A barreled water storage tank and a barreled water transfer system

By designing a barreled water storage tank and an automated transportation system, the problem of low efficiency in transportation and unloading of barreled water is solved, and efficient loading and unloading of trucks is achieved, saving space.

CN114572543BActive Publication Date: 2025-07-25FOSHAN JINKE MECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202210197388.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-01
Publication Date
2025-07-25
Estimated Expiration
2042-03-01

AI Technical Summary

Technical Problem

In the prior art, barreled water is inefficient during transportation and unloading, and takes up a large space, so it cannot be loaded or unloaded efficiently.

Method used

A barrel water storage tank is designed, including a box, pulley, latch, hoisting ring and conveying chain system. The stacking and automatic transportation of multiple boxes is achieved through driving and conveying belts. The upper and lower boxes are connected by pins, and the hoisting ring is achieved to hoist, and the conveying chain and positioning plate are achieved to automatically load and unload barrel water.

Benefits of technology

The efficiency of barreled water loading and unloading trucks is improved, space occupation is reduced, multi-layer stacking is realized, and transportation efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of barreled water transfer equipment, and specifically to a barreled water storage tank barreled water transfer system, which includes a box body. The box body includes a top plate, a front plate, a bottom plate, and a rear plate that are fixedly connected in sequence. A storage cavity is formed between the top plate, the front plate, the bottom plate, and the rear plate. A chute is provided on the top plate, and a first pulley is provided on the bottom plate. The number of the box bodies is multiple, and the vertically adjacent box bodies are slidably connected to each other through the first pulley and the chute. A bolt is installed at the lower part of the box body, and pin holes are provided at both the top and the bottom of the box body. The bolt on the upper box body can pass through the pin hole at the bottom of this box body and be inserted into the pin hole at the top of the lower box body. Hoop rings are fixedly arranged on both the front side and the rear side of the box body. The advantage of the present invention is that it can improve the efficiency of loading or unloading barreled water onto or from a vehicle.
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Description

Technical Field

[0001] The present invention relates to the field of barreled water transfer equipment, in particular to a barreled water transfer system for a barreled water storage tank. Background Art

[0002] In the prior art, barreled water is usually transported by a truck. During the process of transporting barreled water from a factory to a store, the barreled water can only be carried into the truck compartment one by one, and when unloading the barreled water, it can only be carried out of the compartment one by one. After the barreled water is carried to the store, it can only be stacked in a single layer on the ground, which requires a large amount of area. Therefore, the prior art needs to be improved. Summary of the Invention

[0003] To solve the above technical problems, the purpose of the present invention is to provide a barreled water storage tank and a barreled water transfer system, which can improve the efficiency of loading or unloading barreled water onto or from a vehicle.

[0004] The technical solution adopted by the present invention to solve the problem is: a barreled water storage tank, comprising:

[0005] A box body, the box body includes a top plate, a front plate, a bottom plate and a rear plate which are fixedly connected in sequence. A storage cavity is formed between the top plate, the front plate, the bottom plate and the rear plate. A chute is provided on the top plate, and a first pulley is provided on the bottom plate. The number of the box bodies is multiple, and the upper and lower adjacent box bodies are slidably connected to each other through the first pulley and the chute. A bolt is installed at the lower part of the box body, and pin holes are provided at both the top and the bottom of the box body. The bolt on the upper box body can pass through the pin hole at the bottom of the box body and be inserted into the pin hole at the top of the lower box body. Suspension rings are fixedly arranged on both the front side and the rear side of the box body.

[0006] As a preferred technical solution, the bolt is an elbow bolt, an external thread is provided at the lower part of the bolt, and a nut is further included. The nut is threadedly connected to the lower part of the bolt. The nut is arranged below the pin hole at the top of the box body, and the pin hole can prevent the nut from passing through the pin hole.

[0007] As a preferred technical solution, a transmission chain, a transmission track and a positioning disk are arranged in the storage cavity. The transmission track is fixedly installed on the bottom plate, the transmission track is connected end to end, a sprocket is rotatably installed on the transmission track, the transmission chain is installed on the sprocket, a connecting keyway is provided at the center of at least one sprocket, a first avoidance hole is provided on the side wall of the box body, and the first avoidance hole is arranged collinearly with the connecting keyway. A plurality of connecting blocks are fixedly installed on the transmission chain, the connecting blocks are fixedly connected to the positioning disk, a second pulley is installed on the fixed disk, and the second pulley is in rolling connection with the transmission track; a positioning cavity with an upward opening is arranged in the positioning disk, and the positioning cavity is cylindrical.

[0008] As a preferred technical solution, it further includes a jacking assembly. The jacking assembly includes a pedal, a lever, and a jacking plate. A third avoidance through hole is provided at the bottom of the positioning disk, and the third avoidance through hole communicates with the positioning cavity. The jacking plate is arranged below the third avoidance through hole. One end of the lever is hinged to the jacking plate, the middle of the lever is hinged to the bottom plate, the other end of the lever is fixedly connected to the pedal, and a second avoidance hole collinear with the third avoidance through hole is provided on the bottom plate.

[0009] The present invention also provides a barreled water transfer system, including:

[0010] The barreled water storage tank further includes a machine platform, a conveyor belt, a conveyor belt power mechanism, a control center, a transfer power mechanism, a jacking power mechanism, and a second jacking plate;

[0011] The conveyor belt is installed on the left part of the machine platform, and the conveyor belt power mechanism is used to drive the conveyor belt to convey rightward; a second track is provided on the right part of the machine platform. The first pulley on the box body is in rolling connection with the second track, and a positioning notch is provided on the second track. The first pulley can fall into the positioning notch.

[0012] The positioning disk is arranged on the right side of the conveyor belt. The top of the positioning disk is flush with the upper surface of the conveyor belt. The vertical projection of the positioning disk is rectangular, and the right end of the conveyor belt is adjacent to the left side wall of the positioning disk.

[0013] The transfer power mechanism and the jacking power mechanism are both fixedly installed on the machine platform. The output end of the jacking power mechanism passes through the second avoidance through hole and abuts against the jacking plate; the second jacking plate is arranged in the positioning cavity, and the inner side wall of the second jacking plate is in sliding connection with the inner wall of the positioning cavity.

[0014] The output end of the transfer power mechanism passes through the first avoidance hole and is detachably connected to the sprocket. The transfer power mechanism is used to drive the transfer chain to move along the transfer track.

[0015] The conveyor belt power mechanism, the jacking power mechanism, and the transfer power mechanism are all electrically connected to the control center.

[0016] As a preferred technical solution, it further includes a traveling crane; the traveling crane hoists the box body without loaded barreled water by connecting with the lifting ring. The first pulley is in sliding connection with the second track. After the box body slides a certain distance along the second track, the traveling crane lowers the box body, and the first pulley falls into the positioning notch.

[0017] The output end of the transmission power mechanism passes through the first avoidance through-hole and is in transmission connection with the sprocket, and one of the positioning disks in the storage cavity moves to the right side of the conveyor belt;

[0018] The output end of the jacking power mechanism passes through the second avoidance through-hole and abuts against the jacking plate. The jacking power mechanism drives the jacking plate to move upward. After the jacking plate passes through the third avoidance through-hole, it drives the second jacking plate to move upward, so that the upper surface of the second jacking plate is flush with the upper surface of the conveyor belt;

[0019] The conveyor belt conveys the barreled water to the right onto the second jacking plate. The output end of the jacking power mechanism resets, and the jacking plate and the second jacking plate descend, and a barreled water falls into the positioning cavity;

[0020] The transmission power mechanism drives the transmission chain to move, so that another positioning disk without loaded barreled water moves to the right side of the conveyor belt, and the conveyor belt sends another barreled water into the positioning cavity of this positioning disk until all the positioning cavities are filled with barreled water;

[0021] The transmission power mechanism is disconnected from the sprocket, and the jacking power mechanism is disconnected from the pedal;

[0022] The traveling crane lifts the box through the lifting ring. The first pulley is disconnected from the positioning notch. The box is disconnected from the machine table and stacked on the ground or another box.

[0023] As a preferred technical solution, the traveling crane lifts the box and stacks it on the transport vehicle, uses the pin to connect the upper and lower adjacent boxes, and uses the cable to connect the lifting ring and the transport vehicle.

[0024] The beneficial effect of the present invention is that by hanging the lifting ring of the box on the hook of the traveling crane, the box can be hoisted onto the transport vehicle or unloaded from the transport vehicle by the traveling crane. The box is used to load barreled water, and several barreled waters can be hoisted at one time, which can improve the efficiency of loading or unloading barreled water onto or from the vehicle. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The present invention will be further explained below in conjunction with the drawings and the specific embodiments.

[0026] Figure 1 It is the top view of the barreled water storage box of the present invention;

[0027] Figure 2 It is the partial enlarged view after the barreled water storage boxes of the present invention are stacked.

[0028] Figure 3 It is the schematic diagram of the jacking assembly of the present invention;

[0029] Figure 4Vertical sectional view of the barreled water transfer system of the present invention;

[0030] Figure 5 Top view of the barreled water transfer system of the present invention;

[0031] Figure 6 is Figure 4 Enlarged view of part A of

[0032] In the figure: 1 - box body, 101 - top plate, 102 - front plate, 103 - bottom plate, 104 - rear plate, 105 - first avoidance hole, 106 - second avoidance hole, 107 - storage cavity, 108 - chute, 109 - first pulley, 110 - pin hole, 111 - bolt, 112 - nut, 113 - lifting ring, 114 - conveyor chain, 115 - conveyor track, 116 - sprocket, 117 - positioning disc, 1171 - positioning cavity, 118 - second lifting plate, 119 - third avoidance through hole, 120 - connecting block, 121 - second pulley, 122 - lifting assembly, 1221 - pedal, 1222 - lever, 1223 - lifting plate, 2 - machine platform, 201 - conveyor belt, 202 - conveyor belt power mechanism, 203 - conveyor power mechanism, 204 - lifting power mechanism, 206 - second track, 2061 - positioning notch, 6 - barreled water. Detailed implementation manners

[0033] This part will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the drawings. The function of the drawings is to supplement the description in the text part of the specification, enabling people to intuitively and vividly understand each technical feature and the overall technical solution of the present invention, but it cannot be understood as a limitation on the protection scope of the present invention.

[0034] In the description of the present invention, it should be understood that for the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0035] In the description of the present invention, the meaning of "several" is one or more, the meaning of "multiple" is more than two, and understandings such as "greater than", "less than", "exceeding", etc. do not include the present number, and understandings such as "above", "below", "within", etc. include the present number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features. In the description of the present invention, unless otherwise clearly defined, words such as "set", "installed", "connected", etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above words in the present invention in combination with the specific content of the technical solution.

[0036] Referring to Figures 1 to 3 , a barreled water storage tank, comprising:

[0037] A box body 1, the box body 1 includes a top plate 101, a front plate 102, a bottom plate 103 and a rear plate 104 which are fixedly connected in sequence. A storage cavity 107 is formed between the top plate 101, the front plate 102, the bottom plate 103 and the rear plate 104. The storage cavity 107 is used for storing barreled water 6. A chute 108 is provided on the top plate 101, and a first pulley 109 is provided on the bottom plate 103. The number of the box bodies 1 is multiple, and the vertically adjacent box bodies 1 are slidably connected to each other through the first pulley 109 and the chute 108. Therefore, the box bodies 1 can be stacked vertically. A bolt 111 is installed at the lower part of the box body 1, and pin holes 110 are provided at both the top and the bottom of the box body 1. The bolt 111 on the upper box body 1 can pass through the pin hole 110 at the bottom of this box body and be inserted into the pin hole at the top of the lower box body 1. After the bolt 111 on the upper box body 1 is connected to the pin hole 110 at the top of the lower box body, it can limit the vertically adjacent box bodies 1 from sliding relative to each other along the chute 108; a lifting ring 113 is provided on the box body 1, and lifting rings 113 are fixedly arranged on both the front side and the rear side of the box body 1. Hanging the lifting ring 113 of the box body 1 on the hook of the crane can lift the box body 1 onto the transport vehicle or unload the box body 1 from the transport vehicle by the crane. It is also possible to connect the lifting ring 113 and the carriage of the transport vehicle through an external rope to prevent the box body 1 from shaking in the carriage of the transport vehicle.

[0038] In a preferred embodiment, the bolt 111 is an elbow bolt. The lower part of the bolt 111 is provided with an external thread, and a nut 112 is further included. The nut 112 is threadedly connected to the lower part of the bolt 111. The nut 112 is arranged below the pin hole 110 at the top of the box body 1, and the pin hole 110 can prevent the nut 112 from passing through the pin hole 110. After the bolt 111 passes through the two pin holes 110 and is connected to the nut 112, since the bolt 111 is an elbow bolt, the bolt 111 and the nut 112 can lock the two vertically adjacent box bodies 1, avoiding vertical vibration and collision of the two vertically adjacent box bodies during transportation and preventing damage to the first pulley 109.

[0039] In a preferred embodiment, a conveying chain 114, a conveying track 115 and a positioning disk 117 are provided in the storage cavity 107. The conveying track 115 is fixedly installed on the bottom plate 103. The conveying track 115 is connected end to end. A sprocket 116 is rotatably installed on the conveying track 115. The conveying chain 114 is installed on the sprocket 116. The center of at least one sprocket 116 is provided with a connecting keyway. A first avoidance hole 105 is provided on the side wall of the box body 1. The first avoidance hole 105 and the connecting keyway are arranged in the same line. After the conveying power mechanism 203 passes through the first avoidance hole 105 and is connected with the connecting keyway, the conveying power mechanism 203 can drive the sprocket 116 to rotate, and the sprocket 116 drives the conveying chain 114 to move along the conveying track 115. A plurality of connecting blocks 120 are fixedly installed on the conveying chain 114. The connecting blocks 120 are fixedly connected to the positioning disk 117. A second pulley 121 is installed on the fixed disk. The second pulley 121 is connected to the conveying The track 115 is connected in a rolling manner. When the conveying chain 114 rotates, the positioning plate 117 can move along the conveying track 115 under the positioning action of the second pulley 121; a positioning cavity 1171 with an opening upward is provided in the positioning plate 117, and the positioning cavity 1171 is cylindrical. The positioning cavity 1171 is used to load bottled water 6. The cylindrical positioning cavity 1171 is adapted to the shape of the bottled water 6 to prevent the bottled water 6 from shaking. The positioning cavity 1171 can also prevent the bottled water 6 from slipping off the box body 1 during the transportation of the box body 1. Since the conveying track 115 is connected end to end, the positioning plate 117 can be driven by the conveying power mechanism 203 to circulate along the conveying track 115. The porter stands on the left or right side of the box body 1 and can continuously put the bottled water 6 into the positioning cavity 1171 of the circulating positioning plate 117, or continuously take out the bottled water 6 from the positioning cavity 1171 of the positioning plate 117. In the absence of a conveying power mechanism 203, a worker can also rotate the positioning plate 117 along the conveying track 115 by moving the bottled water 6 in the positioning cavity 1171, thereby rotating the bottled water 6 inside the storage cavity 107 to the left or right part of the box body 1 to facilitate taking out the bottled water 6.

[0040] Further, it further includes a jacking assembly 122. The jacking assembly 122 includes a pedal 1221, a lever 1222, and a jacking plate 1223. A third avoidance through hole 119 is provided at the bottom of the positioning disk 117. The third avoidance through hole 119 communicates with the positioning cavity 1171. The jacking plate 1223 is arranged below the third avoidance through hole 119. The jacking plate 1223 is hinged to one end of the lever 1222. The middle of the lever 1222 is hinged to the bottom plate 103. The other end of the lever 1222 is fixedly connected to the pedal 1221. A second avoidance hole 106 collinear with the third avoidance through hole 119 is provided on the bottom plate 103. The output end of the jacking power mechanism 204 passes through the second avoidance hole 106 and abuts against the jacking plate 1223 to drive the jacking plate 1223 to move upward, so as to lift the barreled water 6 in the positioning cavity 1171 upward, facilitating the removal of the barreled water from the positioning cavity 1171. In the case where the jacking power mechanism 204 is not connected, workers can also relatively easily remove the barreled water 6 from the positioning cavity 1171 by stepping on the pedal 1221 downward.

[0041] Such as Figures 4 - 6 , is a barreled water transfer system of the present invention;

[0042] The barreled water storage tank included also includes a traveling crane, a machine table 2, a conveyor belt 201, a conveyor belt power mechanism 202, a control center 3, a conveyor power mechanism 203, a jacking power mechanism 204, a second jacking plate 118, and a transport vehicle. The conveyor belt 201 is installed on the left part of the machine table 2. The conveyor belt power mechanism 202 is used to drive the conveyor belt 201 to convey rightward. A second track 206 is provided on the right part of the machine table 2. The first pulley 109 on the box body 1 is in rolling connection with the second track 206. A positioning notch 2061 is provided on the second track 206. The first pulley 109 can fall into the positioning notch 2061. The positioning disk 117 is arranged on the right side of the conveyor belt 201. The top of the positioning disk 117 is flush with the upper surface of the conveyor belt 201. The vertical projection of the positioning disk 117 is rectangular. The right end of the conveyor belt 201 is adjacent to the left side wall of the positioning disk 117. The conveyor power mechanism 203 and the jacking power mechanism 204 are both fixedly installed on the machine table 2. The output end of the jacking power mechanism 204 passes through the second avoidance through hole and abuts against the jacking plate 1223. The second jacking plate 118 is arranged in the positioning cavity 1171. The inner side wall of the second jacking plate 118 is in sliding connection with the inner wall of the positioning cavity 1171. The output end of the conveyor power mechanism 203 passes through the first avoidance hole 105 and is detachably connected to the sprocket 116. The conveyor power mechanism 203 is used to drive the conveyor chain 114 to move along the conveyor track 115. The conveyor belt power mechanism 202, the jacking power mechanism 204, and the conveyor power mechanism 203 are all electrically connected to the control center 3.

[0043] The working process of the barreled water transfer system of the present invention is:

[0044] The traveling crane lifts the box body 1 without loaded barreled water 6 through connection with the lifting ring 113, causing the first pulley 109 to slide and connect along the second track 206. After the box body 1 slides a certain distance along the second track 206, the traveling crane lowers the box body 1, and the first pulley 109 falls into the positioning notch 2061; the output end of the transmission power mechanism 203 passes through the first avoidance through-hole and is in transmission connection with the sprocket 116, and one positioning disk 117 in the storage cavity 107 moves to the right side of the conveyor belt 201;

[0045] The output end of the lifting power mechanism 204 passes through the second avoidance through-hole 106 and abuts against the lifting plate 1223. The lifting power mechanism 204 drives the lifting plate 1223 to move upward. After the lifting plate 1223 passes through the third avoidance through-hole 119, it drives the second lifting plate 118 to move upward, so that the upper surface of the second lifting plate 118 is flush with the upper surface of the conveyor belt 201; since the vertical projection of the positioning disk 117 is rectangular and the right end of the conveyor belt 201 is adjacent to the left side wall of the positioning disk 117, the barreled water 6 can smoothly move from the conveyor belt 201 to the second lifting plate 118;

[0046] After the conveyor belt 201 conveys the barreled water 6 to the right onto the second lifting plate 118, the output end of the lifting power mechanism 204 resets, and the lifting plate 1223 and the second lifting plate 118 descend, and one barreled water 6 falls into the positioning cavity 1171;

[0047] The transmission power mechanism 203 drives the transmission chain 114 to move, so that another positioning disk 117 without loaded barreled water 6 moves to the right side of the conveyor belt 201, and the conveyor belt 201 feeds another barreled water 6 into the positioning cavity 1171 of this positioning disk 117 until all the positioning cavities 1171 are filled with barreled water 6; the transmission power mechanism 203 can specifically select a combination of a cylinder and a servo motor. The cylinder is used to drive the servo motor to move up and down, and the servo motor is used to connect the sprocket 116;

[0048] The control center controls the disconnection between the transmission power mechanism 203 and the sprocket 116, and the control center controls the disconnection between the lifting power mechanism 204 and the lifting plate 1223;

[0049] The traveling crane lifts the box body 1 through the lifting ring 113, the first pulley 109 is disconnected from the positioning notch 2061, the traveling crane continues to move, the box body 1 is disconnected from the machine table 2 and stacked on the ground or another box body 1. When the barreled water 6 leaves the factory, the traveling crane stacks the box body 1 on the transport vehicle, connects the upper and lower adjacent box bodies 1 with the plug pin 111, and connects the lifting ring 113 and the transport vehicle with an external cable. Since the box bodies 1 can be stacked vertically, the barreled water 6 in the store can be stacked vertically in multiple layers, saving the space in the store.

[0050] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural transformation made by using the content of the specification and drawings of the present invention under the inventive concept of the present invention, or directly or indirectly applied to other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. A barreled water storage tank, characterized in that: It includes a box body, which includes a top plate, a front plate, a bottom plate and a rear plate fixedly connected in sequence. A storage cavity is formed between the top plate, the front plate, the bottom plate and the rear plate. A chute is provided on the top plate, and a first pulley is provided on the bottom plate. The number of the box bodies is multiple, and the vertically adjacent box bodies are slidably connected to each other through the first pulley and the chute. A bolt is installed at the lower part of the box body, and pin holes are provided at the top and bottom of the box body. The bolt on the upper box body can pass through the pin hole at the bottom of the box body and be inserted into the pin hole at the top of the lower box body. Hoisting rings are fixedly arranged on the front side and the rear side of the box body; A conveyor chain, a conveyor track and a positioning disk are arranged in the storage cavity. The conveyor track is fixedly installed on the bottom plate, and the conveyor track is connected end to end. A sprocket is rotatably installed on the conveyor track, the conveyor chain is installed on the sprocket, a connecting keyway is provided at the center of at least one sprocket, a first avoidance hole is provided on the side wall of the box body, and the first avoidance hole is arranged collinearly with the connecting keyway. A plurality of connecting blocks are fixedly installed on the conveyor chain, the connecting blocks are fixedly connected with the positioning disk, a second pulley is installed on the fixed disk, and the second pulley is in rolling connection with the conveyor track; A positioning cavity with an upward opening is arranged in the positioning disk, and the positioning cavity is cylindrical.

2. The barreled water storage tank according to claim 1, characterized in that: The bolt is an elbow bolt, an external thread is provided at the lower part of the bolt, and a nut is further included. The nut is threadedly connected with the lower part of the bolt, and the nut is arranged below the pin hole at the top of the box body. The pin hole can prevent the nut from passing through the pin hole.

3. The barreled water storage tank according to claim 1, wherein: A jacking assembly is further included, and the jacking assembly includes a pedal, a lever and a jacking plate. A third avoidance through hole is provided at the bottom of the positioning disk, and the third avoidance through hole is communicated with the positioning cavity. The jacking plate is arranged below the third avoidance through hole. The jacking plate is hinged to one end of the lever, the middle part of the lever is hinged to the bottom plate, the other end of the lever is fixedly connected with the pedal, and a second avoidance hole collinear with the third avoidance through hole is provided on the bottom plate.

4. A barreled water transfer system, characterized in that: It includes the barreled water storage box as described in claim 3, and further includes a machine table, a conveyor belt, a conveyor belt power mechanism, a control center, a conveying power mechanism, a jacking power mechanism and a second jacking plate; The conveyor belt is installed on the left part of the machine table, and the conveyor belt power mechanism is used to drive the conveyor belt to convey rightward; A second track is provided on the right part of the machine table, and the first pulley on the box body is in rolling connection with the second track. A positioning notch is provided on the second track, and the first pulley can fall into the positioning notch; The positioning disk is arranged on the right side of the conveyor belt, the top surface of the positioning disk is flush with the upper surface of the conveyor belt, the vertical projection of the positioning disk is rectangular, and the right end of the conveyor belt is adjacent to the left side wall of the positioning disk; The conveying power mechanism and the jacking power mechanism are both fixedly installed on the machine table, and the output end of the jacking power mechanism passes through the second avoidance through hole and abuts against the jacking plate; The second lifting plate is arranged in the positioning cavity, and the inner side wall of the second lifting plate is slidably connected to the inner wall of the positioning cavity; The output end of the conveying power mechanism passes through the first avoidance hole and is detachably connected to the sprocket, and the conveying power mechanism is used to drive the conveying chain to move along the conveying track; The conveyor belt power mechanism, the lifting power mechanism and the conveying power mechanism are all electrically connected to the control center.

5. The barreled water transfer system according to claim 4, characterized in that: It further includes a traveling crane; the traveling crane lifts the box without loaded barreled water by connecting with the hanging ring, the first pulley is slidably connected to the second track, after the box slides a certain distance along the second track, the traveling crane lowers the box, and the first pulley falls into the positioning notch; The output end of the conveying power mechanism passes through the first avoidance through-hole and is in transmission connection with the sprocket, and one of the positioning disks in the storage cavity moves to the right side of the conveyor belt; The output end of the lifting power mechanism passes through the second avoidance through-hole and abuts against the lifting plate, the lifting power mechanism drives the lifting plate to move upward, after the lifting plate passes through the third avoidance through-hole, it drives the second lifting plate to move upward, so that the upper surface of the second lifting plate is flush with the upper surface of the conveyor belt; The conveyor belt conveys the barreled water to the second lifting plate to the right, the output end of the lifting power mechanism resets, the lifting plate and the second lifting plate descend, and a barreled water falls into the positioning cavity; The conveying power mechanism drives the conveying chain to move, so that another positioning disk without loaded barreled water moves to the right side of the conveyor belt, and the conveyor belt feeds another barreled water into the positioning cavity of this positioning disk until all the positioning cavities are filled with barreled water; The conveying power mechanism is disconnected from the sprocket, and the lifting power mechanism is disconnected from the pedal; The traveling crane lifts the box, the first pulley is disconnected from the positioning notch, and the box is disconnected from the machine table and stacked on the ground or another box.

6. The barreled water transfer system according to claim 5, wherein: The traveling crane lifts the box and stacks it on the transport vehicle, uses bolts to connect the upper and lower adjacent boxes, and uses cables to connect the hanging ring and the transport vehicle.

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