold assembling: placing the sand core into the furnace end mold cavity prepared in the step 5 for mold assembling, and adjusting the temperature of the mold to 400 ℃; (7) die casting: pouring a certain amount of the aluminum alloy molten metal at 670-700 ℃ prepared in the step 4 into the die cavity in the step 6, quickly closing the die, and pressurizing to 50-100kPa when the punch head is close to the molten metal; (8) cooling, demolding and taking out the workpiece; (9) surface treatment: and (3) polishing the surface of the workpiece by using corundum (80#) under the air pressure of 50-100kPa to prevent the oxidation reaction of aluminum and air.
Wherein, in the step 4, the preferable scheme is that 1.15 wt% of Al-Sr5, 0.95 wt% of Mn, 10 wt% of Si, 0.15 wt% of Ti and 6.5 wt% of alterant are added, and the temperature is maintained at 700 ℃.
In the step 7, a certain amount of the aluminum alloy molten metal at 700 ℃ prepared in the step 4 is poured into the die cavity in the step 6, the die is rapidly closed, and when the punch head approaches the molten metal, the pressure is increased to 80 kPa.
Compared with the prior art, the invention has the following beneficial effects: the heat resistance of the molten metal is improved by further treating the molten metal and adding elements such as Al-Sr5, Mn, Si, Ti and the like, so that the aluminum alloy furnace end cast by the molten metal can be burnt for a long time at the high temperature of 600 ℃ without deformation, and the heat resistance of the aluminum alloy furnace end is improved.
The experimental conditions of the invention are as follows: the laboratory environment: temperature (23 + -2) DEG C; humidity (50 ± 5)% RH; experimental equipment: DSC200F3 and salt spray test chamber.
The product produced by the invention and the traditional aluminum alloy furnace end product are subjected to entity sampling test:
Figure BDA0002017396110000042
Figure BDA0002017396110000041

Claims (3)

1. the preparation method of the high-temperature-resistant aluminum alloy furnace end is characterized by comprising the following steps of:
(1) smelting: preheating a smelting furnace to 200 ℃, maintaining for 0.5-1 h, then adding 65-70 wt% of aluminum alloy A356, raising the temperature of the smelting furnace to 670-;
(2) refining: adding 5-7 wt% of scouring agent into the molten aluminum alloy metal in the step 1 to remove hydrogen and floating oxidation slag inclusion in the molten aluminum alloy metal;
(3) slag removal: 5-7 wt% of slag removing agent and 3-6 wt% of heating agent are scattered on the surface of the aluminum alloy molten metal in the step 2, the temperature of the molten metal is kept, and a funnel device or a degasser is used for removing oxidation slag, mainly oxides of silicon;
(4) modification: adding 1.1-1.3 wt% of Al-Sr5, 0.9-1.2 wt% of Mn, 8-10.8 wt% of Si, 0.15-0.2 wt% of Ti and 6-6.8 wt% of modifier into the molten aluminum alloy in the step 3, and then fully stirring the molten aluminum alloy at the temperature of 670-;
(5) preparing a mould: preheating a furnace end mould to 350-400 ℃, spraying clear water on the inner surface of a furnace end mould cavity, waiting for 5 minutes, spraying 34# coating on the surface of the furnace end mould cavity, and then spraying 39# coating on the surface of the mould cavity;
(6) and (3) mold assembling: placing the sand core into the furnace end mold cavity prepared in the step 5 for mold assembling, and adjusting the temperature of the mold to 400 ℃;
(7) die casting: pouring a certain amount of the aluminum alloy molten metal at 670-700 ℃ prepared in the step 4 into the die cavity in the step 6, quickly closing the die, and pressurizing to 50-100kPa when the punch head is close to the molten metal;
(8) cooling, demolding and taking out the workpiece;
(9) surface treatment: and (3) polishing the surface of the workpiece by using corundum (80#) under the air pressure of 50-100kPa to prevent the oxidation reaction of aluminum and air.
2. The preparation method of the high-temperature-resistant aluminum alloy furnace end according to claim 1, characterized in that: in the step 4, 1.15 wt% of Al-Sr5, 0.95 wt% of Mn, 10 wt% of Si, 0.15 wt% of Ti and 6.5 wt% of alterant are added, and the temperature is maintained at 700 ℃.
3. The preparation method of the high-temperature-resistant aluminum alloy furnace end according to claim 1, characterized in that: and 7, pouring a certain amount of the molten aluminum alloy metal at 700 ℃ prepared in the step 4 into the die cavity in the step 6, quickly closing the die, and pressurizing to 80kPa when the punch head is close to the molten aluminum alloy metal.
CN201910267774.3A 2019-04-03 2019-04-03 Preparation method of high-temperature-resistant aluminum alloy furnace end Pending CN111778430A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910267774.3A CN111778430A (en) 2019-04-03 2019-04-03 Preparation method of high-temperature-resistant aluminum alloy furnace end

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910267774.3A CN111778430A (en) 2019-04-03 2019-04-03 Preparation method of high-temperature-resistant aluminum alloy furnace end

Publications (1)

Publication Number Publication Date
CN111778430A true CN111778430A (en) 2020-10-16

Family

ID=72755549

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910267774.3A Pending CN111778430A (en) 2019-04-03 2019-04-03 Preparation method of high-temperature-resistant aluminum alloy furnace end

Country Status (1)

Country Link
CN (1) CN111778430A (en)

Similar Documents

Publication Publication Date Title
CN101392340B (en) Method for producing water meter case by cast aluminum alloy and products thereof
CN104226914A (en) Foundry technology of flange
CN105598389B (en) A kind of casting technique for the composite flange for sealing rain-proof
CN102703652B (en) Heat treatment process of hot-work-die steel for aluminum die-casting mould
CN111074103A (en) Die-casting aluminum alloy and refining process thereof
CN102764852B (en) A kind of method of use V methods Foundry Production ultra-high manganese steel jaw
CN108179306B (en) Copper-based alloy for robot welding arm
CN109986056B (en) Low-pressure aluminum casting process method for cast aluminum rotor
CN1710227B (en) Method for manufacturing lock shaft parts for container
CN111778430A (en) Preparation method of high-temperature-resistant aluminum alloy furnace end
CN102121080A (en) Austenite spheroidal graphite cast iron diffuser and production method thereof
CN109396380A (en) A kind of method of semisolid pressure casting preparation high thermal conductivity baking tray
CN101602103A (en) The casting method of zinc base alloy for stamping die basal body
CN106392037A (en) Direct casting technology for pure aluminum metal mold
CN107790633A (en) A kind of aluminum alloy doors and windows precision-investment casting process
CN104874744A (en) Casting method of crank case
CN105618701A (en) Precise casting method of wear resistant steel part
CN110551940A (en) Impeller forming process
CN101073820A (en) Method for improving ingot surface quality
CN109570437A (en) A kind of dewaxing shell manufacture craft
CN104630523A (en) Method for preparing aluminum bronze
CN1094398C (en) Pure copper air and slag hole sleeve extrusion casting process
CN107130164A (en) The technique that a kind of model casting produces spheroidal graphite cast-iron
CN107747008A (en) A kind of high surface strength aluminum alloy heat processing method
CN218487167U (en) Front axle main reducer casing casting mould

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20201016