Towing rope routing structure for towing plastic tarpaulin
Patent Information
- Application Number
- CN202522357437.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-11-06
AI Technical Summary
[0004]然而在实际使用时,当牵引绳在盐池环境中暴露于高湿度、盐分腐蚀及风力影响时,上述公开的装置以及相类似的现有装置在调整绳径变化时,较为繁琐,导致牵引绳频繁松脱、缠绕或卡滞,不仅降低了牵引塑苫布的移动效率,还加速了绳线磨损,增加了维护成本,同时因固定不牢易造成盐池覆盖不均,影响卤水结晶质量
[0020]该牵引塑苫布用的牵引绳走线结构,通过设置承载弧条、调整棒杆、分离弧板、分离筛板及走线板等结构,能够根据不同牵引绳的直径变化灵活调节走线路径,当走线板和分离筛板内的走线孔重合时,可确保牵引绳自由穿行,保障牵引塑苫布的灵活移动。当走线孔错开时,又能有效限位固定牵引绳,防止其在盐池环境中出现松脱或缠绕现象;
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Figure CN224740594U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wiring structure technology, specifically a wiring structure for a traction rope used for traction plastic tarpaulin. Background Technology
[0002] The traction rope routing structure for traction plastic tarpaulins is used to guide and fix the traction rope of the tarpaulin, ensuring its stable and smooth operation during work.
[0003] A search revealed Chinese utility model patent application CN217307099U, which proposes a "bottom frame sandwich wiring structure and a prefabricated cabin bottom frame using the same". The structure comprises an upper wiring structure, a middle wiring structure, and a lower wiring structure arranged sequentially from top to bottom. The upper wiring structure includes at least one upper wiring trough; the middle wiring structure includes at least one middle wiring trough; and the lower wiring structure includes at least one lower wiring trough. The upper, middle, and lower wiring troughs are parallel to each other laterally and do not overlap.
[0004] However, in actual use, when the traction rope is exposed to high humidity, salt corrosion and wind in the salt pond environment, the above-disclosed device and similar existing devices are cumbersome to adjust the rope diameter, which leads to frequent loosening, tangling or jamming of the traction rope. This not only reduces the moving efficiency of the traction plastic tarpaulin, but also accelerates rope wear and increases maintenance costs. At the same time, the lack of secure fixing can easily cause uneven coverage of the salt pond, affecting the quality of brine crystallization. Utility Model Content
[0005] The purpose of this invention is to provide a traction rope routing structure for traction plastic tarpaulin, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a traction rope routing structure for traction plastic tarpaulin, comprising:
[0007] The support arc strip has several externally fixed screw seats for assembly to the solid part at the edge of the salt pond by inserting self-tapping screws;
[0008] Adjust the rod so that it is inserted into the top of the support arc strip and is parallel to the axial direction of the long side of the support arc strip;
[0009] The separating arc plate is movably installed between the adjusting rod and the bearing arc strip;
[0010] A separation sieve plate is fixed to the outer arc surface of the separation arc plate;
[0011] The wiring board is fixed to the outside of the long strip of the supporting arc strip. Both the wiring board and the separating screen plate are provided with wiring holes, and each wiring hole has a different specification.
[0012] The wiring holes set in the separation screen plate, as the separation arc plate moves axially on the bearing arc strip, the wiring plate and the wiring holes in the separation screen plate coincide or stagger, which is used to adjust the wiring path of the traction rope to adapt to different diameter changes of the traction rope.
[0013] Furthermore, when the wiring holes in the wiring plate and the separation screen plate coincide, the traction rope can pass freely and allow the traction plastic tarpaulin to move flexibly. When the wiring holes in the wiring plate and the separation screen plate are misaligned, the traction rope is limited and fixed to prevent the rope from loosening or tangling in the salt pond environment.
[0014] Furthermore, a movable notch is provided at the middle of the long side of the supporting arc strip, and an assembly seat is slidably connected within the movable notch. An electric telescopic cylinder is fixed at the bottom of the long side of the supporting arc strip, and the output shaft of the electric telescopic cylinder is fixed to the bottom of the assembly seat. The top of the assembly seat is in contact with the bottom of the separating arc plate.
[0015] Furthermore, an adjustment notch is provided at the arc edge of the bearing arc strip, and a threaded rod is fixed to one end of the adjustment rod. The threaded rod passes through the adjustment notch and is fitted with a positioning nut.
[0016] Furthermore, a stabilizing platform is fixed to one end of the top edge of the supporting arc strip, and one end of the wiring board is fixed to the stabilizing platform.
[0017] Furthermore, a telescopic rod is fixed to one end of the top of the mounting base, and the telescopic end of the telescopic rod is inserted and fixed inside the separation arc plate, so that the top of the separation arc plate and the adjusting rod do not contact each other.
[0018] Furthermore, an adapter groove is provided at the middle end of the surface of the adjusting rod, and the adapter groove is adapted to the telescopic end.
[0019] Compared with the prior art, the beneficial effects of this utility model are:
[0020] The traction rope routing structure for this traction tarpaulin utilizes a combination of supporting arc bars, adjusting rods, separating arc plates, separating screen plates, and routing plates. This allows for flexible adjustment of the routing path based on the diameter of the traction rope. When the routing holes in the routing plate and separating screen plate overlap, the traction rope can pass freely, ensuring the flexible movement of the traction tarpaulin. When the routing holes are misaligned, the traction rope is effectively limited and fixed, preventing it from loosening or tangling in the saltwater environment.
[0021] Meanwhile, the electric telescopic cylinder drives the assembly base to slide, further adjusting the position of the separation arc plate, thereby changing the overlapping or staggered state of the wiring holes to meet diverse usage needs. In addition, the adjusting rod is fixed to the bearing arc strip by the screw rod and positioning nut, which facilitates disassembly and installation, improving the practicality and maintainability of the structure. Attached Figure Description
[0022] Figure 1 This is an isometric drawing of the present invention;
[0023] Figure 2 This is a diagram showing the bottom structure of this utility model;
[0024] Figure 3 This is the main sectional view of the present invention.
[0025] In the diagram: 1. Adjusting rod; 2. Separating arc plate; 3. Separating screen plate; 4. Screw seat; 5. Stabilizing platform; 6. Wiring board; 7. Wiring hole; 8. Bearing arc strip; 9. Adjusting notch; 10. Positioning nut; 11. Telescopic rod; 12. Assembly seat; 13. Movable notch; 14. Electric telescopic cylinder. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Before understanding the technical solution proposed in this application, it is important to understand that the specific application scenario of the technical solution proposed in this application is the brine crystallization area at the edge of the salt pond, which is mainly used to cover and pull the plastic tarpaulin to regulate the brine evaporation process.
[0028] like Figures 1-3 As shown, this utility model provides a technical solution: a traction rope routing structure for traction plastic tarpaulin, comprising:
[0029] The supporting arc strip 8 has several screw seats 4 fixed on its exterior. These screw seats 4 are used to assemble the solid part of the edge of the salt pool by inserting self-tapping screws to achieve a stable installation.
[0030] Adjusting rod 1 is inserted into the top of the bearing arc bar 8 and is set parallel to the long strip side of the bearing arc bar 8 to facilitate axial displacement adjustment;
[0031] The separating arc plate 2 is movably installed between the adjusting rod 1 and the bearing arc strip 8 to provide a support platform for the separating screen plate 3;
[0032] The separating screen plate 3 is fixed on the outer arc surface of the separating arc plate 2 to form the guide surface of the traction rope;
[0033] The cable tray 6 is fixed to the outside of the long strip of the supporting arc strip 8. Both the cable tray 6 and the separating screen plate 3 are provided with cable holes 7. Each cable hole 7 has a different specification to accommodate the change in the diameter of the traction rope.
[0034] It should be noted that in the technical solution proposed in this application, the wiring hole 7 set in the separation screen plate 3 can be aligned or staggered with the axial movement of the separation arc plate 2 on the bearing arc strip 8, so as to adjust the wiring path of the traction rope and ensure flexible adaptation of traction ropes of different diameters.
[0035] It is worth noting that in this technical solution, when the wiring plate 6 and the wiring hole 7 in the separation screen plate 3 coincide, the traction rope can pass through freely, enabling the traction plastic tarpaulin to move flexibly and improving operating efficiency; when the wiring plate 6 and the wiring hole 7 in the separation screen plate 3 are misaligned, the traction rope is limited and fixed, effectively preventing the rope from loosening or tangling in the salt pond environment and enhancing stability.
[0036] As a preferred embodiment, in this embodiment, a movable notch 13 is provided at the middle of the long strip edge of the bearing arc bar 8. An assembly seat 12 is slidably connected inside the movable notch 13. An electric telescopic cylinder 14 is fixed at the bottom of the long strip edge of the bearing arc bar 8. The output shaft of the electric telescopic cylinder 14 is fixed to the bottom of the assembly seat 12. The top of the assembly seat 12 contacts the bottom of the separation arc plate 2, thereby realizing automatic control of the movement of the separation arc plate 2. In addition, an adjustment notch 9 is provided at the arc edge of the bearing arc bar 8. A screw rod is fixed at one end of the adjustment rod 1. The screw rod passes through the adjustment notch 9 and is equipped with a positioning nut 10, which facilitates manual locking of the position of the adjustment rod 1.
[0037] As a preferred embodiment, in this embodiment, a stabilizing platform 5 is fixed to one end of the top of the long strip of the supporting arc strip 8, and one end of the wiring plate 6 is fixed to the stabilizing platform 5 to ensure the firm support of the wiring plate 6. In addition, a telescopic rod 11 is fixed to one end of the top of the mounting base 12. The telescopic end of the telescopic rod 11 is inserted and fixed inside the separating arc plate 2. The top of the separating arc plate 2 does not contact the adjusting rod 1, maintaining independent movement space. Finally, an adapter groove is opened in the middle of the surface of the adjusting rod 1. The adapter groove is adapted to the telescopic end to realize the cooperation between the telescopic rod 11 and the adjusting rod 1.
[0038] It is worth noting that, in actual use, the device proposed in this application firstly assembles the bearing arc bar 8 onto the solid part of the edge of the salt pool through the screw seat 4 and tightens it with through-hole self-tapping bolts to ensure that the device is stably installed in the working position. Then, rotate the positioning nut 10 to adjust the axial position of the adjusting rod 1 inside the bearing arc bar 8 to adapt to the layout requirements of different traction ropes. Then, start the electric telescopic cylinder 14 or operate manually to drive the mounting seat 12 to slide in the movable notch 13, thereby driving the separation arc plate 2 to move, so that the wiring holes 7 in the separation screen plate 3 and the wiring plate 6 are precisely aligned or staggered. Select the appropriate hole diameter according to the diameter of the traction rope. Then, pass the traction rope through the wiring holes 7 of the separation screen plate 3 and the wiring plate 6 in sequence to form a guide path to ensure that the rope passes smoothly. Finally, operate the traction device to drive the plastic tarpaulin to move flexibly or be fixedly limited along the surface of the salt pool to achieve efficient deployment and retrieval operations, and monitor the cooperation status of the telescopic rod 11 and the adjusting rod 1 to maintain independent movement space, prevent the rope from loosening or tangling, and improve overall stability and operating efficiency.
[0039] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended embodiments and their equivalents.
Claims
1. A traction rope routing structure for traction of plastic tarpaulin, characterized in that, include: The supporting arc strip (8) has several screw seats (4) fixed on the outside, which are used to assemble it to the solid part at the edge of the salt pool by inserting self-tapping screws; Adjust the rod (1) so that it is inserted into the top of the bearing arc strip (8) and is parallel to the long side of the bearing arc strip (8) axially; The separation arc plate (2) is movably installed between the adjusting rod (1) and the bearing arc strip (8); The separation sieve plate (3) is fixed on the outer arc surface of the separation arc plate (2); The wiring board (6) is fixed to the outside of the long strip of the bearing arc strip (8). Both the wiring board (6) and the separation screen plate (3) are provided with wiring holes (7), and each wiring hole (7) has a different specification. The wiring holes (7) set in the separation screen plate (3) are aligned or staggered with the axial movement of the separation arc plate (2) on the bearing arc strip (8), so as to adjust the wiring path of the traction rope to adapt to the diameter changes of different traction ropes.
2. The traction rope routing structure for traction plastic tarpaulin according to claim 1, characterized in that: When the wiring hole (7) in the wiring plate (6) and the separation screen plate (3) overlaps, the traction rope can pass through freely and allow the traction plastic tarpaulin to move flexibly. When the wiring hole (7) in the wiring plate (6) and the separation screen plate (3) is misaligned, the traction rope is limited and fixed to prevent the rope from loosening or tangling in the salt pond environment.
3. The traction rope routing structure for traction plastic tarpaulin according to claim 1, characterized in that: A movable notch (13) is provided at the middle of the long side of the bearing arc strip (8). An assembly seat (12) is slidably connected in the movable notch (13). An electric telescopic cylinder (14) is fixed at the bottom of the long side of the bearing arc strip (8). The output shaft of the electric telescopic cylinder (14) is fixed to the bottom of the assembly seat (12). The top of the assembly seat (12) is in contact with the bottom of the separation arc plate (2).
4. The traction rope routing structure for traction plastic tarpaulin according to claim 1, characterized in that: An adjustment notch (9) is provided at the arc edge of the bearing arc bar (8), and a screw rod is fixed at one end of the adjustment rod (1). The screw rod passes through the adjustment notch (9) and is equipped with a positioning nut (10).
5. The traction rope routing structure for traction plastic tarpaulin according to claim 1, characterized in that: One end of the top edge of the bearing arc strip (8) is fixed with a stabilizing platform (5), and one end of the wiring board (6) is fixed to the stabilizing platform (5).
6. The traction rope routing structure for traction plastic tarpaulin according to claim 3, characterized in that: One end of the top of the mounting base (12) is fixed with a telescopic rod (11), and the telescopic end of the telescopic rod (11) is inserted and fixed inside the separation arc plate (2). The top of the separation arc plate (2) and the adjusting rod (1) do not contact each other.
7. The traction rope routing structure for traction plastic tarpaulin according to claim 6, characterized in that: The adjusting rod (1) has an adapter groove at the middle end of its surface, and the adapter groove is adapted to the telescopic end.
Citation Information
Patent Citations
Bottom frame interlayer wiring structure and prefabricated cabin bottom frame applying same
CN217307099U