Transfer ladle device capable of being heated
By filling the transfer ladle with insulation material and using resistance belt heating, the problem of temperature drop during the transfer of molten aluminum is solved, efficient insulation and energy-saving heating of the molten aluminum are achieved, and the casting quality is improved.
Patent Information
- Application Number
- CN202422567924.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-24
AI Technical Summary
The existing transfer package causes the temperature of molten aluminum to drop during the transfer process, affecting the casting quality, and requires additional heating to match the requirements of the low-pressure furnace.
A heatable transfer bag device is designed. The heat insulation cavity is filled with heat insulation material and heated by resistance band. The heat insulation cotton and cover design are combined to improve the heat preservation effect.
Effectively maintain the temperature of molten aluminum, reduce temperature drop, reduce the need for subsequent heating, and improve casting quality and energy efficiency.
Smart Images

Figure CN223338353U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field related to aluminum alloy manufacturing equipment, and more specifically to a heatable transfer packaging device. Background technology:
[0002] At present, in the process of adding aluminum liquid during casting, one or two melting furnaces are generally used for melting. The molten aluminum alloy liquid is then transferred to the holding furnaces of various casting equipment. The equipment that needs to be transferred in the middle is generally transferred by transfer packages.
[0003] The existing transfer bags are generally made of welded steel plates. Due to the waiting time during the transfer process, the temperature of the molten aluminum in the transfer bag will drop. After being added to the low-pressure furnace, the temperature will be somewhat different from the set temperature, causing the temperature to rise, which also affects the product quality. Utility model content:
[0004] The purpose of the utility model is to overcome the shortcomings of the existing technology and provide a heated transfer packaging device. The insulation cavity of its main shell is filled with insulation material to achieve heat preservation. At the same time, it can be heated by a resistance belt to ensure the temperature of the aluminum liquid in the main shell, and the heat preservation effect is greatly improved. The cover body provided on the main shell also further improves the heat preservation effect.
[0005] The solution of the utility model to solve the technical problem is:
[0006] A heatable transfer bag device includes a transfer bag body, wherein the transfer bag body includes a main shell, an insulation cavity is formed between an outer wall plate and an inner wall plate of the main shell, and the insulation cavity is filled with insulation material;
[0007] A cover body is installed on the top of the main shell, a connecting block is fixed on the left bottom surface of the cover body, and a lower connecting block is fixed on the upper part of the left side wall of the main shell, and the lower connecting block is movably connected to the connecting block through a hinge shaft;
[0008] A resistance belt is installed between the outer wall plate and the inner wall plate of the bottom of the main shell, and an electric socket is fixed on the lower outer wall of the main shell. The resistance belt is electrically connected to the electric socket.
[0009] The heat insulation material is thermal insulation mud.
[0010] An inner cavity is formed inside the cover body, and the entire inner cavity is filled with thermal insulation cotton.
[0011] A liquid-conducting casting port extending obliquely rightward and upward is formed on the right side wall of the main shell, and a heat-insulating cavity formed between the outer wall plate and the inner wall plate of the liquid-conducting casting port is filled with heat-insulating material.
[0012] The outstanding effects of the utility model are:
[0013] The insulation cavity of its main shell is filled with insulation material to achieve heat preservation. At the same time, it can be heated by a resistance belt to ensure the temperature of the aluminum liquid in the main shell, and the insulation effect is greatly improved. The cover body set on the main shell also further improves the insulation effect, so that the temperature drops little or basically does not drop. When it is subsequently poured into the low-pressure furnace, there is basically no need to heat it up or only a small temperature increase is required, thereby achieving energy saving. Description of the drawings:
[0014] Figure 1 It is a partial structural diagram of the utility model;
[0015] Figure 2 yes Figure 1 A partial enlarged view of
[0016] Figure 3 It is a partial top view of the utility model. Specific implementation method:
[0017] For example, see Figures 1 to 2 As shown, a heatable transfer bag device includes a transfer bag body 10, which includes a main shell 11. An insulating cavity is formed between the outer wall plate and the inner wall plate of the main shell 11, and the insulating cavity is filled with insulating material 1; that is, the main shell 11 is composed of an outer shell composed of outer wall plates and an inner shell composed of inner wall plates, and an insulating cavity is formed between the outer shell and the inner shell.
[0018] A liquid-conducting casting port 13 extending obliquely rightward and upward is formed on the right side wall of the main shell 11 , and the heat-insulating material 1 is filled in the heat-insulating cavity formed between the outer wall plate and the inner wall plate of the liquid-conducting casting port 13 .
[0019] The heat-insulating material 1 is heat-insulating mud, such as fire pit heat-insulating mud that can be directly purchased on the market.
[0020] This structure enables the transfer package body 10 to have a better thermal insulation effect, so that the aluminum liquid inside it is kept warm and the speed of temperature drop is reduced.
[0021] Furthermore, a cover body 20 is installed on the top of the main shell 11, a connecting block 21 is fixed to the left bottom surface of the cover body 20, and a lower connecting block 12 is fixed to the upper part of the left side wall of the main shell 11, and the lower connecting block 12 is movably connected to the connecting block 21 through a hinge shaft; the cover body 20 also further improves the thermal insulation effect.
[0022] Furthermore, a resistance band 2 is installed between the outer wall plate and the inner wall plate at the bottom of the main shell 11, and an electric socket 3 is fixed on the lower outer wall of the main shell 11, and the resistance band 2 is electrically connected to the electric socket 3.
[0023] Furthermore, the cover 20 has an internal cavity formed therein, which is filled with thermal insulation 22. The thermal insulation 22 is a novel, non-toxic, harmless, and pollution-free thermal insulation material made from high-purity clay clinker, alumina powder, silica powder, and chrome sand. It provides excellent thermal insulation.
[0024] Furthermore, a lifting hanger 23 is fixed to the top surface of the top plate of the cover 20. The lifting hanger 23 can be used to lift the transfer package body 10 for operation.
[0025] Furthermore, a right connecting block 14 is fixed to the upper portion of the right side wall of the main housing 11, and the lower portion of the bending block 15 is movably connected to the right connecting block 14 via a hinge shaft. The bent portion formed at the top of the bending block 15 is located above the top plate of the right portion of the cover body 20. A vertical through-hole is formed in the middle of the bent portion, and the screw portion of the fixing bolt 16 is inserted into the vertical through-hole. The bottom end of the screw portion of the fixing bolt 16 extends out of the bottom surface of the bent portion and is screwed into a screw-connecting through-hole formed in the middle portion of the fixing block 24 fixed to the top surface of the right portion of the top plate of the cover body 20. The bottom surface of the rotating portion of the fixing bolt 16 presses against the top surface of the bent portion of the bending block 15.
[0026] Furthermore, an adjusting nut 17 is screwed to the lower portion of the screw portion of the fixing bolt 16 , and the top end surface of the adjusting nut 17 is pressed against the bottom surface of the bent portion.
[0027] When this embodiment is in use, the cover 20 can be opened and the aluminum liquid can be poured into the main shell 11. At the same time, one end of the power cord can be inserted into the electrical socket 3 and the other end can be inserted into the corresponding power socket, so that the resistance belt 2 is heated, and the bottom of the main shell 11 is heated, thereby heating the aluminum liquid inside, so that the temperature of the aluminum liquid inside is constant, and can even be heated as needed.
[0028] The main shell 11 can keep the aluminum liquid inside or heat it up, ensuring that when it is subsequently poured into the low-pressure furnace, it meets the pouring temperature requirements, so that the temperature in the low-pressure furnace does not need to be specially increased, ensuring subsequent normal casting and good use effect.
[0029] Among them, after pouring the molten aluminum, the cover body 20 can be closed, and then the bending block 15 can be turned up so that the bending portion formed on the top of the bending block 15 is above the top plate of the right part of the cover body 20, and then the fixing bolt 16 is rotated so that the bottom end of the screw portion of the fixing bolt 16 is screwed into the screw-connected through hole formed in the middle part of the fixing block 24 fixed on the right top surface of the top plate of the cover body 20, and then the adjusting nut 17 is rotated so that the top surface of the adjusting nut 17 is pressed against the bottom surface of the bending portion to fix the cover body 20, which is firmly fixed and has a good use effect.
[0030] When it is necessary to open the cover, it is only necessary to loosen the adjusting nut 17 and rotate the fixing bolt 16 to separate the screw portion from the fixing block 24, and then the cover 20 can be separated from the main housing 11, which is convenient for disassembly.
Claims
1. A heatable transfer bag device, comprising a transfer bag body (10), characterized in that: The transfer package body (10) comprises a main shell (11), an insulation cavity is formed between an outer wall plate and an inner wall plate of the main shell (11), and the insulation cavity is filled with insulation material (1); A cover body (20) is installed on the top of the main shell (11), a connecting block (21) is fixed on the left bottom surface of the cover body (20), a lower connecting block (12) is fixed on the upper part of the left side wall of the main shell (11), and the lower connecting block (12) is movably connected to the connecting block (21) through a hinge shaft; A resistance band (2) is installed between the outer wall plate and the inner wall plate at the bottom of the main shell (11), and an electric socket (3) is fixed on the lower outer wall of the main shell (11), and the resistance band (2) is electrically connected to the electric socket (3).
2. The heatable transfer packaging device according to claim 1, characterized in that: The heat insulating material (1) is heat insulating mud.
3. The heatable transfer packaging device according to claim 1, characterized in that: An inner cavity is formed inside the cover body (20), and the thermal insulation cotton (22) fills the entire inner cavity.
4. The heatable transfer packaging device according to claim 3, characterized in that: A lifting hanger (23) is fixed to the top surface of the top plate of the cover body (20).
5. The heatable transfer packaging device according to claim 1, characterized in that: A liquid-conducting casting port (13) extending obliquely rightward and upward is formed on the right side wall of the main shell (11), and a heat-insulating material (1) is filled in the heat-insulating cavity formed between the outer wall plate and the inner wall plate of the liquid-conducting casting port (13).
6. The heatable transfer packaging device according to claim 1, characterized in that: A right connecting block (14) is fixed to the upper part of the right side wall of the main shell (11), and the lower part of the bending block (15) is movably connected to the right connecting block (14) through a hinge shaft. The bending portion formed on the top of the bending block (15) is above the top plate of the right part of the cover body (20), and a vertical through hole is formed in the middle of the bending portion. The screw portion of the fixing bolt (16) is inserted into the vertical through hole, and the bottom end of the screw portion of the fixing bolt (16) extends out of the bottom surface of the bending portion and is screwed into the screw through hole formed in the middle of the fixing block (24) fixed on the top surface of the right part of the top plate of the cover body (20).
7. The heatable transfer packaging device according to claim 6, characterized in that: The lower part of the screw rod of the fixing bolt (16) is screwed with an adjusting nut (17), and the top end surface of the adjusting nut (17) is pressed against the bottom surface of the bent portion.