Movable nested electric rain shelter
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]我国南方雨期持续时间长,雨量大,不宜进行露天钢筋加工,如需进行,则需采取防雨措施,此前应用较多的为临时搭设防雨棚架、伸缩推拉式防雨棚等,但此类防雨棚存在搭设质量不高、构配件易损坏、维修频次高、一次投入较大、周转利用率低等问题
[0011]本实用新型的有益效果为:本实用新型结构稳定、耐久性好、周转效率高,可满足大型钢筋骨架棚内加工,棚外吊运的需求,比如预制钢筋混凝土箱梁顶板钢筋骨架,在防雨棚内加工完毕,将雨棚移出吊装区域,即可采用门式起重机将钢筋骨架整体吊运至安装区域。
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Figure CN224620979U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of construction and processing technology, and in particular to a movable nested electric rain shelter. Background Technology
[0002] In southern my country, the rainy season is long and the rainfall is heavy, making it unsuitable for open-air steel bar processing. If it is necessary, rain protection measures must be taken. In the past, temporary rain shelters and retractable rain shelters were commonly used. However, these rain shelters have problems such as poor construction quality, easy damage to components, high maintenance frequency, large initial investment, and low turnover rate.
[0003] Solving the aforementioned technical problems is the challenge facing this utility model. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a movable, nested, electric rainproof shed that is structurally stable, durable, and has high turnover efficiency, meeting the needs of processing large steel frame sheds inside and hoisting them outside.
[0005] The technical solution adopted by this utility model to solve its technical problem is as follows: This utility model provides a movable nested electric rain shelter, including a track system, a walking system and a rain shelter system. The track system includes a track and a rail plate, and the rain shelter system walks on the track. The rail plates are symmetrically arranged on both sides of the track, with a spacing of 80cm between them, to fix the position of the track and ensure that the track is straight and stable; The walking system includes a controller, a drive wheel box, a longitudinal wheel box, a brake, and a hydraulic rail clamp. The drive wheel box includes a drive wheel, a drive motor, and a brake motor. The controller controls the canopy system to move forward, stop, and move backward. The drive motor drives the drive wheel to move longitudinally on the track at a speed of 15 m / min. The brake motor is used to brake the canopy. The hydraulic rail clamp and limiters are installed on both sides of the canopy system's walking direction to ensure the safe use of the canopy. The canopy system is a rain shelter, and there are two rain shelters, which are nested in structure.
[0006] The track is a P24 track, with 4 tracks arranged, and each track is 24m long. Each of the aforementioned rain shelters is connected to two of the aforementioned tracks.
[0007] Each of the rain shelters is provided with four drive wheel boxes and two longitudinal transfer wheel boxes, and the drive motor is coaxially connected to the drive wheels; The limiters include infrared limiters and mechanical limiters.
[0008] Each of the aforementioned rain shelters includes supports on both sides, a roof at the top, and double-section truss longitudinal and transverse beams; The support includes several vertically arranged H-beams and inter-column tie rods between the H-beams. The support is connected to the walking system by bolts. The double-section truss longitudinal beams are arranged in three rows and are connected to the support by bolts; The double-section truss longitudinal beams include welded horizontal beams, longitudinal beams, diagonal braces, and double-section horizontal braces, which are tied together every 6.5m with round steel and turnbuckles to ensure overall stability; The crossbeams are made of C12 channel steel, with a spacing of 1.2m between adjacent crossbeams, and a canopy is provided on the top support.
[0009] The truss is sloped on both sides with a 1% gradient to facilitate drainage. The roof is made of 0.6mm thick 960 type color steel sheet, which is connected to C12 channel steel with bolts to form an integral roof.
[0010] The dimensions of the two rain shelters are 9*35*4m and 9*34*3m, respectively.
[0011] The beneficial effects of this utility model are as follows: This utility model has a stable structure, good durability, and high turnover efficiency, which can meet the needs of processing large steel reinforcement skeletons inside the shed and hoisting them outside the shed. For example, the steel reinforcement skeleton of the precast reinforced concrete box girder top slab can be processed inside the rain shelter. After the rain shelter is moved out of the hoisting area, a gantry crane can be used to hoist the steel reinforcement skeleton as a whole to the installation area.
[0012] Specifically, this includes: 1. Effectively reducing labor costs through electric drive; 2. Nested use: after the large steel reinforcement frame is processed inside the shed, it can be lifted away by a gantry crane using a movable canopy, improving production efficiency; 3. Ensuring that construction operations can be carried out normally under various weather conditions; 4. The components are made of steel materials such as shaped steel, channel steel, and round steel, which have strong load-bearing capacity, are not easily damaged, and have a high turnover rate. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the installation of the track pressure plate of this utility model.
[0014] Figure 2 This is a schematic diagram of the drive wheel structure of this utility model.
[0015] Figure 3 This is a schematic diagram of the installation of the drive motor and brake motor of this utility model.
[0016] Figure 4 This is the right view of the present invention.
[0017] Figure 5 This is a top view of the present invention.
[0018] Figure 6 This is the front view of the present invention.
[0019] The attached diagram is labeled as follows: 1. Track; 2. Rail plate; 3. Drive wheel; 4. Drive motor; 5. Brake motor; 6. H-beam; 7. Crossbeam; 8. Rain shelter; 9. Roof; 10. Double-section truss longitudinal beam. Detailed Implementation
[0020] The technical features of this solution can be clearly explained. The following is a detailed description of the solution through specific implementation methods.
[0021] See Figures 1 to 6 As shown, this embodiment is a movable nested electric rain shelter, including a track system, a walking system and a rain shelter system. The track system includes a track 1 and a rail plate 2, and the rain shelter system walks on the track. Rail plates 2 are symmetrically arranged on both sides of track 1, with a spacing of 80cm between the rail plates 2, to fix the position of track 1 and ensure that the track is straight and stable; The walking system includes a controller, a drive wheel box, a longitudinal transfer wheel box, a brake, and a hydraulic rail clamp. The drive wheel box includes a drive wheel 3, a drive motor 4, and a brake motor 5. The controller controls the forward, stop, and reverse movement of the canopy system. The drive motor 4 drives the drive wheel 3 to move longitudinally on the track 1 at a speed of 15 m / min. The brake motor 5 is used to brake the canopy. Hydraulic rail clamps and limiters are installed on both sides of the canopy system in the direction of travel to ensure the safety of the canopy. The canopy system consists of two rain shelters 8, which are nested in a nested structure.
[0022] Track 1 is a P24 track, with 4 tracks arranged, and each track 1 is 24m long; Each rain shelter 8 is connected to two tracks 1.
[0023] Each rain shelter 8 is equipped with four drive wheel boxes and two longitudinal transfer wheel boxes, and the drive motor 4 is coaxially connected to the drive wheel 3; Limiters include infrared limiters and mechanical limiters.
[0024] Each rain shelter 8 includes supports on both sides, a roof 9 at the top, double-section truss longitudinal beams 10 and transverse beams 7; The support consists of several vertically arranged H-beams 6 and inter-column tie rods between the H-beams 6. The support is connected to the travel system by bolts. The double-section truss longitudinal beams 10 are arranged in three rows and are connected to the supports by bolts; The double-section truss longitudinal beam 10 includes welded horizontal beams, longitudinal beams, diagonal braces, and double-section horizontal braces, which are tied together with round steel and turnbuckles at intervals of 6.5m to ensure overall stability; The crossbeam 7 is made of C12 channel steel, the distance between adjacent crossbeams 7 is 1.2m, and the top is supported by a canopy 9.
[0025] The truss is sloped on both sides with a 1% gradient to facilitate drainage. The roof 9 consists of 0.6mm thick 960 type color steel tiles, which are connected to C12 channel steel by bolts to form the whole roof 9.
[0026] The two rain shelters have dimensions of 9*35*4m and 9*34*3m respectively.
[0027] In actual use of this utility model: First, pour a concrete foundation and pre-embed 2 anchor bolts for the rail plate; The second step is to install track 1 and rail clamping plate 2. The third step is to install the drive wheel box and longitudinal transfer wheel box of the walking system; The fourth step is to weld the outriggers, and then bolt them to the longitudinal transfer wheel box to form a whole; Fifth step, weld the double-section truss longitudinal beams 10 and connect them with the legs to form a whole; set horizontal ties for the three rows of double-section truss longitudinal beams 10. Step 6: Lay the crossbeams 7 of the ceiling 9 and fix them to the longitudinal beams 10 of the double truss with bolts; Step 7: Lay the 9-color steel roof tiles and fix them to the 9-beam roof using self-tapping screws; Step 8: Install safety components such as brakes, hydraulic rail clamps, infrared limiters, and mechanical limiters; Step nine: Install the power system; Step 10: Debugging and acceptance, ensuring that the 8 longitudinal transfer wheel boxes of the rainproof canopy run in the same direction when the motor is driven; that the braking system, hydraulic rail clamps, infrared limiters, and mechanical limiters are sensitive and reliable; that the welded joints are firm, without weld defects, and that all bolts are tightened without omission; The eleventh step is to debug and accept the equipment before it can be used for on-site construction.
[0028] The technical features of this utility model not described can be implemented by or by using existing technology, and will not be repeated here. Of course, the above description is not a limitation of this utility model, and this utility model is not limited to the examples above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model should also be within the protection scope of this utility model.
Claims
1. A movable, nested, electrically powered rain shelter, characterized in that, It includes a track system, a walking system and a canopy system. The track system includes a track (1) and a rail plate (2). The canopy system walks on the track. The rail plates (2) are symmetrically arranged on both sides of the track (1); The walking system includes a controller, a drive wheel box, a longitudinal transfer wheel box, a brake, and a hydraulic rail clamp. The drive wheel box includes a drive wheel (3), a drive motor (4), and a brake motor (5). The drive motor (4) drives the drive wheel (3) to move longitudinally on the track (1). The canopy system is a rain shelter (8), and there are two rain shelters (8), and the two rain shelters (8) are nested in a nested structure; The canopy system is equipped with hydraulic rail clamps and limiters on both sides of the walking direction.
2. The movable nested electric rain shelter according to claim 1, characterized in that, The track (1) is a P24 track, with 4 tracks arranged, and the length of a single track (1) is 24m; Each of the rain shelters (8) is connected to two of the tracks (1).
3. The movable nested electric rain shelter according to claim 1, characterized in that, Each of the rain shelters (8) is provided with four drive wheel boxes and two longitudinal wheel boxes, and the drive motor (4) is coaxially connected to the drive wheel (3); The limiters include infrared limiters and mechanical limiters.
4. The movable nested electric rain shelter according to claim 1, characterized in that, Each of the aforementioned rain shelters (8) includes supports on both sides, a roof (9) at the top, double-section truss longitudinal beams (10) and transverse beams (7); The support includes several vertically arranged H-beams (6) and inter-column tie rods between the H-beams (6). The support is connected to the walking system by bolts.
5. The movable nested electric rain shelter according to claim 4, characterized in that, The double-section truss longitudinal beam (10) is provided in three rows and is connected to the support by bolts; The double-section truss longitudinal beam (10) includes welded horizontal beams, longitudinal beams, diagonal braces and double-section horizontal braces, which are connected by round steel and turnbuckles at intervals of 6.5m.
6. The movable nested electric rain shelter according to claim 4, characterized in that, The crossbeam (7) is made of C12 channel steel, and the distance between adjacent crossbeams (7) is 1.2m. The top is supported by a canopy (9).
7. The movable nested electric rain shelter according to claim 4, characterized in that, The roof (9) includes 0.6mm thick 960 type color steel tile, which is connected to C12 channel steel by bolts to form the whole roof (9).
8. The movable nested electric rain shelter according to claim 1, characterized in that, The dimensions of the two rain shelters (8) are 9*35*4m and 9*34*3m, respectively.