Barreled water transfer device
By designing a barreled water transfer device with a base frame, limiting table and drive mechanism, large-capacity transfer and automatic unloading are realized, solving the problems of low transit efficiency and high labor intensity in the existing technology, and improving the transfer efficiency and unloading convenience.
Patent Information
- Application Number
- CN202510503278.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-08-05
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing barreled water transfer device has a small one-time transfer volume, low transportation efficiency, and manual unloading of materials is required when there is inconvenient space, which is very labor-intensive.
A barrel water transfer device including a base frame, a limiting table, a driving mechanism and an auxiliary transfer mechanism is designed. The automatic unloading of barrel water and the synchronous transport of multiple sets of barrel water are realized through the hydraulic cylinder driving pallet. The auxiliary transfer mechanism can extend to a designated position for automatic unloading.
It improves the efficiency of transportation, reduces labor intensity, shortens the transportation time, and realizes an efficient barreled water transfer and unloading process.
Smart Images

Figure CN120422918A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of bottled water transfer, and in particular to a bottled water transfer device. Background Art
[0002] Bottled water is made from tap water or pumped groundwater, processed using modern industrial technologies (reverse osmosis, electrodialysis, resin softening, etc.), and then bottled into PVC barrels on a filling line. The typical capacity of a bottled water is 18.9L, with a net weight of 18.5L. Numerous varieties of bottled water are available on the market, including purified water, mountain spring water, mineral water, mineralized water, activated water, and ionized water. Due to varying water sources and production processes, the types and concentrations of trace elements found in different types of bottled water vary significantly. Some bottled water sources are natural groundwater, such as mineral water and mountain spring water; others are processed from city tap water, such as purified water, distilled water, and ionized water.
[0003] After the production of bottled mineral water is completed, it needs to be transported using a transfer device. The common method is a trolley. Due to the size limitation of conventional trolleys, the one-time transfer volume of bottled water is small, which increases the transfer time and reduces the transfer efficiency. After the bottled water is transferred to the designated location through the transfer device, when it is inconvenient for the device to enter a certain space, manual unloading and transportation are required to transfer the bottled water to the designated location in the space for distribution. When distributing multiple groups of bottled water, it is time-consuming, labor-intensive and labor-intensive. Summary of the Invention
[0004] Technical issues solved: In response to the shortcomings of the existing technology, the present invention provides a bottled water transfer device, which has a large one-time transfer capacity and is convenient for unloading. Personnel only need to stand on one side of the device to unload, without having to run back and forth to carry and unload. When it is inconvenient to enter a certain space, auxiliary transfer is carried out through an auxiliary transfer mechanism. The end of the transfer plate extends to a designated position in the space, and multiple groups of bottled water are transferred through the transfer plate, solving the technical problems mentioned in the background technology. Technical Solution
[0005] To achieve the above object, the present invention is implemented through the following technical solutions: A bottled water transfer device includes a base frame, on which a first limit platform, a second limit platform and a driving mechanism are provided. The first limit platform and the second limit platform are symmetrically arranged. An auxiliary transfer mechanism is provided at the bottom end of the base frame. The auxiliary transfer mechanism can be extended and stretched when in use, and folded at the bottom of the base frame when not in use. Multiple groups of limit grooves are provided on the first limit platform and the second limit platform. The driving mechanism is located between the first limit platform and the second limit platform. A long groove is formed between the first limit platform and the second limit platform. The driving mechanism is arranged at the long groove. The driving mechanism includes a linear drive base. A hydraulic cylinder is provided on the linear drive base. One end of the hydraulic cylinder is connected to a support plate. Rollers are provided on both sides of the base frame. The overall transfer device is driven by the rollers to move, and walk on the ground for transfer.
[0006] In a possible implementation, multiple groups of the limit grooves are evenly spaced, the limit grooves of the first limit platform and the limit grooves of the second limit platform form a placement position, and the bottled water body is placed on the placement position. Multiple groups of limit grooves form multiple groups of placement positions, each group of placement positions can be used to place one bottled water body, and multiple groups of placement positions can be used to place multiple bottled water bodies.
[0007] In one possible implementation, an electric motor is provided on the outside of the linear drive base, one end of the motor is connected to a screw rod, a sliding rod is provided below the screw rod, and the screw rod and the sliding rod are both located on the inner side of the linear drive base, a sliding seat is provided on the screw rod and the sliding rod, and the sliding seat and the sliding rod are slidably connected, and the sliding seat and the hydraulic cylinder are fixed, the output shaft of the electric motor and the screw rod are fixedly connected by a coupling, and the screw rod and the linear drive base are connected by a bearing.
[0008] In one possible implementation, a hydraulic oil tank assembly is provided on one side of the slide, and the hydraulic oil tank assembly is connected to the hydraulic cylinder through an oil pipe. The hydraulic oil tank assembly includes components such as an oil tank, an oil pump, and a valve, which are used to control the telescopic stroke of the hydraulic cylinder.
[0009] In one possible implementation, a first anti-slip layer is provided on the inner side surface of the limiting groove, and the first anti-slip layer is bonded and fixed to the limiting groove. When multiple groups of bottled water bodies are placed in the limiting groove, the lower part of the bottled water body is in close contact with the first anti-slip layer, thereby increasing the contact friction when the bottled water body is placed.
[0010] In one possible implementation, the support plate is configured as an arc-shaped structure, and a second anti-slip layer is provided on the support plate, and the second anti-slip layer is bonded and fixed to the support plate. When the support plate lifts the bottled water body, the lower part of the bottled water body is in close contact with the second anti-slip layer, thereby increasing the contact friction and improving the stability of the bottled water body during horizontal movement.
[0011] In a possible implementation, first mounting lugs are provided on both sides of the bottom of the first limit platform and the second limit platform, second mounting lugs are provided on both sides of the bottom of the linear drive base, and the base frame is fixed to the first limit platform, the second limit platform and the linear drive base by screws, and the base frame and the first limit platform, the second limit platform and the linear drive base are all detachable structures.
[0012] In one possible implementation, a push handle and a chassis are provided on one side of the base frame, and the chassis has a built-in power module to provide stable power support for the entire transfer device.
[0013] The cam is secured to the chassis and the second chassis is secured to the chassis, and the cam is secured to the chassis with two opposite sides extending along the length of the chassis.
[0014] In one possible implementation, multiple groups of balls are provided on the first transfer plate, the second transfer plate and the third transfer plate, and the balls are rollingly connected to the first transfer plate, the second transfer plate and the third transfer plate. The multiple groups of balls are evenly spaced, and the multiple groups of balls reduce the surface contact friction of the transfer plates.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] The one-time transfer capacity of the present invention is large. The driving mechanism drives the bottled water body to separate from the limit platform and move the bottled water body to one side of the device. The lower part of the bottled water body is in contact with the supporting plate, and the contact area is small. By applying a certain external force to one end of the bottled water body, the bottled water body can be turned over and unloaded and placed on the ground. Unloading is convenient. Personnel only need to stand on one side of the device to unload, and there is no need to run back and forth to carry and unload. This saves time and effort, reduces labor intensity, and improves transfer efficiency.
[0017] When it is inconvenient to enter a certain space, the present invention performs auxiliary transportation through the auxiliary transportation mechanism. The end of the transfer plate extends to a designated position in the space, and multiple groups of bottled water bodies are transferred through the transfer plate. There is no need for manual unloading and transportation, which saves time and effort, reduces labor intensity, shortens the transportation cycle, and improves transportation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the following is a detailed description of the preferred embodiments of the present invention with reference to the accompanying drawings.
[0019] Figure 1 A perspective view of the present invention; Figure 2 A top view of the present invention; Figure 3 This is a schematic diagram of the placement of the bottled water body of the present invention; Figure 4 Schematic diagram of the expansion of the auxiliary transport mechanism of the present invention; Figure 5 It is a structural schematic diagram of the first limiting platform and the second limiting platform of the present invention; Figure 6 Schematic diagram of the structure of the driving mechanism of the present invention; Figure 7 A top perspective view of the auxiliary transport mechanism of the present invention; Figure 8 A bottom perspective view of the auxiliary transport mechanism of the present invention; Figure 9 for Figure 3 A partial enlarged view of area A in the middle; Figure 10 for Figure 8 A partial enlarged view of area B in the middle.
[0020] In the figure: 1. Base frame; 2. First limit platform; 3. Second limit platform; 4. Limit slot; 5. Drive mechanism; 6. Auxiliary transfer mechanism; 7. Long slot; 8. Bottled water body; 9. Roller; 10. Linear drive base; 11. Hydraulic cylinder; 12. Support plate; 13. Motor; 14. Screw; 15. Slide rod; 16. Slide seat; 17. Hydraulic oil tank assembly; 18. First anti-slip layer; 19. Second anti-slip layer; 20. First mounting lug; 21. Second mounting lug; 22. Push handle; 23. Chassis; 24. Slide slot; 25. First transfer plate; 26. Second transfer plate; 27. Third transfer plate; 28. First slide bar; 29. Second slide bar; 30. Ball bearing. DETAILED DESCRIPTION
[0021] The embodiment of the present application provides a bottled water transfer device with a large one-time transfer capacity and convenient unloading. Personnel only need to stand on one side of the device to unload, without having to run back and forth to carry and unload. When it is inconvenient to enter a certain space, auxiliary transfer is performed through an auxiliary transfer mechanism. The end of the transfer plate extends to a designated position in the space, and multiple groups of bottled water are transferred through the transfer plate, thereby solving the technical problems mentioned in the background technology.
[0022] The technical solution in the embodiments of the present application is to solve the problems of the above-mentioned background technology, and the overall idea is as follows: Example 1
[0023] See also Figure 1-10 The present invention provides a technical solution: a bottled water transfer device, including a base frame 1, a first limit platform 2, a second limit platform 3 and a driving mechanism 5 are provided on the base frame 1, the first limit platform 2 and the second limit platform 3 are symmetrically arranged, and an auxiliary transfer mechanism 6 is provided at the bottom end of the base frame 1, the auxiliary transfer mechanism 6 can be extended when in use, and folded at the bottom of the base frame 1 when not in use, the first limit platform 2 and the second limit platform 3 are both provided with multiple groups of limit grooves 4, and the multiple groups of limit grooves 4 are all arranged in an arc structure, the driving mechanism 5 is located between the first limit platform 2 and the second limit platform 3, the first limit platform 2 and the second limit platform 3 form a long groove 7, the driving mechanism 5 is located at the long groove 7, the driving mechanism 5 includes a linear driving base 10, the linear driving base 10 is provided with a hydraulic cylinder 11, one end of the hydraulic cylinder 11 is connected to the supporting plate 12, the hydraulic cylinder 11 includes a push rod, and the push rod and the supporting plate 12 are fixedly connected. When the linear driving base 10 is working, it can drive the hydraulic cylinder 11 to make horizontal linear motion. When the hydraulic cylinder 11 is working, it can axially drive the supporting plate 12. Rollers 9 are provided on both sides of the chassis 1, and the rollers 9 drive the entire transfer device to move, and the transfer is carried out by walking on the ground.
[0024] In some examples, multiple groups of limit slots 4 are evenly spaced, and the limit slots 4 of the first limit platform 2 and the limit slots 4 of the second limit platform 3 form placement positions, on which bottled water bodies 8 are placed. Multiple groups of limit slots 4 form multiple groups of placement positions, and each group of placement positions can be used to place one bottled water body 8. Multiple groups of placement positions can be used to place multiple bottled water bodies 8. The overall transfer device has a large one-time transfer capacity and can transfer multiple groups of bottled water bodies 8 at the same time, thereby shortening the transfer time and improving the transfer efficiency.
[0025] In some examples, an electric motor 13 is provided on the outside of the linear drive base 10, one end of the motor 13 is connected to a screw rod 14, a slide rod 15 is provided below the screw rod 14, and the screw rod 14 and the slide rod 15 are both located on the inner side of the linear drive base 10, a slide seat 16 is provided on the screw rod 14 and the slide rod 15, and the slide seat 16 is slidably connected to the slide rod 15, and the slide seat 16 is fixed to the hydraulic cylinder 11, the output shaft of the motor 13 is fixedly connected to the screw rod 14 through a coupling, and the screw rod 14 is connected to the linear drive base 10 through a bearing, and the hydraulic cylinder 11 can drive the upper support plate 12 to move synchronously with the slide seat 16.
[0026] The driving mode of the driving mechanism 5 is: The motor 13 drives the screw rod 14 to rotate. When the screw rod 14 rotates, it drives the slide 16 to slide along the slide rod 15. The slide 16 drives the hydraulic cylinder 11 above it to slide along the slide rod 15 synchronously. The hydraulic cylinder 11 drives the support plate 12 above it to slide along the slide rod 15 synchronously. When the hydraulic cylinder 11 works, it drives the support plate 12 above it to move axially. The horizontal position of the support plate 12 is controlled by the number of rotations and the rotation direction of the motor 13, and the axial position of the support plate 12 is controlled by the telescopic stroke of the hydraulic cylinder 11.
[0027] The transfer mode of the barreled water body 8 is: Place multiple groups of bottled water bodies 8 on multiple placement positions of the transfer device, manually push the push handle 22 to drive the entire transfer device to move, and after moving multiple groups of bottled water bodies 8 to the designated positions, the linear drive base 10 of the drive mechanism 5 adjusts the horizontal position of the support plate 12 to move it to just below the front end bottled water body 8, and the hydraulic cylinder 11 drives the support plate 12 to move up, lift the bottled water body 8 and make it separate from the first limit platform 2 and the second limit platform 3, and then adjust the horizontal position of the support plate 12 by the linear drive base 10 to move the bottled water body 8 to one side of the device. At this time, the lower part of the bottled water body 8 is aligned with the bottom of the bottled water body 8. The supporting plates 12 are in contact with each other, and the contact area is small. By applying a certain external force to one end of the bottled water body 8, the bottled water body 8 can be turned over and unloaded and placed on the ground, which makes unloading convenient. After the unloading of the front bottled water body 8 is completed, the driving mechanism 5 repeats the above action to move the next bottled water body 8 to one side of the device until all the bottled water bodies 8 are unloaded. Personnel only need to stand on one side of the device to unload, and there is no need to run back and forth to carry and unload. The driving mechanism 5 drives the bottled water body 8 to leave the limit platform and move the bottled water body 8 to facilitate unloading, save time and effort, and reduce labor intensity.
[0028] Among them, when it is inconvenient for the transfer device to enter a certain space and the auxiliary transfer mechanism 6 needs to be used, the auxiliary transfer mechanism 6 can be unfolded, and the end of the auxiliary transfer mechanism 6 extends to the designated position in the space.
[0029] In some examples, a hydraulic oil tank assembly 17 is provided on one side of the slide 16, and the hydraulic oil tank assembly 17 is connected to the hydraulic cylinder 11 through an oil pipe. The hydraulic oil tank assembly 17 includes components such as an oil tank, an oil pump, and a valve, which are used to control the telescopic stroke of the hydraulic cylinder 11. The hydraulic oil tank assembly 17 moves with the slide 16.
[0030] In some examples, a first anti-slip layer 18 is provided on the inner side surface of the limiting groove 4, and the first anti-slip layer 18 is bonded and fixed to the limiting groove 4. When multiple groups of bottled water bodies 8 are placed in the limiting groove 4, the lower part of the bottled water body 8 is in close contact with the first anti-slip layer 18, thereby increasing the contact friction force of the bottled water body 8 when it is placed, that is, increasing the stability of the bottled water body 8 when it is transferred, preventing the bottled water body 8 from accidentally falling due to bumpy road conditions, and improving the safety of transfer.
[0031] In some examples, the support plate 12 is configured as an arc-shaped structure, and a second anti-slip layer 19 is provided on the support plate 12, and the second anti-slip layer 19 is bonded and fixed to the support plate 12. When the support plate 12 lifts the bottled water body 8, the lower part of the bottled water body 8 is in close contact with the second anti-slip layer 19, thereby increasing the contact friction and improving the stability of the bottled water body 8 during horizontal movement.
[0032] In some examples, first mounting lugs 20 are provided on both sides of the bottom of the first limit platform 2 and the second limit platform 3, second mounting lugs 21 are provided on both sides of the bottom of the linear drive base 10, and the base frame 1 and the first limit platform 2, the second limit platform 3 and the linear drive base 10 are all fixed by screws, and the base frame 1 and the first limit platform 2, the second limit platform 3 and the linear drive base 10 are all detachable structures, which facilitates maintenance of each component.
[0033] In some examples, a push handle 22 and a chassis 23 are provided on one side of the base frame 1. The chassis 23 has a built-in power module to provide stable power support for the entire transfer device.
[0034] By adopting the above technical solutions: The overall transfer device has a large one-time transfer volume and can transfer multiple groups of bottled water bodies 8 at the same time, thereby shortening the transfer time and improving the transfer efficiency; The driving mechanism 5 drives the bottled water body 8 to separate from the limit platform and move the bottled water body 8 to one side of the device. At this time, the lower part of the bottled water body 8 is in contact with the support plate 12, and the contact area is small. By applying a certain external force to one end of the bottled water body 8, the bottled water body 8 can be turned over and unloaded and placed on the ground. Unloading is convenient. Personnel only need to stand on one side of the device to unload, and there is no need to run back and forth to carry and unload. This saves time and effort, reduces labor intensity, and further improves transportation efficiency. Example 2
[0035] Based on Example 1, this example introduces a specific structure of the auxiliary transfer mechanism 6 in a bottled water transfer device, such as Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, the auxiliary transfer mechanism 6 includes a first transfer plate 25, a second transfer plate 26 and a third transfer plate 27, and the second transfer plate 26 is located below the first transfer plate 25, and the third transfer plate 27 is located below the second transfer plate 26. Slide grooves 24 are provided on the inner side walls on both sides of the base frame 1, and the two side edges of the first transfer plate 25 are respectively embedded in the slide grooves 24 and are slidably connected with the slide grooves 24. First slide bars 28 are welded and fixed on both sides of the lower end face of the first transfer plate 25, and a groove body is provided on the inner side face of the first slide bar 28, and the two side edges of the second transfer plate 26 are respectively embedded in the groove body of the first slide bar 28 and are slidably connected with the groove body. Second slide bars 29 are welded and fixed on both sides of the lower end face of the second transfer plate 26, and a groove body is provided on the inner side face of the second slide bar 29, and the two side edges of the third transfer plate 27 are respectively embedded in the groove body of the second slide bar 29 and are slidably connected with the groove body.
[0036] Among them, both sides of the first transfer plate 25 are provided with sliders that are compatible with the slide groove 24, and the sliders on both sides of the first transfer plate 25 are slidably embedded in the slide groove 24, and both sides of the second transfer plate 26 are provided with sliders that are compatible with the groove body of the first slide bar 28, and the sliders on both sides of the second transfer plate 26 are slidably embedded in the groove body of the first slide bar 28, and both sides of the third transfer plate 27 are provided with sliders that are compatible with the second slide bar 29, and the sliders on both sides of the third transfer plate 27 are slidably embedded in the groove body of the second slide bar 29. The first transfer plate 25 can slide relative to the base frame 1, the second transfer plate 26 can slide relative to the first transfer plate 25, and the third transfer plate 27 can slide relative to the second transfer plate 26.
[0037] Among them, by applying a certain external force to the transfer plate, the protruding length of the first transfer plate 25, the second transfer plate 26 and the third transfer plate 27 relative to the base frame 1 can be adjusted, and the total length of the auxiliary transfer mechanism 6 can be adjusted by controlling the protruding length of the first transfer plate 25, the second transfer plate 26 and the third transfer plate 27.
[0038] In some examples, multiple groups of balls 30 are provided on the first transfer plate 25, the second transfer plate 26 and the third transfer plate 27, and the balls 30 are rollingly connected to the first transfer plate 25, the second transfer plate 26 and the third transfer plate 27. The multiple groups of balls 30 are evenly spaced, and the multiple groups of balls 30 reduce the surface contact friction of the transfer plates.
[0039] Among them, the overall transfer device transfers multiple groups of bottled water bodies 8 to a designated area. When the transfer device is inconvenient to enter a certain space and the auxiliary transfer mechanism 6 is needed, the auxiliary transfer mechanism 6 is unfolded to a specified length. When unloading the bottled water bodies 8, the bottom of the bottled water bodies 8 is placed on the transfer plate and in contact with multiple groups of balls 30. The contact friction between the bottled water bodies 8 and the transfer plate is small. At this time, applying a small external force can drive the bottled water bodies 8 to move on the transfer plate and transfer the bottled water bodies 8 to the designated position.
[0040] By adopting the above technical solutions: By controlling the extension lengths of the first transfer plate 25, the second transfer plate 26 and the third transfer plate 27, the total length of the auxiliary transfer mechanism 6 is adjusted; When it is inconvenient for the overall transfer device to enter a certain space, auxiliary transfer is performed through the auxiliary transfer mechanism 6. The end of the transfer plate extends to the designated position in the space, and multiple groups of bottled water bodies 8 are transferred through the transfer plate. There is no need for manual unloading and transportation, which saves time and effort, reduces labor intensity, and thus shortens the transfer cycle and improves transfer efficiency.
[0041] Finally, it should be noted that the above embodiments are merely examples for the purpose of illustrating the present invention and are not intended to limit the embodiments. Those skilled in the art will readily appreciate that other variations or modifications based on the above description are possible. It is not necessary and impossible to provide an exhaustive list of all embodiments. However, obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.
Claims
1. A bottled water transfer device, comprising a base frame (1), characterized in that: The base frame (1) is provided with a first limit platform (2), a second limit platform (3) and a driving mechanism (5); an auxiliary transfer mechanism (6) is provided at the bottom end of the base frame (1); a plurality of limit slots (4) are provided on the first limit platform (2) and the second limit platform (3); the driving mechanism (5) is located between the first limit platform (2) and the second limit platform (3); a long slot (7) is formed between the first limit platform (2) and the second limit platform (3); the driving mechanism (5) includes a linear drive base (10); a hydraulic cylinder (11) is provided on the linear drive base (10); one end of the hydraulic cylinder (11) is connected to a support plate (12); and rollers (9) are provided on both sides of the base frame (1).
2. The bottled water transfer device according to claim 1, characterized in that: The plurality of groups of the limiting grooves (4) are evenly spaced, and the limiting grooves (4) of the first limiting platform (2) and the limiting grooves (4) of the second limiting platform (3) form a placement position, on which the bottled water body (8) is placed.
3. The bottled water transfer device according to claim 1, characterized in that: An electric motor (13) is provided on the outside of the linear drive base (10), one end of the electric motor (13) is connected to a screw rod (14), a slide rod (15) is provided below the screw rod (14), and the screw rod (14) and the slide rod (15) are both located on the inside of the linear drive base (10), a slide seat (16) is provided on the screw rod (14) and the slide rod (15), and the slide seat (16) is slidably connected to the slide rod (15), and the slide seat (16) is fixed to the hydraulic cylinder (11).
4. The bottled water transfer device according to claim 3, characterized in that: A hydraulic oil tank assembly (17) is provided on one side of the slide seat (16), and the hydraulic oil tank assembly (17) is connected to the hydraulic cylinder (11) via an oil pipe.
5. The bottled water transfer device according to claim 1, characterized in that: A first anti-slip layer (18) is provided on the inner side surface of the limiting groove (4), and the first anti-slip layer (18) is bonded and fixed to the limiting groove (4).
6. The bottled water transfer device according to claim 1, characterized in that: The support plate (12) is configured as an arc-shaped structure, and a second anti-slip layer (19) is provided on the support plate (12), and the second anti-slip layer (19) and the support plate (12) are bonded and fixed.
7. The bottled water transfer device according to claim 1, characterized in that: Both sides of the bottom of the first limit platform (2) and the second limit platform (3) are provided with first mounting lugs (20), both sides of the bottom of the linear drive base (10) are provided with second mounting lugs (21), and the base frame (1) is fixed to the first limit platform (2), the second limit platform (3) and the linear drive base (10) by screws.
8. The bottled water transfer device according to claim 1, characterized in that: A push handle (22) and a chassis (23) are provided on one side of the base frame (1).
9. The bottled water transfer device according to claim 1, characterized in that: The auxiliary transfer mechanism (6) includes a first transfer plate (25), a second transfer plate (26) and a third transfer plate (27), and the second transfer plate (26) is located below the first transfer plate (25), and the third transfer plate (27) is located below the second transfer plate (26). Slide grooves (24) are provided on the inner side walls on both sides of the base frame (1), and the two side edges of the first transfer plate (25) are respectively embedded in the slide grooves (24) and are slidably connected to the slide grooves (24). The lower end surface of the first transfer plate (25) is A first slide bar (28) is welded and fixed on both sides, a groove body is provided on the inner side surface of the first slide bar (28), and both sides of the second transfer plate (26) are respectively embedded in the groove body of the first slide bar (28) and are slidably connected to the groove body. A second slide bar (29) is welded and fixed on both sides of the lower end surface of the second transfer plate (26), a groove body is provided on the inner side surface of the second slide bar (29), and both sides of the third transfer plate (27) are respectively embedded in the groove body of the second slide bar (29) and are slidably connected to the groove body.
10. The bottled water transfer device according to claim 9, characterized in that: The first transfer plate (25), the second transfer plate (26) and the third transfer plate (27) are each provided with a plurality of groups of rolling balls (30), and the rolling balls (30) are all rollingly connected to the first transfer plate (25), the second transfer plate (26) and the third transfer plate (27), and the plurality of groups of rolling balls (30) are evenly spaced.