Deslagging assembly for firework effect cylinder
By designing a slag discharge component for a fireworks effect tube and utilizing the cooperation of the base flipping and limiting mechanism, the problem of manual handling of residues after the effect tube is compacted is solved, thus realizing automated production and improving production efficiency.
Patent Information
- Application Number
- CN202521857757.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2035-08-29
AI Technical Summary
Existing firework effect tubes have residues after being pressed, which need to be manually dumped out, making it impossible to achieve continuous automated production, resulting in low production efficiency.
A slag discharge assembly is designed, which includes a base, a first drive device and a limiting mechanism. By driving the base to flip and the limiting mechanism to move, the synchronous flipping of the tube cake and automatic slag discharge are achieved. Combined with the conveyor line and the pushing mechanism, automatic loading and discharging of the tube cake are achieved.
The automatic slag discharge of the fireworks effect tube is realized, the separation of man and machine is achieved, and the production efficiency is improved.
Smart Images

Figure CN223412601U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of fireworks production equipment, and in particular to a slag discharge assembly for a fireworks effect tube. Background Art
[0002] Firework effect tubes include the inner tube and the sound tube. The inner tube produces various effects, such as vibrant colors and various sounds. The sound tube is a specialized sound-generating component within a firework, producing a sharp whistle or whistle through high-speed airflow vibrations. Firework effect tubes are the basic unit of firework production, and a tube cake is made by bundling together multiple firework effect tubes.
[0003] The production of fireworks effect tubes requires a press, which compacts the material inside the tube. Currently, this process leaves residue after compaction, which must be manually discarded later in the production process. This prevents continuous automated production, prevents manual separation between humans and machines, and results in low production efficiency. Utility Model Content
[0004] The technical problem to be solved by the present application is to propose a slag discharge assembly for a firework effect tube in view of the above-mentioned deficiencies in the prior art.
[0005] A slag discharge assembly for a firework effect tube, the slag discharge assembly comprising a base, a first drive device, and a limiting mechanism;
[0006] The base is used to place the cake;
[0007] The first driving device is used to drive the base to flip;
[0008] The limiting mechanism is assembled on the base; the limiting mechanism can perform a first action to impose restrictions on the cake on the base so that the cake can be turned synchronously with the base to achieve slag discharge, or perform a second action to release the cake on the base.
[0009] Optionally, the slag discharge assembly further includes:
[0010] A first conveying line is used to input the cakes into the base;
[0011] A second conveying line is used to output the cakes on the base;
[0012] a first pushing mechanism, for pushing the cakes on the first conveyor line onto the base;
[0013] The second pushing mechanism is used to push the cake tube on the base to the second conveying line.
[0014] Optionally, the first pushing mechanism is located above the first conveying line; the slag discharge assembly further includes a second driving device;
[0015] The second driving device is capable of driving the first pushing mechanism to move upward to a first height position or downward to a second height position;
[0016] When the second driving device drives the first pushing mechanism to move upward to a first height position, the first pushing mechanism is higher than the cake tubes on the first conveyor line, thereby allowing the cake tubes on the first conveyor line to pass under the first pushing mechanism;
[0017] When the second driving device drives the first pushing mechanism to move down to the second height position, the first pushing mechanism is located at the height of the cake cones on the first conveyor line, so that the first pushing mechanism can push the cake cones on the first conveyor line onto the base.
[0018] Optionally, the first pushing mechanism includes:
[0019] First push rack;
[0020] The third driving device is used to drive the first pushing frame to move so as to push the cake cones on the first conveyor line onto the base.
[0021] Optionally, the second pushing mechanism includes:
[0022] Second push rack;
[0023] The fourth driving device is used to drive the second pushing rack to push the cake cones on the base to the second conveying line.
[0024] Optionally, there is a horizontal angle between the first conveying line and the second conveying line;
[0025] The base is provided with a blocking structure, which is used to block the cake pushed in by the first pushing mechanism at a predetermined position.
[0026] Optionally, the first conveying line and the second conveying line are perpendicular to each other.
[0027] Optionally, the limiting mechanism includes:
[0028] Press rack;
[0029] The fifth driving device is used to drive the pressing frame to press down the cake on the base, or to move upward to release the cake on the base.
[0030] Optionally, the pressing frame is provided with a slag discharge notch adapted to the shape of the cylindrical cake; when the pressing frame presses the cylindrical cake on the base, a circle of edges on the pressing frame surrounding the slag discharge notch is pressed on the edge of the cylindrical cake.
[0031] Optionally, the slag discharge assembly further includes a vibrator; the vibrator is used to apply vibration to the base.
[0032] The present application provides a slag discharge assembly for a fireworks effect tube, comprising a base, a first drive device, and a limiting mechanism; the first drive device is used to drive the base to flip; the limiting mechanism is assembled on the base; the limiting mechanism can perform a first action to impose a restriction on the tube cake on the base so that the tube cake can flip synchronously with the base to achieve slag discharge, or perform a second action to release the tube cake on the base. Therefore, the technical effect of the technical solution of the present application is that the slag discharge assembly can automatically discharge slag from the effect tube after it is pressed, eliminating the need for manual discharge operations, and can be used to realize the automated production of effect tubes, achieve human-machine separation, and improve production efficiency.
[0033] In some technical solutions, the slag discharge assembly also includes: a first conveyor line, a second conveyor line, a first pushing mechanism, and a second pushing mechanism. These mechanisms cooperate with each other to realize the automatic loading and discharging of the tube cakes. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 This is one of the structural diagrams of the slag discharge assembly in the embodiment of the present application.
[0035] Figure 2 This is one of the partial structural diagrams of the slag discharge assembly in the embodiment of the present application.
[0036] Figure 3 It is a structural diagram of the limiting mechanism in an embodiment of the present application.
[0037] Figure 4 This is the second structural diagram of the slag discharge assembly in the embodiment of the present application.
[0038] Figure 5 The second schematic diagram of the partial structure of the slag discharge assembly in the embodiment of the present application.
[0039] Figure 6 The third schematic diagram of the partial structure of the slag discharge assembly in the embodiment of the present application.
[0040] Figure numerals: base 10, first drive device 20, limiting mechanism 30, pressing frame 31, slag discharge gap 32, fifth drive device 33, first conveyor line 40, second conveyor line 50, first pushing mechanism 60, first pushing frame 61, third drive device 62, second pushing mechanism 70, second pushing frame 71, fourth drive device 72, second drive device 80, vibrator 90. DETAILED DESCRIPTION
[0041] The following are specific embodiments of the present application and, in conjunction with the accompanying drawings, further description of the technical solutions of the present application is provided, but the present application is not limited to these embodiments. In the following description, specific details such as specific configurations and components are provided solely to assist in a comprehensive understanding of the embodiments of the present application. Therefore, it should be clear to those skilled in the art that various changes and modifications may be made to the embodiments described herein without departing from the scope of protection of the present application. In addition, for clarity and brevity, descriptions of known functions and configurations have been omitted.
[0042] It should be noted that, unless there is any conflict, the embodiments and features in the embodiments of this application can be combined with each other.
[0043] In this application, a firework effect tube includes an inner tube, a flute tube, and the like. A pressing machine is required during the production of the firework effect tube. This press is used to compact the materials within the tube, specifically the mud bottom of the inner tube and the mixed material of the flute tube. However, after compaction, the effect tube leaves residue that needs to be manually discarded in subsequent production steps, preventing continuous automated production and achieving human-machine separation, resulting in low production efficiency. Therefore, this application provides a deslagging assembly for a firework effect tube.
[0044] refer to Figure 1-Figure 3 The slag discharge assembly includes a base 10, a first driving device 20, and a limiting mechanism 30; the base 10 is used to place the cake W; the first driving device 20 is used to drive the base 10 to flip; the limiting mechanism 30 is assembled on the base 10; the limiting mechanism 30 can perform a first action to impose restrictions on the cake W on the base 10 so that the cake W can flip synchronously with the base 10 to achieve slag discharge, or perform a second action to release the cake on the base 10.
[0045] The first driving device 20 is used to generate a rotational motion and can be set as a motor. When the base 10 is in the initial angle position, the cake is placed forward on the base 10; at this time, the limiting mechanism 30 performs a first action to fix the cake to the base 10 so that the cake can rotate synchronously with the base 10. When the first driving device 20 drives the base 10 to flip 180°, the cake on the base 10 can be synchronously flipped to an inverted state, so that the residue in the cake is poured downward. After the residue in the cake is poured downward, the first driving device 20 drives the base 10 to flip 180° again and reach the initial angle position. At this time, the limiting mechanism 30 performs a second action to release the cake on the base 10, remove the restriction on the cake, and allow the cake to be separated from the base 10. At this point, the slag discharge assembly completes one slag discharge of the cake.
[0046] Continue to refer Figure 4-Figure 6The slag discharge assembly further includes a first conveyor line 40, a second conveyor line 50, a first pushing mechanism 60, and a second pushing mechanism 70; wherein the first conveyor line 40 is used to input the cakes into the base 10; the second conveyor line 50 is used to output the cakes from the base 10; the first pushing mechanism 60 is used to push the cakes from the first conveyor line 40 onto the base 10; and the second pushing mechanism 70 is used to push the cakes from the base 10 onto the second conveyor line 50. In some embodiments, both the first conveyor line 40 and the second conveyor line 50 are configured as belt conveyor mechanisms.
[0047] The first conveyor line 40 and the second conveyor line 50 are used to load and unload the cakes onto the base 10, respectively. When the first drive unit 20 rotates the base 10 to its initial angular position, the first pushing mechanism 60 pushes the cakes from the first conveyor line 40 onto the base 10. At this point, the first drive unit 20 and the restraining mechanism 30 cooperate to flip the cakes over and remove any residue, returning them to their initial angular position. After the base 10 returns to its initial angular position and the restraints on the cakes are released, the second pushing mechanism 70 pushes the cakes from the base 10 onto the second conveyor line 50.
[0048] In one embodiment of the present application, the first pushing mechanism 60 is located above the first conveyor line 40, and the slag discharge assembly further includes a second driving device 80. The second driving device 80 can drive the first pushing mechanism 60 to move up to the first height position or down to the second height position.
[0049] When the second driving device 80 drives the first pushing mechanism 60 to move up to the first height position, the first pushing mechanism 60 is higher than the cake cones on the first conveyor line 40 , thereby allowing the cake cones on the first conveyor line 40 to pass under the first pushing mechanism 60 .
[0050] When the second driving device 80 drives the first pushing mechanism 60 to move down to the second height position, the first pushing mechanism 60 is located at the height of the cake cones on the first conveyor line 40 , so that the first pushing mechanism 60 can push the cake cones on the first conveyor line 40 onto the base 10 .
[0051] The first pushing mechanism 60 is arranged above the first conveyor line 40. To avoid obstructing the cones being transported on the first conveyor line 40, the first pushing mechanism 60 is configured as a liftable structure. The second driving device 80 can be configured as a cylinder. Driven by the second driving device 80, the first pushing mechanism 60 can be moved up to a first height position or down to a second height position. When the first pushing mechanism 60 is moved up to the first height position, the cones on the first conveyor line 40 pass under the first pushing mechanism 60; when the first pushing mechanism 60 is moved down to the second height position, the first pushing mechanism 60 can push the cones on the first conveyor line 40 onto the base 10. In this way, the second driving device 80 drives the first pushing mechanism 60 to reciprocate between the first height position and the second height position, allowing the first pushing mechanism 60 to push the cones transported from the first conveyor line 40 one by one onto the base 10.
[0052] In one embodiment of the present application, the first pushing mechanism 60 includes a first pushing frame 61 and a third driving device 62. The third driving device 62 is used to drive the first pushing frame 61 to move, so as to push the cake cones on the first conveyor line 40 to the base 10. The third driving device 62 is a telescopic driving device, which can be specifically set as a cylinder. When the second driving device 80 drives the first pushing mechanism 60 to move down to the second height position, the first pushing frame 61 is located at the height of the cake cones on the first conveyor line 40, and the third driving device 62 can drive the first pushing frame 61 to move forward to push the cake cones to the base 10. Figure 6 In the structure shown, the front portion of the first pushing frame 61 is configured to be V-shaped to match the contour of the cone.
[0053] In one embodiment of the present application, the second pushing mechanism 70 includes a second pushing frame 71 and a fourth driving device 72. The fourth driving device 72 is used to drive the second pushing frame 71 to move so as to push the cake on the base 10 to the second conveyor line 50. Figure 5 The second pushing mechanism 70 is disposed opposite the second conveyor line 50. The fourth drive device 72 is a telescopic drive device, which can be specifically configured as a cylinder. When the fourth drive device 72 extends forward, the second pushing frame 71 can push the cakes on the base 10 onto the second conveyor line 50.
[0054] There is a horizontal angle between the first conveyor line 40 and the second conveyor line 50; a blocking structure is provided on the base 10, which is used to block the cakes pushed in by the first pushing mechanism 60 at a predetermined position. Figure 5 In one embodiment of the present application, the first conveyor line 40 and the second conveyor line 50 are perpendicular to each other.
[0055] In the above solution, the first conveyor line 40, the second conveyor line 50, the first pushing mechanism 60, and the second pushing mechanism 70 cooperate with each other to realize the automatic loading and unloading of the tube cakes.
[0056] In the embodiment of the present application, the limiting mechanism 30 can perform a first action and a second action. When the limiting mechanism 30 performs the first action, the limiting mechanism 30 imposes a restriction on the cake on the base 10 so that the cake can be turned synchronously with the base 10; when the limiting mechanism 30 performs the second action, the limiting mechanism 30 releases the cake on the base 10, removes the restriction on the cake so that the cake W can be separated from the base 10. In one embodiment of the present application, Figure 1-Figure 3 The limiting mechanism 30 includes a pressing frame 31 and a fifth driving device 33. The fifth driving device 33 is used to drive the pressing frame 31 to press down the cake on the base 10, or to move upward to release the cake on the base 10. When the fifth driving device 33 drives the pressing frame 31 to press down the cake on the base 10, the cake is fixed to the base 10 so that it can be turned over synchronously with the base 10; when the fifth driving device 33 drives the pressing frame 31 to move upward to release the cake on the base 10, the cake can be separated from the base 10. Furthermore, the fifth driving device 33 is installed on the base 10 and can be set as a telescopic driving device, for example, a cylinder.
[0057] Furthermore, the pressing frame 31 is provided with a slag discharge notch 32 that matches the shape of the cake. When the pressing frame 31 presses down on the cake on the base 10, the edge of the pressing frame 31 surrounding the slag discharge notch 32 presses on the edge of the cake. When the pressing frame 31 presses down on the cake on the base 10, the pressing frame 31 restrains the cake on the base 10, and when the cake W is turned over to discharge slag, the residue in the cake W can be poured downward through the slag discharge notch 32.
[0058] refer to Figure 2 In one embodiment of the present application, the slag discharge assembly further includes a vibrator 90 for applying vibration to the base 10. During slag discharge, the first drive device 20 drives the base 10 to flip, and the pellets on the base 10 are simultaneously flipped to an inverted position. At this time, the vibrator 90 applies vibration to the base 10, which can promote the downward discharge of residue in the pellets.
[0059] In summary, the present application provides a slag removal assembly for a firework effect tube, comprising a base, a first drive device, and a limiting mechanism; the first drive device is used to drive the base to flip; the limiting mechanism is assembled on the base; the limiting mechanism can perform a first action to impose a restriction on the tube cake on the base so that the tube cake can flip synchronously with the base to achieve slag removal, or perform a second action to release the tube cake from the base. Therefore, the slag removal assembly provided in the present application is used to automatically remove slag from the effect tube after it is pressed, and can be used to realize the automated production of effect tubes, achieve human-machine separation, and improve production efficiency.
[0060] Furthermore, the slag discharge assembly also includes a first conveyor line 40, a second conveyor line 50, a first pushing mechanism 60, and a second pushing mechanism 70; the first conveyor line 40, the second conveyor line 50, the first pushing mechanism 60, and the second pushing mechanism 70 cooperate with each other to realize the automatic loading and discharging of the tube cakes.
[0061] In the above embodiments of the present application, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, please refer to the relevant description of other embodiments.
[0062] In addition, the terms "first" and "second" are used for descriptive purposes only and are not to be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present application, "multiple" means at least two, such as two, three, etc., unless otherwise clearly defined. It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprises" and / or "includes" are used in this specification, they indicate the presence of features, steps, tasks, devices, components and / or combinations thereof.
[0063] The specific embodiments described herein are merely examples of the technical solutions of this application. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them with similar methods without departing from the scope defined by the claims of this application.
Claims
1. A slag discharge assembly for a fireworks effect tube, characterized in that: The slag discharge assembly includes a base, a first driving device, and a limiting mechanism; The base is used to place the cake; The first driving device is used to drive the base to flip; The limiting mechanism is assembled on the base; the limiting mechanism can perform a first action to impose restrictions on the cake on the base so that the cake can be turned synchronously with the base to achieve slag discharge, or perform a second action to release the cake on the base.
2. The slag discharge assembly for a fireworks effect tube according to claim 1, characterized in that: The slag discharge assembly also includes: A first conveying line is used to input the cakes into the base; A second conveying line is used to output the cakes on the base; a first pushing mechanism, for pushing the cakes on the first conveyor line onto the base; The second pushing mechanism is used to push the cake tube on the base to the second conveying line.
3. The slag discharge assembly for a fireworks effect tube according to claim 2, characterized in that: The first pushing mechanism is located above the first conveying line; the slag discharge assembly also includes a second driving device; The second driving device is capable of driving the first pushing mechanism to move upward to a first height position or downward to a second height position; When the second driving device drives the first pushing mechanism to move upward to a first height position, the first pushing mechanism is higher than the cake tubes on the first conveyor line, thereby allowing the cake tubes on the first conveyor line to pass under the first pushing mechanism; When the second driving device drives the first pushing mechanism to move down to the second height position, the first pushing mechanism is located at the height of the cake cones on the first conveyor line, so that the first pushing mechanism can push the cake cones on the first conveyor line onto the base.
4. The slag discharge assembly for a fireworks effect tube according to claim 3, characterized in that: The first pushing mechanism includes: First push rack; The third driving device is used to drive the first pushing frame to move so as to push the cake cones on the first conveyor line onto the base.
5. The slag discharge assembly for a fireworks effect tube according to claim 2, characterized in that: The second pushing mechanism includes: Second push rack; The fourth driving device is used to drive the second pushing rack to push the cake cones on the base to the second conveying line.
6. The slag discharge assembly for a fireworks effect tube according to claim 2, characterized in that: There is a horizontal angle between the first conveying line and the second conveying line; The base is provided with a blocking structure, which is used to block the cake pushed in by the first pushing mechanism at a predetermined position.
7. The slag discharge assembly for a fireworks effect tube according to claim 6, characterized in that: The first conveying line and the second conveying line are perpendicular to each other.
8. The slag discharge assembly for a fireworks effect tube according to claim 1, characterized in that: The limiting mechanisms include: Press rack; The fifth driving device is used to drive the pressing frame to press down the cake on the base, or to move upward to release the cake on the base.
9. The slag discharge assembly for a fireworks effect tube according to claim 8, characterized in that: The pressing frame is provided with a slag discharge notch adapted to the shape of the cylindrical cake; when the pressing frame presses the cylindrical cake on the base, a circle of edges on the pressing frame surrounding the slag discharge notch presses on the edge of the cylindrical cake.
10. The slag discharge assembly for a fireworks effect tube according to claim 1, characterized in that: The slag discharge assembly further includes a vibrator; the vibrator is used to apply vibration to the base.