Wine box production device capable of being turned over
The wine box production device addresses inefficiencies in existing systems by integrating a chain conveyor and pivoting mechanism for stable and timely flipping, enhancing operational efficiency and adaptability.
Patent Information
- Application Number
- CN202510451084.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-07-15
AI Technical Summary
The existing wine box production flip device is inconvenient to combine and assemble and assist in stable conveying and timely flipping according to production needs, which affects the operation and use efficiency.
A wine box production device including assembly box, conveying chain, transmission gear, transmission shaft, transmission rod, toggle rack and motor is designed. Through the cooperation of the transmission system and toggle rack, the wine box can be stable and timely flipped.
It improves the adaptability and practicality of the wine box production device, realizes convenient and efficient transportation and flip operations according to production needs, and reduces the waste of manpower and material resources.
Smart Images

Figure CN120307696A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of packaging, transportation and processing, and particularly to a wine box production device capable of being turned over. Background Art
[0002] In the field of modern commodity packaging, as an important packaging carrier for wine products, the production process and quality requirements of wine boxes are constantly improving. The production process of wine boxes involves multiple complex links, such as printing, bronzing, die-cutting, folding, pasting, etc., and the turning-over operation plays a key role in it, affecting the production efficiency and quality of wine boxes; The traditional manual turning-over method, although having a certain degree of flexibility, has obvious limitations. Manual operation is inefficient and difficult to meet the needs of large-scale and high-efficiency modern production. With the continuous development and iteration of technology and mechanical equipment, the emergence of mechanical equipment for turning-over auxiliary devices has greatly improved the production efficiency; In this regard, Chinese Patent Application No.: CN202321642012.5 discloses an automatically turnable wine box production line, including a control mechanism, a bottom mechanism and a turning-over mechanism. The bottom mechanism is arranged on the back of the control mechanism, and the turning-over mechanism is arranged on the upper surface of the bottom mechanism. The control mechanism includes a control box, control buttons, a control panel, a control module and a processing module. The control buttons are fixedly connected to the front of the control box, the control module is fixedly connected to the inner wall of the control box, and the control panel is fixedly connected to the front of the control box. This automatically turnable wine box production line can arbitrarily adjust the clamping height of products with different thicknesses through the lifting of the lifting rod arranged in the groove, can control the clamping and placement of the clamping through the rotation of the rotating cylinder, and rotates and extends the product clamped by the clamping through the rotating cylinder; However, the existing wine box production turning-over device is inconvenient for combined assembly, auxiliary stable transportation and timely turning-over according to production needs, affecting the operation and use efficiency; Therefore, in order to solve the above problems, a wine box production device capable of being turned over is proposed. Summary of the Invention
[0003] The purpose of the present invention is to provide a wine box production device capable of being turned over to solve the problem that the existing wine box production turning-over device is inconvenient for combined assembly, auxiliary stable transportation and timely turning-over according to production needs, affecting the operation and use efficiency as proposed in the above background art.
[0004] To achieve the above object, the present invention provides the following technical solution: A wine box production device that can be turned over, including an assembly box. The bottom of the assembly box is supported by support stands, and the outside of the assembly box is covered with an assembly stand. A conveying chain is assembled inside the assembly box, and a transmission gear is engaged inside the conveying chain. A transmission shaft is assembled inside the transmission gear. A transmission rod is assembled on the outer wall surface of the conveying chain, and the front end of the transmission rod is inserted through the front side wall of the assembly box. A placement support is fixed at the front end of the transmission rod. An upper shifting gear is fixed at the rear side of the transmission rod, and a shifting rack is engaged above the upper shifting gear. The shifting rack is clamped and assembled on the upper part of the rear side wall of the assembly box through an assembly cross beam.
[0005] As a further step of this solution, both ends of the transmission shaft are supported and assembled on the inner wall of the assembly box through pedestal bearings. The rear end of the transmission shaft is inserted and assembled in the upper part of the inner part of the support stand through a bearing. The rear end of the transmission shaft is connected to a reducer through a coupling. The input end of the reducer is equipped with a motor, and the motor and the reducer are supported by a support base. The support base is supported on the rear side of the lower part of the support stand.
[0006] As a further step of this solution, a front sliding groove corresponding to the transmission rod is opened on the front side wall of the assembly box, and the front sliding groove coincides with the conveying and moving track of the conveying chain. An inner support is supported on the inner side of the front side wall of the assembly box, and the inner support is fixed in the middle of the rear inner wall of the assembly box. A front blocking component is assembled in the middle of the front side wall of the assembly box.
[0007] As a further step of this solution, a bearing support is supported in the middle of the transmission rod, and the bottom of the bearing support is supported and assembled on the outer wall of one of the link buckles in the conveying chain.
[0008] As a further step of this solution, a clamping seat is fixed on the rear side of the assembly cross beam, and the clamping seat is clamped on the upper part of the rear side wall of the assembly box. A screw pin is inserted and threaded on the rear side wall of the clamping seat. The inner end of the screw pin is supported and assembled with a clamping plate, and the inner wall of the clamping plate abuts against the outer wall of the rear side of the assembly box.
[0009] As a further step of this solution, both ends of the shifting rack are arranged in an upward arc shape. A clamping pad is fixed on the inner wall of the clamping plate. A clamping sleeve is sleeved on the inner end of the screw pin, and the clamping sleeve is assembled on the outer wall of the clamping plate. A clamping ring is clamped inside the clamping sleeve, and the clamping ring is fixed at the inner end of the screw pin. A torsion block is fixed on the outer end of the screw pin.
[0010] As a further aspect of this solution, the placement support includes a mounting bracket fixed to the front end of the transmission rod. A horizontal middle plate is fixedly provided in the middle of the front side of the mounting bracket. An upper sliding member and a lower sliding member are symmetrically arranged above and below the horizontal middle plate. Vertical screw rods are correspondingly threadedly connected inside the upper sliding member and the lower sliding member, and the threads at the upper and lower ends of the vertical screw rods are symmetrically opposite. The middle part and the upper and lower ends of the vertical screw rod are respectively inserted and assembled through bearings inside the middle part and the upper and lower walls of the mounting bracket. Upper torsion caps are arranged on the outer sides of the upper and lower walls of the mounting bracket, and the upper torsion caps are fixed to the outer walls of the upper and lower ends of the vertical screw rod.
[0011] As a further aspect of this solution, left sliding arms and right sliding arms are symmetrically arranged on both sides of the upper sliding member and the lower sliding member. Horizontal screw rods are threadedly inserted inside the left sliding arms and the right sliding arms, and the threads at both ends of the horizontal screw rods are symmetrically opposite. The middle part of the horizontal screw rod is inserted and assembled through a bearing inside the upper sliding member. Side sliding plates are sleeved and assembled at both ends of the horizontal screw rod through bearings. An inner sliding foot is integrally fixed to one side of the side sliding plate close to the side wall of the mounting bracket, and the inner sliding foot is inserted inside the side walls of the mounting bracket. Corresponding inner sliding grooves are provided inside the side walls of the mounting bracket. A corresponding side torsion cap is arranged on the outer side of the side sliding plate, and the side torsion cap is fixed to the outer end of the horizontal screw rod.
[0012] As a further aspect of this solution, horizontal sliding rods are inserted through the inner sides of the left sliding arms and the right sliding arms, and the horizontal sliding rods are fixed between the inner walls of the upper sliding member and the side sliding plate. Vertical sliding rods are also inserted through the inner sides of the upper sliding member and the lower sliding member, and the vertical sliding rods are fixed between the inner wall of the horizontal middle plate and the mounting bracket. The outer walls of the left sliding arms and the right sliding arms are provided with arc-shaped chamfers, and a front frame supports the periphery of the front side wall of the mounting bracket.
[0013] As a further aspect of this solution, the front blocking assembly includes a horizontal baffle. The inner end of the horizontal baffle is fixed to the middle of the front side outer wall of the assembly box. An inner horizontal plate is inserted inside the horizontal baffle. An outer horizontal frame is integrally fixed to the outer side of the inner horizontal plate. A vertical baffle is inserted into the upper part of the outer horizontal frame, and a lower clamping strip is fixed to the bottom of the vertical baffle. The lower clamping strip is clamped inside the outer horizontal frame. A lower clamping groove corresponding to the lower clamping strip is provided inside the outer horizontal frame.
[0014] Compared with the prior art, the beneficial effect of the present invention is that it is convenient to perform combined assembly for auxiliary stable transportation and timely flipping according to production needs, which is beneficial to the operation and use efficiency. 1. By setting a conveying chain, a transmission rod and a toggle rack, under the assembly of the transmission gear and the transmission shaft, the conveying chain is driven to rotate and move through the reducer and the motor drive, so that when the conveying chain drives the transmission rod to move to convey the wine box supported at the front end of the transmission rod, the upper toggle gear and the toggle rack are meshed and assembled, so that it is convenient to rotate synchronously when the transmission rod moves, thereby driving the wine box supported by the front side of the transmission rod to support and turn over, so as to facilitate the stable support and moving transportation while assisting the turning over, making the operation more convenient and efficient. Through this design, it is helpful to improve the adaptability and practicality of the wine box production device that can be turned over; 2. By setting the toggle rack, when assembling and using, according to the needs of the production equipment, such as the time and assembly requirements of printing or hot stamping and laminating, when it is necessary to toggle the rack to engage the upper gear to assist the transmission rod in toggling and flipping, the toggle rack is supported in the corresponding area of the rear side wall of the assembly box by the toggle rack and the card seat, and the auxiliary left and right sliding adjustment is performed according to the use needs, so as to facilitate the change of the required flipping position, making the subsequent operation more convenient and easy to operate in time. Through this design, it is beneficial to improve the adaptability and practicality of the flippable wine box production device; 3. By setting the placement support, when assembling and using, by assembling the mounting frame to the right, the upper slide, the lower slide, the left slide and the right slide cooperate to facilitate the relative support of the wine box, making the subsequent transportation and turning over more convenient and efficient, that is, by adjusting the upper slide and the lower slide to open up and down, when the wine box is set on the front end of the placement support, the interior of the wine box is supported up and down, and then the upper and lower corners of the wine box are supported with the cooperation of the left slide and the right slide, so as to achieve stable support assembly of the interior of the wine box, making the subsequent operation more convenient. Through this design, it is beneficial to improve the adaptability and practicality of the wine box production device that can be turned over; 4. In addition to the above structural design, the setting of the front block component facilitates the blocking of the wine box mounted on the front end of the placement support during auxiliary transportation and process operations to avoid contamination of the products below. At the same time, with the setting of the assembly stand, it is convenient for the auxiliary assembly of related production equipment, such as the auxiliary assembly or support or hoisting of printing, hot stamping or laminating equipment for subsequent operations. It is convenient to auxiliary support it above the front of the placement support to perform corresponding process operations on the wine box. Other brackets can also be selected for support assembly and placement as needed. This design is conducive to improving the adaptability and practicality of the flip-over wine box production device. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0016] Figure 1 It is a side perspective schematic diagram of the internal structure of the assembly box of the present invention; Figure 2 It is a front view stereoscopic schematic diagram of the overall structure of the present invention; Figure 3 It is a side cross-sectional perspective schematic diagram of the structure of the present invention; Figure 4 It is a top view cross-sectional perspective schematic diagram of the structure of the present invention; Figure 5 It is a front perspective schematic diagram of the transmission structure of the present invention; Figure 6 It is a side perspective schematic diagram of the local structure of the transmission rod of the present invention; Figure 7 It is a side perspective schematic diagram of a local structure for placing a support member when the present invention is used; Figure 8 It is a side cross-sectional perspective schematic diagram of a local structure of a toggle rack of the present invention; Figure 9 It is a side cross-sectional perspective schematic diagram of the partial structure of the front windshield assembly of the present invention.
[0017] In the figure: 100, assembly box; 101, inner bracket; 102, front slide; 110, support stand; 120, assembly stand; 200, conveyor chain; 210, transmission gear; 220, transmission shaft; 221, bearing with seat; 230, reducer; 231, motor; 232, support seat; 300, transmission rod; 301, bracket with bearing; 310, upper shifting gear; 400, shifting rack; 410, assembly crossbeam; 420, clamping seat; 421, screw pin; 422, clamping plate; 423, clamping pad; 424, clamping sleeve; 425, clamping ring; 426, torque block; 500, support member; 510, mounting frame; 511, horizontal middle plate; 512, front frame; 520, upper slide; 521, vertical screw; 522, upper torsion cap; 523, vertical slide bar; 530, lower slide; 540, left slide arm; 541, horizontal screw; 542, side slide; 543, inner slide foot; 544, inner slide groove; 545, side torsion cap; 546, horizontal slide bar; 550, right slide arm; 600, front block assembly; 610, horizontal baffle; 611, inner horizontal plate; 612, outer horizontal frame; 620, vertical baffle; 621, lower clamping strip; 622, lower clamping groove. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0019] Please refer to Figures 1-9 , an embodiment provided by the present invention: a wine box production device that can be turned over, including an assembly box 100, a support stand 110 is supported at the bottom of the assembly box 100, and an assembly stand 120 is covered outside the assembly box 100. A conveyor chain 200 is assembled inside the assembly box 100, and a transmission gear 210 is engaged inside the conveyor chain 200. A transmission shaft 220 is assembled inside the transmission gear 210. A transmission rod 300 is assembled on the outer wall surface of the conveyor chain 200, and the front end of the transmission rod 300 is inserted through the front side wall of the assembly box 100. A placement support 500 is fixed at the front end of the transmission rod 300. An upper shift gear 310 is fixed at the rear side of the transmission rod 300, and a shift rack 400 is engaged above the upper shift gear 310. The shift rack 400 is clamped and assembled on the upper part of the rear side wall of the assembly box 100 through an assembly cross beam 410. Thus, during assembly and use, it is convenient to perform auxiliary movement and auxiliary turning according to the usage requirements. More specifically, in this embodiment, both ends of the transmission shaft 220 are supported and assembled on the inner wall of the assembly box 100 through pedestal bearings 221. The rear end of the transmission shaft 220 is inserted and assembled inside the upper end of the support stand 110 through a bearing. The rear end of the transmission shaft 220 is connected to a reducer 230 through a coupling. An electric motor 231 is assembled at the input end of the reducer 230. The electric motor 231 and the reducer 230 are supported by a support base 232, and the support base 232 is supported on the rear side of the lower part of the support stand 110. Thus, during assembly and use, it is convenient to stably output and drive the conveyor chain 200, making subsequent operations and use more convenient. More specifically, in this embodiment, a front chute 102 corresponding to the transmission rod 300 is opened on the front side wall of the assembly box 100, and the front chute 102 coincides with the conveying and moving track of the conveyor chain 200. An inner support 101 is supported inside the front side wall of the assembly box 100, and the inner support 101 is fixed in the middle of the rear inner wall of the assembly box 100. A front blocking assembly 600 is assembled in the middle of the front side wall of the assembly box 100. Thus, it is convenient to assist in the auxiliary movement and rotation of the transmission rod 300, making the operation and use more convenient. More specifically in this embodiment, a bearing bracket 301 is supported in the middle of the transmission rod 300, and the bottom of the bearing bracket 301 is supported and assembled on the outer wall of one of the links in the conveying chain 200, so as to facilitate the assembly between the transmission rod 300 and the conveying chain 200, and does not interfere with the transmission operation of the transmission gear 210 on the conveying chain 200; More specifically in this embodiment, a clamping seat 420 is fixedly provided on the rear side of the assembly cross beam 410, and the clamping seat 420 is clamped on the upper part of the rear side wall of the assembly box 100. A screw pin 421 is threadedly inserted into the rear side wall of the clamping seat 420, and a clamping plate 422 is supported and assembled at the inner end of the screw pin 421, and the inner wall of the clamping plate 422 abuts against the outer wall of the rear side of the assembly box 100. Thus, during assembly and use, it aids in clamping the assembly cross beam 410 and the clamping seat 420, and facilitates the movement of the toggle rack 400, such that during subsequent use, it can be moved as needed for timely turning operations; More specifically in this embodiment, the two side ends of the toggle rack 400 are upwardly curved. A clamping pad 423 is fixedly provided on the inner wall of the clamping plate 422. A bushing 424 is sleeved at the inner end of the screw pin 421, and the bushing 424 is assembled on the outer wall of the clamping plate 422. A snap ring 425 is clamped inside the bushing 424, and the snap ring 425 is fixed to the inner end of the screw pin 421. A torsion block 426 is fixedly provided at the outer end of the screw pin 421. Thus, during assembly and use, it facilitates the rotation of the screw pin 421 to drive the clamping plate 422 to abut and support the outer wall of the rear side of the assembly box 100, enabling the clamping seat 420 to be stably limited and supported, making subsequent assembly operations more convenient and efficient; More specifically in this embodiment, the placement support member 500 includes a mounting frame 510 fixed to the front end of the transmission rod 300. A transverse middle plate 511 is fixedly provided in the middle of the front side of the mounting frame 510. An upper sliding member 520 and a lower sliding member 530 are symmetrically arranged above and below the transverse middle plate 511. Vertical screw rods 521 are correspondingly threadedly connected inside the upper sliding member 520 and the lower sliding member 530, and the threads at the upper and lower ends of the vertical screw rods 521 are symmetrically opposite. The middle and upper and lower ends of the vertical screw rods 521 are respectively inserted and assembled in the middle and the upper and lower walls of the mounting frame 510 through bearings. Upper torsion caps 522 are arranged on the outer sides of the upper and lower walls of the mounting frame 510, and the upper torsion caps 522 are fixed to the outer walls of the upper and lower ends of the vertical screw rods 521. Thus, during assembly and use, it is convenient to move and support and adjust the upper sliding member 520 and the lower sliding member 530 according to the usage requirements, making subsequent operations more convenient; More specifically in this embodiment, left sliding arms 540 and right sliding arms 550 are symmetrically arranged on both sides of the upper sliding member 520 and the lower sliding member 530. Transverse screw rods 541 are threadedly inserted inside both the left sliding arm 540 and the right sliding arm 550. The threads at both ends of the transverse screw rod 541 are symmetrically arranged in the opposite direction. The middle of the transverse screw rod 541 is inserted and assembled inside the upper sliding member 520 through a bearing. Both ends of the transverse screw rod 541 are sleeved with side sliding plates 542 through bearings. One side of the side sliding plate 542 close to the side wall of the mounting frame 510 is integrally fixed with inner sliding feet 543. The inner sliding feet 543 are inserted inside both side walls of the mounting frame 510. Corresponding inner sliding grooves 544 are formed inside both side walls of the mounting frame 510. A corresponding side twisting cap 545 is arranged on the outer side of the side sliding plate 542, and the side twisting cap 545 is fixed to the outer end of the transverse screw rod 541. Thus, during assembly and use, it is convenient to perform left and right auxiliary support after the up and down support adjustment, making the subsequent support and limit inside the wine box more convenient, facilitating subsequent stable movement and auxiliary flipping. Moreover, with the cooperation of the side sliding plate 542, the inner sliding feet 543 and the inner sliding grooves 544, it is convenient to cooperate with the up and down movement of the upper sliding member 520 and the lower sliding member 530 without causing movement interference, making the operation and use more convenient; More specifically in this embodiment, transverse sliding rods 546 are inserted through the inner sides of both the left sliding arm 540 and the right sliding arm 550, and the transverse sliding rods 546 are fixed between the inner walls of the upper sliding member 520 and the side sliding plate 542. Vertical sliding rods 523 are also inserted through the inner sides of the upper sliding member 520 and the lower sliding member 530, and the vertical sliding rods 523 are fixed between the inner walls of the transverse middle plate 511 and the mounting frame 510. The outer walls of both the left sliding arm 540 and the right sliding arm 550 are provided with arc chamfers. The front side wall of the mounting frame 510 is supported by a front frame 512 around. Thus, during assembly and use, it is convenient to perform limit sliding adjustment on the upper sliding member 520, the lower sliding member 530, the left sliding arm 540 and the right sliding arm 550 according to the usage requirements, making it convenient for limit during adjustment, so as to achieve stable adjustment and make the operation more convenient. Moreover, with the front support of the front frame 512, it is convenient to perform auxiliary limit on the outer wall of one end of the wine box close to the mounting frame 510 during sleeving, facilitating placement in place and not interfering with the operation of the side twisting cap 545 and the upper twisting cap 522, making the operation more convenient; More specifically in this embodiment, the front baffle assembly 600 includes a horizontal baffle 610. The inner end of the horizontal baffle 610 is fixed to the middle of the front outer wall of the assembly box 100. An inner horizontal plate 611 is inserted into the horizontal baffle 610. An outer horizontal frame 612 is integrally fixed to the outer side of the inner horizontal plate 611. A vertical baffle 620 is inserted into the upper part of the outer horizontal frame 612. A lower clamping strip 621 is fixed to the bottom of the vertical baffle 620. The lower clamping strip 621 is clamped inside the outer horizontal frame 612. A lower clamping groove 622 corresponding to the lower clamping strip 621 is formed inside the outer horizontal frame 612. In this way, during assembly and use, it is convenient to perform auxiliary limiting according to the usage requirements, and it is also convenient to expand the horizontal baffle 610 according to the usage requirements. It is also convenient to insert, assemble and disassemble the vertical baffle 620, and it is convenient to perform auxiliary selection and assembly according to the usage requirements; Working principle: When it is necessary to convey and turn over the wine box during production, the wine box is sleeved on the outer end of the placing support 500. With the cooperation of the upper torsion cap 522 and the side torsion cap 545, it is convenient to rotate the horizontal screw rod 541 and the vertical screw rod 521, so as to facilitate the expansion of the upper sliding member 520 and the lower sliding member 530, so that the upper sliding member 520 and the lower sliding member 530 assist in supporting the inner wall of the wine box. Subsequently, the left sliding arm 540 and the right sliding arm 550 are also controlled to support the inner corners thereof, so as to realize the stable support of the inner part of the wine box by the cooperation of the upper sliding member 520, the lower sliding member 530, the left sliding arm 540 and the right sliding arm 550, which is convenient for subsequent stable movement, conveying and turning over, and is convenient for cooperating with the operations required by subsequent production processes. Subsequently, the power supply of the motor 231 is turned on, and it is convenient to output stable power under the cooperation of the speed reducer 230 to drive the transmission shaft 220 and the transmission gear 210 to drive the conveying chain 200 to move and rotate, thereby driving the transmission rod 300 to move, so that the transmission rod 300 assists in conveying and moving the wine box under the cooperation of the placing support 500. Further, during the movement, through the meshing of the upper shifting gear 310 and the shifting rack 400, when the transmission rod 300 moves, the upper shifting gear 310 is meshed and shifted by the shifting rack 400, so that the transmission rod 300 rotates, so as to turn over the wine box under the support of the placing support 500 for subsequent auxiliary production process operations; During operation, according to the usage requirements, the toggle rack 400 is assembled to a suitable position at the upper part of the rear wall of the assembly box 100 under the cooperation of the assembly cross beam 410 and the clamping seat 420, so as to assist in meshing and toggling the upper toggle gear 310 according to the production requirements, thereby realizing the auxiliary timely turning over of the transmission rod 300. That is, under the rotation and tightening of the screw pin 421 and the clamping plate 422 of the clamping seat 420, the clamping plate 422 abuts against the rear wall of the assembly box 100, so that the toggle rack 400 is supported at the corresponding position. Thus, when the conveying chain 200 drives the transmission rod 300 to move to the corresponding position, through the meshing of the upper toggle gear 310 and the toggle rack 400, the transmission rod 300 rotates to drive the wine box to turn over. And during the process operation, through the assembly of the corresponding front baffle assembly 600, under the assembly of the cross baffle 610 and the vertical baffle 620, it is convenient to block the upper and lower areas, so that the upper area is not easy to pollute the lower area, and after the upper area undergoes corresponding process treatment, it turns to the lower area, and then it is convenient to take it off when returning, and then set the corresponding wine box to be processed. In this way, the operation is simple, the taking is convenient, and the manpower and material resources are not wasted.
[0020] The above is only the preferred embodiment of the present invention, and it does not impose any form of limitation on the present invention; any ordinary technician in the industry can smoothly implement the present invention according to the illustrations in the specification and the above description; however, any equivalent changes such as slight modifications, refinements and evolutions made by those skilled in the art within the scope of the technical solution of the present invention by using the technical content disclosed above are equivalent embodiments of the present invention; at the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A wine box production device that can be turned over, comprising an assembly box (100), the bottom of the assembly box (100) is supported by a support stand (110), and an assembly stand (120) is covered outside the assembly box (100), and it is characterized in that: Inside the assembly box (100), a conveying chain (200) is assembled, and a transmission gear (210) is meshed inside the conveying chain (200). A transmission shaft (220) is assembled inside the transmission gear (210). A transmission rod (300) is assembled on the outer wall surface of the conveying chain (200), and the front end of the transmission rod (300) is inserted through the front side wall of the assembly box (100). A placing support (500) is fixedly arranged at the front end of the transmission rod (300). An upper shifting gear (310) is fixedly arranged at the rear side of the transmission rod (300), and a shifting rack (400) is meshed above the upper shifting gear (310). The shifting rack (400) is clamped and assembled on the upper part of the rear side wall of the assembly box (100) through an assembly cross beam (410).
2. The production device of a turnable wine box according to claim 1, characterized in that: Both side ends of the transmission shaft (220) are supported and assembled on the inner wall of the assembly box (100) through pedestal bearings (221). The rear end of the transmission shaft (220) is inserted through a bearing and assembled inside the upper end of a support upright (110). The rear side end of the transmission shaft (220) is connected with a reducer (230) through a coupling. A motor (231) is assembled at the input end of the reducer (230). The bottom of the motor (231) and the reducer (230) is supported by a support base (232). The support base (232) is supported on the rear side of the lower part of the support upright (110).
3. The production device of a turnable wine box according to claim 1, characterized in that: A front sliding groove (102) corresponding to the transmission rod (300) is formed on the front side wall of the assembly box (100), and the front sliding groove (102) coincides with the conveying and moving track of the conveying chain (200). An inner support (101) is supported on the inner side of the front side wall of the assembly box (100), and the inner support (101) is fixed at the middle part of the rear inner wall of the assembly box (100). A front blocking assembly (600) is assembled at the middle part of the front side wall of the assembly box (100).
4. A wine box production device capable of being turned over according to claim 1, characterized in that: A bearing - equipped support (301) is supported at the middle part of the transmission rod (300), and the bottom of the bearing - equipped support (301) is supported and assembled on the outer wall of one of the link buckles in the conveying chain (200).
5. A reversible wine box production device according to claim 1, characterized in that: A clamping seat (420) is fixedly arranged at the rear side of the assembly cross beam (410), and the clamping seat (420) is clamped on the upper part of the rear side wall of the assembly box (100). A pin (421) is inserted into the rear side wall of the clamping seat (420) in a threaded manner. An inner end of the pin (421) is supported and assembled with a clamping plate (422), and the inner wall of the clamping plate (422) abuts against the outer wall of the rear side of the assembly box (100).
6. The production device of a reversible wine box according to claim 6, characterized in that: Both side ends of the shifting rack (400) are arranged in an upward - arc shape. A clamping pad (423) is fixedly arranged on the inner wall of the clamping plate (422). A sleeve (424) is sleeved on the inner end of the pin (421), and the sleeve (424) is assembled on the outer wall of the clamping plate (422). A snap ring (425) is clamped inside the sleeve (424), and the snap ring (425) is fixed at the inner end of the pin (421). A torsion block (426) is fixedly arranged at the outer end of the pin (421).
7. A reversible wine box production device according to claim 1, characterized in that: The placement support member (500) includes a mounting bracket (510) fixed to the front end of the transmission rod (300). In the middle of the front side of the mounting bracket (510), a horizontal middle plate (511) is fixedly provided. An upper sliding member (520) and a lower sliding member (530) are symmetrically arranged above and below the horizontal middle plate (511). A vertical screw rod (521) is correspondingly threadedly connected inside the upper sliding member (520) and the lower sliding member (530). The threads at the upper and lower ends of the vertical screw rod (521) are symmetrically opposite. The middle part and the upper and lower ends of the vertical screw rod (521) are respectively inserted and assembled in the middle part and the inner walls of the upper and lower walls of the mounting bracket (510) through bearings. Upper torsion caps (522) are arranged on the outer sides of the upper and lower walls of the mounting bracket (510), and the upper torsion caps (522) are fixed to the outer walls of the upper and lower ends of the vertical screw rod (521).
8. A reversible wine box production device according to claim 7, characterized in that: On both sides of the upper sliding member (520) and the lower sliding member (530), a left sliding arm (540) and a right sliding arm (550) are symmetrically arranged. A horizontal screw rod (541) is threadedly inserted inside both the left sliding arm (540) and the right sliding arm (550). The threads at both ends of the horizontal screw rod (541) are symmetrically opposite. The middle part of the horizontal screw rod (541) is inserted and assembled in the upper sliding member (520) through a bearing. Side sliding plates (542) are sleeved and assembled at both ends of the horizontal screw rod (541) through bearings. An inner sliding foot (543) is integrally fixed to one side of the side sliding plate (542) close to the side wall of the mounting bracket (510). The inner sliding foot (543) is inserted into the inner walls of both sides of the mounting bracket (510). Inner sliding grooves (544) are opened in the inner walls of both sides of the mounting bracket (510). A corresponding side torsion cap (545) is arranged on the outer side of the side sliding plate (542), and the side torsion cap (545) is fixed to the outer end of the horizontal screw rod (541).
9. The production device of a turnable wine box according to claim 8, characterized in that: A horizontal sliding rod (546) is inserted through the inner sides of both the left sliding arm (540) and the right sliding arm (550), and the horizontal sliding rod (546) is fixed between the inner walls of the upper sliding member (520) and the side sliding plate (542). A vertical sliding rod (523) is also inserted through the inner sides of the upper sliding member (520) and the lower sliding member (530), and the vertical sliding rod (523) is fixed between the inner wall of the horizontal middle plate (511) and the mounting bracket (510). The outer walls of both the left sliding arm (540) and the right sliding arm (550) are provided with arc chamfers, and a front frame (512) is supported around the front side wall of the mounting bracket (510).
10. A reversible wine box production device according to claim 3, characterized in that: The front blocking assembly (600) includes a horizontal baffle (610). The inner end of the horizontal baffle (610) is fixed to the middle of the front outer wall of the assembly box (100). An inner horizontal plate (611) is inserted into the horizontal baffle (610). An outer horizontal frame (612) is integrally fixed to the outer side of the inner horizontal plate (611). A vertical baffle (620) is inserted into the upper part of the outer horizontal frame (612). A lower clamping strip (621) is fixed to the bottom of the vertical baffle (620). The lower clamping strip (621) is clamped inside the outer horizontal frame (612). A lower clamping groove (622) corresponding to the lower clamping strip (621) is opened inside the outer horizontal frame (612).
Citation Information
Patent Citations
Wine box production line capable of automatically turning over
CN220200544U