Processing Equipment and Processing Technology for an Antibacterial and Fresh-Keeping Material Film

By designing a bacteriostatic preservation material film processing equipment including air guide mechanism and heat exchange mechanism, the existing cooling device has been solved, and more efficient cooling effect and convenient maintenance operations have been achieved.

CN119795449BActive Publication Date: 2025-06-27YINGKOU DONGSHENG IND
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Patent Information

Application Number
CN202510300778.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-06-27
Estimated Expiration
2045-03-14

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Abstract

The present invention discloses a processing device and a processing technology for an antibacterial and fresh-keeping material film, including a housing with a feed inlet and a discharge outlet respectively arranged on two sides; a conveying roller rotatably arranged inside the housing; a wind guiding mechanism; a blowing mechanism arranged at the bottom of the wind guiding mechanism; a driving mechanism for driving the blowing mechanism; and a heat exchange mechanism. The present invention utilizes the setting method of cooperation among a wind gathering hood, an air guiding frame, a blowing mechanism and a heat exchange mechanism. The blowing mechanism makes the cooling air enter the inside of the air guiding frame. By means of the air guiding design of the wind gathering hood, the cooling air is evenly blown on the surface of the antibacterial and fresh-keeping material film. At the same time, the heat exchange mechanism exchanges the heat of the antibacterial and fresh-keeping material film, which is beneficial to making the cooling air flow directly blow to the surface of the antibacterial and fresh-keeping material film for cooling by means of the air flow direction, and at the same time, performing a heat exchange operation on the antibacterial and fresh-keeping material film, so as to improve the cooling effect of the antibacterial and fresh-keeping material film.
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Description

Technical Field

[0001] The present invention relates to the field of processing of antibacterial and fresh-keeping material films, and particularly relates to a processing device and a processing technology for antibacterial and fresh-keeping material films. Background Art

[0002] An antibacterial and fresh-keeping material film is usually a new type of packaging material with antibacterial and fresh-keeping functions. It mainly inhibits or kills microorganisms near the material surface by adding antibacterial agents inside or on the surface of the material, thereby delaying the growth and reproduction of bacteria, reducing the chance of bacterial cross-infection, and improving food safety. When processing an antibacterial and fresh-keeping material film, multiple processes are usually required.

[0003] An antibacterial and fresh-keeping material film is usually formed by adding an antibacterial agent and using a blow molding machine. Since the overall temperature of the formed antibacterial and fresh-keeping material film is high, a cooling device is then used to cool down the formed antibacterial and fresh-keeping material film to improve the winding efficiency.

[0004] The cooling device of the existing antibacterial and fresh-keeping material film usually uses a long cooling line or a cooling box for cooling operations. The long cooling line has problems such as occupying a large space and being inconvenient for maintenance or transportation, while the cooling box occupies a small space and has strong mobility. The cooling box usually includes a box body, a heat dissipation fan, and multiple conveyor rollers, etc. The heat dissipation fan is usually installed on the top and bottom of the box body, and the internal part of the box body is cooled by using the heat dissipation fan to cool the antibacterial and fresh-keeping material film conveyed on the conveyor rollers.

[0005] However, there will be a situation where the air flow of the heat dissipation fan cannot directly blow to the surface of the antibacterial and fresh-keeping material film. At the same time, relying only on the air flow of the heat dissipation fan results in poor cooling effect of the antibacterial and fresh-keeping material film. Therefore, it is necessary for the cooling device of the antibacterial and fresh-keeping material film to change the air flow and conduct additional heat transfer to the antibacterial and fresh-keeping material film to improve the cooling effect. Summary of the Invention

[0006] The purpose of the present invention is to provide a processing device and a processing technology for antibacterial and fresh-keeping material films to solve the problems raised in the above background art.

[0007] To achieve the above purpose, the present invention provides the following technical solutions: A processing device for antibacterial and fresh-keeping material films, comprising:

[0008] A housing, with a feed port and a discharge port respectively opened on both sides, and a door panel assembly is arranged on the front surface of the housing;

[0009] Conveyor rollers, rotatably arranged inside the housing, and the conveyor rollers are used for conveying and guiding the formed antibacterial and fresh-keeping material film;

[0010] The air guiding mechanism is arranged outside the conveying roller, and the air guiding mechanism is used to direct the cooling air flow to the surface of the antibacterial and fresh-keeping material film;

[0011] The air blowing mechanism is arranged at the bottom of the air guiding mechanism, and the air blowing mechanism is used to blow the cooling air flow into the interior of the air guiding mechanism;

[0012] The driving mechanism is arranged between adjacent air blowing mechanisms, and the driving mechanism is used to perform a driving operation on the air blowing mechanism;

[0013] The heat exchange mechanism is arranged above the conveying roller, and the heat exchange mechanism is used to perform a heat exchange operation on the formed antibacterial and fresh-keeping material film.

[0014] Preferably, it further includes:

[0015] The series connection mechanism is arranged at the bottom inside the housing, and the series connection mechanism is used to perform a series connection operation on the air guiding mechanism, the air blowing mechanism, the driving mechanism and the heat exchange mechanism;

[0016] The linkage mechanism is arranged on the series connection mechanism, and the linkage mechanism is used to lock the installation position of the series connection mechanism;

[0017] The connection mechanism is located on the side of the linkage mechanism, and the connection mechanism is used to install the air blowing mechanism and the series connection mechanism.

[0018] Preferably, the air guiding mechanism includes:

[0019] The air gathering hood is evenly provided with air outlet holes at the top and the side;

[0020] The air guiding frame is fixedly inserted and connected to the bottom of the air gathering hood, and the inner cavity of the air guiding frame is communicated with the inner cavity of the air gathering hood;

[0021] The air blowing mechanism includes:

[0022] The fan blade is located inside the air guiding frame, and a round shaft is fixedly inserted through the middle of the fan blade;

[0023] The bearing seat is located at the bottom of the fan blade, and the round shaft rotates and penetrates through the middle of the bearing seat;

[0024] The synchronous pulley is fixedly sleeved on the outside of the round shaft.

[0025] Preferably, the driving mechanism includes:

[0026] The servo motor is located between adjacent bearing seats, and the output end of the servo motor is drivingly connected with a driving shaft;

[0027] The transmission pulley is fixedly sleeved on the outside of the driving shaft;

[0028] The synchronous belt is arranged between the transmission pulley and the synchronous pulley.

[0029] Preferably, the series mechanism includes:

[0030] A series frame, slidably arranged inside the housing, with the end of the series frame fixedly connected to the air collecting hood. First through grooves corresponding to the feed inlet and the discharge outlet are respectively formed on both sides of the series frame. A second through groove is formed on the side of the inner wall of the series frame, and a third through groove is formed at the bottom end of the inner wall of the series frame. First slots adapted to the series frame are symmetrically formed on the front surface of the housing;

[0031] A fixing plate, fixedly connected to the bottom of the series frame, and a sliding groove adapted to the fixing plate is formed at the bottom end of the inner wall of the housing;

[0032] An auxiliary plate, fixedly connected to the side of the fixing plate, and a guiding groove adapted to the auxiliary plate is formed on the side of the inner wall of the sliding groove;

[0033] Moving wheels, rotatably connected between adjacent fixing plates.

[0034] Preferably, the linkage mechanism includes:

[0035] A linkage plate, slidably arranged inside the second through groove;

[0036] A first clamping plate and a second clamping plate, fixedly connected to the bottom of the linkage plate;

[0037] A support plate, fixed to the inner wall of the series frame. Auxiliary rods are symmetrically fixedly connected to the bottom of the support plate. The end of the auxiliary rod is threadedly inserted with a fixing ring, and the outer wall of the auxiliary rod is slidably inserted through the linkage plate;

[0038] A spring, sleeved on the outside of the auxiliary rod, with one end of the spring in contact with the linkage plate and the other end in contact with the support plate;

[0039] A positioning seat, fixed to the inner wall of the housing, and the first clamping plate is slidably inserted through the inner cavity of the positioning seat.

[0040] Preferably, the heat exchange mechanism includes:

[0041] An auxiliary frame, with a bearing column fixedly connected to the side. The end of the bearing column is fixedly connected to the series frame, and second slots adapted to the bearing column are symmetrically formed on the front surface of the housing;

[0042] A U-shaped tube, fixedly sleeved on the top of the auxiliary frame, and the inner cavity of the U-shaped tube is in communication with the inner cavity of the auxiliary frame;

[0043] Heat conducting columns, fixedly inserted into the inside of the auxiliary frame;

[0044] Connecting pipes, fixedly inserted into the middle of the bearing columns;

[0045] The heat-conducting roller is rotatably arranged at the bottom of the auxiliary frame. An arc-shaped groove adapted to the heat-conducting roller is formed at the bottom of the heat-conducting column, and the outer wall of the heat-conducting roller is in contact with the inner wall of the arc-shaped groove;

[0046] The heat-conducting plate is fixed to the side of the heat-conducting column. A heat-conducting sheet is fixedly connected to the bottom of the heat-conducting plate, and the heat-conducting roller is rotatably connected between adjacent heat-conducting sheets.

[0047] Preferably, the connecting mechanism includes:

[0048] The assembling plate is arranged inside the series connection frame, and a fixing seat is fixedly connected to the side of the assembling plate;

[0049] The connecting shaft is rotatably inserted through the fixing seat. The end of the connecting shaft is fixedly connected to the round shaft, and a rotating shaft is installed at the other end of the connecting shaft. The rotating shaft is located inside the third through groove;

[0050] The rotating plate is fixed to the bottom of the rotating shaft. A brush is embedded at the bottom of the rotating plate. An air inlet is formed at the bottom end of the inner wall of the shell, and a filter screen is embedded in the inner cavity of the air inlet. The brush is located on top of the filter screen;

[0051] The assembling frame is fixed to the other side of the assembling plate. An assembling frame is slidably inserted through the inner cavity of the assembling frame, and the assembling frame is slidably inserted through the inner cavity of the assembling frame;

[0052] The locking plate is slidably inserted through the assembling frame and the assembling frame. A traction plate is fixedly connected to the side of the locking plate, and a card slot adapted to the second clamping plate is formed at the top of the traction plate.

[0053] Preferably, the door panel assembly includes:

[0054] The door panel is attached to the front of the shell, and a rotating door is rotatably connected to the front of the door panel;

[0055] The assembly seat is fixed to the outside of the shell;

[0056] The assembly frame is fixed to the outside of the door panel. A limit post is threadedly inserted through the assembly frame, and the end of the limit post is threadedly inserted through the inner cavity of the assembly seat;

[0057] The first sealing post and the second sealing post are fixed to the back of the door panel, and the first sealing post and the second sealing post are respectively slidably inserted through the inner cavities of the first slot and the second slot.

[0058] The present invention also provides a processing technology for a processing device for an antibacterial and fresh-keeping material film, including the following specific use steps:

[0059] Step 1: When it is necessary to cool the formed antibacterial and fresh-keeping material film, first, let the cooling water enter the inside of the auxiliary frame through the connecting pipe, and utilize the inside of the U-shaped pipe to make the cooling water circulate. Then, introduce the antibacterial and fresh-keeping material film into the inside of the housing and lead it out through the feeding port, discharging port, and rotating door. During the transmission of the antibacterial and fresh-keeping material film, the film contacts with the heat conduction roller to export the heat exchange on the antibacterial and fresh-keeping material film, and utilize the heat conduction column to conduct heat exchange with the cooling water to cool the antibacterial and fresh-keeping material film by heat exchange;

[0060] Step 2: Then start the servo motor. At the same time, under the action of the synchronous pulley, transmission pulley, and synchronous belt, the two fan blades rotate simultaneously, and utilize the air inlet to blow air into the inside of the air guiding frame by the fan blades. Then, due to the air duct design of the air gathering hood, the cooling air is blown out from the inner cavity of multiple air outlet holes, and the cooling air is evenly blown onto the surface of the antibacterial and fresh-keeping material film to cool the antibacterial and fresh-keeping material film. At the same time, when one of the fan blades rotates, it drives the rotating shaft, rotating plate, and brush bristles to rotate, and the brush bristles clean the filter net;

[0061] Step 3: When it is necessary to maintain the internal components of the housing, first, make the limit posts separate from the assembly frame and assembly seat, pull the door panel outwards to expose the inside of the housing. At this time, push the linkage plate upwards. The linkage plate drives the first clamping plate to move a certain distance, and at the same time, compress the spring. The first clamping plate disengages from the positioning seat. At this time, the position limit of the series connection frame is released. Then, pull the series connection frame outwards to take out the air gathering hood and the auxiliary frame as a whole. The series connection frame slides inside the first slot, and the bearing column slides inside the second slot, so that the air gathering hood and the auxiliary frame can be taken out as a whole, and corresponding maintenance operations can be carried out.

[0062] The technical effects and advantages of the present invention:

[0063] The present invention utilizes the setting method of the cooperation of the air gathering hood, air guiding frame, air blowing mechanism, and heat exchange mechanism. The air blowing mechanism makes the cooling air enter the inside of the air guiding frame. With the air guiding design of the air gathering hood, the cooling air is evenly blown on the surface of the antibacterial and fresh-keeping material film. At the same time, the heat exchange mechanism conducts heat exchange on the heat of the antibacterial and fresh-keeping material film. Therefore, it is beneficial to directly blow the cooling air flow onto the surface of the antibacterial and fresh-keeping material film for cooling by using the air flow guiding, and at the same time, conduct heat exchange on the antibacterial and fresh-keeping material film, which is convenient for improving the cooling effect of the antibacterial and fresh-keeping material film;

[0064] The present invention utilizes the setting method of the cooperation of the fan blade, round shaft, bearing seat, synchronous pulley, servo motor, and synchronous belt. The round shaft drives the fan blade to rotate. The bearing seat rotatably supports the round shaft. The cooperation of the servo motor with the synchronous pulley, synchronous belt, and transmission pulley makes the two fan blades rotate in the same direction. Therefore, it is beneficial to drive the fan blade and at the same time beneficial to save costs and facilitate operation;

[0065] The present invention utilizes the setting method in which a series frame, a fixing plate, an auxiliary plate and moving wheels cooperate. The series frame makes the air guiding mechanism, the blowing mechanism, the driving mechanism and the heat exchange mechanism be connected in series. The moving wheels enable the series frame to be movably installed inside the housing, which is conducive to simultaneously sliding out the air guiding mechanism, the blowing mechanism, the driving mechanism, the heat exchange mechanism, etc. from inside the housing, facilitating maintenance operations;

[0066] The present invention utilizes the setting method in which a linkage plate, a first clamping plate, a second clamping plate, a support plate, a spring, a positioning seat and a fixing ring cooperate. The linkage plate drives the first clamping plate and the second clamping plate to move. The first clamping plate defines the relative positions of the linkage plate and the positioning seat, which is conducive to the installation and disassembly of the series frame and facilitates the removal operation of the series frame;

[0067] The present invention utilizes the setting method in which an assembly plate, a fixing seat, a connecting shaft, a rotating shaft, a rotating plate, bristles, a filter screen and a linkage mechanism cooperate. The assembly plate and the fixing seat connect the fan blade to the series frame. The locking plate defines the relative positions of the assembly frame and the assembly rack. The traction plate pulls the locking plate to move. The second clamping plate of the linkage mechanism defines the positions of the traction plate and the locking plate. The rotating shaft drives the rotating plate and the bristles to rotate, so that the bristles brush the filter screen, which is conducive to the independent installation and disassembly of the fan blade. At the same time, it is conducive to cleaning the filter screen at the air inlet by the rotation of the fan blade, facilitating operation and improving the utilization rate of the fan blade;

[0068] The present invention utilizes the setting method in which a door panel, a rotating door, an assembly seat, an assembly rack and a limiting post cooperate. The door panel seals the inside of the housing. The rotating door can operate on the inside of the housing. The assembly seat, the assembly rack and the limiting post install and disassemble the door panel, which is conducive to the maintenance operation of the inside of the housing and improves the flexibility of the use of the housing. BRIEF DESCRIPTION OF THE DRAWINGS

[0069] Figure 1 is a schematic diagram of the overall structure of the present invention.

[0070] Figure 2 is a schematic diagram of the front sectional structure of the present invention.

[0071] Figure 3 is a schematic diagram of the front sectional structure at the air guiding frame of the present invention.

[0072] Figure 4 is a schematic diagram of the front sectional structure at the positioning seat of the present invention.

[0073] Figure 5 is a schematic diagram of the front structure at the rotating plate of the present invention.

[0074] Figure 6This is a front view structural schematic diagram of the auxiliary frame of the present invention.

[0075] Figure 7 This is a front sectional view structural schematic diagram of the auxiliary frame of the present invention.

[0076] Figure 8 This is the present invention Figure 1 An enlarged structural schematic diagram of part A in it.

[0077] In the figure: 1. Housing; 2. Conveyor roller; 3. Air guiding mechanism; 31. Air collecting hood; 32. Air guiding frame; 4. Air blowing mechanism; 41. Fan blade; 42. Bearing seat; 43. Synchronous pulley; 5. Driving mechanism; 51. Servo motor; 52. Synchronous belt; 6. Series mechanism; 61. Series frame; 62. Fixed plate; 63. Auxiliary plate; 64. Moving wheel; 7. Linkage mechanism; 71. Linkage plate; 72. First clamping plate; 73. Second clamping plate; 74. Support plate; 75. Spring; 76. Positioning seat; 77. Fixed ring; 8. Heat exchange mechanism; 81. Auxiliary frame; 82. U-shaped tube; 83. Heat conducting column; 84. Bearing column; 85. Connecting pipe; 86. Heat conducting roller; 87. Heat conducting plate; 88. Heat conducting sheet; 9. Connecting mechanism; 91. Assembly plate; 92. Fixed seat; 93. Connecting shaft; 94. Rotating shaft; 95. Rotating plate; 96. Brush hair; 97. Filter screen; 98. Assembly frame; 99. Assembly rack; 910. Locking plate; 911. Traction plate; 10. Door panel; 11. Rotating door; 12. Assembly seat; 13. Assembly rack; 14. Limit post. Detailed implementation manners

[0078] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0079] The present invention provides a processing device for an antibacterial and fresh-keeping material film as Figure 1-8 shown, including:

[0080] A housing 1, with a feed port and a discharge port respectively opened on both sides. An exhaust port can be additionally provided on the housing 1 for discharging the moisture inside the housing 1, which is not shown in the figure. A door panel assembly is provided on the front of the housing 1;

[0081] Conveyor rollers 2, rotatably arranged inside the housing 1. There are five conveyor rollers 2, and they are symmetrically arranged. The conveyor rollers 2 are used for conveying and guiding the formed antibacterial and fresh-keeping material film;

[0082] The air guiding mechanism 3 is arranged outside the conveying roller 2. Two groups of air guiding mechanisms 3 are symmetrically arranged. The air guiding mechanism 3 is used to direct the cooling air flow to the surface of the antibacterial and fresh-keeping material film;

[0083] The air blowing mechanism 4 is arranged at the bottom of the air guiding mechanism 3. Two groups of air blowing mechanisms 4 are symmetrically arranged. The air blowing mechanism 4 is used to blow the cooling air flow into the interior of the air guiding mechanism 3;

[0084] The driving mechanism 5 is arranged between adjacent air blowing mechanisms 4. The driving mechanism 5 is used to drive the air blowing mechanism 4;

[0085] The heat exchange mechanism 8 is arranged above the conveying roller 2. The heat exchange mechanism 8 is used to perform heat exchange on the formed antibacterial and fresh-keeping material film;

[0086] The series connection mechanism 6 is arranged at the bottom inside the housing 1. The series connection mechanism 6 is used to serially connect the air guiding mechanism 3, the air blowing mechanism 4, the driving mechanism 5 and the heat exchange mechanism 8;

[0087] The linkage mechanism 7 is arranged on the series connection mechanism 6. The linkage mechanism 7 is used to lock the installation position of the series connection mechanism 6;

[0088] The connection mechanism 9 is located on the side of the linkage mechanism 7. The connection mechanism 9 is used to install the air blowing mechanism 4 and the series connection mechanism 6.

[0089] Specifically, the air guiding mechanism 3 includes a wind gathering hood 31, which is evenly provided with air outlet holes at the top and sides. A plurality of air outlet holes are provided, which is beneficial to evenly blowing the cooling air on the surface of the antibacterial and fresh-keeping material film, and thus is beneficial to improving the cooling effect of the antibacterial and fresh-keeping material film. The wind gathering hood 31 is arranged in a special shape, usually corresponding to the position of the conveying roller 2, and is used to direct the cooling air flow to increase the blowing effect on the antibacterial and fresh-keeping material film. The air guiding frame 32 is fixedly inserted and connected to the bottom of the wind gathering hood 31. The air guiding frame 32 is arranged in a conical shape. The air guiding frame 32 is beneficial to cooperate with the fan blade 41, facilitating the cooling air flow to enter the interior of the wind gathering hood 31 along its interior and then be split. And the inner cavity of the air guiding frame 32 is communicated with the inner cavity of the wind gathering hood 31;

[0090] Specifically, the air blowing mechanism 4 includes a fan blade 41, which is located inside the air guiding frame 32. The fan blade 41 is beneficial to blowing the cooling air flow into the interior of the air guiding frame 32 by rotation. A round shaft is fixedly inserted through the middle of the fan blade 41. The bearing seat 42 is located at the bottom of the fan blade 41. The bearing seat 42 is beneficial to rotatably support the round shaft, facilitating the support of the fan blade 41. The round shaft is rotatably inserted through the middle of the bearing seat 42. The synchronous pulley 43 is fixedly sleeved on the outside of the round shaft. The synchronous pulley 43 is beneficial to cooperate with the synchronous belt 52, facilitating the driving of the fan blade 41 to rotate.

[0091] Specifically, the driving mechanism 5 includes a servo motor 51, which is located between adjacent bearing seats 42. The servo motor 51 is electrically connected to an external power supply through an external motor switch. The servo motor 51 is beneficial for driving the transmission wheel to rotate, facilitating the driving of the synchronous belt 52 for transmission, realizing an operation of using one driving source to make two fan blades 41 rotate simultaneously, and the power consumption of the servo motor 51 meets the usage requirements of the two fan blades 41. The output end of the servo motor 51 is drivingly connected to a driving shaft. A transmission wheel is fixedly sleeved on the outside of the driving shaft. A synchronous belt 52 is arranged between the transmission wheel and the synchronous wheel 43. The synchronous belt 52 is beneficial for making two opposite transmission wheels and the synchronous wheel 43 rotate simultaneously, so that the servo motor 51 drives the fan blade 41 to rotate. Moreover, anti-slip teeth are provided between the synchronous belt 52, the transmission wheel and the synchronous wheel 43, so that they will not slip randomly.

[0092] Particularly, the series connection mechanism 6 includes a series connection frame 61, which is slidably arranged inside the housing 1. The series connection frame 61 is arranged in a U shape. The series connection frame 61 is beneficial for serially connecting the air guiding mechanism 3, the blowing mechanism 4, the driving mechanism 5, the heat exchange mechanism 8, etc., facilitating the simultaneous direct overall pulling out of multiple mechanisms from the inside of the housing 1 to facilitate the maintenance operation of multiple mechanisms. Moreover, the servo motor 51 is installed on the series connection frame 61. The end of the series connection frame 61 is fixedly connected to the air collecting hood 31. First through slots corresponding to the feed inlet and the discharge outlet are respectively opened on both sides of the series connection frame 61. A second through slot is opened on the side of the inner wall of the series connection frame 61. A third through slot is opened at the bottom end of the inner wall of the series connection frame 61. First slots adapted to the series connection frame 61 are symmetrically opened on the front surface of the housing 1. A fixing plate 62 is fixedly connected to the bottom of the series connection frame 61. The fixing plate 62 is beneficial for supporting the auxiliary plate 63 and facilitating the support of the series connection frame 61. A sliding slot adapted to the fixing plate 62 is opened at the bottom end of the inner wall of the housing 1. An auxiliary plate 63 is fixedly connected to the side of the fixing plate 62. The auxiliary plate 63 is beneficial for horizontally guiding the sliding of the fixing plate 62. A guiding slot adapted to the auxiliary plate 63 is opened on the side of the inner wall of the sliding slot. A moving wheel 64 is rotatably connected between adjacent fixing plates 62, which is beneficial for moving the series connection frame 61 and facilitating the overall removal of the series connection frame 61, reducing the labor intensity and facilitating the operation.

[0093] In particular, the linkage mechanism 7 includes a linkage plate 71 that is slidably disposed inside the second through groove. The linkage plate 71 is conducive to driving the first clamping plate 72 and the second clamping plate 73 to move, facilitating the simultaneous driving operation of the first clamping plate 72 and the second clamping plate 73. The first clamping plate 72 and the second clamping plate 73 are provided. The first clamping plate 72 is conducive to limiting the relative positions of the series connection frame 61 and the positioning seat 76, thereby facilitating the installation and disassembly of the series connection frame 61 to facilitate the direct removal of the series connection frame 61. The second clamping plate 73 is conducive to limiting the position of the traction plate 911 to prevent the locking plate 910 from sliding randomly. Moreover, the unlocking heights of the first clamping plate 72 and the second clamping plate 73 are different. Therefore, according to the movement height of the linkage plate 71, it is possible to choose to independently disassemble the series connection frame 61 or disassemble the series connection frame 61 and the traction plate 911 simultaneously. The locking plate 910 is fixedly connected to the bottom of the linkage plate 71. The support plate 74 is fixed to the inner wall of the series connection frame 61. The support plate 74 is conducive to supporting the auxiliary rod and simultaneously conducive to supporting the compression of the spring 75. The bottom of the support plate 74 is symmetrically and fixedly connected with auxiliary rods, which is conducive to guiding the deformation of the spring 75. The end of the auxiliary rod is threadedly inserted with a fixing ring 77, which is conducive to limiting the movement position of the linkage plate 71. The outer wall of the auxiliary rod is slidably inserted through the linkage plate 71. The spring 75 is sleeved outside the auxiliary rod. The elastic force of the spring 75 is conducive to pushing the linkage plate 71 to move, facilitating the restoration of the linkage plate 71 to its original position after movement and facilitating the repeated operation of the linkage plate 71. One end of the spring 75 is in contact with the linkage plate 71, and the other end of the spring 75 is in contact with the support plate 74. The positioning seat 76 is fixed to the inner wall of the housing 1 and is conducive to connecting with the first clamping plate 72 to limit the position of the series connection frame 61. The first clamping plate 72 is slidably inserted through the inner cavity of the positioning seat 76.

[0094] It should be noted that the heat exchange mechanism 8 includes an auxiliary frame 81, with a bearing column 84 fixedly connected to the side. The auxiliary frame 81 is conducive to allowing cooling water to flow into its interior. The bearing column 84 is conducive to connecting the auxiliary frame 81 to the series connection frame 61, facilitating the support use of the auxiliary frame 81. The end of the bearing column 84 is fixedly connected to the series connection frame 61. Second slots adapted to the bearing column 84 are symmetrically opened on the front surface of the housing 1. The U-shaped tube 82 is fixedly sleeved on the top of the auxiliary frame 81, which is conducive to making the inner cavities of the two auxiliary frames 81 communicate with each other so that the cooling water can flow. The inner cavity of the U-shaped tube 82 communicates with the inner cavity of the auxiliary frame 81. The heat conduction column 83 is fixedly inserted into the interior of the auxiliary frame 81, which is conducive to transferring the heat transmitted by the heat conduction roller 86 to the cooling water, facilitating the heat exchange operation of the heat conduction roller 86. The connecting pipe 85 is fixedly inserted into the middle of the bearing column 84, which is conducive to connecting with an external pipeline to introduce and discharge the cooling water. The heat conduction roller 86 is rotatably arranged at the bottom of the auxiliary frame 81. The heat conduction roller 86 and the like are all made of heat-conducting materials, which is conducive to contacting with the antibacterial and fresh-keeping material film, facilitating the heat conduction operation of the antibacterial and fresh-keeping material film. An arc-shaped groove adapted to the heat conduction roller 86 is opened at the bottom of the heat conduction column 83, and the outer wall of the heat conduction roller 86 is in contact with the inner wall of the arc-shaped groove. The heat conduction plate 87 is fixed to the side of the heat conduction column 83, which is conducive to the heat conduction operation of the heat conduction roller 86. The heat conduction sheet 88 is fixedly connected to the bottom of the heat conduction plate 87, which is conducive to the heat conduction operation of the heat conduction roller 86, transferring the heat to the heat conduction column 83. The heat conduction roller 86 is rotatably connected between adjacent heat conduction sheets 88.

[0095] Specifically, the connecting mechanism 9 includes an assembly plate 91 disposed inside the series frame 61. The assembly plate 91 is conducive to supporting the fixed seat 92 and facilitating the installation of the fan blade 41. A fixed seat 92 is fixedly connected to the side of the assembly plate 91, which is conducive to the rotation of the connecting shaft 93 thereon. The connecting shaft 93 is conducive to rotating following the circular shaft and is rotationally inserted into the fixed seat 92. The end of the connecting shaft 93 is fixedly connected to the circular shaft, and the other end of the connecting shaft 93 is provided with a rotating shaft 94, which is conducive to rotating the rotating plate 95 and the bristles 96, facilitating the driving of the bristles 96 to rotate while the fan blade 41 rotates to brush and clean the filter net 97. The rotating shaft 94 is located inside the third through groove. The rotating plate 95 is conducive to supporting the bristles 96 and is fixed to the bottom of the rotating shaft 94. The bristles 96 are embedded at the bottom of the rotating plate 95. An air inlet is opened at the bottom end of the inner wall of the housing 1, which is conducive to the air guiding operation of the fan blade 41. A filter net 97 is embedded in the inner cavity of the air inlet, which is conducive to the dust-proof protection of the air inlet. The bristles 96 are located on the top of the filter net 97. The assembly frame 98 is conducive to cooperating with the assembly rack 99 and is fixed to the other side of the assembly plate 91, which is conducive to positioning the installation of the assembly plate 91. The inner cavity of the assembly frame 98 is slidably inserted with an assembly rack 99. The assembly rack 99 is convexly arranged and is slidably inserted into the inner cavity of the assembly frame 98. The locking plate 910 is conducive to limiting the relative positions of the assembly rack 99 and the assembly frame 98, and is conducive to the installation and disassembly of the assembly plate 91, facilitating the installation and disassembly of the fan blade 41. The locking plate 910 is slidably inserted into the assembly rack 99 and the assembly frame 98. A traction plate 911 is fixedly connected to the side of the locking plate 910, which is conducive to pulling the locking plate 910 to move and is conducive to limiting the position of the locking plate 910. A card slot adapted to the second clamping plate 73 is opened at the top of the traction plate 911.

[0096] Specifically, the door panel assembly includes a door panel 10, which is conducive to shielding the inside of the housing 1 and fits against the front of the housing 1. A rotating door 11 is rotatably connected to the front of the door panel 10, which is conducive to operating the inside of the housing 1 by opening the rotating door 11. The assembly seat 12 is fixed to the outside of the housing 1. The assembly seat 12, the assembly rack 13 and the limit post 14 are conducive to the installation and disassembly of the door panel 10. The assembly rack 13 is fixed to the outside of the door panel 10. The limit post 14 is threadedly inserted through the assembly rack 13, and the end of the limit post 14 is threadedly inserted into the inner cavity of the assembly seat 12. The first sealing post and the second sealing post are both made of rubber and are conducive to the sealing operation of the inside of the first slot and the second slot. They are fixed to the back of the door panel 10 and are respectively slidably inserted into the inner cavities of the first slot and the second slot.

[0097] Usage method of the present invention:

[0098] When the formed antibacterial and fresh-keeping material film needs to be cooled, first, the connecting pipe 85 allows cooling water to flow into the interior of the auxiliary frame 81, and by means of the interior of the U-shaped pipe 82, the cooling water can circulate. Then, through the feed port, the discharge port, and the rotating door 11, the antibacterial and fresh-keeping material film is introduced into the housing 1 and then led out. During the conveyance of the antibacterial and fresh-keeping material film, the film contacts the heat-conducting roller 86 to conduct the heat exchange on the film, and heat exchange is carried out with the cooling water through the heat-conducting column 83 to cool the antibacterial and fresh-keeping material film by heat exchange;

[0099] Then, the servo motor 51 is started. Meanwhile, under the action of the synchronous pulley 43, the transmission pulley, and the synchronous belt 52, the servo motor 51 causes the two fan blades 41 to rotate simultaneously. By means of the air inlet, the fan blades 41 blow air into the interior of the air guiding frame 32. Then, due to the air duct design of the air gathering hood 31, the cooling air is blown out from the inner cavities of multiple air outlet holes, and the cooling air is evenly blown onto the surface of the antibacterial and fresh-keeping material film to cool the film. At the same time, when one of the fan blades 41 rotates, it drives the rotating shaft 94, the rotating plate 95, and the brush bristles 96 to rotate, and the brush bristles 96 clean the filter net 97;

[0100] If the internal components of the housing 1 need to be maintained, first, the limit post 14 is disengaged from the assembly frame 13 and the assembly seat 12, the door panel 10 is pulled outwards to expose the interior of the housing 1. At this time, the linkage plate 71 is pushed upwards. The linkage plate 71 drives the first clamping plate 72 to move a certain distance, and at the same time, the spring 75 is compressed. The first clamping plate 72 is disengaged from the positioning seat 76. At this time, the position limitation of the series connection frame 61 is released. Then, the series connection frame 61 is pulled outwards, and both the air gathering hood 31 and the auxiliary frame 81 are taken out. The series connection frame 61 slides inside the first slot, and the bearing column 84 slides inside the second slot, so that the air gathering hood 31 and the auxiliary frame 81 can be taken out as a whole, and corresponding maintenance operations can be carried out.

[0101] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A processing device for antibacterial fresh-keeping material film, characterized in that: include: The shell (1) has a feed inlet and a discharge outlet respectively formed on two sides, and a door panel assembly is provided on the front side of the shell (1); A conveying roller (2) is rotatably arranged inside the housing (1), and the conveying roller (2) is used to convey and guide the formed antibacterial fresh-keeping material film; An air guide mechanism (3) is arranged outside the conveying roller (2), and the air guide mechanism (3) is used to guide the cooling air flow to the surface of the antibacterial fresh-keeping material film; A blower mechanism (4) is arranged at the bottom of the air guide mechanism (3), and the blower mechanism (4) is used to blow cooling air into the interior of the air guide mechanism (3); A driving mechanism (5) is arranged between adjacent hair dryer mechanisms (4), and the driving mechanism (5) is used to drive the hair dryer mechanisms (4); The series connection mechanism (6) is arranged at the bottom of the housing (1), and the series connection mechanism (6) comprises: A series frame (61) is slidably disposed inside the housing (1), and an end of the series frame (61) is fixedly connected to the wind collecting cover (31); A fixed plate (62) is fixedly connected to the bottom of the series frame (61), and a sliding groove adapted to the fixed plate (62) is provided at the bottom end of the inner wall of the housing (1); The linkage mechanism (7) is arranged on the series connection mechanism (6), and the linkage mechanism (7) comprises: A linkage plate (71) is slidably disposed inside the second through groove; A first clamping plate (72) and a second clamping plate (73) are fixedly connected to the bottom of the linkage plate (71); A heat exchange mechanism (8) is arranged above the conveying roller (2), and the heat exchange mechanism (8) is used to perform heat exchange operations on the formed antibacterial fresh-keeping material film; The connecting mechanism (9) is located on the side of the linkage mechanism (7), and the connecting mechanism (9) comprises an assembly plate (91) arranged inside the serial frame (61), and a fixing seat (92) is fixedly connected to the side of the assembly plate (91).

2. The processing equipment for antibacterial fresh-keeping material film according to claim 1, characterized in that: The series mechanism (6) is used to perform series operation on the air guide mechanism (3), the air blower mechanism (4), the drive mechanism (5) and the heat exchange mechanism (8); the linkage mechanism (7) is used to lock the installation position of the series mechanism (6); and the connection mechanism (9) is used to install the air blower mechanism (4) and the series mechanism (6).

3. The processing equipment for antibacterial fresh-keeping material film according to claim 2, characterized in that: The air guide mechanism (3) comprises: The wind collecting cover (31) has air outlet holes equidistantly formed on the top and sides; An air induction frame (32) is fixedly inserted and connected to the bottom of the air collecting cover (31), and the inner cavity of the air induction frame (32) is communicated with the inner cavity of the air collecting cover (31); The hair dryer structure (4) comprises: The fan blade (41) is located inside the air induction frame (32), and a round shaft is fixedly inserted into the middle of the fan blade (41); A bearing seat (42) is located at the bottom of the fan blade (41), and the circular shaft is rotatably inserted into the middle of the bearing seat (42); The synchronous wheel (43) is fixedly sleeved on the outside of the circular shaft.

4. The processing equipment for antibacterial fresh-keeping material film according to claim 3, characterized in that: The driving mechanism (5) comprises: A servo motor (51) is located between adjacent bearing seats (42), and an output end of the servo motor (51) is drivingly connected to a drive shaft; A transmission wheel, fixedly sleeved on the outside of the driving shaft; The synchronous belt (52) is arranged between the transmission wheel and the synchronous wheel (43).

5. The processing equipment for antibacterial fresh-keeping material film according to claim 4, characterized in that: The series connection mechanism (6) further comprises: An auxiliary plate (63) is fixedly connected to the side of the fixed plate (62); a guide groove matching the auxiliary plate (63) is provided on the side of the inner wall of the sliding groove; first through grooves corresponding to the feed port and the discharge port are provided on both sides of the serial frame (61); a second through groove is provided on the side of the inner wall of the serial frame (61); a third through groove is provided at the bottom end of the inner wall of the serial frame (61); and a first groove matching the serial frame (61) is symmetrically provided on the front of the housing (1); The moving wheel (64) is rotatably connected between adjacent fixing plates (62).

6. The processing equipment for antibacterial fresh-keeping material film according to claim 5, characterized in that: The linkage mechanism (7) further comprises: A support plate (74) is fixed to the inner wall of the series frame (61); an auxiliary rod is symmetrically fixedly connected to the bottom of the support plate (74); a fixing ring (77) is threadedly inserted into the end of the auxiliary rod; and an outer wall of the auxiliary rod is slidably inserted into the linkage plate (71); A spring (75) is sleeved on the outside of the auxiliary rod, one end of the spring (75) is in contact with the linkage plate (71), and the other end of the spring (75) is in contact with the support plate (74); The positioning seat (76) is fixed to the inner wall of the housing (1), and the first clamping plate (72) is slidably connected with the inner cavity of the positioning seat (76).

7. The processing equipment for antibacterial fresh-keeping material film according to claim 6, characterized in that: The heat exchange mechanism (8) comprises: The auxiliary frame (81) has a bearing column (84) fixedly connected to the side, the end of the bearing column (84) is fixedly connected to the series frame (61), and the front of the shell (1) is symmetrically provided with a second slot adapted to the bearing column (84); A U-shaped tube (82) is fixedly sleeved on the top of the auxiliary frame (81), and the inner cavity of the U-shaped tube (82) is communicated with the inner cavity of the auxiliary frame (81); A heat-conducting column (83) fixedly inserted into the interior of the auxiliary frame (81); A connecting pipe (85) fixedly inserted into the middle of the bearing column (84); A heat-conducting roller (86) is rotatably disposed at the bottom of the auxiliary frame (81); an arc-shaped groove matching the heat-conducting roller (86) is provided at the bottom of the heat-conducting column (83); and an outer wall of the heat-conducting roller (86) is in contact with an inner wall of the arc-shaped groove; The heat conducting plate (87) is fixed to the side of the heat conducting column (83), the bottom of the heat conducting plate (87) is fixedly connected to a heat conducting sheet (88), and the heat conducting roller (86) is rotatably connected between adjacent heat conducting sheets (88).

8. The processing equipment for antibacterial fresh-keeping material film according to claim 7, characterized in that: The connecting mechanism (9) further comprises: A connecting shaft (93) is rotatably connected to the fixing seat (92), an end of the connecting shaft (93) is fixedly connected to the circular shaft, and a rotating shaft (94) is installed at the other end of the connecting shaft (93), and the rotating shaft (94) is located inside the third through groove; A rotating plate (95) is fixed to the bottom of the rotating shaft (94), bristles (96) are embedded in the bottom of the rotating plate (95), an air inlet is opened at the bottom end of the inner wall of the shell (1), a filter screen (97) is embedded in the inner cavity of the air inlet, and the bristles (96) are located on the top of the filter screen (97); An assembly frame (98) is fixed to the other side of the assembly plate (91), the inner cavity of the assembly frame (98) is slidably connected to an assembly rack (99), and the assembly rack (99) is slidably connected to the inner cavity of the assembly frame (98); The locking plate (910) is slidably inserted into the assembly frame (99) and the assembly frame (98); a traction plate (911) is fixedly connected to the side of the locking plate (910); and a slot matching the second traction plate (73) is formed on the top of the traction plate (911).

9. The processing equipment for antibacterial fresh-keeping material film according to claim 8, characterized in that: The door panel assembly comprises: A door panel (10) is attached to the front side of the housing (1), and the front side of the door panel (10) is rotatably connected to a rotating door (11); An assembly seat (12) fixed to the outside of the housing (1); An assembly frame (13) is fixed to the outside of the door panel (10), the assembly frame (13) is threadedly connected to a limiting column (14), and the end of the limiting column (14) is threadedly connected to the inner cavity of the assembly seat (12); The first sealing column and the second sealing column are fixed to the back side of the door panel (10), and the first sealing column and the second sealing column are respectively connected to the inner cavities of the first slot and the second slot in a sliding manner.

10. The processing technology of the antibacterial fresh-keeping material film processing equipment according to claim 9, characterized in that: The specific usage steps are as follows: Step 1: When the formed antibacterial fresh-keeping material film needs to be cooled, firstly, the connecting pipe (85) allows cooling water to flow into the interior of the auxiliary frame (81), and the interior of the U-shaped pipe (82) is used to circulate the cooling water, and then the antibacterial fresh-keeping material film is introduced into the interior of the shell (1) and led out using the feed port, the discharge port and the rotating door (11). During the transmission of the antibacterial fresh-keeping material film, the antibacterial fresh-keeping material film contacts the heat-conducting roller (86) to lead out the heat exchange on the antibacterial fresh-keeping material film, and the heat-conducting column (83) is used to exchange heat with the cooling water to cool the antibacterial fresh-keeping material film; Step 2: Then the servo motor (51) is started, and at the same time, the servo motor (51) rotates the two fan blades (41) at the same time under the action of the synchronous wheel (43), the transmission wheel and the synchronous belt (52), and uses the air inlet to make the fan blades (41) blow air into the interior of the air induction frame (32), and then uses the air duct design of the wind collecting cover (31) to make the cooling air blow out from the inner cavity of the multiple air outlet holes, so that the cooling air is evenly blown to the surface of the antibacterial fresh-keeping material film, and the antibacterial fresh-keeping material film is cooled. At the same time, when one of the fan blades (41) rotates, it drives the rotating shaft (94), the rotating plate (95) and the bristles (96) to rotate, so that the bristles (96) clean the filter (97); Step 3: If it is necessary to maintain the internal components of the shell (1), first, the limiting column (14) is separated from the assembly frame (13) and the assembly seat (12), so that the door panel (10) is pulled outward to expose the interior of the shell (1). At this time, the linkage plate (71) is pushed upward, and the linkage plate (71) drives the first clamping plate (72) to move to a certain distance, and at the same time, the spring (75) is compressed, and the first clamping plate (72) is separated from the positioning seat (76). At this time, the position limit of the series frame (61) is released, and then the series frame (61) is pulled outward, so that the wind condensing cover (31) and the auxiliary frame (81) are both taken out, and the series frame (61) slides inside the first slot, and the bearing column (84) slides in the second slot, so that the wind condensing cover (31) and the auxiliary frame (81) can be taken out as a whole, and the corresponding maintenance operation can be performed.

Citation Information

Patent Citations

  • Circulating cooling device of film blowing machine

    CN221584513U