A land space planning base conversion integration device

By designing the coordination of components such as rotating rollers, conveyor belts, and clamps, the stability problem of materials during the transfer process was solved, achieving stable transmission of paper materials and improving the practicality of the integrated device for converting the base data of land spatial planning.

CN116177267BActive Publication Date: 2026-05-08江西省地质局地理信息工程大队
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
江西省地质局地理信息工程大队
Filing Date
2022-12-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing integrated workbench for converting land spatial planning baselines has poor stability during material transfer, and paper materials are prone to falling and scattering, affecting efficiency.

Method used

A device comprising a rotating roller, a conveyor belt, a fixed block, a clamping plate, and a rotating block is designed. The rotating block and the clamping plate work together to fix the paper material on both sides. Combined with the stable installation of the bidirectional screw and fastening bolts, the stability of the material during the conveying process is ensured.

Benefits of technology

It improves the fixation and stability of paper materials, preventing them from falling and scattering, thus enhancing the practicality of the workbench.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of based on land space planning base conversion integrated device, including workbench, two rotating rollers are rotatably connected on the workbench, two The rotating rollers are connected by conveying belt, a plurality of fixed blocks are fixedly connected on the conveying belt, L-shaped block is fixedly connected on each The fixed block;Fixed plate is fixedly connected on each The fixed block, mounting block is connected on the fixed plate by first spring, rectangular block is fixedly connected on each The mounting block, opening is formed in the rectangular block, slidingly connected with moving block in the opening, clamping plate is fixedly connected on the moving block.The stability of the material is relatively high, the paper material will not fall due to poor fixing effect, avoid the paper material of light quality scattering everywhere after falling, more conducive to the use of paper material by technical personnel, the practicality of workbench is relatively high.
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Description

Technical Field

[0001] This invention relates to the field of land and space planning devices, and in particular to an integrated device based on the conversion of land and space planning baselines. Background Technology

[0002] Geographic information big data platforms are constantly generating massive amounts of geographic information data. By utilizing real-time geographic information big data, we can obtain the development patterns of everything. More big data resources can further verify the changing patterns of things themselves. Especially in the process of resource carrying capacity assessment and land space development suitability assessment, real-time big data can reveal which areas are experiencing which events. It is also an important measure for open planning in land space planning. Land space planning needs this kind of data support the most. These patterns and trends will provide real-time dynamic basic data sources for land space planning analysis.

[0003] In land spatial planning, it is generally necessary to measure the actual space, centralize the data through technical personnel, and finally perform baseline conversion. Baseline conversion requires calculation and processing of survey data. The current land spatial planning baseline conversion integration workbench, after centralizing survey or collected data and calculating and converting the data and baseline, requires multiple technical personnel to review paper materials and forms. Due to the poor stability of materials during the transfer process, paper materials are prone to falling due to poor fixing. Lightweight paper materials are easy to scatter everywhere after falling, which is not conducive to the use of paper materials by technical personnel. The workbench has low practicality. Summary of the Invention

[0004] The purpose of this invention is to address the following shortcomings in the prior art: during the material transfer process on the workbench, the stability of the materials is poor, and paper materials are prone to falling due to poor fixing effect. Lightweight paper materials are easy to scatter everywhere after falling, which is not conducive to the use of paper materials by technicians, and the practicality of the workbench is low. Therefore, this invention proposes an integrated device based on the conversion of land space planning base data.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An integrated device for converting base data based on territorial spatial planning includes a workbench with two rotating rollers rotatably connected to it. The two rotating rollers are connected by a conveyor belt, and multiple fixed blocks are fixedly connected to the conveyor belt. Each fixed block is fixedly connected to an L-shaped block.

[0007] Each of the fixed blocks is fixedly connected to a fixed plate, and a mounting block is connected to the fixed plate by a first spring. Each mounting block is fixedly connected to a rectangular block, and an opening is provided on the rectangular block. A movable block is slidably connected in the opening, and a clamping plate is fixedly connected to the movable block. Multiple friction protrusions are fixedly connected to the end of the clamping plate away from the movable block.

[0008] Each mounting block is connected to a limiting block via a fixing rod. The limiting block has an opening with a right-angled trapezoidal cross-section. Each L-shaped block is connected to a rotating rod via a torsion spring. The rotating rod is equipped with a rotating assembly, which includes a rotating block fixedly connected to the rotating rod. The rotating block has a convex cross-section and one end of the rotating block has an arc end face.

[0009] Preferably, each L-shaped block is fixedly connected to a horizontal plate, and a pressing rod is connected to the horizontal plate via a second spring. A diagonal rod that cooperates with the pressing rod is fixedly connected to the rotating rod.

[0010] Preferably, a gravity block is slidably connected to the fixing plate, the gravity block has a concave cross-section, and one end of the gravity block is engaged with the mounting block.

[0011] Preferably, each of the rectangular blocks has a groove on one side, and a horizontally arranged bidirectional lead screw is rotatably connected in the groove. Two symmetrically arranged fixed sleeves are threaded onto the bidirectional lead screw. A sliding block is slidably connected to the rectangular block, and each fixed sleeve is connected to the sliding block through a hinge rod.

[0012] Preferably, each of the sliding blocks is fixedly connected to a shaft, and the moving block is provided with a slot, wherein the shaft and the slot are engaged.

[0013] Preferably, each of the fixed sleeves is fixedly connected to a guide block, and the rectangular block is provided with a sliding groove, and the guide block and the sliding groove are slidably connected.

[0014] Preferably, each of the bidirectional lead screws has a handle at the end away from the rectangular block, and a rectangular groove is formed at one end of the bidirectional lead screw, with the handle engaging with the rectangular groove.

[0015] Preferably, each of the bidirectional lead screws is fixedly connected to a rotating plate, the rotating plate being connected to the rectangular block by fastening bolts, and the rectangular block having multiple round holes for connecting the fastening bolts.

[0016] Preferably, a support pad is fixedly connected to the bottom of the workbench, and the side of the support pad away from the workbench is provided with anti-slip texture.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] 0. As the rotating block rotates together with the rotating rod, the arc-shaped end face of the rotating block will fit against the surface of the paper material, fixing the paper material between the L-shaped block and the rotating block. Under the combined action of the clamping plate and the rotating block, the upper and lower parts of the paper material can be fixed respectively, resulting in a good fixing effect. As the conveyor belt rotates with the rotating roller, the stability of the material is high. The paper material will not fall due to poor fixing effect, avoiding the lightweight paper material from falling and scattering everywhere. This makes it more convenient for technicians to use the paper material, and the workbench is highly practical.

[0019] 1. Connect the movable block to the opening on the rectangular block from bottom to top. Then, by rotating the double-acting screw, the two fixed sleeves move horizontally and stably with the rotation of the double-acting screw. At the same time, the sliding block and the insert shaft move vertically upward. During the vertical upward movement of the insert shaft, it will engage with the movable block. Then, rotate the fastening bolt to make it threadedly connected to the rotating plate until one end of the fastening bolt is connected to the round hole. This can prevent the double-acting screw from rotating arbitrarily, thus enabling stable installation of the movable block and the clamping plate. Similarly, when the clamping plate is damaged due to long-term use, it can be replaced in time to ensure stable fixation of paper materials in the future. Attached Figure Description

[0020] Figure 1 This is a front structural diagram of an integrated device for converting base data of territorial spatial planning proposed in this invention;

[0021] Figure 2 This is a top view schematic diagram of an integrated device for converting base data of land spatial planning proposed in this invention;

[0022] Figure 3 This is a side view of an integrated device for converting base data in territorial spatial planning proposed in this invention.

[0023] Figure 4 This is a schematic diagram of the side structure of the L-shaped block and the rectangular block;

[0024] Figure 5 This is a partial structural diagram of the side of the rectangular block and the clamping plate.

[0025] In the diagram: 1. Workbench, 2. Support pad, 3. Conveyor belt, 4. Rotating roller, 5. L-shaped block, 6. Fixed block, 7. Rectangular block, 8. Rotating block, 9. Guide block, 10. Diagonal bar, 11. Clamping plate, 12. Mounting block, 13. Gravity block, 14. Fixed plate, 15. Handle, 16. Moving block, 17. Limiting block, 18. Through port, 19. Second spring, 20. Extrusion rod, 21. Rotating rod, 22. Insert shaft, 23. Sliding block, 24. Hinge rod, 25. Rotating plate, 26. Two-way lead screw, 27. Fixed sleeve. Detailed Implementation

[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0027] Reference Figure 1-5 An integrated device for converting base data based on land spatial planning includes a workbench 1 with two rotating rollers 4 rotatably connected to it. A servo motor is installed on the workbench 1, driving the rotating rollers 4 to rotate. The two rotating rollers 4 are connected by a conveyor belt 3. Multiple fixing blocks 6 are fixedly connected to the conveyor belt 3. An L-shaped block 5 is fixedly connected to each fixing block 6. A fixing plate 14 is fixedly connected to each fixing block 6. An mounting block 12 is connected to the fixing plate 14 by a first spring. A rectangular block 7 is fixedly connected to each mounting block 12. An opening is provided on the rectangular block 7, and a moving block 16 is slidably connected inside the opening. A clamping plate 11 is fixedly connected to the moving block 16, and multiple friction protrusions are fixedly connected to the end of the clamping plate 11 away from the moving block 16.

[0028] Each mounting block 12 is connected to a limiting block 17 via a fixed rod. The limiting block 17 has an opening 18 with a right-angled trapezoidal cross-section. Each L-shaped block 5 is connected to a rotating rod 21 via a torsion spring. The rotating rod 21 is equipped with a rotating assembly, which includes a rotating block 8 fixedly connected to the rotating rod 21. The rotating block 8 has a convex cross-section and an arc end face at one end. Each L-shaped block 5 is fixedly connected to a horizontal plate. A pressing rod 20 is connected to the horizontal plate via a second spring 19. A diagonal rod 10 that works with the pressing rod 20 is fixedly connected to the rotating rod 21. As the limiting block 17 moves with the mounting block 12, the pressing rod 20 moves vertically downward. The second spring 19 deforms simultaneously. As the pressing rod 20 moves downward, it contacts the surface of the diagonal rod 10 and moves vertically downward together with the diagonal rod 10. The rotating rod 21 rotates relative to the L-shaped block 5, and the torsion spring deforms.

[0029] A gravity block 13 is slidably connected to the fixed plate 14. The cross-section of the gravity block 13 is U-shaped. One end of the gravity block 13 is engaged with the mounting block 12. In the initial state, one end of the gravity block 13 rests against the mounting block 12. After the tension applied to the mounting block 12 is removed, the mounting block 12 moves under the elastic force of the first spring. The connecting grooves on the gravity block 13 and the mounting block 12 then face each other, and the gravity block 13 moves downward and engages with the mounting block 12. Each rectangular block 7 has a groove on one side. A horizontally arranged bidirectional lead screw 26 is rotatably connected in the groove. Two symmetrically arranged fixed sleeves 27 are threaded onto the bidirectional lead screw 26. A sliding block 23 is slidably connected to the rectangular block 7. Each fixed sleeve 27 is connected to the sliding block 23 through a hinge rod 24. A plug shaft 22 is fixedly connected to each sliding block 23. A slot is opened on the moving block 16, and the plug shaft 22 engages with the slot.

[0030] Each fixed sleeve 27 is fixedly connected to a guide block 9. A sliding groove is provided on the rectangular block 7. The guide block 9 and the sliding groove are slidably connected. By rotating the bidirectional screw 26, since each fixed sleeve 27 is threadedly connected to the bidirectional screw 26, and one end of each guide block 9 is fixedly connected to the corresponding fixed sleeve 27, and the other end is slidably connected to the sliding groove on the rectangular block 7, the fixed sleeve 27 can be prevented from swinging under the limiting action of the guide block 9. During the process of the two fixed sleeves 27 moving stably horizontally with the rotation of the bidirectional screw 26, since one end of the hinge rod 24 is hinged to the fixed sleeve 27 and the other end is hinged to the sliding block 23, the tilt angle of the hinge rod 24 changes at the same time. The sliding block 23 and the insertion shaft 22 move vertically upward at the same time. During the process of the insertion shaft 22 moving vertically upward, it will engage with the moving block 16.

[0031] Each bidirectional lead screw 26 has a handle 15 at the end away from the rectangular block 7. A rectangular groove is opened at one end of the bidirectional lead screw 26, and the handle 15 is engaged with the rectangular groove. Since the cross-sectional area of ​​the handle 15 is larger than the end face area of ​​the bidirectional lead screw 26, the rotation of the bidirectional lead screw 26 can be more easily controlled by rotating the handle 15. Since the handle 15 is engaged with the bidirectional lead screw 26, it is easy to replace the handle 15 when it is damaged.

[0032] Each bidirectional lead screw 26 is fixedly connected to a rotating plate 25. The rotating plate 25 is connected to a rectangular block 7 by fastening bolts. The rectangular block 7 has multiple round holes for connecting the fastening bolts. Then, the fastening bolt is rotated so that one end passes through the rotating plate 25 and is threadedly connected to the rotating plate 25 until one end of the fastening bolt is connected to the corresponding round hole on the rectangular block 7. This prevents the bidirectional lead screw 26 from rotating arbitrarily. A support pad 2 is fixedly connected to the bottom of the worktable 1. The side of the support pad 2 away from the worktable 1 is provided with anti-slip texture. The support pad 2 can increase the friction between the worktable 1 and the contact surface, prevent relative sliding between the worktable 1 and the contact surface, and help improve the stability of the worktable 1.

[0033] In this invention, during use, the paper material is first placed on the L-shaped block 5 from one side, and the surface of the paper material is in contact with the surface of the L-shaped block 5. Then, the tension applied to the mounting block 12 is removed. Since the two ends of the first spring are fixedly connected to the mounting block 12 and the fixing plate 14 respectively, under the elastic force of the first spring, the mounting block 12 and the fixing plate 14 slide relative to each other. At the same time, the rectangular block 7 moves towards the surface of the paper material until the multiple friction protrusions on the clamping plate 11 contact the surface of the paper material. The friction protrusions can increase the friction between the paper material and the paper material. Under the combined action of the L-shaped block 5 and the clamping plate 11, the paper material can be initially fixed. At this time, the gravity block 13 and the mounting block 12 are engaged.

[0034] Since one end of the fixed rod is fixedly connected to the mounting block 12 and the other end is fixedly connected to the limiting block 17, the limiting block 17 will move together with the mounting block 12 under the transmission action of the fixed rod. Since one end of the second spring 19 is fixedly connected to the pressing rod 20 and the other end is fixedly connected to the horizontal plate, and one end of the pressing rod 20 is in contact with the inner wall of the through 18, the cross section of the through 18 is set in a right trapezoid, and the surface of the pressing rod 20 abuts against the inclined surface of the through 18, the pressing rod 20 will move vertically downward during the horizontal movement of the limiting block 17, and the second spring 19 will deform at the same time. During the downward movement of the pressing rod 20, it will contact the surface of the inclined rod 10 and move vertically downward together with the inclined rod 10. The rotating rod 21 rotates relative to the L-shaped block 5, and the torsion spring deforms.

[0035] As the rotating block 8 rotates together with the rotating rod 21, the arc-shaped end face of the rotating block 8 will fit against the surface of the paper material, thus fixing the paper material between the L-shaped block 5 and the rotating block 8. Under the combined action of the clamping plate 11 and the rotating block 8, the upper and lower parts of the paper material can be fixed respectively, resulting in a better fixing effect. During the transmission process of the conveyor belt 3 rotating with the rotating roller 4, the stability of the material is high, and the paper material will not fall due to poor fixing effect, avoiding the lightweight paper material from falling and scattering everywhere. This is more conducive to the use of the paper material by technicians, and the workbench 1 is highly practical.

[0036] Connect the movable block 16 from bottom to top to the opening on the rectangular block 7, keeping the position of the movable block 16 unchanged. Then, rotate the bidirectional lead screw 26. Since each fixed sleeve 27 is threadedly connected to the bidirectional lead screw 26, and one end of each guide block 9 is fixedly connected to the corresponding fixed sleeve 27, while the other end is slidably connected to the groove on the rectangular block 7, the guide block 9's limiting action prevents the fixed sleeve 27 from swinging. During the stable horizontal movement of the two fixed sleeves 27 as the bidirectional lead screw 26 rotates, since one end of the hinge rod 24 is hinged to the fixed sleeve 27 and the other end is hinged to the sliding block 23, the tilt angle of the hinge rod 24 simultaneously... As the change occurs, the sliding block 23 and the insert shaft 22 move vertically upwards simultaneously. During the vertical upward movement of the insert shaft 22, it engages with the moving block 16. Then, the fastening bolt is rotated so that one end passes through the rotating plate 25 and is threadedly connected to the rotating plate 25 until one end of the fastening bolt connects with the corresponding round hole on the rectangular block 7. This prevents the bidirectional lead screw 26 from rotating arbitrarily, thus ensuring stable installation of the moving block 16 and the clamping plate 11. Similarly, when the clamping plate 11 is damaged due to prolonged use, it can be replaced in a timely manner to ensure stable fixation of the paper material in the future.

[0037] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. An integrated device for converting base data based on territorial spatial planning, comprising a workbench (1), characterized in that, Two rotating rollers (4) are rotatably connected to the workbench (1). The two rotating rollers (4) are connected by a conveyor belt (3). Multiple fixed blocks (6) are fixedly connected to the conveyor belt (3). Each fixed block (6) is fixedly connected to an L-shaped block (5). Each of the fixed blocks (6) is fixedly connected to a fixed plate (14), and a mounting block (12) is connected to the fixed plate (14) via a first spring. Each mounting block (12) is fixedly connected to a rectangular block (7), and an opening is provided on the rectangular block (7). A movable block (16) is slidably connected in the opening. A clamping plate (11) is fixedly connected to the movable block (16), and a plurality of friction protrusions are fixedly connected to one end of the clamping plate (11) away from the movable block (16). Each of the mounting blocks (12) is connected to a limiting block (17) by a fixing rod. The limiting block (17) has an opening (18) with a cross-section of a right trapezoid. Each of the L-shaped blocks (5) is connected to a rotating rod (21) by a torsion spring. The rotating rod (21) is provided with a rotating assembly. The rotating assembly includes a rotating block (8) fixedly connected to the rotating rod (21). The rotating block (8) has a convex cross-section and one end of the rotating block (8) is provided with an arc end face. Each L-shaped block (5) is fixedly connected to a horizontal plate, and a pressing rod (20) is connected to the horizontal plate by a second spring (19). A diagonal rod (10) that works in conjunction with the pressing rod (20) is fixedly connected to the rotating rod (21). One end of the extrusion rod (20) contacts the inner wall of the opening (18), the cross-section of the opening (18) is set in a right trapezoid, and the surface of the extrusion rod (20) abuts against the inclined surface of the opening (18).

2. The integrated device for converting base data based on territorial spatial planning according to claim 1, characterized in that, A gravity block (13) is slidably connected to the fixed plate (14). The cross-section of the gravity block (13) is U-shaped. One end of the gravity block (13) is engaged with the mounting block (12).

3. The integrated device for converting base data of land spatial planning according to claim 1, characterized in that, Each rectangular block (7) has a groove on one side, and a bidirectional lead screw (26) arranged horizontally is rotatably connected in the groove. Two fixed sleeves (27) arranged symmetrically are threaded on the bidirectional lead screw (26). A sliding block (23) is slidably connected on the rectangular block (7). Each fixed sleeve (27) is connected to the sliding block (23) through a hinge rod (24).

4. The integrated device for converting base data of land spatial planning according to claim 3, characterized in that, Each of the sliding blocks (23) is fixedly connected to a shaft (22), and the moving block (16) is provided with a slot, and the shaft (22) and the slot are engaged.

5. The integrated device for converting base data of land spatial planning according to claim 3, characterized in that, Each of the fixed sleeves (27) is fixedly connected to a guide block (9), and the rectangular block (7) is provided with a sliding groove, and the guide block (9) and the sliding groove are slidably connected.

6. The integrated device for converting base data of land spatial planning according to claim 3, characterized in that, Each of the bidirectional lead screws (26) is provided with a handle (15) at the end away from the rectangular block (7). A rectangular groove is opened at one end of the bidirectional lead screw (26), and the handle (15) is engaged with the rectangular groove.

7. The integrated device for converting base data of land spatial planning according to claim 3, characterized in that, Each of the bidirectional lead screws (26) is fixedly connected to a rotating plate (25), which is connected to the rectangular block (7) by fastening bolts. The rectangular block (7) has multiple round holes for connecting the fastening bolts.

8. The integrated device for converting base data based on territorial spatial planning according to claim 1, characterized in that, The bottom of the workbench (1) is fixedly connected to a support pad (2), and the side of the support pad (2) away from the workbench (1) is provided with anti-slip texture.

Citation Information

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