Pouring device for multi-wire machining

By designing a casting device for multi-line processing, including a casting assembly, a first frame and a second frame, the problem of automatic continuous casting of multiple rows of production lines in the prior art is solved, which improves the pouring efficiency and reduces the labor intensity and scalding risks of workers.

CN223146000UActive Publication Date: 2025-07-25SHUNPING COUNTY BENCHUANG ELECTROMECHANICAL EQUIPMENT MANUFACTURING CO LTD
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Patent Information

Application Number
CN202421406783.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-19
Publication Date
2025-07-25
Estimated Expiration
2034-06-19

AI Technical Summary

Technical Problem

The existing casting device cannot automatically and continuously pour the molds of multiple rows of production lines, resulting in high labor intensity, low efficiency and risk of scalding for workers.

Method used

A casting device for multi-line processing is designed, including a casting assembly, a first frame and a second frame. The casting assembly is arranged on the seat body, the first frame has a first slide rail, the second frame is slidingly arranged on the first slide rail, and the seat body is slidingly arranged on the second frame body, and the sliding direction of the seat body is orthogonal to the sliding direction of the second frame body. Through this structure, the sliding of the casting on the seat body and the movement of the frame body are realized, and the continuous casting of the molds of multiple rows of production lines is realized.

Benefits of technology

Automatic continuous casting of molds on multiple rows of production lines is achieved, reducing the movement of molds, improving the pouring efficiency, improving the working environment of workers, and reducing the risk of scalding.

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Abstract

The utility model relates to the technical field of pouring devices, and provides a pouring device for multi-line processing, which comprises a pouring assembly, a first frame body and a second frame body, the pouring assembly is used for pouring a mold and is arranged on a seat body, the first frame body is provided with a first sliding rail, the second frame body is arranged on the first sliding rail in a sliding manner, and the second frame body is provided with a second sliding rail. The seat body is arranged on the second frame body in a sliding mode, and the sliding direction of the seat body is orthogonal to the sliding direction of the second frame body. By means of the technical scheme, the problem that automatic continuous pouring cannot be achieved in the prior art is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pouring devices, and specifically, to a pouring device for multi-line processing. Background Art

[0002] Pouring devices are used to pour molten metal into molds. However, generally, they can only pour molds on one production line. In reality, multiple parallel production lines often need to be set up. At this time, general pouring devices cannot meet the production needs, and only workers can hold containers to pour molds one by one. The labor intensity of workers is high, the efficiency is low, and there is also a risk of being scalded. Therefore, we need a pouring device that can automatically and continuously pour molds on multiple rows of parallel production lines to improve the working environment of workers and increase the pouring efficiency. Summary of the Utility Model

[0003] The utility model provides a pouring device for multi-line processing, which solves the problem in the related art that automatic continuous pouring of multiple rows of production lines cannot be achieved.

[0004] The technical solution of the utility model is as follows:

[0005] A pouring device for multi-line processing includes:

[0006] A pouring assembly for performing pouring, which is arranged on a seat body.

[0007] A first frame body having a first sliding rail thereon.

[0008] A second frame body slidably arranged on the first sliding rail, and the seat body is slidably arranged on the second frame body. The sliding direction of the seat body is orthogonal to the sliding direction of the second frame body.

[0009] Optionally, the pouring assembly includes:

[0010] A ladle swingably arranged on the seat body. The ladle has a discharge port and a feed port, and the swinging of the ladle is used to drive the feed port to approach or move away from the mold.

[0011] A cover, one end of which is hinged to the ladle, and the cover rotates along the hinge point to open or close the discharge port.

[0012] Optionally, the discharge port of the ladle is located at one end of the ladle, and the flipping direction of the ladle is parallel to the sliding direction of the seat body.

[0013] Optionally, the cover has an extension part; the pouring assembly further includes:

[0014] A driving member, one end of the driving member is hinged to the seat body, the protruding portion contacts the surface of the driving member, and the driving member swings along the hinge point to drive the ladle to swing.

[0015] Optionally, the driving member has a guiding groove, the protruding portion moves along the driving member to enter or disengage from the guiding groove, and the guiding groove is used to prevent the driving member from disengaging from the protruding portion.

[0016] Optionally, it further includes

[0017] A guiding wheel, the guiding wheel is arranged on the second frame body, and the guiding wheel is used to move on the first slide rail

[0018] A transmission shaft, the transmission shaft is rotatably arranged on the second frame body, and the guiding wheels are located at both ends of the transmission shaft

[0019] A first driving motor, the first driving motor is arranged on the second frame body, and the output end of the first driving motor is connected to the guiding wheel.

[0020] Optionally, it further includes

[0021] A reduction gearbox, the output end of the reduction gearbox is connected to the driving member

[0022] A second driving motor, the second driving motor is arranged on the seat body, and the output end of the second driving motor is connected to the input end of the reduction gearbox.

[0023] The working principle and beneficial effects of the present utility model are as follows:

[0024] In the present utility model, in order to solve the above technical problems, a pouring device for multi-line processing is proposed, which includes a pouring assembly, a first frame body and a second frame body. The pouring assembly is used to pour the mold. The pouring assembly is arranged on the seat body. The first frame body has a first slide rail, the second frame body is slidably arranged on the first slide rail, the seat body is slidably arranged on the second frame body, and the sliding direction of the seat body is orthogonal to the sliding direction of the second frame body.

[0025] During operation, the ladle is on the seat body. The ladle will slide on the second frame body along with the seat body, and the second frame body slides on the first slide rail of the first frame body, so as to pour the mold under the first frame body in sequence, thereby realizing continuous pouring.

[0026] Beneficial effects: By pouring with this device, the movement of the mold during the pouring process can be reduced. By driving the pouring assembly on the seat body through the first frame body and the second frame body, the pouring efficiency can be improved, continuous pouring can be carried out for a multi-row production line, and the pouring effect can be improved. Description of the Drawings

[0027] The following will further illustrate the above characteristics, technical features, advantages and their implementation manners of the present utility model in a clear and understandable manner in combination with the accompanying drawings.

[0028] Figure 1 is a schematic structural view of the present utility model;

[0029] Figure 2 is the present utility model Figure 1 partial enlarged view at A in;

[0030] In the figure: 1, pouring assembly; 2, seat body; 3, first frame body; 4, first slide rail; 5, second frame body; 6, ladle; 7, discharge port; 8, feed port; 9, cover; 10, protruding part; 11, driving member; 12, guide groove; 13, guide wheel; 14, transmission shaft; 15, first driving motor; 16, reduction box; 17, second driving motor. Specific embodiments

[0031] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the specific embodiments of the present utility model will be described below with reference to the accompanying drawings. Obviously, the accompanying drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained according to these drawings, and other embodiments can be obtained.

[0032] For the sake of simplicity of the drawings, only the parts related to the utility model are schematically shown in each drawing, and they do not represent their actual structures as products. In addition, for the sake of simplicity and easy understanding of the drawings, in some drawings, components with the same structure or function are only schematically shown for one of them, or only one of them is marked. In this article, "one" not only means "only this one", but also means "more than one" situation, and "several" includes "two" and "more than two".

[0033] In this article, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0034] In addition, in the description of the present application, the terms "first", "second", etc. are only used for distinguishing descriptions, and cannot be understood as indicating or implying relative importance.

[0035] Embodiment 1

[0036] Reference Figures 1 to 2 , for the first embodiment of the present invention, a pouring device for multi-wire processing is proposed, including,

[0037] Pouring assembly 1, the pouring assembly 1 is used for pouring, and the pouring assembly 1 is arranged on the seat body 2,

[0038] The first frame body 3, the first frame body 3 is provided with a first slide rail 4,

[0039] The second frame body 5, the second frame body 5 is slidably arranged on the first slide rail 4, the seat body 2 is slidably arranged on the second frame body 5, and the sliding direction of the seat body 2 is orthogonal to the sliding direction of the second frame body 5.

[0040] In the present invention, in order to solve the above technical problems, a pouring device for multi-wire processing is proposed, including a pouring assembly, a first frame body and a second frame body. The pouring assembly is used for pouring the mold. The pouring assembly is arranged on the seat body. The first frame body is provided with a first slide rail. The second frame body is slidably arranged on the first slide rail. The seat body is slidably arranged on the second frame body. The sliding direction of the seat body is orthogonal to the sliding direction of the second frame body.

[0041] During operation, the ladle is on the seat body. The ladle will slide on the second frame body along with the seat body, and the second frame body slides on the first slide rail of the first frame body, so as to pour the mold under the first frame body in sequence, thereby realizing continuous pouring.

[0042] Beneficial effects: By pouring with this device, the movement of the mold during the pouring process can be reduced. By driving the pouring assembly on the seat body through the first frame body and the second frame body, the pouring efficiency can be improved, and the pouring effect can also be improved.

[0043] Embodiment 2

[0044] Compared with Embodiment 1, further, the pouring assembly 1 includes,

[0045] The ladle 6, the ladle 6 is swingably arranged on the seat body 2, the ladle 6 has a discharge port 7 and a feed port 8, and the ladle 6 swings to drive the feed port 8 to approach or move away from the mold.

[0046] The ladle cover 9, one end of the ladle cover 9 is hinged to the ladle 6, and the ladle cover 9 rotates along the hinge point to open or close the discharge port 7.

[0047] The ladle cover 9 has an extension part 10; the pouring assembly 1 further includes,

[0048] A driving member 11, one end of the driving member 11 is hinged to the base body 2, the protruding portion 10 is in contact with the surface of the driving member 11, and the driving member 11 swings along the hinge point to drive the ladle 6 to swing.

[0049] The driving member 11 has a guiding groove 12, the protruding portion 10 moves along the driving member 11 to enter or disengage from the guiding groove 12, and the guiding groove 12 is used to prevent the driving member 11 from disengaging from the protruding portion 10.

[0050] Further included is

[0051] A speed reducer 16, the output end of the speed reducer 16 is connected to the driving member 11,

[0052] A second driving motor 17, the second driving motor 17 is arranged on the base body 2, and the output end of the second driving motor 17 is connected to the input end of the speed reducer 16.

[0053] In this embodiment, the pouring assembly includes a ladle, a ladle cover and a driving member. The ladle is swingably arranged on the base body. The ladle has a discharge port and a feed port. The ladle swings to drive the feed port to approach or move away from the mold. One end of the ladle cover is hinged to the ladle. The ladle cover rotates along the hinge point to open or close the discharge port. The ladle cover has a protruding portion. One end of the driving member is hinged to the base body. The protruding portion is in contact with the surface of the driving member. The driving member swings along the hinge point to drive the ladle to swing. The driving member has a guiding groove. The protruding portion moves along the driving member to enter or disengage from the guiding groove. The guiding groove is used to prevent the driving member from disengaging from the protruding portion. During operation, the second driving motor drives the driving member to rotate through the speed reducer. The rotation of the driving member will lift the protruding portion from the bottom, thereby realizing the opening of the ladle cover. When the ladle cover is opened to the vertical position, to prevent the ladle cover from closing, at this time the protruding portion is located in the guiding groove, and the two inner walls of the guiding groove prevent the protruding portion from disengaging from the guiding groove, thereby preventing the ladle cover from closing. When it is necessary to close the ladle cover, similarly, when it is necessary to close the ladle cover, the driving member rotates in the reverse direction, and the protruding portion will be under gravity

[0054] Embodiment 3

[0055] Compared with Embodiments 1-2, further, the discharge port 7 of the ladle 6 is located at one end of the ladle 6, and the turning direction of the ladle 6 is parallel to the sliding direction of the base body 2.

[0056] In this embodiment, because when the ladle is pouring, the ladle will move on the first frame and the second frame. When the discharge port of the ladle is arranged in the moving direction, the pouring liquid in the ladle will shake, resulting in the shaking of the liquid. And with such an arrangement, when the pouring liquid sloshes in the ladle, it will only slosh horizontally and there will be no pouring liquid

[0057] Embodiment 4

[0058] Compared with Embodiments 1-3, further

[0059] A guide wheel 13 is provided on the second frame body 5. The guide wheel 13 is used to move on the first slide rail 4.

[0060] A transmission shaft 14 is rotatably provided on the second frame body 5. The guide wheel 13 is located at both ends of the transmission shaft 14.

[0061] A first driving motor 15 is provided on the second frame body 5.

[0062] In this embodiment, the first driving motor drives the guide wheel to move through the transmission shaft, thereby driving the second frame body to slide on the first frame body, improving the stability of the movement, and also positioning the mold more accurately, improving the casting effect.

[0063] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not limitations. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.

Claims

1. A casting device for multi-line processing, characterized in that, including, a pouring assembly (1) for pouring, which is arranged on a seat body (2), a first frame body (3) with a first sliding rail (4) thereon, a second frame body (5) slidably arranged on the first sliding rail (4), and the seat body (2) is slidably arranged on the second frame body (5), and the sliding direction of the seat body (2) is orthogonal to the sliding direction of the second frame body (5).

2. The pouring device for multi-line processing according to claim 1, characterized in that, The pouring assembly (1) includes, a ladle (6) swingably arranged on the seat body (2), which has a discharge port (7) and a feed port (8), and the ladle (6) swings to drive the feed port (8) to approach or move away from a mold, a ladle cover (9) with one end hinged to the ladle (6), and the ladle cover (9) rotates along the hinge point to open or close the discharge port (7).

3. A pouring device for multi-line processing according to claim 2, characterized in that, The discharge port (7) of the ladle (6) is located at one end of the ladle (6), and the flipping direction of the ladle (6) is parallel to the sliding direction of the seat body (2).

4. A pouring device for multi-line processing according to claim 3, characterized in that, The ladle cover (9) has an extending portion (10); the pouring assembly (1) further includes, a driving member (11) with one end hinged to the seat body (2), the extending portion (10) contacts the surface of the driving member (11), and the driving member (11) swings along the hinge point to drive the ladle (6) to swing.

5. A pouring device for multi-line processing according to claim 4, characterized in that, The driving member (11) has a guiding groove (12), and the extending portion (10) moves along the driving member (11) to enter or disengage from the guiding groove (12), and the guiding groove (12) is used to prevent the driving member (11) from disengaging from the extending portion (10).

6. A pouring device for multi-line processing according to claim 1, characterized in that, It further includes, a guiding wheel (13) arranged on the second frame body (5) for moving on the first sliding rail (4), a transmission shaft (14) rotatably arranged on the second frame body (5), and the guiding wheel (13) is located at both ends of the transmission shaft (14), a first driving motor (15) arranged on the second frame body (5), and the output end of the first driving motor (15) is connected to the guiding wheel (13).

7. A pouring device for multi-line processing according to claim 4, characterized in that, It further includes, a reduction box (16) with its output end connected to the driving member (11), a second driving motor (17) arranged on the seat body (2), and the output end of the second driving motor (17) is connected to the input end of the reduction box (16).