A linkage packaging device for a wood-based panel edge band conveyor
Through the linked packaging equipment of arc-shaped guide frame and electric heating plastic seal frame, the problems of large size and complex structure of edge sealing strip packaging equipment are solved, the packaging efficiency and scope of application are improved, and the operation process is simplified.
Patent Information
- Application Number
- CN202310264599.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-01
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2043-03-01
AI Technical Summary
The existing edge sealing strip packaging equipment is huge in size and complex in structure, and the plastic sealing structure is fixed, so it cannot be disassembled and adjusted quickly, resulting in limited scope of application and low packaging efficiency.
The linked packaging equipment consisting of arc-shaped guide frames, adjustment motors, first and second electrically heated plastic sealing frames and side guide cylinders is adopted to wrap the PVC packaging film by adjusting the motor control translation extrusion frames, and the edge sealing strips are packaged in combination with the limit brackets and oblique guide limit blocks, supporting the installation of electrically heated plastic sealing frames of different sizes.
It has achieved simple equipment structure, improved packaging efficiency, enhanced linkage of inlet and discharge, expanded scope of application, easy operation, and excellent packaging effect.
Smart Images

Figure CN116443353B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of packaging and cutting equipment for edge band processing and production, and in particular to a linkage packaging equipment for a conveyor of edge bands for wood-based panels. Background Art
[0002] An edge band is composed of two parts, a base material and an adhesive, and makes the surface of the board more beautiful and durable through bonding. A layer of adhesive is coated on its surface.
[0003] Traditional edge bands are re-wound from a large roll through a rewinder into a small roll, and the rewound small roll can be further cut by a slitter into the width required for the edge bands used in daily use; then the edge bands after slitting are packaged. The current packaging equipment mainly wraps a PVC protective film on the outside of the edge band. The whole equipment is bulky and has a complex structure. Moreover, due to the fixed plastic sealing structure, it cannot be quickly disassembled and adjusted, resulting in a limited scope of application and low packaging efficiency. Summary of the Invention
[0004] The technical problem to be solved by the present invention is: to solve the problems existing in the above background art, and provide an improved linkage packaging equipment for an edge band conveyor, which solves the problems that the current packaging equipment applied to edge bands is bulky and has a complex structure, and due to the fixed plastic sealing structure, it cannot be quickly disassembled and adjusted, resulting in a limited scope of application and low packaging efficiency.
[0005] The technical solution adopted by the present invention to solve its technical problems is: a linkage packaging equipment for a conveyor of edge bands for wood-based panels, including an arc-shaped material guiding frame for conveying edge bands, an adjusting motor, a first electric heating plastic sealing frame and a second electric heating plastic sealing frame. The lower end of the arc-shaped material guiding frame is fixedly connected with a horizontally arranged adjusting cylinder of an integral structure. Both sides of the horizontally arranged adjusting cylinder are fixedly connected with side-mounted guiding cylinders through side-mounted mounting frames. A PVC packaging film is longitudinally arranged between the horizontally arranged adjusting cylinder, the side-mounted mounting frames and the side-mounted guiding cylinders. A left translation extrusion frame and a right translation extrusion frame are slidably assembled inside the side-mounted guiding cylinders. A side-mounted mounting seat for installing the adjusting motor is bolted to the outer side surface of the side-mounted mounting frame. Horizontally arranged adjusting screw rods are coaxially fixed on the rotating shafts on both sides of the adjusting motor. A right control groove for installing the first electric heating plastic sealing frame is opened on the right side of the left translation extrusion frame, and a left control groove for installing the second electric heating plastic sealing frame is opened on the left side of the right translation extrusion frame.
[0006] At the middle position of the lower surface of the horizontally arranged adjusting cylinder, a bottom discharge port is provided. At the center position of the upper surface of the horizontally arranged adjusting cylinder, a top feed port is provided. On both inner walls of the bottom discharge port and the top feed port, lateral assembly adjusting grooves are symmetrically provided. Inside the lateral assembly adjusting groove of the bottom discharge port, a bottom limiting bracket is movably assembled. Inside the lateral assembly adjusting groove of the top feed port, a top limiting bracket is movably assembled.
[0007] On the outer surface of the side-mounted guiding cylinder, strip-shaped lateral adjusting ports are provided on both sides of the lateral mounting seat. On the outer surfaces of the left-side translating extrusion frame and the right-side translating extrusion frame, integral structure internal thread adjusting brackets that cooperate with the horizontally arranged adjusting screw rod are provided.
[0008] At the edge positions of the right side surface of the left-side translating extrusion frame and the left side surface of the right-side translating extrusion frame, three obliquely arranged guiding and limiting blocks arranged in an annular array are provided. The obliquely arranged guiding and limiting blocks on the right side of the left-side translating extrusion frame and the obliquely arranged guiding and limiting blocks on the left side of the right-side translating extrusion frame are arranged in a staggered manner. At the edge positions of the right side surface of the left-side translating extrusion frame and the left side surface of the right-side translating extrusion frame, lateral slots that cooperate with the obliquely arranged guiding and limiting blocks are provided.
[0009] Inside the left-side translating extrusion frame and the right-side translating extrusion frame, three strip-shaped internal adjusting ports arranged in an annular array are provided. Inside the strip-shaped internal adjusting ports, internal adjusting brackets for installing the first electric heating plastic sealing frame and the second electric heating plastic sealing frame are movably assembled. On the left side of the left-side translating extrusion frame and the right side of the right-side translating extrusion frame, corresponding to the outside of the strip-shaped internal adjusting ports, lateral adjusting screw rods for controlling the internal adjusting brackets are movably assembled. On the left side of the left-side translating extrusion frame and the right side of the right-side translating extrusion frame, lateral adjusting seats are fixedly connected on both sides of the lateral adjusting screw rods.
[0010] On the outer surface of the lateral adjusting seat, lateral adjusting blind holes with built-in lateral adjusting rods are provided. The inner end of the lateral adjusting rod is meshed and driven with the top end of the lateral adjusting screw rod. On the outer top end of the lateral adjusting rod, a strip-shaped control slot is provided.
[0011] On the outer surface of the side-mounted guiding cylinder, at the outside of the strip-shaped lateral adjusting port, a top mounting seat for enhancing the rotational stability of the horizontally arranged adjusting screw rod is fixedly connected.
[0012] On the inner surface of the horizontally arranged adjusting cylinder, on both sides of the bottom discharge port and the top feed port, inner guiding and limiting sliding grooves connected to the inside of the lateral assembly adjusting groove are provided. On the inner surface of the side-mounted guiding cylinder, outer guiding and limiting sliding grooves that cooperate with the inner guiding and limiting sliding grooves are provided.
[0013] The beneficial effects of the present invention are:
[0014] (1) The present invention relates to a linkage packaging device for a conveyor of edge banding strips of wooden boards. The lower end of the arc-shaped guide frame on which the edge banding strips are placed is fixedly connected to a horizontal adjustment cylinder with an integrated structure. Side guide cylinders with built-in translational extrusion frames are fixed to the outer sides of the PVC packaging films arranged longitudinally on both sides of the horizontal adjustment cylinder. The PVC packaging film is squeezed into the interior of the horizontal adjustment cylinder by adjusting the translational extrusion frame to control the motor to adjust the PVC packaging film. The structure is simple and the packaging efficiency is greatly improved.
[0015] (2) The bottom limit bracket is movably assembled inside the bottom discharge port, and the top limit bracket is movably assembled inside the top feed port. The bottom limit bracket and the top limit bracket are adjusted respectively by translating the extrusion frame, which greatly enhances the linkage between feeding and discharging, and is very convenient to control;
[0016] (3) The left translation extrusion frame and the right translation extrusion frame are movably equipped with internal adjustment brackets for installing the first electric heating plastic sealing frame and the second electric heating plastic sealing frame. Electric heating plastic sealing frames of different sizes can be installed as needed, which greatly improves its application range. The lateral adjustment rod on the lateral adjustment seat is directly controlled by a screwdriver, which is very simple to operate;
[0017] (4) By installing oblique guide limit blocks on the left translation extrusion frame and the right translation extrusion frame, the edge banding can be extruded and lifted using the oblique guide limit blocks to ensure the packaging effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described below with reference to the accompanying drawings and examples.
[0019] Figure 1 It is a structural schematic diagram of the present invention.
[0020] Figure 2 It is an internal cross-sectional view of the present invention.
[0021] Figure 3 It is a cross-sectional view of the interior of the horizontally placed regulating cylinder in the present invention.
[0022] Figure 4 It is a sectional view of the side guide cylinder in the present invention. DETAILED DESCRIPTION
[0023] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.
[0024] Figure 1 、 Figure 2 and Figure 3A linkage packaging device for a wood-based panel edge band conveyor, comprising an arc-shaped material guiding frame 1 for conveying edge bands, an adjusting motor 2, a first electric heating plastic sealing frame 3 and a second electric heating plastic sealing frame 4. The lower end of the arc-shaped material guiding frame 1 is fixedly connected with a horizontally arranged adjusting cylinder 5 of an integral structure. Both sides of the horizontally arranged adjusting cylinder 5 are fixedly connected with side-mounted guiding cylinders 7 through side-mounted mounting frames 6. A PVC packaging film 8 is longitudinally arranged between the horizontally arranged adjusting cylinder 5, the side-mounted mounting frame 6 and the side-mounted guiding cylinder 7. A left translation extrusion frame 9 and a right translation extrusion frame 10 are slidably assembled inside the side-mounted guiding cylinder 7. A side-mounted mounting seat 11 for installing the adjusting motor 2 is bolted to the outer side surface of the side-mounted mounting frame 6. Horizontally arranged adjusting screw rods 12 are coaxially fixed on the rotating shafts on both sides of the adjusting motor 2. A right control groove for installing the first electric heating plastic sealing frame 3 is provided on the right side of the left translation extrusion frame 9, and a left control groove for installing the second electric heating plastic sealing frame 4 is provided on the left side of the right translation extrusion frame 10.
[0025] Furthermore, in order to cooperate with the limitation of the inlet and outlet materials, a bottom discharge port 15 is provided at the middle position of the lower surface of the horizontally arranged adjusting cylinder 5, and a top feed port 16 is provided at the central position of the upper surface of the horizontally arranged adjusting cylinder 5. Side-mounted assembly adjusting grooves 17 are symmetrically provided on the inner walls on both sides of the bottom discharge port 15 and the top feed port 16. A bottom limiting bracket 18 is movably assembled inside the side-mounted assembly adjusting groove 17 of the bottom discharge port 15, and a top limiting bracket 19 is movably assembled inside the side-mounted assembly adjusting groove 17 of the top feed port 16.
[0026] The bottom limiting bracket 18 is used to limit the edge band discharged from the lower end, and the top limiting bracket 19 is used to limit the edge band fed from the upper end.
[0027] Furthermore, in order to facilitate the adjustment of extrusion, strip-shaped side adjustment openings 20 are provided on the outer side surface of the side-mounted guiding cylinder 7 on both sides of the side-mounted mounting seat 11. Integral structure internal thread adjustment brackets 21 that cooperate with the horizontally arranged adjusting screw rods 12 are provided on the outer side surfaces of the left translation extrusion frame 9 and the right translation extrusion frame 10.
[0028] The rotating shafts on both sides of the adjusting motor 2 are coaxially fixed with the horizontally arranged adjusting screw rods 12 through couplings. The thread angles of the horizontally arranged adjusting screw rods 12 on both sides of the adjusting motor 2 are opposite. The adjusting motor 2 drives the left internal thread adjustment bracket 21 and the reverse translation respectively through the horizontally arranged adjusting screw rods on both sides.
[0029] Further, in order to facilitate the extrusion and introduction of the edge sealing strip in the horizontally arranged adjusting cylinder 5 into the first electrically heated plastic sealing frame 3 and the second electrically heated plastic sealing frame 4, three obliquely arranged guiding and limiting blocks 22 arranged in an annular array are provided at the edge positions of the right side surface of the left horizontally arranged translation extrusion frame 9 and the left side surface edge position of the right horizontally arranged translation extrusion frame 10. The obliquely arranged guiding and limiting blocks on the right side of the left horizontally arranged translation extrusion frame 9 and the obliquely arranged guiding and limiting blocks on the left side of the right horizontally arranged translation extrusion frame 10 are arranged in a staggered manner. Lateral gaps 23 matching the obliquely arranged guiding and limiting blocks 22 are provided at the edge positions of the right side surface of the left horizontally arranged translation extrusion frame 9 and the left side surface edge position of the right horizontally arranged translation extrusion frame 10.
[0030] As Figure 4 shown, in order to improve the applicable range of the device, three strip-shaped internal adjusting ports 24 arranged in an annular array are provided inside the left horizontally arranged translation extrusion frame 9 and the right horizontally arranged translation extrusion frame 10. An internal adjusting bracket 25 for installing the first electrically heated plastic sealing frame 3 and the second electrically heated plastic sealing frame 4 is movably assembled inside the strip-shaped internal adjusting ports 24. Lateral adjusting screw rods 26 for controlling the internal adjusting bracket 25 are movably assembled corresponding to the outside of the strip-shaped internal adjusting ports 24 on the left side of the left horizontally arranged translation extrusion frame 9 and the right side of the right horizontally arranged translation extrusion frame 10. Lateral adjusting seats 27 are fixedly connected to both sides of the lateral adjusting screw rods 26 on the left side of the left horizontally arranged translation extrusion frame 9 and the right side of the right horizontally arranged translation extrusion frame 10.
[0031] Further, in order to cooperate with external adjustment, a lateral adjusting blind hole for accommodating the lateral adjusting rod 266 is provided on the outer side surface of the lateral adjusting seat 27. The inner end of the lateral adjusting rod 266 is in meshing transmission with the top end of the lateral adjusting screw rod 26. A strip-shaped control groove is provided at the outer top end of the lateral adjusting rod 266.
[0032] Insert a flat head screwdriver into the strip-shaped control groove, and then adjust the lateral adjusting rod 266. The lateral adjusting rod 266 is used to drive the lateral adjusting screw rod 26 to rotate, and control the internal adjusting bracket 25 to expand, contract and translate along the strip-shaped internal adjusting port 24, so that the first electrically heated plastic sealing frame 3 and the second electrically heated plastic sealing frame 4 with different sizes can be installed as required.
[0033] Lateral clamping grooves matching the internal adjusting bracket 25 are provided on the inner side surfaces of the first electrically heated plastic sealing frame 3 and the second electrically heated plastic sealing frame 4. When the internal adjusting bracket 25 is clamped into the lateral clamping grooves, the smoothness of the inner arc surfaces of the first electrically heated plastic sealing frame 3 and the second electrically heated plastic sealing frame 4 can be improved.
[0034] Further, in order to improve the stability of the outer end of the horizontally arranged adjusting screw rod 12, a top mounting seat 28 for improving the rotational stability of the horizontally arranged adjusting screw rod 12 is fixedly connected to the outer side surface of the side-mounted guiding cylinder 7 outside the strip-shaped lateral adjusting port 20.
[0035] Further, in order to cooperate with the internal sliding limit, inner side guiding and limiting sliding grooves 29 connected to the inside of the lateral assembly adjusting groove 17 are formed on both sides of the bottom discharge port 15 and the top feed port 16 on the inner side surface of the horizontally arranged adjusting cylinder 5, and outer side guiding and limiting sliding grooves 30 matched with the inner side guiding and limiting sliding grooves 29 are formed on the inner side surface of the side-mounted guiding cylinder 7.
[0036] Both connection ends of the bottom limiting bracket 18 and the top limiting bracket 19 have extrusion flipping blocks matched with the obliquely arranged guiding and limiting blocks 22. The obliquely arranged guiding and limiting blocks 22 are translated from the side-mounted guiding cylinder 7 into the horizontally arranged adjusting cylinder 5. The obliquely arranged guiding and limiting blocks 22 extrude the extrusion flipping blocks on the bottom limiting bracket 18, and the bottom limiting bracket 18 flips downward, and the bottom discharge port 15 is opened. The top limiting bracket 19 flips upward, and the top feed port 16 is closed. At this time, the edge sealing strip is inserted into the inside of the first electric heating plastic sealing frame 3 and the second electric heating plastic sealing frame 4 and separated from the inner wall of the horizontally arranged adjusting cylinder 5. Then, the adjusting motor 2 controls the left-side translation extrusion frame 9 and the right-side translation extrusion frame 10 to translate outward. The obliquely arranged guiding and limiting blocks 22 are translated from the horizontally arranged adjusting cylinder 5 into the side-mounted guiding cylinder 7. The bottom limiting bracket 18 and the top limiting bracket 19 are flipped and reset through the elastic torsion spring. The bottom discharge port 15 is closed, and the top feed port 16 is opened to complete the feeding.
[0037] The left-side translation extrusion frame 9 and the right-side translation extrusion frame 10 are respectively inserted into the outer side guiding and limiting sliding grooves 30 and the inner side guiding and limiting sliding grooves 29 through the obliquely arranged guiding and limiting blocks 22 to improve the translation stability. At the same time, the edge sealing strip can be lifted from the bottom surface, then squeezed into the inside of the right-side control groove 13 and the left-side control groove 14, and finally squeezed into the inside of the first electric heating plastic sealing frame 3 and the second electric heating plastic sealing frame 4 to wrap the PVC packaging film 8 on both sides around the edge sealing strip on both sides, and then perform heat sealing on the connection ends of the PVC packaging films on both sides.
[0038] The adjusting motor 2 rotates forward, driving the left-side translation extrusion frame 9 and the right-side translation extrusion frame 10 to translate from both sides to the middle, and translating from the side-mounted guiding cylinder 7 into the horizontally arranged adjusting cylinder 5, squeezing the PVC packaging films 8 on both sides of the horizontally arranged adjusting cylinder 5 into the inside of the horizontally arranged adjusting cylinder 5. Then, the edge sealing strip is wrapped through the left-side translation extrusion frame 9 and the right-side translation extrusion frame 10. Then, the outer arc surface connection ends of the edge sealing strip are heat-sealed through the first electric heating plastic sealing frame 3 and the second electric heating plastic sealing frame 4. Finally, the joint after heat sealing is cut.
[0039] A linkage packaging device for a wood-based panel edge band conveyor of the present invention is fixedly connected with a horizontally arranged adjusting cylinder 5 of an integral structure at the lower end of an arc-shaped material guiding frame 1 for arranging edge bands. On the outer sides of the longitudinally arranged PVC packaging films 8 on both sides of the horizontally arranged adjusting cylinder 5, side guiding cylinders 7 with an internally arranged translation extrusion frame are fixed. The translation extrusion frame is controlled by an adjusting motor 2 to control the PVC packaging film 8 to be squeezed into the interior of the horizontally arranged adjusting cylinder 5 for packaging the edge bands. The structure is simple and the packaging efficiency is greatly improved. A bottom limiting bracket 18 is movably assembled inside a bottom discharge port 15, and a top limiting bracket 19 is movably assembled inside a top feed port 16. The bottom limiting bracket 18 and the top limiting bracket 19 are adjusted respectively by the translation extrusion frame, and the linkage of feeding and discharging is greatly enhanced and the control is very convenient. An internal adjusting bracket 25 for installing a first electrically heated plastic sealing frame 3 and a second electrically heated plastic sealing frame 4 is movably assembled on a left translation extrusion frame 9 and a right translation extrusion frame 10. Electrically heated plastic sealing frames of different sizes can be installed according to needs, so that the applicable range is greatly improved. The lateral adjusting rod 266 on the lateral adjusting seat 27 is directly controlled by a screwdriver, and the operation is very simple. By installing inclined guiding and limiting blocks 22 on the left translation extrusion frame 9 and the right translation extrusion frame 10, the edge bands can be squeezed and lifted by using the inclined guiding and limiting blocks 22 to ensure the packaging effect.
[0040] Taking the above ideal embodiments of the present invention as an inspiration, through the above description, relevant staff can make various changes and modifications completely within the scope not deviating from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. A linked packaging device for a wood board edge banding conveyor, comprising an arc-shaped material guide frame (1) for conveying edge banding, an adjustment motor (2), a first electric heating plastic sealing frame (3) and a second electric heating plastic sealing frame (4), characterized in that: The lower end of the arc-shaped material guide frame (1) is fixedly connected to a one-piece horizontal adjustment cylinder (5), and the two sides of the horizontal adjustment cylinder (5) are fixedly connected to side guide cylinders (7) through side mounting frames (6). A PVC packaging film (8) is longitudinally arranged between the horizontal adjustment cylinder (5), the side mounting frame (6) and the side guide cylinder (7). The side guide cylinder (7) is internally slidably equipped with a left-mounted translation extrusion frame (9) and a right-mounted translation extrusion frame (10). A lateral mounting seat (11) for mounting an adjustment motor (2) is bolted to the outer surface of the side mounting frame (6). Horizontal adjustment screw rods (12) are coaxially fixed to the rotating shafts on both sides of the adjustment motor (2). A right-mounted control groove for mounting a first electric heating plastic sealing frame (3) is provided on the right side of the left-mounted translation extrusion frame (9), and a left-mounted control groove for mounting a second electric heating plastic sealing frame (4) is provided on the left side of the right-mounted translation extrusion frame (10). A bottom discharge port (15) is provided at the middle position of the lower surface of the horizontal adjustment cylinder (5), a top feed port (16) is provided at the center position of the upper surface of the horizontal adjustment cylinder (5), and lateral assembly adjustment grooves (17) are symmetrically provided on the inner walls on both sides of the bottom discharge port (15) and the top feed port (16), a bottom limiting bracket (18) is movably provided inside the lateral assembly adjustment groove (17) of the bottom discharge port (15), and a top limiting bracket (19) is movably provided inside the lateral assembly adjustment groove (17) of the top feed port (16); The outer side surface of the side guide cylinder (7) is provided with a strip-shaped lateral adjustment opening (20) on both sides of the lateral mounting seat (11), and the outer side surfaces of the left-positioned translation extrusion frame (9) and the right-positioned translation extrusion frame (10) are provided with an integral internal thread adjustment bracket (21) that cooperates with the horizontal adjustment screw rod (12); The right side edge of the left-positioned translation extrusion frame (9) and the left side edge of the right-positioned translation extrusion frame (10) are both provided with three oblique guide limit blocks (22) arranged in a circular array, the oblique guide limit blocks on the right side of the left-positioned translation extrusion frame (9) and the oblique guide limit blocks on the left side of the right-positioned translation extrusion frame (10) are staggered, and the right side edge of the left-positioned translation extrusion frame (9) and the left side edge of the right-positioned translation extrusion frame (10) are both provided with lateral notches (23) that cooperate with the oblique guide limit blocks (22); The connecting ends of the bottom limit bracket (18) and the top limit bracket (19) are both provided with an extrusion flip block that cooperates with the oblique guide limit block (22). The oblique guide limit block (22) moves horizontally from the side guide cylinder (7) into the horizontal adjustment cylinder (5). The oblique guide limit block (22) squeezes the extrusion flip block on the bottom limit bracket (18). The bottom limit bracket (18) flips downward, the bottom discharge port (15) opens, the top limit bracket (19) flips upward, and the top feed port (16) closes. At this time, the edge banding The first electric heating plastic sealing frame (3) and the second electric heating plastic sealing frame (4) are inserted into the inside and separated from the inner wall of the horizontal adjustment cylinder (5). Then, the adjustment motor (2) controls the left translation extrusion frame (9) and the right translation extrusion frame (10) to translate outwards. The oblique guide limit block (22) translates from the horizontal adjustment cylinder (5) into the side guide cylinder (7). The bottom limit bracket (18) and the top limit bracket (19) are flipped and reset by the elastic torsion spring. The bottom discharge port (15) is closed and the top feed port (16) is opened to complete the feeding.
2. The linked packaging equipment for a wood board edge banding conveyor according to claim 1, characterized in that: The left-positioned translational extrusion frame (9) and the right-positioned translational extrusion frame (10) are provided with three strip-shaped internal adjustment openings (24) arranged in a ring array. The strip-shaped internal adjustment openings (24) are movably equipped with internal adjustment brackets (25) for installing the first electric heating plastic sealing frame (3) and the second electric heating plastic sealing frame (4). The left side of the left-positioned translational extrusion frame (9) and the right side of the right-positioned translational extrusion frame (10) are movably equipped with lateral adjustment screws (26) for controlling the internal adjustment brackets (25) on the outside of the corresponding strip-shaped internal adjustment openings (24). The left side of the left-positioned translational extrusion frame (9) and the right side of the right-positioned translational extrusion frame (10) are fixedly connected with lateral adjustment seats (27) on both sides of the lateral adjustment screws (26).
3. The linked packaging equipment for a wood board edge banding conveyor according to claim 2, characterized in that: A lateral adjustment blind hole for a built-in lateral adjustment rod (266) is provided on the outer surface of the lateral adjustment seat (27), the inner end of the lateral adjustment rod (266) is engaged with the top end of the lateral adjustment screw rod (26) for transmission, and a strip-shaped control groove is provided on the outer top end of the lateral adjustment rod (266).
4. The linked packaging equipment for a wood board edge banding conveyor according to claim 1, characterized in that: The outer side surface of the side guide cylinder (7) is located outside the strip-shaped lateral adjustment opening (20) and is fixedly connected to a top mounting seat (28) for improving the rotation stability of the horizontal adjustment screw rod (12).
5. The linked packaging equipment for a wood board edge banding conveyor according to claim 1, characterized in that: The inner side surface of the horizontal adjustment cylinder (5) is provided with an inner guide limit slot (29) on both sides of the bottom discharge port (15) and the top feed port (16) and is connected to the inside of the lateral assembly adjustment groove (17). The inner side surface of the lateral guide cylinder (7) is provided with an outer guide limit slot (30) that matches the inner guide limit slot (29).
Citation Information
Patent Citations
Automatic article packaging device special for central kitchen
CN112937957A