Batching device of conjoined submersed nozzle

By combining the design of the batching tank, weighing components, and feeding components, the problem of errors in manual weighing of raw materials was solved, achieving accurate material weighing and convenient mixing, and improving the overall performance of the sprue.

CN223490885UActive Publication Date: 2025-10-31WUXI NANFANG REFRACTORIES CO LTD
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Patent Information

Application Number
CN202422827596.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-10-31
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

In existing technologies, errors are prone to occur when manually weighing raw materials for integrated immersion nozzles, especially for components with small proportions, leading to a decline in the overall physicochemical properties of the nozzles.

Method used

A batching device comprising a batching tank, a processing component, a weighing component, and a feeding component is designed. It uses an electronic scale and limiting components to accurately weigh the materials and mixes the materials through a stirring shaft and a heating plate to reduce errors.

Benefits of technology

It achieves accurate material weighing and convenient mixing, reduces material errors, and improves the overall performance of the sprue.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a batching device of a conjoined submersed nozzle, which comprises a batching tank, and further comprises a processing component arranged at the bottom of the batching tank and used for stirring and heating materials; the weighing assembly is used for weighing the materials, the weighing assembly comprises a first frame body arranged on one side of the batching tank, and an electronic scale is arranged on the inner wall of the bottom end of the first frame body. Through the design of the first frame body, the weighing frame, the electronic scale, the limiting piece and the feeding assembly, when raw materials need to be evenly mixed, the needed raw materials are poured into the weighing frame firstly, the weight of the raw materials in the weighing frame is weighed through the electronic scale at the bottom of the weighing frame, and when the raw materials with the needed weight are obtained, the raw materials with the needed weight are evenly mixed. The raw materials in the weighing frame are poured into the proportioning tank through the feeding assembly, the materials are automatically weighed through an electronic scale during use, and the situation that errors occur to the materials poured into the proportioning tank is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of preparation technology, and in particular to a batching device for an integrated immersion sprue. Background Technology

[0002] An integrated submersible nozzle is a key piece of equipment used in continuous casting of molten steel. It integrates the nozzle with the submersible guide pipe, effectively controlling the flow of molten steel, reducing secondary oxidation and inclusions, and improving the quality of the steel.

[0003] When producing sprues, raw materials need to be prepared. The preparation of raw materials involves weighing different materials according to the required proportions and then mixing them evenly. Traditionally, the raw materials are weighed manually. However, errors can occur due to factors such as the staff's lack of concentration.

[0004] Of course, for components with a large proportion in the formula, a large error will not have a significant impact on the overall performance of the sprue. However, for some components with a small proportion but a significant role, the error in weighing will lead to a decrease in the overall physicochemical properties of the sprue. Utility Model Content

[0005] In order to solve the above problems, the purpose of this utility model is to provide a feeding device with a one-piece immersion nozzle that is structurally reasonable, heavy and precise, easy to mix, and reduces material error.

[0006] According to one aspect of the present invention, a dispensing device with an integrated immersion nozzle is provided, comprising a dispensing tank, and further comprising:

[0007] The processing unit is located at the bottom of the mixing tank and is used to stir and heat the materials.

[0008] The weighing assembly is used to weigh materials. The weighing assembly includes a first frame set on one side of the mixing tank, an electronic scale set on the inner wall of the bottom of the first frame, a weighing frame set on the top of the electronic scale, and a limiting component set at the connection between the weighing frame and the first frame to limit the movement distance of the weighing frame.

[0009] The feeding component is located at the bottom of the first frame and is used to move the position of the weighing frame.

[0010] In some embodiments, the limiting element includes symmetrical grooves formed on the inner walls of both sides of the first frame, and sliders are symmetrically fixedly connected to both sides of the weighing frame, with the sliders interlacing inside the grooves.

[0011] In some embodiments, the processing component includes a first motor fixedly connected to the bottom of the mixing tank, with a stirring shaft provided at the output end of the first motor, and stirring blades symmetrically arranged on both sides of the stirring shaft.

[0012] In some embodiments, a sealing gasket is fitted in the middle of the stirring shaft, and the sealing gasket is inserted into the inner wall of the bottom of the mixing tank.

[0013] In some embodiments, the bottom of the mixing tank has a cavity, and a heating plate is inserted into the cavity.

[0014] In some embodiments, the feeding assembly includes a second frame disposed on one side of the mixing tank, the top of the second frame having a storage groove, the first frame being inserted into the inside of the storage groove, and a telescopic cylinder being disposed at the bottom of the second frame.

[0015] In some embodiments, a second motor is fixedly connected to the back of the second frame, and a rotating shaft is provided at the output end of the second motor. The rotating shaft is inserted and connected to the inner wall of the back of the storage slot and to the bottom of the first frame. A bearing is inserted and connected to the inner wall of the front of the storage slot, and the bearing is sleeved on one end of the rotating shaft. A support block for supporting the first frame is provided at the bottom of the first frame.

[0016] This invention offers several advantages: reasonable structure, high precision, ease of mixing, and reduced material error. Through the design of a first frame, weighing frame, electronic scale, limiting components, and feeding assembly, when raw materials need to be mixed evenly, the required raw materials are first poured into the weighing frame. The electronic scale at the bottom of the weighing frame weighs the raw materials. Once the required weight is obtained, the feeding assembly pours the raw materials from the weighing frame into the mixing tank. During use, the electronic scale automatically weighs the materials, preventing errors in the materials poured into the mixing tank. Attached Figure Description

[0017] Figure 1 This is a front structural diagram of the present utility model.

[0018] Figure 2 This is a front cross-sectional view of the present invention.

[0019] Figure 3 This utility model Figure 2 Enlarged structural diagram of section A.

[0020] Figure 4 This is a partial side sectional view of the present invention.

[0021] In the diagram: 1. Ingredient tank; 2. Processing component; 201. First motor; 202. Cavity; 203. Heating plate; 204. Sealing gasket; 205. Stirring blade; 206. Stirring shaft; 3. Weighing component; 301. Weighing frame; 302. Slide chute; 303. Sliding block; 304. Electronic scale; 305. First frame; 4. Feeding component; 401. Second motor; 402. Rotating shaft; 403. Support block; 404. Telescopic cylinder; 405. Second frame; 406. Storage trough; 407. Bearing. Detailed Implementation

[0022] The present invention will now be described in detail with reference to the embodiments shown in the accompanying drawings. However, it should be noted that these embodiments are not intended to limit the present invention. Equivalent transformations or substitutions in function, method or structure made by those skilled in the art based on these embodiments are all within the protection scope of the present invention.

[0023] In the description of this utility model, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection" and "connection" should be interpreted broadly. For example, they can refer to mechanical or electrical connections, or internal connections between two components. They can be direct connections or indirect connections through an intermediate medium. Those skilled in the art can understand the specific meaning of the terms according to the specific circumstances.

[0024] like Figures 1-4 As shown, the feed dispensing device for an integrated submersible sprue of this utility model includes a feed tank 1, and further includes:

[0025] Processing component 2 is located at the bottom of the mixing tank 1 and is used to stir and heat the materials.

[0026] Weighing component 3 is used to weigh the material. Weighing component 3 includes a first frame 305 disposed on one side of the mixing tank 1. An electronic scale 304 is disposed on the inner wall of the bottom end of the first frame 305. A weighing frame 301 is disposed on the top of the electronic scale 304. A limiting member is disposed at the connection between the weighing frame 301 and the first frame 305 to limit the movement distance of the weighing frame 301.

[0027] The feeding component 4 is located at the bottom of the first frame 305 and is used to move the position of the weighing frame 301.

[0028] It should be noted that the horizontal longitudinal section of the weighing frame 301 is U-shaped, and the electronic scale 304 is fixedly connected to the inner wall of the bottom of the first frame 305 to fix the position of the electronic scale 304. The electronic scale 304 is an existing device used to measure the weight of objects. The limiting component is used to limit the movement direction of the weighing frame 301. When it is necessary to weigh the raw material, the raw material is first placed inside the weighing frame 301, and the weight of the raw material is obtained by the electronic scale 304 set at the bottom of the weighing frame 301.

[0029] Specifically, the limiting components include slid grooves 302 symmetrically formed on the inner walls of both sides of the first frame 305, and sliders 303 symmetrically fixedly connected to both sides of the weighing frame 301, with the sliders 303 inserted into the interior of the slid grooves 302.

[0030] It should be noted that the groove 302 is adapted to the slider 303, allowing the slider 303 to slide inside the groove 302. When the slider 303 moves to fit against the inner wall of the top or bottom of the groove 302, the groove 302 will restrict the slider 303 from moving further, thereby limiting the movement distance of the slider 303. The movement distance of the weighing frame 301 is limited by the slider 303, which limits the movement distance, and the weighing frame 301 can then move.

[0031] Specifically, the processing component 2 includes a first motor 201 fixedly connected to the bottom of the mixing tank 1. The output end of the first motor 201 is provided with a stirring shaft 206. Stirring blades 205 are symmetrically arranged on both sides of the stirring shaft 206. A sealing gasket 204 is sleeved in the middle of the stirring shaft 206. The sealing gasket 204 is inserted and connected to the inner wall of the bottom of the mixing tank 1. A cavity 202 is opened at the bottom of the mixing tank 1. A heating plate 203 is inserted and connected inside the cavity 202.

[0032] It should be noted that the first motor 201 is an existing servo motor. When the raw materials need to be mixed and stirred, the first motor 201 drives the stirring shaft 206 at its output end to rotate, and the stirring shaft 206 drives the stirring fan blades 205 to stir inside the mixing tank 1. A sealing gasket 204 is provided at the connection between the stirring shaft 206 and the mixing tank 1 to seal the connection between the stirring shaft 206 and the mixing tank 1, so as to prevent the raw materials from overflowing from the connection between the two during use. The heating plate 203 is an existing electromagnetic heating plate, which is used to heat the raw materials in the mixing tank 1.

[0033] Specifically, the feeding component 4 includes a second frame 405 disposed on one side of the mixing tank 1. The top of the second frame 405 is provided with a storage groove 406. The first frame 305 is inserted into the inside of the storage groove 406. The bottom of the second frame 405 is provided with a telescopic cylinder 404.

[0034] It should be noted that the telescopic cylinder 404 is fixed on one side of the mixing tank 1. During use, it drives the second frame 405 at its output end to move up and down, and the moving second frame 405 drives the weighing frame 301 at its top to move up and down. This reduces the height of the material to be lifted when it is necessary to add raw materials into the weighing frame 301, thereby reducing the difficulty of feeding.

[0035] Specifically, a second motor 401 is fixedly connected to the back of the second frame 405. A rotating shaft 402 is provided at the output end of the second motor 401. The rotating shaft 402 is inserted into the inner wall of the back of the storage slot 406. The rotating shaft 402 is inserted into the bottom of the first frame 305. A bearing 407 is inserted into the inner wall of the front of the storage slot 406. The bearing 407 is sleeved on one end of the rotating shaft 402. A support block 403 for supporting the first frame 305 is provided at the bottom end of the first frame 305.

[0036] It should be noted that the second motor 401 is an existing servo motor, which is used to drive the rotating shaft 402 at its output end to rotate during use. The rotating shaft 402 is fixedly inserted and connected to the bottom of the first frame 305. During use, the rotating shaft 402 drives the first frame 305 to rotate. When it is necessary to pour the material in the weighing frame 301 into the mixing tank 1, the rotating first frame 305 directly drives the weighing frame 301 to rotate, thereby pouring the material in the weighing frame 301 into the mixing tank 1.

[0037] The above descriptions are merely some embodiments of this utility model. It should be noted that those skilled in the art can make other modifications and improvements without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A batching device for an integrated submersible sprue, comprising a batching tank (1), characterized in that, Also includes: Processing component (2), which is disposed at the bottom of the mixing tank (1), is used to stir and heat the material; Weighing component (3), the weighing component (3) is used to weigh the material, the weighing component (3) includes a first frame (305) disposed on one side of the mixing tank (1), an electronic scale (304) is disposed on the inner wall of the bottom end of the first frame (305), a weighing frame (301) is disposed on the top of the electronic scale (304), and a limiting member is disposed at the connection between the weighing frame (301) and the first frame (305) to limit the movement distance of the weighing frame (301); The feeding component (4) is located at the bottom of the first frame (305) and is used to move the position of the weighing frame (301).

2. The batching device for an integrated submersible sprue according to claim 1, characterized in that, The limiting component includes slid grooves (302) symmetrically formed on the inner walls of both sides of the first frame (305), and sliders (303) are symmetrically fixedly connected to both sides of the weighing frame (301), with the sliders (303) inserted into the interior of the slid grooves (302).

3. The batching device for an integrated submersible sprue according to claim 2, characterized in that, The processing component (2) includes: a first motor (201) fixedly connected to the bottom of the mixing tank (1), the output end of the first motor (201) is provided with a stirring shaft (206), and stirring blades (205) are symmetrically arranged on both sides of the stirring shaft (206).

4. The batching device for an integrated submersible sprue according to claim 3, characterized in that, A sealing gasket (204) is fitted in the middle of the stirring shaft (206), and the sealing gasket (204) is inserted into the inner wall of the bottom of the mixing tank (1).

5. The batching device for an integrated submersible sprue according to claim 1, characterized in that, The bottom of the mixing tank (1) is provided with a cavity (202), and a heating plate (203) is inserted and connected inside the cavity (202).

6. The batching device for an integrated submersible sprue according to claim 1, characterized in that, The feeding assembly (4) includes a second frame (405) disposed on one side of the mixing tank (1), the top of the second frame (405) is provided with a storage groove (406), the first frame (305) is inserted into the inside of the storage groove (406), and the bottom of the second frame (405) is provided with a telescopic cylinder (404).

7. A batching device for an integrated submersible sprue according to claim 6, characterized in that, A second motor (401) is fixedly connected to the back of the second frame (405). A rotating shaft (402) is provided at the output end of the second motor (401). The rotating shaft (402) is inserted into the inner wall of the back of the storage slot (406). The rotating shaft (402) is inserted into the bottom of the first frame (305). A bearing (407) is inserted into the inner wall of the front of the storage slot (406). The bearing (407) is sleeved on one end of the rotating shaft (402). A support block (403) for supporting the first frame (305) is provided at the bottom end of the first frame (305).