Dehydrated strip storage device with compression structure

By designing a dehydrating strip storage device with a compressed structure, the problem of difficulty in adjusting the spacing of dehydrating strips in the existing device is solved, and effective compression and multiple binding of the spacing of dehydrating strips is achieved, reducing storage space requirements.

CN120193433APending Publication Date: 2025-06-24SUZHOU JICHEN COMMODITY CO LTD
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Patent Information

Application Number
CN202510330186.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

The existing dehydration strip storage device is not convenient to adjust the spacing of dehydration strips, and cannot compress the dehydration strips as a whole, resulting in an increase in storage space and is inconvenient to bundling multiple times.

Method used

A dehydrating strip storage device having a compressed structure is designed, including a dehydrating strip storage part, a anti-moving part, a dehydrating strip compression part and a binding part. By stepping on the anti-slip pad, the spacing of the dehydrating strips is adjusted, and the return spring and limiting mechanism are used to achieve compression and multiple binding of the dehydrating strips.

Benefits of technology

Effective compression of the spacing of dehydrated strips is achieved, reducing storage space requirements, and simplifying the multiple bundling process of dehydrated strips.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a dewatering strip storage device with a compression structure, and relates to the field of paperboard production. The dewatering strip storage part is mounted on the supporting part; the dewatering strip compression part is mounted on the supporting part; the binding part is mounted on the right side of the supporting part; the pushing part is mounted at the top of the supporting part; the number of the dehydration strip compression semicircular blocks B is two, the two dehydration strip compression semicircular blocks B are fixedly installed on the inner sides of the four movable lifting blocks, and the front sides and the rear sides of the two dehydration strip compression semicircular blocks B make contact with the inner sides of the four rectangular supporting strips; the two dehydration strip compression semicircular blocks B drive the dehydration strips to move upwards, the distance between the dehydration strips is reduced, the whole dehydration strips are compressed, the distance between the dehydration strips is smaller, and the storage space is reduced; the problems that a worker cannot conveniently adjust the distance between the dewatering strips, and the whole dewatering strips cannot be compressed are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cardboard production, and particularly relates to a storage device for dehydrating strips with a compression structure. Background Art

[0002] A paper machine is the core equipment for cardboard production, and its technical characteristics directly determine the quality, production efficiency and environmental protection performance of the cardboard. A paper machine is a general term for a complete set of equipment with sectional linkage that forms a paper web. The dehydrating strip is one of the components in the paper machine. In order to reduce the storage space of the dehydrating strip, the dehydrating strip needs to be bundled. The current storage device for dehydrating strips is not convenient for workers to adjust the distance between the dehydrating strips, cannot compress the whole dehydrating strip, increases the storage space occupied by the dehydrating strip, and is not convenient for workers to bundle the dehydrating strip multiple times. Summary of the Invention

[0003] In view of this, the present invention provides a storage device for dehydrating strips with a compression structure, which has a dehydrating strip receiving part, an anti-displacement part, a dehydrating strip compression part and a bundling part. When a worker steps on the anti-slip pad downward with the foot, the distance between the dehydrating strips between the two dehydrating strip receiving semi-circular blocks A and the two dehydrating strip compression semi-circular blocks B changes. When the worker's foot separates from the anti-slip pad, the two dehydrating strip compression semi-circular blocks B drive the dehydrating strips to move upward, reducing the distance between the dehydrating strips, playing a compression role on the whole dehydrating strip, making the distance between the dehydrating strips smaller, and reducing the storage space.

[0004] The present invention provides the purpose and efficacy of a storage device for dehydrating strips with a compression structure, which specifically includes: a support part, a dehydrating strip receiving part, an anti-displacement part, a dehydrating strip compression part, a bundling part and a pushing part; The dehydrating strip receiving part is installed on the support part; the anti-displacement part is installed on the top of the dehydrating strip receiving part; the dehydrating strip compression part is installed on the support part; the bundling part is installed on the right side of the support part; the pushing part is installed on the top of the support part; The support part includes: a fixed rectangular plate, fixed through holes, rectangular support bars and an installation top cover; the fixed rectangular plate is in a rectangular plate shape, and fixed through holes are provided at the corners of the fixed rectangular plate; there are four rectangular support bars in total, and the four rectangular support bars are fixedly installed on the top of the fixed rectangular plate; the installation top cover is fixedly installed on the top of the four rectangular support bars; The dehydrating strip storage part includes: a stable guiding rod, a rectangular mounting rod, a return spring A, and a dehydrating strip storage semi-circular block A; there are two stable guiding rods in total, and the two stable guiding rods are slidably mounted inside the mounting top cover; the rectangular mounting rod is fixedly mounted at the bottom of the two stable guiding rods; there are two return springs A in total, and the two return springs A are mounted outside the two stable guiding rods, and the two return springs A are located between the mounting top cover and the rectangular mounting rod; there are two dehydrating strip storage semi-circular blocks A in total, and the two dehydrating strip storage semi-circular blocks A are fixedly mounted on the left and right sides of the rectangular mounting rod, and the front and rear sides of the two dehydrating strip storage semi-circular blocks A are in contact with the inner sides of the four rectangular support strips; The dehydrating strip compression part includes: a movable lifting block, a dehydrating strip compression semi-circular block B, and a synchronous connecting rod; there are four movable lifting blocks in total, and the four movable lifting blocks are slidably mounted inside the four rectangular support strips; there are two dehydrating strip compression semi-circular blocks B in total, and the two dehydrating strip compression semi-circular blocks B are fixedly mounted on the inner sides of the four movable lifting blocks, and the front and rear sides of the two dehydrating strip compression semi-circular blocks B are in contact with the inner sides of the four rectangular support strips; there are two synchronous connecting rods in total, and the two synchronous connecting rods are fixedly mounted on the inner sides of the two dehydrating strip compression semi-circular blocks B.

[0005] Further, the dehydrating strip compression part further includes: a limit pin and a compression pedal; the limit pin is inserted into the left front rectangular support strip and the left front movable lifting block; the compression pedal is fixedly connected to the left dehydrating strip compression semi-circular block B.

[0006] Further, the support part further includes: a strip-shaped slot and a strip-shaped groove; the mounting top cover is provided with a strip-shaped slot and a strip-shaped groove, and the strip-shaped slot and the strip-shaped groove are of the same size, and the strip-shaped slot and the strip-shaped groove are vertically arranged.

[0007] Further, the dehydrating strip compression part further includes: an anti-slip pad and a return spring B; the anti-slip pad is fixedly mounted on the top of the compression pedal; there are two rows of return springs B in total, and the two rows of return springs B are fixedly mounted on the bottoms of the two dehydrating strip compression semi-circular blocks B, and the bottoms of the two return springs B are fixedly connected to the fixed rectangular plate.

[0008] Further, the dehydrating strip storage part further includes: an anti-shift limit seat and a limit screw; the anti-shift limit seat is fixedly connected to the left dehydrating strip storage semi-circular block A; the limit screw is threadedly connected inside the anti-shift limit seat, and the rear side of the limit screw is in contact with the left rear rectangular support strip.

[0009] Further, the bundling part includes: a bundling seat, threaded holes, bundling rods, and a bundling elastic band; there are two bundling seats in total, and the two bundling seats are fixedly connected to the two rectangular support bars on the right side, and six threaded holes are respectively provided on the two bundling seats; there are four bundling rods in total, and the four bundling rods are threadedly connected inside the two bundling seats; there is a row of bundling elastic bands, and the row of bundling elastic bands is installed on the outer walls of the four bundling rods.

[0010] Further, the anti-shift part includes: a circular ring seat and an anti-shift pulling shaft; the circular ring seat is fixedly installed on the top of the rectangular installation rod; the anti-shift pulling shaft is rotatably installed inside the circular ring seat.

[0011] Further, the bundling part also includes: arc-shaped card slots and hexagonal locking slots; a row of arc-shaped card slots are respectively provided on the outer walls of the four bundling rods, and hexagonal locking slots are provided on the right sides of the four bundling rods.

[0012] Further, the anti-shift part also includes: a pulling and rotating plate and an anti-shift limiting block; the pulling and rotating plate is fixedly installed on the top of the anti-shift pulling shaft; the anti-shift limiting block is fixedly installed on the outer wall of the anti-shift pulling shaft, and the anti-shift limiting block is inserted into the strip-shaped groove.

[0013] Further, the pushing part includes: electric cylinders, L-shaped frames, and pushing discs; there are two electric cylinders in total, and the two electric cylinders are fixedly installed on the top of the installation top cover; there are two L-shaped frames in total, and the two L-shaped frames are fixedly installed on the left sides of the two electric cylinders; the pushing discs are fixedly installed on the right sides of the two L-shaped frames.

[0014] Beneficial effects 1. In the present invention, since the two dehydration strip storage semi-circular blocks A are fixedly installed on the left and right sides of the rectangular installation rod, and the two return springs A are installed outside the two stable guiding rods, and the two return springs A are located between the installation top cover and the rectangular installation rod, a clamping effect on the dehydration strips is achieved. Also, since the limit screw is threadedly connected inside the anti-shift limit seat and the rear side of the limit screw contacts the left rear rectangular support bar, the movement of the two dehydration strip storage semi-circular blocks A is avoided, improving the clamping effect of the dehydration strips. Since the anti-shift limiting block is fixedly installed on the outer wall of the anti-shift pulling shaft and the anti-shift limiting block is inserted into the strip-shaped groove, a limiting effect on the two dehydration strip storage semi-circular blocks A is achieved, facilitating the staff to place the dehydration strips to be bundled. When the staff drags the pulling and rotating plate upward and then rotates the pulling and rotating plate by a quarter turn, the anti-shift limiting block is parallel to the strip-shaped slot hole, enabling the two dehydration strip storage semi-circular blocks A to move up and down, facilitating the clamping of different numbers of dehydration strips.

[0015] 2. In the present invention, two rows of reset springs B are fixedly installed at the bottoms of two dehydrating strip compression semi - blocks B, and the bottoms of the two reset springs B are fixedly connected to the fixed rectangular plate. Thus, when the staff member pulls out the limit pin, the two dehydrating strip compression semi - blocks B can move up and down under the action of the two rows of reset springs B. When the staff member steps on the anti - slip pad downward with the foot, the distance between the dehydrating strips between the two dehydrating strip receiving semi - blocks A and the two dehydrating strip compression semi - blocks B changes. When the staff member's foot separates from the anti - slip pad, the two dehydrating strip compression semi - blocks B drive the dehydrating strips to move upward. The staff member can repeatedly step on the anti - slip pad, reducing the distance between the dehydrating strips, which plays a compressing role on the whole dehydrating strips, making the distance between the dehydrating strips smaller and reducing the storage space.

[0016] 3. In the present invention, a row of bundling elastic bands is installed on the outer walls of four bundling rods, thus playing a bundling role on the right ends of the dehydrating strips. When the two electric cylinders work, the compressed dehydrating strips move. At this time, the staff member can continue to pull the bundling elastic bands on the outer walls of the four bundling rods to the right, realizing multiple bundlings of the dehydrating strips, making the dehydrating strips more integral during storage. Also, because there are hexagonal locking grooves on the right sides of the four bundling rods, it is convenient for the staff member to install the four bundling rods in four appropriate threaded holes according to the bundling quantity of the dehydrating strips, facilitating the support of bundling elastic bands of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0018] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0019] In the drawings: Figure 1 The three - dimensional structural schematic diagram of the present invention is shown; Figure 2 The front - view perspective structural schematic diagram of the present invention is shown Figure 1 ; Figure 3 The structural schematic diagram of the present invention showing the installation of the top cover and the dehydrating strip receiving part is shown; Figure 4 The A - area partial enlarged structural schematic diagram of the present invention is shown Figure 1 ; Figure 5 The structural schematic diagram of the present invention showing the fixed rectangular plate, the rectangular support strip and the dehydrating strip compression part is shown; Figure 6 The B - area partial enlarged structural schematic diagram of the present invention is shown Figure 5 ; Figure 7The structural schematic diagram of the fixed rectangular plate, rectangular support bar and bundling part of the present invention is shown; Figure 8 The present invention is shown Figure 7 The partial enlarged structural schematic diagram of area C in the present invention.

[0020] List of reference numerals 1. Support part; 101. Fixed rectangular plate; 1011. Fixed through hole; 102. Rectangular support bar; 103. Installation top cover; 1031. Strip-shaped slot hole; 1032. Strip-shaped groove; 2. Dehydration strip storage part; 201. Stable guide rod; 202. Rectangular installation rod; 203. Return spring A; 204. Dehydration strip storage semi-circular block A; 205. Anti-shift limit seat; 206. Limit screw; 3. Anti-shift part; 301. Circular ring seat; 302. Anti-shift pull shaft; 303. Pulling and rotating plate; 304. Anti-shift limit block; 4. Dehydration strip compression part; 401. Movable lifting block; 402. Dehydration strip compression semi-circular block B; 403. Synchronous connecting rod; 404. Limit pin; 405. Compression pedal; 406. Anti-slip pad; 407. Return spring B; 5. Bundling part; 501. Bundling seat; 5011. Threaded hole; 502. Bundling rod; 5021. Arc-shaped card slot; 5022. Hexagonal locking groove; 503. Bundling elastic band; 6. Pushing part; 601. Electric cylinder; 602. L-shaped frame; 603. Pushing disc. Detailed implementation manners

[0021] In order to make the purpose, scheme and advantages of the technical scheme of the present invention clearer, the technical scheme of the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.

[0022] Embodiment 1: Please refer to Figures 1 to 8 as shown: The present invention provides a dehydration strip storage device with a compression structure, including a support part 1, a dehydration strip storage part 2, an anti-shift part 3, a dehydration strip compression part 4, a bundling part 5 and a pushing part 6; The dehydration strip storage part 2 is installed on the support part 1; the anti-shift part 3 is installed on the top of the dehydration strip storage part 2; the dehydration strip compression part 4 is installed on the support part 1; the bundling part 5 is installed on the right side of the support part 1; the pushing part 6 is installed on the top of the support part 1; The support part 1 includes: a fixed rectangular plate 101, a fixed through hole 1011, a rectangular support bar 102, and an installation top cover 103; the fixed rectangular plate 101 is a rectangular plate-like structure, and fixed through holes 1011 are provided at the corners of the fixed rectangular plate 101; there are four rectangular support bars 102 in total, and the four rectangular support bars 102 are fixedly installed on the top of the fixed rectangular plate 101; the installation top cover 103 is fixedly installed on the top of the four rectangular support bars 102.

[0023] Among them, the dehydrating strip storage part 2 includes: a stable guiding rod 201, a rectangular mounting rod 202, a return spring A 203, and a dehydrating strip storage semi-circular block A 204; there are two stable guiding rods 201 in total, and the two stable guiding rods 201 are slidably mounted inside the mounting top cover 103; the rectangular mounting rod 202 is fixedly mounted at the bottom of the two stable guiding rods 201; there are two return springs A 203 in total, and the two return springs A 203 are mounted outside the two stable guiding rods 201, and the two return springs A 203 are located between the mounting top cover 103 and the rectangular mounting rod 202; there are two dehydrating strip storage semi-circular blocks A 204 in total, and the two dehydrating strip storage semi-circular blocks A 204 are fixedly mounted on the left and right sides of the rectangular mounting rod 202, and the front and rear sides of the two dehydrating strip storage semi-circular blocks A 204 are in contact with the inner sides of the four rectangular support bars 102; the dehydrating strip storage part 2 further includes: an anti-displacement limit seat 205 and a limit screw 206; the anti-displacement limit seat 205 is fixedly connected to the left dehydrating strip storage semi-circular block A 204; the limit screw 206 is threadedly connected inside the anti-displacement limit seat 205, and the rear side of the limit screw 206 is in contact with the left rear rectangular support bar 102; the support part 1 further includes: a strip-shaped slot hole 1031 and a strip-shaped groove 1032; the mounting top cover 103 is provided with a strip-shaped slot hole 1031 and a strip-shaped groove 1032, and the strip-shaped slot hole 1031 and the strip-shaped groove 1032 are of the same size, and the strip-shaped slot hole 1031 and the strip-shaped groove 1032 are vertically arranged; the anti-displacement part 3 includes: a circular ring seat 301 and an anti-displacement pulling shaft 302; the circular ring seat 301 is fixedly mounted on the top of the rectangular mounting rod 202; the anti-displacement pulling shaft 302 is rotatably mounted inside the circular ring seat 301; the anti-displacement part 3 further includes: a pulling rotating plate 303 and an anti-displacement limit block 304; the pulling rotating plate 303 is fixedly mounted on the top of the anti-displacement pulling shaft 302;The anti-shift limit block 304 is fixedly installed on the outer wall of the anti-shift pulling shaft 302, and the anti-shift limit block 304 is inserted into the strip-shaped groove 1032. Its specific functions are as follows: Since the two dehydrating strip receiving semi-circular blocks A204 are fixedly installed on the left and right sides of the rectangular mounting rod 202, and the two return springs A203 are installed outside the two stable guiding rods 201, and the two return springs A203 are located between the mounting top cover 103 and the rectangular mounting rod 202, the dehydrating strips are clamped. Also, since the limit screw 206 is threadedly connected to the inside of the anti-shift limit seat 205, and the rear side of the limit screw 206 contacts the rectangular support strip 102 on the left rear side, the movement of the two dehydrating strip receiving semi-circular blocks A204 is avoided, improving the clamping effect of the dehydrating strips. Since the anti-shift limit block 304 is fixedly installed on the outer wall of the anti-shift pulling shaft 302, and the anti-shift limit block 304 is inserted into the strip-shaped groove 1032, the two dehydrating strip receiving semi-circular blocks A204 are limited, facilitating the staff to place the dehydrating strips to be bundled. When the staff drags the pulling rotating plate 303 upward and then rotates the pulling rotating plate 303 by a quarter turn, the anti-shift limit block 304 is parallel to the strip-shaped slot hole 1031, enabling the two dehydrating strip receiving semi-circular blocks A204 to move up and down, facilitating the clamping of different numbers of dehydrating strips.;

[0024] Embodiment Two: The dehydration strip compression part 4 includes: a movable lifting block 401, a dehydration strip compression semi-circular block B402, and a synchronous connecting rod 403. There are four movable lifting blocks 401 in total, and the four movable lifting blocks 401 are slidably installed inside the four rectangular support strips 102. There are two dehydration strip compression semi-circular blocks B402 in total, and the two dehydration strip compression semi-circular blocks B402 are fixedly installed inside the four movable lifting blocks 401, and the front and rear sides of the two dehydration strip compression semi-circular blocks B402 are in contact with the inner sides of the four rectangular support strips 102. There are two synchronous connecting rods 403 in total, and the two synchronous connecting rods 403 are fixedly installed inside the two dehydration strip compression semi-circular blocks B402. The dehydration strip compression part 4 further includes: a limit pin 404 and a compression pedal 405. The limit pin 404 is inserted into the left front rectangular support strip 102 and the left front movable lifting block 401. The compression pedal 405 is fixedly connected to the left dehydration strip compression semi-circular block B402. The dehydration strip compression part 4 further includes: an anti-slip pad 406 and a return spring B407. The anti-slip pad 406 is fixedly installed on the top of the compression pedal 405. There are two rows of return springs B407 in total, and the two rows of return springs B407 are fixedly installed at the bottom of the two dehydration strip compression semi-circular blocks B402, and the bottoms of the two return springs B407 are fixedly connected to the fixed rectangular plate 101. Its specific function is: because the two rows of return springs B407 are fixedly installed at the bottom of the two dehydration strip compression semi-circular blocks B402, and the bottoms of the two return springs B407 are fixedly connected to the fixed rectangular plate 101, so when the staff pulls out the limit pin 404, the two dehydration strip compression semi-circular blocks B402 can move up and down under the action of the two rows of return springs B407. When the staff steps on the anti-slip pad 406 downward with the foot, the distance between the dehydration strips between the two dehydration strip receiving semi-circular blocks A204 and the two dehydration strip compression semi-circular blocks B402 changes. When the staff's foot separates from the anti-slip pad 406, the two dehydration strip compression semi-circular blocks B402 drive the dehydration strips to move upward. The staff can repeatedly step on the anti-slip pad 406, reducing the distance between the dehydration strips, playing a compression role on the whole dehydration strips, making the distance between the dehydration strips smaller, and reducing the storage space.

[0025] Embodiment Three: The bundling part 5 includes: a bundling seat 501, a threaded hole 5011, a bundling rod 502, and a bundling elastic band 503; there are two bundling seats 501 in total, and the two bundling seats 501 are fixedly connected to the two rectangular support bars 102 on the right side, and six threaded holes 5011 are respectively arranged on the two bundling seats 501; there are four bundling rods 502 in total, and the four bundling rods 502 are threadedly connected inside the two bundling seats 501; there is one row of bundling elastic bands 503 in total, and the row of bundling elastic bands 503 is installed on the outer walls of the four bundling rods 502; the bundling part 5 further includes: an arc-shaped card slot 5021 and a hexagonal locking slot 5022; a row of arc-shaped card slots 5021 are respectively arranged on the outer walls of the four bundling rods 502, and a hexagonal locking slot 5022 is arranged on the right side of the four bundling rods 502. The pushing part 6 includes: an electric cylinder 601, an L-shaped frame 602, and a pushing disc 603; there are two electric cylinders 601 in total, and the two electric cylinders 601 are fixedly installed on the top of the installation top cover 103; there are two L-shaped frames 602 in total, and the two L-shaped frames 602 are fixedly installed on the left sides of the two electric cylinders 601; the pushing disc 603 is fixedly installed on the right sides of the two L-shaped frames 602. Its specific function is: because the row of bundling elastic bands 503 is installed on the outer walls of the four bundling rods 502, it plays a bundling role on the right end of the dehydrating strip. When the two electric cylinders 601 work, the compressed dehydrating strip moves. At this time, the staff can continue to pull the bundling elastic bands 503 on the outer walls of the four bundling rods 502 to the right, realizing multiple bundlings of the dehydrating strip, making the dehydrating strip more integral during storage.

[0026] Specific usage method and function of this embodiment: In the present invention, first, the staff installs the fixed rectangular plate 101 at an appropriate position through bolts and four fixed through holes 1011. Then, the staff places the dewatering strips to be bundled between two dewatering strip receiving semi-circular blocks A204 and two dewatering strip compressing semi-circular blocks B402. Then, the staff drags the pulling rotating plate 303 upward and rotates the pulling rotating plate 303 by a quarter turn. At this time, the anti-movement limiting block 304 is parallel to the strip-shaped slot hole 1031, enabling the two dewatering strip receiving semi-circular blocks A204 to move up and down, facilitating the clamping of different numbers of dewatering strips. Then, the staff rotates the limiting screw 206 with a wrench, making the limiting screw 206 in close contact with the left rear rectangular support bar 102, preventing the two dewatering strip receiving semi-circular blocks A204 from moving and improving the clamping effect of the dewatering strips. Then, the staff pulls out the limiting pin 404. At this time, the two dewatering strip compressing semi-circular blocks B402 can move up and down under the action of two rows of return springs B407. When the staff steps on the anti-slip pad 406 downward with their foot, the distance between the dewatering strips between the two dewatering strip receiving semi-circular blocks A204 and the two dewatering strip compressing semi-circular blocks B402 changes. When the staff's foot separates from the anti-slip pad 406, the two dewatering strip compressing semi-circular blocks B402 drive the dewatering strips to move upward. The staff can repeatedly step on the anti-slip pad 406, reducing the distance between the dewatering strips and playing a compressing role on the overall dewatering strips, making the distance between the dewatering strips smaller, reducing the storage space. Then, the staff pulls outward the bundling elastic bands 503 on the outer walls of the four bundling rods 502, bundling the right ends of the dewatering strips. Then, the staff starts the two electric cylinders 601. At this time, the compressed dewatering strips move. The staff can continue to pull outward the bundling elastic bands 503 on the outer walls of the four bundling rods 502, achieving multiple bundling of the dewatering strips and making the dewatering strips more integral during storage. Then, the staff drags the pulling rotating plate 303 upward and rotates the pulling rotating plate 303 by a quarter turn, making the anti-movement limiting block 304 inserted into the strip-shaped groove 1032, thereby playing a limiting role on the two dewatering strip receiving semi-circular blocks A204 and facilitating the staff to place the dewatering strips to be bundled. Then, the staff steps on the anti-slip pad 406 downward and inserts the limiting pin 404 into the left front rectangular support bar 102 and the left front movable lifting block 401, facilitating the staff to use it again. Also, because there are hexagonal locking grooves 5022 on the right sides of the four bundling rods 502, it is convenient for the staff to install the four bundling rods 502 in the appropriate four threaded holes 5011 according to the bundling quantity of the dewatering strips, facilitating the support of bundling elastic bands 503 of different sizes. Also, because there are hexagonal locking grooves 5022 on the right sides of the four bundling rods 502, it is convenient for the staff to install the four bundling rods 502 in the appropriate four threaded holes 5011 according to the bundling quantity of the dewatering strips, facilitating the support of bundling elastic bands 503 of different sizes.

[0027] The above description is only an exemplary embodiment of the present invention and is not intended to limit the scope of protection of the present invention. The scope of protection of the present invention is determined by the appended claims.

Claims

1. A dehydrated strip storage device with a compression structure, characterized in that: include: A supporting portion (1), a dehydration strip storage portion (2), an anti-movement portion (3), a dehydration strip compression portion (4), a binding portion (5) and a pushing portion (6); The dehydration strip storage part (2) is installed on the support part (1); the anti-movement part (3) is installed on the top of the dehydration strip storage part (2); the dehydration strip compression part (4) is installed on the support part (1); the binding part (5) is installed on the right side of the support part (1); The pushing part (6) is installed on the top of the supporting part (1); The support part (1) comprises: a fixed rectangular plate (101), a fixed through hole (1011), a rectangular support bar (102) and a mounting top cover (103); the fixed rectangular plate (101) is a rectangular plate-shaped structure, and a fixing through hole (1011) is provided at a corner of the fixed rectangular plate (101); there are four rectangular support bars (102) in total, and the four rectangular support bars (102) are fixedly mounted on the top of the fixed rectangular plate (101); the mounting top cover (103) is fixedly mounted on the top of the four rectangular support bars (102); The dehydration strip storage part (2) comprises: a stabilizing guide rod (201), a rectangular mounting rod (202), a return spring A (203) and a dehydration strip storage semicircular block A (204); two stabilizing guide rods (201) are provided, and the two stabilizing guide rods (201) are slidably installed inside the mounting top cover (103); the rectangular mounting rod (202) is fixedly installed at the bottom of the two stabilizing guide rods (201); two return springs A (203) are provided, and the two return springs A (203) are fixedly installed at the bottom of the two stabilizing guide rods (201); The spring A (203) is installed outside the two stabilizing guide rods (201), and the two return springs A (203) are located between the mounting top cover (103) and the rectangular mounting rod (202); a total of two dehydration bar storage semicircular blocks A (204) are provided, and the two dehydration bar storage semicircular blocks A (204) are fixedly installed on the left and right sides of the rectangular mounting rod (202), and the front and rear sides of the two dehydration bar storage semicircular blocks A (204) are in contact with the inner sides of the four rectangular support bars (102); The dehydration bar compression part (4) comprises: a movable lifting block (401), a dehydration bar compression semicircular block B (402) and a synchronous connecting rod (403); there are four movable lifting blocks (401) in total, and the four movable lifting blocks (401) are slidably mounted inside the four rectangular support bars (102); there are two dehydration bar compression semicircular blocks B (402) in total, and the two dehydration bar compression semicircular blocks B (402) are fixedly mounted inside the four movable lifting blocks (401), and the front and rear sides of the two dehydration bar compression semicircular blocks B (402) are in contact with the inner sides of the four rectangular support bars (102); there are two synchronous connecting rods (403) in total, and the two synchronous connecting rods (403) are fixedly mounted inside the two dehydration bar compression semicircular blocks B (402).

2. A dehydrated strip storage device with a compression structure according to claim 1, characterized in that: The support portion (1) further comprises: a strip-shaped slot hole (1031) and a strip-shaped groove (1032); the installation top cover (103) is provided with the strip-shaped slot hole (1031) and the strip-shaped groove (1032), and the strip-shaped slot hole (1031) and the strip-shaped groove (1032) are of the same size, and the strip-shaped slot hole (1031) and the strip-shaped groove (1032) are arranged vertically.

3. The dehydrated strip storage device with a compression structure according to claim 1, characterized in that: The dehydration strip storage part (2) further comprises: an anti-displacement limit seat (205) and a limit screw (206); the anti-displacement limit seat (205) is fixedly connected to the left dehydration strip storage semicircular block A (204); the limit screw (206) is threadedly connected to the inside of the anti-displacement limit seat (205), and the rear side of the limit screw (206) is in contact with the rectangular support strip (102) on the left rear side.

4. The dehydrated strip storage device with a compression structure according to claim 2, characterized in that: The anti-movement part (3) comprises: a circular ring seat (301) and an anti-movement pulling shaft (302); the circular ring seat (301) is fixedly mounted on the top of the rectangular mounting rod (202); and the anti-movement pulling shaft (302) is rotatably mounted inside the circular ring seat (301).

5. A dehydrated strip storage device with a compression structure according to claim 4, characterized in that: The anti-movement part (3) further comprises: a pulling rotating plate (303) and an anti-movement limit block (304); the pulling rotating plate (303) is fixedly mounted on the top of the anti-movement pulling shaft (302); the anti-movement limit block (304) is fixedly mounted on the outer wall of the anti-movement pulling shaft (302), and the anti-movement limit block (304) is inserted into the strip-shaped groove (1032).

6. The dehydrated strip storage device with a compression structure according to claim 1, characterized in that: The dehydration strip compression part (4) further comprises: a limit pin (404) and a compression pedal (405); the limit pin (404) is inserted into the rectangular support strip (102) on the left front side and the movable lifting block (401) on the left front side; the compression pedal (405) is fixedly connected to the dehydration strip compression semicircular block B (402) on the left side.

7. A dehydrated strip storage device with a compression structure according to claim 6, characterized in that: The dehydration bar compression part (4) further comprises: an anti-skid pad (406) and a return spring B (407); the anti-skid pad (406) is fixedly mounted on the top of the compression pedal (405); the return springs B (407) are provided in two rows, and the two rows of return springs B (407) are fixedly mounted on the bottom of two dehydration bar compression semicircular blocks B (402), and the bottoms of the two return springs B (407) are fixedly connected to the fixed rectangular plate (101).

8. The dehydrated strip storage device with a compression structure according to claim 1, characterized in that: The binding part (5) comprises: a binding seat (501), a threaded hole (5011), a binding rod (502) and a binding elastic band (503); there are two binding seats (501) in total, and the two binding seats (501) are fixedly connected to the two rectangular support bars (102) on the right side, and six threaded holes (5011) are respectively provided on the two binding seats (501); there are four binding rods (502) in total, and the four binding rods (502) are threadedly connected to the inside of the two binding seats (501); there are one row of binding elastic bands (503), and the row of binding elastic bands (503) is installed on the outer walls of the four binding rods (502).

9. A dehydrated strip storage device with a compression structure according to claim 8, characterized in that: The binding part (5) further comprises: arc-shaped card slots (5021) and hexagonal locking slots (5022); the outer walls of the four binding rods (502) are respectively provided with a row of arc-shaped card slots (5021), and the right sides of the four binding rods (502) are provided with hexagonal locking slots (5022).

10. The dehydrated strip storage device with a compression structure according to claim 1, characterized in that: The pushing portion (6) comprises: an electric cylinder (601), an L-shaped frame (602) and a pushing disc (603); two electric cylinders (601) are provided, and the two electric cylinders (601) are fixedly mounted on the top of the mounting top cover (103); two L-shaped frames (602) are provided, and the two L-shaped frames (602) are fixedly mounted on the left sides of the two electric cylinders (601); and the pushing disc (603) is fixedly mounted on the right sides of the two L-shaped frames (602).