Transfer platform for lithium battery energy storage cabinet production
By designing a movable positioning base plate and a spiral cavity structure on the lithium battery energy storage cabinet production transfer platform, the problems of high cost and difficult debugging in the existing technology have been solved, enabling rapid adjustment and efficient production, reducing labor costs and saving conveyor belt replacement costs.
Patent Information
- Application Number
- CN202423243640.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing lithium battery energy storage cabinet production transfer platforms are costly, difficult to debug, and cannot be quickly adjusted according to the distance and height between production lines, requiring professional technicians to make adjustments, which is time-consuming and labor-intensive.
The design incorporates movable positioning base plates on both sides of the adjustment plate, and enables rapid adjustment through sliding grooves, driven rollers, and a spiral cavity structure. Combined with a rotary motor driving the conveyor belt for tensioning, this reduces labor costs and improves work efficiency.
It enables rapid adjustments based on production line distance and height, reducing labor costs, improving work efficiency, and avoiding frequent conveyor belt replacements, thus saving costs.
Smart Images

Figure CN223632374U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a transfer platform technical field, concretely to a transfer platform of lithium battery energy storage cabinet production. BACKGROUND
[0002] The lithium battery energy storage cabinet is an advanced energy storage equipment, is widely used in industry, commerce and family field, it realizes the storage and release of electric energy through the charging and discharging process, plays an important role in the application in modern society, especially in the power grid energy storage, electric automobile, renewable energy etc.
[0003] In the production process of lithium battery energy storage cabinet needs to use the transfer platform to transfer, but the existing transfer platform cost is higher, the debugging is difficult, when the production line is upgraded, the existing transfer platform cannot be adjusted according to the distance between production lines, height, needs the professional technical personnel to adjust, time-consuming and laborious, expensive. UTILITY MODEL CONTENTS
[0004] The utility model is provided with a transfer platform of lithium battery energy storage cabinet production to overcome the above-mentioned defects in the prior art.
[0005] According to the utility model discloses a transfer platform of lithium battery energy storage cabinet production, including adjusting the card board, two movable positioning base plates are arranged on the both sides of adjusting the card board, and bottom plate openings are arranged between the two walls of the positioning base plate, the adjusting card board extends to the bottom plate opening, two fixed baffle plates are symmetrically arranged on the top of the positioning base plate, a sliding groove is arranged in the fixed baffle plate, and a sliding opening is arranged in the fixed baffle plate through the sliding groove.
[0006] A movable sliding block is arranged in the sliding groove and passes through the sliding opening, a driven shaft is rotatably arranged between the two sliding blocks, driven rollers are fixedly arranged on the outer wall of the driven shaft, a conveying belt is tightly arranged through the two driven rollers, a locking bolt is screw-connected to the side face of the sliding block away from the adjusting card board, the locking bolt extends to the outside of the fixed baffle plate through the sliding opening, and a clamping baffle plate is slidably connected between the locking bolt and the fixed baffle plate.
[0007] As the preferred embodiment of the utility model, evenly distributed clamping grooves are arranged in the adjusting card board, and bottom plate clamping grooves are arranged in the top of the positioning base plate through the bottom plate openings.
[0008] As the preferred embodiment of the utility model, a detachable movable card board is arranged in the bottom plate clamping groove, and the movable card board extends to the top of the positioning base plate through the clamping groove.
[0009] As the preferred embodiment of the utility model, a spiral cavity is arranged in the side face of one side fixed baffle plate close to the other side fixed baffle plate, and a spiral opening is arranged in the side wall of the spiral cavity close to the other side fixed baffle plate.
[0010] As the preferred of the utility model, the spiral cavity is internally provided with a movable spiral plate, the spiral plate extends to outside of the fixed baffle through the spiral opening, a movable threaded shaft is rotatably arranged between the upper and lower walls of the spiral cavity, the movable threaded shaft is threadedly connected with the spiral plate, and one side of the movable threaded shaft extends to outside of the top of the fixed baffle.
[0011] As the preferred of the utility model, the spiral plate is fixedly provided with a motor baffle on the side extending to outside of the fixed baffle, and a driving shaft is rotatably arranged between the two motor baffles.
[0012] As the preferred of the utility model, the motor baffle is fixedly provided with a rotary motor on the side away from the adjusting clamping plate, the rotary motor is power-connected with the driving shaft, the driving shaft extends into the conveying belt, and the driving shaft tightens the conveying belt.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The utility model is provided with two movable positioning bottom plates on the two sides of the adjusting clamping plate, the bottom plate opening is arranged between the two walls of the positioning bottom plate, the distance and height between production lines can be quickly adjusted, the labor cost is reduced, and the work efficiency is improved.
[0015] The utility model is provided with a spiral cavity in the side of the one side fixed baffle close to the side of the other side fixed baffle, the spiral opening is arranged in the side wall of the spiral cavity close to the other side fixed baffle, the conveying belt can be in the tight state after the driven roller is adjusted, the use is not affected, the conveying belt is not frequently replaced, and the cost is saved. ACCURACY OF DRAWINGS
[0016] Figure 1 It is the appearance schematic front view of the utility model;
[0017] Figure 2 It is the appearance schematic front view of the utility model
[0018] Figure 3 It is the appearance schematic plan view of the utility model;
[0019] Figure 4 It is the appearance schematic side view of the utility model;
[0020] Figure 5 It is the Figure 3 schematic view of A-A of the utility model;
[0021] Figure 6 It is the Figure 3 schematic view of B-B of the utility model;
[0022] Figure 7 It is the Figure 4 schematic view of C-C of the utility model.
[0023] Figure:
[0024] 101, adjusting the card board; 102, card slot; 103, positioning the bottom plate; 104, bottom plate opening; 105, sliding opening; 106, sliding block; 107, driven roller; 108, sliding slot; 109, fixed baffle; 200, motor baffle; 201, conveyor belt; 202, spiral opening; 203, spiral cavity; 204, moving threaded shaft; 205, driven shaft; 206, tight bolt; 207, clamping baffle; 208, driving shaft; 209, rotary motor; 300, movable card board; 301, bottom plate card slot; 302, spiral plate. DETAILED DESCRIPTION
[0025] The utility model will be further explained in detail below in combination with the drawings.
[0026] Example 1
[0027] Reference Figures 1-7 , the first embodiment of the utility model, this embodiment provides an example of lithium battery energy storage cabinet production's removal platform, including adjusting the card board 101, the two sides of adjusting the card board 101 are equipped with two movable positioning bottom plate 103, and the two walls between positioning bottom plate 103 are equipped with bottom plate opening 104, and adjusting the card board 101 extends to bottom plate opening 104, and the top of positioning bottom plate 103 is symmetrically equipped with two fixed baffles 109, and the fixed baffle 109 is equipped with sliding slot 108, and the fixed baffle 109 is equipped with sliding opening 105 through sliding slot 108,
[0028] Sliding slot 108 is equipped with movable sliding block 106, and sliding opening 105 is passed through, and the driven shaft 205 is rotatably arranged between the two sliding blocks 106, and the driven roller 107 is fixedly arranged on the outer wall of the driven shaft 205, and the conveyor belt 201 is tightly arranged through the two driven rollers 107, and the tight bolt 206 is screw-connected to the side face of the sliding block 106 away from the adjusting card board 101, and the tight bolt 206 extends to the outside of the fixed baffle 109 through the sliding opening 105, and the clamping baffle 207 is slidably connected between the tight bolt 206 and the fixed baffle 109, and the adjusting card board 101 is equipped with evenly distributed card slot 102, and the bottom plate card slot 301 is arranged on the top of the positioning bottom plate 103 through the bottom plate opening 104, and the movable card board 300 is detachably arranged in the bottom plate card slot 301, and the movable card board 300 extends to the top of the positioning bottom plate 103 through the card slot 102.
[0029] When the fixing bolt 206 is screwed, the clamping baffle 207 is clamped towards the sliding groove 108, thereby fixing the sliding block 106, and then fixing the driven shaft 205, and then fixing the driven roller 107; when the fixing bolt 206 is loosened, the clamping baffle 207 is loosened away from the driving shaft 208, thereby enabling the sliding block 106 to move up and down in the sliding groove 108, and then enabling the driven shaft 205 to move, thereby enabling the driven roller 107 to move, and then enabling the driven roller 107 to quickly adjust the up and down position according to the requirement; when the movable clamping plate 300 passes through the clamping groove 102 and falls into the bottom plate clamping groove 301, the adjusting clamping plate 101 is fixed, thereby fixing the distance between the two positioning bottom plates 103; when the movable clamping plate 300 is taken out, the adjusting clamping plate 101 can move in the bottom plate opening 104, thereby quickly adjusting the left and right positions according to the requirement, so that the distance and height between the production lines can be quickly adjusted, the labor cost is reduced, and the work efficiency is improved.
[0030] Embodiment 2
[0031] Referring to Figures 1-7 For the second embodiment of the utility model, based on the previous embodiment, specifically, the one side fixed baffle 109 is provided with a spiral cavity 203 on the side close to the other side fixed baffle 109, the spiral cavity 203 is provided with a spiral opening 202 penetrating through the side wall close to the other side fixed baffle 109, the spiral cavity 203 is provided with a movable spiral plate 302, the spiral plate 302 extends to the outside of the fixed baffle 109 through the spiral opening 202, the movable threaded shaft 204 is rotationally arranged between the upper and lower walls of the spiral cavity 203, the movable threaded shaft 204 is threadedly connected with the spiral plate 302, one side of the movable threaded shaft 204 extends to the outside of the top of the fixed baffle 109, the spiral plate 302 is fixedly provided with a motor baffle 200 on the side extending to the outside of the fixed baffle 109, the driving shaft 208 is rotationally arranged between the two motor baffles 200, the motor baffle 200 is fixedly provided with a rotating motor 209 on the side away from the adjusting clamping plate 101, the rotating motor 209 is drivingly connected with the driving shaft 208, the driving shaft 208 extends into the conveyor belt 201, and the driving shaft 208 tightens the conveyor belt 201.
[0032] When the movable threaded shaft 204 is rotated, the spiral plate 302 is moved up and down, thereby driving the motor baffle 200 to move, and then enabling the driving shaft 208 to move, so that the conveyor belt 201 is tightened, thereby enabling the driven roller 107 to adjust the conveyor belt 201 to be in a tightened state, not affecting the later use, avoiding frequent replacement of the conveyor belt 201, saving the cost, and enabling the conveyor belt 201 to rotate normally; meanwhile, by starting the rotating motor 209, the driving shaft 208 is rotated, thereby driving the conveyor belt 201 to rotate.
[0033] The above are only specific embodiments of the present application, but the technical features of the present application are not limited thereto, and any changes or modifications made by those skilled in the art within the scope of the present application are encompassed in the patent scope of the present application.
Claims
1. A transfer platform for lithium battery energy storage cabinet production, comprising an adjusting card board (101), characterized in that, Both sides of the adjusting card board (101) are provided with two movable positioning bottom plates (103), the two walls of the positioning bottom plate (103) are provided with a bottom plate opening (104) penetrating through, the adjusting card board (101) extends into the bottom plate opening (104), the top of the positioning bottom plate (103) is symmetrically provided with two fixed baffle plates (109), the fixed baffle plate (109) is provided with a sliding groove (108), and the fixed baffle plate (109) is provided with a sliding opening (105) penetrating through the sliding groove (108). The sliding groove (108) is provided with a movable sliding block (106), the sliding block (106) extends through the sliding opening (105), a driven rotating shaft (205) is rotatably arranged between the two sliding blocks (106), a driven roller (107) is fixedly arranged on the outer wall of the driven rotating shaft (205), a conveying belt (201) is tightly arranged through the two driven rollers (107), a tight bolt (206) is threadedly connected to the side of the sliding block (106) away from the adjusting card board (101), the tight bolt (206) extends out of the fixed baffle plate (109) through the sliding opening (105), and a clamping baffle (207) is slidably connected between the tight bolt (206) and the fixed baffle plate (109).
2. The transfer platform for lithium battery energy storage cabinet production according to claim 1, characterized in that: The adjusting card board (101) is provided with uniformly distributed clamping grooves (102) penetrating through, and the top of the positioning bottom plate (103) is provided with a bottom plate clamping groove (301) penetrating through the bottom plate opening (104).
3. The transfer platform for lithium battery energy storage cabinet production according to claim 2, characterized in that: The bottom plate clamping groove (301) is provided with a detachable movable clamping plate (300), and the movable clamping plate (300) extends out of the top of the positioning bottom plate (103) through the clamping groove (102).
4. The transfer platform for lithium battery energy storage cabinet production according to claim 1, characterized in that: One side of the fixed baffle plate (109) is provided with a spiral cavity (203) in the side close to the other side of the fixed baffle plate (109), and the spiral cavity (203) is provided with a spiral opening (202) penetrating through the side wall close to the other side of the fixed baffle plate (109).
5. The transfer platform for lithium battery energy storage cabinet production according to claim 4, characterized in that: The spiral cavity (203) is provided with a movable spiral plate (302), the spiral plate (302) extends out of the fixed baffle plate (109) through the spiral opening (202), and a moving threaded shaft (204) is rotatably arranged between the upper and lower walls of the spiral cavity (203). The moving threaded shaft (204) is in threaded connection with the spiral plate (302), and the moving threaded shaft (204) extends out of the top of the fixed baffle plate (109) on one side.
6. The transfer platform for lithium battery energy storage cabinet production according to claim 5, characterized in that: The side of the spiral plate (302) extending out of the fixed baffle plate (109) is fixedly provided with a motor baffle plate (200), and a driving rotating shaft (208) is rotatably arranged between the two motor baffle plates (200).
7. The transfer platform for lithium battery energy storage cabinet production according to claim 6, characterized in that: The side of the motor baffle plate (200) away from the adjusting card board (101) is fixedly provided with a rotating motor (209), the rotating motor (209) is in power connection with the driving rotating shaft (208), the driving rotating shaft (208) extends into the conveying belt (201), and the driving rotating shaft (208) tightens the conveying belt (201).