Automatic box discharging mechanism of aluminum shell cleaning storage box
By designing the automatic box outlet mechanism for cleaning aluminum casing storage boxes, and using the lifting conveying components and the storage box separation and lifting components, automatic box separation and transportation is realized, solving the problem of time-consuming and labor-intensive transmission of storage boxes in the prior art, improving efficiency and reducing labor intensity.
Patent Information
- Application Number
- CN202421787707.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The transmission operation of existing aluminum shell storage boxes is time-consuming and labor-intensive, especially when stacked storage boxes need to be manually picked up and placed on the conveying line, there are problems of greater labor intensity and inefficiency.
An automatic boxing mechanism for cleaning the storage box in aluminum shell is designed, including a lifting conveying component, a storage box conveying line and a storage box separation and lifting component. Through the mutual cooperation of these components, the automatic separation and transportation of stacked storage boxes are realized, reducing manual intervention.
Through the automated box discharge mechanism, the labor intensity of workers is significantly reduced, the conveying efficiency of the storage box is improved, and the entire material discharge conveying process is more time-saving.
Smart Images

Figure CN222934638U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the conveying of an aluminum shell storage box, in particular to an automatic unloading mechanism of an aluminum shell cleaning storage box. Background Art
[0002] The aluminum shell for capacitors is generally made by stamping and needs to be cleaned. When cleaning, it is poured into a cleaning net basket and then transferred to a special cleaning machine for cleaning and drying. After cleaning and drying, the product needs to be poured into a storage box for transportation; because the dumping of materials is completed by machinery, the storage box needs to be placed on the conveyor line, and the storage box is transported to the dumping position in sequence through the conveyor line. However, in order to facilitate the placement and transportation of storage boxes, the storage boxes are usually stacked together to form a certain height. When in use, workers need to take them one by one and then place them on the conveyor line for transportation. Because there is a little friction between adjacent storage boxes when the storage boxes are stacked, it takes a lot of effort to take them out. In addition, the storage boxes are stacked higher, and it is not very convenient to take the upper storage boxes. The speed of taking is also slow, which makes the overall out-of-box transportation operation of the storage boxes time-consuming and laborious. Therefore, the existing technology has the problem of time-consuming and labor-intensive transportation of the storage boxes as a whole. Utility Model Content
[0003] The purpose of the utility model is to provide an automatic unloading mechanism for an aluminum shell cleaning storage box. The utility model has the characteristics of saving time and labor.
[0004] The technical solution of the utility model is as follows: an automatic unloading mechanism for an aluminum shell cleaning storage box comprises a shell that passes through left and right, a lifting and lowering conveying assembly is provided in the left half of the shell, a storage box conveying line is provided in the right half of the shell, storage box separation and lifting assemblies corresponding to the feeding ends of the storage box conveying line are provided on the front and rear inner walls of the shell, and a limiting lever is also provided at the right end of the shell.
[0005] In the automatic unloading mechanism of the aforementioned aluminum shell cleaning storage box, the lifting conveying assembly includes an upper lifting hydraulic cylinder located on the upper part of the front and rear inner walls of the shell, and the output end of the upper lifting hydraulic cylinder is connected to a roller conveyor through a bracket, so as to facilitate feeding and reduce labor intensity.
[0006] In the aforementioned automatic unloading mechanism for the aluminum shell cleaning storage box, the distance between the limit stop bar and the storage box conveying line is greater than the height of a single storage box.
[0007] In the automatic box-out mechanism of the aforementioned aluminum shell cleaning storage box, the storage box separation and lifting assembly includes a front and rear drive cylinder fixed to the outer wall of the shell. A vertical substrate is provided at the output end of the front and rear drive cylinder. Telescopic support rods cooperating with the shell are provided at the upper and lower ends of the vertical substrate; an upper and lower drive hydraulic cylinder is provided at the upper end of the side wall surface of the vertical substrate, and a clamping plate is provided at the lower output end of the upper and lower drive hydraulic cylinder; anti-following baffles are further provided on the side wall surface of the vertical substrate on both sides of the clamping plate.
[0008] Compared with the prior art, the utility model realizes the automatic separation and conveying of stacked cleaning storage boxes through the mutual cooperation of the following structural components: a lifting conveyor assembly is arranged in the left half of the shell, a long-strip storage box conveyor line is arranged in the right half of the shell, and a storage box separation and lifting assembly is arranged on the front and rear side walls in the shell. It can be automatically separated and conveyed without manual handling, thereby effectively reducing the labor intensity of workers, improving the conveying efficiency of the storage box, and saving time and effort in the entire discharging and conveying process of the storage box. In summary, the utility model has the characteristics of saving time and effort. Description of the Drawings
[0009] Figure 1 is a schematic structural view of the utility model;
[0010] Figure 2 is a structural view of the lifting conveyor assembly;
[0011] Figure 3 is a structural view of the storage box separation and lifting assembly.
[0012] The reference numerals in the drawings are: 1 - shell, 2 - lifting conveyor assembly, 3 - storage box conveyor line, 4 - storage box separation and lifting assembly, 5 - limit stop bar, 21 - upper lifting hydraulic cylinder, 22 - bracket, 23 - roller conveyor, 41 - front and rear drive cylinder, 42 - vertical substrate, 43 - telescopic support rod, 44 - upper and lower drive hydraulic cylinder, 45 - clamping plate, 46 - anti-following baffle. Detailed Embodiments
[0013] The following further illustrates the utility model in conjunction with the drawings and embodiments, but it shall not be used as a basis for limiting the utility model.
[0014] Embodiment. The automatic box-out mechanism of the aluminum shell cleaning storage box is configured as Figures 1 - 3 shown, including a shell 1 that penetrates from left to right. A lifting conveyor assembly 2 is provided in the left half of the shell 1, a storage box conveyor line 3 is provided in the right half of the shell 1, a storage box separation and lifting assembly 4 corresponding to the feeding end of the storage box conveyor line 3 is provided on the front and rear inner walls of the shell 1, and a limit stop bar 5 is further provided at the right end of the shell 1.
[0015] The lifting and conveying assembly 2 includes upper lifting hydraulic cylinders 21 located at the upper parts of the front and rear inner walls of the housing 1. The output ends of the upper lifting hydraulic cylinders 21 are connected to a roller conveyor 23 via brackets 22. Thereby, feeding can be facilitated and the labor intensity can be reduced.
[0016] The distance between the limit stop bar 5 and the storage box conveyor line 3 is greater than the height of a single storage box.
[0017] The storage box separating and lifting assembly 4 includes front and rear driving cylinders 41 fixed to the outer wall of the housing 1. The output ends of the front and rear driving cylinders 41 are provided with vertical base plates 42. Telescopic support rods 43 that cooperate with the housing 1 are provided at the upper and lower ends of the vertical base plates 42. At the upper end of the side wall surface of the vertical base plate 42, there is an up and down driving hydraulic cylinder 44. A clamping plate 45 is provided at the lower output end of the up and down driving hydraulic cylinder 44. Anti-following baffle plates 46 are also provided on the side wall surface of the vertical base plate 42 and on both sides of the clamping plate 45.
[0018] Preferably, limit strips that match the width of the storage box are provided on both the roller conveyor and the storage box conveyor line to ensure the accuracy of the placement and conveyance of the storage box and prevent deviation.
[0019] The left end of the storage box conveyor line is located in the right half of the housing, and the right end of the storage box conveyor line is located outside the housing and extends to the corresponding feeding position as required.
[0020] Preferably, the storage box conveyor line can adopt a long-strip roller conveyor.
[0021] Working process of the utility model: In the initial state, the lifting conveyor assembly is at the bottom. Workers push the stacked storage boxes onto the upper surface of the roller conveyor. Then, the bottom lifting hydraulic cylinder works to drive the roller conveyor and the storage boxes to rise until the roller conveyor is flush with the storage box conveyor line. The roller conveyor starts to work, transferring the storage boxes to the feeding end of the storage box conveyor box and blocking and limiting them through the limit stop rod. Subsequently, the two storage box separation and lifting components start working synchronously. The front and rear driving cylinders drive the vertical substrate to move inwards, causing the clamping plate and the anti-following baffle to approach the storage box (the clamping plate is above the bottom storage box and below the storage box adjacent to the upper part of the bottom storage box, and the clamping plate is below the protruding edge of the storage box). Initially, the anti-following baffle and the clamping plate are flush. Then, the up and down driving cylinder starts to work, driving the clamping plate to rise. The clamping plate contacts the upper storage box, thereby driving the storage box above the bottom storage box to rise. The bottom storage box will be blocked by the anti-following baffle to prevent it from rising following, remaining below. When the upper storage box rises to the set height, the bottom storage box and the upper storage box will separate and leave the housing under the conveyance of the storage box conveyor line, being conveyed to the corresponding feeding position. The remaining storage boxes will descend to contact the storage box conveyor line under the action of the up and down driving cylinder. The front and rear driving cylinders reset, causing the clamping plate to return to its original position. Then, the above-mentioned clamping and lifting operation is repeated in a cycle.
Claims
1. The automatic unloading mechanism of the aluminum shell cleaning storage box is characterized by: The utility model comprises a shell (1) which is through-through from left to right, wherein the left half of the shell (1) is provided with a lifting conveying assembly (2), the right half of the shell (1) is provided with a storage box conveying line (3), the front and rear inner walls of the shell (1) are provided with storage box separation lifting assemblies (4) corresponding to the feeding end of the storage box conveying line (3), and the right end of the shell (1) is also provided with a limit stop rod (5).
2. The automatic unloading mechanism of the aluminum shell cleaning storage box according to claim 1 is characterized by: The lifting conveying assembly (2) comprises an upper lifting hydraulic cylinder (21) located at the upper part of the front and rear inner walls of the housing (1), and the output end of the upper lifting hydraulic cylinder (21) is connected to a roller conveyor (23) via a bracket (22).
3. The automatic unloading mechanism of the aluminum shell cleaning storage box according to claim 1 is characterized by: The distance between the limiting stop bar (5) and the storage box conveying line (3) is greater than the height of a single storage box.
4. The automatic unloading mechanism of the aluminum shell cleaning storage box according to claim 1 is characterized in that: The storage box separation and lifting assembly (4) comprises a front and rear driving cylinder (41) fixed to the outer wall of the shell (1); a vertical base plate (42) is provided at the output end of the front and rear driving cylinder (41); and telescopic support rods (43) cooperating with the shell (1) are provided at the upper and lower ends of the vertical base plate (42); an upper and lower driving hydraulic cylinder (44) is provided at the upper end of the side wall surface of the vertical base plate (42); and a clamping plate (45) is provided at the output end below the upper and lower driving hydraulic cylinder (44); and an anti-following baffle (46) is also provided on the side wall surface of the vertical base plate (42) and is located on both sides of the clamping plate (45).