Sealing and cutting heat shrinkage packaging machine for glass cup

By designing the front conveyor device and heat shrink oven for a sealing and heat shrink packaging machine for glass cups, the problems of low packaging efficiency and breakage adhesion in existing technologies have been solved, realizing automated sorting and efficient sealing and heat shrinking of multiple rows and columns.

CN224045591UActive Publication Date: 2026-03-27SHANDONG SAPPHIRE PACKAGING MACHINERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing heat shrink packaging machines cannot achieve multi-row, multi-column batch packaging when packaging glass cups, and the packaging film is prone to damage and adhesion due to irregular arrangement, which reduces packaging efficiency.

Method used

A sealing and heat shrink packaging machine for glass cups was designed, comprising a front conveyor and a heat shrink oven. By setting an inner bending baffle and a pushing device, the glass cups are arranged into multiple rows and columns, and then sealed and heat-shrinked in the side sealing machine and heat shrink oven to avoid damage and adhesion caused by irregular positions.

Benefits of technology

It enables automated multi-column and multi-row arrangement of glass cups, improving packaging efficiency, avoiding damage and adhesion of packaging film, and enhancing overall packaging quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of thermal shrinkage packaging equipment, in particular to a sealing and cutting thermal shrinkage packaging machine for glass cups, which comprises a front conveying device, an edge sealing machine and a thermal shrinkage furnace, the bottom of the propelling device is connected with the rear end of the conveying frame through a bolt, and the conveying frame comprises a frame welding part, a frame side plate, a frame baffle, a panel, an unpowered roller shaft, a limiting air cylinder, a limiting lifting plate, an air cylinder mounting plate, a rectangular pipe support, a motor cover, a motor box, a first speed adjusting motor, a conveying roller shaft, a tensioning roller shaft, a tensioning bolt and a fixing block. By arranging the front conveying device, arrangement of the glass cups is automatic, the working efficiency is improved, the packaged glass cups are secondarily gathered and arranged through the separation metal plates and the side face pushing bending plates in the heat shrinkage furnace, damage and adhesion of glass cup packaging films are avoided, and the packaging efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to heat shrinkage packaging equipment technical field especially relates to a glass cup is with seal cutting heat shrinkage packaging machine. BACKGROUND

[0002] The working principle of heat shrinkage packaging machine is to utilize the heat shrinkage of heat shrinkage film, and the film is shrunk through heating equipment after wrapping the goods, and is tightly attached to the product, so as to achieve the purpose of packaging, the film material used by heat shrinkage packaging machine has multiple, including PE film, PVC, POF film and the like, different materials are suitable for different types of product packaging demand.

[0003] The existing heat shrinkage packaging machine can only manually arrange the glass cups when packaging the glass cups, cannot satisfy the packaging demand of batch packaging of the glass cups in multiple rows and multiple columns, and when heat shrinking the multiple packaged glass cups, the packaging film is extremely easy to be damaged and adhered due to irregular arrangement and placement, and the packaging efficiency is greatly reduced. UTILITY MODEL CONTENTS

[0004] The utility model provides a glass cup is with seal cutting heat shrinkage packaging machine.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A glass cup sealing and cutting heat shrinkage packaging machine, comprising a front conveying device, an edge sealing machine and a heat shrinkage furnace, the edge sealing machine is located at the left end of the front conveying device, and the heat shrinkage furnace is located at the left end of the edge sealing machine, characterized in that the front conveying device comprises a conveying frame, a pushing device, a baffle one, a baffle two, a photoelectric support, an inner side bending baffle, a base box, the bottom of the pushing device is connected with the rear end of the conveying frame through bolts, the base box is located at the left end of the conveying frame, the base box is connected with the left end of the conveying frame through bolts, the conveying frame comprises a bottom frame, a frame side plate, a frame baffle, a panel, a non-powered roller shaft, a limiting cylinder, a limiting lifting plate, a cylinder mounting plate, a square tube support, a motor cover, a motor box, a speed regulating motor one, a conveying roller shaft, a tensioning roller shaft, a tensioning bolt and a fixed block, the frame side plates are symmetrically arranged left and right, the bottom of the frame side plate is connected with the upper end of the bottom frame through bolts, the bottom of the frame baffle is connected with the upper end of the frame side plate through bolts, the two ends of the panel are connected with the inner sides of the symmetrically arranged frame side plates through bolts, the square tube supports are uniformly arranged in an array from front to back above the panel, the lower ends of the two sides of the square tube supports are connected with the outer side ends of the frame side plates through bolts, the inner side bending baffle is located between the square tube support and the panel, a slot hole is formed in the upper end of the square tube support, the upper end of the inner side bending baffle is connected with the square tube support through bolts and the slot hole, the rear end of the inner side bending baffle is left, and the front end is right, the non-powered roller shafts are located on the front and rear sides of the panel, the two ends of the non-powered roller shafts are connected with the inner sides of the symmetrically arranged frame side plates through bolts, the cylinder mounting plate is located on the rear side of the panel, the cylinder mounting plate is connected with the inner side of the frame side plate through bolts, the limiting cylinder is connected with the cylinder mounting plate through bolts, the limiting lifting plate is connected with the upper side output end of the limiting cylinder through bolts, the pushing device comprises a stainless steel plate, a support plate, a cylinder support, a long guide rail, a long light shaft, a guard plate, a bending support one and a bending support two, a bearing sliding seat, a long cylinder and a limiting slot hole, the upper end of the support plate is connected with the bottom of the stainless steel plate through bolts, the baffle one is located at the rear end of the stainless steel plate, the baffle one is connected with the upper end of the frame side plate and the support plate through bolts, the photoelectric support is connected with the upper side of the baffle one through bolts, the photoelectric support is located between the left end of the pushing device and the frame side plate, a photoelectric sensor is installed on the photoelectric support, the baffle two is located at the front end of the stainless steel plate, the baffle two is connected with the upper end of the support plate through bolts, the guard plate is located on the upper side of the stainless steel plate, the left end of the guard plate is flush with the left side of the rear end of the inner side bending baffle, the long cylinder is located on the right side of the middle of the upper side of the stainless steel plate, the two ends of the long cylinder are connected with the upper side of the stainless steel plate through the cylinder support and bolts, the long light shafts are symmetrically arranged on the front and rear sides of the long cylinder, the left end of the long light shaft is connected with the guard plate through bolts, the bearing sliding seat is connected with the long light shaft in sliding mode, the bearing sliding seat is connected with the upper side of the stainless steel plate through bolts, the long guide rail is located on the front side of the long cylinder, the long guide rail is connected with the upper side of the stainless steel plate through bolts, the bending support two is located on the upper side of the long guide rail,The second bottom of the bending support is connected with the upper end of the guide rail slide through bolts, the guide rail slide is slidably connected with the long guide rail, the second front side of the bending support is connected with the guard plate through bolts, the first bending support is symmetrically arranged on the right side of the guard plate, the left end of the first bending support is fixedly connected with the right side of the guard plate, the left output end of the long air cylinder is hingedly connected with the first bending support, a limiting slot hole is formed in the stainless steel plate, the limiting lifting plate passes through the limiting slot hole, the heat shrinkage furnace comprises a lower box welding, an upper air cylinder mounting frame is arranged on the upper end of the lower box welding, the lower end of the upper air cylinder mounting frame is fixedly connected with the upper end of the lower box welding, an upper advancing air cylinder is arranged in the upper air cylinder mounting frame, the upper advancing air cylinder is connected with the upper end of the upper air cylinder mounting frame through bolts, a partition sheet metal is arranged on the lower side output end of the upper advancing air cylinder, the upper end of the partition sheet metal is connected with the lower side output end of the upper advancing air cylinder through bolts, an infrared detection sheet metal is arranged on the right side of the upper air cylinder mounting frame, the infrared detection sheet metal is connected with the right side of the upper air cylinder mounting frame through bolts, an infrared detection device is arranged on the infrared detection sheet metal, a pair of side air cylinder mounting frames are symmetrically arranged on the right side of the upper air cylinder mounting frame, the bottom of each side air cylinder mounting frame is connected with the upper end of the lower box welding through bolts, a side advancing air cylinder is arranged on the upper end of each side air cylinder mounting frame, the side advancing air cylinder is connected with the upper end of the side air cylinder mounting frame through bolts, a side pushing bending plate is arranged on the inner side output end of the side advancing air cylinder, the side pushing bending plate is connected with the inner side output end of the side advancing air cylinder through bolts.

[0007] Further, the conveying roller shaft is located below the panel, the conveying roller shaft is connected with the inner side of the frame side plate through a bearing with a seat at both ends, a sprocket is arranged on the right end of the conveying roller shaft, the tensioning roller shaft is located in front of the conveying roller shaft, fixed blocks are arranged at both ends of the tensioning roller shaft, the fixed blocks are optically connected with the outer side of the frame side plate, the tensioning roller shaft is connected with the fixed blocks through tensioning bolts at both ends, the conveying roller shaft, the unpowered roller shaft and the tensioning roller shaft are connected through a belt to drive.

[0008] Further, the speed regulating motor one is located below the conveying roller shaft, the speed regulating motor one is connected with the motor box through bolts at the right end, the motor box is connected with the lower end of the frame side plate through bolts at the upper end, the motor cover is located on the right side of the motor box, the motor cover is connected with the motor box through bolts at both front and back sides, a sprocket is arranged on the right side output end of the speed regulating motor one, the right side output end of the speed regulating motor one is connected with the right end of the conveying roller shaft through a chain to drive.

[0009] Further, the heat shrinkage furnace further comprises a side plate welding, a fan upper shell, a decorative plate, a control box, an upper box cover, an end beam, a heating driving roller, a motor sheet metal, a speed regulating motor two, a heating driven roller, a support square tube, an inner shell welding, a cloth pressing plate and temperature insulation cloth, the side plate welding is symmetrically arranged before and after, the side plate welding is located on the left side of the upper cylinder mounting frame, the bottom of the side plate welding is fixedly connected with the upper end of the lower box welding, the inner shell welding is located between the side plate weldings, the two sides of the inner shell welding are fixedly connected with the inner sides of the side plate weldings, the bottom of the inner shell welding is fixedly connected with the upper end of the lower box welding, and the upper end of the side plate welding is fixedly connected with the decorative plate through bolts.

[0010] Further, the upper box cover is located at the upper end of the inner shell welding, the upper box cover is connected with the upper end of the inner shell welding through bolts at four ends, the fan upper shell is located at the upper end of the upper box cover, the fan upper shell is symmetrically arranged left and right, the bottom of the fan upper shell is connected with the upper end of the upper box cover through bolts, and the control box is located between the fan upper shells.

[0011] Further, the support square tube is located at the inner side bottom of the inner shell welding, the lower end of the support square tube is fixedly connected with the inner side bottom of the inner shell welding, and the end beam is located at the right end of the lower box welding.

[0012] Further, the lower box welding is provided with the heating driving roller at the right end, the two ends of the heating driving roller are connected with the inner side upper end of the lower box welding through bearing seats, a sprocket is mounted at the front end of the heating driving roller, the lower box welding is provided with the heating driven roller at the left end, the two ends of the heating driven roller are connected with the inner side upper end of the lower box welding through bearing seats, and the heating driving roller and the heating driven roller are directly connected through a conveyor belt for transmission.

[0013] Further, the lower box welding is provided with the heating driving roller at the right end, the two ends of the heating driving roller are connected with the inner side upper end of the lower box welding through bearing seats, a sprocket is mounted at the front end of the heating driving roller, the lower box welding is provided with the heating driven roller at the left end, the two ends of the heating driven roller are connected with the inner side upper end of the lower box welding through bearing seats, and the heating driving roller and the heating driven roller are directly connected through a conveyor belt for transmission.

[0014] Further, the inner shell welding is provided with the temperature insulation cloth at the left and right sides, and the temperature insulation cloth is connected with the upper ends of the two sides of the inner shell welding through the cloth pressing plate and bolts.

[0015] Beneficial effects: the utility model discloses a front conveying device can be arranged to the glass cup of disorder is arranged in multiple columns and multiple rows, when reaching the required specification, directly through the long cylinder in front conveying device and pushes the glass cup into the edge sealing machine and carries out the seal cutting package, makes the arrangement of glass cup automation, improves work efficiency, and then by the conveying line in edge sealing machine and sends the packaged glass cup into the conveyer belt of heat shrinkage furnace, through the separation sheet metal and side face in heat shrinkage furnace and push the bent plate and carry out the secondary convergence arrangement of the packaged glass cup, thereby avoiding the breakage and adhesion of the packaging film due to the irregular position of glass cup, improve the packaging efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0017] Figure 2 It is the three-dimensional structure schematic diagram of the front conveying device of the utility model;

[0018] Figure 3 It is the three-dimensional structure schematic diagram of the utility model's conveying frame Figure 1 ;

[0019] Figure 4 It is the three-dimensional structure schematic diagram of the utility model's conveying frame Figure 2 ;

[0020] Figure 5 It is the three-dimensional structure schematic diagram of the utility model's conveying frame Figure 3 ;

[0021] Figure 6 It is the three-dimensional structure schematic diagram of the utility model's pusher;

[0022] Figure 7 It is the three-dimensional structure schematic diagram of the utility model's heat shrinkage furnace Figure 1 ;

[0023] Figure 8 It is the three-dimensional structure schematic diagram of the utility model's heat shrinkage furnace Figure 2 ;

[0024] Figure 9 It is the three-dimensional structure schematic diagram of the utility model's heat shrinkage furnace Figure 3 ;

[0025] Reference signs:

[0026] 1 front conveying device, 2 edge sealing machine, 3 heat shrinkage furnace;

[0027] 101 conveying frame, 102 pusher, 103 baffle one, 104 baffle two, 105 photoelectric support, 106 inside bending baffle, 107 base box;

[0028] 10101 bottom frame welding, 10102 frame side plate, 10103 frame baffle, 10104 panel, 10105 unpowered roller shaft, 10106 limit cylinder, 10107 limit lifting plate, 10108 cylinder mounting plate, 10109 square tube support, 10110 motor cover, 10111 motor box, 10112 speed regulating motor one, 10113 conveying roller shaft, 10114 tensioning roller shaft, 10115 tensioning bolt, 10116 fixing block;

[0029] 10201 stainless steel flat plate, 10202 support plate, 10203 cylinder support, 10204 guide rail, 10205 optical axis, 10206 guard plate, 10207 bending support one, 10208 bending support two, 10209 bearing slide, 10210 long cylinder, 10211 limit slot, 10212 guide rail slide;

[0030] 301 lower box welding, 302 side plate welding, 303 fan upper shell, 304 decorative plate, 305 control box, 306 upper box cover, 307 upper cylinder mounting frame, 308 upper advance cylinder, 309 separation sheet metal, 310 infrared detection sheet metal, 311 side advance cylinder, 312 side cylinder mounting frame, 313 side face pushing bending plate, 314 end beam, 315 heating driving roller, 316 motor sheet metal, 317 speed regulating motor two, 318 heating driven roller, 319 support square tube, 320 inner shell welding, 321 pressing plate, 322 temperature insulation cloth, 323 motor beam. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments.

[0032] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0033] Reference Figures 1-6The utility model provides a kind of glass cup is sealed and cuts heat shrinkage packaging machine, including front conveying device 1, edge sealing machine 2, heat shrinkage furnace 3, the edge sealing machine 2 is located front conveying device 1 left end, the heat shrinkage furnace 3 is located edge sealing machine 2 left end, it is characterized by: the front conveying device 1 includes conveying frame 101, propelling device 102, baffle one 103, baffle two 104, photoelectric support 105, inner side bending baffle 106, base box 107, the propelling device 102 bottom is connected with the rear end of conveying frame 101 by bolt, the base box 107 is located conveying frame 101 left end, the base box 107 is connected with the left end of conveying frame 101 by bolt, the conveying frame 101 includes bottom frame welding 10101, frame side plate 10102, frame baffle 10103, panel 10104, unpowered roller shaft 10105, limit cylinder 10106, limit lifting plate 10107, cylinder mounting plate 10108, square tube support 10109, motor cover 10110, motor box 10111, speed regulation motor one 10112, conveying roller shaft 10113, tension roller shaft 10114, tensioning bolt 10115, fixed block 10116, the frame side plate 10102 is symmetrically arranged left and right, the frame side plate 10102 bottom is connected with the upper end of bottom frame welding 10101 by bolt, the frame baffle 10103 bottom is connected with the upper end of frame side plate 10102 by bolt, the panel 10104 both ends are connected with the inside of symmetrically arranged frame side plate 10102 left and right by bolt, the square tube support 10109 is evenly arranged in array from front to back above panel 10104, the square tube support 10109 both sides lower end is connected with the outside end of frame side plate 10102 by bolt, the inner side bending baffle 106 is located between square tube support 10109 and panel 10104, the square tube support 10109 upper end is provided with slot, the inner side bending baffle 106 upper end is connected with square tube support 10109 by bolt and slot, the inner side bending baffle 106 rear end is left, and front end is right and is arranged obliquely, the unpowered roller shaft 10105 is located panel 10104 front and back both sides, the unpowered roller shaft 10105 both ends are connected with the inside of symmetrically arranged frame side plate 10102 left and right by bolt, the cylinder mounting plate 10108 is located panel 10104 rear side, the cylinder mounting plate 10108 is connected with the inside of frame side plate 10102 by bolt, the limit cylinder 10106 is connected with cylinder mounting plate 10108 by bolt, the limit lifting plate 10107 is connected with the upper side output end of limit cylinder 10106 by bolt, the propelling device 102 includes stainless steel flat plate 10201, support plate 10202, cylinder support 10203, long guide rail 10204, long light axis 10205, guard plate 10206, bending support one 10207, bending support two 10208, bearing slide 10209, long cylinder 10210, limit slot 10211,The upper end of the support plate 10202 is connected to the bottom of the stainless steel flat plate 10201 by bolts, the baffle one 103 is located at the rear end of the stainless steel flat plate 10201, the baffle one 103 is connected to the upper end of the support plate 10202 and the frame side plate 10102 by bolts, the photoelectric support 105 is connected to the upper side of the baffle one 103 by bolts, the photoelectric support 105 is located between the left end of the advancing device 102 and the frame side plate 10102, a photoelectric sensor is installed on the photoelectric support 105, the baffle two 104 is located at the front end of the stainless steel flat plate 10201, the baffle two 104 is connected to the upper end of the support plate 10202 by bolts, the guard plate 10206 is located on the upper side of the stainless steel flat plate 10201, the left end of the guard plate 10206 is flush with the left side of the rear end of the inner side bending baffle 106, the long cylinder 10210 is located on the right end of the middle part of the upper side of the stainless steel flat plate 10201, the long cylinder 10210 is connected to the upper side of the stainless steel flat plate 10201 through the cylinder support 10203 and bolts, the long light shaft 10205 is symmetrically arranged on the front and rear sides of the long cylinder 10210, the left side of the long light shaft 10205 is connected to the guard plate 10206 through bolts, the bearing slide 10209 is in sliding connection with the long light shaft 10205, the bearing slide 10209 is connected to the upper side of the stainless steel flat plate 10201 through bolts, the long guide rail 10204 is located on the front side of the long cylinder 10210, the long guide rail 10204 is connected to the upper side of the stainless steel flat plate 10201 through bolts, the bending support two 10208 is located on the upper side of the long guide rail 10204, the bottom of the bending support two 10208 is connected to the upper end of the guide rail slide 10212 through bolts, the guide rail slide 10212 is in sliding connection with the long guide rail 10204, the front side of the bending support two 10208 is connected to the guard plate 10206 through bolts, the bending support one 10207 is symmetrically arranged on the front and rear sides of the right side of the guard plate 10206, the left end of the bending support one 10207 is fixedly connected to the right side of the guard plate 10206, the left side output end of the long cylinder 10210 is hingedly connected to the bending support one 10207, a limiting slot hole 10211 is formed in the upper side of the stainless steel flat plate 10201, the limiting lifting plate 10107 passes through the limiting slot hole 10211, the heat shrinkage furnace 3 comprises a lower box welding 301, an upper cylinder mounting frame 307 is arranged at the upper end of the lower box welding 301, the lower end of the upper cylinder mounting frame 307 is fixedly connected to the upper end of the lower box welding 301, an upper advancing cylinder 308 is arranged in the upper cylinder mounting frame 307, the upper advancing cylinder 308 is connected to the upper end of the upper cylinder mounting frame 307 through bolts, a separation sheet metal 309 is arranged on the lower side output end of the upper advancing cylinder 308, the upper end of the separation sheet metal 309 is connected to the lower side output end of the upper advancing cylinder 308 through bolts, an infrared detection sheet metal 310 is arranged on the right side of the upper cylinder mounting frame 307, the infrared detection sheet metal 310 is connected to the right side of the upper cylinder mounting frame 307 through bolts.The infrared detection panel 310 is provided with an infrared detection device, a pair of side cylinder mounting racks 312 are symmetrically arranged on the right side of the upper cylinder mounting rack 307, the bottom of the side cylinder mounting rack 312 is connected with the upper end of the lower box 301 through bolts, the side cylinder mounting rack 312 is provided with a side pushing cylinder 311 on the upper end, the side pushing cylinder 311 is connected with the upper end of the side cylinder mounting rack 312 through bolts, the side pushing cylinder 311 is provided with a side pushing bending plate 313 on the inside output end, the side pushing bending plate 313 is connected with the inside output end of the side pushing cylinder 311 through bolts.

[0034] The conveying roller shaft 10113 is located below the panel 10104, both ends of the conveying roller shaft 10113 are connected with the inside of the frame side plate 10102 through belt seat bearings, a chain wheel is installed on the right end of the conveying roller shaft 10113, the tensioning roller shaft 10114 is located in front of the conveying roller shaft 10113, the tensioning roller shaft 10114 is provided with a fixed block 10116 at both ends, the fixed block 10116 is optically connected with the outside of the frame side plate 10102, both ends of the tensioning roller shaft 10114 are connected with the fixed block 10116 through tensioning bolts 10115, the conveying roller shaft 10113, the unpowered roller shaft 10105 and the tensioning roller shaft 10114 are connected and driven through a belt.

[0035] The speed regulating motor 10112 is located below the conveying roller shaft 10113, the right end of the speed regulating motor 10112 is connected with the motor box 10111 through bolts, the upper end of the motor box 10111 is connected with the lower end of the frame side plate 10102 through bolts, the motor cover 10110 is located on the right side of the motor box 10111, the front and back sides of the motor cover 10110 are connected with the front and back sides of the motor box 10111 through bolts, a chain wheel is installed on the right side output end of the speed regulating motor 10112, the right side output end of the speed regulating motor 10112 is connected with the right end of the conveying roller shaft 10113 through a chain for transmission.

[0036] Referring to Figures 7-9The heat shrinkage furnace 3 further comprises side plate welds 302, fan upper shell 303, decorative plate 304, control box 305, upper box cover 306, end beam 314, heating driving roller 315, motor sheet metal 316, speed regulating motor two 317, heating driven roller 318, support square tube 319, inner shell weld 320, cloth pressing plate 321, and temperature insulation cloth 322. The side plate welds 302 are symmetrically arranged front and back, and are located on the left side of the upper air cylinder mounting frame 307. The bottom of the side plate welds 302 is fixedly connected with the upper end of the lower box weld 301. The inner shell weld 320 is located between the side plate welds 302, and the two sides of the inner shell weld 320 are fixedly connected with the inner sides of the side plate welds 302. The bottom of the inner shell weld 320 is fixedly connected with the upper end of the lower box weld 301. The upper end of the side plate weld 302 is provided with the decorative plate 304 through bolts.

[0037] The upper box cover 306 is located at the upper end of the inner shell weld 320, and the four ends of the upper box cover 306 are connected with the upper end of the inner shell weld 320 through bolts. The fan upper shell 303 is located at the upper end of the upper box cover 306, and the fan upper shell 303 is symmetrically arranged left and right. The bottom of the fan upper shell 303 is connected with the upper end of the upper box cover 306 through bolts. The control box 305 is located between the fan upper shell 303, and the lower end of the control box 305 is connected with the upper end of the upper box cover 306 through bolts.

[0038] The support square tube 319 is located at the inner bottom of the inner shell weld 320, and the lower end of the support square tube 319 is fixedly connected with the inner bottom of the inner shell weld 320. The end beam 314 is located at the right end of the lower box weld 301, and the two ends of the end beam 314 are fixedly connected with the inner side of the lower box weld 301.

[0039] The lower end of the heating driving roller 315 is provided at the right end of the lower box weld 301, and the two ends of the heating driving roller 315 are connected with the inner upper end of the lower box weld 301 through bearing seats. A sprocket is mounted at the front end of the heating driving roller 315. The heating driven roller 318 is provided at the left end of the lower box weld 301, and the two ends of the heating driven roller 318 are connected with the inner upper end of the lower box weld 301 through bearing seats. The heating driving roller 315 and the heating driven roller 318 are directly connected through a conveyor belt for transmission.

[0040] The motor cross beam 323 is arranged in the lower box weld 301, and the two ends of the motor cross beam 323 are fixedly connected with the inner side of the lower box weld 301. The motor cross beam 323 is located at the lower left side of the heating driven roller 318. The lower end of the motor sheet metal 316 is fixedly connected with the upper end of the motor cross beam 323. The speed regulating motor two 317 is connected with the motor sheet metal 316 through bolts at the front side. A sprocket is mounted at the front output end of the speed regulating motor two 317. The front output end of the speed regulating motor two 317 is connected with the front end of the heating driving roller 315 through a chain for transmission.

[0041] The inner shell welding 320 around both sides are provided with temperature insulation cloth 322, the upper end of the temperature insulation cloth 322 is connected with the upper end of the inner shell welding 320 on both sides through the cloth pressing plate 321 and bolts.

[0042] Working principle: through the setting of the inner side bending baffle 106, the disordered glass cups are converged, and the gap for single passing is left at the rear end, so that the glass cups pass through the belt conveying, the front side pushes the rear side, and then enter the pushing device 102 one by one. The left end of the guard plate 10206 is flush with the left end of the inner side bending baffle 106, and the limiting cylinder 10106 is in the extended state at this time. The limiting lifting plate 10107 on the upper side of the output end of the limiting cylinder 10106 extends from the limiting slot hole 10211, and limits the glass cup to prevent the glass cup from deviating. When the photoelectric detection device on the photoelectric support 105 detects that the glass cup is close, it means that a row of glass cups has been entered. The upper side of the output end of the limiting cylinder 10106 is retracted, and the long cylinder 10210 pushes forward by a small distance of a row of cups. Then the long cylinder 10210 is retracted, the limiting lifting plate 10107 is extended, and the resetting is performed. When the pushing times reach the set number of times, the long cylinder 10210 in the pushing device 102 directly pushes all the glass cups above the stainless steel plate 10201 into the front conveying line of the edge sealing machine 2. The glass cup is packaged and cut by the edge sealing machine 2, and then the packaged glass cup is sent to the conveying belt of the heat shrinkage furnace by the rear conveying line in the edge sealing machine 2 until it reaches the partition plate 309. When it reaches the partition plate 309, the infrared detection device on the infrared detection plate 310 detects the object and sends a signal to make the side pushing cylinder 311 move the side pushing bending plate 313 to the middle to converge and arrange the packaged glass cup. Then the upper pushing cylinder 308 and the side pushing cylinder 311 are retracted at the same time. The packaged glass cup enters the heat shrinkage furnace 3 through the conveying belt to perform heat shrinkage, and the packaging work is completed.

[0043] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A glass cup sealing and cutting heat shrinkage packaging machine, comprising a front conveying device (1), a side sealing machine (2), a heat shrinkage furnace (3), the side sealing machine (2) is located at the left end of the front conveying device (1), and the heat shrinkage furnace (3) is located at the left end of the side sealing machine (2), characterized in that: The front conveying device (1) comprises a conveying frame (101), a propelling device (102), a baffle one (103), a baffle two (104), a photoelectric support (105), an inner side bending baffle (106), a base box (107), the bottom of the propelling device (102) is connected with the rear end of the conveying frame (101) through bolts, the base box (107) is located at the left end of the conveying frame (101), the base box (107) is connected with the left end of the conveying frame (101) through bolts, the conveying frame (101) comprises a chassis welding (10101), a frame side plate (10102), a frame baffle (10103), a panel (10104), a non-powered roller shaft (10105), a limiting cylinder (10106), a limiting lifting plate (10107), a cylinder mounting plate (10108), a square tube support (10109), a motor cover (10110), a motor box (10111), a speed regulating motor one (10112), a conveying roller shaft (10113), a tensioning roller shaft (10114), a tensioning bolt (10115), a fixed block (10116), the frame side plate (10102) is symmetrically arranged left and right, the bottom of the frame side plate (10102) is connected with the upper end of the chassis welding (10101) through bolts, the bottom of the frame baffle (10103) is connected with the upper end of the frame side plate (10102) through bolts, the panel (10104) is connected with the inner sides of the symmetrically arranged frame side plates (10102) on both ends through bolts, the square tube supports (10109) are uniformly arranged in an array from front to back above the panel (10104), the lower ends of the square tube supports (10109) are connected with the outer side ends of the frame side plates (10102) through bolts, the inner side bending baffle (106) is located between the square tube supports (10109) and the panel (10104), the upper end of the inner side bending baffle (106) is connected with the square tube supports (10109) through bolts and slot holes, the rear end of the inner side bending baffle (106) is left, and the front end is right, the non-powered roller shaft (10105) is located on the front and rear sides of the panel (10104), the ends of the non-powered roller shaft (10105) are connected with the inner sides of the symmetrically arranged frame side plates (10102) through bolts, the cylinder mounting plate (10108) is located on the rear side of the panel (10104), the cylinder mounting plate (10108) is connected with the inner side of the frame side plate (10102) through bolts, the limiting cylinder (10106) is connected with the cylinder mounting plate (10108) through bolts, the limiting lifting plate (10107) is connected with the upper side output end of the limiting cylinder (10106) through bolts,The propelling device (102) comprises a stainless steel flat plate (10201), a support plate (10202), a cylinder support (10203), a long guide rail (10204), a long light shaft (10205), a guard plate (10206), a bending support one (10207), a bending support two (10208), a bearing sliding seat (10209), a long cylinder (10210), and a limiting slot (10211). The upper end of the support plate (10202) is connected with the bottom of the stainless steel flat plate (10201) through bolts. The baffle one (103) is located at the rear end of the stainless steel flat plate (10201). The baffle one (103) is connected with the frame side plate (10102) and the upper end of the support plate (10202) through bolts. The photoelectric support (105) is connected with the upper side of the baffle one (103) through bolts. The photoelectric support (105) is located between the left end of the propelling device (102) and the frame side plate (10102). The photoelectric sensor is installed on the photoelectric support (105). The baffle two (104) is located at the front end of the stainless steel flat plate (10201). The baffle two (104) is connected with the upper end of the support plate (10202) through bolts. The guard plate (10206) is located on the upper side of the stainless steel flat plate (10201). The left end of the guard plate (10206) is flush with the left side of the rear end of the inner side bending baffle (106). The long cylinder (10210) is located on the upper side of the middle right end of the stainless steel flat plate (10201). The long cylinder (10210) is connected with the upper side of the stainless steel flat plate (10201) through the cylinder support (10203) and bolts. The long light shaft (10205) is symmetrically arranged on the front and rear sides of the long cylinder (10210). The long light shaft (10205) is connected with the guard plate (10206) through bolts. The bearing sliding seat (10209) is slidingly connected with the long light shaft (10205). The bearing sliding seat (10209) is connected with the upper side of the stainless steel flat plate (10201) through bolts. The long guide rail (10204) is located on the front side of the long cylinder (10210). The long guide rail (10204) is connected with the upper side of the stainless steel flat plate (10201) through bolts. The bending support two (10208) is located on the upper side of the long guide rail (10204). The bottom of the bending support two (10208) is connected with the upper end of the guide rail sliding seat (10212) through bolts. The guide rail sliding seat (10212) is slidingly connected with the long guide rail (10204). The front side of the bending support two (10208) is connected with the guard plate (10206) through bolts. The bending support one (10207) is symmetrically arranged on the right side of the front and rear of the guard plate (10206). The left end of the bending support one (10207) is fixedly connected with the right side of the guard plate (10206). The left side output end of the long cylinder (10210) is hingedly connected with the bending support one (10207). The limiting slot (10211) is opened on the stainless steel flat plate (10201).The limiting lifting plate (10107) passes through the limiting slot hole (10211), the heat shrinkage furnace (3) includes a lower box weld (301), an upper air cylinder mounting frame (307) is arranged at the upper end of the lower box weld (301), the lower end of the upper air cylinder mounting frame (307) is fixedly connected with the upper end of the lower box weld (301), an upper advancing air cylinder (308) is arranged in the upper air cylinder mounting frame (307), the upper advancing air cylinder (308) is connected with the upper end of the upper air cylinder mounting frame (307) through bolts, a separation plate (309) is arranged at the lower side output end of the upper advancing air cylinder (308), the upper end of the separation plate (309) is connected with the lower side output end of the upper advancing air cylinder (308) through bolts, an infrared detection plate (310) is arranged on the right side of the upper air cylinder mounting frame (307), the infrared detection plate (310) is connected with the right side of the upper air cylinder mounting frame (307) through bolts, an infrared detection device is arranged on the infrared detection plate (310), a pair of side air cylinder mounting frames (312) are symmetrically arranged on the right side of the upper air cylinder mounting frame (307), the bottom of the side air cylinder mounting frame (312) is connected with the upper end of the lower box weld (301) through bolts, a side advancing air cylinder (311) is arranged at the upper end of the side air cylinder mounting frame (312), the side advancing air cylinder (311) is connected with the upper end of the side air cylinder mounting frame (312) through bolts, a side pushing bending plate (313) is arranged at the inner side output end of the side advancing air cylinder (311), and the side pushing bending plate (313) is connected with the inner side output end of the side advancing air cylinder (311) through bolts.

2. A sealing and cutting heat shrink packaging machine for glass cups according to claim 1, characterized in that: The conveying roller shaft (10113) is located below the panel (10104), both ends of the conveying roller shaft (10113) are connected with the inner side of the frame side plate (10102) through a belt seat bearing, a chain wheel is installed at the right end of the conveying roller shaft (10113), the tensioning roller shaft (10114) is located in front of the conveying roller shaft (10113), the tensioning roller shaft (10114) is provided with a fixed block (10116) at both ends, the fixed block (10116) is optoelectronically connected with the outer side of the frame side plate (10102), both ends of the tensioning roller shaft (10114) are connected with the fixed block (10116) through a tensioning bolt (10115), the conveying roller shaft (10113), the unpowered roller shaft (10105) and the tensioning roller shaft (10114) are connected and driven through a belt.

3. A sealing and cutting heat shrink packaging machine for glass cups according to claim 1, characterized in that: The speed regulating motor (10112) is located below the conveying roller shaft (10113), the right end of the speed regulating motor (10112) is connected with the motor box (10111) through a bolt, the upper end of the motor box (10111) is connected with the lower end of the frame side plate (10102) through a bolt, the motor cover (10110) is located on the right side of the motor box (10111), the front and rear sides of the motor cover (10110) are connected with the front and rear sides of the motor box (10111) through bolts, a chain wheel is installed at the right side output end of the speed regulating motor (10112), the right side output end of the speed regulating motor (10112) is connected with the right end of the conveying roller shaft (10113) through a chain for transmission.

4. A sealing and cutting heat shrink packaging machine for glass cups according to claim 1, characterized in that: The heat shrinkage furnace (3) further comprises a side plate welding (302), a fan upper shell (303), a decorative plate (304), a control box (305), an upper box cover (306), an end beam (314), a heating driving roller (315), a motor sheet metal (316), a speed regulating motor (317), a heating driven roller (318), a support square tube (319), an inner shell welding (320), a cloth pressing plate (321), and a temperature insulation cloth (322). The side plate welding (302) is symmetrically arranged front and back, the side plate welding (302) is located on the left side of the upper cylinder mounting frame (307), the bottom of the side plate welding (302) is fixedly connected with the upper end of the lower box welding (301), the inner shell welding (320) is located between the side plate weldings (302), the inner shell welding (320) is fixedly connected with the inner sides of the side plate weldings (302) on both sides, the bottom of the inner shell welding (320) is fixedly connected with the upper end of the lower box welding (301), and the side plate welding (302) is provided with the decorative plate (304) fixed through bolts on the upper end.

5. A sealing and cutting heat shrink packaging machine for glass cups according to claim 4, characterized in that: The upper box cover (306) is located on the upper end of the inner shell welding (320), the upper box cover (306) is connected to the upper end of the inner shell welding (320) through bolts at four ends, the upper shell (303) of the fan is located on the upper end of the upper box cover (306), the upper shell (303) of the fan is symmetrically arranged left and right, the bottom of the upper shell (303) of the fan is connected to the upper end of the upper box cover (306) through bolts, and the control box body (305) is located between the upper shells (303) of the fan.

6. A sealing and cutting heat shrink packaging machine for glass cups according to claim 4, characterized in that: The support square tube (319) is located on the inner side of the bottom of the inner shell welding (320), and the support square tube (319) is fixedly connected to the inner side of the bottom of the inner shell welding (320) at the lower end.

7. A sealing and cutting heat shrink packaging machine for glass cups according to claim 4, characterized in that: The lower end of the heating driven roller (315) is connected to the inner side of the upper end of the lower box welding (301) through a bearing with a seat, a chain wheel is installed at the front end of the heating driven roller (315), the left end of the lower box welding (301) is provided with a heating driven roller (318), and the heating driven roller (318) is connected to the inner side of the upper end of the lower box welding (301) through a bearing with a seat at both ends.

8. A sealing and cutting heat shrink packaging machine for glass cups according to claim 4, characterized in that: The lower box welding (301) is provided with a motor cross beam (323), and the motor cross beam (323) is fixedly connected to the inner side of the lower box welding (301) at both ends.

9. A sealing and cutting heat shrink packaging machine for glass cups according to claim 4, characterized in that: The inner shell welding (320) is provided with a heat insulation cloth (322) on both sides, and the heat insulation cloth (322) is connected to the upper end of the inner shell welding (320) on both sides through a cloth pressing plate (321) and bolts.