CN220745280U - Stacker crane for mineral water production - Google Patents

Stacker crane for mineral water production Download PDF

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Publication number
CN220745280U
CN220745280U CN202322477058.2U CN202322477058U CN220745280U CN 220745280 U CN220745280 U CN 220745280U CN 202322477058 U CN202322477058 U CN 202322477058U CN 220745280 U CN220745280 U CN 220745280U
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China
Prior art keywords
lifting
mineral water
assembly
fixedly arranged
top end
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CN202322477058.2U
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Chinese (zh)
Inventor
谢扬华
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Leiyang Wufengxian Agriculture And Forestry Technology Service Co ltd
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Leiyang Wufengxian Agriculture And Forestry Technology Service Co ltd
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Priority to CN202322477058.2U priority Critical patent/CN220745280U/en
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Abstract

The utility model provides a stacker crane for mineral water production, which relates to the technical field of mineral water stacking and comprises a stacker crane body, a lifting motor and a servo motor, wherein a moving wheel is fixedly arranged at the bottom end of the stacker crane body, a push rod is fixedly arranged at the top end of the stacker crane body, a weight is arranged at the top end of the stacker crane body, a lifting driving assembly is arranged at the top end of the stacker crane body, a lifting assembly is arranged at the top end of the stacker crane body, and a limit frame is arranged on the side surface of the lifting assembly. According to the utility model, through the stacking support component, after the distance between the two groups of bucket clamping blocks is adjusted to a proper position through the rotation of the servo motor, the mineral water bucket to be stacked is placed at the top end of the bucket supporting plate, the mineral water bucket can be stacked after the stacking support component is lifted, and when the mineral water bucket is well supported, the two groups of bucket clamping blocks are separated, so that the bucket clamping blocks can be conveniently removed from the bottom end of the mineral water bucket.

Description

Stacker crane for mineral water production
Technical Field
The utility model relates to the technical field of mineral water stacking, in particular to a stacker crane for mineral water production.
Background
Water is an indispensable resource in daily life of people, and in order to facilitate people to drink mineral water, the mineral water is usually filled into a water bucket for storage, and the produced barreled mineral water needs to be stacked, so that a stacker is needed;
defects of the traditional stacker crane are as follows: when using the hacking machine to carry out the pile up neatly with the mineral water cask and put, will generally use the layer board on the hacking machine to carry the cask to the eminence and pile up neatly, but because most hacking machine layer boards are solid, after accomplishing the pile up neatly with the mineral water cask, inconvenient drawing out the layer board from the bottom of cask.
There is therefore a need for a palletizer that solves the above problems.
Disclosure of Invention
The utility model aims to solve the defects in the prior art and solve the problem that most of the existing stacker crane proposed in the prior art is inconvenient to withdraw the supporting plate for conveying the bucket from the bottom end of the bucket after stacking the mineral water bucket.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides a stacker crane for mineral water production, includes stacker crane body, elevator motor and servo motor, the bottom fixed mounting of stacker crane body has the removal wheel, the top fixed mounting of stacker crane body has the catch bar, the counter weight is installed on the top of stacker crane body, elevator drive assembly has been installed on the top of stacker crane body, elevator assembly has been installed on the top of stacker crane body, limit frame has been installed to elevator assembly's side;
the inside of spacing frame is installed the pile up neatly and is held in the palm thing subassembly, pile up neatly holds in the palm the fixed surface of thing subassembly and installs the secondary bevel gear, the inside of secondary bevel gear is inserted and is equipped with the telescopic screw, the one end of telescopic screw has been installed and has been removed the slider, the side fixed mounting who removes the slider has cask grip block, and the fixed surface of cask grip block installs the cask layer board.
Preferably, a lifting motor is arranged in the lifting driving assembly, a transmission shaft is fixedly arranged on an output shaft of the lifting motor, and an output gear is fixedly arranged on the side face of the transmission shaft.
Preferably, the inside of lifting unit has installed drive screw, drive screw's bottom fixed mounting has the transfer line, the fixed surface of transfer line installs drive gear, the fixed surface of transfer line installs the baffle, the internal thread slider has been installed to the surface of drive screw, and the side fixed mounting of internal thread slider has the connection slider.
Preferably, a set of circular hole groove is seted up to lift drive assembly's side, the circular hole groove size looks adaptation that drive shaft and lift drive assembly side were seted up, output gear meshes with drive gear's surface, output gear and drive gear are the cooperation component, a set of rectangular hole groove is seted up in lift assembly's left side, the rectangular hole groove size looks adaptation that connecting slider and lift assembly left side were seted up, a set of circular screw has been seted up to the inside of internal thread slider, the circular screw size looks adaptation that sets up inside drive screw and the internal thread slider.
Preferably, a motor box is arranged at the top end of the limiting frame, a servo motor is arranged in the motor box, and a first conical gear is fixedly arranged on an output shaft of the servo motor.
Preferably, the surface of the first conical gear is meshed with the surface of the second conical gear, the first conical gear and the second conical gear are matched components, two groups of threads which are opposite to each other are arranged on the inner wall of the stacking support component, two groups of telescopic screws are arranged in total, the threads on the surfaces of the two groups of telescopic screws are opposite to each other, and the stacking support component and the telescopic screws are matched components.
Compared with the prior art, the utility model has the beneficial effects that: through being provided with the pile up neatly and hold in the palm thing subassembly, make the interval adjustment of two sets of cask grip blocks to suitable position back through servo motor's rotation, place the mineral water cask that needs pile up neatly on cask layer board top, can pile up neatly mineral water cask after holding in the palm thing subassembly with the pile up neatly, separate between two sets of cask grip blocks after mineral water cask frame is good again, can be convenient for withdraw the cask grip block from mineral water cask bottom through this mode.
Drawings
FIG. 1 shows a schematic overall structure provided in accordance with an embodiment of the present utility model;
FIG. 2 illustrates a schematic cross-sectional view of an overall structure provided in accordance with an embodiment of the present utility model;
fig. 3 shows a schematic structural view of a palletizing assembly according to an embodiment of the present utility model.
Legend description:
1. a stacker body; 101. a moving wheel; 102. a push rod; 103. adding a weight; 2. a lifting driving assembly; 201. a lifting motor; 202. a transmission shaft; 203. an output gear; 3. a lifting assembly; 301. a drive screw; 302. a transmission rod; 303. a transmission gear; 304. a partition plate; 305. an internal thread slider; 306. the connecting slide block; 4. a limit frame; 401. a motor case; 402. a servo motor; 403. a first bevel gear; 5. a palletizing assembly; 501. a secondary bevel gear; 502. a telescopic screw; 503. moving the slide block; 504. a bucket clamping block; 505. a bucket supporting plate.
Detailed Description
In order that the above objects, features and advantages of the utility model will be more clearly understood, a further description of the utility model will be rendered by reference to the appended drawings and examples. It should be noted that, in the case of no conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, however, the present utility model may be practiced otherwise than as described herein, and therefore the present utility model is not limited to the specific embodiments of the disclosure that follow.
As shown in fig. 1-3, in the embodiment of the present utility model: a stacker crane for mineral water production comprises a stacker crane body 1, a lifting motor 201 and a servo motor 402.
In specific operation, a movable wheel 101 is fixedly arranged at the bottom end of a stacker body 1, a push rod 102 is fixedly arranged at the top end of the stacker body 1, a weighting object 103 is arranged at the top end of the stacker body 1, a lifting driving component 2 is arranged at the top end of the stacker body 1, a lifting component 3 is arranged at the top end of the stacker body 1, and a limit frame 4 is arranged on the side surface of the lifting component 3;
the inside of spacing frame 4 is installed pile up neatly and is held in the palm thing subassembly 5, and pile up neatly holds in the palm thing subassembly 5 surface mounting has two conical gear 501, and the inside of two conical gear 501 is inserted and is equipped with telescopic screw 502, and movable slider 503 is installed to telescopic screw 502's one end, and movable slider 503's side fixed mounting has cask grip block 504, and the surface mounting of cask grip block 504 has cask layer board 505.
The lifting motor 201 is arranged in the lifting driving assembly 2, a transmission shaft 202 is fixedly arranged on an output shaft of the lifting motor 201, and an output gear 203 is fixedly arranged on the side surface of the transmission shaft 202.
The inside of lifting assembly 3 has installed drive screw 301, and drive screw 301's bottom fixed mounting has transfer line 302, and transfer line 302's fixed surface installs drive gear 303, and transfer line 302's fixed surface installs baffle 304, and drive screw 301's surface has installed internal thread slider 305, and the side fixed mounting of internal thread slider 305 has connection slider 306.
A group of circular hole grooves are formed in the side face of the lifting driving assembly 2, the transmission shaft 202 is matched with the circular hole grooves formed in the side face of the lifting driving assembly 2 in size, the output gear 203 is meshed with the surface of the transmission gear 303, the output gear 203 and the transmission gear 303 are matched components, a group of rectangular hole grooves are formed in the left side of the lifting assembly 3, the connecting sliding block 306 is matched with the rectangular hole grooves formed in the left side of the lifting assembly 3 in size, a group of circular screw holes are formed in the inner portion of the inner threaded sliding block 305, and the transmission screw 301 is matched with the circular screw holes formed in the inner portion of the inner threaded sliding block 305 in size.
A motor box 401 is arranged at the top end of the limit frame 4, a servo motor 402 is arranged in the motor box 401, and a first conical gear 403 is fixedly arranged on an output shaft of the servo motor 402.
The surface of the first conical gear 403 is meshed with the surface of the second conical gear 501, the first conical gear 403 and the second conical gear 501 are matched components, two groups of mutually opposite threads are arranged on the inner wall of the stacking support assembly 5, two groups of telescopic screws 502 are arranged in total, the threads on the surfaces of the two groups of telescopic screws 502 are mutually opposite, and the stacking support assembly 5 and the telescopic screws 502 are matched components.
In summary, the working principle of the utility model is as follows: when barreled mineral water needs to be stacked, the first bevel gear 403 can be rotated through rotation of the servo motor 402, the second bevel gear 501 can be rotated through rotation of the first bevel gear 403, the stacking support assembly 5 can be rotated through rotation of the second bevel gear 501, the telescopic screw 502 can be telescopic through rotation of the stacking support assembly 5, the movable slide block 503 can be moved through telescopic screw 502, the position of the water barrel clamping block 504 can be adjusted through movement of the movable slide block 503, two groups of water barrel clamping blocks 504 are adjusted to a proper position, then the mineral water barrel is placed at the top end of the water barrel supporting plate 505, the mineral water barrel is clamped through the water barrel clamping block 504, after the mineral water barrel is placed, the transmission screw 301 can be rotated through rotation of the lifting motor 201, the internal thread slide block 305 can be upwards slid through rotation of the transmission screw 301, the stacking support assembly 5 can be lifted, when the stacking support assembly 5 is lifted to a certain height, the water barrel clamping block 504 can be moved by pushing the movable slide block 503, the water barrel clamping block 504 can be moved away, the two groups of mineral water barrels can be separated through the water barrel clamping block 505, and the two groups of mineral water barrels can be separated through the vibration of the supporting plate 505, and the two groups of mineral water barrels can be clamped by the means of being separated.
The present utility model is not limited to the above embodiments, and any equivalent embodiments which can be changed or modified by the technical disclosure described above can be applied to other fields, but any simple modification, equivalent changes and modification to the above embodiments according to the technical matter of the present utility model will still fall within the scope of the technical disclosure.

Claims (6)

1. The utility model provides a stacker crane for mineral water production, includes stacker crane body (1), elevator motor (201) and servo motor (402), its characterized in that: the automatic lifting device comprises a stacker body (1), wherein a movable wheel (101) is fixedly arranged at the bottom end of the stacker body (1), a push rod (102) is fixedly arranged at the top end of the stacker body (1), a heavy object (103) is arranged at the top end of the stacker body (1), a lifting driving assembly (2) is arranged at the top end of the stacker body (1), a lifting assembly (3) is arranged at the top end of the stacker body (1), and a limiting frame (4) is arranged on the side surface of the lifting assembly (3);
the inside of spacing frame (4) is installed pile up neatly and is held in the palm thing subassembly (5), pile up neatly holds in the palm the fixed surface of thing subassembly (5) and installs two bevel gears (501), the inside of two bevel gears (501) is inserted and is equipped with telescopic screw (502), movable slider (503) has been installed to one end of telescopic screw (502), the side fixed mounting of movable slider (503) has cask grip block (504), and the fixed surface of cask grip block (504) installs cask layer board (505).
2. A palletizer for mineral water production according to claim 1, characterized in that: the lifting driving assembly is characterized in that a lifting motor (201) is arranged in the lifting driving assembly (2), a transmission shaft (202) is fixedly arranged on an output shaft of the lifting motor (201), and an output gear (203) is fixedly arranged on the side face of the transmission shaft (202).
3. A palletizer for mineral water production according to claim 2, characterized in that: the lifting assembly is characterized in that a transmission screw (301) is arranged in the lifting assembly (3), a transmission rod (302) is fixedly arranged at the bottom end of the transmission screw (301), a transmission gear (303) is fixedly arranged on the surface of the transmission rod (302), a partition plate (304) is fixedly arranged on the surface of the transmission rod (302), an internal thread sliding block (305) is arranged on the surface of the transmission screw (301), and a connecting sliding block (306) is fixedly arranged on the side face of the internal thread sliding block (305).
4. A palletizer for mineral water production according to claim 3, characterized in that: the lifting drive assembly comprises a lifting assembly (2), a transmission shaft (202) and a driving gear (303), wherein the side surface of the lifting drive assembly (2) is provided with a set of circular hole grooves, the transmission shaft (202) is matched with the circular hole grooves formed in the side surface of the lifting drive assembly (2), an output gear (203) is meshed with the surface of the driving gear (303), the output gear (203) and the driving gear (303) are matched components, the left side of the lifting assembly (3) is provided with a set of rectangular hole grooves, a connecting sliding block (306) is matched with the rectangular hole grooves formed in the left side of the lifting assembly (3), a set of circular screw holes are formed in the inner side of the inner threaded sliding block (305), and the driving screw (301) is matched with the circular screw holes formed in the inner threaded sliding block (305).
5. A palletizer for mineral water production according to claim 1, characterized in that: the motor box (401) is arranged at the top end of the limiting frame (4), the servo motor (402) is arranged in the motor box (401), and a first conical gear (403) is fixedly arranged on an output shaft of the servo motor (402).
6. A palletizer for mineral water production according to claim 5, wherein: the surface of a number one conical gear (403) is meshed with the surface of a number two conical gear (501), the number one conical gear (403) and the number two conical gear (501) are matched components, two groups of mutually opposite threads are arranged on the inner wall of the stacking support component (5), two groups of telescopic screws (502) are arranged in total, the threads on the surfaces of the two groups of telescopic screws (502) are mutually opposite, and the stacking support component (5) and the telescopic screws (502) are matched components.
CN202322477058.2U 2023-09-12 2023-09-12 Stacker crane for mineral water production Active CN220745280U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322477058.2U CN220745280U (en) 2023-09-12 2023-09-12 Stacker crane for mineral water production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322477058.2U CN220745280U (en) 2023-09-12 2023-09-12 Stacker crane for mineral water production

Publications (1)

Publication Number Publication Date
CN220745280U true CN220745280U (en) 2024-04-09

Family

ID=90571274

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322477058.2U Active CN220745280U (en) 2023-09-12 2023-09-12 Stacker crane for mineral water production

Country Status (1)

Country Link
CN (1) CN220745280U (en)

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