Angle bead storage mechanism, strapping machine and packaging production line
By designing the corner guard storage mechanism of the auxiliary filling parts and the pushing assembly outside the strapping machine, the problem of operators having to climb high to fill the corner guards is solved, an efficient and safe corner guard filling process is achieved, and operational efficiency and production continuity are improved.
Patent Information
- Application Number
- CN202422800085.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-18
AI Technical Summary
In the prior art, the corner guard filling requires the operator to climb up to the strapping machine to perform the operation, which makes the operation difficult and inefficient.
A corner guard storage mechanism is designed, which includes a silo assembly, a pushing assembly and an auxiliary filling component. The auxiliary filling component pre-fills the corner guard outside the silo assembly and transfers the corner guard to the storage space through the pushing assembly to achieve offline filling.
The operation difficulty is reduced and the efficiency of filling the corner guard is improved. Operators can quickly fill the corner guard without climbing high, which reduces safety risks and shortens downtime.
Smart Images

Figure CN223303050U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of baling machines, in particular to a corner protection storage mechanism, a baling machine and a packaging production line. Background Art
[0002] With the continuous development of the logistics industry, goods are often strapped with strapping tape before transportation. With the promotion of automated strapping technology, strapping machines with automatic strapping functions are widely used. During the strapping process, corner protectors are often placed to complement the strapping tape. However, placing corner protectors on top of the goods is labor-intensive due to their high height.
[0003] Chinese patent publication number CN116873287A discloses an automatic loading and bundling machine for short corner guards, in which the loading mechanism for supplying corner guards includes a loading assembly and a feeding assembly. The loading assembly is provided with a hopper assembly and a pushing assembly. The hopper assembly is used to store corner guards stacked up and down, and the pushing assembly is used to push the corner guards in the hopper assembly out one by one.
[0004] However, in actual use, when the corner protectors in the silo are used up, they need to be manually refilled. This requires an operator to climb onto the strapping machine and refill the corner protectors on the strapping line. Due to the surrounding environment of the strapping machine, the operator needs to climb up to the strapping machine to complete the corner protector filling operation, which makes the operation difficult and inefficient. Given this, the technical problem to be solved by this utility model is how to design a technology that facilitates the operator's filling of the corner protectors and improves the efficiency of the filling process. Summary of the Invention
[0005] The utility model provides a corner guard storage mechanism, a strapping machine and a packaging production line, which facilitate operators to fill the corner guards and improve operating efficiency.
[0006] The utility model provides a corner protection storage mechanism, comprising:
[0007] a silo assembly, the silo assembly forming a storage space, the storage space being configured to store corner guards;
[0008] a material pushing assembly configured to receive a corner guard stored in the material storage space each time and move the received corner guard to a material taking position;
[0009] an auxiliary filler component having a buffer portion formed therein, the buffer portion being configured to store a corner protector;
[0010] The auxiliary filling component is configured outside the material storage space to fill the corner guards into the cache portion and transport them to the silo assembly, and fill the corner guards in the cache portion into the material storage space.
[0011] In one embodiment, a pushing assembly includes a driving component and a pushing component, and the pushing component is configured to be driven by the driving component to output the corner guard in the storage space.
[0012] In one embodiment, a discharge port is provided at the end of the auxiliary filling component, and the discharge port is configured to allow the corner protectors stored in the buffer portion to be output to the storage space.
[0013] In one embodiment, a supporting portion is provided at the end of the auxiliary filling component, and the supporting portion is configured to be selectively arranged at the discharge port and to support the corner guard in the buffer portion when located at the discharge port.
[0014] In one embodiment, the auxiliary filling component includes an auxiliary material rack and a sliding rack. The cross-section of the auxiliary material rack is a U-shaped structure. The sliding rack can be slidably arranged on the auxiliary material rack. The supporting part is arranged at the bottom of the sliding rack. The cache part is formed between the auxiliary material rack and the sliding rack.
[0015] In one embodiment, the auxiliary filling member is a rope, and the rope is configured to bundle the corner protectors together in a cross-binding manner.
[0016] In one embodiment, the silo assembly includes a storage rack, a storage space is formed in the storage rack, and a first filling port is provided at an end of the storage rack, and the first filling port is arranged at a corresponding end of the storage space.
[0017] In one embodiment, the cross section of the auxiliary filling component is a U-shaped structure, one side of the auxiliary filling component forms an open opening, and the auxiliary filling portion forms the buffer portion of a semi-enclosed structure;
[0018] The auxiliary filling component is further provided with a pushing member, which is arranged in the buffer portion and configured to be able to approach or move away from the open port.
[0019] In one embodiment, the auxiliary filling component is further provided with a socket, and a slidable support rod is provided in the socket. The support rod passes through the socket, one end of the support rod extends into the cache portion and is connected to the pushing member, and the other end of the support rod extends to the outside of the auxiliary filling component.
[0020] In one embodiment, a support member is provided at the bottom of the auxiliary filling component, and a pressing member is provided at the top of the auxiliary filling component, and a corner guard for clamping the buffer portion is formed between the support member and the pressing member.
[0021] In one embodiment, the silo assembly includes a silo body, the silo body forming a material storage space, a side portion of the silo body forming a second filling port, and the second filling port is configured to allow the corner guard to pass through and fill the material storage space.
[0022] In one embodiment, the silo assembly includes a support frame and a storage frame, wherein a storage space is formed in the storage frame. The storage frame is detachably disposed on the support frame, and the storage frame has the same structure as the auxiliary filling component.
[0023] The utility model also provides a strapping machine, comprising a frame, and a baling head, a packaging chute and a clamping module arranged on the frame, wherein the baling head and the packaging chute form a packaging area, the clamping module comprises a supporting frame, a telescopic mechanism and a picking component, and also comprises the above-mentioned corner guard storage mechanism, wherein the corner guard storage mechanism is arranged on the frame and arranged on one side of the clamping module, and the picking component is configured to pick up the corner guard pushed out by the corner guard storage mechanism and place it on the goods to be packaged.
[0024] The utility model also provides a corner guard filling method, which adopts the above-mentioned corner guard storage mechanism, and the corner guard filling method includes:
[0025] Outside the silo assembly, fill the corner guard into the buffer portion of the auxiliary filling component, move the auxiliary filling component to the silo assembly, and output the corner guard in the auxiliary filling component to the storage space of the silo assembly.
[0026] The utility model provides a corner guard storage mechanism, a strapping machine and a packaging production line. By additionally arranging an auxiliary filling component outside the silo assembly, the auxiliary filling component can fill the corner guards into the cache portion of the auxiliary filling component when it is detached from the silo assembly. Then, when the corner guards in the silo assembly are used up and need to be replenished, the corner guards can be directly filled into the silo assembly at one time through the auxiliary filling component that has been filled with the corner guards, so that the corner guards can be filled into the cache portion of the auxiliary filling component separately offline. On the one hand, the operator does not need to climb up to fill the corner guards online. On the other hand, the auxiliary filling component can be laid flat to facilitate the operator to fill the corner guards quickly. In actual use, the corner guards can be pre-filled in the auxiliary filling component in advance, and then the auxiliary filling component fully loaded with corner guards is assembled into the silo assembly to maximize the operational efficiency of filling the corner guards. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1It is a structural schematic diagram of an embodiment of a corner protection storage mechanism;
[0028] Figure 2 for Figure 1 A partial enlarged schematic diagram of area A in the middle;
[0029] Figure 3 for Figure 1 Schematic diagram of the structure of the auxiliary filler component;
[0030] Figure 4 It is a structural schematic diagram of another embodiment of the corner protection storage mechanism;
[0031] Figure 5 for Figure 4 Schematic diagram of the structure of the intermediate silo assembly;
[0032] Figure 6 for Figure 4 One of the structural diagrams of the auxiliary filler components;
[0033] Figure 7 for Figure 4 The second structural diagram of the auxiliary filler component;
[0034] Figure 8 This is a structural schematic diagram of another embodiment of the corner protection storage mechanism;
[0035] Figure 9 This is a second structural diagram of another embodiment of the corner protection storage mechanism;
[0036] Figure 10 It is a structural schematic diagram of another embodiment of the corner protection storage mechanism;
[0037] Figure 11 This is one of the reference diagrams of the auxiliary filler component in use in a certain embodiment;
[0038] Figure 12 It is a structural diagram of a corner protection storage mechanism in one embodiment;
[0039] Figure 13 It is a structural schematic diagram of an embodiment of a strapping machine;
[0040] Figure 14 for Figure 13 Schematic diagram of the assembly of the center clamping module and the corner protection storage mechanism;
[0041] Figure 15 This is the structural principle diagram of the packaging production line.
[0042] Reference numerals
[0043] 1. Silo assembly; 11. Storage space; 12. Storage rack; 13. Support frame; 14. Storage rack; 15. Silo body; 16. Silo door;
[0044] 2. Pushing component; 21. Driving component; 22. Pushing component;
[0045] 3. Auxiliary filling components; 31. Buffer; 32. Support; 33. Auxiliary material rack; 34. Sliding rack; 35. Rope; 36. Pusher; 37. Support rod; 38. Support member; 39. Pressing member;
[0046] 100, frame; 200, baling machine head; 300, packaging chute; 400, clamping module; 410, carrying frame; 420, telescopic mechanism; 430, picking component. DETAILED DESCRIPTION
[0047] The present invention will be described in detail below with reference to the accompanying drawings.
[0048] like Figures 1-11 As shown, the utility model provides a corner protection storage mechanism, comprising:
[0049] A silo assembly 1 is formed with a storage space 11, and the storage space 11 is configured to store corner guards;
[0050] a pushing assembly 2, the pushing assembly 2 being configured to receive a corner guard stored in the storage space 11 each time and to move the received corner guard to a material taking position;
[0051] an auxiliary filler component 3 , wherein a buffer portion 31 is formed in the auxiliary filler component 3 , and the buffer portion is configured to store a corner guard;
[0052] The auxiliary filling component 3 is configured outside the storage space 11 to fill the corner guards into the cache portion and transport them to the silo assembly 1 , and fill the corner guards in the cache portion into the storage space 11 .
[0053] Specifically, the corner guard storage mechanism provided in the present application holds the corner guards through the storage space 11 in the silo assembly 1 , and pushes the corner guards in the storage space 11 out through the pushing assembly 2 .
[0054] The pushing component 2 can adopt the structure used in conventional technology to push the corner guard out, for example: the pushing component 2 includes a driving component 21 and a pushing component 22, and the pushing component 22 is configured to be driven by the driving component 21 to output the corner guard in the storage space from the discharge port on the silo component 1.
[0055] During use, the corner guard at the discharge port in the hopper assembly 1 can be discharged from the discharge port under the pushing action of the pushing member 22. The structural form and driving method of the pushing mechanism driving the push-pull member to move back and forth through the driving member 21 to realize the conveying of the corner guard from the discharge port can adopt the structural form and driving method of the prior art, which will not be limited or elaborated here.
[0056] For the silo assembly 1, as the corner guards are used, the corner guards in the silo assembly 1 are gradually consumed. At this time, it is necessary to replenish and fill the silo assembly 1 with new corner guards. When the silo assembly 1 needs to be replenished with corner guards, the corner guards will be pre-filled outside the silo assembly 1 through the auxiliary filling component 3, and then the corner guards will be uniformly transported to the silo assembly 1 through the auxiliary filling component 3, and the corner guards in the auxiliary filling component 3 will be filled into the storage space 11. In this way, the filling efficiency of the corner guards can be effectively improved; and the operator can place the auxiliary filling component 3 on the ground or the operating table to quickly fill the corner guards, reducing the difficulty of operation.
[0057] In one embodiment of the present application, the corner guards in the auxiliary filling part can be filled from the top of the storage space 11. Specifically, a discharge port is provided at the end of the auxiliary filling part 3, and the discharge port is configured to output the corner guards stored in the cache part 31 to the storage space 11.
[0058] The discharge port can be arranged at the top of the auxiliary filling component 3 or at the bottom of the auxiliary filling component 3 .
[0059] In the case where the discharge port is arranged at the top of the auxiliary filling component 3, the auxiliary filling component 3 can be moved to the bottom of the silo assembly, and then the corner guard is filled into the storage space 11 of the silo assembly 1 from the discharge port at the top. Figure 12 As shown, after the corner protectors are filled in the buffer portion 31 of the auxiliary filling component 3, the auxiliary filling component 3 is moved to the bottom of the material storage space 11, and then the corner protectors in the auxiliary filling component 3 are filled into the material storage space 11 from the bottom. For example, the corner protectors are manually pushed upward from the bottom of the auxiliary filling component 3 into the silo assembly 1. As for the structure of the silo assembly 1 outputting the corner protectors outward through the top, reference can be made to the structure of the conventional art in which the pushing assembly is arranged at the top of the silo assembly, and no further description is given here.
[0060] Similarly, when the discharge port is arranged at the bottom of the auxiliary filling component 3, the auxiliary filling component 3 can be moved to the top of the silo assembly, and then the corner guard is filled from the lower discharge port into the storage space 11 of the silo assembly 1. Specifically, Figure 1-Figure 3As shown, after the corner protectors are filled in the buffer portion 31 of the auxiliary filling component 3 , the auxiliary filling component 3 is moved to the top of the storage space 11 , and then the corner protectors in the auxiliary filling component 3 are filled into the storage space 11 .
[0061] Furthermore, a supporting portion 32 is provided at the end of the auxiliary filling component 3 , and the supporting portion 32 is configured to be selectively arranged at the bottom of the buffer portion 31 and to support the corner guard in the buffer portion 31 when located at the bottom of the supporting portion 32 .
[0062] Specifically, in order to prevent the corner protector from falling off the bottom of the auxiliary filling component 3 due to gravity, a supporting portion 32 can be provided at the bottom of the auxiliary filling component 3. The supporting portion 32 can be arranged at the bottom of the auxiliary filling component 3 during the process of filling the corner protector and moving the auxiliary filling component 3 fully loaded with the corner protector to support the corner protector filled in the auxiliary filling component 3, so as to ensure that the auxiliary filling component 3 supports the corner protector through the supporting portion 32 during the transportation of the corner protector, thereby preventing the corner protector from falling off the bottom of the auxiliary filling component 3.
[0063] In one embodiment, in actual operation, in order to ensure that the corner protectors in the auxiliary filling component 3 can be smoothly output and accurately stacked and stored in the storage space 11 of the silo assembly 1, the auxiliary filling component 3 is configured to be inserted into the storage space 11 and to drop the corner protectors in the buffer portion into the storage space 11 after removing the supporting portion 32.
[0064] Specifically, when filling the corner guards into the storage space 11 of the silo assembly 1 through the auxiliary filling component 3, the auxiliary filling component 3 can be inserted into the storage space 11, and then the supporting portion 32 on the auxiliary filling component 3 is removed from the bottom. The corner guards stored in the cache portion 31 of the auxiliary filling component 3 will automatically fall under the action of gravity to achieve uniform filling of the corner guards.
[0065] like Figure 1 As shown, in order to meet the use requirement of the auxiliary filling component 3 to fill the corner guard from the top of the storage space 11, the silo assembly 1 includes a storage rack 12, and the storage space 11 is formed in the storage rack 12. A first filling port is provided at the top of the storage space 11. The first filling port is arranged at the top of the storage space 11.
[0066] Specifically, during the process of filling the storage space 11 in the storage rack 12 with the corner guard, the auxiliary filling component 3 is moved to the top of the storage rack 12 , and the auxiliary filling component 3 can fill the corner guard into the storage space 11 through the first filling port.
[0067] In actual operation, there are many ways to fill the corner guard from the top of the storage space 11 through the auxiliary filling component 3. For example: Figure 1 As shown, the auxiliary filling component 3 is placed as a whole on the top of the storage rack 12, and then the supporting part 32 at the bottom is removed so that the corner guard in the buffer part 31 falls into the storage space 11 below under the action of gravity.
[0068] Furthermore, in order to ensure that the corner guards can be neatly stacked in the storage space 11, the auxiliary filler component 3 is further improved in structure, specifically: Figure 2 and Figure 3 As shown, the auxiliary filling component 3 includes an auxiliary material rack 33 and a sliding rack 34. The cross-section of the auxiliary material rack 33 is a U-shaped structure. The sliding rack 34 can be slidably arranged on the auxiliary material rack 33. The supporting portion 32 is arranged at the bottom of the sliding rack 34. The cache portion 31 is formed between the auxiliary material rack 33 and the sliding rack 34.
[0069] Specifically, during use, after the corner protector is pre-filled in the buffer portion 31, the auxiliary filling component 3 is moved to the first filling port at the top of the storage rack 12. Then, the sliding rack 34 slides downward along the length of the auxiliary rack 33, driving the supporting portion 32 and the corner protector to slide downward together, thereby moving the corner protector into the storage space 11. After the sliding rack 34 slides into place, the supporting portion 32 is removed from the bottom of the corner protector, and the corner protector can be filled into the storage space 11 at one time.
[0070] In the process of filling the corner guards into the storage space 11, the corner guards are always supported by the sliding frame 34 and the supporting portion 32, which can ensure that the corner guards are stacked as a whole in the storage space 11, so as to improve the efficiency and filling quality of the corner guards.
[0071] In addition, the corner protection can be filled from the top of the storage space 11 by the auxiliary filling component 3, or the filler can be inserted into the storage space 11 to achieve the corner protection. Figure 11 As shown, the auxiliary filling member 3 is a rope 35, and the rope 35 is configured to bundle the corner protectors together in a cross-binding manner.
[0072] Specifically, ropes 35 are used as auxiliary filling components 3. The ropes 35 cross-bind the corner protectors together. The portion of the ropes 35 at the bottom of the corner protectors forms a support portion 32, and the area bound by the ropes 35 forms a buffer portion 31. When the storage rack 12 needs to be replenished with corner protectors, the corner protectors bound with the ropes 35 are inserted into the storage space 11 through the first filling port. Then, the ropes 35 are loosened and removed from the first filling port to complete the uniform filling of the corner protectors.
[0073] In one embodiment of the present application, Figure 4-Figure 7As shown, the cross section of the auxiliary filling component 3 is a U-shaped structure, one side of the auxiliary filling component 3 forms an open opening, and the auxiliary filling portion forms the cache portion 31 of a semi-enclosed structure;
[0074] The auxiliary filling component 3 is further provided with a pushing member 36 , which is arranged in the buffer portion and configured to be able to approach or move away from the opening.
[0075] Specifically, for the auxiliary filling component 3, during the process of filling the corner guard into the storage space 11, the corner guard in the cache portion 31 can be pushed into the storage space 11 from one side through the pushing member 36 to achieve one-time filling of the corner guard into the storage space 11.
[0076] During actual use, when the corner guards in the storage space are used up, the auxiliary filling component 3 is moved to the side of the silo assembly 1 so that the open mouth of the auxiliary filling component 3 faces the storage space 11, and then the pushing member 36 is forced to move so that the corner guards in the cache are directly pushed into the storage space 11.
[0077] The pushing member 36 may be a rod, a plate or other components with a pushing function, which is not limited here.
[0078] Furthermore, the auxiliary filling component 3 is provided with a socket, in which a slidable support rod 37 is provided. The support rod 37 passes through the socket, one end of the support rod 37 extends into the cache portion and is connected to the pusher 36, and the other end of the support rod 37 extends to the outside of the auxiliary filling component 3.
[0079] Specifically, in order to facilitate the operation of the operator, the pushing member 36 is supported by the support rod 37 , and the operator can drive the pushing member 36 to move by pushing and pulling the support rod 37 .
[0080] Furthermore, a support member 38 is provided at the bottom of the auxiliary filling member 3, and a pressing member 39 is provided at the top of the auxiliary filling member 3. A corner guard for clamping the buffer portion is formed between the support member 38 and the pressing member 39.
[0081] Specifically, in order to ensure that the corner guard can maintain a stable state in the cache portion 31 without collapsing, a support member 38 is provided at the bottom of the auxiliary filling component 3. The support member 38 can support the corner guard at the bottom, and the top of the corner guard is further compressed by the clamping member 39 so that the stacked corner guards can be squeezed between the clamping member 39 and the support member 38, ensuring that the corner guard will not collapse during the movement of the auxiliary filling component 3, thereby improving the reliability of use.
[0082] The supporting member 38 may be in the form of a supporting rod 37 or a supporting plate, and the pressing member 39 may be implemented by a conventional quick-action clamp, which is not limited here.
[0083] In one embodiment, if Figure 4 and Figure 5 As shown, the silo assembly 1 may include: the silo assembly 1 includes: a silo body 15, the silo body 15 forms a storage space 11, the side of the silo body 15 forms a second filling port, and the second filling port is configured to allow the corner guard to pass through and fill into the storage space 11.
[0084] Specifically, a storage space 11 is formed in the silo 15, and the storage space 11 can be used to fill the corner protector through a second filling port on one side. When the corner protector needs to be filled into the silo 15, the auxiliary filling member 3 is moved against the silo 15, and the pushing member 36 pushes the corner protector in the auxiliary filling member into the silo 15.
[0085] Furthermore, the silo assembly 1 includes a silo door 16. The silo door 16 is disposed on the side of the silo body 15 and is configured to open and close the storage space 11. Specifically, a second filling port on one side of the silo body 15 can be opened and closed by the silo door 16. When the corner guard needs to be filled, the silo door 16 is opened.
[0086] Furthermore, in order to facilitate the operator to push the corner guard into the bin body 15 from one side through the auxiliary filling component 3, as shown in FIG. Figure 8 and Figure 9 As shown, the hopper body 15 is provided with a first upper hook 151, and correspondingly, the auxiliary filler is provided with a lower hook 30. In actual operation, the lower hook 30 is suspended on the first upper hook 151, and the auxiliary filler is then supported by the hopper body 15, so that the operator can easily operate the pusher 36 to push the corner protector into the hopper body 15.
[0087] In another embodiment, for the silo assembly 1, if Figure 10 As shown, the silo assembly 1 includes a support frame 13 and a storage frame 14 , wherein the storage frame 14 forms a storage space 11 . The storage frame 14 is detachably disposed on the support frame 13 , and the storage frame 14 has the same structure as the auxiliary filling component 3 .
[0088] Specifically, the silo assembly 1 adopts a split structure, including a support frame 13 and a storage frame 14. The support frame 13 is fixedly mounted on the strapping machine and remains stationary, while the storage frame 14 is detachable from the support frame 13. In addition, the structure of the storage frame 14 is the same as that of the auxiliary filling component 3. When the corner guard needs to be filled, it is only necessary to remove the empty storage frame 14 from the support frame 13, and then reassemble the auxiliary filling component 3 filled with the corner guard with the new storage frame 14 onto the support frame 13 for use.
[0089] Furthermore, to facilitate the operator's ability to push the corner protector into the hopper body 15 from one side using the auxiliary filling member 3, the support frame 13 is provided with a second upper hook 131, and correspondingly, the auxiliary filling member is provided with a lower hook 30. During actual operation, after the auxiliary filling member 3 is removed from the support frame 13 and has filled the corner protector, it is hooked onto the second upper hook 131 via the lower hook 30, thereby being assembled onto the support frame 13 as the storage rack 14. Accordingly, the storage rack 14, removed from the support frame 13, can be used again as the auxiliary filling member, further enabling offline filling of the corner protector.
[0090] Based on the above-mentioned corner guard storage mechanism, the present application also provides a corner guard filling method, including: filling the corner guard into the cache part of the auxiliary filling component outside the silo assembly, moving the auxiliary filling component to the silo assembly, and outputting the corner guard in the auxiliary filling component to the storage space of the silo assembly.
[0091] Specifically, the auxiliary filling component 3 can fill the corner guards outside the silo assembly 1. After the corner guards in the silo assembly 1 are used up, the auxiliary filling component 3 will carry the stacked corner guards to the silo assembly, and the corner guards will be loaded into the silo assembly 1 at one time through the auxiliary filling component 3, thereby eliminating the need for the operator to fill the corner guards one by one on the strapping machine.
[0092] Specifically, the above-mentioned corner guard filling method, since the auxiliary filling component 3 fills the corner guard in a state away from the strapping machine when filling the corner guard, the auxiliary filling component 3 fills the corner guard in an offline manner, which can effectively reduce the difficulty of operation, solves the technical problem that the operator has to climb up to fill the corner guard, which makes the operation difficult and increases the safety risk of the operator, and improves the operational efficiency of filling the corner guard.
[0093] In another embodiment of the present application, Figure 7 and Figure 8As shown, the utility model also provides a strapping machine, including a frame 100, and a baling head 200, a packaging chute 300 and a clamping module 400 arranged on the frame 100, the baling head 200 and the packaging chute 300 form a packaging area, the clamping module 400 includes a carrier frame 410, a telescopic mechanism 420 and a picking component 430, and also includes the above-mentioned corner guard storage mechanism, the corner guard storage mechanism is set on the frame 100 and arranged on one side of the clamping module 400, and the picking component 430 is configured to pick up the corner guard pushed out by the corner guard storage mechanism and place it on the goods to be packaged.
[0094] Specifically, the baler head 200 conveys the strapping tape around the goods through the packaging chute 300 and completes the process of bundling and packing the goods. A conventional baler can be used, which is not limited or elaborated here.
[0095] A corner guard storage mechanism is provided on the frame 100 to supply the corner guard. After the corner guard is pushed out, the telescopic mechanism 420 drives the picking component 430 to move to the corner guard and pick up the corner guard. Then, the telescopic mechanism 420 drives the corner guard to move to the goods to be packaged, so that the corner guard is attached to the goods and tightened to the surface of the goods through the strapping belt.
[0096] For the clamping module 400, conventional automatic corner guard clamping equipment can be used, wherein the telescopic mechanism 420 can use conventional components such as a cylinder or an electric push rod, and the picking component 430 can use conventional components such as a suction cup or a clamp, and there is no limitation here.
[0097] Furthermore, the corner protection storage mechanisms are respectively provided on both sides of the frame 100 , and the frame 100 is also provided with a clamping module 400 matching the corner protection storage mechanisms.
[0098] Another embodiment of the present application also provides a packaging production line, such as Figure 15 As shown, it includes a conveyor line 500 and the above-mentioned strapping machine;
[0099] The conveyor line is configured to convey the goods to be bundled to the strapping machine and to output the goods bundled by the strapping machine from the strapping machine.
[0100] Specifically, during actual use, the goods are transported and moved through the conveyor line 500. The goods on the conveyor line 500 are moved to the strapping machine for corner protection and strapping and packaging. After the strapping and packaging process is completed, the goods are transported to the next workstation through the conveyor line 500.
[0101] According to the requirements of the strapping process, a plurality of strapping machines may be distributed along the conveying direction of the conveyor line 500 , and the requirements of corner protection and strapping and packaging may be met by different strapping machines.
[0102] Taking the case where three strapping machines are arranged on the conveyor line 500 as an example, corner guard feeding devices are arranged on both sides of each strapping machine to supply corner guards, and the downtime of the packaging production line of the present application is compared with that of the packaging production line in the prior art.
[0103] Conventional technology involves manually filling corner protectors on the packaging line. Filling a single side of the corner protector online takes about four minutes, requiring one strapping machine to stop for eight minutes, and three strapping machines to stop for 32 minutes. Typically, the amount of corner protectors filled is sufficient to meet the needs of one hour of continuous packaging production. This means one hour of continuous production and half an hour of downtime to fill the corner protectors.
[0104] In the packaging production line provided by this application, since the corner protectors are pre-filled offline, the time required to fill the corner protectors online on one side is about one minute, and the three strapping machines need to be stopped for six minutes. Thus, one hour of continuous production is required, and six minutes of downtime are required to fill the corner protectors. This effectively shortens downtime and improves packaging production efficiency.
[0105] The above time calculation is only the theoretical time required for the goods to be packaged and produced continuously, and is not limited here.
[0106] The utility model provides a corner guard storage mechanism, a strapping machine and a packaging production line. By additionally arranging an auxiliary filling component outside the silo assembly, the auxiliary filling component can fill the corner guards into the cache portion of the auxiliary filling component when it is detached from the silo assembly. Then, when the corner guards in the silo assembly are used up and need to be replenished, the corner guards can be directly filled into the silo assembly at one time through the auxiliary filling component that has been filled with the corner guards, so that the corner guards can be filled into the cache portion of the auxiliary filling component separately offline. On the one hand, the operator does not need to climb up to fill the corner guards online. On the other hand, the auxiliary filling component can be laid flat to facilitate the operator to fill the corner guards quickly. In actual use, the corner guards can be pre-filled in the auxiliary filling component in advance, and then the auxiliary filling component fully loaded with corner guards is assembled into the silo assembly to maximize the operational efficiency of filling the corner guards.
Claims
1. A corner protection storage mechanism, characterized in that: include: A silo assembly, the silo assembly forming a storage space, the storage space being configured to store corner guards; A material pushing assembly, the material pushing assembly comprising a driving component and a material pushing component, the material pushing component being configured to be driven by the driving component to output the corner guard in the material storage space; an auxiliary filler component having a buffer portion formed therein, the buffer portion being configured to store a corner protector; The auxiliary filling component is configured outside the material storage space to fill the corner guards into the cache portion and transport them to the silo assembly, and fill the corner guards in the cache portion into the material storage space.
2. The corner protection storage mechanism according to claim 1, characterized in that: A discharge port is provided at the end of the auxiliary filling component, and the discharge port is configured to allow the corner protectors stored in the buffer portion to be output to the storage space.
3. The corner protection storage mechanism according to claim 2, characterized in that: The end portion of the auxiliary filler component is provided with a supporting portion; The supporting portion is configured to be selectively arranged at the discharge port and to support the corner guard in the buffer portion when located at the discharge port.
4. The corner protection storage mechanism according to claim 2, characterized in that: The auxiliary filling component includes an auxiliary material rack and a sliding rack. The cross section of the auxiliary material rack is a U-shaped structure. The sliding rack is slidably arranged on the auxiliary material rack. The buffer portion is formed between the auxiliary material rack and the sliding rack. Alternatively, the auxiliary filling component is configured to be inserted into the material storage space and drop the corner protectors in the buffer portion into the material storage space.
5. The corner protection storage mechanism according to any one of claims 2 to 4, characterized in that: The silo assembly includes a material storage rack, a material storage space is formed in the material storage rack, and a first filling port is provided at an end of the material storage rack, and the first filling port is arranged at a corresponding end of the material storage space.
6. The corner protection storage mechanism according to claim 1, characterized in that: The cross section of the auxiliary filling component is a U-shaped structure, one side of the auxiliary filling component forms an open opening, and the auxiliary filling portion forms the buffer portion of a semi-enclosed structure; The auxiliary filling component is further provided with a pushing member, which is arranged in the buffer portion and configured to be able to approach or move away from the open port.
7. The corner protection storage mechanism according to claim 6, characterized in that: The auxiliary filling component is also provided with a socket, and a slidable support rod is provided in the socket. The support rod passes through the socket, one end of the support rod extends into the cache part and is connected to the pushing member, and the other end of the support rod extends to the outside of the auxiliary filling component.
8. The corner protection storage mechanism according to claim 6, characterized in that: A supporting piece is provided at the bottom of the auxiliary filling component, and a pressing piece is provided at the top of the auxiliary filling component. A corner guard for clamping the buffer portion is formed between the supporting piece and the pressing piece.
9. The corner protection storage mechanism according to any one of claims 6 to 8, characterized in that: The silo assembly includes a silo body, the silo body forms the material storage space, and a side portion of the silo body forms a second filling port, the second filling port being configured to allow the corner guard to pass through and fill the material storage space.
10. The corner protection storage mechanism according to claim 1, characterized in that: The silo assembly includes a support frame and a storage frame, wherein a material storage space is formed in the storage frame. The storage frame is detachably arranged on the support frame, and the storage frame has the same structure as the auxiliary filling component.
11. The corner protection storage mechanism according to claim 1, characterized in that: The auxiliary filler member is a rope, and the rope is configured to bundle the corner protectors together; The rope is configured to be inserted into the storage space together with the corner protector and to be unlocked to release the corner protector into the storage space.
12. A strapping machine comprising a frame, a strapping head, a packaging chute and a clamping module arranged on the frame, wherein the strapping head and the packaging chute form a strapping area, and the clamping module comprises a supporting frame, a telescopic mechanism and a picking component, characterized in that: It also includes a corner protector storage mechanism as described in any one of claims 1 to 11, wherein the corner protector storage mechanism is arranged on the frame and on one side of the clamping module, and the picking component is configured to pick up the corner protector pushed out by the corner protector storage mechanism and place it on the goods to be packaged.
13. A packaging production line, comprising a conveyor line, characterized in that: Also includes the strapping machine as claimed in claim 12; The conveyor line is configured to convey the goods to be bundled to the strapping machine and to output the goods bundled by the strapping machine from the strapping machine.
Citation Information
Patent Citations
Automatic feeding and bundling all-in-one machine for short angle beads
CN116873287A