Automatic forming device for edge curling process of square blister box
By designing an automated molding device, the entire process of edge rolling for square blister boxes is automated, solving the problem of low efficiency in existing technologies and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202510010676.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-01-03
AI Technical Summary
Existing technologies cannot effectively automate the edge-rolling process of square blister boxes, resulting in low production efficiency and high labor costs.
An automated forming device was designed, comprising a fixed base, a support frame, a lifting drive mechanism, a fixed mold fixing mechanism, and a moving mold fixing mechanism. Through the cooperation of the mold feeding rack and the forming mold mechanism, the fully automated edge rolling process of the square blister box is realized, and the preheating and cooling processes are carried out using vortex tubes and processing plates.
The fully automated edge-rolling process for square blister boxes has been achieved, improving production efficiency, reducing labor costs, and accelerating the molding rate through preheating and cooling, thereby improving product quality and safety.
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Figure CN119610624B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of blister box forming, in particular to a square blister box edge curling process automatic forming device. BACKGROUND
[0002] Blister box refers to all bubble shells, that is, sheet material is formed into a plastic box shape by blistering, the cover is connected with the container, and the blister box is also called blister packaging or plastic blister box. It is a common plastic packaging material. When producing the blister box, a forming device is needed to perform edge curling treatment on the edge position of the blister box to reduce the sharpness of the edge of the blister box.
[0003] Publication No. CN112092341A discloses an automatic plastic cup rim curling machine, which comprises a support table, a cup feeding mechanism, a rack, a curling structure, a cup receiving mechanism and a cup collecting mechanism. The cup is placed in the cup feeding mechanism, and the plastic cup is automatically fed into the curling mechanism by the conveyor belt for curling. After the curling is completed, the cup receiving mechanism sends the processed plastic cup to the cup collecting mechanism, thereby realizing an automatic management mode and greatly saving labor costs. The heat insulation sleeve is sleeved on the surface of the curling rod near the end, thereby effectively preventing deformation caused by continuous heating of the edge. The cup holder is provided with a groove in the middle of the top, which is matched with the size of the bottom of the plastic cup. The surface of the groove is paved with a rubber layer, which effectively supports the bottom of the curled plastic cup, thereby effectively reducing the deformation of the plastic cup during curling.
[0004] However, the shape of the curling structure is only suitable for curling processing of circular blister boxes and is not suitable for square blister boxes, and cannot complete the edge curling forming of square blister boxes.
[0005] Therefore, the present application provides a square blister box edge curling process automatic forming device. SUMMARY
[0006] In order to make up for the shortcomings of the prior art and solve at least one technical problem proposed in the background art.
[0007] The application provides a square blister box crimping process automatic forming device, which comprises a fixing seat, a supporting frame is arranged on the top of the fixing seat, a lifting driving mechanism is arranged on the bottom of the supporting frame, a movable mold fixing mechanism is arranged in the moving end of the lifting driving mechanism, a fixed mold fixing mechanism is arranged in the fixing seat, a forming mold mechanism is arranged on the top of the fixed mold fixing mechanism and the bottom of the movable mold fixing mechanism, the lifting driving mechanism is used for driving part of the mold in the forming mold mechanism to move, the fixed mold fixing mechanism and the movable mold fixing mechanism are used for fixing the forming mold mechanism, the forming mold mechanism is used for crimping processing of the square blister box, a mold feeding frame is arranged on the side of the fixing seat, the mold feeding frame is used for feeding the forming mold mechanism, a pretreatment mechanism is arranged on the side of the fixing seat, and the pretreatment mechanism is used for preheating treatment before crimping and cooling treatment after processing of the square blister box.
[0008] The forming mold mechanism comprises a fixed mold, a movable mold, a crimping groove and a pressing head, the fixed mold is arranged on the top end of the fixed mold fixing mechanism, the crimping groove is arranged in the fixed mold, the movable mold is arranged on the bottom end of the movable mold fixing mechanism, and the pressing head is arranged on the bottom of the movable mold close to the crimping groove.
[0009] Preferably, in order to realize the conveying of the forming mold mechanism, a plurality of rollers are arranged on the mold feeding frame, and the plurality of rollers are distributed at equal distances.
[0010] Preferably, the supporting frame comprises supporting columns and a top plate, the supporting columns are arranged at the positions of the four corners of the top of the fixing seat, and the top plate is arranged on the top end of the supporting columns.
[0011] Preferably, in order to realize the forming processing of the square blister box, the lifting driving mechanism comprises a first air cylinder and a lifting seat, the first air cylinder is arranged on the bottom of the top plate, the lifting seat is arranged on the moving end of the first air cylinder, and the lifting seat moves to the outside of the supporting columns.
[0012] Preferably, the movable mold fixing mechanism comprises a driving assembly, a bevel gear assembly, a screw assembly and a T-shaped fixing column two, the driving assembly is arranged on the side of the lifting seat, the bevel gear assembly is arranged in the lifting seat, the screw assembly is arranged in transmission on the side of the lifting seat close to the bevel gear assembly, and the T-shaped fixing column two is arranged on the bottom of the screw assembly.
[0013] Preferably, the fixed mold fixing mechanism comprises a second air cylinder and a T-shaped fixing column one, a plurality of groups of the second air cylinders are arranged in the fixing seat, and the T-shaped fixing column one is arranged on the moving end of the second air cylinder.
[0014] Preferably, in order to realize the limiting of the fixed mold and the movable mold during installation, a guide groove is arranged in the inside of the side of the fixed mold and the movable mold close to the T-shaped fixing column one and the T-shaped fixing column two, and the guide groove is located on the outside of the T-shaped fixing column one and the T-shaped fixing column two.
[0015] Preferably, in order to realize the processing of the square blister box before and after the edge rolling forming processing, the pre-processing mechanism comprises an eddy tube, a heat treatment plate, a cold treatment plate and exhaust holes, the side of the fixing seat is provided with the eddy tube, one end of the eddy tube is provided with the heat treatment plate, the end of the eddy tube away from the heat treatment plate is provided with the cold treatment plate, and a plurality of groups of exhaust holes are equidistantly arranged in the heat treatment plate and the cold treatment plate.
[0016] Preferably, in order to realize the real-time monitoring of the temperature inside the heat treatment plate and the cold treatment plate, and facilitate the monitoring of the staff, a temperature rod is arranged to rotate in the heat treatment plate and the cold treatment plate, and the outer surface of the temperature rod is made of a heat-sensitive material.
[0017] Preferably, in order to realize the shielding of the exhaust holes, avoid the blockage of the exhaust holes when not in use, and affect the air flow in the later period, an elastic ring is arranged in the exhaust hole, and the elastic ring is made of high-temperature-resistant rubber material.
[0018] The square blister box edge rolling process automatic forming device has the advantages that: the mold feeding frame and the forming mold mechanism are used in cooperation, the forming mold mechanism is fed by the mold feeding frame, and the square blister box is rolled by the forming mold mechanism, the device realizes the full automation from the mold feeding to the product forming and rolling, greatly improves the production efficiency, reduces the labor cost, effectively solves the problems of low automation degree and low efficiency of the square blister box winding forming in the prior art, and the device is reasonable in design and easy to operate, can reduce human intervention, and improves the product quality and production safety.
[0019] The square blister box edge rolling process automatic forming device is used in cooperation with the eddy tube, the heat treatment plate, the cold treatment plate and the exhaust holes, the compressed gas is expanded in the nozzle by the work of the eddy tube, cold air is generated at one end, hot air is generated at the other end, the hot air generated by the eddy tube is delivered to the heat treatment plate, when the hot air blows to the surface of a stack of square blister boxes on the automatic feeding equipment through the exhaust holes in the heat treatment plate, the square blister boxes can be preheated, when the square blister boxes rolled and formed are taken out from the inside of the forming mold mechanism by the unloading suction cup, the cold air generated in the eddy tube is delivered to the cold treatment plate, when the cold air blows out from the exhaust holes in the cold treatment plate, the square blister boxes rolled and formed on the unloading suction cup can be cooled, so that the forming rate is accelerated, in this way, the square blister boxes can be preheated, the square blister boxes rolled and formed can be cooled, and the energy saving effect can be achieved.
[0020] The square blister box edge rolling process automatic forming device provided by the application is characterized in that the temperature rod and the slow flow plate are used in cooperation, when the internal temperature of the heat treatment plate and the cold treatment plate changes, the color of the temperature rod changes accordingly, so that the staff can be provided with intuitive temperature indication, and the staff can observe and know the working state of the vortex tube and the state of the wind transmission in the heat treatment plate and the cold treatment plate.
[0021] The square blister box edge rolling process automatic forming device provided by the application is characterized in that the temperature rod and the slow flow plate are used in cooperation, when the internal temperature of the heat treatment plate and the cold treatment plate changes, the color of the temperature rod changes accordingly, so that the staff can be provided with intuitive temperature indication, and the staff can observe and know the working state of the vortex tube and the state of the wind transmission in the heat treatment plate and the cold treatment plate. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the side view of the embodiment of the application.
[0023] Figure 2 It is the perspective view of the fixed seat of the application.
[0024] Figure 3 It is the perspective view of the embodiment of the application without installing the forming die mechanism.
[0025] Figure 4 It is the structure schematic view of the forming die mechanism in the application.
[0026] Figure 5 It is the partial internal structure schematic view of the forming die mechanism in the application.
[0027] Figure 6 It is the structure schematic view of the fixed die fixing mechanism in the application.
[0028] Figure 7 It is the structure schematic view of the movable die fixing mechanism in the application.
[0029] Figure 8 It is the partial internal structure schematic view of the heat treatment plate in the application.
[0030] BRIEF DESCRIPTION OF DRAWINGS
[0031] 1, fixed seat; 101, support frame; 1011, support column; 1012, top plate; 2, mold loading frame; 201, roller; 3, lifting drive mechanism; 301, cylinder one; 302, lifting seat; 4, forming die mechanism; 401, fixed die; 402, movable die; 403, flanging groove; 404, pressing head; 5, fixed die fixing mechanism; 501, cylinder two; 502, T-shaped fixed column one; 6, movable die fixing mechanism; 601, drive assembly; 602, bevel gear assembly; 603, screw assembly; 604, T-shaped fixed column two; 7, pretreatment mechanism; 701, vortex tube; 702, heat treatment plate; 7021, temperature stick; 703, cold treatment plate; 704, exhaust hole; 7041, elastic ring; 8, guide groove. DETAILED DESCRIPTION
[0032] The subject matter described herein will now be discussed with reference to example implementations. It should be appreciated that these implementations are discussed only to better illustrate the subject matter described herein and to enable one of ordinary skill in the art to better understand the subject matter described herein. Changes to the function and arrangement of the elements discussed can be made without departing from the scope of the subject matter described in the present specification. Various examples can omit, substitute, or add various procedures or components as appropriate. Also, features described with respect to some examples can be combined in other examples. EMBODIMENTS
[0033] The technical solutions of the present application will be further described in detail below in conjunction with the drawings and specific examples. Please refer to Figures 1 to 8 , the present application provides a square blister box flanging process automatic forming device, please pay attention to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , including a fixed seat 1; the top of the fixed seat 1 is provided with a support frame 101, the bottom of the support frame 101 is provided with a lifting drive mechanism 3, the inside of the moving end of the lifting drive mechanism 3 is provided with a movable die fixing mechanism 6, the inside of the fixed seat 1 is provided with a fixed die fixing mechanism 5, the top of the fixed die fixing mechanism 5 and the bottom of the movable die fixing mechanism 6 are provided with a forming die mechanism 4, the lifting drive mechanism 3 is used for driving part of the forming die mechanism 4 to move, the fixed die fixing mechanism 5 and the movable die fixing mechanism 6 are used for fixing the forming die mechanism 4, the forming die mechanism 4 is used for flanging processing of the square blister box, the side of the fixed seat 1 is provided with a mold loading frame 2, the mold loading frame 2 is used for feeding the forming die mechanism 4, the side of the fixed seat 1 is provided with a pretreatment mechanism 7, the pretreatment mechanism 7 is used for preheating treatment before flanging and cooling treatment after processing of the square blister box;
[0034] The forming die mechanism 4 comprises a fixed die 401, a movable die 402, a curling groove 403 and a pressing head 404, the top end of the fixed die fixing mechanism 5 is provided with the fixed die 401, the inside of the fixed die 401 is provided with the curling groove 403, the bottom end of the movable die fixing mechanism 6 is provided with the movable die 402, and the movable die 402 is provided with the pressing head 404 close to the bottom of the curling groove 403.
[0035] Specifically, the fixed die fixing mechanism 5 is used for fixing the fixed die 401 in the forming die mechanism 4, the movable die fixing mechanism 6 is used for fixing the movable die 402 in the forming die mechanism 4, the lifting driving mechanism 3 is used for driving the movable die 402 in the forming die mechanism 4 to lift, and the mold feeding rack 2 is used for feeding and installing the forming die mechanism 4. By placing the square suction box in the inside of the fixed die 401, driving the movable die 402 to lift through the work of the lifting driving mechanism 3, and pressing the square suction box in the inside of the fixed die 401 through the pressing head 404 at the bottom of the movable die 402, the edge position of the square suction box can be pressed and curled along the shape in the inside of the curling groove 403 to be formed, so that the square suction box can be curled and formed. By introducing the mold feeding rack 2 to feed and install the forming die mechanism 4 and curling the square suction box through the forming die mechanism 4, the device realizes the whole process automation from mold feeding to product forming and curling, greatly improves the production efficiency and reduces the labor cost.
[0036] Please refer to Figure 2 The mold feeding rack 2 is provided with a plurality of rollers 201, and the plurality of rollers 201 are distributed at equal distances.
[0037] Specifically, in order to realize the conveying of the forming die mechanism 4 and facilitate the installation of the forming die mechanism 4 by personnel later, the mold feeding rack 2 is provided with a plurality of rollers 201 for conveying the mold. The mold can be conveyed through the rollers 201, which can increase the convenience of manual installation and disassembly of the mold by the workers. After the mold is installed on the production line by the mold feeding rack 2, the mold feeding rack 2 is removed, and the automatic feeding equipment is placed at the position of the mold feeding rack 2, so that the automatic feeding function can be realized for the square suction box.
[0038] Please refer to Figure 1 The support frame 101 comprises support columns 1011 and a top plate 1012, the support columns 1011 are installed at the four corner positions of the top of the fixed seat 1, the top end of the support column 1011 is provided with the top plate 1012, and the support column 1011 can support the top plate 1012 at the top.
[0039] Please refer to Figure 1, the lifting driving mechanism 3 includes a cylinder one 301 and a lifting seat 302, the bottom of the top plate 1012 is provided with the cylinder one 301, the moving end of the cylinder one 301 is provided with the lifting seat 302, the lifting seat 302 moves outside the support column 1011, and the support column 1011 can vertically move the lifting seat 302 and plays a guiding role.
[0040] Please refer to Figure 1 and Figure 7 , the movable mold fixing mechanism 6 includes a driving assembly 601, a bevel gear assembly 602, a screw assembly 603 and a T-shaped fixing column two 604, the side of the lifting seat 302 is provided with the driving assembly 601, the inside of the lifting seat 302 is provided with the bevel gear assembly 602, the side close to the bevel gear assembly 602 of the lifting seat 302 is drivingly provided with the screw assembly 603, and the bottom of the screw assembly 603 is provided with the T-shaped fixing column two 604; on the threaded part of the screw assembly 603, the nut is the most common connecting component; when the screw rotates, the nut moves along the threaded part, so as to drive the connected component, i.e., the T-shaped fixing column two 604, to lift; the lifting seat 302 supports the screw assembly 603 inside, the screw assembly 603 is rotationally arranged in the inside of the lifting seat 302, the screw assembly 603 is in threaded transmission connection with the T-shaped fixing column two 604, the driving assembly 601 is used for simultaneously driving a plurality of bevel gear assemblies 602 to operate, the bevel gear assembly 602 drives a plurality of screw assemblies 603 to rotate, and simultaneously drives a plurality of T-shaped fixing columns two 604 to lift.
[0041] Specifically, in order to realize the forming processing of the square blister box, the cylinder two 501 works, the moving end of the cylinder two 501 drives the lifting seat 302 to lift, the driving assembly 601 drives a plurality of bevel gear assemblies 602 to rotate, the bevel gear assembly 602 drives the screw assembly 603 to rotate, the screw assembly 603 drives the threaded transmission end to drive the T-shaped fixing column two 604 to lift, then the T-shaped fixing column one 502 and the T-shaped fixing column two 604 lift to fix the fixed mold 401 and the movable mold 402, at this time, the square blister box is placed in the inside of the fixed mold 401, then the cylinder one 301 works, the moving end of the cylinder one 301 drives the lifting seat 302 to move, the lifting seat 302 drives the movable mold 402 to move to the surface of the fixed mold 401, so that the fixed mold 401 and the movable mold 402 are combined, and the square blister box in the inside is formed by edge curling and pressing.
[0042] Please refer to Figure 4 , Figure 6 and Figure 7 , the inside of the side close to the T-shaped fixing column one 502 and the T-shaped fixing column two 604 of the fixed mold 401 and the movable mold 402 is provided with a guide groove 8, and the guide groove 8 is located outside the T-shaped fixing column one 502 and the T-shaped fixing column two 604.
[0043] Specific, in order to realize the limit installation of fixed mold 401 and moving die 402, workers through the sliding fixed mold 401 and moving die 402, so that the guide slot 8 inside the fixed mold 401 along the outside of T-shaped fixed column one 502 moves, the guide slot 8 inside the moving die 402 along the outside of T-shaped fixed column two 604 moves, through the guide slot 8 along the outside of T-shaped fixed column one 502 and T-shaped fixed column two 604 moves, can limit the installation of fixed mold 401 and moving die 402.
[0044] Please refer to Figure 1 and Figure 8 , the pretreatment mechanism 7 includes vortex tube 701, heat treatment plate 702, cold treatment plate 703 and exhaust hole 704, the side of the fixed seat 1 is installed with vortex tube 701, one end of vortex tube 701 is installed with heat treatment plate 702, the end of vortex tube 701 away from heat treatment plate 702 is installed with cold treatment plate 703, the inside of heat treatment plate 702 and cold treatment plate 703 is equidistantly provided with multiple groups of exhaust holes 704.
[0045] Specific, in order to realize the processing of the square suction box before and after the edge forming, through the work of vortex tube 701 will make the compressed gas expand in the nozzle, and then enter the inside of vortex tube 701 along the tangent direction at a very high speed, when the airflow rotates at high speed in the vortex tube 701, it is separated into two parts of airflow with different total temperatures after vortex transformation, one end produces cold air, and the other end produces hot air, the hot air produced by vortex tube 701 will be delivered to heat treatment plate 702, when the hot air blows to the surface of a stack of square suction boxes on the automatic feeding equipment through the exhaust hole 704 inside the heat treatment plate 702, it can be preheated to the square suction box, at the same time, when the edge formed square suction box is taken out from the inside of the forming mold mechanism 4 by the unloading suction cup, the cold air generated in the inside of vortex tube 701 will be delivered to cold treatment plate 703, when the cold air blows out from the exhaust hole 704 inside the cold treatment plate 703, it can cool the edge formed square suction box on the unloading suction cup and speed up its forming rate.
[0046] Please refer to Figure 3 and Figure 8 , the inside of heat treatment plate 702 and cold treatment plate 703 is rotatably provided with temperature rod 7021, the outer surface of temperature rod 7021 is a heat sensitive material, and the heat sensitive paint is a material that can change color according to temperature change.
[0047] Specifically, in order to realize real-time monitoring of the temperature inside the heat treatment plate 702 and the cold treatment plate 703, and facilitate monitoring of the staff, at low temperature, the molecular structure or chemical properties of the heat-sensitive color-changing material make it mainly absorb light except blue light, reflect blue light, and thus present blue color. When the temperature rises, the molecular structure or chemical properties of the material change, causing it to start absorbing light except red or yellow light, and reflecting red or yellow light. When the temperature changes, the color of the temperature stick 7021 will change accordingly, thereby providing intuitive temperature indication, facilitating observation by the staff, and knowing the working state of the vortex tube 701 and the state of air transmission inside the heat treatment plate 702 and the cold treatment plate 703.
[0048] Please refer to Figure 8 The inside of the air outlet hole 704 is provided with an elastic ring 7041 made of high-temperature-resistant rubber material, specifically fluorine rubber.
[0049] Specifically, in order to realize shielding of the air outlet hole 704, avoid blockage of the air outlet hole 704 when not in use, and affect the air flow in the later stage, the elastic ring 7041 will be blown up to expose the internal through hole when the wind blown by the vortex tube 701 is large. At this time, the larger the wind, the larger the through hole, and the larger the flowable ventilation volume. Conversely, the flowable ventilation volume becomes smaller. When the wind stops, the elastic ring 7041 will return to its original state to shield the air outlet hole 704, thereby avoiding blockage of the air outlet hole 704 by external objects when not in use.
[0050] Working principle: The mold feeding rack 2 is provided with a plurality of rollers 201 for the molding mold mechanism 4. The rollers 201 can convey the molding mold mechanism 4, which can increase the convenience of manual installation and disassembly of the mold by the workers. The molding mold mechanism 4 is installed on the production line by the mold feeding rack 2, and works through the cylinder two 501. The moving end drives the T-shaped fixed column one 502 to lift, and the driving assembly 601 drives a plurality of bevel gear assemblies 602 to rotate. The bevel gear assemblies 602 drive a plurality of screw assemblies 603 to rotate, and drive a plurality of T-shaped fixed column two 604 to lift. Then the workers slide the fixed mold 401 and the movable mold 402, so that the guide groove 8 in the fixed mold 401 moves along the outside of the T-shaped fixed column one 502, and the guide groove 8 in the movable mold 402 moves along the outside of the T-shaped fixed column two 604. Then the T-shaped fixed column one 502 and the T-shaped fixed column two 604 can be lifted to fix the fixed mold 401 and the movable mold 402. After the molding mold mechanism 4 is installed, the mold feeding rack 2 is removed, and the automatic feeding equipment is placed at the position of the mold feeding rack 2. The automatic feeding function can be realized for the square suction plastic box. Then the square suction plastic box is conveyed and placed in the fixed mold 401. Then the cylinder one 301 works, and the moving end drives the lifting seat 302 to move. The lifting seat 302 drives the movable mold 402 to move towards the surface of the fixed mold 401, so that the fixed mold 401 and the movable mold 402 are combined. The pressing head 404 at the bottom of the movable mold 402 presses the square suction plastic box in the fixed mold 401. At this time, the edge position of the square suction plastic box is pressed and edge-rolled according to the shape in the edge-rolling groove 403.
[0051] The above describes the embodiments of the present embodiment, but the present embodiment is not limited to the above-described specific embodiment. The above-described specific embodiment is only illustrative, not limiting. Those skilled in the art can make many forms under the inspiration of the present embodiment, which are all within the protection scope of the present embodiment.
Claims
1. An automated forming device for the edge-rolling process of a square blister box, comprising a fixed base (1); characterized in that, A support frame (101) is installed on the top of the fixed base (1), and a lifting drive mechanism (3) is installed on the bottom of the support frame (101). A moving mold fixing mechanism (6) is installed inside the moving end of the lifting drive mechanism (3). A fixed mold fixing mechanism (5) is installed inside the fixed base (1). A forming mold mechanism (4) is installed on the top of the fixed mold fixing mechanism (5) and the bottom of the moving mold fixing mechanism (6). The lifting drive mechanism (3) is used to drive part of the mold in the forming mold mechanism (4) to move. The fixed mold fixing mechanism (5) and the moving mold fixing mechanism (6) are used to fix the forming mold mechanism (4). The forming mold mechanism (4) is used to perform edge rolling processing on the square blister box. A mold feeding rack (2) is installed on the side of the fixed base (1). The mold feeding rack (2) is used to feed the forming mold mechanism (4). A pre-treatment mechanism (7) is installed on the side of the fixed base (1). The pre-treatment mechanism (7) is used to perform preheating treatment before edge rolling and cooling treatment after processing on the square blister box. The forming mold mechanism (4) includes a fixed mold (401), a moving mold (402), a curling groove (403), and a pressing head (404). The fixed mold fixing mechanism (5) has a fixed mold (401) installed at its top end. The fixed mold (401) has a curling groove (403) inside. The moving mold fixing mechanism (6) has a moving mold (402) installed at its bottom end. The moving mold (402) has a pressing head (404) near the bottom of the curling groove (403). The support frame (101) includes a support column (1011) and a top plate (1012). The support column (1011) is installed at the four corners of the top of the fixed seat (1), and the top plate (1012) is installed at the top of the support column (1011). The lifting drive mechanism (3) includes a cylinder (301) and a lifting seat (302). The cylinder (301) is installed at the bottom of the top plate (1012), and the lifting seat (302) is installed at the moving end of the cylinder (301). The lifting seat (302) is movably arranged on the outside of the support column (1011). The moving mold fixing mechanism (6) includes a drive assembly (601), a bevel gear assembly (602), a screw assembly (603), and a second T-shaped fixing column (604). The drive assembly (601) is installed on the side of the lifting seat (302), the bevel gear assembly (602) is installed inside the lifting seat (302), the screw assembly (603) is installed on the side of the lifting seat (302) near the bevel gear assembly (602), and the second T-shaped fixing column (604) is installed at the bottom of the screw assembly (603).
2. The automated forming device for the edge-rolling process of a square blister box according to claim 1, characterized in that: The mold loading rack (2) is equipped with multiple rollers (201), which are distributed at equal intervals.
3. The automated forming device for the edge-rolling process of a square blister box according to claim 1, characterized in that: The fixed mold fixing mechanism (5) includes cylinder two (501) and T-shaped fixing column one (502). Multiple sets of cylinder two (501) are installed inside the fixed seat (1), and T-shaped fixing column one (502) is installed on the moving end of cylinder two (501).
4. The automated forming device for the edge-rolling process of a square blister box according to claim 3, characterized in that: The fixed mold (401) and the moving mold (402) are both provided with guide grooves (8) on the side of the T-shaped fixed post one (502) and the T-shaped fixed post two (604). The guide grooves (8) are located on the outside of the T-shaped fixed post one (502) and the T-shaped fixed post two (604).
5. The automated forming device for the edge-rolling process of a square blister box according to claim 1, characterized in that: The pretreatment mechanism (7) includes a vortex tube (701), a heat treatment plate (702), a cold treatment plate (703), and an exhaust hole (704). The vortex tube (701) is installed on the side of the fixed base (1). The heat treatment plate (702) is installed at one end of the vortex tube (701), and the cold treatment plate (703) is installed at the end of the vortex tube (701) away from the heat treatment plate (702). Multiple sets of exhaust holes (704) are provided at equal intervals inside the heat treatment plate (702) and the cold treatment plate (703).
6. The automated forming device for the edge-rolling process of a square blister box according to claim 5, characterized in that: The heat treatment plate (702) and the cold treatment plate (703) are equipped with a temperature rod (7021) rotating inside, and the outer surface of the temperature rod (7021) is made of a heat-sensitive material.
7. The automated forming device for the edge-rolling process of a square blister box according to claim 6, characterized in that, An elastic ring (7041) is installed inside the exhaust hole (704), and the elastic ring (7041) is made of high temperature resistant rubber.
Citation Information
Patent Citations
Automatic plastic cup rim curling machine
CN112092341A
Automatic production line for crimping process of square blister box
CN119610623A