Steel drum conveying equidistant automatic distributing mechanism
Through the multi-module design of steel drum conveying isometric automatic material distribution mechanism, the rotation of the rotating rod and the barrier rod is controlled by the servo motor and time relay, the problem that the steel drum conveying mechanism cannot be equally divided is solved, and the precise distribution of the steel drum on the conveyor and the applicability adjustment of the equipment is realized.
Patent Information
- Application Number
- CN202421954953.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The existing steel drum conveying mechanism cannot conveniently realize the equidistant material distribution of steel drums, and cannot adaptively adjust according to the specific size of the conveyor and steel drum, resulting in poor accuracy and insufficient versatility.
The steel drum conveying isometric automatic material distribution mechanism is adopted with a multi-module design. The rotation of the rotating rod and the barrier rod is controlled by a servo motor and time relay. Combined with the adjustment of the telescopic tube and mounting seat, the steel drum is equidistantly distributed on the conveyor, and the height and spacing can be flexibly adjusted.
It realizes the accurate equidistance distribution of steel drums on the conveyor, improves processing efficiency, and is suitable for conveyors and steel drums of different sizes, enhancing the applicability of the equipment.
Smart Images

Figure CN223087013U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel barrel processing, in particular to an equidistant automatic material distribution mechanism for steel barrel conveying. Background Art
[0002] Steel barrels are one of the traditional containers and play an important role in traditional containers. The functions of steel barrels have evolved from temporarily storing the internal items to today's industrial packaging, sales packaging, transportation packaging, etc.; from production to circulation and consumption, they form a continuous flow container and become a means of long-term preservation of internal items. It can be said that steel barrels have brought great changes and progress to human work and life. Steel barrels often need to be conveyed on a conveying mechanism during production or loading to achieve automated production and improve production efficiency.
[0003] However, at present, a steel barrel conveying mechanism often cannot conveniently complete the equidistant material distribution of steel barrels during conveying. The spacing between each group of steel barrels often cannot be accurately controlled, and it is often a supporting facility for the conveyor, with poor versatility and unable to be adaptively adjusted according to the specific dimensions of the conveyor and the steel barrels.
[0004] Therefore, how to provide an equidistant automatic material distribution mechanism for steel barrel conveying is an urgent problem for those skilled in the art. Summary of the Utility Model
[0005] An object of the utility model is to provide an equidistant automatic material distribution mechanism for steel barrel conveying. The utility model can release steel barrels regularly according to time, realize the equidistant distribution of steel barrels on the conveyor, greatly improve the accuracy of steel barrels during processing and conveying, and the equipment adopts a multi-module design, which can be quickly assembled and used, and the height and spacing can be flexibly adjusted during assembly, so as to be applicable to conveyors and steel barrels of different sizes.
[0006] An equidistant automatic material distribution mechanism for steel barrel conveying according to an embodiment of the utility model includes a moving seat, a fixed seat, a mounting seat and a mounting sleeve;
[0007] On both sides of the top of the moving seat, sleeves are symmetrically and fixedly welded. Telescopic tubes are movably installed in the sleeves. The fixed seat is horizontally and fixedly installed on the tops of the two telescopic tubes. The number of mounting seats is two, and the two mounting seats are detachably installed above the fixed seat;
[0008] A servo motor is embedded and installed inside the mounting seat. A rotating rod is rotatably installed on the top of the mounting seat. The rotating shaft at the top of the servo motor is in transmission connection with the rotating rod. The mounting sleeve is sleeved on the rotating rod, and a blocking rod is fixedly welded on the outer wall of the mounting sleeve.
[0009] Further, a number of groups of screw holes are symmetrically formed on the outer walls of both sides of the fixed seat, fixing bolts are inserted into both sides of the mounting seat, and the other ends of the fixing bolts are screwed into the screw holes.
[0010] Further, a locking bolt A is screwed onto the upper part of the outer wall of the sleeve, and the locking bolt A penetrates through the sleeve and tightly abuts against the outer wall of the telescopic tube.
[0011] Further, a locking bolt B is screwed onto the other side of the mounting sleeve, and the locking bolt B penetrates through the mounting sleeve and tightly abuts against the outer wall of the rotating rod.
[0012] Further, self-locking universal wheels for moving are fixedly installed at the four corners of the bottom of the moving seat.
[0013] Further, a time relay for controlling the servo motor is fixedly installed on the side wall of the mounting seat.
[0014] Further, the mounting seat is fixedly installed above the fixed seat through fixing bolts.
[0015] The beneficial effects of the present utility model are as follows:
[0016] The present utility model can regularly control the start of the servo motor through a time relay, thereby driving the rotating rod, the mounting sleeve and the blocking rod to rotate one week, and pausing after each rotation. The blocking rod can release the steel barrel according to the set time, so that the steel barrels can be evenly distributed on the conveyor. Moreover, the telescopic tube can freely stretch and adjust the height of the fixed seat, and the mounting seat can also freely adjust the mounting position on the fixed seat, facilitating the adjustment of the spacing, making it applicable to conveyors of different heights and different widths. And the mounting sleeve can also freely adjust the mounting height on the rotating rod, facilitating the blocking of steel barrels of different heights by the blocking rod, with stronger applicability. Description of the Drawings
[0017] The drawings are used to provide further understanding of the present utility model, and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model, and do not constitute a limitation to the present utility model. In the drawings:
[0018] Figure 1 is the overall structural schematic diagram of an automatic equal-spacing material distribution mechanism for steel barrel conveying proposed by the present utility model;
[0019] Figure 2 is the sectional structural schematic diagram of the mounting seat of an automatic equal-spacing material distribution mechanism for steel barrel conveying proposed by the present utility model.
[0020] In the figure: 1. Moving seat; 2. Sleeve; 3. Locking bolt A; 4. Telescopic tube; 5. Fixed seat; 6. Mounting seat; 7. Fixed bolt; 8. Rotating rod; 9. Mounting sleeve; 10. Blocking rod; 11. Locking bolt B; 12. Threaded hole; 13. Self-locking universal wheel; 14. Servo motor; 15. Time relay. Detailed implementation manner
[0021] Now, the present utility model will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only showing the basic structure of the present utility model in a schematic manner, so they only show the components related to the present utility model.
[0022] Refer to Figure 1 , a steel barrel conveying equidistant automatic feeding mechanism, including a moving seat 1, a fixed seat 5, a mounting seat 6 and a mounting sleeve 9;
[0023] On both sides of the top of the moving seat 1, sleeves 2 are symmetrically and fixedly welded. A telescopic tube 4 is movably installed in the sleeve 2. The fixed seat 5 is horizontally fixedly installed on the tops of two groups of telescopic tubes 4. The number of mounting seats 6 is two groups, and the two groups of mounting seats 6 are detachably installed above the fixed seat 5;
[0024] Among them, a locking bolt A 3 is screwed on the upper outer wall of the sleeve 2. The locking bolt A 3 penetrates through the sleeve 2 and abuts against the outer wall of the telescopic tube 4. The telescopic tube 4 can be fixedly locked in the sleeve 2 through the locking bolt A 3, so that it can maintain stability after the height is adjusted appropriately;
[0025] Secondly, a number of groups of threaded holes 12 are symmetrically opened on the outer walls of both sides of the fixed seat 5. Fixing bolts 7 are inserted into both sides of the mounting seat 6, and the other ends of the fixing bolts 7 are screwed into the threaded holes 12; The mounting seat 6 is fixedly installed above the fixed seat 5 through the fixing bolts 7. The number of threaded holes 12 is multiple groups. Therefore, the mounting seat 6 can be fixed at different positions by screwing the fixing bolts 7 into the corresponding threaded holes 12;
[0026] In addition, self-locking universal wheels 13 for moving are fixedly installed at the four corners of the bottom of the moving seat 1. The self-locking universal wheels 13 can facilitate the movement of the moving seat 1, and can be locked and fixed after moving to a suitable position to prevent shaking;
[0027] In this implementation manner, the mechanism can be moved to the lower part of the steel barrel conveyor belt through the self-locking universal wheels 13. Subsequently, the height of the fixed seat 5 can be adjusted by telescoping the telescopic tube 4, so that the fixed seat 5 can be closely attached to the bottom of the conveyor. Then, the mounting seats 6 can be placed on both sides above the fixed seat 5, and the two groups of mounting seats 6 can adjust the mounting positions according to the width of the conveyor belt to ensure that the two groups of mounting seats 6 can be respectively arranged on both sides of the conveyor belt. After the positions are determined, the fixing bolts 7 can be passed through the mounting seats 6 and then screwed into the threaded holes 12 to complete the fixation.
[0028] Reference Figure 1-2 Inside the mounting base 6, a servo motor 14 is embedded and installed. A rotating rod 8 is rotatably installed on the top of the mounting base 6. The top rotating shaft of the servo motor 14 is in transmission connection with the rotating rod 8. A mounting sleeve 9 is sleeved on the rotating rod 8, and a blocking rod 10 is fixedly welded to the outer wall of the mounting sleeve 9;
[0029] Wherein, a locking bolt B11 is screwed on the other side of the mounting sleeve 9. The locking bolt B11 passes through the mounting sleeve 9 and abuts against the outer wall of the rotating rod 8. The mounting sleeve 9 is fixed at any position on the rotating rod 8 through the locking bolt B11.
[0030] Secondly, a time relay 15 for controlling the servo motor 14 is fixedly installed on the side wall of the mounting base 6. The time relay 15 can set the time according to the conveying speed of the conveyor belt, so as to start the servo motor 14 regularly;
[0031] In this embodiment, the mounting sleeve 9 can be sleeved on the rotating rod 8 and fixed through the locking bolt B11, and the mounting heights of the mounting sleeve 9 and the blocking rod 10 on the rotating rod 8 can be freely adjusted. After installation, the time relay 15 can control the servo motor 14 to start regularly, and each time the servo motor 14 starts, it rotates 360°. The servo motor 14 can drive the rotating rod 8, the mounting sleeve 9 and the blocking rod 10 to rotate. When the two blocking rods 10 face each other, the movement of the steel barrel on the conveyor belt can be blocked. When the two blocking rods 10 rotate backward at the same time, it can be opened. At this time, the steel barrel can continue to be conveyed on the conveyor belt. When the blocking rod 10 rotates to 360°, it can stop. At this time, the blocking rod 10 will maintain the blocking state to block the subsequent steel barrels. When the set time arrives, the blocking rod 10 can rotate 360° again, so as to release the steel barrel and block the steel barrel behind. Therefore, the distance between the steel barrels can be controlled according to the set time, so that the steel barrels can be conveyed equidistantly on the conveyor.
[0032] Working principle: First, the moving seat 1 can be moved to the bottom of the conveyor. Then, the telescopic tube 4 is used to telescopically adjust the height of the fixed seat 5 to match the conveyor. Next, the two mounting seats 6 are respectively installed on both sides of the fixed seat 5, and it is ensured that the mounting seats 6 are arranged on both sides of the conveyor. Subsequently, the mounting sleeve 9 can be fixedly installed at a suitable position on the rotating rod 8. At this time, the conveyor can start to convey the steel barrels. At the same time, the mechanism is powered on, and its time relay 15 can control the start of the servo motor 14 at a fixed time. The servo motor 14 can drive the rotating rod 8, the mounting sleeve 9, and the blocking rod 10 to rotate 360°. When the two blocking rods 10 face each other, they can block the steel barrel. When the two blocking rods 10 rotate backward synchronously, they can be unfolded. At this time, the steel barrel can continue to be conveyed on the conveyor. After rotating one week, the two blocking rods 10 return to the initial relative state and stop. At this time, they can block the subsequent steel barrels, and the interval time for each rotation of the blocking rod 10 is the same. Therefore, equidistant material distribution of multiple groups of steel barrels can be realized, ensuring that the steel barrels in each group can be conveyed equidistantly on the conveyor.
[0033] It can be understood that in the present utility model, the driving mode of the servo motor can be driven by an external power cord, and the control of the servo motor can be controlled by a time relay at a fixed time. Its control principle can be achieved by existing control technologies. The models of the servo motor and the time relay are not limited to a single type and can be types existing in the market suitable for the present utility model.
[0034] The above is only a preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and should be covered within the protection scope of the present utility model.
Claims
1. An equidistant automatic material distribution mechanism for steel barrel transportation, characterized in that, It includes a moving seat (1), a fixed seat (5), a mounting seat (6) and a mounting sleeve (9); On both sides of the top of the moving seat (1), sleeves (2) are symmetrically and fixedly welded. A telescopic tube (4) is movably installed in the sleeve (2). The fixed seat (5) is horizontally and fixedly installed on the tops of two groups of telescopic tubes (4). The number of mounting seats (6) is two groups, and the two groups of mounting seats (6) are detachably installed above the fixed seat (5); A servo motor (14) is embedded and installed inside the mounting seat (6). A rotating rod (8) is rotatably installed on the top of the mounting seat (6). The top rotating shaft of the servo motor (14) is in transmission connection with the rotating rod (8). The mounting sleeve (9) is sleeved on the rotating rod (8), and a blocking rod (10) is fixedly welded on the outer wall of the mounting sleeve (9).
2. The equal-distance automatic material distribution mechanism for steel barrel conveying according to claim 1, characterized in that, A number of groups of screw holes (12) are symmetrically formed on the outer walls of both sides of the fixed seat (5). Fixing bolts (7) are inserted into both sides of the mounting seat (6), and the other ends of the fixing bolts (7) are screwed into the screw holes (12).
3. The equidistant automatic material distribution mechanism for steel barrel transportation according to claim 1, characterized in that, A locking bolt A (3) is screwed onto the upper part of the outer wall of the sleeve (2), and the locking bolt A (3) passes through the sleeve (2) and is in tight contact with the outer wall of the telescopic tube (4).
4. An equidistant automatic material distribution mechanism for steel barrel conveying according to claim 1, characterized in that, A locking bolt B (11) is screwed onto the other side of the mounting sleeve (9), and the locking bolt B (11) passes through the mounting sleeve (9) and is in tight contact with the outer wall of the rotating rod (8).
5. The equal-distance automatic material distribution mechanism for steel barrel transportation according to claim 1, characterized in that, Self-locking universal wheels (13) for moving are fixedly installed at the four corners of the bottom of the moving seat (1).
6. The equidistant automatic material distribution mechanism for steel barrel transportation according to claim 1, characterized in that, A time relay (15) for controlling the servo motor (14) is fixedly installed on the side wall of the mounting seat (6).
7. An equidistant automatic material distribution mechanism for steel barrel conveying according to claim 1, characterized in that, The mounting seat (6) is fixedly installed above the fixed seat (5) through the fixing bolt (7).