A filter residue bagging device
By designing a filter residue bagging device, automatic bagging of filter residue is achieved, solving the problems of low efficiency and spillage caused by manual operation, improving production efficiency and reducing labor intensity.
Patent Information
- Application Number
- CN202510131572.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-02-06
AI Technical Summary
In the food processing industry, the bagging process of filter residue requires manual operation, which results in high manpower consumption and easy spillage, affecting production efficiency.
A filter residue bagging device is designed, which includes a support base, a unloading mechanism, a bearing mechanism and a loading mechanism. The filter residue is poured from the material frame into the storage box through automated operation, and the cooperation of the vibrating bearing plate and the support rod clamping plate is used to achieve uniform distribution of the filter residue and clamping of the material bag.
It improves the efficiency of bagging the filter residue, reduces the labor intensity of workers, avoids the bag from slipping and spilling, and improves production efficiency.
Smart Images

Figure CN119568774B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of material packaging, and in particular to a filter residue bagging device. Background Art
[0002] In the food processing industry, especially in the processing of foods such as hot pot base, a large amount of filter residue is generated. The filter residue usually contains various components such as oil, spice residue, and chili peel. These components can be used to make products such as fertilizers, so it is necessary to recycle the filter residue. At present, factories usually temporarily store the filter residue in a material frame before putting the filter residue into a packaging bag. When bagging the filter residue, it is necessary to first open the packaging bag and then shovel the filter residue into the packaging bag. In this process, two people are usually required to operate, which consumes too much manpower and is prone to spillage, which is inefficient. In order to reduce the waste of human resources, the packaging bag is currently placed in a stainless steel frame. However, during the process of putting on and removing the packaging bag, the packaging bag is easily scratched, which causes the filter residue to spill, which is not conducive to the smooth progress of the bagging operation and also affects production efficiency. Summary of the Invention
[0003] In response to the above-mentioned deficiencies in the related prior art, the present application provides a filter residue bagging device that can automatically load the filter residue into a material bag, thereby improving efficiency while reducing the labor intensity of workers and having strong practicality.
[0004] In order to achieve the above object, the present invention adopts the following technologies:
[0005] A filter residue bagging device comprises a support seat, a discharge mechanism, a bearing mechanism and a loading mechanism.
[0006] A notch is provided at one end of the support seat; the unloading mechanism includes a rotating seat rotatably mounted above the support seat, a storage box is provided on the rotating seat which is movable along its length and has a discharge port at the bottom of one end, a partition is provided in the storage box which is movable along the vertical direction for closing the discharge port, and a push plate is provided in the storage box which is movable along its length for pushing the filter residue out of the discharge port; the bearing mechanism includes a bearing frame provided below the support seat, and the bearing frame is provided with three bearing plates which are distributed in a herringbone shape around the support seat and are vibrating by themselves and are used to place material bags, and the bearing plates There are multiple support rods on the top that can move diagonally and vertically. When in use, the support rods are located in the material bag, and a clamping plate is provided on the outside of the support rods for clamping the material bag; the loading mechanism includes two rotating disks that are symmetrically arranged on both sides of the length direction of the rotating seat and rotate around their own axes. A support plate that can move in the vertical direction and is located in the notch is provided between the rotating disks. A material frame is placed on the support plate for storing filter residue. When the support plate is at the highest point of its stroke, the material frame is connected to the rotating disk and rotates around its axis to pour the filter residue in the material frame into the storage box.
[0007] Furthermore, limiting parts are provided on both sides of the rotating seat along its length direction, and the two sides of the storage box are slidably fitted in the limiting parts. Racks are provided on both sides of the storage box along its length direction, and the racks are engaged with the first driving gear. The first driving gear is installed on the first transmission shaft, and the first transmission shaft is rotatably installed on the rotating seat, and one end is connected to the output end of the first power equipment, and the first power equipment is installed on the rotating seat.
[0008] Furthermore, a mounting plate is provided above the carrier frame, and three through-parts distributed in a herringbone shape and rectangular in shape are provided on the top surface of the mounting plate. The support rod is located in the through-part and is passed through the movable plate. The movable plate is slidably fitted on the bottom surface of the mounting plate and is movable along the diagonal of the through-part. A convex shaft is provided on the bottom surface of the movable plate, and the center of the convex shaft is located on the extension line of the diagonal of the through-part, and is sleeved with two symmetrically arranged connecting rods, and a convex rod is provided on the connecting rod. A plurality of long strip holes are provided on the mounting plate, and the long strip holes are grouped in twos and are evenly distributed around the through-part. The convex rod is passed through the long strip holes and is rotatably connected to the movable block. The movable blocks located on the same side of the through-part are respectively connected to the two movable ends of the bidirectional telescopic rod, and the bidirectional telescopic rod is installed on the mounting plate.
[0009] Furthermore, three lifting plates are provided on the mounting plate, which are respectively located on the outside of the through-hole portion. Slide grooves are provided at the four corners of the lifting plates along their diagonals. The upper ends of the support rods slide in the slide grooves. The lifting plates are connected to the moving end of the vertical lifting mechanism, and the vertical lifting mechanism is installed on the carrier frame.
[0010] Furthermore, the splints are respectively distributed at the four corners of the through portion and are used to cooperate with the outer wall of the support rod. The inner side of the splint is arc-shaped, and an L-shaped rod is provided on the outer side. The L-shaped rod is installed on the mounting plate.
[0011] Furthermore, a plurality of convex strips are provided on both sides of the material frame, and a limit groove is provided on the outer side of the convex strip along the vertical direction, and a first support rod and a second support rod are provided in the limit groove, and the first support rod and the second support rod are respectively located at two ends of the limit groove, and when the material frame is on the support plate, the first support rod is above the second support rod, and when the material frame is on the storage box, the first support rod is located below the second support rod, and the first support rod and the second support rod are both passed through the rotating disk, one end of the first support rod is connected to the connecting plate, and the connecting plate is connected to the movable end of the first horizontal linear mechanism, the first horizontal linear mechanism is vertically installed on the rotating disk, the second support rod is passed through the connecting plate, and a retaining ring is provided on the outer side for abutting against the rotating disk, and a first spring is sleeved on the second support rod, and the two ends of the first spring respectively abut the retaining ring and the connecting plate, and are always in a compressed state, and a retaining ring is provided at the end of the second support rod for abutting against the outer side of the connecting plate.
[0012] Furthermore, the rotating disk is rotatably mounted on the rotating shaft, the rotating shaft is mounted on the side plate, the side plate is mounted on the rotating seat, a gear ring is provided on the circumference of the rotating disk, the gear ring is engaged with the second driving gear, the second driving gear is mounted on the second transmission shaft, the second transmission shaft is rotatably mounted on the side plate, and one end is connected to the output end of the second power device, and the second power device is mounted on the side plate.
[0013] Furthermore, brackets are provided on both sides of the length direction of the material storage box, and the brackets are provided with vertically arranged push rods, and a top plate is provided at the upper end of the push rods. A plurality of protrusions are provided on both sides of the material frame. When the material frame is located on the material storage box, the protrusions are in contact with the top surface of the top plate. A second spring is provided on the push rod, and the two ends of the second spring are respectively abutted against the top plate and the bracket, and are always in a compressed state. A baffle is provided at the lower end of the push rod for abutting against the bottom of the bracket. A third transmission shaft is rotatably installed on the side of the bracket, and a cam is provided at one end of the third transmission shaft, which is in contact with the bottom surface of the top plate. The other end of the third transmission shaft is connected to the output end of the third power device, and the third power device is installed on the bracket.
[0014] Furthermore, sliding push rods are provided on both sides of the storage box along its length direction, one end of the push rod is connected to the push plate, and the other end is connected to the moving end of the second horizontal linear mechanism, and the second horizontal linear mechanism is installed on the storage box.
[0015] The beneficial effects of the present invention are as follows: the filter residue temporarily stored in the material frame is automatically flipped and dumped into the material storage box through the feeding mechanism, and the filter residue is automatically transferred to the material bag by utilizing the movement of the material storage box and the push plate, thereby improving the bagging efficiency of the filter residue, and the full automation operation can also reduce the labor intensity of workers; the material bag is supported by the vibrating supporting plate, which can make the filter residue in the material bag more evenly distributed, and the material bag is clamped by utilizing the cooperation of the support rod and the splint to prevent the material bag from slipping. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present invention.
[0017] Figure 1 It is a schematic three-dimensional diagram of the overall structure of an embodiment of the present application.
[0018] Figure 2 This is a three-dimensional schematic diagram of the unloading mechanism of an embodiment of the present application.
[0019] Figure 3 for Figure 2 A magnified schematic diagram of .
[0020] Figure 4 This is a three-dimensional schematic diagram of the supporting mechanism of an embodiment of the present application.
[0021] Figure 5This is a three-dimensional schematic diagram of a support rod installed in one of the through-portions according to an embodiment of the present application.
[0022] Figure 6 This is a bottom view schematic diagram of a support rod installed in one of the through-portions according to an embodiment of the present application.
[0023] Figure 7 for Figure 6 Enlarged schematic diagram of point B.
[0024] Figure 8 This is a schematic diagram of the installation of the first support rod and the second support rod according to an embodiment of the present application.
[0025] Figure 9 This is a three-dimensional schematic diagram of the material frame of the embodiment of the present application when it is located on the support plate.
[0026] Figure 10 This is a three-dimensional schematic diagram of the material frame of an embodiment of the present application flipped over to the top of the material storage box.
[0027] Explanation of reference numerals: 100 - support base, 200 - unloading mechanism, 300 - bearing mechanism, 400 - feeding mechanism, 101 - notch, 201 - rotating base, 202 - storage box, 203 - discharge port, 204 - partition, 205 - push plate, 206 - limiting portion, 207 - rack, 208 - first driving gear, 209 - first transmission shaft, 210 - bracket, 211 - push rod, 212 - top plate, 213 - second spring, 214 - baffle, 215 - third transmission shaft, 216 - cam, 217 - push rod, 301 - bearing frame, 302 - bearing plate, 303 - support rod, 304 - clamping plate, 305 - mounting plate, 3 06—through part, 307—moving plate, 308—convex shaft, 309—connecting rod, 310—convex rod, 311—long hole, 312—moving block, 313—bidirectional telescopic rod, 314—lifting plate, 315—chute, 316—L-shaped rod, 401—rotating disk, 402—support plate, 403—material frame, 404—convex strip, 405—limiting groove, 406—first support rod, 407—second support rod, 408—connecting plate, 409—first spring, 410—blocking ring, 411—blocking ring, 412—rotating shaft, 413—side plate, 414—gear ring, 415—second driving gear, 416—second transmission shaft, 417—block. DETAILED DESCRIPTION
[0028] To make the objectives, technical solutions and advantages of the embodiments of the present invention more clear, the embodiments of the present invention are described in detail below with reference to the accompanying drawings. However, the embodiments described in the present invention are only part of the embodiments of the present invention, rather than all the embodiments.
[0029] like Figures 1 to 8As shown, an embodiment of the present application provides a filter residue bagging device, including: a support seat 100, a discharge mechanism 200, a bearing mechanism 300, and a loading mechanism 400.
[0030] A notch 101 is provided at one end of the support seat 100; the unloading mechanism 200 includes a rotating seat 201 rotatably installed above the support seat 100, and a storage box 202 is provided on the rotating seat 201, which is movable along its length and has a discharge port 203 at the bottom of one end. A partition 204 is provided in the storage box 202, which is movable along the vertical direction, for closing the discharge port 203, and a push plate 205 is provided in the storage box 202, which is movable along its length, for pushing the filter residue out of the discharge port 203; the supporting mechanism 300 includes a supporting frame 301 provided below the support seat 100, and the supporting frame 301 is provided with three supporting plates 302 which are distributed in a triangular shape around the support seat 100 and are vibrating by themselves, for placing material bags, and a plurality of supporting plates 302 are provided above the supporting plate 302, which move diagonally and vertically. The support rod 303 is arranged to move in the direction of rotation. When the material bag is placed on the supporting plate 302, the support rod 303 is located in the material bag, and a clamping plate 304 is provided on the outside of the support rod 303 for cooperating with the support rod 303 to clamp the material bag; the loading mechanism 400 includes two rotating disks 401 symmetrically arranged on both sides of the length direction of the rotating seat 201 and rotating around their own axes. A support plate 402 is provided between the rotating disks 401 and is arranged to move in the vertical direction. When the support plate 402 is at the highest point of its stroke, it is located in the notch 101. A material frame 403 is placed on the support plate 402 for storing filter residue. When the support plate 402 is at the highest point of its stroke, the material frame 403 is connected to the rotating disk 401 and rotates around the axis of the rotating disk 401 to pour the filter residue in the material frame 403 into the storage box 202.
[0031] Specifically, if Figure 1-Figure 2As shown, both sides of the rotating seat 201 are provided with limiting parts 206 along the length direction thereof, and both sides of the storage box 202 are slidably matched in the limiting parts 206. For example, a guide groove is provided on the inner side of the limiting part 206 along the length direction thereof, and a plurality of rollers are provided on both sides of the storage box 202 along the length direction thereof, and the rollers are rolled and matched in the guide grooves, while ensuring that the storage box 202 can move along the length direction of the rotating seat 201, and also realizing the limiting effect on it. Racks 207 are provided on both sides of the storage box 202 along the length direction thereof, and the racks 207 are meshed with the first driving gear 208. The first driving gear 208 is mounted on the first transmission shaft 209, and the first transmission shaft 209 is rotatably mounted. On the rotating base 201, and one end is connected to the output end of the first power device. The first power device is installed on the rotating base 201. When the filter residue in the storage box 202 needs to be transferred to the material bag, the partition 204 is raised to open the discharge port 203, and then the push plate 205 moves along the length direction of the storage box 202, thereby pushing the filter residue in the storage box 202 out of the discharge port 203 and falling into the material bag below. At the same time, the first driving gear 208 is driven to rotate back and forth by the first power device, thereby driving the storage box 202 to move back and forth along the length direction of the rotating base 201, so that the filter residue can be more evenly distributed in the material bag.
[0032] Specifically, if Figure 2 As shown, sliding push rods 217 are provided on both sides of the storage box 202 along its length direction. One end of the push rod 217 is connected to the push plate 205, and the other end is connected to the moving end of the second horizontal linear mechanism. The second horizontal linear mechanism is installed on the storage box 202. The push plate 205 can be driven to move along the length direction of the storage box 202 through the second horizontal linear mechanism to push the filter residue out of the discharge port 203.
[0033] Specifically, if Figure 4-Figure 7As shown, a mounting plate 305 is provided above the carrier 301. The top surface of the mounting plate 305 is provided with three through-parts 306 distributed in a triangular shape and in a rectangular shape. The support rod 303 is located in the through-part 306 and is passed through the movable plate 307. The movable plate 307 is slidably fitted with the bottom surface of the mounting plate 305 and is movable along the diagonal of the through-part 306. A convex shaft 308 is provided on the bottom surface of the movable plate 307. The center of the convex shaft 308 is located on the extension line of the diagonal of the through-part 306, and is sleeved with two symmetrically arranged connecting rods 309. The connecting rods 309 are provided with convex rods 310. A plurality of elongated holes 311 are provided on the mounting plate 305. The elongated holes 311 are grouped in twos and are evenly distributed around the through-part 306. That is, two elongated holes 311 are provided on the four sides of the through-part 306, and the convex rods 310 are passed through the elongated holes 311 and are rotatably connected to the movable block 312. The moving block 312 located on the same side of the through-portion 306 is respectively connected to the two moving ends of the bidirectional telescopic rod 313, and the bidirectional telescopic rod 313 is installed on the mounting plate 305. When the material bag is placed on the carrying plate 302, the material bag is first manually opened, and then the support rod 303 is moved downward synchronously. The four support rods 303 are all located in the material bag. Subsequently, the two moving blocks 312 located on the same side of the through-portion 306 are driven to approach each other through the bidirectional linear mechanism, thereby driving the four moving plates 307 to move synchronously along the diagonal of the through-portion 306, and the angle between the two connecting rods 309 located on the same moving plate 307 also changes, thereby driving the support rod 303 to move synchronously, so that the four support rods 303 are moved away from each other, thereby opening the material bag until the material bag abuts against the clamping plate 304, thereby clamping the material bag and preventing it from sliding during subsequent unloading operations.
[0034] Specifically, if Figure 4-Figure 6 As shown, in order to facilitate the removal of the material bag containing the filter residue, three lifting plates 314 are provided on the mounting plate 305, which are respectively located on the outside of the through-portion 306. The four corners of the lifting plates 314 are provided with sliding grooves 315 along their diagonals. The upper ends of the support rods 303 slide in the sliding grooves 315. The lifting plates 314 are connected to the moving end of the vertical lifting mechanism. The vertical lifting mechanism is installed on the carrier 301. The lifting plates 314 are driven to move upward by the vertical lifting mechanism, which can drive the support rods 303 to move upward synchronously, thereby removing the support rods 303 from the material bag. The support rods 303 can also move along the sliding grooves 315, ensuring that the support rods 303 located in the same through-portion 306 can approach each other synchronously, which is convenient for opening and clamping the material bag.
[0035] Specifically, if Figure 5-Figure 6As shown, the splints 304 are respectively distributed at the four corners of the through portion 306 and are used to cooperate with the outer wall of the support rod 303. The inner side of the splint 304 is arc-shaped, and an L-shaped rod 316 is provided on the outer side. The L-shaped rod 316 is installed on the mounting plate 305. When the support rod 303 moves away from the center of the through portion 306, the support rod 303 cooperates with the inner side of the splint 304 to clamp the material bag.
[0036] Specifically, if Figures 8-10 As shown, a plurality of ridges 404 are provided on both sides of the material frame 403, and a limiting groove 405 is provided on the outer side of the ridge 404 in the vertical direction. A first support rod 406 and a second support rod 407 are provided in the limiting groove 405. The first support rod 406 and the second support rod 407 are respectively located at the two ends of the limiting groove 405, and when the material frame 403 is located on the support plate 402, the first support rod 406 is located above the second support rod 407, and when the material frame 403 is located on the material storage box 202, the first support rod 406 is located above the second support rod 407. 07, the first support rod 406 and the second support rod 407 are both inserted into the rotating disk 401, one end of the first support rod 406 is connected to the connecting plate 408, the connecting plate 408 is connected to the moving end of the first horizontal linear mechanism, the first horizontal linear mechanism is vertically installed on the rotating disk 401, the second support rod 407 is inserted into the connecting plate 408, and a retaining ring 410 is provided on the outside for abutting against the rotating disk 401, the second support rod 407 is provided with a first spring 409, and the two ends of the first spring 409 are respectively abutted against the retaining ring 410 and connecting plate 408, and is always in a compressed state, a retaining ring 411 is provided at the end of the second support rod 407, which is used to abut against the outside of the connecting plate 408. When the material frame 403 is located above the notch 101, the two connecting plates 408 are driven to move toward each other by the first horizontal linear mechanism, thereby driving the first support rod 406 and the second support rod 407 to move synchronously, so that the first support rod 406 and the second support rod 407 enter the limiting groove 405 to support the material frame 403. As the second support rod 407 enters the limiting groove 405, the second support rod 407 will enter the limiting groove 405 first. As the connecting plate 408 continues to move, the first support rod 406 enters the limiting groove 405, and the first spring 409 is further compressed. Then, the rotating disk 401 is rotated, which can drive the material frame 403 to rotate synchronously, so that the material frame 403 moves to the top of the storage box 202, and the opening of the material frame 403 faces downward, so that the filter residue in the material frame 403 is poured into the storage box 202.
[0037] Specifically, if Figure 2-Figure 3 、 Figures 8-10As shown, in order to allow the filter residue in the material frame 403 to be poured into the storage box 202 as much as possible, a bracket 210 is provided on both sides of the storage box 202 in the length direction. The bracket 210 is penetrated by a vertically arranged top rod 211, and a top plate 212 is provided on the upper end of the top rod 211. A plurality of protrusions 417 are provided on both sides of the material frame 403. When the material frame 403 is located on the storage box 202, the protrusions 417 contact the top surface of the top plate 212, and a second spring 213 is sleeved on the top rod 211. The second spring 213 3 The two ends are respectively abutted against the top plate 212 and the bracket 210, and are always in a compressed state. The lower end of the top rod 211 is provided with a baffle 214 for abutting against the bottom of the bracket 210. The side of the bracket 210 is rotatably mounted with a third transmission shaft 215. One end of the third transmission shaft 215 is provided with a cam 216, which contacts the bottom surface of the top plate 212. The other end of the third transmission shaft 215 is connected to the output end of the third power device. The third power device is installed on the bracket 210. When the material box 403 is turned over After reaching the top of the storage box 202, the protrusions 417 on both sides of the material frame 403 will abut against the top plate 212 and force the top plate 212 to move downward. The second spring 213 is also further compressed. Then, the two connecting plates 408 are driven to move away from each other by the first horizontal linear mechanism. Under the action of the first spring 409, the first support rod 406 moves out of the limit groove 405, while the second support rod 407 is still in the limit groove 405, ensuring support for the material frame 403. Then, the third power device drives the third transmission shaft 215 to rotate, and the cam 216 rotates synchronously. Under the push of the cam 216, the top plate 212 moves up and down, thereby achieving an up and down vibration effect on the material frame 403, and then shaking off the residual filter residue in the material frame 403. During the shaking process, the second support rod 407 ensures the limitation of the material frame 403 to prevent it from falling. After the operation is completed, the connecting plates 408 are moved close to each other again to ensure support for the material frame 403 during the flipping process.
[0038] Specifically, if Figure 8-Figure 9 As shown, the rotating disk 401 is rotatably mounted on the rotating shaft 412, the rotating shaft 412 is mounted on the side plate 413, the side plate 413 is mounted on the rotating base 201, and a ring gear 414 is provided on the peripheral side of the rotating disk 401, the ring gear 414 is engaged with the second driving gear 415, the second driving gear 415 is mounted on the second transmission shaft 416, the second transmission shaft 416 is rotatably mounted on the side plate 413, and one end is connected to the output end of the second power device, the second power device is mounted on the side plate 413, and the second driving gear 415 is driven to rotate by the second power device, so that the rotation of the rotating disk 401 can be achieved under the meshing transmission of the ring gear 414 and the second driving gear 415.
[0039] More specifically, the support plate 402 may be connected to a movable end of a vertical lifting mechanism, and the vertical lifting mechanism may be used to drive the support plate 402 to move up and down.
[0040] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if such modifications and variations fall within the scope of the claims and their equivalents, the present invention is intended to include such modifications and variations.
Claims
1. A filter residue bagging device, characterized in that: include: A support base (100) having a notch (101) at one end; The unloading mechanism (200) comprises a rotating seat (201) rotatably mounted above the supporting seat (100); a storage box (202) is provided on the rotating seat (201) and is movable along its length direction and has a discharge port (203) at the bottom of one end; a partition (204) is provided in the storage box (202) and is movable along the vertical direction for closing the discharge port (203); and a push plate (205) is provided in the storage box (202) and is movable along its length direction for pushing the filter residue out of the discharge port (203); The bearing mechanism (300) comprises a bearing frame (301) provided below the support seat (100), wherein the bearing frame (301) is provided with three bearing plates (302) distributed in a triangular shape around the support seat (100) and configured to vibrate themselves, for placing the material bag, and a plurality of support rods (303) configured to move diagonally and vertically are provided above the support plates (302). When in use, the support rods (303) are located in the material bag, and a clamping plate (304) is provided on the outside of the support rods (303) for clamping the material bag; The feeding mechanism (400) comprises two rotating disks (401) symmetrically arranged on both sides of the rotating seat (201) in the longitudinal direction and rotating around their own axes. A support plate (402) is provided between the rotating disks (401) and is arranged to move in the vertical direction and is located in the notch (101). A material frame (403) is placed on the support plate (402) for storing filter residue. When the support plate (402) is at the highest point of its travel, the material frame (403) is connected to the rotating disk (401) and rotates around its axis to pour the filter residue in the material frame (403) into the storage box (202). A mounting plate (305) is provided above the carrier (301), and three through-parts (306) are provided on the top surface of the mounting plate (305) and are distributed in a triangular shape and are themselves rectangular. The support rod (303) is located in the through-parts (306) and is passed through the movable plate (307). The movable plate (307) is slidably fitted on the bottom surface of the mounting plate (305) and is movable along the diagonal line of the through-part (306). A convex shaft (308) is provided on the bottom surface of the movable plate (307), and the center of the convex shaft (308) is located on the extension line of the diagonal line of the through-part (306). Two symmetrically arranged connecting rods (309) are provided, and a protruding rod (310) is provided on the connecting rod (309). A plurality of elongated holes (311) are provided on the mounting plate (305). The elongated holes (311) are arranged in groups of two and are evenly distributed around the side of the through-hole (306). The protruding rods (310) are passed through the elongated holes (311) and are rotatably connected to the moving blocks (312). The moving blocks (312) located on the same side of the through-hole (306) are respectively connected to the two moving ends of a bidirectional telescopic rod (313). The bidirectional telescopic rod (313) is mounted on the mounting plate (305). The mounting plate (305) is provided with three lifting plates (314) respectively located outside the through portion (306), and the four corners of the lifting plates (314) are provided with sliding grooves (315) along their diagonal lines. The upper end of the support rod (303) is slidably engaged in the sliding grooves (315). The lifting plates (314) are connected to the moving end of the vertical lifting mechanism, and the vertical lifting mechanism is installed on the carrier (301); The clamping plates (304) are respectively distributed at the four corners of the through portion (306) and are used to cooperate with the outer wall of the support rod (303). The inner side of the clamping plates (304) is arc-shaped, and an L-shaped rod (316) is provided on the outer side. The L-shaped rod (316) is installed on the mounting plate (305); A plurality of convex strips (404) are provided on both sides of the material frame (403), and a limiting groove (405) is provided on the outer side of the convex strip (404) in the vertical direction. A first support rod (406) and a second support rod (407) are provided in the limiting groove (405), and the first support rod (406) and the second support rod (407) are respectively located at two ends of the limiting groove (405). When the material frame (403) is located on the support plate (402), the first support rod (406) is located above the second support rod (407); when the material frame (403) is located on the material storage box (202), the first support rod (406) is located below the second support rod (407). The first support rod (406) and the second support rod (407) are respectively located at two ends of the limiting groove (405). Both are arranged in the rotating disk (401), one end of the first support rod (406) is connected to the connecting plate (408), the connecting plate (408) is connected to the moving end of the horizontal linear mechanism, and the horizontal linear mechanism is vertically installed on the rotating disk (401), the second support rod (407) is arranged in the connecting plate (408), and a retaining ring (410) is provided on the outside for abutting against the rotating disk (401), a first spring (409) is sleeved on the second support rod (407), the two ends of the first spring (409) respectively abut against the retaining ring (410) and the connecting plate (408), and are always in a compressed state, and a retaining ring (411) is provided at the end of the second support rod (407) for abutting against the outside of the connecting plate (408).
2. The filter residue bagging device according to claim 1, characterized in that: Limiting portions (206) are provided on both sides of the rotating seat (201) along its length direction, and both sides of the material storage box (202) are slidably fitted in the limiting portions (206). Racks (207) are provided on both sides of the material storage box (202) along its length direction, and the racks (207) are engaged with a first driving gear (208). The first driving gear (208) is mounted on a first transmission shaft (209). The first transmission shaft (209) is rotatably mounted on the rotating seat (201), and one end of the first transmission shaft is connected to the output end of a first power device. The first power device is mounted on the rotating seat (201).
3. The filter residue bagging device according to claim 1, characterized in that: The rotating disk (401) is rotatably mounted on a rotating shaft (412), the rotating shaft (412) is mounted on a side plate (413), the side plate (413) is mounted on the rotating seat (201), a gear ring (414) is provided on the circumference of the rotating disk (401), the gear ring (414) is engaged with a second driving gear (415), the second driving gear (415) is mounted on a second transmission shaft (416), the second transmission shaft (416) is rotatably mounted on the side plate (413), and one end of the second transmission shaft is connected to the output end of a second power device, and the second power device is mounted on the side plate (413).
4. The filter residue bagging device according to claim 1, characterized in that: The storage box (202) is provided with brackets (210) on both sides of the length direction, and the brackets (210) are provided with vertically arranged top rods (211). The top end of the top rod (211) is provided with a top plate (212). A plurality of protrusions (417) are provided on both sides of the material frame (403). When the material frame (403) is located on the storage box (202), the protrusions (417) contact the top surface of the top plate (212). A second spring (213) is sleeved on the top rod (211), and the two ends of the second spring (213) respectively abut against the top plate (212). The top plate (212) and the bracket (210) are always in a compressed state. A baffle (214) is provided at the lower end of the top rod (211) for contacting the bottom of the bracket (210). A third transmission shaft (215) is rotatably mounted on the side of the bracket (210). A cam (216) is provided at one end of the third transmission shaft (215). The cam (216) contacts the bottom surface of the top plate (212). The other end of the third transmission shaft (215) is connected to the output end of a third power device. The third power device is mounted on the bracket (210).
5. The filter residue bagging device according to claim 1, characterized in that: Sliding push rods (217) are provided on both sides of the storage box (202) along its length direction. One end of the push rod (217) is connected to the push plate (205), and the other end is connected to the moving end of the second horizontal linear mechanism. The second horizontal linear mechanism is installed on the storage box (202).
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