Device for putting drying agent and deoxidizing agent into powder-liquid double-chamber bag
Through the cooperation of automated deoxidant and desiccant transport components and dispenser, the automatic pasting of desiccant and deoxidant in powder and liquid double-chamber bags is achieved, solving the problem of low manual pasting efficiency, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202422817529.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-11-19
AI Technical Summary
The existing powder and liquid double-chamber bags are artificially pasted with desiccant and deoxidizer in the production process, which is very efficient, has a large amount of people, takes a long time, and has a large labor load, resulting in low production efficiency.
The deoxidant transport component, desiccant transport component, dispenser and transport component are used to spray glue on the surface of the deoxidant through the dispenser. The deoxidant and the dehydrant are bonded with the dehydrant and the adhesive is transported into the groove of the aluminum film, instead of manual pasting operation.
Improve production efficiency, reduce labor costs, reduce labor volume and labor load, and realize automated production.
Smart Images

Figure CN223253504U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical production equipment, and more specifically to a device for placing a desiccant and a deoxidizer in a powder-liquid double-chamber bag. Background Art
[0002] A powder-liquid dual-chamber bag is a flexible double-chamber bag for infusions that contains both liquid and powdered medication. The powder cavity is covered with aluminum foil. The production process for a powder-liquid dual-chamber bag includes bag making and sealing, light inspection of the liquid cavity, ventilation and sterilization, post-sterilization transportation, powder packaging, light inspection before aluminum foil welding, aluminum foil welding, leak detection of the powder and liquid cavities, and logistics packaging. Aluminum foil is typically welded to both the top and bottom surfaces of the powder cavity to prevent degradation of the powdered medication due to moisture, oxygen, and light. Some special powder-liquid dual-chamber bag products require the placement of a desiccant and deoxidizer between the powder cavity and the aluminum foil to further minimize powder degradation. Adding desiccant and deoxidizer to the bag requires manual application, which is inefficient, labor-intensive, and time-consuming. The heavy workload also results in low production efficiency.
[0003] In summary, how to reduce the labor cost of producing powder-liquid double-chamber bags is an urgent problem to be solved by those skilled in the art. Utility Model Content
[0004] In view of this, the purpose of the utility model is to provide a powder-liquid double-chamber bag delivery desiccant and deoxidizer device, which sprays glue on the surface of the deoxidizer through a glue dispenser. When the conveying component moves the deoxidizer, the deoxidizer and the desiccant can be bonded by glue. Finally, the conveying component transports the bonded parts to the aluminum film, replacing the manual pasting working method, reducing labor production costs and improving production efficiency.
[0005] In order to achieve the above purpose, the present invention provides the following technical solutions:
[0006] A device for feeding desiccant and deoxidizer into a powder-liquid double-chamber bag, comprising:
[0007] The deoxidizer transmission component is used to receive the deoxidizer produced by the deoxidizer blanking component and transport it to a designated location;
[0008] A desiccant transport component is used to receive the desiccant produced by the desiccant feeding component and transport the desiccant to a designated location corresponding to the deoxidizer;
[0009] Aluminum film stamping components, used to produce aluminum films with grooves;
[0010] A glue dispenser, located at the designated position and used to spray glue onto the surface of the deoxidizer and into the grooves on the surface of the aluminum film;
[0011] The aluminum film conveying component is arranged between the deoxidizer conveying component and the desiccant conveying component and is used for absorbing the deoxidizer stained with glue, adhering it to the desiccant, and conveying the adhesive to the groove of the aluminum film.
[0012] Preferably, the deoxidizer transmission component includes a first servo motor, a deoxidizer conveyor belt, a deoxidizer drag plate and a first frame. The first servo motor and the deoxidizer conveyor belt are both arranged on the first frame and are used to drive the deoxidizer conveyor belt to transmit. There are multiple deoxidizer drag plates and they are evenly distributed on the surface of the deoxidizer conveyor belt. The desiccant transmission component includes a second servo motor, a desiccant conveyor belt, a desiccant drag plate and a second frame. The second servo motor and the desiccant conveyor belt are both arranged on the second frame and the second servo motor is used to drive the desiccant conveyor belt to transmit. There are multiple desiccant drag plates and they are evenly distributed on the surface of the desiccant conveyor belt.
[0013] Preferably, the deoxidizer drag plate and the desiccant drag plate are both plate-like structures with grooves on their surfaces, the deoxidizer conveyor belt and the desiccant conveyor belt are arranged parallel to each other, and the transmission directions of the deoxidizer conveyor belt and the desiccant conveyor belt are arranged towards each other.
[0014] Preferably, the deoxidizer unloading assembly includes a unloading frame, a reel, a cutting piece and a slide. The outer periphery of the reel is provided with a deoxidizer roll. The reel is used to unfold the deoxidizer roll into a deoxidizer strip. The cutting piece is used to cut the deoxidizer strip into blocks. The block-shaped deoxidizer slides along the slide into the groove on the deoxidizer drag plate.
[0015] Preferably, the desiccant unloading assembly includes a desiccant silo, a desiccant vibrating plate and a desiccant slide. The desiccant silo is used to store desiccant. A guide plate is provided on the desiccant silo. A valve is provided between the inner cavity of the desiccant silo and the guide plate. The guide plate is docked with the desiccant vibrating plate. The desiccant vibrating plate is provided with the desiccant slide. The desiccant slide is docked with the groove on the desiccant drag plate. The desiccant vibrating plate is used to vibrate the desiccant inside it into the desiccant slide at a specified frequency.
[0016] Preferably, a material detection component is provided in the desiccant vibrating disk, and the material detection component is used to detect the material content in the desiccant vibrating disk. The valve on the desiccant silo is a solenoid valve, and the solenoid valve is electrically connected to the material detection component.
[0017] Preferably, the transport assembly includes a support column, a fixed plate, a first cylinder, a second cylinder, a third cylinder, a fourth cylinder, a cylinder fixed plate and a suction cup, the fourth cylinder is arranged on the support column, the first cylinder is arranged on the fourth cylinder through the cylinder fixed plate, the second cylinder is arranged on the first cylinder through the cylinder fixed plate, the third cylinder is arranged on the second cylinder through the cylinder fixed plate, and the suction cup is provided at the output end of the third cylinder.
[0018] Preferably, the aluminum film stamping assembly includes a stamping frame, a multiplier cylinder, a guide shaft, a linear bearing, an intermediate connecting plate, an upper mold fixing plate, a stamping upper mold, a lower mold fixing plate and a stamping lower mold. The stamping frame is divided into two layers, the multiplier cylinder, the guide shaft and the linear bearing are all arranged on the upper layer of the stamping frame, the upper mold fixing plate, the stamping upper mold, the lower mold fixing plate and the stamping lower mold are arranged in the middle of the stamping frame, the stamping lower mold is arranged on the lower layer of the stamping frame through the lower mold fixing plate, the multiplier cylinder, the intermediate connecting plate, the upper mold fixing plate and the stamping upper mold are connected in sequence, and the guide shaft is connected to the intermediate connecting plate through the linear bearing.
[0019] Preferably, the aluminum film stamping assembly also includes a limit plate and a limit ring, the guide shaft is provided with two and is respectively arranged on both sides of the multiplying cylinder, the limit plate is arranged above the guide shaft, and the limit ring is provided with two and is respectively fixed on the limit plate and the stamping frame.
[0020] Preferably, it also includes a support frame, and the deoxidizer transmission component, the desiccant transmission component, the deoxidizer blanking component, the desiccant blanking component, the dispensing machine and the conveying component are all arranged on the upper surface of the support frame, and the support frame is provided with square perforations, and the aluminum film stamping component is arranged below the support frame through the square perforations.
[0021] The utility model provides a powder-liquid double-chamber bag feeding desiccant and deoxidizer device. The deoxidizer transmission component of the device can transport the deoxidizer produced by the deoxidizer feeding component to a designated position, the desiccant transmission component can transport the desiccant produced by the desiccant feeding component to the designated position corresponding to the deoxidizer, the glue dispenser can spray glue to the produced deoxidizer, the deoxidizer stained with glue can be moved to the desiccant by the conveying component, the deoxidizer and the desiccant can be bonded under the action of the glue, and then the conveying component conveys the deoxidizer and desiccant bonded product to the groove of the aluminum film, which can solve the problems of low efficiency, large number of people, long time consumption and heavy labor load of manual pasting of desiccant and deoxidizer, and on this basis can also improve production efficiency and achieve the effect of reducing costs and increasing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0023] Figure 1 This is a schematic structural diagram of the desiccant and deoxidizer delivery device for the powder-liquid double-chamber bag provided by the present invention;
[0024] Figure 2 This is a front view of the device for placing desiccant and deoxidizer into a powder-liquid double-chamber bag provided by the present invention;
[0025] Figure 3 A top view of the deoxidizer blanking assembly provided by the present invention;
[0026] Figure 4 This is a side view of the deoxidizer blanking assembly provided by the utility model;
[0027] Figure 5 This is a front view of the deoxidizer transmission component and the desiccant transmission component provided by the present invention;
[0028] Figure 6 A top view of the deoxidizer transmission component and the desiccant transmission component provided by the present invention;
[0029] Figure 7 A front view of the transport assembly provided by the present invention;
[0030] Figure 8 A side view of the transport assembly provided by the present invention;
[0031] Figure 9 A top view of the transport assembly provided by the present invention;
[0032] Figure 10 This is a front view of the aluminum film stamping assembly provided by the utility model;
[0033] Figure 11 This is a side view of the aluminum film stamping assembly provided by the utility model.
[0034] Reference numerals:
[0035] 1-deoxidizer transmission component; 101-first servo motor; 102-deoxidizer transmission belt; 103-deoxidizer carriage; 104-first rack;
[0036] 2-desiccant transmission assembly; 201-second servo motor; 202-desiccant transmission belt; 203-desiccant carriage; 204-second rack;
[0037] 3- Dispensing machine;
[0038] 4-Aluminum film stamping assembly; 401-Stamping frame; 402-Power cylinder; 403-Guide shaft; 404-Linear bearing; 405-Intermediate connecting plate; 406-Upper mold fixing plate; 407-Stamping upper mold; 408-Lower mold fixing plate; 409-Stamping lower mold; 410-Limiting plate; 411-Limiting ring;
[0039] 5-handling assembly; 501-support column; 502-fixing plate; 503-first cylinder; 504-second cylinder; 505-third cylinder; 506-fourth cylinder; 507-cylinder fixing plate; 508-suction cup;
[0040] 6-deoxidizer blanking assembly; 601-blanking rack; 602-reel; 603-cutting piece; 604-slide;
[0041] 7-desiccant silo; 8-desiccant vibration plate; 9-desiccant slide; 10-support frame. DETAILED DESCRIPTION
[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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.
[0043] The core of the utility model is to provide a powder-liquid double-chamber bag desiccant and deoxidizer device, which can solve the problems of low efficiency, large number of people, long time consumption and heavy labor load in manual pasting of desiccant and deoxidizer.
[0044] It should be noted that the directions or positional relationships indicated by “upper”, “lower”, “front”, “back”, etc. are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on this application.
[0045] The present application provides a powder-liquid dual-chamber bag delivery desiccant and deoxidizer device, comprising: a deoxidizer transmission component 1, a desiccant transmission component 2, a dispensing machine 3, an aluminum film stamping component 4, a conveying component 5, and a deoxidizer discharge component 6;
[0046] The deoxidizer transmission component 1 is used to receive the deoxidizer produced by the deoxidizer blanking component 6 and transport it to a designated location;
[0047] The desiccant transport component 2 is used to receive the desiccant produced by the desiccant feeding component and transport the desiccant to the designated location corresponding to the deoxidizer;
[0048] The aluminum film stamping component 4 is used to produce an aluminum film with grooves;
[0049] The glue dispenser 3 is located at the aforementioned designated position and is used to spray glue onto the surface of the deoxidizer and into the grooves on the surface of the aluminum film;
[0050] The aluminum film conveying component 5 is disposed between the deoxidizer conveying component 1 and the desiccant conveying component 2 and is used to absorb the deoxidizer with glue, adhere it to the desiccant, and convey the adhesive to the groove of the aluminum film.
[0051] For details, please refer to the attached Figure 1 With attached Figure 2 The deoxidizer transmission component 1, the desiccant transmission component 2, the glue dispenser 3, the aluminum film stamping component 4 and the conveying component 5 are arranged on the same plane. The deoxidizer unloading component 6 can divide the deoxidizer into multiple small portions of deoxidizer, and then move them to the designated position through the deoxidizer transmission component 1. Similarly, the small portions of desiccant are also moved to the designated position through the desiccant transmission component 2. The glue dispenser 3 is set near the designated position. Two glue dispensing nozzles are separated from the glue dispenser 3 through the pipeline. One nozzle sprays on the surface of the deoxidizer, and the other nozzle sprays on the stamped aluminum film pit. The aluminum film will move to the right, and the glue in the pit is also to make it stick well. The deoxidizer and desiccant are fixed on the aluminum film during the movement of the aluminum film. The conveying component 5 picks up the deoxidizer with glue from the designated position and moves it above the desiccant. The deoxidizer and desiccant are bonded by glue. The aluminum film produced by the aluminum film stamping component 4 has grooves. The deoxidizer and desiccant after bonding are moved to the grooves on the aluminum film through the conveying component 5. The whole process can be completed without manual participation, so as to solve the problems of low efficiency, large number of people, long time and heavy labor load of manual pasting of desiccant and deoxidizer, and improve production efficiency, so as to achieve the effect of reducing costs and increasing efficiency.
[0052] On the basis of the above embodiment, the deoxidizer transmission assembly 1 includes a first servo motor 101, a deoxidizer conveyor belt 102, a deoxidizer carriage 103 and a first frame 104. The first servo motor 101 and the deoxidizer conveyor belt 102 are both arranged on the first frame 104 and are used to drive the deoxidizer conveyor belt 102 to transmit. There are multiple deoxidizer carriages 103 and they are evenly distributed on the surface of the deoxidizer conveyor belt 102. The desiccant transmission assembly 2 includes a second servo motor 201, a desiccant conveyor belt 202, a desiccant carriage 203 and a second frame 204. The second servo motor 201 and the desiccant conveyor belt 202 are both arranged on the second frame 204 and the second servo motor 201 is used to drive the desiccant conveyor belt 202 to transmit. There are multiple desiccant carriages 203 and they are evenly distributed on the surface of the desiccant conveyor belt 202.
[0053] For details, please refer to the attached Figure 5 With attached Figure 6 The first rack 104 and the second rack 204 have the same structure, which can lift the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 and lift them off the ground. The deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 are both annular structures. There are multiple deoxidizer drag plates 103 and desiccant drag plates 203, which are evenly distributed on the surface of the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202. When the deoxidizer drag plates 103 and the desiccant drag plates 203 are set upward, they can receive the deoxidizer and the desiccant. At this time, when the glue dispenser 3 sprays glue on the surface of the deoxidizer , can be sprayed onto the surface of the deoxidizer carriage 103. When the deoxidizer carriage 103 moves with the deoxidizer conveyor belt 102 to its surface facing downward, the glue remaining on the deoxidizer carriage 103 can fall off from the deoxidizer carriage 103, preventing the glue dispenser 3 from spraying too much glue multiple times, affecting multiple cycle production. In addition, for the first servo motor 101 and the second servo motor 201, the frequency of each rotation of the output end of the first servo motor 101 and the second servo motor 201 and the amplitude of each rotation are realized according to the specified values, that is, as shown in the attached Figure 6 As shown, four deoxidizers / desiccant are grouped together, and each group can simultaneously realize glue spraying and transportation to improve production efficiency.
[0054] Based on the above embodiment, the deoxidizer drag plate 103 and the desiccant drag plate 203 are both plate-shaped structures with grooves on their surfaces, the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 are arranged parallel to each other, and the transmission directions of the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 are arranged in opposite directions.
[0055] Specifically, grooves are provided on the deoxidizer drag plate 103 and the desiccant drag plate 203, which can facilitate the assembly of the deoxidizer and the desiccant. For the deoxidizer, the glue dispenser 3 can directly drip glue into the groove. When the deoxidizer falls into the groove, the lower surface of the deoxidizer is covered with glue, and the upper surface of the deoxidizer is lifted by the conveying component 5. The deoxidizer is then placed on the desiccant by the conveying component 5, so that the lower surface of the deoxidizer covered with glue contacts and adheres to the upper surface of the desiccant. When the glue is appropriate, only the deoxidizer and the desiccant can be adhered, and the other surfaces of the deoxidizer and the desiccant will not be stained with glue, so as to avoid contamination of other objects. In addition, the deoxidizer conveyor belt 102 It is arranged parallel to the desiccant conveyor belt 202, so that when the handling component 5 transports the deoxidizer to the desiccant, it only needs to perform a linear motion perpendicular to the conveyor belt, thereby reducing the operation steps of the equipment. The transmission direction of the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 is determined according to the position of the deoxidizer unloading component 6 and the desiccant unloading component. The deoxidizer unloading component 6 and the desiccant unloading component in this application are respectively arranged on both sides of the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202. If the deoxidizer unloading component 6 and the desiccant unloading component are arranged on the same side, the transmission direction of the deoxidizer conveyor belt 102 and the desiccant conveyor belt 202 can be set to the same direction.
[0056] On the basis of the above embodiment, the deoxidizer unloading assembly 6 includes an unloading frame 601, a reel 602, a cutting piece 603 and a slide 604. The outer periphery of the reel 602 is provided with a deoxidizer roll. The reel 602 is used to unfold the deoxidizer roll into a deoxidizer strip. The cutting piece 603 is used to cut the deoxidizer strip into blocks. The block-shaped deoxidizer slides along the slide 604 into the groove on the deoxidizer drag plate 103.
[0057] For details, please refer to the attached Figure 3 With attached Figure 4 The unloading frame 601 can support and install the reel 602, the cutting piece 603 and the slide 604 on the support frame 10 described later, so that there is a certain distance between it and the support frame 10. The outer periphery of the reel 602 is provided with a deoxidizer roll, which can be unfolded and pulled into a deoxidizer strip by rotation. When the deoxidizer strip reaches the cutting area, the deoxidizer strip is cut into small portions of deoxidizer by the cutting piece 603. The small portions of deoxidizer can slide along the slide 604 into the groove on the deoxidizer drag plate 103. It should be noted that the cutting frequency of the cutting piece 603 is the same as the moving frequency of the deoxidizer drag plate 103 to ensure that each portion of deoxidizer can correspond to and be assembled with a deoxidizer drag plate 103.
[0058] On the basis of the above embodiment, the desiccant unloading component includes a desiccant silo 7, a desiccant vibrating plate 8 and a desiccant slide 9. The desiccant silo 7 is used to store desiccant. A guide plate is provided on the desiccant silo 7. A valve is provided between the inner cavity of the desiccant silo 7 and the guide plate. The guide plate is docked with the desiccant vibrating plate 8. A desiccant slide 9 is provided on the desiccant vibrating plate 8. The desiccant slide 9 is docked with the groove on the desiccant drag plate 203. The desiccant vibrating plate 8 is used to vibrate the desiccant inside it into the desiccant slide 9 at a specified frequency.
[0059] Specifically, the desiccant is in the form of common small bags, and a sufficient amount of desiccant is manually poured into the desiccant silo 7. The desiccant silo 7 can replenish the desiccant into the desiccant vibrating disk 8 when the desiccant content in the desiccant vibrating disk 8 is insufficient. When the desiccant stacking height in the desiccant vibrating disk 8 reaches a preset value, it enters the desiccant slide 9 through the vibration of the desiccant vibrating disk 8, and enters the groove on the desiccant drag plate 203 along the desiccant slide 9. It should be noted that a guide plate and a valve are provided on the desiccant silo 7. When the valve is closed, it can isolate the inner cavity of the desiccant silo 7 from the communication with the guide plate. When the valve is opened, it can realize the communication between the inner cavity of the desiccant silo 7 and the guide plate. That is, whether to add material to the desiccant vibrating disk 8 is controlled by opening or closing the valve.
[0060] On the basis of the above embodiment, a material detection component is provided in the desiccant vibrating disk 8, and the material detection component is used to detect the material content in the desiccant vibrating disk 8. The valve on the desiccant silo 7 is a solenoid valve, and the solenoid valve is electrically connected to the material detection component.
[0061] Specifically, the aforementioned valve is a solenoid valve, and a material detection component is provided on the desiccant vibrating disk 8. Generally speaking, the material detection component is an infrared detection component, which can directly detect the remaining desiccant in the desiccant vibrating disk 8. When the material content in the desiccant vibrating disk 8 is lower than the preset value, since the material detection component is electrically connected to the solenoid valve, the material detection component can send an opening signal to the solenoid valve. After the solenoid valve is opened, the desiccant vibrating disk 8 can be replenished. When the material content in the desiccant vibrating disk 8 reaches the preset value, the material detection component can send a closing signal to the solenoid valve. After the solenoid valve is closed, the replenishment of the desiccant vibrating disk 8 can be stopped. In the entire step, it is only necessary to manually pour the desiccant into the desiccant silo 7, which greatly reduces the manual workload.
[0062] Based on the above embodiment, the transport component 5 includes a support column 501, a fixed plate 502, a first cylinder 503, a second cylinder 504, a third cylinder 505, a fourth cylinder 506, a cylinder fixed plate 507 and a suction cup 508. The fourth cylinder 506 is arranged on the support column 501, the first cylinder 503 is arranged on the fourth cylinder 506 through the cylinder fixed plate 507, the second cylinder 504 is arranged on the first cylinder 503 through the cylinder fixed plate 507, the third cylinder 505 is arranged on the second cylinder 504 through the cylinder fixed plate 507, and the output end of the third cylinder 505 is provided with a suction cup 508.
[0063] For details, please refer to the attached Figure 7 To the attached Figure 9 The support column 501 is mounted on the support frame 10 via a fixing plate 502. The upper end of the support column 501 is provided with a fourth cylinder 506, a cylinder fixing plate 507, a first cylinder 503, a cylinder fixing plate 507, a second cylinder 504, a cylinder fixing plate 507, a third cylinder 505 and a suction cup 508 in sequence. It should be noted that the height of the deoxidizer carriage 103 on the deoxidizer conveyor belt 102 is lower than the height of the desiccant carriage 203 on the desiccant conveyor belt 202. The fourth cylinder 506 can make the first cylinder 503, the second cylinder 504, and the third cylinder 505 move up and down along the support column 501. The first cylinder 503 can push the second cylinder 504 to move in the horizontal direction. The second cylinder 504 can push the third cylinder 505 and the suction cup 508 to move in the horizontal direction. The moving directions of the first cylinder 503 and the second cylinder 504 are also in the same direction. The third cylinder 505 can drive the suction cup 508 to move in the vertical direction.
[0064] The overall handling process is as follows: the position of the fourth cylinder 506 on the support column 501 is adjusted, specifically according to the height setting of the first frame 104 and the second frame 204. The first cylinder 503 and the second cylinder 504 are both extended. At this time, the suction cup 508 is located directly above the deoxidizer drag plate 103. The suction cup 508 is driven downward by the third cylinder 505 and the deoxidizer with glue on the lower surface is sucked by the suction cup. The fourth cylinder 506 can lift the deoxidizer, and then the first cylinder 503 is retracted. At this time, the deoxidizer is located directly above the desiccant. The third cylinder 505 moves downward to contact and bond the deoxidizer and the desiccant. After the bonded deoxidizer and desiccant are moved horizontally by the retraction of the second cylinder 504, and then the fourth cylinder 506 moves downward to transport the bonded part to the groove on the aluminum film. After completing the above steps, the multiple cylinders are reset and only the next cycle of handling process is required.
[0065] In addition, four third cylinders 505 and four suction cups 508 are provided, corresponding to the four desiccant drag plates 203 and four deoxidizer drag plates 103 provided at the aforementioned designated positions, so as to improve production efficiency.
[0066] On the basis of the above embodiment, the aluminum film stamping assembly 4 includes a stamping frame 401, a force cylinder 402, a guide shaft 403, a linear bearing 404, an intermediate connecting plate 405, an upper mold fixing plate 406, a stamping upper mold 407, a lower mold fixing plate 408 and a stamping lower mold 409. The stamping frame 401 is divided into an upper and lower layer. The force cylinder 402, the guide shaft 403 and the linear bearing 404 are all arranged on the upper layer of the stamping frame 401. The upper mold fixing plate 406, the stamping upper mold 407, the lower mold fixing plate 408 and the stamping lower mold 409 are arranged in the middle of the stamping frame 401. The stamping lower mold 409 is arranged on the lower layer of the stamping frame 401 through the lower mold fixing plate 408. The multiplying cylinder 402, the middle connecting plate 405, the upper mold fixing plate 406 and the stamping upper mold 407 are connected in sequence, and the guide shaft 403 passes through the linear bearing 404 and is connected to the middle connecting plate 405.
[0067] For details, please refer to the attached Figure 10 With attached Figure 11 The aluminum film stamping assembly 4 is set at the aluminum film supply station. The aluminum film is formed into a pit under the stamping of the aluminum film stamping assembly 4. In the process of the aluminum film moving to the right in the figure, the glue dispenser 3 sprays glue on the aluminum film. The lower mold fixing plate 408 of the aluminum film stamping assembly 4 is fixed on the stamping machine frame 401. A stamping lower mold 409 is fixed above the lower mold fixing plate 408. The double force cylinder 402 is fixed to the upper layer of the stamping machine frame 401 and runs through the upper layer. The intermediate connecting plate 405 is fixed to the output end of the double force cylinder 402 and can move up and down with the double force cylinder 402. The guide shaft 403 is fixed to the intermediate connecting plate 405 through the linear bearing 404, which plays a guiding role for the intermediate connecting plate 405. The upper mold fixing plate 406 is fixed to the intermediate connecting plate 405, and a stamping upper mold 407 is fixed below the intermediate connecting plate 405. To punch out recesses in the flat aluminum film, the upper stamping die 407 is designed to be convex, while the lower stamping die 409 is designed to be concave. Heating rods are added to both the upper and lower stamping dies 407 and 409 to facilitate deformation of the aluminum film. The upper surface of the lower stamping die 409 is level with the aluminum film, while the lower surface of the upper stamping die 407 is elevated above the film.
[0068] Based on the above embodiment, the aluminum film stamping assembly 4 also includes a limit plate 410 and a limit ring 411. Two guide shafts 403 are provided and are respectively arranged on both sides of the multiplying cylinder 402. The limit plate 410 is arranged above the guide shaft 403. Two limit rings 411 are provided and are respectively fixed on the limit plate 410 and the stamping frame 401.
[0069] Specifically, a limit plate is fixed above the guide shaft 403, and two limit rings 411 are provided, one of which is fixed on the limit plate 410, and the other is fixed on the stamping frame 401. The limit ring 411 plays a limiting role, and the height of the limit ring 411 can adjust the depth of the stamped aluminum film pit. The two guide shafts 403 are respectively arranged on both sides of the multiplier cylinder 402. Since the guide shaft 403 is fixedly connected to the intermediate connecting plate 405, it can ensure that the intermediate connecting plate 405 can maintain a horizontal state during the up and down movement of the intermediate connecting plate 405, thereby ensuring that the grooves on its surface can remain the same during the stamping process of the aluminum film.
[0070] On the basis of the above embodiment, it also includes a support frame 10, and the deoxidizer transmission component 1, the desiccant transmission component 2, the deoxidizer discharge component 6, the desiccant discharge component, the dispensing machine 3 and the conveying component 5 are all arranged on the upper surface of the support frame 10. The support frame 10 is provided with square perforations, and the aluminum film stamping component 4 is arranged below the support frame 10 through the square perforations.
[0071] Specifically, due to limited horizontal space, the device for placing desiccant and deoxidizer is placed above the lower aluminum film supply station. If there is horizontal space, the desiccant and deoxidizer placement device can also be designed side by side with the lower aluminum film supply station, and the fourth cylinder 506 of the desiccant and deoxidizer placement component can be placed horizontally.
[0072] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.
[0073] The above describes in detail the desiccant and deoxidizer device for a powder-liquid dual-chamber bag provided by the present invention. This article uses specific examples to illustrate the principles and implementation methods of the present invention. The description of the above examples is intended only to facilitate understanding of the method and core concept of the present invention. It should be noted that, for those skilled in the art, various improvements and modifications may be made to the present invention without departing from the principles of the present invention, and such improvements and modifications also fall within the scope of protection of the claims of the present invention.
Claims
1. A device for feeding desiccant and deoxidizer into a powder-liquid double-chamber bag, characterized in that: include: A deoxidizer transmission component (1) is used to receive the deoxidizer produced by the deoxidizer discharge component (6) and transport it to a designated location; A desiccant transport component (2) is used to receive the desiccant produced by the desiccant feeding component and transport the desiccant to a designated location corresponding to the deoxidizer; An aluminum film stamping assembly (4) for producing an aluminum film with grooves; A glue dispenser (3), located at the designated position and used for spraying glue onto the surface of the deoxidizer and into the grooves on the surface of the aluminum film; The aluminum film transport component (5) is arranged between the deoxidizer transmission component (1) and the desiccant transmission component (2) and is used to absorb the deoxidizer stained with glue, adhere it to the desiccant, and transport the adhesive to the groove of the aluminum film.
2. The powder-liquid double-chamber bag desiccant and deoxidizer delivery device according to claim 1, characterized in that: The deoxidizer transmission component (1) comprises a first servo motor (101), a deoxidizer transmission belt (102), a deoxidizer drag plate (103) and a first frame (104). The first servo motor (101) and the deoxidizer transmission belt (102) are both arranged on the first frame (104) and used to drive the deoxidizer transmission belt (102). The deoxidizer drag plate (103) is provided with a plurality of deoxidizer drag plates and is evenly distributed on the surface of the deoxidizer transmission belt (102). The component (2) comprises a second servo motor (201), a desiccant conveyor belt (202), a desiccant drag plate (203) and a second frame (204); the second servo motor (201) and the desiccant conveyor belt (202) are both arranged on the second frame (204); the second servo motor (201) is used to drive the desiccant conveyor belt (202); a plurality of the desiccant drag plates (203) are provided and are evenly distributed on the surface of the desiccant conveyor belt (202).
3. The powder-liquid double-chamber bag desiccant and deoxidizer delivery device according to claim 2, characterized in that: The deoxidizer drag plate (103) and the desiccant drag plate (203) are both plate-like structures with grooves on their surfaces. The deoxidizer conveyor belt (102) and the desiccant conveyor belt (202) are arranged parallel to each other, and the transmission directions of the deoxidizer conveyor belt (102) and the desiccant conveyor belt (202) are arranged in opposite directions.
4. The powder-liquid double-chamber bag desiccant and deoxidizer delivery device according to claim 3, characterized in that: The deoxidizer blanking assembly (6) comprises a blanking frame (601), a reel (602), a cutting piece (603) and a slideway (604); a deoxidizer roll is sleeved on the outer periphery of the reel (602); the reel (602) is used to unfold the deoxidizer roll into a deoxidizer strip; the cutting piece (603) is used to cut the deoxidizer strip into blocks; the blocks of deoxidizer slide along the slideway (604) into the groove on the deoxidizer drag plate (103).
5. The powder-liquid double-chamber bag desiccant and deoxidizer delivery device according to claim 4, characterized in that: The desiccant unloading assembly includes a desiccant silo (7), a desiccant vibration plate (8) and a desiccant slide (9), the desiccant silo (7) is used to store desiccant, a guide plate is provided on the desiccant silo (7), a valve is provided between the inner cavity of the desiccant silo (7) and the guide plate, the guide plate is docked with the desiccant vibration plate (8), the desiccant slide (9) is provided on the desiccant vibration plate (8), the desiccant slide (9) is docked with the groove on the desiccant drag plate (203), and the desiccant vibration plate (8) is used to vibrate the desiccant inside thereof into the desiccant slide (9) at a specified frequency.
6. The powder-liquid double-chamber bag desiccant and deoxidizer delivery device according to claim 5, characterized in that: A material detection component is provided in the desiccant vibration disk (8), and the material detection component is used to detect the material content in the desiccant vibration disk (8). The valve on the desiccant silo (7) is a solenoid valve, and the solenoid valve is electrically connected to the material detection component.
7. The device for feeding desiccant and deoxidizer into powder-liquid double-chamber bag according to claim 6, characterized in that: The transport assembly (5) comprises a support column (501), a fixing plate (502), a first cylinder (503), a second cylinder (504), a third cylinder (505), a fourth cylinder (506), a cylinder fixing plate (507) and a suction cup (508), wherein the fourth cylinder (506) is arranged on the support column (501), the first cylinder (503) is arranged on the fourth cylinder (506) through the cylinder fixing plate (507), the second cylinder (504) is arranged on the first cylinder (503) through the cylinder fixing plate (507), the third cylinder (505) is arranged on the second cylinder (504) through the cylinder fixing plate (507), and the suction cup (508) is provided at the output end of the third cylinder (505).
8. The device for feeding desiccant and deoxidizer into powder-liquid double-chamber bag according to claim 7, characterized in that: The aluminum film stamping assembly (4) includes a stamping frame (401), a force cylinder (402), a guide shaft (403), a linear bearing (404), an intermediate connecting plate (405), an upper mold fixing plate (406), a stamping upper mold (407), a lower mold fixing plate (408) and a stamping lower mold (409), wherein the stamping frame (401) is divided into an upper and lower layer, wherein the force cylinder (402), the guide shaft (403) and the linear bearing (404) are all arranged on the upper layer of the stamping frame (401), and the upper mold fixing plate (406), The stamping upper die (407), the lower die fixing plate (408) and the stamping lower die (409) are arranged in the middle of the stamping machine frame (401); the stamping lower die (409) is arranged on the lower layer of the stamping machine frame (401) through the lower die fixing plate (408); the multiplying cylinder (402), the intermediate connecting plate (405), the upper die fixing plate (406) and the stamping upper die (407) are connected in sequence; the guide shaft (403) passes through the linear bearing (404) and is connected to the intermediate connecting plate (405).
9. The device for feeding desiccant and deoxidizer into powder-liquid double-chamber bag according to claim 8, characterized in that: The aluminum film stamping assembly (4) further includes a limit plate (410) and a limit ring (411), two guide shafts (403) are provided and are respectively arranged on both sides of the multiplying cylinder (402), the limit plate (410) is arranged above the guide shaft (403), and two limit rings (411) are provided and are respectively fixed on the limit plate (410) and the stamping frame (401).
10. The device for feeding desiccant and deoxidizer into a powder-liquid double-chamber bag according to any one of claims 1 to 9, characterized in that: The invention also includes a support frame (10), wherein the deoxidizer transmission component (1), the desiccant transmission component (2), the deoxidizer blanking component (6), the desiccant blanking component, the dispensing machine (3) and the conveying component (5) are all arranged on the upper surface of the support frame (10), and the support frame (10) is provided with a square perforation, and the aluminum film stamping component (4) is arranged below the support frame (10) through the square perforation.
Citation Information
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