Trolley aluminum barrel receiving temporary storage machine
By introducing components such as support beams, inlet conveyor rollers, lateral moving carts, and lifting brackets into the temporary storage machine, the problem of inconvenient cleaning and maintenance of the all-drum type temporary storage machine is solved, and efficient cleaning and convenient maintenance of the equipment are achieved.
Patent Information
- Application Number
- CN202423088669.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-14
AI Technical Summary
The existing full-roller temporary storage machine has a small gap between the rollers, which makes cleaning and maintenance of the equipment time-consuming and labor-intensive.
A temporary storage machine for aluminum drums using a trolley was designed. It consists of components such as a support beam, a drum conveying roller, a lateral moving trolley, a lifting bracket, and a lifting mechanism. Through the cooperation of the lateral moving trolley and the lifting bracket, the aluminum drums are transferred between the roller and the support beam, increasing the spacing between adjacent support beams and facilitating cleaning and maintenance.
It improves the efficiency of equipment cleaning and maintenance, reduces time and labor intensity, and enhances the maintainability and stability of the equipment.
Smart Images

Figure CN223495342U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of temporary storage machine technology, specifically to a temporary storage machine for aluminum barrels connected to a trolley. Background Technology
[0002] In the pharmaceutical industry, aluminum drums are a common packaging container used to hold pharmaceutical raw materials, intermediates, or finished products. The main function of an aluminum drum temporary storage machine is to provide a temporary storage space for aluminum drums, acting as a buffer between different stages of pharmaceutical production. Existing temporary storage machines are generally all-drum type, with drums covering the entire conveyor surface. Aluminum drums are placed directly on the drums, and the drums are conveyed by their rotation. The spacing between the drums is small, making cleaning and maintenance inconvenient, time-consuming, and labor-intensive. Utility Model Content
[0003] This utility model proposes a trolley-type aluminum drum temporary storage machine, which solves the problems of small spacing between the drums in the related technology of all-drum type temporary storage machines, which makes cleaning the equipment and maintenance very inconvenient, time-consuming and labor-intensive.
[0004] The technical solution of this utility model is as follows: A trolley-mounted aluminum drum temporary storage machine, the key feature of which is: including,
[0005] frame,
[0006] Support beams are mounted on the frame to support aluminum drums. There are multiple support beams, and the distance between two adjacent support beams is less than the bottom diameter of the aluminum drum.
[0007] The inlet conveyor roller is rotatably mounted on the frame and located outside the inlet end of the support beam;
[0008] A transverse moving vehicle, located below the supporting crossbeam and the inlet conveying roller;
[0009] A lifting bracket is provided above the transverse moving vehicle. There are multiple lifting brackets, each located between two adjacent inlet conveying rollers. After the lifting bracket rises, it lifts the aluminum drum, which is used to separate from the inlet conveying roller below it. After the lifting bracket moves between two adjacent support beams and descends, the aluminum drum is used to contact the support beam below it.
[0010] It also includes,
[0011] A lifting mechanism, the lower end of which is mounted on the transverse moving vehicle, and there are multiple lifting mechanisms arranged longitudinally.
[0012] The support base is located above the transverse moving vehicle and below the support beam and the inlet conveying roller. The upper ends of all the lifting mechanisms are connected to the support base, and all the lifting brackets are arranged above the support base.
[0013] The lifting mechanism is an SMC servo electric cylinder.
[0014] It also includes a stop block, which is disposed on the lifting bracket and located on the side of the lifting bracket away from the outlet end of the support beam.
[0015] It also includes a barrel discharge conveyor roller, which is rotatably mounted on the frame and located outside the outlet end of the support beam. The barrel discharge conveyor roller is arranged transversely along its length, and there are multiple barrel discharge conveyor rollers, all of which are arranged longitudinally.
[0016] It also includes,
[0017] A strip is provided on the frame, the strip is arranged transversely along its length, and there are two strips arranged longitudinally.
[0018] A drive shaft is rotatably mounted on the transverse moving vehicle, and the axial direction of the drive shaft is arranged longitudinally. There are multiple drive shafts, and all the drive shafts are arranged transversely.
[0019] The traveling wheels are provided at both ends of the drive shaft. The traveling wheels are located on the outside of the transverse moving vehicle and are connected to the belt drive located below them.
[0020] A mobile drive mechanism is mounted on the transverse moving vehicle, and the output shaft of the mobile drive mechanism is connected to the transmission shaft.
[0021] The traveling wheel is a synchronous belt pulley, and there are two drive shafts. The driving wheel located at the same end of the two drive shafts is connected by the synchronous belt, and the synchronous belt meshes with the belt strip located below it.
[0022] The moving drive mechanism is a servo motor and also includes a speed reducer. The speed reducer is mounted on the transverse moving vehicle. The input shaft of the speed reducer is connected to the moving drive mechanism, and the output shaft of the speed reducer is connected to the transmission shaft.
[0023] The end of the supporting beam has a positioning hole, and also includes,
[0024] A feed end horizontal plate is located below the feed conveyor roller, and the end of the feed end horizontal plate away from the support beam is connected to the frame.
[0025] The feed end vertical plate is disposed on the feed end horizontal plate and located at one end of the feed end horizontal plate near the supporting crossbeam. One end of the feed barrel conveying roller is rotatably connected to the feed end vertical plate, and the other end of the feed barrel conveying roller is rotatably connected to the frame.
[0026] The feed end support plate is disposed on the feed end horizontal plate and / or the feed end vertical plate, and is located between the support beam and the feed end vertical plate;
[0027] The feeding end pin is disposed on the feeding end support plate, the end of the supporting crossbeam overlaps with the feeding end support plate, and the feeding end pin is inserted into the positioning hole.
[0028] It also includes a transverse limiting plate, which is in the same length direction as the supporting beam. The transverse limiting plate is disposed on the upper end face of the supporting beam and is located at the center of the width direction of the supporting beam. The distance between two adjacent transverse limiting plates is greater than or equal to the diameter of the aluminum barrel.
[0029] The working principle and beneficial effects of this utility model are as follows: Support beams are mounted on the frame to support aluminum drums. Multiple support beams are present, with the distance between adjacent support beams being less than the bottom diameter of the aluminum drum. An inlet conveyor roller is rotatably mounted on the frame and located outside the inlet end of the support beams. A transverse moving carriage is located below the support beams and the inlet conveyor roller. Multiple lifting brackets are raised and lowered above the transverse moving carriage. Each lifting bracket is located between two adjacent inlet conveyor rollers. After the lifting bracket rises, it lifts the aluminum drum, separating it from the inlet conveyor roller below it. After the lifting bracket moves between two adjacent support beams and descends, the aluminum drum contacts the support beam below it.
[0030] Initially, the lateral moving trolley is positioned below the inlet conveyor roller. Aluminum drums are first transported onto the inlet conveyor roller, which then stops moving. At this point, a row of aluminum drums is arranged longitudinally above the inlet conveyor roller. Next, the lifting bracket on the lateral moving trolley rises, lifting the aluminum drums and separating them from the inlet conveyor roller. The lateral moving trolley then moves towards the outlet end of the support beam, moving the lifting bracket and the aluminum drums on it synchronously. Upon reaching the designated position, the lateral moving trolley stops moving, and the lifting bracket descends back to its initial position, allowing the aluminum drums to descend and contact the support beam below them. The aluminum drums are then placed on the support beam. The lateral moving trolley then moves in the opposite direction back below the inlet conveyor roller. After returning to its initial position, the lateral moving trolley stops moving, ready to transfer the next batch of aluminum drums transported above the inlet conveyor roller. This process is repeated. The large intervals between adjacent support beams facilitate cleaning and maintenance of the equipment, saving time and labor. Attached Figure Description
[0031] The preferred embodiments will be described below in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages and implementation methods of this utility model.
[0032] Figure 1 This is a structural schematic diagram of the first direction of this utility model.
[0033] Figure 2 This is a schematic diagram of the structure of the second direction of this utility model.
[0034] Figure 3 This is a structural schematic diagram of the third direction of this utility model.
[0035] Figure 4 This is a schematic diagram of the transverse moving vehicle and the lifting bracket in the first direction of this utility model.
[0036] Figure 5 This is a schematic diagram of the transverse moving vehicle and the lifting bracket in the second direction of this utility model.
[0037] Figure 6 This is a schematic diagram of the transverse moving vehicle and the lifting bracket in the third direction of this utility model.
[0038] Figure 7 This is a schematic diagram of the connection structure between the belt strip, drive shaft and traveling wheel in this utility model.
[0039] Figure 8 This is a schematic diagram of the connection structure between the supporting beam, the inlet conveying roller, and the frame in this utility model.
[0040] Figure 9 This is a schematic diagram of the connection structure between a supporting crossbeam, the infeed conveying roller, and the frame in this utility model.
[0041] Figure 10 This is a schematic diagram of the connection structure between the supporting beam, the outflow conveying roller, and the frame in this utility model.
[0042] Figure 11 This is a schematic diagram of the connection structure between a supporting crossbeam, the outflow conveying roller, and the frame in this utility model.
[0043] In the diagram: 1. Frame, 2. Support beam, 3. Inlet conveyor roller, 4. Lateral moving vehicle, 5. Lifting bracket, 6. Lifting mechanism, 7. Support seat, 8. Stop block, 9. Outlet conveyor roller, 10. Belt, 11. Drive shaft, 12. Traveling wheel, 13. Moving drive mechanism, 14. Synchronous belt, 15. Reducer, 16. Positioning hole, 17. Inlet end horizontal plate, 18. Inlet end vertical plate, 19. Inlet end support plate, 20. Inlet end pin, 21. Lateral limit plate, 22. Aluminum drum, 23. Rechargeable battery, 24. Outlet end horizontal plate, 25. Outlet end vertical plate, 26. Outlet end support plate, 27. Outlet end pin, 28. Diffuse reflection photoelectric switch. Detailed Implementation
[0044] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.
[0045] To keep the drawings concise, only the parts relevant to the utility model are shown schematically in each drawing; these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some drawings, only one of the components with the same structure or function is schematically shown, or only one is labeled. In this document, "a" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."
[0046] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0047] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0048] Example, refer to Figures 1-3 As an embodiment of this utility model, a trolley-type aluminum drum temporary storage machine is proposed, including a frame 1, a supporting beam 2, a drum inlet conveying roller 3, a transverse moving trolley 4, and a lifting bracket 5. The supporting beam 2 is set on the frame 1 to carry aluminum drums 22. There are multiple supporting beams 2, and the distance between two adjacent supporting beams 2 is less than the bottom diameter of the aluminum drum 22. The drum inlet conveying roller 3 is rotatably set on the frame 1 and located outside the inlet end of the supporting beam 2. The transverse moving trolley 4 is located below the supporting beam 2 and the drum inlet conveying roller 3. The lifting bracket 5 is raised and lowered above the transverse moving trolley 4. There are multiple lifting brackets 5, and each lifting bracket 5 is located between two adjacent drum inlet conveying rollers 3. After the lifting bracket 5 rises, it lifts the aluminum drum 22, which is used to separate from the drum inlet conveying roller 3 located below it. After the lifting bracket 5 moves between two adjacent supporting beams 2 and falls, the aluminum drum 22 is used to contact the supporting beam 2 located below it.
[0049] like Figure 1As shown, all the support beams 2 are arranged longitudinally, the length direction of the inlet conveyor rollers 3 is arranged transversely, and there are multiple inlet conveyor rollers 3. All the inlet conveyor rollers 3 are arranged longitudinally, and all the lifting brackets 5 are arranged longitudinally. Taking the support beams 2 and the inlet conveyor rollers 3 as examples where the length direction of both the support beams 2 and the inlet conveyor rollers 3 is arranged in the front-back direction, and the inlet conveyor rollers 3 are located behind the support beams 2, the distance between two adjacent support beams 2, that is, the distance between the right side of the left support beam 2 and the left side of the right support beam 2, is less than the bottom diameter of the aluminum drum 22, ensuring that the aluminum drum 22 can be reliably supported. Initially, the transverse moving vehicle 4 is positioned below the inlet conveyor roller 3. The aluminum drums 22 are first conveyed onto the inlet conveyor roller 3, and then the inlet conveyor roller 3 stops moving. At this time, a row of aluminum drums 22 is arranged longitudinally (left-right) above the inlet conveyor roller 3. Then, the lifting bracket 5 on the transverse moving vehicle 4 rises, lifting the aluminum drums 22 and separating them from the inlet conveyor roller 3. Then, the transverse moving vehicle 4 moves towards the outlet end (front end) of the support beam 2, driving the lifting bracket 5 and the aluminum drums 22 on the lifting bracket 5 to move synchronously. After reaching the designated position, the transverse moving vehicle 4 stops moving, and the lifting bracket 5 descends back to the initial position, causing the aluminum drums 22 to descend and contact the support beam 2 below it. The aluminum drums 22 are placed on the support beam 2. Then, the transverse moving vehicle 4 moves in the opposite direction back to below the inlet conveyor roller 3. After returning to the initial position, the transverse moving vehicle 4 stops moving, ready to transfer the next batch of aluminum drums 22 that are conveyed above the inlet conveyor roller 3. This process is repeated. The large spacing between adjacent support beams 2 facilitates cleaning and maintenance of the equipment, saving time and effort. The support beams 2 are detachably connected to the frame 1, allowing them to be removed for easier cleaning and maintenance by operators.
[0050] Furthermore, such as Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, it also includes a lifting mechanism 6 and a support base 7. The lower end of the lifting mechanism 6 is set on the transverse moving vehicle 4. There are multiple lifting mechanisms 6, and all the lifting mechanisms 6 are arranged longitudinally. The support base 7 is located above the transverse moving vehicle 4 and below the support beam 2 and the inlet conveying roller 3. The upper ends of all the lifting mechanisms 6 are connected to the support base 7, and all the lifting brackets 5 are set above the support base 7.
[0051] Multiple lifting brackets 5 arranged in a left-right direction are positioned above the support base 7. When the lifting mechanism 6 moves to raise the support base 7, the support base 7 will drive all the lifting brackets 5 to rise synchronously; when the support base 7 descends, all the lifting brackets 5 will also descend synchronously. The multiple lifting mechanisms 6 arranged in a left-right direction work together on the support base 7 to ensure the stability of the support base 7 during the lifting process, thereby enabling the multiple lifting brackets 5 on the support base 7 to stably lift the aluminum drum 22, improving the stability of the aluminum drum 22 during transportation and reducing the risks of the aluminum drum 22 shaking or tipping. This structural design allows the lifting mechanism 6, the support base 7, and the lifting brackets 5 to form a relatively independent module, facilitating installation, debugging, and maintenance on the transverse moving vehicle 4. At the same time, it also facilitates better coordination with other components such as the drum inlet conveyor roller 3 and the support beam 2, improving the overall integration and maintainability of the equipment.
[0052] Furthermore, the lifting mechanism 6 can be an SMC servo electric cylinder or a pneumatic cylinder. In this utility model, the lifting mechanism 6 is an SMC servo electric cylinder, which operates more smoothly than a pneumatic cylinder.
[0053] Furthermore, such as Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 8 and Figure 9 As shown, it also includes a stop block 8, which is set on the lifting bracket 5 and located on the side of the lifting bracket 5 away from the outlet end of the supporting beam 2. Taking three lifting brackets 5 as a group to support an aluminum drum 22 as an example, the rear ends of the left and right lifting brackets 5 are both equipped with stop blocks 8. During the process of the lifting bracket 5 moving the aluminum drum 22, the stop blocks 8 can limit the movement of the aluminum drum 22, preventing the aluminum drum 22 from tilting towards the inlet conveyor roller 3 during the process of moving from above the inlet conveyor roller 3 to above the supporting beam 2. When it reaches the designated position and falls onto the supporting beam 2, the rows of aluminum drums 22 are arranged relatively neatly.
[0054] Furthermore, such as Figure 1 , Figure 2 , Figure 10 and Figure 11 As shown, it also includes an outlet conveyor roller 9, which is rotatably mounted on the frame 1 and located outside the outlet end of the support beam 2. The length direction of the outlet conveyor roller 9 is arranged transversely, and there are multiple outlet conveyor rollers 9 arranged longitudinally. When it is necessary to transfer the aluminum drum 22 from the support beam 2, the aluminum drum 22 is first transferred to the outlet conveyor roller 9, and then the outlet conveyor roller 9 is rotated to send the aluminum drum 22 away, which can improve the efficiency and convenience of material discharge.
[0055] Furthermore, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, it also includes a belt 10, a drive shaft 11, a traveling wheel 12, and a moving drive mechanism 13. The belt 10 is mounted on the frame 1, and its length direction is arranged laterally. There are two belts 10, and the two belts 10 are arranged longitudinally. The drive shaft 11 is rotatably mounted on the transverse moving carriage 4, and its axial direction is arranged longitudinally. There are multiple drive shafts 11, and all drive shafts 11 are arranged laterally. Traveling wheels 12 are provided at both ends of the drive shaft 11. The traveling wheels 12 are located outside the transverse moving carriage 4 and are connected to the belt 10 located below them. The moving drive mechanism 13 is mounted on the transverse moving carriage 4, and the output shaft of the moving drive mechanism 13 is connected to the drive shaft 11.
[0056] When the moving drive mechanism 13 is working, it drives the transmission shaft 11 to rotate. The transmission shaft 11 drives the traveling wheels 12 at both ends to rotate, and the traveling wheels 12 roll on the belt 10, thereby causing the lateral moving carriage 4 to move laterally (i.e., forward). The arrangement of the two belts 10 on the left and right sides increases the support points of the traveling wheels 12 and the stability of the transmission, making the movement of the lateral moving carriage 4 smoother and more reliable. The arrangement of multiple transmission shafts 11 laterally (i.e., in the front-to-back direction) can better distribute the driving force, ensuring that the force on all parts of the lateral moving carriage 4 is even during movement, further improving the smoothness and accuracy of movement.
[0057] Furthermore, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, the traveling wheel 12 is a synchronous belt pulley, and there are two drive shafts 11, including a synchronous belt 14. The traveling wheels 12 located at the same end of the two drive shafts 11 are connected by the synchronous belt 14, and the synchronous belt 14 meshes with the belt strip 10 located below it. The two synchronous belts 14 on the left and right respectively drive the two front and rear traveling wheels 12 on the left and the two front and rear traveling wheels 12 on the right to rotate along the belt strip 10. The transmission mode of synchronous belt 14 and belt strip 10 has high precision and stable operation. It can also avoid the need for lubrication of gear and belt transmission, which can easily contaminate the clean area environment, and the occurrence of debris generated by direct contact transmission between gears and belts. The lateral moving car 4 does not need to use a drag chain for long-distance operation, which can avoid the dead corners of the drag chain and the difficulty in cleaning.
[0058] Furthermore, such as Figure 6As shown, the moving drive mechanism 13 is a servo motor, and also includes a reducer 15. The reducer 15 is mounted on the transverse moving vehicle 4. The input shaft of the reducer 15 is connected to the moving drive mechanism 13, and the output shaft of the reducer 15 is connected to the transmission shaft 11. The reducer 15 can be used to adjust the moving speed of the transverse moving vehicle 4 to better meet the transfer requirements.
[0059] Furthermore, such as Figure 8 and Figure 9 As shown, the end of the supporting beam 2 has a positioning hole 16, and also includes a feed end horizontal plate 17, a feed end vertical plate 18, a feed end support plate 19, and a feed end pin 20. The feed end horizontal plate 17 is located below the feed conveyor roller 3, and the end of the feed end horizontal plate 17 away from the supporting beam 2 is connected to the frame 1. The feed end vertical plate 18 is disposed on the feed end horizontal plate 17 and is located at the end of the feed end horizontal plate 17 close to the supporting beam 2. One end of the feed conveyor roller 3 is rotatably connected to the feed end vertical plate 18, and the other end of the feed conveyor roller 3 is rotatably connected to the frame 1. The feed end support plate 19 is disposed on the feed end horizontal plate 17 and / or the feed end vertical plate 18, and is located between the supporting beam 2 and the feed end vertical plate 18. The feed end pin 20 is disposed on the feed end support plate 19, the end of the supporting beam 2 overlaps with the feed end support plate 19, and the feed end pin 20 is inserted into the positioning hole 16.
[0060] The feed end horizontal plate 17 is configured one-to-one with the feed conveyor roller 3. The feed end horizontal plate 17 is located below the feed conveyor roller 3, and its rear end is connected to the frame 1, providing an installation base for other components. The feed end vertical plate 18 is installed on the feed end horizontal plate 17 at the end near the support beam 2 (i.e., the front end). The front end of the feed conveyor roller 3 is rotatably connected to the feed end vertical plate 18, and the rear end of the feed conveyor roller 3 is rotatably connected to the frame 1, achieving stable rotation and installation of the feed conveyor roller 3. The feed end support plate 19 is set on the feed end horizontal plate 17 and / or the feed end vertical plate 18 and is located between the support beam 2 and the feed end vertical plate 18, used to support the rear end of the support beam 2. The feed end pin 20 is set on the feed end support plate 19. When the rear end of the support beam 2 overlaps the feed end support plate 19, the feed end pin 20 is inserted into the positioning hole 16 at the rear end of the support beam 2. The feed end support plate 19 supports the end of the support beam 2, limiting its vertical displacement. The feed end pin 20, engaged with the positioning hole 16, positions the support beam 2 horizontally, preventing it from moving laterally or longitudinally. This ensures the support beam 2 maintains a stable position during operation, accurately supporting the aluminum drum 22. This allows the transverse moving carriage 4 to smoothly move the lifting bracket 5 between adjacent feed rollers 3 and adjacent support beams 2, transferring the aluminum drum 22 smoothly from the feed rollers 3 to the support beams 2.
[0061] like Figure 10 and Figure 11 As shown, it also includes a discharge end horizontal plate 24, a discharge end vertical plate 25, a discharge end support plate 26, and a discharge end pin 27. The discharge end horizontal plate 24 is located below the discharge conveyor roller 9, and one end of the discharge end horizontal plate 24 away from the support beam 2 is connected to the frame 1. The discharge end vertical plate 25 is set on the discharge end horizontal plate 24 and is located at the end of the discharge end horizontal plate 24 close to the support beam 2. One end of the discharge conveyor roller 9 is rotatably connected to the discharge end vertical plate 25, and the other end of the discharge conveyor roller 9 is rotatably connected to the frame 1. The discharge end support plate 26 is set on the discharge end horizontal plate 24 and / or the discharge end vertical plate 25 and is located between the support beam 2 and the discharge end vertical plate 25. The feed end pin 19 is set on the discharge end support plate 26, the end of the support beam 2 overlaps with the discharge end support plate 26, and the discharge end pin 27 is inserted into the positioning hole 16.
[0062] The discharge end horizontal plate 24 is correspondingly set with the discharge conveyor roller 9. The discharge end horizontal plate 24 is located below the discharge conveyor roller 9, and its front end is connected to the frame 1, providing an installation base for other components. The discharge end vertical plate 25 is installed on the end of the discharge end horizontal plate 24 near the support beam 2 (i.e., the rear end). The rear end of the discharge conveyor roller 9 is rotatably connected to the discharge end vertical plate 25, and the front end of the discharge conveyor roller 9 is rotatably connected to the frame 1, realizing the stable rotation installation of the discharge conveyor roller 9. The discharge end support plate 26 is set on the discharge end horizontal plate 24 and / or the discharge end vertical plate 25 and is located between the support beam 2 and the discharge end vertical plate 25, used to support the front end of the support beam 2. The discharge end pin 27 is set on the discharge end support plate 26. When the front end of the support beam 2 overlaps the discharge end support plate 26, the discharge end pin 27 is inserted into the positioning hole 16 at the front end of the support beam 2. The discharge end support plate 26 supports the end of the support beam 2, limiting its vertical displacement. The insertion and engagement of the discharge end pin 27 with the positioning hole 16 positions the support beam 2 horizontally, preventing it from moving laterally or longitudinally, thus ensuring its stable position during operation and accurate support of the aluminum drum 22. The support beam 2, through the insertion and engagement of the feed end pin 20, discharge end pin 27, and positioning hole 16, achieves a detachable connection with the frame 1. This simple structure allows for convenient and quick assembly and disassembly, saving time and effort. The transverse moving carriage 4 can then smoothly move the lifting bracket 5 back and forth between adjacent support beams 2 and adjacent discharge conveyor rollers 9, transferring the aluminum drum 22 smoothly from the support beams 2 to the discharge conveyor rollers 9.
[0063] Furthermore, such as Figure 1 and Figure 2As shown, it also includes a transverse limiting plate 21. The transverse limiting plate 21 is in the same length direction as the supporting beam 2. The transverse limiting plate 21 is set on the upper end face of the supporting beam 2 and is located at the center of the width direction of the supporting beam 2. The distance between two adjacent transverse limiting plates 21 is greater than or equal to the diameter of the aluminum barrel 22. The transverse limiting plate 21 is located at the center of the upper end face of the supporting beam 2 in the left and right direction. The two adjacent transverse limiting plates 21 cooperate to limit the aluminum barrel 22. This ensures that the aluminum barrel 22 can be placed smoothly above the part of the left and right supporting beams 2 located between the two transverse limiting plates 21. It also restricts the movement of the aluminum barrel 22 in the left and right direction to a certain extent, preventing the aluminum barrel 22 from excessively shifting in the left and right direction on the supporting beam 2 due to accidental situations (such as equipment vibration, slight collision, etc.), thereby maintaining the relatively stable position of the aluminum barrel 22 on the supporting beam 2. To prevent the aluminum barrel 22 from directly contacting the transverse limiting plate 21 and being worn during movement, the distance between two adjacent transverse limiting plates 21 is made larger than the diameter of the aluminum barrel 22, and a gap is left between the aluminum barrel 22 and the transverse limiting plate 21.
[0064] Furthermore, such as Figure 6 As shown, it also includes a rechargeable battery 23, which is mounted on the transverse moving vehicle 4 and electrically connected to the moving drive mechanism 13. The rechargeable battery 23 can provide power to the moving drive mechanism 13, enabling the transverse moving vehicle 4 to operate independently without being limited by an external power source. This improves the flexibility and mobility of the equipment, making it convenient for use in different working environments.
[0065] Furthermore, it also includes a wireless charging transmitter module and a wireless charging receiver module. The wireless charging transmitter module is mounted on the rack 1; the wireless charging receiver module is mounted on the transverse moving vehicle 4 and is electrically connected to the rechargeable battery 23. When the rechargeable battery 23 needs charging, the transverse moving vehicle 4 moves to the charging position, and the wireless charging transmitter module and the wireless charging receiver module cooperate to charge the rechargeable battery 23. Equipped with a battery management system, the rechargeable battery 23, the battery management system, and the mobile drive mechanism 13 are electrically connected. When the rechargeable battery 23 needs charging, the battery management system activates the mobile drive mechanism 13, which causes the transverse moving vehicle 4 to automatically move to the charging position for charging, saving more time and effort.
[0066] Furthermore, such as Figure 1 , Figure 2 and Figure 8As shown, it also includes diffuse reflection photoelectric switches 28, which are set at one end of the frame 1 and located on the side of the inlet conveyor roller 3 away from the supporting beam 2. Each diffuse reflection photoelectric switch 28 is located between two adjacent supporting beams 2. The diffuse reflection photoelectric switches 28 can detect the movement of the aluminum drums 22 on the inlet conveyor roller 3. Taking five diffuse reflection photoelectric switches 28 set on the frame 1 along the left and right direction as an example, and the aluminum drums 22 enter from the entrance side (i.e., the left side) of the inlet conveyor roller 3, as the inlet conveyor roller 3 rotates, the five aluminum drums 22 move to the other side (i.e., the right side) in sequence. When all five aluminum drums 22 arranged along the left and right direction have moved into place, the diffuse reflection photoelectric switches 28 can generate a signal to the control system. The control system makes the inlet conveyor roller 3 stop rotating, which is an automated control that saves more time and effort. Similarly, a set of diffuse reflection photoelectric switches 28 is also provided at the other end of the frame 1. The set of diffuse reflection photoelectric switches 28 is located on the side of the out-of-bucket conveying roller 9 away from the supporting beam 2. The set of diffuse reflection photoelectric switches 28 can detect the movement of the aluminum bucket 22 on the out-of-bucket conveying roller 9.
[0067] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A trolley-mounted aluminum drum temporary storage machine, characterized in that: include, Rack (1), Support beams (2) are provided on the frame (1) for supporting aluminum barrels (22). There are multiple support beams (2), and the distance between two adjacent support beams (2) is less than the bottom diameter of the aluminum barrel (22). The inlet conveyor roller (3) is rotatably mounted on the frame (1) and located outside the inlet end of the support beam (2); A transverse moving vehicle (4) is located below the supporting crossbeam (2) and the inlet conveying roller (3); The lifting bracket (5) is raised and lowered above the transverse moving vehicle (4). There are multiple lifting brackets (5). Each lifting bracket (5) is located between two adjacent inlet conveying rollers (3). After the lifting bracket (5) rises, it lifts the aluminum bucket (22). The aluminum bucket (22) is used to separate from the inlet conveying roller (3) located below it. After the lifting bracket (5) moves between two adjacent support beams (2) and descends, the aluminum bucket (22) is used to contact the support beam (2) located below it.
2. The trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: It also includes, A lifting mechanism (6) is provided at its lower end on the transverse moving vehicle (4). There are multiple lifting mechanisms (6), and all of the lifting mechanisms (6) are arranged longitudinally. The support base (7) is located above the transverse moving vehicle (4) and below the support beam (2) and the inlet conveying roller (3). The upper ends of all the lifting mechanisms (6) are connected to the support base (7), and all the lifting brackets (5) are located above the support base (7).
3. The trolley-mounted aluminum drum temporary storage machine according to claim 2, characterized in that: The lifting mechanism (6) is an SMC servo electric cylinder.
4. The trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: It also includes a stop block (8), which is disposed on the lifting bracket (5) and located on the side of the lifting bracket (5) away from the outlet end of the support beam (2).
5. The trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: It also includes a barrel discharge conveyor roller (9), which is rotatably mounted on the frame (1) and located outside the outlet end of the support beam (2). The barrel discharge conveyor roller (9) is arranged in the transverse direction along its length. There are multiple barrel discharge conveyor rollers (9), and all of the barrel discharge conveyor rollers (9) are arranged in the longitudinal direction.
6. The trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: It also includes, A strip (10) is provided on the frame (1). The length direction of the strip (10) is arranged in the transverse direction. There are two strips (10), and the two strips (10) are arranged in the longitudinal direction. A drive shaft (11) is rotatably mounted on the transverse moving vehicle (4), and the axial direction of the drive shaft (11) is arranged longitudinally. There are multiple drive shafts (11), and all the drive shafts (11) are arranged transversely. The traveling wheels (12) are provided at both ends of the drive shaft (11). The traveling wheels (12) are located outside the transverse moving vehicle (4) and are connected to the belt (10) located below it. A mobile drive mechanism (13) is mounted on the transverse moving vehicle (4), and the output shaft of the mobile drive mechanism (13) is connected to the transmission shaft (11).
7. The trolley-mounted aluminum drum temporary storage machine according to claim 6, characterized in that: The walking wheel (12) is a synchronous belt pulley, and there are two drive shafts (11). It also includes a synchronous belt (14). The walking wheel (12) located at the same end of the two drive shafts (11) is connected by the synchronous belt (14), and the synchronous belt (14) meshes with the belt strip (10) located below it.
8. A trolley-mounted aluminum drum temporary storage machine according to claim 6, characterized in that: The mobile drive mechanism (13) is a servo motor and also includes a reducer (15). The reducer (15) is mounted on the transverse moving vehicle (4). The input shaft of the reducer (15) is connected to the mobile drive mechanism (13), and the output shaft of the reducer (15) is connected to the transmission shaft (11).
9. A trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: The end of the supporting beam (2) has a positioning hole (16), and also includes, Feed end horizontal plate (17), the feed end horizontal plate (17) is located below the feed conveyor roller (3), and the end of the feed end horizontal plate (17) away from the support beam (2) is connected to the frame (1); Feeding end vertical plate (18), the feeding end vertical plate (18) is set on the feeding end horizontal plate (17) and located at one end of the feeding end horizontal plate (17) near the supporting beam (2), one end of the barrel conveying roller (3) is rotatably connected to the feeding end vertical plate (18), and the other end of the barrel conveying roller (3) is rotatably connected to the frame (1); Feed end support plate (19), the feed end support plate (19) is disposed on the feed end horizontal plate (17) and / or the feed end vertical plate (18), and is located between the support beam (2) and the feed end vertical plate (18); Feed end pin (20), the feed end pin (20) is set on the feed end support plate (19), the end of the support beam (2) overlaps with the feed end support plate (19), and the feed end pin (20) is inserted into the positioning hole (16).
10. A trolley-mounted aluminum drum temporary storage machine according to claim 1, characterized in that: It also includes a transverse limiting plate (21), which is in the same length direction as the support beam (2). The transverse limiting plate (21) is set on the upper end face of the support beam (2) and located at the center of the width direction of the support beam (2). The distance between two adjacent transverse limiting plates (21) is greater than or equal to the diameter of the aluminum barrel (22).