Slewing device in continuous elevator
By designing a rotary device with synchronous belt circulating conveying in a continuous lift, the problem that the pallets in the reciprocating lift cannot achieve continuous delivery is solved, and the conveying efficiency of the lithium battery cell is significantly improved.
Patent Information
- Application Number
- CN202420782537.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-04-16
AI Technical Summary
When the existing reciprocating hoists convey lithium battery cells, there is a problem that the pallet cannot achieve continuous delivery, resulting in low delivery efficiency.
A rotary device in a continuous lift is designed, and the cyclic conveying is carried out using a synchronous belt, so that the pallet can be delivered continuously and avoid waiting for pickup.
Through the synchronous belt cyclic conveying, the continuous delivery of pallets is achieved, which improves the conveying efficiency without limiting the number of pallets, further improving efficiency.
Smart Images

Figure CN222876864U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a continuous elevator used in the lithium battery industry, in particular to a rotary device in the continuous elevator. Background Art
[0002] As people's environmental awareness increases, more customers choose to buy electric vehicles as a means of transportation. Therefore, the demand for lithium battery cells is increasing. How to improve the efficiency of their production process has become an urgent problem that needs to be solved.
[0003] At present, many enterprises use reciprocating elevators to transport lithium battery cells upward. The working principle is that the pallets with lithium battery cells at the low pick-up position enter the reciprocating elevator, and then the reciprocating elevator rises to the high delivery position to send out the pallets, and then the empty reciprocating elevator returns to the low pick-up position to receive the pallets, and the lithium battery cells are transported upward in this way. The disadvantages of this transportation method are: 1. During the period of time when the reciprocating elevator is transporting from the low position to the high position and returning to the low position, the pallets with lithium battery cells are waiting at the pick-up position, that is, the continuous delivery of pallets cannot be achieved, which seriously affects the transportation efficiency; 2. The number of pallets entering the reciprocating elevator is limited, which also seriously affects the transportation efficiency. Summary of the invention
[0004] The problem to be solved by the utility model is to provide a slewing device in a continuous lift, which performs cyclic conveying through a synchronous belt, so that the pallets placed on the transmission components can be delivered continuously without any waiting time for picking up the goods, thereby greatly improving the conveying efficiency.
[0005] The utility model discloses a slewing device in a continuous lift, which comprises two left and right profile frames, two left and right synchronous belts, an upper active component, a lower driven component and a middle transmission component; the active component is connected to the upper parts of the left and right profile frames, the driven component is connected to the lower parts of the left and right profile frames, the left and right synchronous belts connect the active component and the driven component, the transmission component is fixed on the synchronous belts, and the tray is placed on the transmission component.
[0006] Furthermore, the active component includes a bevel gear active shaft and two left and right synchronous wheels, and the driven component includes a driven shaft and two left and right synchronous wheels; the left end of the active shaft passes through the left profile frame and is covered with a bevel gear, and the right end is connected to the inner hole of the right profile frame, and the bevel gear is connected to the motor; a synchronous wheel is arranged on the inner side of each of the left and right profile frames, and the synchronous wheel is sleeved on the active shaft; the left and right ends of the driven shaft are connected to the inner holes of the left and right profile frames, and a synchronous wheel is arranged on the inner side of each of the left and right profile frames, and the synchronous wheel is sleeved on the driven shaft; the left and right synchronous belts are respectively connected to the upper and lower synchronous wheels on the left and right sides.
[0007] Furthermore, the transmission component includes multiple transmission units, which are arranged up and down along the length direction of the synchronous belt. Each transmission unit includes an upper and lower synchronous belt beam and a plurality of rollers. The left and right ends of the upper and lower synchronous belt beams are connected to the left and right synchronous belts, and the multiple rollers are evenly arranged along the length direction of the synchronous belt beam.
[0008] Furthermore, each transmission unit also includes upper and lower guide bars, and the guide bars are arranged on the outer side of the synchronous belt rotating beam.
[0009] Furthermore, the roller is a rubber-coated bearing wheel.
[0010] Furthermore, the slewing device also includes a driven wheel bearing seat, a driving wheel bearing seat, a deep groove ball bearing, and a round nut; a driving wheel bearing seat is respectively arranged on the outer side of the upper part of the left and right profile frames, the deep groove ball bearing is located in the driving wheel bearing seat, and the driving shaft cooperates with the deep groove ball bearing and is locked by a round nut; a driven wheel bearing seat is respectively arranged on the outer side of the lower part of the left and right profile frames, the deep groove ball bearing is located in the driven wheel bearing seat, and the driven shaft cooperates with the deep groove ball bearing and is locked by a round nut.
[0011] Furthermore, the slewing device also includes two tensioning seats, which are connected to the driven wheel bearing seats.
[0012] The advantages of the rotary device of the utility model are: first, due to the circular conveying of the synchronous belt, the pallets placed on the transmission components can be delivered continuously without any waiting time for picking up the goods, thereby greatly improving the conveying efficiency; second, due to the circular conveying of the synchronous belt, the conveying number of pallets does not need to be limited, thereby greatly improving the conveying efficiency; third, the rotary device, as the core component of the continuous elevator, improves the conveying efficiency of the elevator.
[0013] The rotary device of the utility model changes the original material taking method, improves the conveying efficiency of the lithium battery cell tray, saves the idling time of the reciprocating elevator, and is particularly suitable for the field of high-speed conveying lines for lithium battery trays. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 The three-dimensional rotating device of the utility model Figure 1 ;
[0015] Figure 2 The three-dimensional rotating device of the utility model Figure 2 ;
[0016] Figure 3 It is a front sectional view of the rotary device of the utility model. DETAILED DESCRIPTION
[0017] Example 1
[0018] from Figure 1 , Figure 2 , Figure 3 It can be seen that the rotary device in the continuous elevator of the utility model includes two left and right profile frames 9, two left and right synchronous belts 1, an active component on the top, a driven component on the bottom, and a transmission component in the middle; the active component is connected to the upper part of the left and right profile frames 9, the driven component is connected to the lower part of the left and right profile frames 9, the left and right synchronous belts 1 connect the active component and the driven component, the transmission component is fixed on the synchronous belt 1, and the pallet is placed on the transmission component.
[0019] When the active component is working, it drives the driven component to work through the synchronous belt 1, so that the active component and the driven component jointly drive the synchronous belt 1 to rotate, and then the transmission component rotates to transport the pallet placed on the transmission component: because the synchronous belt 1 performs a circular motion, the pallet can be transported continuously, which does not delay time and does not limit the quantity, thereby greatly improving the transportation efficiency.
[0020] Example 2
[0021] from Figure 1 , Figure 2 , Figure 3 It can be seen that the rotary device in the continuous elevator of the utility model: the active components include a bevel gear 11, a driving shaft 12, and two left and right synchronous wheels 5, and the driven components include a driven shaft 6 and two left and right synchronous wheels 5; the left end of the active shaft 12 passes through the left profile frame 9 and is covered with a bevel gear 11, and the right end is connected to the inner hole of the right profile frame 9, and the bevel gear 11 is connected to the motor; a synchronous wheel 5 is respectively arranged on the inner side of the left and right profile frames 9, and the synchronous wheel 5 is sleeved on the active shaft 12; the left and right ends of the driven shaft 6 are connected to the inner holes of the left and right profile frames 9, and a synchronous wheel 5 is respectively arranged on the inner side of the left and right profile frames 9, and the synchronous wheel 5 is sleeved on the driven shaft 6; the left and right synchronous belts 1 are respectively connected to the upper and lower synchronous wheels 5 on the left and right sides.
[0022] The driving shaft 12 and the driven shaft 6 are connected through the synchronous belt 1 on the synchronous wheel 5. The motor drives the bevel gear 11, and the bevel gear 11 drives the driving shaft 12 to rotate, so that the whole device performs a circular motion to achieve continuous transportation of the pallet.
[0023] Example 3
[0024] from Figure 1 , Figure 2 , Figure 3 It can be seen that the rotating device in the continuous elevator of the utility model: the transmission component includes multiple transmission units, the transmission units are arranged up and down along the length direction of the synchronous belt 1, each transmission unit includes upper and lower synchronous belt rotating beams 4, and multiple rollers 3, the left and right ends of the upper and lower synchronous belt rotating beams 4 are connected to the left and right synchronous belts 1, and the multiple rollers 3 are evenly arranged along the length direction of the synchronous belt rotating beam 4.
[0025] Multiple rollers 3 are installed on the synchronous belt beam 4 with the same spacing. When the battery pallet comes to the side of the rotating device along the direction perpendicular to the synchronous belt 1, the battery pallet is sent to the rotating device through the multiple rollers 3 on the upper and lower synchronous belt beams 4, and then transported upward through the synchronous belt 1, thereby realizing continuous transportation of the pallet.
[0026] Example 4
[0027] from Figure 1 , Figure 2 , Figure 3 It can be known that the rotary device in the continuous elevator of the utility model: each transmission unit also includes an upper and lower guide bar 2, and the guide bar 2 is arranged on the outer side of the synchronous belt rotating beam 4.
[0028] When the roller 3 delivers the battery tray to the rotary device, the upper and lower guide bars 2 are used to limit the position of the battery tray, which can effectively ensure that the tray accurately enters the rotary device.
[0029] Example 5
[0030] from Figure 1 , Figure 2 , Figure 3 It can be seen that the rotary device in the continuous elevator of the utility model: the roller 3 is a rubber-coated bearing wheel.
[0031] The rubber-coated bearing wheel can reduce the friction and dust generated when it contacts the bottom of the battery tray, and can effectively reduce shock, making the operation smoother and quieter.
[0032] Example 6
[0033] from Figure 1 , Figure 2 , Figure 3 It can be seen that the slewing device in the continuous elevator of the utility model: the slewing device also includes a driven wheel bearing seat 7, a driving wheel bearing seat 10, a deep groove ball bearing 4, and a round nut 13; a driving wheel bearing seat 10 is respectively arranged on the outer side of the upper part of the left and right profile frames 9, the deep groove ball bearing 4 is located in the driving wheel bearing seat 10, and the driving shaft 12 cooperates with the deep groove ball bearing 4 and is locked by the round nut 13; a driven wheel bearing seat 7 is respectively arranged on the outer side of the lower part of the left and right profile frames 9, the deep groove ball bearing 4 is located in the driven wheel bearing seat 7, and the driven shaft 6 cooperates with the deep groove ball bearing 4 and is locked by the round nut 13.
[0034] The driving wheel bearing seat 10 and the driven wheel bearing seat 7 fix the driving shaft 12 and the driven shaft 6. The driving shaft 12 and the driven shaft 6 are rotated through the deep groove ball bearing 4, thereby realizing the cyclic rotation of the rotary device.
[0035] Example 7
[0036] from Figure 1 , Figure 2 , Figure 3 It can be known that the slewing device in the continuous elevator of the utility model: the slewing device also includes two tensioning seats 8, and the tensioning seats 8 are connected to the driven wheel bearing seat 7.
[0037] By adjusting the position between the tensioning seat 8 and the driven wheel bearing seat 7, the position of the driven wheel bearing seat 7 can be fine-tuned, thereby achieving tensioning of the synchronous belt 1, ensuring the reliability of transmission, and avoiding long-term operation causing the synchronous belt to loosen and affect the operation of the rotating device.
[0038] The working principle of the rotary device of the utility model is: the motor drives the bevel gear 11, the bevel gear 11 drives the driving shaft 12 to rotate, so that the synchronous belt 1 drives the moving parts above to perform a circular motion, so that when the tray with battery cells comes to the side of the rotary device along the direction perpendicular to the synchronous belt 1, it is first sent to the rotary device through multiple rollers 3 on the upper and lower synchronous belt beams 4, and then realized by the synchronous belt 1 to realize continuous circular transportation upward.
[0039] The advantages of the rotary device of the utility model are: 1. Due to the synchronous belt cyclic conveying, the pallets placed on the transmission components can deliver goods continuously without any waiting time for picking up the goods, thereby greatly improving the conveying efficiency; 2. Due to the synchronous belt cyclic conveying, the conveying quantity of the pallets does not need to be limited, thereby greatly improving the conveying efficiency; 3. As the core component of the continuous elevator, the rotary device improves the conveying efficiency of the elevator. The rotary device of the utility model changes the original material collection method, improves the conveying efficiency of the lithium battery cell pallet, saves the idling time of the reciprocating elevator, and is particularly suitable for the field of high-speed conveyor lines for lithium battery pallets.
Claims
1. A rotary device in a continuous lift, characterized in that: It comprises two left and right profile frames (9), two left and right synchronous belts (1), an upper active component, a lower driven component, and a transmission component in the middle; the active component is connected to the upper parts of the left and right profile frames (9), the driven component is connected to the lower parts of the left and right profile frames (9), the left and right synchronous belts (1) connect the active component and the driven component, the transmission component is fixed on the synchronous belts (1), and the tray is placed on the transmission component.
2. The rotary device according to claim 1, characterized in that: The driving component comprises a bevel gear (11), a driving shaft (12), and two left and right synchronous wheels (5); the driven component comprises a driven shaft (6), and two left and right synchronous wheels (5); the left end of the driving shaft (12) passes through the left profile frame (9), and is covered with a bevel gear (11); the right end is connected to the inner hole of the right profile frame (9), and the bevel gear (11) is connected to the motor; a synchronous wheel (5) is respectively arranged on the inner side of the left and right profile frames (9), and the synchronous wheel (5) is sleeved on the driving shaft (12); the left and right ends of the driven shaft (6) are connected to the inner holes of the left and right profile frames (9), and a synchronous wheel (5) is respectively arranged on the inner side of the left and right profile frames (9), and the synchronous wheel (5) is sleeved on the driven shaft (6); and the left and right synchronous belts (1) are respectively connected to the upper and lower synchronous wheels (5) on the left and right sides.
3. The rotary device according to claim 1, characterized in that: The transmission component comprises a plurality of transmission units, which are arranged vertically along the length direction of a synchronous belt (1), and each transmission unit comprises an upper and lower synchronous belt rotating beam (4) and a plurality of rollers (3). The left and right ends of the upper and lower synchronous belt rotating beams (4) are connected to the left and right synchronous belts (1), and the plurality of rollers (3) are evenly arranged along the length direction of the synchronous belt rotating beam (4).
4. The rotary device according to claim 3, characterized in that: Each transmission unit also includes upper and lower guide bars (2), and the guide bars (2) are arranged on the outside of the synchronous belt rotating beam (4).
5. The rotary device according to claim 3, characterized in that: The roller (3) is a rubber-coated bearing wheel.
6. The rotary device according to claim 2, characterized in that: The slewing device further comprises a driven wheel bearing seat (7), a driving wheel bearing seat (10), a deep groove ball bearing (14), and a round nut (13); a driving wheel bearing seat (10) is respectively arranged on the outer side of the upper part of the left and right profile frames (9), the deep groove ball bearing (14) is located in the driving wheel bearing seat (10), the driving shaft (12) cooperates with the deep groove ball bearing (14) and is locked by the round nut (13); a driven wheel bearing seat (7) is respectively arranged on the outer side of the lower part of the left and right profile frames (9), the deep groove ball bearing (14) is located in the driven wheel bearing seat (7), the driven shaft (6) cooperates with the deep groove ball bearing (14) and is locked by the round nut (13).
7. The rotary device according to claim 6, characterized in that: The slewing device also includes two tensioning seats (8), and the tensioning seats (8) are connected to the driven wheel bearing seat (7).