Transfer device for inner package and outer package

By designing an internal and external packaging transfer device and utilizing an automatic transfer system, the waiting waste and cleanliness risks during the transportation of packaged materials in the clean area are resolved, achieving efficient and safe material transfer.

CN223457625UActive Publication Date: 2025-10-21SPH XING LING SCI & TECH PHARM CO LTD
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Patent Information

Application Number
CN202422771292.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-21
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

In the prior art, during the transportation of packaged materials in a clean area, there are problems such as wasted personnel waiting, risk of material dumping, and risk of cleanliness of transportation equipment.

Method used

A transfer device for inner and outer packaging was designed, including a metering and packaging machine, a re-inspection machine, a vacuum heat sealing machine, a tunnel-type metal rejector, a transfer system and a control system. The automatic transfer system enables the transfer of materials from the inner packaging room to the outer packaging room in the clean area, ensuring the difference in cleanliness levels and reducing personnel waiting and transportation risks.

Benefits of technology

It has achieved the goal of reducing the waste of personnel waiting during the delivery process, the risk of material dumping during transportation, and the risk of cleanliness of transportation equipment, thereby improving transportation efficiency and cleanliness.

✦ Generated by Eureka AI based on patent content.

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Abstract

An inner and outer package transfer device comprises a metering racking machine, a rechecking machine, a vacuum heat sealing machine, a tunnel type metal remover, a transfer system and a control system, the metering racking machine is connected with the rechecking machine, the vacuum heat sealing machine is connected with the rechecking machine, the tunnel type metal remover is connected with the vacuum heat sealing machine, the transfer system is connected with the tunnel type metal remover, and the control system is connected with the tunnel type metal remover. The control system is connected with the transmission system. The transfer system comprises a first conveyor belt, a second conveyor belt, a third conveyor belt, a first power roller way, a second power roller way, a third power roller way, a transfer window, a first transfer window door, a second transfer window door, a first sensor and a second sensor. Compared with the prior art, the automatic transferring system is additionally arranged, the cleanliness levels of transferring from the inner packing room to the outer packing room are different, and in the transferring process, the wait waste of personnel, the material dumping risk in the transportation process and the cleanliness risk of transportation equipment are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a delivery device, in particular to a delivery device of inner and outer package. BACKGROUND

[0002] The original production process has the problems of personnel waiting waste, material dumping risk in the transportation process, and clean risk of transportation equipment.

[0003] In order to solve the above problems, we have made a series of improvements. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at providing a delivery device of inner and outer package to overcome the above-mentioned shortcomings and deficiencies of the prior art.

[0005] A delivery device of inner and outer package comprises a metering and dispensing machine, a reinspection machine, a vacuum heat sealing machine, a tunnel type metal eliminator, a delivery system and a control system, the metering and dispensing machine is connected with the reinspection machine, the vacuum heat sealing machine is connected with the reinspection machine, the tunnel type metal eliminator is connected with the vacuum heat sealing machine, the delivery system is connected with the tunnel type metal eliminator, and the control system is connected with the delivery system.

[0006] The delivery system comprises a first conveyor belt, a second conveyor belt, a third conveyor belt, a first power roller, a second power roller, a third power roller, a delivery window, a first delivery window door, a second delivery window door, a first sensor and a second sensor, the first conveyor belt is connected with the tunnel type metal eliminator, the second conveyor belt is connected with the first conveyor belt, the third conveyor belt is connected with the second conveyor belt, the first power roller is connected with the first conveyor belt, the second power roller is connected with the second conveyor belt, the third power roller is connected with the third conveyor belt, the delivery window is connected with the upper part of the second conveyor belt, the first delivery window door is connected with the left end of the delivery window, the second delivery window door is connected with the right end of the delivery window, the first delivery window door is arranged between the first conveyor belt and the second conveyor belt, the second delivery window door is arranged between the second conveyor belt and the third conveyor belt, the first sensor is connected with the first conveyor belt, and the second sensor is connected with the second conveyor belt.

[0007] The utility model has the advantages of:

[0008] Compared with the prior art, the utility model adds an automatic delivery system to deliver from the inner package room to the outer package room, and the clean levels of the two rooms are different, so that the personnel waiting waste, material dumping risk in the transportation process and clean risk of transportation equipment are reduced during the delivery process. BRIEF DESCRIPTION OF DRAWINGS

[0009] Fig. 1 It is a structure schematic view of the utility model.

[0010] Fig. 2 It is a structure schematic view of the utility model.

[0011] Fig. 3 It is a structure schematic view of the utility model.

[0012] Reference signs:

[0013] Metering and dispensing machine 100, re-inspection machine 200, vacuum heat sealing machine 300, tunnel type metal eliminator 400.

[0014] Delivery system 500, first conveyor belt 510, second conveyor belt 520, third conveyor belt 530, first power roller 540, second power roller 550, third power roller 560, delivery window 570, first delivery window door 580, second delivery window door 590, first sensor 5100, second sensor 5200 and control system 600. DETAILED DESCRIPTION

[0015] The utility model will be further explained in connection with specific implementation examples. It should be understood that the following examples are only used to illustrate the utility model and are not used to limit the scope of the utility model.

[0016] Example 1

[0017] Fig. 1 It is a structure schematic view of the utility model. Fig. 2 It is a structure schematic view of the utility model. Fig. 3 It is a structure schematic view of the utility model.

[0018] As Figs. 1-3 shown, a delivery device of inside and outside package includes: metering and dispensing machine 100, re-inspection machine 200, vacuum heat sealing machine 300, tunnel type metal eliminator 400, delivery system 500 and control system 600, metering and dispensing machine 100 is connected with re-inspection machine 200, vacuum heat sealing machine 300 is connected with re-inspection machine 200, tunnel type metal eliminator 400 is connected with vacuum heat sealing machine 300, delivery system 500 is connected with tunnel type metal eliminator 400, control system 600 is connected with delivery system 500;

[0019] The delivery system 500 comprises a first conveying belt 510, a second conveying belt 520, a third conveying belt 530, a first power roller 540, a second power roller 550, a third power roller 560, a delivery window 570, a first delivery window door 580, a second delivery window door 590, a first sensor 5100 and a second sensor 5200, the first conveying belt 510 is connected with the tunnel type metal eliminator 400, the second conveying belt 520 is connected with the first conveying belt 510, the third conveying belt 530 is connected with the second conveying belt 520, the first power roller 540 is connected with the first conveying belt 510, the second power roller 550 is connected with the second conveying belt 520, the third power roller 560 is connected with the third conveying belt 530, the delivery window 570 is connected with the upper portion of the second conveying belt 520, the first delivery window door 580 is connected with the left end of the delivery window 570, the second delivery window door 590 is connected with the right end of the delivery window 570, the first delivery window door 580 is arranged between the first conveying belt 510 and the second conveying belt 520, the second delivery window door 590 is arranged between the second conveying belt 520 and the third conveying belt 530, the first sensor 5100 is connected with the first conveying belt 510, and the second sensor 5200 is connected with the second conveying belt 520.

[0020] The use principle of the utility model is: the raw material is placed on the first conveying belt 510 by manual assistance, the first delivery window door 580 is opened after the first sensor 5100 detects the signal, and the second conveying belt 520 is started. The material enters the second conveying belt 520, and the first delivery window door 580 is closed; the second sensor 5200 detects the material, and the second conveying belt 520 stops running, the delivery window 570 opens the self-cleaning system, after self-cleaning, the second delivery window door 590 is opened, and the material is delivered to the third conveying belt 530 through the second conveying belt 520. The second delivery window door 590 is closed, the self-cleaning system is started, and a cycle is completed after self-cleaning. The utility model is delivered from the inner room to the outer room by adding an automatic delivery system, the cleanliness levels of the inner room and the outer room are different, and the personnel waiting waste, the material dumping risk in the transportation process and the cleanliness risk of the transportation equipment are reduced in the delivery process.

[0021] The specific embodiments of the utility model are described above, but the utility model is not limited to this, and the utility model can have various changes as long as the purpose of the utility model is not deviated from.

Claims

1. An inside-out delivery device, characterized by, The application relates to a packaging production line, which comprises a metering and dispensing machine (100), a re-inspection machine (200), a vacuum heat sealing machine (300), a tunnel metal eliminator (400), a transfer system (500) and a control system (600), wherein the metering and dispensing machine (100) is connected with the re-inspection machine (200), the vacuum heat sealing machine (300) is connected with the re-inspection machine (200), the tunnel metal eliminator (400) is connected with the vacuum heat sealing machine (300), the transfer system (500) is connected with the tunnel metal eliminator (400), and the control system (600) is connected with the transfer system (500). The transfer system (500) comprises a first conveying belt (510), a second conveying belt (520), a third conveying belt (530), a first power roller (540), a second power roller (550), a third power roller (560), a transfer window (570), a first transfer window door (580), a second transfer window door (590), a first sensor (5100) and a second sensor (5200), wherein the first conveying belt (510) is connected with the tunnel metal eliminator (400), the second conveying belt (520) is connected with the first conveying belt (510), the third conveying belt (530) is connected with the second conveying belt (520), the first power roller (540) is connected with the first conveying belt (510), the second power roller (550) is connected with the second conveying belt (520), the third power roller (560) is connected with the third conveying belt (530), the transfer window (570) is connected with the upper part of the second conveying belt (520), the first transfer window door (580) is connected with the left end of the transfer window (570), the second transfer window door (590) is connected with the right end of the transfer window (570), the first transfer window door (580) is arranged between the first conveying belt (510) and the second conveying belt (520), the second transfer window door (590) is arranged between the second conveying belt (520) and the third conveying belt (530), the first sensor (5100) is connected with the first conveying belt (510), and the second sensor (5200) is connected with the second conveying belt (520). ​