Feeding device for dry compounder
Patent Information
- Application Number
- CN202522077107.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-26
AI Technical Summary
但是传统的干法复合机的上料机构都是人力搬运料辊,需要的人员较多,人工搬运费时费力并且危险较大
[0011]有益效果:本方案采用输送部、举升部以及吊装部的结合,将原料辊转动调整然后通过输送履带输送至进料座中,然后通过吊装机构吊起,其过程不需要人工去搬运,并且不需要大量的人员劳动力,带来的劳动力消耗程度低。
Smart Images

Figure CN224811877U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of conveying equipment for raw material rollers used in film making, and specifically to a feeding device for a dry laminating machine. Background Technology
[0002] Dry laminating machines play a crucial role in packaging production. The dry lamination process involves applying adhesive and then drying the organic solvent in the adhesive through heating and degassing to ensure the coating is fully dry. In a relatively "dry" state, the coating is then exited through the drying tunnel and laminated with other film layers before cooling and winding. However, traditional dry laminating machines rely on manually operated material rollers for feeding, requiring a large number of personnel. This manual handling is time-consuming, labor-intensive, and potentially dangerous. Utility Model Content
[0003] This invention provides a feeding device for a dry laminating machine to solve the technical problems mentioned in the background art.
[0004] The feeding device for a dry laminating machine includes a conveyor seat, a feed seat, a lifting seat, and a hoisting frame. The conveyor seat is located to the side of the feed seat, the lifting seats are located on both sides of the feed seat, and the hoisting frame is located above the feed seat. A conveyor belt is movably installed between the conveyor seat and the feed seat. There is a gap between the conveyor seat and the lifting seat, and one side of the lifting seat is installed in the gap. The lower part of the lifting seat is a scissor lift platform, and the upper end of the scissor lift platform is equipped with a top seat. A contour box is located at the center of the top seat, and the upper end face of the top seat is inclined towards the center on both sides. The upper end face of the hoisting frame is equipped with a first screw slide on both sides. A transverse plate is movable between the first screw slides. A second screw slide is located on the lower end face of the transverse plate. A moving plate is movable at the lower end of the second screw slide. Pneumatic arms are rotatably installed on both sides of the lower end of the moving plate, and hooks are rotatably installed at the lower end of the pneumatic arms.
[0005] Preferably, in the feeding device for the dry compounding machine, a rotating seat is rotatably provided in the middle of the feeding seat, the conveyor belt of the feeding seat is movably provided in the middle of the rotating seat, a main gear is provided at the lower end of the rotating seat, a first drive motor is provided below the rotating seat, the first drive motor drives a secondary gear, and the secondary gear meshes with the main gear.
[0006] Preferably, in the feeding device for the dry laminating machine, a second drive motor is provided inside the conveying seat and the rotating seat of the feeding seat. Track wheels are rotatably arranged in the middle of the conveying seat and the rotating seat. The second drive motor drives at least one track wheel. The conveying track is movably arranged in the middle of the conveying seat and the rotating seat through the track wheels. A first proximity switch is provided at the outer end of the conveying seat. The first proximity switch is arranged on both sides of the conveying track.
[0007] Preferably, the feeding device for the dry laminating machine has a first cylinder at the lower end of the lifting seat, which drives and connects to the scissor lift platform. The top seat has a semi-circular profile in the middle, which is located at the upper middle of the profile box.
[0008] Preferably, the feeding device for the dry laminating machine has hinge seats on both sides of the lower end of the moving plate, the pneumatic arm is rotatably mounted on the hinge seats, and the hinge seats are equipped with a third drive motor.
[0009] Preferably, the feeding device for the dry laminating machine has at least two relatively hinged arms in the middle of the pneumatic arm, and a second cylinder is provided on the outer side of the arms, with the second cylinder being hinged to the arms respectively.
[0010] Preferably, the feeding device for the dry laminating machine has a bearing plate rotatably mounted on the lower end of the pneumatic arm, and a servo motor is mounted at the rotatable end. A baffle is fixedly mounted on one side of the lower end of the bearing plate. A hook is movable and mounted opposite the baffle. The bearing plate has a strip hole. The upper part of the hook moves through the strip hole. A third cylinder is mounted on the upper end of the bearing plate. The third cylinder drives the upper part of the hook. Top blocks are mounted on both sides of the lower end of the bearing plate. The lower end surface of the top blocks is inclined, and a second proximity switch is mounted on the lower end surface of the top blocks.
[0011] Beneficial effects: This solution combines a conveying unit, a lifting unit, and a hoisting unit. The raw material rollers are rotated and adjusted, and then conveyed to the feeding seat via a conveyor belt. The material is then lifted by a hoisting mechanism. The process does not require manual handling and does not require a large amount of manpower, resulting in low labor consumption. Attached Figure Description
[0012] Figure 1 This is a perspective view of the present utility model; Figure 2 This is a first sectional view of the material conveying seat and the feeding seat of this utility model from the side. Figure 3 This is a second sectional view of the material conveying seat and the feeding seat of this utility model from the side. Figure 4 This is a cross-sectional view of the feed seat of this utility model; Figure 5 This is a perspective view of the lifting seat of this utility model; Figure 6 This is a perspective view of the hoisting frame of this utility model; Figure 7 This is a perspective view of the pneumatic arm of this utility model.
[0013] In the diagram: Material carrier 1, first proximity switch 101, conveyor track 1201, feed seat 2, rotating seat 201, first drive motor 202, auxiliary gear 203, main gear 204, second drive motor 1202, track wheel 1203, lifting seat 3, scissor lift platform 301, top seat 302, contour box 303, first cylinder 304, semi-circular contour 305, hoisting frame 4, first lead screw slide 401, transverse plate 4011, second lead screw slide 402, moving plate 4021, hinge seat 40211, third drive motor 40212, pneumatic arm 403, arm 4031, second cylinder 4032, hook 404, bearing plate 405, baffle 4051, strip hole 4052, third cylinder 4053, top block 4054, second proximity switch 4055, servo motor 406. Detailed Implementation
[0014] The technology of the present invention will now be described with reference to the accompanying drawings of the embodiments thereof. The solution is described clearly and completely. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0015] Please see Figure 1-7 The feeding device for a dry composite machine includes a conveying seat 1, a feeding seat 2, a lifting seat 3, and a hoisting frame 4. The conveying seat 1 is located to the side of the feeding seat 2, the lifting seat 3 is located on both sides of the feeding seat 2, and the hoisting frame 4 is located above the feeding seat 2. A conveyor belt 1201 is movably provided at the center of the conveying seat 1 and the feeding seat 2. A gap is provided between the material conveying seat 1 and the lifting seat 3. One side of the lifting seat 3 is set in the gap. The lower part of the lifting seat 3 is a scissor lift platform 301. The upper end of the scissor lift platform 301 is provided with a top seat 302. The center of the top seat 302 is provided with a contour box 303. The upper end face of the top seat 302 is inclined towards the center on both sides. The upper end of the hoisting frame 4 is provided with a first screw slide 401 on both sides. A transverse plate 4011 is movable between the first screw slides 401. The lower end face of the transverse plate 4011 is provided with a second screw slide 402. The lower end of the second screw slide 402 is provided with a movable plate 4021. The lower end of the movable plate 4021 is provided with a pneumatic arm 403 rotatably mounted on both sides. The lower end of the pneumatic arm 403 is provided with a hook 404 rotatably mounted.
[0016] Furthermore, a rotating seat 201 is rotatably provided in the middle of the feed seat 2, and the conveyor belt 1201 of the feed seat 2 is movably provided in the middle of the rotating seat 201. A main gear 204 is provided at the lower end of the rotating seat 201, and a first drive motor 202 is provided below the rotating seat 201. The first drive motor 202 drives a secondary gear 203, which meshes with the main gear 204.
[0017] Furthermore, a second drive motor 1202 is provided inside the material conveying seat 1 and inside the rotating seat 201 of the feeding seat 2. Track wheels 1203 are rotatably arranged in the middle of the material conveying seat 1 and the rotating seat 201. The second drive motor 1202 drives at least one track wheel 1203. The conveying track 1201 is movably arranged in the middle of the material conveying seat 1 and the rotating seat 201 through the track wheels 1203. A first proximity switch 101 is provided at the outer end of the material conveying seat 1. The first proximity switch 101 is arranged on both sides of the conveying track 1201.
[0018] Furthermore, the lower end of the lifting seat 3 is provided with a first cylinder 304, which drives the scissor lift platform 301. The middle part of the top seat 302 is provided with a semi-circular profile 305, which is located in the middle of the upper end of the profile box 303.
[0019] Furthermore, hinge seats 40211 are provided on both sides of the lower end of the movable plate 4021, and the pneumatic arm 403 is rotatably mounted on the hinge seat 40211. The hinge seat 40211 is provided with a third drive motor 40212.
[0020] Furthermore, the pneumatic arm 403 has at least two relatively hinged arms 4031 in the middle, and a second cylinder 4032 is provided on the outer side of the arms 4031. The second cylinder 4032 is hinged to the arms 4031 respectively.
[0021] Furthermore, the lower end of the pneumatic arm 403 is rotatably provided with a support plate 405, and a servo motor 406 is provided at the rotatable end. A baffle 4051 is provided on one side of the lower end of the support plate 405. The hook 404 is movably positioned opposite the baffle 4051. The support plate 405 is provided with a strip hole 4052. The upper part of the hook 404 moves through the strip hole 4052. A third cylinder 4053 is provided at the upper end of the support plate 405. The third cylinder 4053 drives the upper part of the hook 404. Top blocks 4054 are provided on both sides of the lower end of the support plate 405. The lower end surface of the top block 4054 is in an inclined state, and a second proximity switch 4055 is provided on the lower end surface of the top block 4054.
[0022] The material conveyor seat 1 is located to the side of the feeding seat 2. A rotating seat 201 is rotatably mounted in the middle of the feeding seat 2. The conveyor belt 1201 of the feeding seat 2 is movably mounted in the middle of the rotating seat 201. A main gear 204 is located at the lower end of the rotating seat 201. A first drive motor 202 is located below the rotating seat 201. The first drive motor can be located in the middle of the installation ground for fixation. The lower shaft of the main gear 204 can be rotatably mounted on the ground through a large bearing. The first drive motor 202 drives a secondary gear 203, which meshes with the main gear 204. A second drive motor 1202 is located inside the material conveyor seat 1 and inside the rotating seat 201 of the feeding seat 2. Track wheels 1 are rotatably arranged in the middle of the material conveyor seat 1 and the rotating seat 201. 203. The second drive motor 1202 drives at least one track wheel 1203. The conveyor track 1201 is movably mounted in the middle of the material conveying seat 1 and the rotating seat 201 via the track wheel 1203. The material conveying seat 1 and the conveyor track of the feeding seat 2 operate simultaneously and can be linked to realize the transport of the material roller. In this scheme, in order to realize the transport of the roller, the upper end surface of each block of the conveyor track 1201 is curved to facilitate the transport of the roller. When the roller is transported to the upper end of the feeding seat 2, the roller will hit the first proximity switch 101 on both sides of the conveyor track 1201 of the material conveying seat 1. At this time, the conveyor track 1201 stops working. The lifting seat 3 is set on both sides of the feeding seat 2. The lower end of the lifting seat 3 is equipped with a first cylinder 304, which drives the material roller. The scissor lift platform 301 is connected to the top seat 302, which has a semi-circular contour 305 in the middle. The semi-circular contour 305 is located in the middle of the upper end of the contour box 303. There is a gap between the material conveying seat 1 and the lifting seat 3. One side of the lifting seat 3 is set in the gap. The lower part of the lifting seat 3 is the scissor lift platform 301. The top seat 302 is located at the upper end of the scissor lift platform 301. The contour box 303 is located at the center of the top seat 302. The upper end face of the top seat 302 is inclined towards the center on both sides. The top seat 302 controls the scissor lift platform 301 to rise and fall through the operation of the first cylinder 304. When rising, it can lift the roller of the material roller and let it fall into the semi-circular contour 305 through the inclined surface to define the position, thus lifting the material roller. When the scissor lift platform 301 falls, it can lift the material roller. The conveyor frame 4 is lowered below the horizontal plane of the material conveyor 1 and the feed seat 2 to avoid affecting the passage of the raw material roller. The conveyor frame 4 is positioned above the feed seat 2 and is supported by a frame beam. Its width is greater than that of the material conveyor 1 and the feed seat 2, ensuring it does not obstruct the passage of the raw material roller. The upper ends of the conveyor frame 4 are equipped with first screw slides 401 on both sides. A transverse plate 4011 is movable between the first screw slides 401. The first screw slides 401 are characterized by having a movable action body driven by a screw. The transverse plate 4011 is connected by the action body. A second screw slide 402 is provided on the lower end of the transverse plate 4011. A movable plate 4021 is movable at the lower end of the second screw slide 402. The second screw is driven by a screw screw screw to have at least three action bodies, facilitating the connection of the movable plate 4021.A pneumatic arm 403 is rotatably mounted on both sides of the lower end of the movable plate 4021. A hook 404 is rotatably mounted on the lower end of the pneumatic arm 403. A hinge seat 40211 is provided on both sides of the lower end of the movable plate 4021. The pneumatic arm 403 is rotatably mounted on the hinge seat 40211. A third drive motor 40212 is provided on the hinge seat 40211. The operation of the third drive motor 40212 can rotate the pneumatic arm 403. At least two relatively hinged arm rods 4031 are provided in the middle of the pneumatic arm 403. A hook 404 is provided on the outer side of the arm rod 4031. A second cylinder 4032 is hinged to the boom 4031. The operation of the second cylinder 4032 allows the boom 4031 to fold and extend, enabling lifting operations. A support plate 405 is rotatably mounted on the lower end of the pneumatic boom 403, and a servo motor 406 is located at the rotatable end. The servo motor 406 transmits the detected angle to the system, allowing adjustment to change the angle between the support plate 405 and the pneumatic boom 403. A baffle 4051 is arbitrarily mounted on one side of the lower end of the support plate 405. The hook 404 is movable... Positioned opposite the baffle 4051, the support plate 405 has a strip-shaped hole 4052. The upper part of the hook 404 moves through the strip-shaped hole 4052. A third cylinder 4053 is provided at the upper end of the support plate 405, which drives the upper part of the hook 404. Top blocks 4054 are provided on both sides of the lower end of the support plate 405. The lower end surface of the top blocks 4054 is inclined, and a second proximity switch 4055 is provided on the lower end surface of the top blocks 4054. The operation of the third cylinder 4053 causes the hook 404 to move relative to the baffle 4051. The distance between the parts is increased, the air pressure ratio decreases, and the hook 404 is inserted into the contour and weight by manual or system control. At this time, the roller shaft of the raw material roller is located between the hook 404 and the baffle 4051. The third cylinder 4053 returns to its original position and hooks the roller body. During this process, the second proximity switch 4055 stops the operation of the pneumatic arm 403 when it contacts the top seat 302, and the third cylinder 4053 operates to grab the roller. Then, through the coordinated operation of the pneumatic arm 403, the third cylinder 4053, and the servo motor 406, the roller body is sent into the film-making equipment. The above-described embodiments of this utility model do not constitute a limitation on the scope of protection of this utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the scope of protection of the claims of this utility model.
Claims
1. A feeding device for a dry laminating machine, comprising a conveying seat (1), a feeding seat (2), a lifting seat (3), and a hoisting frame (4), characterized in that... The material conveying seat (1) is located to the side of the feeding seat (2), the lifting seat (3) is located on both sides of the feeding seat (2), the hoisting frame (4) is located above the feeding seat (2), a conveyor belt (1201) is movably provided at the center of the material conveying seat (1) and the feeding seat (2), a gap is provided between the material conveying seat (1) and the lifting seat (3), one side of the lifting seat (3) is located in the gap, the lower part of the lifting seat (3) is a scissor lift platform (301), the upper end of the scissor lift platform (301) is provided with a top seat (302), the top seat (302) is... The center is provided with a contour box (303), and the upper end face of the top seat (302) is inclined towards the center on both sides. The upper end of the hoisting frame (4) is provided with a first screw slide (401) on both sides. A transverse plate (4011) is provided between the first screw slide (401). A second screw slide (402) is provided on the lower end face of the transverse plate (4011). A moving plate (4021) is provided at the lower end of the second screw slide (402). A pneumatic arm (403) is rotatably provided on both sides of the lower end of the moving plate (4021). A hook (404) is rotatably provided at the lower end of the pneumatic arm (403).
2. The feeding device for a dry laminating machine according to claim 1, characterized in that... The feed seat (2) has a rotating seat (201) rotatably mounted in the middle. The conveyor belt (1201) of the feed seat (2) is movably mounted in the middle of the rotating seat (201). The lower end of the rotating seat (201) is provided with a main gear (204). The bottom of the rotating seat (201) is provided with a first drive motor (202). The first drive motor (202) drives a secondary gear (203), which meshes with the main gear (204).
3. The feeding device for a dry laminating machine according to any one of claims 1 or 2, characterized in that... The material conveying seat (1) and the rotating seat (201) of the feeding seat (2) are equipped with a second drive motor (1202). Track wheels (1203) are rotatably arranged in the middle of the material conveying seat (1) and the rotating seat (201). The second drive motor (1202) drives at least one track wheel (1203). The conveying track (1201) is movably arranged in the middle of the material conveying seat (1) and the rotating seat (201) through the track wheel (1203). The outer end of the material conveying seat (1) is equipped with a first proximity switch (101). The first proximity switch (101) is arranged on both sides of the conveying track (1201).
4. The feeding device for a dry laminating machine according to claim 1, characterized in that... The lower end of the lifting seat (3) is provided with a first cylinder (304), which drives the scissor lift platform (301). The middle part of the top seat (302) is provided with a semi-circular profile (305), which is located in the middle of the upper end of the profile box (303).
5. The feeding device for a dry laminating machine according to claim 1, characterized in that... The lower end of the movable plate (4021) is provided with hinge seats (40211) on both sides, and the pneumatic arm (403) is rotatably mounted on the hinge seat (40211). The hinge seat (40211) is provided with a third drive motor (40212).
6. The feeding device for a dry laminating machine according to claim 1, characterized in that... The pneumatic arm (403) has at least two relatively hinged arms (4031) in the middle, and a second cylinder (4032) is provided on the outer side of the arm (4031). The second cylinder (4032) is hinged to the arm (4031) respectively.
7. The feeding device for a dry laminating machine according to claim 1, characterized in that... The lower end of the pneumatic arm (403) is provided with a support plate (405) and a servo motor (406) is provided at the rotation point. A baffle (4051) is provided on one side of the lower end of the support plate (405). The hook (404) is moved and set opposite to the baffle (4051). The support plate (405) is provided with a strip hole (4052). The upper part of the hook (404) moves through the strip hole (4052). A third cylinder (4053) is provided at the upper end of the support plate (405). The third cylinder (4053) drives the upper part of the hook (404). Top blocks (4054) are provided on both sides of the lower end of the support plate (405). The lower end surface of the top block (4054) is in an inclined state, and a second proximity switch (4055) is provided on the lower end surface of the top block (4054).