Bubble film inflating and separating integrated device
By integrating the functions of bubble wrap inflation and separation, and utilizing the automatic control of the detection and clamping module, the synchronization problem of bubble wrap equipment is solved, reducing costs and safety hazards, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202510899628.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2045-07-01
AI Technical Summary
When existing bubble wrap separation equipment and air inflator are used separately, the consumables are easily broken due to asynchronous speeds. In addition, an additional wire mesh system and sensors are required, which increases equipment costs and safety hazards. Furthermore, the large footprint makes it difficult to apply to small spaces.
This system integrates bubble wrap inflation and separation functions. By coordinating the feeding, inflation, heating, and separation modules, the wire frame system is eliminated. The detection module automatically controls the tear position of the bubble wrap, the clamping module provides stable conveying, and heating wheels and heat-sealing auxiliary wheels are used to improve production speed and quality.
It has achieved automated and synchronized bubble wrap production, reduced production and assembly costs, avoided safety hazards, reduced equipment size and floor space, and improved production speed and bubble wrap quality.
Smart Images

Figure CN120396305B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of packaging material production equipment technology, and in particular to an integrated device for bubble wrap inflation and separation. Background Technology
[0002] Currently, the bubble wrap separator and the bubble wrap inflator are two separate machines. During operation, due to potential debugging factors, the production speeds of the two machines are highly likely to be asynchronous. Forcing them to operate together could cause the consumable material to break due to this speed discrepancy. Therefore, an additional mesh frame is needed to buffer the material during operation. Furthermore, to achieve continuous automatic operation, a material level sensor is required to detect whether the material level in the frame is too low or too high, thus controlling the operation and shutdown of the bubble wrap machine.
[0003] In this existing working method, the addition of the wire mesh frame system increases the overall size. Furthermore, since the wire mesh frame serves as a buffer for material storage, it typically requires a large floor area, making the entire system unsuitable for confined spaces. Additionally, the system's weight necessitates placing the bubble wrap inflator and separator at a high position above the wire mesh frame, resulting in a high center of gravity, insufficient stability, and potential safety hazards.
[0004] In addition, the additional wire mesh system and detection sensors will increase the production and assembly costs of the entire system, resulting in insufficient overall competitiveness of the equipment. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides an integrated bubble wrap inflation and separation device. It integrates bubble wrap inflation and separation functions without requiring an additional mesh frame system for material storage, effectively reducing the production and assembly costs of the entire system. Furthermore, it avoids the safety hazards associated with placing the bubble wrap inflator and separator at elevated positions in existing methods.
[0006] According to a first aspect of the present invention, an integrated device for bubble film inflation and separation is provided, comprising:
[0007] A feeding module includes a feeding rod for holding consumable rolls;
[0008] An inflation module is used to inflate the openings of consumables to form a bubble film.
[0009] The heating module is used to heat seal the opening of the bubble wrap and to transport the bubble wrap downstream.
[0010] The separating module comprises a conveyor belt assembly for conveying the bubble film outside the discharge port of the device.
[0011] The feeding module, the inflating module, the heating module and the separating module are arranged in sequence on the device body.
[0012] The bubble film inflating and separating integrated device of the application inflates the consumable through the feeding assembly, inflates the consumable to form the bubble film through the inflating module, and heat seals the opening of the bubble film through the heating module to form the complete and continuous bubble film product. When the separating process of the device is started, such as triggered by manually pressing the corresponding control button, the heating module is controlled to stop at this time to clamp the bubble film, and the separating module continues to operate to cooperate with the heating module to tear the bubble film, and the separated bubble film after tearing can be conveyed to the discharge port along with the operation of the separating module. Since the separating module is integrally arranged in the overall device, the conveying speed of the separating module can be consistent with the feeding speed and the bubble film production speed of the overall device, so that it is not necessary to further increase an additional net frame system for storage. The bubble film inflating and separating integrated device of the application combines the bubble film inflating function and the separating function, and ingeniously adopts the linkage cooperation between the heating module and the separating module for conveying the bubble film, realizes the integration of the bubble film inflating function and the separating function in the overall device, thereby effectively reducing the production and assembly cost of the whole system, and avoiding the safety hidden trouble caused by placing the bubble film inflator and the bubble film separating device at a high position in the existing working mode.
[0013] In some possible embodiments, further comprising:
[0014] A detection module is arranged between the heating module and the separating module, and is used to determine the position of the bubble film to be torn and to control the operation of the overall device.
[0015] Therefore, by such arrangement, the detection module can be used to detect the end break of the bubble film and determine the position of the bubble film product to be torn, so as to cooperate with other modules of the device to automatically determine the position of the bubble film to be torn during operation and automatically start the separating process to tear the bubble film.
[0016] In some possible embodiments, further comprising a clamping module comprising a clamping piece and a clamping driving piece, the clamping driving piece being used to drive the clamping piece to move to clamp the bubble film, and the clamping module being arranged on the upstream side of the separating module.
[0017] Therefore, by such arrangement, when the bubble film is clamped, in addition to clamping the bubble film by the heating module, the clamping drive of the clamping module can also drive the clamping member to move to clamp the bubble film. In addition, since the clamping module is additionally arranged to clamp the bubble film, in other possible embodiments, the bubble film can be clamped only by the clamping module when the bubble film is clamped, thereby avoiding continuous heating of the bubble film when the heating module clamps the bubble film, which can cause damage to the bubble film and affect the quality of the output bubble film.
[0018] In some possible embodiments, the clamping member comprises a compression wheel, the lower part of the device body is provided with a platform for clamping the bubble film, the platform is arranged on the side of the feeding port of the separating module, the compression wheel is connected with a clamping connecting rod, one end of the clamping connecting rod is rotatably arranged on the device body through a rotating shaft, and the other side of the rotating shaft is connected with the clamping drive.
[0019] Therefore, by such arrangement, the platform arranged on the lower part of the device body and the compression wheel forming the clamping member can clamp the bubble film. Since the platform is additionally arranged on the lower part of the device body, the platform can be used not only for clamping the bubble film in cooperation with the clamping member, but also as an auxiliary supporting structure before the bubble film enters the separating module, so that the overall bubble film can be more flat when entering the separating module, thereby improving the product quality of the separated bubble film.
[0020] In some possible embodiments, the heating module comprises a heating wheel and a heat sealing auxiliary wheel, the heat sealing auxiliary wheel is arranged to rotate actively, the wheel surface of the heating wheel and the wheel surface of the heat sealing auxiliary wheel abut each other to heat seal the opening of the bubble film, and drive the bubble film to be conveyed towards the downstream direction.
[0021] Therefore, by such arrangement, the heating wheel and the heat sealing auxiliary wheel can heat seal the opening of the inflated bubble film, and at the same time, the overall heating module can also serve as the main transmission structure for conveying the consumables during the operation of the device to drive the feeding of the consumables. Since the heat sealing is the last link in the air cushion inflation function part of the overall device, by such arrangement, the output speed of the bubble film can be better controlled. In addition, compared with the bubble film inflator in the prior art, the large bubble film inflator in the prior art mainly uses a Teflon belt to indirectly transfer heat for heat sealing. Such a heating belt will cause the production speed of the machine to be too slow, and the heating belt is prone to early wear and breakage, which affects the normal operation of the device. In the present application, the heating wheel is used to replace the existing heating belt for heat sealing, which has higher heat conduction efficiency, thereby can adapt to high-speed operation and improve the production speed of the overall device.
[0022] In some possible implementation manners, the heating wheel is provided with a lifting driving element configured to drive the heating wheel to move so as to separate the wheel surface of the heating wheel from the wheel surface of the heat-sealing auxiliary wheel.
[0023] Therefore, by such a configuration, the heating wheel can be controlled to be lifted when the separation process is performed, so as to avoid stopping the continuous feeding and pausing the operation of the bubble film inflation function part, and to avoid the continuous heating of the bubble film by the heating wheel affecting the quality of the produced bubble film.
[0024] In some possible implementation manners, a sealing module is further arranged between the inflation module and the heating module, and the sealing module is configured to clamp and seal the opening of the inflated bubble film.
[0025] Therefore, by such a configuration, the inflated bubble film can be clamped and sealed by the sealing module, and then be conveyed to the heating module for heat sealing, so as to effectively alleviate the air leakage phenomenon that is prone to occur before the inflated bubble film is conveyed to the heating module, and improve the quality of the produced bubble film.
[0026] In some possible implementation manners, the sealing module comprises a first row of gear sets arranged on the first side of the bubble film and a second row of gear sets arranged on the second side of the bubble film, the first row of gear sets comprises at least one first gear arranged on the first side of the bubble film, the second row of gear sets comprises at least one second gear arranged on the second side of the bubble film, the number difference between the first gears and the second gears is not more than one, the first gears of the first row of gear sets and the second gears of the second row of gear sets are arranged at intervals, adjacent first gears and second gears are meshed with each other, and the sealing module further comprises a sealing driving element configured to drive at least one first gear or at least one second gear to rotate.
[0027] Therefore, by such a configuration, the opening of the bubble film can be clamped and sealed by the meshing transmission between the first row of gear sets and the second row of gear sets. Since the first row of gear sets and the second row of gear sets can each comprise a plurality of gears, each gear is meshed with another gear of the adjacent gear set, so as to effectively ensure the sealing stability during the conveying in the entire sealing module. Moreover, by such a meshing and matching configuration, the plurality of gears in the entire sealing module only need to be driven by one sealing driving element, and the rotation of the other gears is achieved by the meshing transmission, that is, the number of the driving elements can be reduced, and the sealing performance during the transmission can be effectively ensured.
[0028] In some possible implementation manners, the heating module comprises a heating wheel and a heat-sealing auxiliary wheel, the heat-sealing auxiliary wheel is configured to be actively rotated, and the heating wheel is provided with a lifting driving element configured to drive the heating wheel to move.
[0029] The heating wheel is provided with gear teeth, and the heating wheel is engaged with the first gear set or the second gear set through a driving gear. When the heating wheel is driven to move by the lifting driving element, the moving path of the heating wheel is set as an arc-shaped moving path with the rotation center of the driving gear as the reference. The sealing driving element is set to drive the heating wheel to rotate by a heat-sealing auxiliary wheel, and the heating wheel is engaged with the driving gear to drive at least one first gear or at least one second gear to rotate.
[0030] Therefore, by being thus arranged, the sealing module can directly save the arrangement of the driving module when driving, so that the cost of the equipment can be effectively reduced, the weight of the whole equipment can be reduced, the equipment space for installing the driving module can be saved, and the volume of the whole equipment can be reduced. Meanwhile, when the heating wheel is lifted, the sealing module can stop operating at the same time, so that a certain clamping effect is generated on the bubble film, and the bubble film is further clamped and fixed. In addition, when the heating wheel is lifted, the moving path of the heating wheel is set as an arc-shaped moving path with the rotation center of the driving gear as the reference, so that the collision between the gear teeth of the heating wheel and the gear teeth of the driving gear when the heating wheel is reset after being lifted can be avoided, the engagement between the heating wheel and the driving gear can be maintained when the heating wheel is lifted, and a safety hazard can be avoided.
[0031] In some possible embodiments, the upstream of the inflation module is further provided with a consumable quantity detection module. The consumable quantity detection module comprises a dial piece structure. One end of the dial piece structure is hingedly arranged on the equipment body. The hinged rotation shaft of the dial piece structure is perpendicular to the consumable passing through the dial piece structure. The dial piece structure has a first position and a second position. The consumable quantity detection module further comprises a counting unit. When the dial piece structure is located at the first position, the dial piece structure is dialled by the opening of the consumable conveyed downstream to rotate through the second position. When the dial piece structure passes through the second position, the counting unit is triggered. The consumable quantity detection module further comprises a dial piece reset driving element for driving the dial piece structure to reset to the first position.
[0032] Therefore, by being thus arranged, when the consumable passes through the consumable quantity detection module, the dial piece structure is driven to rotate, so that the dial piece structure rotates through the second position and triggers the counting unit to count. Therefore, the use quantity of the consumable can be counted by the consumable quantity detection module, and the actual running position of the consumable can be clearly understood in combination with the production speed of the machine.
[0033] In some possible embodiments, the upstream side of the dial piece structure is further provided with an opening structure. The opening structure comprises an opening rod and a blade arranged on one side of the opening rod.
[0034] Therefore, by such arrangement, the open structure can cut some closed membrane structure consumables to form open membrane, and then convey them to the downstream inflation module to form bubble film. The open structure is arranged on the upstream side of the consumable quantity detection module, so that the closed membrane can be cut and then the consumable quantity can be counted by the push piece structure, so that two processes are integrated, and the structure of the overall equipment is simplified.
[0035] In some possible embodiments, the material discharging module further comprises a material discharging driving member for driving the material discharging rod to rotate to actively discharge material.
[0036] Therefore, by such arrangement, the impact caused by the too large weight of the consumable roll during discharging can be effectively alleviated, and the situation that the consumable is broken can be avoided. In actual production, the consumable roll is usually very large, so the overall weight is also very large and is not easy to be pulled to rotate. When the machine is operated, pulling the consumable to convey can generate impact force on the consumable roll, which is very easy to cause the consumable to be broken. This is a problem that only large bubble film production equipment can have. The present application increases the function of actively discharging rotation on the material discharging rod, so that a active rotation speed can be given to the consumable roll, so that the situation that the consumable is pulled and broken when the machine is operated can be effectively avoided.
[0037] In some possible embodiments, the downstream of the material discharging module further comprises a film buffering module, the film buffering module comprises a buffering roller, the consumable passes through the buffering roller to be conveyed downstream, the buffering roller is arranged to be movable relative to the equipment body between a third position and a fourth position, the film buffering module further comprises a detection unit, the detection unit is arranged to detect that the buffering roller moves to the fourth position, and then link to control the material discharging driving member to increase the discharging speed, and the film buffering module further comprises a buffering reset driving member for driving the buffering roller to reset to the third position.
[0038] Therefore, by such setting, the consumables can be first buffered by the film buffering module after being discharged from the feeding module. It can be understood that, due to the very large weight of the consumable roll as a whole, the volume will also be very large, so that under the premise of a certain rotation speed of the feeding driving member, the speed of the outermost layer of the consumable roll will gradually slow down during use, so as to fail to match the bubble film conveying speed and the bubble film production speed of the machine, thereby causing the consumable to be torn. At this time, by adding the buffering roller of the film buffering module, when the speed of the outermost layer of the consumable roll gradually slows down after passing around the buffering roller, the buffering roller will be pressed to move towards the fourth position. When the buffering roller moves to the fourth position, the detection unit will be triggered to control the feeding driving member to increase the feeding speed, thereby avoiding the tearing of the consumable. After the feeding speed of the feeding driving member is increased, the buffering roller will gradually reset to the third position under the driving of the buffering reset driving member, so as to realize the storage buffering, until the speed of the outermost layer of the consumable roll is slower than the bubble film conveying speed and the bubble film production speed of the machine, so as to repeat the triggering of the storage buffering. The present application further sets the film buffering module to store the consumables, thereby effectively avoiding the tearing of the consumables during the operation of the machine, and ensuring the normal operation of the equipment.
[0039] In some possible embodiments, the downstream of the feeding module further comprises a guide roller, and the consumables are conveyed downstream towards the required direction when entering the inflation module after passing around the guide roller.
[0040] Therefore, by such setting, the conveying direction of the consumables can be changed, so that the consumables can enter the inflation module better, avoid deviation of the consumables, affect the normal operation of the inflation module, and also reduce the setting of the deviation correction module, thereby reducing the cost of the overall equipment.
[0041] In some possible embodiments, the feeding module is arranged at the upper part of the equipment body, and the inflation module, the heating module and the separation module are arranged at the lower part of the equipment body.
[0042] Therefore, by such setting, the positions of each part of the overall equipment can be arranged more reasonably, so as to avoid the instability of the center of gravity, and also utilize the vertical space to reduce the length of the overall equipment and the floor area occupied by the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 FIG. 1 is a schematic diagram of the overall structure of the bubble film inflation and separation integrated device of an embodiment of the present application when the device is equipped with consumables;
[0044] Figure 2 FIG. 1 is a schematic diagram of the overall structure of the bubble film inflation and separation integrated device of an embodiment of the present application when the device is equipped with consumables;
[0045] Figure 3 Front view of the bubble film inflation and separation integrated device according to an embodiment of the present application;
[0046] Figure 4 Front view of the bubble film inflation and separation integrated device according to an embodiment of the present application;
[0047] Figure 5 Enlarged view of part A of the front view; Figure 4
[0048] Figure 6 Front view of the bubble film inflation and separation integrated device according to an embodiment of the present application;
[0049] Figure 7 Enlarged view of part B of the front view; Figure 6
[0050] Figure 8 Internal drive part structure of the bubble film inflation and separation integrated device according to an embodiment of the present application;
[0051] BRIEF DESCRIPTION OF THE DRAWINGS: 1, material discharging module; 11, material discharging rod; 12, material discharging drive part; 2, inflation module; 21, inflation nozzle; 22, air blower module; 3, sealing module; 31, first gear set; 32, second gear set; 33, drive gear; 4, consumable quantity detection module; 41, dial piece structure; 411, dial piece body; 412, clamping block; 413, connecting part; 414, hinged rotation shaft; 415, counting unit; 42, first position; 43, second position; 44, opening structure; 441, opening rod; 442, blade; 5, heating module; 51, heating wheel; 511, auxiliary sliding block; 512, sliding groove; 52, heat sealing auxiliary wheel; 53, lifting drive part; 54, heating module drive part; 61, detection module; 62, clamping module; 63, clamping part; 631, clamping connecting rod; 64, clamping drive part; 7, separation module; 71, conveyer belt assembly; 72, material inlet; 73, material outlet; 8, film buffer module; 81, buffer roller; 811, buffer connecting rod; 812, baffle; 82, third position; 83, fourth position; 84, detection unit; 85, buffer reset drive part; 86, guide roller; 9, equipment main body; 91, platform. DETAILED DESCRIPTION
[0052] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of the present application.
[0053] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.
[0054] Finally, it should also be noted that, in this document, relationship terms such as first and second are used only to distinguish one entity or operation from another, and do not necessarily require or imply that there is any such actual relationship or order between these entities or operations. Moreover, the terms "include", "contain", not only include those elements, but also include other elements not explicitly listed, or include elements inherent to such a process, method, article or device. Without more limitations, the elements defined by the statement "include" do not exclude the presence of other identical elements in the process, method, article or device including the described elements.
[0055] The present application will be described in further detail below with reference to the drawings.
[0056] Figure 1 And Figure 2 The overall structure of the bubble film inflation and separation integrated device of an embodiment of the present application is schematically shown. Referring to Figure 1 And Figure 2 The bubble film inflation and separation integrated device of the present application includes a material feeding module 1, an inflation module 2, a heating module 5 and a separation module 7. The material feeding module 1, the inflation module 2, the heating module 5 and the separation module 7 are arranged in the order of execution on the equipment main body 9. Specifically, in order to make the layout of the overall equipment more reasonable and reduce the occupied area, the material feeding module 1 can be arranged at the upper part of the equipment main body 9, while the inflation module 2, the heating module 5 and the separation module 7 are arranged at the lower part of the equipment main body 9. Since the volume and weight of the consumable roll are usually very large, arranging the material feeding module 1 at the upper part can save the floor area of the overall equipment, and arranging more modules at the lower part of the equipment main body 9 can effectively improve the stability of the overall equipment when placed.
[0057] The material feeding module 1 is arranged at the upper part of the equipment main body 9, referring to Figure 3 And Figure 4As shown, the feeding module 1 includes a feeding rod 11 extending to the outside of the device body 9. One end of the feeding rod 11 is rotatably arranged on the device body 9, and the consumable roll is arranged to be centered on the feeding rod 11, so as to be able to rotate with the rotation of the feeding rod 11, thereby realizing the feeding of the consumable.
[0058] The inflation module 2 is arranged at the lower part of the device body 9, and the specific arrangement of the inflation module 2 can refer to the related structure and module in the existing bubble film inflator. Figure 4 and Figure 8 As shown, the inflation module 2 is arranged below the feeding module 1. The inflation module 2 includes a blowing nozzle 21 and a blower module 22 connected with the blowing nozzle 21. The structure of the blowing nozzle 21 and the structure of the blower module 22 can be arranged by referring to the related structure and module in the existing bubble film inflator, and the present application is not limited thereto. Specifically, as shown in Figure 5 The blowing nozzle 21 is arranged in an "L" shape, with the tail end facing the downstream side. When the consumable is transported so that its opening passes through the blowing nozzle 21, the consumable is blown into the gas to form a bubble film, and continues to be transported downstream to enter the heating module.
[0059] In some possible embodiments, a sealing module 3 can also be arranged between the inflation module 2 and the heating module 5, so as to clamp and seal the opening of the inflated bubble film by using the sealing module 3, to avoid the gas in the bubble film from leaking during the period from leaving the inflation module 2 to entering the heating module 5. Specifically, the sealing module 3 can include a first row of gear sets 31 arranged on the first side of the bubble film and a second row of gear sets 32 arranged on the second side of the bubble film, so as to realize the transportation and clamping and sealing of the bubble film by the meshing and transmission of the gears. The first row of gear sets 31 can include at least one first gear arranged on the first side of the bubble film, and the second row of gear sets 32 can include at least one second gear arranged on the second side of the bubble film. The number difference between the first gear and the second gear is not more than one, and the first gear and the second gear are arranged in an interval and are meshed with each other. As shown in Figure 4 and Figure 5 As shown, in the embodiment shown in Figure 3 and Figure 4 The first gear is a gear arranged on the upper side of the bubble film, and the second gear is a gear arranged on the lower side of the bubble film. There are four first gears and four second gears, and the four first gears and the four second gears are arranged in an interval and are meshed with each other between adjacent first gears and second gears. The sealing module 3 further includes a sealing driving member for driving at least one first gear or at least one second gear to rotate. Specifically, in some possible embodiments, the sealing driving member can be arranged to be directly connected with the first gear or the second gear to drive the first row of gear sets 31 and the second row of gear sets 32 to operate.
[0060] In addition, in some possible embodiments, the upstream of the inflation module 2 can also be provided with a consumable quantity detection module 4. The provision of the consumable quantity detection module 4 can count the number of consumables used, and in combination with the production speed of the machine, the actual running position of the consumables can be clearly understood. Specifically, the consumable quantity detection module 4 can include a paddle structure 41, one end of the paddle structure 41 is hingedly provided on the equipment main body 9, and the hinged rotation shaft 414 of the paddle structure 41 is perpendicular to the consumables passing through the paddle structure 41. The consumable quantity detection module 4 further includes a counting unit 415, the paddle structure 41 has a first position 42 and a second position 43, when the paddle structure 41 is located at the first position 42, it will be pushed by the opening of the consumables conveyed downstream to rotate through the second position 43, and when the paddle structure 41 passes through the second position 43, it will trigger the counting unit 415. The consumable quantity detection module 4 further includes a paddle reset drive for driving the paddle structure 41 to reset to the first position 42. Specifically, the counting unit 415 can be provided at the first position 42, so that the counting can be triggered when the paddle structure 41 is reset to the first position 42, or the counting unit 415 can be provided at the second position 43, so that the counting can be triggered when the paddle structure 41 is pushed to pass through the second position 43. For example, referring to Figure 7 the embodiment shown in Figure 7 the paddle structure 41 includes a paddle body 411 and a clamping block 412 connected to one side of the paddle body 411, the clamping block 412 is hingedly provided on the connecting piece 413 extending outward from the side of the equipment main body 9 through the hinged rotation shaft 414, so that the paddle body 411 can be pushed by the opening of the consumables conveyed in a state parallel to the horizontal plane. The counting unit 415 can use a common unit module such as a photoelectric sensor. One side of the clamping block 412 extends a protrusion, and the counting unit 415 is arranged at the position of the protrusion when the paddle structure 41 is located at the first position 42. The reset drive can be a torsional spring arranged on the hinged rotation shaft 414, so that the paddle structure 41 can be reset to the first position 42 under the torsional force of the torsional spring after being pushed. The reset drive can also be a tension spring, so that the paddle structure 41 can be pulled to reset to the first position 42 under the tension of the tension spring after being pushed. The reset drive can also be other structures or modules that can drive the structure to rotate, which will not be described in detail herein, and the present application does not limit the reset drive.
[0061] Further, in some possible embodiments, the consumable can be a closed film structure, and then a blade 442 is needed to cut the closed film to form an opening film before the consumable is conveyed to the inflation module 2 for inflation. Therefore, in the consumable quantity detection module 4, an opening structure 44 can also be provided on the upstream side of the connecting piece 413. For example, referring to Figure 7 the embodiment shown inFigure 7 In the embodiment shown, the opening structure 44 includes an opening rod 441 and a blade 442 arranged on the side of the opening rod 441 facing the device body 9, so that when the consumable is transported through the opening structure 44, the consumable is first expanded by the opening rod 441, and then the closed part of the consumable is cut by the blade 442 as the consumable is transported, forming an opening film, which is then counted by the poking structure 41 and finally transported to the inflation module 2 for inflation.
[0062] The heating module 5 is arranged at the lower part of the device body 9, as shown in Figure 3 As shown, the heating module 5 is arranged on the right side of the inflation module 2 and downstream of the inflation module 2. The heating module 5 includes a heating wheel 51 and a heat-sealing auxiliary wheel 52, the heat-sealing auxiliary wheel 52 is arranged to rotate actively, and the surface of the heating wheel 51 abuts against the surface of the heat-sealing auxiliary wheel 52 to heat-seal the opening of the bubble film being clamped and transported between the surface of the heating wheel 51 and the surface of the heat-sealing auxiliary wheel 52, and to drive the bubble film to be transported in the downstream direction. The surface of the heating wheel 51 is provided with a metal wire for heat-sealing the bubble film. The specific structure of the heating wheel 51 and the heat-sealing auxiliary wheel 52 can be arranged according to the related structure and module of the existing bubble film inflator, which is not limited in the present application. Specifically, the heat-sealing auxiliary wheel 52 is connected with a heating module driving member 54 for driving the heat-sealing auxiliary wheel 52 to rotate, so that the heat-sealing auxiliary wheel 52 can actively rotate and serve as the main transmission structure of the consumable transportation in the operation of the overall device. As shown in Figure 8 As shown, in Figure 8 In the embodiment shown, the heating module driving member 54 is arranged in the device body 9 to drive the rotation of the heat-sealing auxiliary wheel 52. The heating module driving member 54 can be arranged to include a driving motor and two pulleys, the two pulleys are respectively synchronous with the rotation shaft of the driving motor and synchronous with the heat-sealing auxiliary wheel 52, and the two pulleys are driven by a belt transmission to drive the heat-sealing auxiliary wheel 52. The heating module driving member 54 can also use other driving control modes, which are not limited in the present application. The consumable is continuously transported downstream under the driving of the heating module 5, and after being inflated by the inflation module 2, the consumable is heat-sealed by the heating module 5.
[0063] The separation module 7 is arranged at the lower part of the device body 9, as shown in Figure 3As shown, the separating module 7 is arranged at the right side of the detecting module 61 and downstream of the detecting module 61. The separating module 7 comprises a conveying belt assembly 71, which comprises two conveying belts arranged in an up-down manner and with a certain interval therebetween so that the bubble film can be conveyed between the two conveying belts. The separating module 7 has an inlet 72 and an outlet 73, the inlet 72 being arranged at one side of the right side of the detecting module 61, and the other side being the outlet 73. The separating module 7 continuously conveys the bubble film from the inlet 72 to the outlet 73 at a speed corresponding to the conveying speed of the bubble film when the equipment is in operation. When the separating process is started, the heating module 5 stops running to clamp the bubble film, and the separating module 7 continues to operate to cooperate with the heating module 5 to tear the bubble film and convey the torn bubble film to the outlet 73.
[0064] In some possible embodiments, the detecting module 61 can also be arranged between the heating module 5 and the separating module 7. The detecting module 61 is arranged at the lower part of the equipment body 9, and the detecting module 61 is arranged at the right side of the heating module 5 and downstream of the heating module 5. Figure 1 As shown, the detecting module 61 is arranged at the right side of the heating module 5 and downstream of the heating module 5. The detecting module 61 can adopt a commonly used unit module such as a photoelectric sensor. Specifically, as one possible embodiment, the detecting module 61 can detect the position of the tear of the end of the passing bubble film, when the equipment receives the length of the bubble film to be separated, according to the conveying speed of the current bubble film, determines how much time is needed to control the heating module 5 and the separating module 7 to operate, and the length of the bubble film torn after the separating process is performed is the length of the bubble film to be separated, and then when the detecting module 61 detects the tear of the end of the bubble film after a corresponding time, it can be determined that the position of the bubble film to be torn, and then the operation of the overall equipment is controlled to start the separating process, and the heating module 5 is stopped to clamp the bubble film, and the separating module 7 is cooperated to realize the automatic tearing and separating of the bubble film. In addition, as another possible embodiment, when the overall equipment is also provided with the consumable quantity detecting module 4, the length of the bubble film torn after the separating process is performed at the current time can be determined by combining the detecting module 61 and the consumable quantity detecting module 4. Specifically, since the consumable can be triggered when passing through the consumable quantity detecting module 4 to count the number of consumables used, when the tear of the end of the bubble film is detected by the detecting module 61, the number of consumables used detected by the consumable quantity detecting module 4 is used to determine that the length of the bubble film torn after the separating process is performed at the current time, and the position of the bubble film to be torn is determined, so that the heating module 5 is controlled to stop to clamp the bubble film, and the separating module 7 is cooperated to realize the automatic tearing and separating of the bubble film.
[0065] In some possible implementation manners, the clamping module 62 can also be arranged between the separating module 7 and the heating module 5. Referring to Figure 3 and Figure 4 , specifically, the clamping module 62 is arranged at the lower part of the equipment body 9, which can be arranged at the side of the discharging port 72 of the separating module 7 and above the detecting module 61. The clamping module 62 comprises a clamping piece 63 and a clamping driving piece 64, and the clamping driving piece 64 is used to drive the clamping piece 63 to move, so as to control the clamping piece 63 to clamp the bubble film and avoid the bubble film from moving forward and backward. Specifically, the clamping piece 63 can be arranged in a clip structure, so that the clamping piece 63 can clamp the bubble film by itself. The clamping piece 63 can also be arranged in a structure cooperating with other structures on the equipment body 9 to clamp the bubble film, such as a pressing rod, a pressing wheel, etc. Exemplarily, referring to Figure 3 and Figure 4 , in the implementation manner shown in Figure 3 and Figure 4 , the clamping piece 63 is arranged as a pressing wheel, and the lower part of the equipment body 9 is arranged with a platform 91 cooperating with the pressing wheel to clamp the bubble film, which is arranged at the side of the feeding port 72 of the separating module 7. One end of the clamping piece 63 is connected with a clamping connecting rod 631, one end of the clamping connecting rod 631 is arranged on the equipment body 9 through a rotating shaft, and the other side of the rotating shaft is connected with the clamping driving piece 64, so as to control the rotating shaft to rotate and further control the clamping piece 63 to swing with the clamping connecting rod 631 and abut against the platform 91 to clamp the bubble film. The clamping driving piece 64 can be arranged as a crank structure driven by a linear motor, so as to drive the rotating shaft to rotate. When the detecting module 61 determines the position to be torn of the bubble film, the clamping module 62 will swing towards the platform 91 under the driving of the clamping driving piece 64, so as to clamp the bubble film with the platform 91 and prevent the bubble film from moving forward and backward, so as to cooperate with the separating module 7 to tear the bubble film and complete the separating process of the bubble film. In this implementation manner, the clamping module 62 is arranged to cooperate with the heating module 5 to improve the stability of clamping the bubble film.
[0066] In addition, since the clamping module 62 is additionally arranged to clamp the bubble film, in other possible embodiments, the bubble film can be clamped only by the clamping module 62 when clamping the bubble film, thereby avoiding continuous heating of the bubble film when the heating module 5 clamps the bubble film, causing damage to the bubble film and affecting the quality of the output bubble film. It can be understood that when the detection module 61 controls the separation process to be performed, the overall device will stop operating to stop the continuous conveying of the bubble film and the conveying of the bubble film by the separation module 7, and control the clamping module 62 to clamp the bubble film, and then continue to drive the separation module 7 to operate alone, and cooperate with the clamping module 62 to complete the separation of the bubble film. In this process, although the overall device stops conveying the bubble film, the heating module 5 cannot be immediately cooled down, and even if it can be immediately cooled down, it still needs a certain time to reheat to the working temperature, and the heating wheel 51 of the heating module 5 needs to be continuously heated. When the overall device stops conveying the bubble film, the heating wheel 51 continuously heats the same position of the bubble film, which may damage the bubble film. Therefore, in some possible embodiments, the heating wheel 51 of the heating module 5 can be provided with a lifting driving member 53, which is used to drive the heating wheel 51 to move, so that the wheel surface of the heating wheel 51 and the wheel surface of the heat-sealing auxiliary wheel 52 are separated, avoiding continuous heating of the same position of the bubble film. At this time, when the detection module 61 determines the position to be torn off of the bubble film, the lifting driving member 53 is also controlled to move to drive the heating wheel 51 to lift. It can be understood that in this embodiment, since the heating wheel 51 is lifted, it cannot cooperate with the heating auxiliary wheel 52 to convey the bubble film, and therefore the heating auxiliary wheel 52 can stop running or can not stop running. For example, referring to Figure 8 , in the embodiment shown in Figure 8 , the rotating shaft of the heating wheel 51 is connected with the lifting driving member 53, which can be a linear motor or a crank structure driven by a linear motor, thereby driving the heating wheel 51 to lift.
[0067] Further, in this embodiment, the operation of the sealing module 3 can be driven by the heating module 5. Specifically, referring to Figure 3 and Figure 4 , in the embodiment shown in Figure 3 and Figure 4In the shown embodiment, a driving gear 33 is arranged above the first gear of the sealing module 3, and the driving gear 33 is engaged with the first gear. Meanwhile, the heating wheel 51 is also provided with gear teeth to engage with the driving gear 33, so that when the heating wheel 51 rotates, the driving gear 33 can be driven to rotate, thereby driving the whole sealing film module 3 to operate. When the heating wheel 51 is lifted, the whole sealing film module 3 can also be immediately stopped to clamp the bubble film. Such a design can save the driving structure for driving the sealing film module 3 to rotate. Meanwhile, since the heating wheel 51 needs to move in the process of separating the bubble film, if the heating wheel 51 is disengaged from the driving gear 33 after moving, gear collision will easily occur after the heating wheel 51 is reset, thereby causing a safety hazard. Therefore, in this embodiment, the moving path of the heating wheel 51 can be arranged to form an arc-shaped moving path with the center of rotation of the driving gear 33 as the reference, so that the heating wheel 51 moves in an arc shape around the center of rotation of the driving gear 33 when being lifted, and the heating wheel 51 and the driving gear 33 can continuously maintain the engaged state, thereby avoiding the safety hazard of gear collision. Specifically, referring to Figure 4 and Figure 8 The movement of the heating wheel 51 can be additionally provided with an auxiliary sliding block 511 connected with the heating wheel 51, and the device main body 9 is also provided with a sliding groove 512 matched with the auxiliary sliding block 511. The sliding groove 512 is also arranged in an arc shape, thereby assisting the movement of the heating wheel 51.
[0068] In actual production, since the consumable roll is usually very large, the overall weight will also be very large, and it is not easy to be pulled to rotate. When the machine operates, pulling the consumable conveying will generate an impact force on the consumable roll, which is very easy to cause the consumable to break, which is a problem that only large bubble film production equipment can have. Therefore, in some possible embodiments, the feeding module 1 can also include a feeding driving member 12 for driving the feeding rod 11 to rotate to actively feed. The feeding driving member 12 can be arranged to include a driving motor and two belt pulleys, the two belt pulleys are respectively synchronous with the rotating shaft of the driving motor and synchronous with the feeding rod 11, and the two belt pulleys are driven by a belt, thereby driving the feeding rod 11. The feeding driving member 12 can also adopt other driving control modes, which are not limited by the present application. The active feeding of the feeding rod 11 can give the consumable roll an active rotating speed, thereby effectively avoiding the situation that the machine operates and the consumable is pulled off.
[0069] Further, since the weight of the consumable roll is very large, the volume is also very large, so under the premise that the rotation speed of the dispensing driving member 12 is certain, the speed of the outermost layer of the consumable roll will gradually slow down during use, which cannot match the bubble film conveying speed and bubble film production speed of the machine, thereby causing the consumable to be torn off. Further, in some possible embodiments, the downstream of the dispensing module 1 can further include a film buffering module 8. Referring to Figure 3 and Figure 4 , the film buffering module 8 is arranged on the upper part of the equipment body 9 and on the left side of the dispensing module 1. The film buffering module 8 includes a buffering roller 81, and the consumable continues to be conveyed downstream around the buffering roller 81. One end of the buffering roller 81 is arranged on the side surface of the equipment body 9, and the buffering roller 81 is arranged to be movable relative to the equipment body 9 between a third position 82 and a fourth position 83. The film buffering module 8 further includes a detection unit 84 arranged to detect that the buffering roller 81 moves to the fourth position 83, and the dispensing driving member 12 is linked to increase the dispensing speed. The film buffering module 8 further includes a buffering reset driving member 85 for driving the buffering roller 81 to reset to the third position 82. Specifically, referring to Figure 3 and Figure 4 , one end of the buffering roller 81 is connected with a buffering connecting rod 811, one end of the buffering connecting rod 811 is rotatably arranged on the side surface of the equipment body 9 by a rotating shaft, so that the buffering roller 81 can move relative to the equipment body 9 around the rotating shaft, and the moving path is an arc shape, the upper end of the arc shape is the third position 82, and the lower end of the arc shape is the fourth position 83. The buffering connecting rod 811 is provided with a baffle 812, and the detection unit 84 is arranged at a position on the side surface of the equipment body 9 which is shielded by the baffle 812 when the buffering roller 81 is located at the third position 82. The detection unit 84 can be a commonly used unit module such as a photoelectric sensor. The buffering reset driving member 85 can be a tension spring having one end connected with the equipment body 9 and the other end connected with the buffering roller 81 or the buffering connecting rod 811. In specific work, when the speed of the outermost layer of the consumable roll gradually slows down, the buffering roller 81 will be pressed to move towards the fourth position 83. When the buffering roller 81 moves to the fourth position 83, the detection unit 84 will be triggered to link to control the dispensing driving member 12 to increase the dispensing speed, thereby avoiding the situation that the consumable is torn off. After the dispensing speed of the dispensing driving member 12 is increased, the buffering roller 81 will gradually reset to the third position 82 under the driving of the buffering reset driving member 85, so as to realize the storage buffering, until the speed of the outermost layer of the consumable roll is slower than the bubble film conveying speed and bubble film production speed of the machine again, so as to repeatedly trigger the storage buffering. The present application further provides the film buffering module 8 for storage buffering, which can effectively avoid the tearing of the consumable during the operation of the machine, and ensure the normal operation of the equipment.
[0070] In addition, in some possible embodiments, the downstream of the feeding module 1 further comprises a guide roller 86. Specifically, referring to Figure 4 As shown, the guide roller 86 is arranged below the film buffer module 8, and the consumable continues to be conveyed downstream after passing around the guide roller 86 towards the required direction when being conveyed into the inflation module 2. In the overall device, the output position of the guide roller 86, the input position of the consumable quantity detection module 4, the input position of the inflation module 2, the input position of the heating module 5, and the input port 72 of the separation module 7 are all on the same plane, so that the consumable can be more smoothly conveyed during the operation of the overall device, the deviation of the consumable is avoided, the normal operation of the subsequent modules is affected, and the setting of the deviation correction module is reduced, thereby reducing the cost of the overall device. It should be noted that the same plane mentioned here does not mean an absolute plane, but can be approximately the same plane, so that the consumable can be more smoothly conveyed during the operation of the overall device.
[0071] When the device further comprises the feeding driving member 12, the lifting driving member 53, the sealing module 3, the consumable quantity detection module 4, the film buffer module 8, and the guide roller 86, during the operation of the overall device, the consumable first passes around the buffer roller 81 of the film buffer module 8, then passes around the guide roller 86, passes through the opening structure 44 of the consumable quantity detection module 4, then passes through the paddle structure 41, enters the inflation module 2, then passes through the sealing module 3 and enters the heating module 5, and finally passes through the detection module 61 and enters the separation module 7, and continuously conveys towards the discharge port 73. When the detection module 61 and the consumable quantity detection module 4 cooperatively determine the position to be torn of the bubble film, the overall device is stopped in linkage, the lifting driving member 53 is controlled to lift the heating wheel 51, the clamping module 62 is controlled to clamp the bubble film, and the separation module 7 is controlled to continue to operate after a preset interval. At this time, the bubble film between the clamping module 62 and the separation module 7 will be torn under the pulling of the separation module 7, and the separation process of the bubble film is completed.
[0072] When the device further comprises the feeding driving member 12, the lifting driving member 53, the sealing module 3, the consumable quantity detection module 4, the film buffer module 8, and the guide roller 86, during the operation of the overall device, the consumable first passes around the buffer roller 81 of the film buffer module 8, then passes around the guide roller 86, passes through the opening structure 44 of the consumable quantity detection module 4, then passes through the paddle structure 41, enters the inflation module 2, then passes through the sealing module 3 and enters the heating module 5, and finally passes through the detection module 61 and enters the separation module 7, and continuously conveys towards the discharge port 73. When the detection module 61 and the consumable quantity detection module 4 cooperatively determine the position to be torn of the bubble film, the overall device is stopped in linkage, the lifting driving member 53 is controlled to lift the heating wheel 51, the clamping module 62 is controlled to clamp the bubble film, and the separation module 7 is controlled to continue to operate after a preset interval. At this time, the bubble film between the clamping module 62 and the separation module 7 will be torn under the pulling of the separation module 7, and the separation process of the bubble film is completed.
[0073] The bubble film inflating and separating integrated device inflates the consumables through the feeding assembly, then inflates the consumables through the inflating module 2 to form the bubble film, and then seals the opening of the bubble film through the heating module 5 to form a complete continuous bubble film product. The bubble film product continues to be conveyed to the separating module 7 until the position to be torn off of the bubble film is determined. At this time, the clamping drive 64 of the clamping module 62 is controlled to drive the clamping piece 63 to move to clamp the bubble film, and the separating module 7 is stopped first, then continues to work after the clamping module 62 clamps the bubble film, cooperates with the clamping module 62 to tear off the bubble film, and the separated bubble film after being torn off can be conveyed to the discharge port 73 along with the operation of the separating module 7. In addition, the film buffer module 8 is arranged, and the feeding module 1 is arranged as an active feeding, so that the consumables can be effectively prevented from being pulled off during the production of the bubble film. Since the separating module 7 is integrally arranged in the whole device, the conveying speed of the separating module 7 can be consistent with the feeding speed and the bubble film production speed of the whole device, so that it is not necessary to further increase an additional net frame system for storage. The bubble film inflating and separating integrated device combines the bubble film inflating function and the separating function, ingeniously adopts the linkage cooperation between the detecting module 61, the clamping module 62 and the separating module 7, realizes the integration of the bubble film inflating function and the separating function in the whole device, so that the production and assembly cost of the whole system can be effectively reduced, and the safety hidden danger caused by the fact that the bubble film inflator and the bubble film separating device need to be placed at a high position in the prior art working mode can be avoided.
[0074] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A bubble film inflating and separating integrated device, characterized in that: Comprising A feeding module (1) comprising a feeding rod (11) for placing a roll of consumables; An inflation module (2) for inflating the opening of the consumables to form a bubble film; A heating module (5) for heat sealing the opening of the bubble film and conveying the bubble film towards the downstream direction, comprising a heating wheel (51) and a heat sealing auxiliary wheel (52), the heat sealing auxiliary wheel (52) is set to rotate actively, the wheel surface of the heating wheel (51) and the wheel surface of the heat sealing auxiliary wheel (52) abut to heat seal the opening of the bubble film; A separation module (7) comprising a conveyor belt assembly (71) for conveying the bubble film outside the discharge port (73) of the device, when the separation process is started, the heating module (5) stops running to clamp the bubble film, and the separation module (7) continues to operate to cooperate with the heating module (5) to tear the bubble film; Further comprising a clamping module (62) comprising a clamping piece (63) and a clamping driving piece (64), the clamping piece (63) comprises a compression wheel, and the clamping driving piece (64) is used to drive the clamping piece (63) to move to clamp the bubble film, and the clamping module (62) is arranged on the upstream side of the separation module (7); The feeding module (1), the inflation module (2), the heating module (5) and the separation module (7) are arranged in sequence on the device main body (9).
2. The bubble film inflation and separation integrated device of claim 1, wherein: Further comprising: A detection module (61) for determining the position of the bubble film to be torn and controlling the overall device operation, the detection module (61) is arranged between the heating module (5) and the separation module (7).
3. The bubble film inflation and separation integrated device of claim 1, wherein: The lower part of the device main body (9) is provided with a platform (91) for clamping the bubble film cooperating with the compression wheel, the platform (91) is arranged on the side of the inlet port (72) of the separation module (7), the compression wheel is connected with a clamping connecting rod (631), one end of the clamping connecting rod (631) is rotatably arranged on the device main body (9) through an axis, and the other side of the axis is connected with the clamping driving piece (64).
4. The bubble film inflation and separation integrated device of claim 1, wherein: The heating wheel (51) is provided with a lifting driving piece (53), the lifting driving piece (53) is used to drive the heating wheel (51) to move, so that the wheel surface of the heating wheel (51) and the wheel surface of the heat sealing auxiliary wheel (52) are separated.
5. The bubble membrane aerator and separator integrated device of claim 1, wherein: The inflation module (2) and the heating module (5) are further provided with a sealing module (3), the sealing module (3) is used to clamp the opening of the bubble film.
6. The bubble film inflation and separation integrated device of claim 5, wherein: The sealing module (3) comprises a first gear set (31) arranged on the first side of the bubble film and a second gear set (32) arranged on the second side of the bubble film, the first gear set (31) comprises at least one first gear arranged on the first side of the bubble film, the second gear set (32) comprises at least one second gear arranged on the second side of the bubble film, the number difference between the first gears and the second gears is not more than one, the first gears of the first gear set (31) and the second gears of the second gear set (32) are arranged in intervals, adjacent first gears and second gears are engaged with each other, and the sealing module (3) further comprises a sealing driving member for driving at least one first gear or at least one second gear to rotate.
7. The bubble membrane aerator and separator integrated device of claim 6, wherein: The heating module (5) comprises a heating wheel (51) and a heat sealing auxiliary wheel (52), the heat sealing auxiliary wheel (52) is arranged to rotate actively, and the heating wheel (51) is provided with a lifting driving member (53) for driving the heating wheel (51) to move. The heating wheel (51) is provided with gear teeth, the heating wheel (51) is engaged with the first gear set (31) or the second gear set (32) through a driving gear (33), and the moving path of the heating wheel (51) driven to move by the lifting driving member (53) is arranged as an arc-shaped moving path with the rotation center of the driving gear (33) as the reference, the sealing driving member is arranged to drive the heating wheel (51) to rotate by the heat sealing auxiliary wheel (52), the heating wheel (51) is engaged with the driving gear (33) to realize driving at least one first gear or at least one second gear to rotate.
8. The bubble membrane aerator and separator integrated device of claim 1, wherein: The upstream of the inflation module (2) is further provided with a consumable quantity detection module (4), the consumable quantity detection module (4) comprises a dial piece structure (41), one end of the dial piece structure (41) is hingedly arranged on the equipment main body (9), the hinged rotation shaft (414) of the dial piece structure (41) is perpendicular to the consumable passing through the dial piece structure (41), the dial piece structure (41) has a first position (42) and a second position (43), the consumable quantity detection module (4) further comprises a counting unit (415), when the dial piece structure (41) is located at the first position (42), the dial piece structure (41) is pushed by the opening of the consumable conveyed downstream to rotate to pass through the second position (43), when the dial piece structure (41) passes through the second position (43), the counting unit (415) is triggered, and the consumable quantity detection module (4) further comprises a dial piece reset driving member for driving the dial piece structure (41) to reset to the first position (42).
9. The bubble membrane aerator and separator integrated device of claim 8, wherein: The upstream side of the dial piece structure (41) is further provided with an opening structure (44), the opening structure (44) comprises an opening rod (441) and a blade (442) arranged on one side of the opening rod (441).
10. The bubble membrane aerator and separator integrated device of claim 1, wherein: The feeding module (1) further comprises a feeding driving member (12) for driving the feeding rod (11) to rotate to actively feed.
11. The bubble membrane aerator and separator integrated device of claim 10, wherein: The downstream of the feeding module (1) further comprises a film buffering module (8), the film buffering module (8) comprises a buffering roller (81), the consumable passes through the buffering roller (81) and is conveyed downstream, the buffering roller (81) is arranged to be movable relative to the equipment body (9) between a third position (82) and a fourth position (83), the film buffering module (8) further comprises a detection unit (84), the detection unit (84) is arranged to detect that the buffering roller (81) moves to the fourth position (83), and linkage control the feeding drive (12) to increase the feeding speed, the film buffering module (8) further comprises a buffering reset drive (85) for driving the buffering roller (81) to reset to the third position (82).
12. The bubble membrane aerator and separator integrated device of claim 1, wherein: The downstream of the feeding module (1) further comprises a guide roller (86), the consumable passes through the guide roller (86) and is conveyed downstream towards the required direction when conveyed into the inflation module (2).
13. The bubble film inflating and separating integrated device according to any one of claims 1 to 12, wherein: The feeding module (1) is arranged at the upper part of the equipment body (9), the inflation module (2), the heating module (5) and the separation module (7) are all arranged at the lower part of the equipment body (9).
Citation Information
Patent Citations
On-site inflation sealing machine and using method thereof
CN113942271A
Multi -functional buffer air cushion machine
CN208180390U
Inflation device of buffer air cushion machine
CN221090141U