Packaging system convenient to operate
By placing the padding material forming machine and consumable rolls under the packing table in the packing system, and using an arc-shaped discharge port and a real-time detection device, the problem of the padding material machine occupying a large space is solved, and efficient and convenient packing operations are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-03
AI Technical Summary
In the e-commerce packaging industry, existing padding material making machines and consumable rolls occupy a lot of desktop space, affecting packaging operations, and are not suitable for desktops with limited space.
Design an easy-to-operate packaging system, including a packaging table, a padding material forming machine, a storage bin, and a detection device. The padding material forming machine and consumable rolls are placed below the packaging table. The discharge port is designed with an arc shape to prevent jamming. The detection device monitors the storage volume in real time and automatically controls the machine's start and stop. It is combined with guide plates and partitions to adapt to padding materials of different specifications.
It reduces the space occupied by the packing station, improves packing efficiency and ease of operation, simplifies machine operation, and enhances the user experience for packing personnel.
Smart Images

Figure CN223962394U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a packaging system that facilitates operations. Background Technology
[0002] When packaging fragile items, shock-absorbing cushioning materials such as bubble wrap or gourd wrap are usually wrapped around the outside.
[0003] Currently in the e-commerce packaging industry, when using padding materials to package fragile items, the machine for making padding materials and the consumable rolls are usually placed side by side on the table. Because the machine for making padding materials and the consumable rolls are large, they take up a lot of space on the table, which affects the packing operation of the packing staff. Moreover, they cannot be used on some tabletops with limited space.
[0004] Therefore, overcoming the aforementioned technical deficiencies is a technical problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0005] The purpose of this invention is to provide a packaging system that facilitates operations.
[0006] According to one aspect of the present invention, a packaging system for easy operation is provided, comprising:
[0007] The packaging table is equipped with a discharge port, and the perimeter of the discharge port is arc-shaped to prevent the discharge port from getting stuck on the cushioning material.
[0008] The padding material forming machine is located below the packing table;
[0009] The storage silo is located below the packaging table and to the side of the cushioning material forming machine. The cushioning material produced by the forming machine enters the storage silo, and the cushioning material in the silo is discharged through the outlet.
[0010] The detection device can detect the amount of cushioning material stored in the storage bin. The detection device is electrically connected to the cushioning material forming machine.
[0011] This invention relates to a packaging system where consumable rolls are placed on a cushioning material forming machine. The cushioning material produced by the forming machine enters a storage hopper. The free end of the cushioning material in the storage hopper can extend from the discharge port on the packaging table. Packers can manually tear or cut the cushioning material using the equipment to form cushioning material units of the required length, which can then be used to package the items. Because the discharge port has an arc-shaped perimeter, it prevents the cushioning material from getting stuck, ensuring that the cushioning material can be smoothly discharged from the discharge port. Simultaneously, a detection device can monitor the amount of cushioning material stored in the storage hopper in real time. When the detection device detects that the amount of cushioning material in the storage bin is very small or non-existent, the cushioning material forming machine starts working. When the detection device detects that the amount of cushioning material in the storage bin has reached a certain quantity, the cushioning material forming machine stops working. This utility model's packaging system, by placing the cushioning material forming machine and consumable rolls under the packaging table, can greatly reduce the space occupied on the packaging table, improve the packaging experience for packaging personnel, and monitor the amount of material stored in the storage bin in real time through the detection device, automatically control the start and stop of the cushioning material forming machine, simplify machine operation, make it easy for packaging personnel to use, and improve packaging efficiency.
[0012] In some embodiments, a cushioning material separator may also be included. This separator is located below the packing table and separates the continuous cushioning material in the storage bin into cushioning material units of the required length, which are then discharged through a discharge port. Thus, the continuous cushioning material in the storage bin can be separated into cushioning material units of the required length after passing through the separator. These units are then discharged from the discharge port on the packing table for direct use by packing personnel, which is very convenient. The separator's placement below the packing table further reduces the space occupied on the table and improves the packing experience for personnel.
[0013] In some implementations, the cushion forming machine can be a cushioning air cushion machine, and the cushion separating machine can be an air cushion separating machine. Thus, the cushioning air cushions produced by the cushioning air cushion machine enter a storage silo. The continuous cushioning air cushions in the storage silo are then separated into cushioning air cushion units of the required length by the air cushion separating machine. The formed cushioning air cushion units are then discharged from the outlet on the packing table for direct use by packing personnel.
[0014] In some implementations, the detection device can be an ultrasonic sensor, which can be installed on top of the storage silo. Thus, by installing the ultrasonic sensor on top of the storage silo, ensuring an unobstructed sound wave propagation path, the ultrasonic sensor emits ultrasonic pulses towards the surface of the cushioning material in the storage silo, receives the reflected echoes, and calculates the time difference t between the sound wave emission and reception. This allows for the calculation of the distance L between the ultrasonic sensor and the surface of the cushioning material in the storage silo, where L = speed of sound * t / 2. The distance between the ultrasonic sensor probe and the bottom of the storage silo is L1, and the distance between the ultrasonic sensor probe and the top of the storage silo is L2. When L2 < L ≤ L1, it indicates that the cushioning material in the storage silo is not yet full, and the cushioning material forming machine can continue to produce cushioning material. When L = L1, it indicates that the cushioning material in the storage silo is used up, and the cushioning material forming machine needs to be restarted. When the cushioning material is started to be made, when L = L2, it means that the cushioning material in the storage silo has been piled up to be level with the top of the storage silo. At this time, the cushioning material forming machine stops working to prevent the cushioning material from overflowing from the top of the storage silo. Alternatively, the total height from the top to the inner bottom of the storage silo is H, and the material height h = H + L2 - L. When h = 0, it means that the cushioning material in the storage silo has been used up, and the cushioning material forming machine needs to start making cushioning material. When h = H, it means that the cushioning material in the storage silo has been piled up to be level with the top of the storage silo. At this time, the cushioning material forming machine stops working to prevent the cushioning material from overflowing from the top of the storage silo. When 0 < h < H, it means that the cushioning material in the storage silo is not yet full, and the cushioning material forming machine can continue to make cushioning material.
[0015] In some embodiments, a guide plate may also be included, which is located at the discharge position of the pad forming machine.
[0016] The cushioning pads produced by the pad forming machine can enter the storage bin, away from the pad forming machine, through the guide plate.
[0017] Therefore, the guide plate can guide the continuous cushioning pads produced by the pad forming machine to be conveyed to the area of the storage bin away from the pad forming machine, and eventually fill the entire storage bin. Without the guide plate, the continuous cushioning pads produced by the pad forming machine are conveyed to the area of the storage bin close to the pad forming machine. This arrangement causes the detection device to be unable to accurately detect the amount of cushioning pads stored in the storage bin. The pad forming machine will continue to work, and too much cushioning pads will accumulate in the area of the storage bin close to the pad forming machine. This will cause the discharge position of the pad forming machine to be blocked or the cushioning pads to escape outside the storage bin. As a result, the area of the storage bin away from the pad forming machine will not be filled with cushioning pads, resulting in less cushioning pads stored in the storage bin.
[0018] In some embodiments, a partition may also be included, disposed within the storage hopper. The two ends of the partition are respectively located on two opposing inner walls of the storage hopper, and the positions of the partition ends on the inner walls of the storage hopper are adjustable. Thus, the positions of the partition on the two opposing inner walls of the storage hopper can be adjusted according to the width of the cushioning pad produced by the pad forming machine, allowing the storage hopper to accommodate various specifications of cushioning pads, such as 200mm and 400mm wide cushioning pads.
[0019] In some embodiments, a fixing bolt may also be included. Each of the two opposing inner walls of the storage silo has a mounting groove containing a nut. The end of the fixing bolt passes through the end of the partition and is screwed into the nut in the mounting groove. Therefore, when it is necessary to adjust the position of the partition on the two opposing inner walls of the storage silo, the fixing bolt is loosened, and both ends of the partition can slide along the mounting groove. Once the position of the partition on the two opposing inner walls of the storage silo is adjusted, the fixing bolt is tightened. Adjusting the partition position is very convenient.
[0020] In some embodiments, a support frame may also be included, with casters equipped with brakes at the bottom. The padding material forming machine, storage hopper, and padding material separator are all mounted on the support frame, which can be pushed under the packing table. Thus, the padding material forming machine, storage hopper, and padding material separator can be pulled out from under the packing table as a whole or pushed under the packing table using the support frame, making the assembly and disassembly of the entire packing system very convenient and flexible. Once the support frame is pushed into position under the packing table, the casters can be locked to prevent movement.
[0021] In some implementations, the support may be equipped with a handle. This allows the support to be easily pulled out from under the packing table or pushed under the packing table using the handle.
[0022] In some implementations, a foot pedal and a touch screen may also be included, both of which are connected to the cushioning material separator. Thus, packing personnel can control the cushioning material separator to start or stop using the foot pedal, making operation very convenient. The touch screen allows the packing personnel to operate and set the cushioning material separator, enabling it to cut the cushioning material in the storage bin into the required lengths. Both the foot pedal and the touch screen can be placed on the packing table or other easily accessible areas, improving operational flexibility. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of a packaging system that facilitates operation according to one embodiment of the present invention;
[0024] Figure 2 for Figure 1 The diagram shows a structural schematic of the packaging system from another perspective, behind the hidden packaging station.
[0025] Figure 3 for Figure 1 The diagram shows another perspective of the packaging system, hidden behind the packaging station.
[0026] Figure 4 for Figure 3 The diagram shown illustrates the connection relationship between the partition and part of the support frame in the packaging system along direction A.
[0027] Figure 5 for Figure 4 An enlarged schematic diagram of point B in the partition and part of the support shown;
[0028] Figure 6 for Figure 4 The enlarged schematic diagram of point C in the partition and part of the support shown.
[0029] Figure 7 for Figure 1 A schematic diagram of the packaging system from another perspective;
[0030] Figure 8 for Figure 1 The diagram shows the usage status of the packaging system. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0032] In the description of this utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated.
[0033] Figures 1 to 7 The diagram schematically illustrates the structure of a packaging system that facilitates operation according to one embodiment of the present invention.
[0034] refer to Figures 1 to 7A convenient packaging system includes a packaging table 1, a padding material forming machine 2, a storage bin 3, and a detection device 4. Furthermore, a convenient packaging system may also include a padding material separator 5, a guide plate 6, a partition 7, fixing bolts 8, a bracket 9, a foot pedal 10, and a touch screen 110.
[0035] refer to Figure 7 The packaging table 1 has a discharge port 11 formed on it. The periphery of the discharge port 11 is arc-shaped, which can prevent the discharge port 11 from jamming the cushioning material and ensure that the cushioning material can be smoothly delivered from the discharge port 11. In this embodiment, an arc-shaped sheet metal part 111 can be installed around the discharge port 11. The style of the arc-shaped sheet metal part 111 is adapted to the shape of the discharge port 11. The arc-shaped sheet metal part 111 is arc-shaped at the four right-angle edges of the discharge port 11. The arc-shaped sheet metal part 111 can prevent the right-angle edges of the discharge port 11 from jamming the cushioning material and ensure that the cushioning material can be smoothly delivered from the discharge port 11.
[0036] refer to Figure 1 The padding material forming machine 2 is installed below the packaging table 1. The consumable roll is placed on the material cylinder of the padding material forming machine 2. The padding material forming machine 2 can produce continuous cushioning padding. The padding material forming machine 2 can directly select relevant equipment for making cushioning padding on the market. The structure of the padding material forming machine 2 itself is not the content to be protected by this utility model.
[0037] In this embodiment, the cushioning material forming machine 2 is an existing cushioning air cushion machine, which can produce continuous cushioning air cushions. In other embodiments, the cushioning material forming machine 2 can also be a cushioning paper pad machine or the like, any equipment that produces continuous cushioning material.
[0038] refer to Figure 1 The storage bin 3 is installed below the packing table 1 and is located to the right of the padding material forming machine 2. The cushioning padding material produced by the padding material forming machine 2 can enter the storage bin 3.
[0039] refer to Figure 2 An opening 33 is provided at the bottom of the end of the storage bin 3 away from the pad forming machine 2, and the free end of the cushioning pad material piled in the storage bin 3 can be pulled out through the opening 33.
[0040] refer to Figures 1 to 3 The guide plate 6 is installed at the discharge position of the pad forming machine 2. The guide plate 6 is sloping down, and the cushioning pad material produced by the pad forming machine 2 can enter the storage bin 3 in an area away from the pad forming machine 2 through the guide plate 6. Figure 1The cushioning pad material produced by the pad material forming machine 2 can enter the right-hand area of the storage silo 3 through the guide plate 6. The guide plate 6 can guide the continuous cushioning pad material produced by the pad material forming machine 2 to be conveyed to the area of the storage silo 3 away from the pad material forming machine 2. The continuous cushioning pad material encounters the right-hand end of the storage silo 3 (i.e., Figure 3 After the right side plate 904 is in place, the cushioning material will gradually cover the inner bottom of the storage bin 3 to the left. Then, when the continuous cushioning material encounters the left end of the storage bin 3 (i.e., Figure 3 After the left side plate 903), the cushioning pad will gradually spread to the right to fill the storage bin 3, and in this way, the entire storage bin 3 can be filled. If there is no guide plate 6, when the cushioning pad produced by the pad forming machine 2 flows into the storage bin 3, due to the lack of external power such as a fan and the relatively soft cushioning pad, the cushioning pad will fall and accumulate directly at the position where it leaves the pad forming machine 2. That is, the continuous cushioning pad produced by the pad forming machine 2 will be conveyed to the area of the storage bin 3 near the pad forming machine 2. This will cause the detection device 4 to be unable to accurately detect the amount of cushioning pad stored in the storage bin 3. The pad forming machine 2 will continue to work, and too much cushioning pad will accumulate in the area of the storage bin 3 near the pad forming machine 2, causing the discharge position of the pad forming machine 2 to be blocked or the cushioning pad to run outside the storage bin 3, resulting in the area of the storage bin 3 far from the pad forming machine 2 ( Figure 1 The area near the right end of the storage bin 3 will not be filled with cushioning material, resulting in less cushioning material being stored in the storage bin 3.
[0041] refer to Figure 2 and Figure 3 The partition 7 is installed in the storage silo 3, and the two ends of the partition 7 are respectively installed on two opposite inner walls of the storage silo 3. Figure 2 The two ends of the partition plate 7 are respectively installed on the left and right side walls of the storage bin 3. The position of the end of the partition plate 7 on the inner wall of the storage bin 3 is adjustable. According to the width of the cushioning pad material produced by the pad material forming machine 2, the position of the partition plate 7 on the two opposite inner walls of the storage bin 3 can be adjusted, so that the storage bin 3 can be adapted to various specifications of cushioning pad material, such as 200mm and 400mm wide cushioning pad material.
[0042] refer to Figures 1 to 3The cushioning material separator 5 is installed below the packing table 1. The storage bin 3 is located between the cushioning material forming machine 2 and the cushioning material separator 5. The outlet of the cushioning material on the cushioning material separator 5 is located below the discharge port 11 on the packing table 1. The free end of the cushioning material accumulated in the storage bin 3 can be pulled out through the opening 33 and then enter the cushioning material separator 5. The cushioning material separator 5 can separate the continuous cushioning material in the storage bin 3 into cushioning material units of the required length and send them out through the discharge port 11. The cushioning material separator 5 can be directly selected from existing equipment on the market for separating cushioning materials. The structure of the cushioning material separator 5 itself is not the content to be protected by this utility model. In this embodiment, the cushioning material separator 5 adopts an air cushion separator, such as the one with announcement number CN 108820385. The structure of the air cushion separator in B: The continuous cushioning material in the storage bin 3 can be separated into cushioning material units of the required length after passing through the cushioning material separator 5. The formed cushioning material units are sent out from the discharge port 11 on the packing table 1 for direct use by the packing personnel, which is very convenient. The cushioning material separator 5 is placed below the packing table 1, which can reduce the space occupation rate on the packing table 1 and improve the packing experience of the packing personnel.
[0043] refer to Figures 1 to 3 , Figure 7 The padding material forming machine 2, storage silo 3, and padding material separator 5 are all fixed on the support 9. The bottom of the support 9 is equipped with casters 91 with brakes. The support 9 can be pushed under the packing table 1. The support 9 is assembled and connected from multiple profiles. (See reference) Figure 3 The support 9 is equipped with a base plate 901, a rear side plate 902, a left side plate 903, and a right side plate 904. The base plate 901, the rear side plate 902, the left side plate 903, the right side plate 904, and the partition 7 together form a storage bin 3.
[0044] refer to Figures 3 to 6 The top of the bracket 9 is equipped with a left crossbeam 905 and a right crossbeam 906. One end of the partition 7 is installed on the left crossbeam 905, and the other end of the partition 7 is installed on the right crossbeam 906; (Reference) Figure 6 The left crossbeam 905 has mounting grooves 31 arranged along its length. Nuts 32 are accommodated in these mounting grooves 31. The end of a fixing bolt 8 passes through the end of the partition 7 and is screwed into the nut 32 in the mounting groove 31. (Reference) Figure 5The right crossbeam 906 also has mounting grooves 31 arranged along its length. A nut 32 is accommodated in the mounting groove 31. The end of another fixing bolt 8 passes through the end of the partition 7 and is screwed into the nut 32 in the mounting groove 31. When it is necessary to adjust the position of the partition 7 on the two opposite inner walls (left side plate 903 and right side plate 904) of the storage bin 3, loosen the two fixing bolts 8. The two ends of the partition 7 can slide along the two mounting grooves 31 respectively. After the position of the partition 7 is adjusted, tighten the two fixing bolts 8. The adjustment of the position of the partition 7 on the two opposite inner walls of the storage bin 3 is very convenient.
[0045] refer to Figures 1 to 3 The detection device 4 is installed on the top of the storage silo 3, specifically, the detection device 4 is installed on the profile on the top of the rear side panel 902. Figure 3 As shown, the detection device 4 can detect the amount of cushioning material stored in the storage bin 3. The detection device 4 is connected to the controller in the cushioning material forming machine 2 via a wiring harness. When the detection device 4 detects that the amount of cushioning material in the storage bin 3 is very small or non-existent, the detection device 4 sends the detected signal to the controller in the cushioning material forming machine 2. The controller controls the cushioning material forming machine 2 to start working. When the detection device 4 detects that the amount of cushioning material in the storage bin 3 reaches a certain level, the detection device 4 sends the detected signal to the controller in the cushioning material forming machine 2. The controller controls the cushioning material forming machine 2 to stop working.
[0046] refer to Figure 3In this embodiment, the detection device 4 is an ultrasonic sensor. The ultrasonic sensor is installed on the profile at the top of the rear panel 902, ensuring that there are no obstructions in the sound wave propagation path. The ultrasonic sensor emits ultrasonic pulses to the surface of the buffer pad material in the storage bin 3, receives the reflected echoes, and calculates the time difference t between the emission and reception of the sound waves, thereby calculating the distance L between the ultrasonic sensor and the surface of the buffer pad material in the storage bin 3, where L = speed of sound * t / 2. For example, the distance between the ultrasonic sensor probe and the bottom of the storage bin 3 is L1, and the distance between the ultrasonic sensor probe and the top of the storage bin 3 (the profile at the top of the rear panel 902) is L2. When L2 < L ≤ L1, it indicates that the buffer pad material in the storage bin is not yet full, and the pad material forming machine 2 can continue to produce buffer pad material. When L = L1, it indicates that the storage bin is not full. The cushioning padding material in the storage bin has been used up, and the padding material forming machine 2 needs to start making cushioning padding material. When L = L2, it means that the cushioning padding material in the storage bin 3 has been piled up to be level with the top of the storage bin 3. At this time, the padding material forming machine 2 stops working to prevent the cushioning padding material from overflowing from the top of the storage bin 3. In actual use, the padding material forming machine 2 will not wait until all the cushioning padding material in the storage bin 3 is used up before it starts making cushioning padding material. Moreover, when there is only one layer of cushioning padding material at the bottom of the storage bin 3, it is difficult for the packing personnel to pull the cushioning padding material out from the discharge port 11 because the cushioning padding material in the storage bin 3 is dragged by the padding material forming machine 2. Therefore, it is possible to set the padding material forming machine 2 to start making cushioning padding material when the height of the cushioning padding material in the storage bin 3 is L0. L0 can be 1 of the maximum thickness of a single layer of cushioning padding material.5 times, 2 times, etc., the specific value of L0 can be set according to needs. That is: when L2 < L ≤ L1, the cushioning material forming machine 2 continues to produce cushioning material; when L = L1 - L0, the cushioning material forming machine 2 needs to start producing cushioning material; when L = L2, it means that the cushioning material in the storage bin 3 has accumulated to be level with the top of the storage bin 3, at which point the cushioning material forming machine 2 stops working to prevent the cushioning material from overflowing from the top of the storage bin 3; or, the total height from the top to the inner bottom of the storage bin 3 is H, and the material height h = H + L2 - L When h = 0, it indicates that the cushioning material in storage silo 3 has been used up, and cushioning material forming machine 2 needs to start making cushioning material. When h = H, it indicates that the cushioning material in storage silo 3 has been piled up to be level with the top of storage silo 3. At this time, cushioning material forming machine 2 stops working to prevent the cushioning material from overflowing from the top of storage silo 3. When 0 < h < H, it indicates that the cushioning material in storage silo 3 is not yet full, and cushioning material forming machine 2 can continue to make cushioning material. In actual use, cushioning material forming machine 2 will not wait until all the cushioning material in storage silo 3 is used up before it starts working. When the cushioning material is being made, and only one layer of cushioning material is laid at the bottom of the storage bin 3, it is difficult for the packing personnel to pull the cushioning material out from the discharge port 11 because the cushioning material in the storage bin 3 is dragged by the cushioning material forming machine 2. Therefore, it can be set that the cushioning material forming machine 2 starts making cushioning material when the height of the cushioning material in the storage bin 3 is L0. L0 can be 1.5 times, 2 times, etc., the maximum thickness of a single layer of cushioning material. The specific value of L0 can be set according to needs. That is, when L0 < h < H, it means that the storage bin 3... The cushioning material in the storage bin 3 is not yet full, so the cushioning material forming machine 2 continues to produce cushioning material. When h = L0, the cushioning material forming machine 2 needs to start producing cushioning material. When h = H, it indicates that the cushioning material in the storage bin 3 has been piled up to be level with the top of the storage bin 3. At this time, the cushioning material forming machine 2 stops working to prevent the cushioning material from overflowing from the top of the storage bin 3. The detection device 4 can monitor the amount of material stored in the storage bin 3 in real time, automatically control the start and stop of the cushioning material forming machine 2, simplify machine operation, make it easy for packaging personnel to use, and improve packaging efficiency.
[0047] refer to Figures 1 to 3 , Figure 7 The bracket 9 is equipped with handles 92. There can be three handles 92. One handle 92 is arranged horizontally and located near the top of the storage bin 3. The other two handles 92 are arranged vertically and located near the left and right ends of the storage bin 3, respectively. The bracket 9 can be easily pulled out from under the packing table 1 or pushed under the packing table 1 using the handles 92.
[0048] refer to Figure 1 and Figure 7The foot pedal 10 is connected to the padding material separator 5. The foot pedal 10 can control the start and stop of the padding material separator 5. When the packing personnel are working, they can control the padding material separator 5 to work or stop working through the foot pedal 10. The operation is very convenient. The foot pedal 10 can also be placed on the packing table 1 or other convenient operating areas to improve the flexibility of operation.
[0049] refer to Figure 1 and Figure 7 The touch screen 110 is connected to the padding material separator 5. Packaging personnel can operate and set the padding material separator 5 through the touch screen 110, so that the padding material separator 5 can divide the continuous cushioning padding material in the storage bin 3 into the required length. The touch screen 110 can be placed on the packing table 1 or other convenient operating areas to improve the flexibility of operation.
[0050] Figure 8 schematically shown Figure 1 The packaging system shown is in use.
[0051] refer to Figure 8 The consumable roll 120 is placed on the padding forming machine 2 and the feeding is completed. The continuous cushioning padding 130 produced by the padding forming machine 2 enters the storage bin 3 under the guidance of the guide plate 6. The free ends of the cushioning padding 130 accumulated in the storage bin 3 pass through the opening 33 on the storage bin 3. Figure 2 (As shown) The material is pulled out and then enters the cushioning material separator 5. The cushioning material separator 5 can separate the continuous cushioning material 130 in the storage bin 3 into cushioning material units 140 of the required length and send them out through the discharge port 11. Packaging personnel can use the cushioning material units 140 to pack items. When packing items, the packaging personnel can control the cushioning material separator 5 to work or stop working by stepping on the foot pedal 10. At the same time, the detection device 4 can detect the storage amount of cushioning material 130 in the storage bin 3 in real time. When the detection device 4 detects that the amount of cushioning material 130 in the storage bin 3 is very small, the cushioning material forming machine 2 starts to work. When the detection device 4 detects that the amount of cushioning material 130 in the storage bin 3 reaches a certain level, the cushioning material forming machine 2 starts to work. When a certain quantity is reached, the cushioning material forming machine 2 stops working. Packaging personnel can operate and set the cushioning material separator 5 via the touchscreen 110, causing the separator 5 to cut the continuous cushioning material 130 in the storage bin 3 into the required lengths. The cushioning material forming machine 2, storage bin 3, and cushioning material separator 5 can be pulled out from under the packing table 1 as a whole via the support 9, or pushed under the packing table 1, making the assembly and disassembly of the entire packing system very convenient and flexible. Once the support 9 is positioned under the packing table 1, the casters 91 can be locked to prevent movement. Additionally, packaging personnel can adjust the partition 7 according to the width of the cushioning material 130 produced by the cushioning material forming machine 2. Figure 2As shown, the positions of the two opposite inner walls of the storage bin 3 allow the storage bin 3 to accommodate various specifications of cushioning pads. This utility model's packaging system, by placing the pad forming machine 2, consumable roll 120, storage bin 3, and pad separating machine 5 under the packaging table 1, can significantly reduce the space occupancy rate on the packaging table 1, improve the packaging experience for packaging personnel, and, through the detection device 4, can monitor the amount of material stored in the storage bin 3 in real time, automatically controlling the start and stop of the pad forming machine 2, simplifying machine operation, making it easy for packaging personnel to use, and improving packaging efficiency.
[0052] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.
Claims
1. A packing system for facilitating work, characterized by, The invention relates to a packing table, a cushion material forming machine, a storage bin, a detection device and a cushion material separating machine. The packing table is provided with a discharge port, and the periphery of the discharge port is arc-shaped so that the discharge port will not be stuck by the cushion material. The cushion material forming machine is arranged below the packing table. The storage bin is arranged below the packing table and beside the cushion material forming machine. The cushion material made by the cushion material forming machine can enter the storage bin, and the cushion material in the storage bin can be sent out through the discharge port.
2. The packing system of claim 1, wherein, The detection device can detect the storage amount of the cushion material in the storage bin and is electrically connected with the cushion material forming machine.
3. The packing system of claim 2, wherein, The cushion material separating machine is arranged below the packing table and can separate the continuous cushion material in the storage bin into cushion material units with a desired length and send them out through the discharge port.
4. The packing system of claim 1, wherein, The cushion material forming machine is a cushion air forming machine, and the cushion material separating machine is an air cushion separating machine.
5. The packing system of claim 1, wherein, The detection device is an ultrasonic sensor, and the detection device is arranged on the top of the storage bin. The guide plate is arranged at the discharge position of the cushion material forming machine.
6. The packing system of claim 1, wherein, The cushion material made by the cushion material forming machine can enter the area of the storage bin far away from the cushion material forming machine through the guide plate.
7. The packing system of claim 6, wherein, The partition plate is arranged in the storage bin, and the two ends of the partition plate are arranged on the two opposite inner walls of the storage bin, respectively.
8. A packing system according to claim 2 or 3, characterized in that The end of the partition plate can be adjusted on the inner wall of the storage bin.
9. The packing system of claim 8, wherein, The two opposite inner walls of the storage bin are provided with mounting grooves, and the mounting grooves accommodate nuts.
10. A packing system according to claim 2 or 3, characterized in that The end of the fixing bolt is screwed into the nut in the mounting groove after passing through the end of the partition plate. The bottom of the bracket is provided with a caster with a brake. The cushion material forming machine, the storage bin and the cushion material separating machine are arranged on the bracket, and the bracket can be pushed below the packing table. The bracket is provided with a handle. The foot pedal and the touch screen are connected with the cushion material separating machine.
Citation Information
Patent Citations
An intelligent filling device for cushioning air cushion material
CN108820385B