Intelligent temporary storage and conveying adjustment device for beverage bottle production line
The design of intelligent temporary storage and conveying adjustment equipment has solved the problem of beverage bottle conveying system downtime due to malfunctions, realizing continuous and efficient production, and ensuring equipment stability and production cycle time.
Patent Information
- Application Number
- CN202510321773.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2045-03-18
AI Technical Summary
The existing beverage bottle conveying system requires shutdown for maintenance when equipment in subsequent processes fails, resulting in extended unplanned downtime and affecting production cycle time and overall equipment efficiency.
Design an intelligent temporary storage and conveying adjustment device that includes a conveying mechanism and a sorting mechanism. The device extends the output time of beverage bottles by using a buffer conveyor belt and achieves bottle posture correction and queue optimization through the sorting mechanism, ensuring the continuous operation of the preceding process.
In the event of a failure in a subsequent process, extend the beverage bottle output time to avoid a complete shutdown, ensure production continuity and equipment efficiency, improve bottle conveying efficiency, and prevent bottle misalignment.
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Figure CN119976323B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of beverage bottle conveying, in particular to an intelligent temporary storage conveying adjustment device for a beverage bottle production line. BACKGROUND
[0002] The beverage bottle production line often adopts an automatic conveying system, empty bottles are stably conveyed by a synchronous belt, accurately positioned by a photoelectric sensor, the conveying belt is made of stainless steel or food-grade plastic material, is provided with an anti-falling device and a spacing adjustment mechanism, and ensures that the bottle body remains upright and stable during the cleaning, filling and capping processes, a visual detection system monitors the consistency of the bottle body in real time, and the final AGV trolley is transported to the storage area through a lifting platform to realize efficient and low-loss conveying in the whole process.
[0003] Through retrieval, a beverage production conveying device with publication number CN222023542U is disclosed, which comprises a limiting mechanism; the beverage bottles conveyed to the middle of the conveying belt are brought close by the servo cylinders in the two groups of limiting mechanisms, and then the limiting boxes are brought close to the beverage bottles conveyed to the middle of the conveying belt by the action of the connecting sliding blocks, until the limiting turntables in the limiting boxes contact the beverage bottles and stop, the device can further stabilize the conveying of the beverage bottles on the conveying belt.
[0004] Although the existing beverage bottle conveying scheme can realize stable transmission, there are significant defects in the system operation process, when the subsequent process equipment fails and needs to be repaired, the operation of the whole production line must be interrupted synchronously, which leads to the extension of unplanned downtime and seriously affects the production rhythm and equipment comprehensive efficiency; in view of this technical bottleneck, we provide an intelligent temporary storage conveying adjustment device for a beverage bottle production line to solve the above problems. SUMMARY
[0005] The purpose of the present application is to provide an intelligent temporary storage conveying adjustment device for a beverage bottle production line to solve the problems in the prior art.
[0006] To achieve the above purpose, the present application provides the following technical scheme: an intelligent temporary storage conveying adjustment device for a beverage bottle production line, comprising a device body, a conveying mechanism is arranged in the inside of the device body, the conveying mechanism comprises a mounting frame, the bottom surface of the mounting frame is fixedly connected with the device body, a supporting arm is fixedly connected to the outer surface of the mounting frame, the end of the supporting arm away from the mounting frame is fixedly connected with the device body, a buffer conveying belt is fixedly connected to the outer surface of the supporting arm, the two ends of the buffer conveying belt are fixedly connected with the device body, a driving assembly is fixedly connected to the inner wall of the mounting frame, a combing mechanism is arranged on the outside of the device body, the combing mechanism comprises a first combing box and a second combing box, and the first combing box and the second combing box are fixedly connected with the device body.
[0007] Preferably, the outer surface of the device body is threadedly connected to a limit bolt, the outer surface of the limit bolt is threadedly connected to a material guide rack, the inner wall of the device body is fixedly connected to transparent glass, and the outer surface of the device body is fixedly connected to a control box and a control panel. Through the setting of the material guide rack, the beverage bottles are more stable when introduced into the buffer conveyor belt or guided out from the buffer conveyor belt.
[0008] Preferably, the inner bottom wall of the first combing box is fixedly connected to a rotating motor 1, the output end of the rotating motor 1 is fixedly connected to a driving sprocket, the top surface of the driving sprocket is fixedly connected to a transmission shaft 1, and a control button for the rotating motor 1 is installed on the outer surface of the first combing box, and the rotating motor 1 can be turned on and off by the control button.
[0009] Preferably, the end of the transmission shaft away from the driving sprocket is fixedly connected to a driving wheel 1, the outer surface of the driving wheel 1 is rotatably connected to a roller 1, and the outer surface of the roller 1 is fixedly connected to the first combing box. Through the setting of the first combing box, the roller is effectively supported and fixed.
[0010] Preferably, the top surface of the driving wheel 1 is fixedly connected to the carrying cylinder, the inner bottom wall of the carrying cylinder is fixedly connected to the hinged support cylinder, the inner wall of the hinged support cylinder is fixedly connected to the electric push rod, the fixed end of the electric push rod is fixedly connected to the carrying cylinder, and the telescopic end of the electric push rod is fixedly connected to the hinge plate, which can drive the driving wheel 1 to rotate, thereby driving the carrying cylinder to rotate at the same time.
[0011] Preferably, the inner wall of the hinge plate is hinged with a first rocker arm through a pin, and one end of the first rocker arm away from the hinge plate is hinged with a push plate through a pin, and the outer surface of the push plate is hinged with a second rocker arm through a pin, and one end of the second rocker arm away from the push plate is hinged through a pin and a hinge support cylinder, and a limiting groove is provided on the outer surface of the supporting cylinder, and a push rod is slidably connected to the inner wall of the limiting groove, one end of the push rod is fixedly connected to the push plate, and the end of the push rod away from the push plate is fixedly connected to the arc adjustment plate, the top surface of the arc adjustment plate is slidably connected to the supporting cylinder, and the top surface of the supporting cylinder is fixedly connected to the guide plate, and the guide plate is narrow at the top and wide at the bottom, so as to guide the beverage bottle to move between the arc adjustment plate and the roller.
[0012] Preferably, the outer surface of the first roller is fixedly connected with a first guide conveying belt, the outer surface of the first guide conveying belt is fixedly connected with a first carding box, one end of the first guide conveying belt away from the first roller is fixedly connected with an adjusting vertical pipe, the inner wall of the first carding box is fixedly connected with a second roller, the inner wall of the second roller is rotatably connected with a driving wheel two, the outer surface of the driving wheel two is provided with a placing groove, the bottom surface of the driving wheel two is fixedly connected with a driven sprocket, the outer surface of the driven sprocket is drivingly connected with a transmission chain, the outer surface of the transmission chain is drivingly connected with a driving sprocket, the outer surface of the second roller is fixedly connected with a second guide conveying belt, the outer surface of the second guide conveying belt is fixedly connected with the first carding box and a second carding box, and one end of the second guide conveying belt away from the second roller is fixedly connected with a buffer conveying belt.
[0013] Preferably, the inner top wall of the second carding box is fixedly connected with a posture recognition device, and the inner top wall of the second carding box is provided with a sliding groove, and the inner wall of the sliding groove is slidingly connected with a connecting sliding block.
[0014] Preferably, the inner wall of the second carding box is fixedly connected with two second rotating motors, the output ends of the two second rotating motors are fixedly connected with two bidirectional worms, one ends of the two bidirectional worms away from the second rotating motors are rotatably connected with the second carding box, the two bidirectional worms are meshingly connected with a driven worm wheel, the top surface of the driven worm wheel is rotatably connected with the connecting sliding block, and the bottom surface of the driven worm wheel is fixedly connected with a transmission shaft two.
[0015] Preferably, the outer surface of the transmission shaft two is rotatably connected with a limiting frame, the outer surface of the limiting frame is fixedly connected with a supporting plate, the inner wall of the supporting plate is slidingly connected with a supporting rod, one end of the supporting rod is fixedly connected with the second carding box, one end of the transmission shaft two away from the driven worm wheel is fixedly connected with a first bevel gear, the outer surface of the first bevel gear is meshingly connected with a second bevel gear, the outer surface of the second bevel gear is fixedly connected with a connecting rod, the outer surface of the connecting rod is rotatably connected with the limiting frame, and one end of the connecting rod away from the second bevel gear is fixedly connected with a clamping adjusting frame, and the inner wall of the clamping adjusting frame is fixedly connected with an antiskid pad.
[0016] Compared with the prior art, the present application has the following beneficial effects:
[0017] 1. The application realizes the spiral conveying of beverage bottles in the device body through the buffer conveying belt when the subsequent process is stopped for maintenance due to failure in the beverage bottle production process, which effectively prolongs the time of beverage bottles output from the device body, provides buffer time for the maintenance of the subsequent process, and ensures the normal operation of the previous process, avoids the impact of unplanned full-line shutdown on the production rhythm, effectively guarantees the comprehensive efficiency of the equipment, and ensures the stability and continuity of the production system.
[0018] 2. The application realizes the directional arrangement and accurate conveying function of disordered bottles through the synergistic effect of the components in the combing mechanism, and innovatively realizes the directional arrangement and accurate conveying function of disordered bottles, which can automatically correct the posture of the bottles and optimize the queue, so that the bottles form a linear array on the buffer conveying belt. This technical scheme significantly improves the bottle conveying efficiency and effectively prevents the posture disorder of the bottles during conveying, saves the labor of placing the beverage bottles on the buffer conveying belt, and overcomes the problems of bottle stacking and jamming in the traditional conveying line. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a schematic diagram of the overall structure of the application;
[0020] Figure 2 is a schematic diagram of the overall structure of the application;
[0021] Figure 3 is a schematic diagram of the overall structure of the application;
[0022] Figure 4 is a schematic diagram of the overall structure of the application;
[0023] Figure 5 is a schematic diagram of the overall structure of the application;
[0024] Figure 6 is a schematic diagram of the overall structure of the application;
[0025] Figure 7 is a schematic diagram of the overall structure of the application;
[0026] Figure 8 is a schematic diagram of the overall structure of the application;
[0027] Figure 9 is a schematic diagram of the overall structure of the application;
[0028] Figure 10 is a schematic diagram of the overall structure of the application;
[0029] Figure 11This is a schematic diagram of the three-dimensional structure of the gesture recognition device of the present invention;
[0030] Figure 12 It is a schematic diagram of the three-dimensional structure of the bidirectional worm gear of the present invention.
[0031] 1. Device body; 2. Conveying mechanism; 201. Mounting frame; 202. Support arm; 203. Buffer conveyor belt; 204. Driving assembly; 205. Limit bolt; 206. Material guide frame; 207. Transparent glass; 208. Control box; 209. Control panel; 3. Combing mechanism; 301. First combing box; 302. Rotating motor 1; 303. Driving sprocket; 304. Transmission shaft 1; 305. Driving wheel 1; 306. Roller 1; 307. Carrying cylinder; 308. Articulated support cylinder; 309. Electric push rod; 310. Articulated plate; 311. First swing arm; 312. Push plate; 313. Second swing arm; 314. Limiting slot; 315. Push rod; 316. 6. Arc-shaped adjustment plate; 317. Guide plate; 318. First guide conveyor belt; 319. Adjustment stand; 320. Second roller; 321. Second driving wheel; 322. Placement groove; 323. Driven sprocket; 324. Transmission chain; 325. Second guide conveyor belt; 326. Second combing box; 327. Posture recognition device; 328. Sliding groove; 329. Connecting slider; 330. Second rotating motor; 331. Bidirectional worm; 332. Driven worm gear; 333. Second transmission shaft; 334. Limiting frame; 335. Support plate; 336. Support rod; 337. First bevel gear; 338. Second bevel gear; 339. Connecting rod; 340. Clamping adjustment frame; 341. Anti-slip pad. DETAILED DESCRIPTION
[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0033] like Figure 1 As shown, the present invention provides a technical solution for an intelligent temporary storage, conveying and adjusting device for a beverage bottle production line, including a device body 1. An adjusting mechanism is installed inside the device body 1. The adjusting mechanism is initially located at the lower part of the device body 1. By driving the adjusting mechanism upward in the device body 1, the time for the beverage bottles to be output from the device body 1 can be extended. Support legs are installed on the bottom surface of the device body 1, so that the device is more stable during operation.
[0034] like Figure 1 、 Figure 2 and Figure 3As shown, the inside of the device body 1 is provided with a conveying mechanism 2, the conveying mechanism 2 comprises a mounting frame 201, the bottom surface of the mounting frame 201 is fixedly connected with the device body 1, the outer surface of the mounting frame 201 is fixedly connected with a supporting arm 202, the end of the supporting arm 202 away from the mounting frame 201 is fixedly connected with the device body 1, through the arrangement of the mounting frame 201 and the device body 1, the supporting arm 202 is effectively supported and fixed, so that the buffer conveying belt 203 is more stable during operation.
[0035] The outer surface of the supporting arm 202 is fixedly connected with the buffer conveying belt 203, both ends of the buffer conveying belt 203 are fixedly connected with the device body 1, the inner wall of the mounting frame 201 is fixedly connected with a driving assembly 204, and the buffer conveying belt 203 can be driven to work by opening the driving assembly 204.
[0036] The outer surface of the device body 1 is threadedly connected with a limiting bolt 205, the outer surface of the limiting bolt 205 is threadedly connected with a material guide frame 206, the inner wall of the device body 1 is fixedly connected with a transparent glass 207, the outer surface of the device body 1 is fixedly connected with a control box 208 and a control panel 209, the beverage bottle is more stable when being introduced into the buffer conveying belt 203 or being guided out of the buffer conveying belt 203 through the arrangement of the material guide frame 206, a controller is installed in the control box 208, the controller can receive signals of the posture recognition device 327 to open and close the rotating motor two 330, and the operation state of the whole device can be adjusted through the arrangement of the control panel 209.
[0037] As shown in Figure 1 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9 , the outside of the device body 1 is provided with a carding mechanism 3, the carding mechanism 3 comprises a first carding box 301 and a second carding box 326, the first carding box 301 and the second carding box 326 are fixedly connected with the device body 1, the inner bottom wall of the first carding box 301 is fixedly connected with a rotating motor one 302, the output end of the rotating motor one 302 is fixedly connected with a driving sprocket 303, the top surface of the driving sprocket 303 is fixedly connected with a transmission shaft one 304, the control button of the rotating motor one 302 is installed on the outer surface of the first carding box 301, the rotating motor one 302 can be opened and closed through the control button, and the driving sprocket 303 can be driven to rotate through the opening of the rotating motor one 302.
[0038] The transmission shaft 304 is fixedly connected with a driving wheel 305 at one end away from the driving sprocket 303, and the outer surface of the driving wheel 305 is rotatably connected with a roller 306, and the outer surface of the roller 306 is fixedly connected with the first carding box 301, and the first carding box 301 can effectively support and fix the roller 306.
[0039] The top surface of the driving wheel 305 is fixedly connected with a bearing cylinder 307, the inner bottom wall of the bearing cylinder 307 is fixedly connected with a hinged support cylinder 308, the inner wall of the hinged support cylinder 308 is fixedly connected with an electric push rod 309, the fixed end of the electric push rod 309 is fixedly connected with the bearing cylinder 307, and the telescopic end of the electric push rod 309 is fixedly connected with a hinged plate 310, and the hinged plate 310 can be driven to move vertically by opening the electric push rod 309.
[0040] The inner wall of the hinged plate 310 is hingedly connected with a first swing rod 311 through a pin shaft, one end of the first swing rod 311 away from the hinged plate 310 is hingedly connected with a push plate 312 through a pin shaft, the outer surface of the push plate 312 is hingedly connected with a second swing rod 313 through a pin shaft, and one end of the second swing rod 313 away from the push plate 312 is hingedly connected with the hinged support cylinder 308 through a pin shaft. By driving the vertical movement of the hinged plate 310, the hinged plate 310 and the second swing rod 313 can be driven to swing, and the push plate 312 can be effectively pushed to move.
[0041] The outer surface of the bearing cylinder 307 is provided with a limiting groove 314, the inner wall of the limiting groove 314 is slidably connected with a push rod 315, one end of the push rod 315 is fixedly connected with the push plate 312, the end of the push rod 315 away from the push plate 312 is fixedly connected with an arc-shaped adjusting plate 316, the top surface of the arc-shaped adjusting plate 316 is slidably connected with the bearing cylinder 307, and the top surface of the bearing cylinder 307 is fixedly connected with a guide plate 317, and the guide plate 317 is narrow at the top and wide at the bottom, so as to guide the movement of the beverage bottle between the arc-shaped adjusting plate 316 and the roller 306.
[0042] By driving the push plate 312 to move, the push rod 315 can be driven to slide the arc-shaped adjusting plate 316 in the inner wall of the bearing cylinder 307, effectively adjusting the distance between the roller 306 and the arc-shaped adjusting plate 316, so that the beverage bottles of different sizes can be carded.
[0043] The outer surface of the first roller 306 is fixedly connected with a first guide conveying belt 318, the outer surface of the first guide conveying belt 318 is fixedly connected with the first carding box 301, one end of the first guide conveying belt 318 away from the first roller 306 is fixedly connected with an adjusting vertical pipe 319, and the other end of the first guide conveying belt 318 away from the adjusting vertical pipe 319 is tangentially connected with the first roller 306, so that the beverage bottle is more stable when being guided out of the first roller 306, and the beverage bottle lying on the first guide conveying belt 318 can be adjusted to stand upright and then conveyed into the placing groove 322 through the adjusting vertical pipe 319.
[0044] The inner wall of the first carding box 301 is fixedly connected with a second roller 320, the inner wall of the second roller 320 is rotatably connected with a driven wheel two 321, the outer surface of the driven wheel two 321 is provided with a placing groove 322, the bottom surface of the driven wheel two 321 is fixedly connected with a driven sprocket 323, the outer surface of the driven sprocket 323 is drivingly connected with a transmission chain 324, the outer surface of the transmission chain 324 is drivingly connected with the driving sprocket 303, and the driven sprocket 323 on the top surface of the driven wheel two 321 can uniformly guide the standing beverage bottle to the second guide conveying belt 325 through the driving of the transmission chain 324.
[0045] As shown in Figure 1 , Figure 10 , Figure 11 and Figure 12 , the outer surface of the second roller 320 is fixedly connected with a second guide conveying belt 325, the outer surface of the second guide conveying belt 325 is fixedly connected with the first carding box 301 and the second carding box 326, one end of the second guide conveying belt 325 away from the second roller 320 is fixedly connected with the buffer conveying belt 203, the inner top wall of the second carding box 326 is fixedly connected with a posture recognition device 327, the inner top wall of the second carding box 326 is provided with a sliding groove 328, and the inner wall of the sliding groove 328 is slidingly connected with a connecting sliding block 329, the posture recognition device 327 can detect whether the posture of the beverage bottle is upside down, and the sliding groove 328 and the connecting sliding block 329 can effectively limit the driven worm gear 332.
[0046] The inner wall of the second carding box 326 is fixedly connected with two rotating motors two 330, the output ends of the two rotating motors two 330 are fixedly connected with two bidirectional worms 331, the ends, away from the rotating motors two 330, of the two bidirectional worms 331 are rotatably connected with the second carding box 326, the top surface of a driven worm gear 332 is rotatably connected with the connecting sliding block 329, the bottom surface of the driven worm gear 332 is fixedly connected with a transmission shaft two 333, the two bidirectional worms 331 can be simultaneously and synchronously or oppositely rotated by starting the rotating motors two 330, the two driven worm gears 332 can be simultaneously moved close to or away from each other by driving the two bidirectional worms 331 to synchronously rotate, and the two driven worm gears 332 can be effectively rotated by driving the two bidirectional worms 331 to oppositely mesh.
[0047] The output ends of the two rotating motors two 330 are provided with synchronous interlocking devices, so that the two bidirectional worms 331 can be driven to simultaneously rotate when the two rotating motors two 330 are started.
[0048] The outer surface of the transmission shaft two 333 is rotatably connected with a limiting frame 334, the outer surface of the limiting frame 334 is fixedly connected with a supporting plate 335, the inner wall of the supporting plate 335 is slidably connected with a supporting rod 336, one end of the supporting rod 336 is fixedly connected with the second carding box 326, and the stability of the connecting rod 339 during movement can be improved by the arrangement of the supporting plate 335 and the supporting rod 336.
[0049] The end, away from the driven worm gear 332, of the transmission shaft two 333 is fixedly connected with a first bevel gear 337, the outer surface of the first bevel gear 337 is meshingly connected with a second bevel gear 338, the outer surface of the second bevel gear 338 is fixedly connected with a connecting rod 339, the outer surface of the connecting rod 339 is rotatably connected with the limiting frame 334, the end, away from the second bevel gear 338, of the connecting rod 339 is fixedly connected with a clamping adjusting frame 340, and the inner wall of the clamping adjusting frame 340 is fixedly connected with an anti-skid pad 341. The frictional force of the clamping adjusting frame 340 during clamping and turning of the beverage bottle can be improved by the arrangement of the anti-skid pad 341, and the situation that the beverage bottle slips off during turning can be avoided.
[0050] The driving assembly 204, the rotating motor one 302, the electric push rod 309, the attitude recognition device 327, the rotating motor two 330 and the mentioned synchronous interlocking device in the application are all common electrical devices in the prior art, and the model and internal structure thereof will not be described in excess herein, and the structures of the components shown in the drawings are exemplary illustrations, and the specific implementation should be combined with the functional requirements, assembly conditions and process limitations in the actual application scenarios to adaptively adjust and optimize the structural parameters, size specifications and connection modes.
[0051] Working principle: first, the device as a whole through the wire and municipal power supply electrical connection, second, the front process will be introduced into the beverage bottle drum 306 after starting the rotation motor 302 drive driving sprocket 303 rotation, driving sprocket 303 rotation and the coordinated action of transmission shaft 304 and transmission chain 324, synchronous drive wheel 305 and driven sprocket 323 top surface of the drive wheel 321 rotation, drive wheel 305 rotation drive cylinder 307, arc adjusting plate 316 and guide plate 317 rotation at the same time, through the setting of the guide plate 317 surface slope can make the beverage bottle in the drum 306 between the drum 306 and the arc adjusting plate 316 between the circumferential motion, the movement of the beverage bottle through the tangent connection of the first guide conveyor belt 318, 306, effectively beverage bottle stable guide to the adjustment of the standpipe 319, again by the adjustment of the standpipe 319 will be standing to deliver the beverage bottle to the placement groove 322, at this time through the rotation of the drive wheel 321, effectively through the second guide conveyor belt 325 to the second carding box 326, the beverage bottle into the second carding box 326 will be recognized first by the posture recognition device 327, if the beverage bottle upside down, posture recognition device 327 will immediately send a signal to the controller in the control box 208, through the controller control two rotation motor 330 open, open rotation motor 330 will first drive two first swing rod 311 simultaneously in the same direction rotation, first swing rod 311 rotation drive two driven worm 332 simultaneously move closer to each other, driven worm 332 movement drive transmission shaft 333 surface of the limiting frame 334 movement, limiting frame 334 movement drive connecting rod 339 one end of the clamping adjusting frame 340 to the beverage bottle close and clamping fixed, fixed through the controller again open rotation motor 330 drive two two-way worm 331 simultaneously relative rotation, so as to be able to exert relative meshing force on both sides of the driven worm 332, effectively make it rotate, driven worm 332 rotation drive transmission shaft 333 one end of the first bevel gear 337 rotation, first bevel gear 337 rotation drive connecting rod 339 one end of the clamping adjusting frame 340 rotation around the connecting rod 339, effectively drive the beverage bottle one hundred and eighty degrees flip, make its bottle mouth evenly guided to the buffer conveyor belt 203, through the buffer conveyor belt 203 make the beverage bottle in the device body 1 in the spiral conveying, beverage bottle in the buffer conveyor belt 203 on the conveying process, if the subsequent process failure downtime, because the device body 1 is installed with adjusting mechanism, through the drive adjusting mechanism up, can extend the beverage bottle from the device body 1 to the outside output time, so as to both for the maintenance of subsequent process to gain buffer time, but also can ensure the normal operation of the front process, this kind of phased processing method avoids the influence of non planned whole line shutdown on production rhythm, at the same time effectively guarantee the equipment comprehensive efficiency, ensure the stability and continuity of production system.
[0052] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the present application can be implemented in other particular forms without departing from the spirit or essential characteristics of the present application. The embodiments should therefore be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims with respect to the figures of the patent document.
Claims
1. An intelligent temporary storage and conveying adjustment device for a beverage bottle production line, comprising a device body (1), characterized in that: The inside of the device body (1) is provided with a conveying mechanism (2), the conveying mechanism (2) comprises a mounting frame (201), the bottom surface of the mounting frame (201) is fixedly connected with the device body (1), the outer surface of the mounting frame (201) is fixedly connected with a supporting arm (202), one end of the supporting arm (202) away from the mounting frame (201) is fixedly connected with the device body (1), the outer surface of the supporting arm (202) is fixedly connected with a buffer conveying belt (203), both ends of the buffer conveying belt (203) are fixedly connected with the device body (1), the inner wall of the mounting frame (201) is fixedly connected with a driving assembly (204), the outside of the device body (1) is provided with a carding mechanism (3), the carding mechanism (3) comprises a first carding box (301), a driving wheel one (305) and a second carding box (326), the first carding box (301) and the second carding box (326) are fixedly connected with the device body (1), the top surface of the driving wheel one (305) is fixedly connected with a bearing cylinder (307), the inner bottom wall of the bearing cylinder (307) is fixedly connected with a hinged support cylinder (308), the inner wall of the hinged support cylinder (308) is fixedly connected with an electric push rod (309), the fixed end of the electric push rod (309) is fixedly connected with the bearing cylinder (307), the telescopic end of the electric push rod (309) is fixedly connected with a hinged plate (310), the inner wall of the hinged plate (310) is hingedly connected with a first swing rod (311) through a pin shaft, one end of the first swing rod (311) away from the hinged plate (310) is hingedly connected with a push plate (312) through a pin shaft, the outer surface of the push plate (312) is hingedly connected with a second swing rod (313) through a pin shaft, one end of the second swing rod (313) away from the push plate (312) is hingedly connected with the hinged support cylinder (308) through a pin shaft, the outer surface of the bearing cylinder (307) is provided with a limiting groove (314), the inner wall of the limiting groove (314) is slidably connected with a push rod (315), one end of the push rod (315) is fixedly connected with the push plate (312), the end of the push rod (315) away from the push plate (312) is fixedly connected with an arc-shaped adjusting plate (316), the top surface of the arc-shaped adjusting plate (316) is slidably connected with the bearing cylinder (307), the top surface of the bearing cylinder (307) is fixedly connected with a guide plate (317).
2. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 1, characterized in that: The outer surface of the device body (1) is threadedly connected with a limiting bolt (205), the outer surface of the limiting bolt (205) is threadedly connected with a material guide frame (206), the inner wall of the device body (1) is fixedly connected with a transparent glass (207), the outer surface of the device body (1) is fixedly connected with a control box (208) and a control panel (209).
3. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 1, characterized in that: The inner bottom wall of the first carding box (301) is fixedly connected with a rotating motor one (302), the output end of the rotating motor one (302) is fixedly connected with a driving sprocket (303), the top surface of the driving sprocket (303) is fixedly connected with a transmission shaft one (304).
4. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 3, characterized in that: The bottom surface of the driving wheel one (305) is fixedly connected with the transmission shaft one (304), and the outer surface of the driving wheel one (305) is rotatably connected with the roller one (306).
5. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 4, characterized in that: The outer surface of the roller one (306) is fixedly connected with the first guide conveying belt (318), the outer surface of the first guide conveying belt (318) is fixedly connected with the first carding box (301), one end of the first guide conveying belt (318) away from the roller one (306) is fixedly connected with the adjusting vertical pipe (319), the inner wall of the first carding box (301) is fixedly connected with the roller two (320), the inner wall of the roller two (320) is rotatably connected with the driving wheel two (321), the outer surface of the driving wheel two (321) is provided with the placing groove (322), the bottom surface of the driving wheel two (321) is fixedly connected with the driven sprocket (323), the outer surface of the driven sprocket (323) is drivingly connected with the transmission chain (324), the outer surface of the transmission chain (324) is drivingly connected with the driving sprocket (303), the outer surface of the roller two (320) is fixedly connected with the second guide conveying belt (325), the outer surface of the second guide conveying belt (325) is fixedly connected with the first carding box (301) and the second carding box (326), and one end of the second guide conveying belt (325) away from the roller two (320) is fixedly connected with the buffer conveying belt (203).
6. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 1, characterized in that: The inner top wall of the second carding box (326) is fixedly connected with the attitude recognition device (327), and the inner top wall of the second carding box (326) is provided with the sliding groove (328), and the inner wall of the sliding groove (328) is slidingly connected with the connecting sliding block (329).
7. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 1, characterized in that: The inner wall of the second carding box (326) is fixedly connected with two rotating motors two (330), the output ends of the two rotating motors two (330) are fixedly connected with the bidirectional worms (331), one end of the two bidirectional worms (331) away from the rotating motor two (330) is rotatably connected with the second carding box (326), and the two bidirectional worms (331) are meshedly connected with the driven worm wheel (332) between them, the top surface of the driven worm wheel (332) is rotatably connected with the connecting sliding block (329), and the bottom surface of the driven worm wheel (332) is fixedly connected with the transmission shaft two (333).
8. The intelligent temporary storage and conveying adjustment device for beverage bottle production line according to claim 7, characterized in that: The outer surface of the transmission shaft two (333) is rotationally connected with a limiting frame (334), the outer surface of the limiting frame (334) is fixedly connected with a supporting plate (335), the inner wall of the supporting plate (335) is slidably connected with a supporting rod (336), one end of the supporting rod (336) is fixedly connected with the second carding box (326), the end, away from the driven worm wheel (332), of the transmission shaft two (333) is fixedly connected with a first bevel gear (337), the outer surface of the first bevel gear (337) is meshedly connected with a second bevel gear (338), the outer surface of the second bevel gear (338) is fixedly connected with a connecting rod (339), the outer surface of the connecting rod (339) is rotationally connected with the limiting frame (334), the end, away from the second bevel gear (338), of the connecting rod (339) is fixedly connected with a clamping adjusting frame (340), and the inner wall of the clamping adjusting frame (340) is fixedly connected with an antiskid pad (341).
Citation Information
Patent Citations
Beverage production conveying device
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