Movable beam-making shielding shed
By designing a mobile beam-made shed, the problems of cumbersome construction and low flexibility of existing steel-structured sheds have been solved, and effective protection and diversity adaptation for prefabricated beams have been achieved.
Patent Information
- Application Number
- CN202510192763.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-05-30
AI Technical Summary
The existing steel-structured canopy is cumbersome to build and has low flexibility, making it difficult to apply to prefabricated beams of different sizes, and the protection function of prefabricated beams is relatively single.
A mobile beam shading shed is designed, including a base assembly, a lower protection assembly, a support column assembly, a upper protection assembly, a rain cover assembly and a beam lift assembly. Through the combination and dynamic adjustment of these components, prefabricated beams can be effectively surrounded and protected and adapted to prefabricated beams of different sizes.
Effective protection of prefabricated beams is achieved, external water flows in, maintains a suitable preparation environment, and improves the performance and stability of the device.
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Figure CN120061613A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of building construction, and particularly relates to a mobile beam-making shielding shed. Background Art
[0002] Beam making refers to prefabricating beams in a factory and then transporting them to the construction site for installation and fixation at the designed positions as required.
[0003] During the preparation process of precast beams, it needs to be completed under good weather conditions. If it encounters rain or high temperature, the preparation effect of precast beams will be greatly reduced, and even the preparation of precast beams may fail. Therefore, shielding equipment is required for protection to ensure their successful preparation and shaping.
[0004] As described in the patent application with the reference publication number CN118532041A, the present invention discloses a method for building a mobile steel structure rain shed. S1. Prepare the steel components constituting the movable rain shed; S2. Plan the established area to determine the installation position of the movable rain shed; S3. Assemble the two support steel rows constituting a movable rain shed into a whole independently, and assemble the top support steel truss into a whole; S4. Lay tracks at the preset positions and install walking wheels at the bottom of the support steel rows; S5. Move the gantry crane to the designated position blocked by the movable rain shed to be assembled; S6. Assemble the movable rain shed blocking the gantry crane; first hoist and fix the two support steel rows at the designated positions, then hoist and fix the top support steel truss to the two support steel rows, and finally cover the rain shed roof on the top of the top support steel truss; S7. Repeat steps S3 - S6 to construct the movable rain sheds one by one until the construction of the preset number of movable rain sheds is completed; S8. Construct the driving lane; it can meet the function of batch transferring precast beams, is more conducive to reducing the production cycle, improving the flow production efficiency of precast beams, and reducing the production cost.
[0005] After the steel structure rain shed built by the above technical means is successfully built, it can achieve the function of "batch transferring precast beams, which is more conducive to reducing the production cycle", but its construction operation is cumbersome, its flexibility is low, it is difficult to apply to precast beams of different sizes, and its protection function for precast beams is relatively single. To solve the above problems, it is necessary to provide a mobile beam-making shielding shed. Summary of the Invention
[0006] The present invention provides a mobile beam-making shielding shed, aiming to solve the problems that after the steel structure rain shed built by the existing technical means is successfully built, it can achieve the function of "batch transferring precast beams, which is more conducive to reducing the production cycle", but its construction operation is cumbersome, its flexibility is low, it is difficult to apply to precast beams of different sizes, and its protection function for precast beams is relatively single.
[0007] The present invention is implemented as follows. The mobile beam manufacturing shielding shed includes a base assembly: an outer wall of the base assembly is fixedly connected with a lower protection assembly, a top of the base assembly is fixedly connected with a support column assembly, a top of the support column assembly is provided with an upper protection assembly, a top of the support column assembly is provided with a rain shielding assembly, and a bottom of the base assembly is provided with a beam lifting assembly;
[0008] Among them, the lower protection assembly includes a first limit frame and a second limit frame fixedly arranged on the base assembly, and a second drive motor fixedly arranged above the base assembly. An inner wall of the first limit frame is fitted and slidably connected with a front protection plate, an inner wall of the second limit frame is fitted and slidably connected with a side protection plate, an output shaft of the second drive motor is fixedly connected with a second drive disk through a coupling, and an outer wall of the second drive disk is in contact connection with an outer wall of the side protection plate.
[0009] Preferably, an outer wall of the first limit frame is fixedly connected with a first drive motor, an output shaft of the first drive motor is fixedly connected with a first drive disk through a coupling, and an outer wall of the first drive disk is in contact connection with an outer wall of the front protection plate;
[0010] Bottom parts of the front protection plate and the side protection plate are thinned and sharpened. Through the setting of the lower protection assembly, after the base assembly, the support column assembly, the upper protection assembly, and the rain shielding assembly are unfolded, according to the unfolded dimensions, a suitable front protection plate is installed in the first limit frame, and by starting and controlling the use of the second drive motor and the first drive motor to drive the second drive disk and the first drive disk to rotate, the positions of the front protection plate and the side protection plate are adjusted to rise and fall along inner walls of the first limit frame and the second limit frame, so as to insert the front protection plate and the side protection plate into the soil. The four front protection plates and the side protection plate surround the precast beam, playing a good protection effect on the precast beam during the manufacturing and forming process. Moreover, the front protection plate and the side protection plate are inserted into the soil, which can effectively prevent external water from flowing into the precast beam placement area and maintain a suitable manufacturing environment.
[0011] Preferably, the support column assembly includes a connection seat fixed on the base assembly. An outer wall of the connection seat is fixedly connected with a lower main sleeve through a flange and bolts. An outer wall of the lower main sleeve is slidably connected with an upper main sleeve, and a top end of the upper main sleeve is fixedly connected with an upper cross beam;
[0012] The inner walls of the upper main sleeve and the lower main sleeve are provided with main lifting hydraulic cylinders. The upper and lower ends of the main lifting hydraulic cylinders are fixedly connected between the connecting seats and the upper crossbeam respectively. Through the setting of the support column assembly, during use, by starting and controlling the main lifting hydraulic cylinders, the positions of the upper protection assembly and the rain shielding assembly on the upper crossbeam can be adjusted up and down as needed, so as to lift and open the use height of the device, thereby improving the lighting effect and air circulation effect of the precast beams placed inside the device, and further improving the preparation efficiency and effect of the precast beams.
[0013] Preferably, the upper protection assembly includes side connection support blocks fixedly arranged on the upper crossbeam. The inner wall of the side connection support blocks is movably connected with folding shielding plates through connecting shafts.
[0014] The folding shielding plates include several single plates, and adjacent single plates are movably connected in series through connecting shafts. Through the setting of the upper protection assembly, during use, a good sunshade effect on the precast beams directly below can be achieved. The setting of the folding shielding plates can achieve better cooperation with pulling and moving the base assemblies on both sides according to needs to adjust the size of the device, improving the service performance of the device.
[0015] Preferably, the rain shielding assembly includes several rod sleeves and a winding motor fixedly arranged on the upper crossbeam. The rod sleeves are fitted with end rods, and the inner walls of the rod sleeves are fitted with winding rods. The output shaft of the winding motor is fixedly connected to one end of the winding rod through a coupling. The outer wall of the winding rod is wound with a waterproof cloth, and one end of the waterproof cloth is fixedly connected to the outer wall of the end rod. Through the setting of the rain shielding assembly, the setting of the waterproof cloth can achieve a good rain and snow shielding effect. By driving the winding rod to rotate by the winding motor, the waterproof cloth can be wound and unwound, and further, according to needs, it can better cooperate with pulling and moving the base assemblies on both sides to adjust the size of the device, improving the service performance of the device.
[0016] Preferably, the beam lifting assembly includes a socket mechanism fitted at the bottom of the base assembly. The inner wall of the socket mechanism is fixedly connected with a third driving motor. The output shaft of the third driving motor is fixedly connected with a gear through a coupling. The inner wall of the socket mechanism is slidably connected with a beam lifting block.
[0017] The beam-lifting block includes a straight plate and a trapezoidal block that are fitted and slidably arranged on the inner wall of the socket mechanism. The top of the straight plate is fixedly connected with several teeth at equal intervals, and the outer wall of the gear is meshed and connected with the outer wall of the gear; through the setting of the beam-lifting assembly, during use, after the bottom of the socket mechanism contacts the ground, the third driving motor is started to drive the gear to rotate, so that the gear moves outward along the sliding track on the inner wall of the socket mechanism. The trapezoidal block is provided, and the front end of the trapezoidal block first inserts into the bottom of the precast beam, and as the third driving motor drives the trapezoidal block forward, the trapezoidal block gradually inserts into the precast beam inward, and then slowly lifts the precast beam from one end, so that the user can carry the precast and formed beam.
[0018] Preferably, the socket mechanism includes a sliding seat arranged at the bottom of the base assembly. The bottom of the sliding seat is fixedly connected with a lower lifting hydraulic cylinder. The bottom of the lower lifting hydraulic cylinder is fixedly connected with a rotating shaft. The bottom of the rotating shaft is movably connected with a sleeve. The bottom of the sleeve is fixedly connected with a socket. The inner wall of the socket is provided with a limiting sliding groove. The bottom of the socket is fixedly connected with several anti-sliding blocks, and the anti-sliding blocks are inverted conical anti-sliding blocks; through the setting of the socket mechanism, during use, first, by starting and controlling the lower lifting hydraulic cylinder, the component can be retracted and extended for use. After the bottom of the socket contacts the ground, the setting of the inverted conical anti-sliding blocks can achieve a better contact effect with the ground of the anti-sliding blocks. If it is a muddy ground, the anti-sliding blocks can directly sink into the ground, playing a better stable anti-sliding effect. Among them, the setting of the limiting sliding groove can achieve a better matching sliding effect between the limiting sliding groove and the straight plate in the beam-lifting block.
[0019] Preferably, the base assembly includes a lower cross beam. The bottom of the lower cross beam is fixedly connected with a wheel protection sleeve. The bottom of the lower cross beam is fixedly connected with a driving motor. The inner wall of the wheel protection sleeve is movably connected with a bearing shaft. The inner wall of the wheel protection sleeve is movably connected with several rollers through the bearing shaft. The outer wall of the bearing shaft is fixedly connected with a second bevel gear. The output shaft of the driving motor is fixedly connected with a first bevel gear through a coupling. The outer wall of the first bevel gear is meshed and connected with the outer wall of the second bevel gear; through the setting in the base assembly, during use, the driving motor is started and controlled. By driving the first bevel gear to rotate, the first bevel gear drives the second bevel gear, driving the rollers to roll, so as to realize pushing along the pushing direction, and further realize effectively moving the effective protection area of the shielding shed according to the use needs.
[0020] Preferably, the base assembly further includes a lower telescopic hydraulic cylinder fixedly connected to the bottom of the lower cross beam, and an anti-slip seat is fixedly connected to the bottom of the lower telescopic hydraulic cylinder; through the setting in the base assembly, when the shed moves in the protection area of the precast beam, the lower telescopic hydraulic cylinder is started and controlled to make the anti-slip seat contact the ground, thereby preventing the shed from rolling due to the slope of the ground, improving the stability of the device.
[0021] Compared with the prior art, the embodiments of the present application mainly have the following beneficial effects:
[0022] Through the setting of the lower protection component, when the base component, the support column component, the upper protection component and the rain shelter component are unfolded, according to the unfolded size, a suitable front protection plate is installed in the first limit frame, and the second transmission motor and the first transmission motor are started and controlled to drive the second transmission disc and the first transmission disc to rotate, so as to adjust the positions of the front protection plate and the side protection plate along the inner walls of the first limit frame and the second limit frame, so as to insert the front protection plate and the side protection plate into the soil. The four front protection plates and the side protection plates surround the precast beam, playing a good protection effect on the precast beam during the preparation process, and the front protection plate and the side protection plate are inserted into the soil, which can effectively prevent external water from flowing into the precast beam placement area and maintain a suitable preparation environment;
[0023] Through the setting of the support column component, during use, by starting and controlling the main lifting hydraulic cylinder, the positions of the upper protection component and the rain shelter component on the upper cross beam can be adjusted according to needs, so as to lift and open the use height of the device, thereby improving the lighting effect and air circulation effect of the precast beam placed inside the device, and further improving the preparation efficiency and effect of the precast beam;
[0024] Through the setting of the upper protection component, during use, a good shading effect on the precast beam directly below can be achieved. The setting of the folding baffle can better cooperate with pulling and moving the base components on both sides according to needs to adjust the size of the device, improving the performance of the device;
[0025] Through the setting of the rain shelter component, the setting of the waterproof cloth can achieve a good rain and snow shielding effect. The winding motor drives the winding rod to rotate, so as to wind and unwind the waterproof cloth, and further can better cooperate with pulling and moving the base components on both sides according to needs to adjust the size of the device, improving the performance of the device;
[0026] Through the setting of the beam-lifting component, during use, after the bottom of the socket mechanism contacts the ground, start the third drive motor to drive the gear to rotate, so that the gear moves outward along the sliding track on the inner wall of the socket mechanism. With the setting of the trapezoidal block, the front end of the trapezoidal block first inserts into the bottom of the precast beam, and as the third drive motor drives the trapezoidal block forward, the trapezoidal block gradually inserts into the precast beam inward, and then slowly lifts the precast beam from one end, so that the user can carry the precast and formed beam; through the setting of the socket mechanism, during use, first, by starting and controlling the lifting hydraulic cylinder, the component can be retracted and extended for use. When the bottom of the socket contacts the ground, the inverted conical anti-slip block can achieve a better contact effect with the ground. If it is a muddy ground, the anti-slip block can directly sink into the ground, achieving a better stable anti-slip effect. Among them, the setting of the limit chute can achieve a better sliding effect in cooperation with the straight plate in the beam-lifting block;
[0027] Through the setting in the base component, during use, start and control the drive motor. By driving the first bevel gear to rotate, the first bevel gear drives the second bevel gear, driving the rollers to roll, so as to realize pushing along the pushing direction, and then realize effectively protecting the area that can be moved according to the use needs of the shielding shed; through the setting in the base component, when the shed moves in the protection area of the precast beam, start and control the lower telescopic hydraulic cylinder, so that the anti-slip seat contacts the ground, thus preventing the shed from rolling due to the slope of the ground, improving the stability of the device. Brief Description of the Drawings
[0028] Figure 1 is the front view of the present invention;
[0029] Figure 2 is the structural schematic diagram of the support column component of the present invention;
[0030] Figure 3 is the structural schematic diagram of the lower protection component of the present invention;
[0031] Figure 4 is the structural schematic diagram of the upper protection component of the present invention;
[0032] Figure 5 is the structural schematic diagram of the rain shielding component of the present invention;
[0033] Figure 6 is the structural schematic diagram of the beam-lifting component of the present invention;
[0034] Figure 7 is the structural schematic diagram of the socket mechanism of the present invention;
[0035] Figure 8 is the structural schematic diagram (one) of the base component of the present invention;
[0036] Figure 9 This is the second structural schematic diagram of the base assembly of the present invention.
[0037] In the figure: 1. Base assembly; 101. Lower cross beam; 102. Lower telescopic hydraulic cylinder; 103. Anti-slip seat; 104. Roller; 105. Wheel protective sleeve; 106. Driving motor; 107. First bevel gear; 108. Second bevel gear; 2. Support column assembly; 201. Upper cross beam; 202. Upper main sleeve; 203. Lower main sleeve; 204. Connecting seat; 3. Lower protection assembly; 301. Front protection plate; 302. Side protection plate; 303. First limit frame; 304. First driving motor; 305. Second limit frame; 306. Second driving motor; 4. Upper protection assembly; 401. Folding shielding plate; 402. Side connection support block; 5. Rain shielding assembly; 501. Waterproof cloth; 502. Rewinding motor; 503. Rewinding rod; 504. End rod; 505. Rod sleeve; 6. Beam lifting assembly; 601. Sleeve seat mechanism; 6011. Slide seat; 6012. Lower lifting hydraulic cylinder; 6013. Rotating shaft; 6014. Bush; 6015. Sleeve seat; 6016. Limit sliding groove; 6017. Anti-slip block; 602. Gear; 603. Third driving motor; 604. Beam lifting block. Specific embodiments
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs; the terms used in the description of the present application in the specification are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the description and claims of this application and the above drawings are intended to cover non-exclusive inclusion. The terms "first", "second", etc. in the description and claims of this application or the above drawings are used to distinguish different objects and not to describe a specific order.
[0039] Reference to "embodiment" herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of this application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0040] An embodiment of the present invention provides a mobile beam-making shielding shed, including a base assembly 1. An outer wall of the base assembly 1 is fixedly connected with a lower protection assembly 3. A top of the base assembly 1 is fixedly connected with a support column assembly 2. A top of the support column assembly 2 is provided with an upper protection assembly 4. A top of the support column assembly 2 is provided with a rain shielding assembly 5. A bottom of the base assembly 1 is provided with a beam lifting assembly 6;
[0041] Among them, the lower protection assembly 3 includes a first limit frame 303 and a second limit frame 305 fixedly arranged on the base assembly 1, and a second drive motor 306 fixedly arranged above the base assembly 1. An inner wall of the first limit frame 303 is fitted and slidably connected with a front protection plate 301. An inner wall of the second limit frame 305 is fitted and slidably connected with a side protection plate 302. An output shaft of the second drive motor 306 is fixedly connected with a second drive disk through a coupling. An outer wall of the second drive disk is in fit connection with an outer wall of the side protection plate 302;
[0042] An outer wall of the first limit frame 303 is fixedly connected with a first drive motor 304. An output shaft of the first drive motor 304 is fixedly connected with a first drive disk through a coupling. An outer wall of the first drive disk is in fit connection with an outer wall of the front protection plate 301;
[0043] Bottom parts of the front protection plate 301 and the side protection plate 302 are thinned and sharpened;
[0044] The support column assembly 2 includes a connection seat 204 fixed on the base assembly 1. An outer wall of the connection seat 204 is fixedly connected with a lower main sleeve 203 through a flange plate and bolts. An outer wall of the lower main sleeve 203 is slidably connected with an upper main sleeve 202. A top end of the upper main sleeve 202 is fixedly connected with an upper cross beam 201;
[0045] Main lifting hydraulic cylinders are arranged on inner walls of the upper main sleeve 202 and the lower main sleeve 203, and are fixedly connected between the connection seat 204 and the upper cross beam 201 at upper and lower ends respectively;
[0046] The upper protection assembly 4 includes side connection support blocks 402 fixedly arranged on the upper cross beam 201. Inner walls of the side connection support blocks 402 are movably connected with folding shielding plates 401 through connection shafts;
[0047] The folding shielding plate 401 includes several single plates, and adjacent single plates are movably connected in series through connection shafts;
[0048] The rain shield assembly 5 includes several rod sleeves 505 fixedly arranged on the upper cross beam 201 and a winding motor 502. An end rod 504 is fittingly connected to the rod sleeve 505, and a winding rod 503 is fittingly connected to the inner wall of the rod sleeve 505. The output shaft of the winding motor 502 is fixedly connected to one end of the winding rod 503 through a coupling. A waterproof cloth 501 is wound on the outer wall of the winding rod 503, and one end of the waterproof cloth 501 is fixedly connected to the outer wall of the end rod 504.
[0049] It should be noted that after the steel structure rain shed built by the existing technical means is successfully built, it can achieve the function of "batch transferring precast beams, which is more conducive to reducing the production cycle". However, its construction operation is cumbersome, its flexibility is low, it is difficult to be applicable to precast beams of different sizes, and the protection function for precast beams is relatively single.
[0050] Specifically, in this embodiment, this solution mainly sets and cooperates with the base assembly 1, the lower protection assembly 3, the support column assembly 2, the upper protection assembly 4, the rain shield assembly 5 and the beam lifting assembly 6. First, start and control the driving motor 106. By driving the first bevel gear 107 to rotate, the first bevel gear 107 drives the second bevel gear 108 to rotate, drives the roller 104 to roll, and pushes the shed above the placement of the precast beam.
[0051] Then, pull the relative positions between the two base assemblies 1 as needed, so that the shed covers the precast beam. Start and control the main lifting hydraulic cylinder, and the positions of the upper protection assembly 4 and the rain shield assembly 5 on the upper cross beam 201 can be adjusted up and down as needed, so as to lift and open the use height of this device; among them, the upper protection assembly 4 and the rain shield assembly 5 are unfolded.
[0052] Finally, install a suitable front protection plate 301 in the first limit frame 303, and drive the second drive disk and the first drive disk to rotate by starting and controlling the second drive motor 306 and the first drive motor 304, so as to adjust the positions of the front protection plate 301 and the side protection plate 302 along the inner walls of the first limit frame 303 and the second limit frame 305, so as to insert the front protection plate 301 and the side protection plate 302 into the soil. The four front protection plates 301 and the side protection plates 302 surround the precast beam, playing a good protection effect on the precast beam during the preparation and forming process. Moreover, the front protection plate 301 and the side protection plate 302 are inserted into the soil, which can effectively prevent external water from flowing into the precast beam placement area, maintain a suitable preparation environment, and wait quietly for the beam to be formed.
[0053] In this embodiment, through the setting of the lower protection component 3, when the base component 1, the support column component 2, the upper protection component 4, and the rain shield component 5 are unfolded, according to the unfolded dimensions, a suitable front protection plate 301 is installed in the first limit frame 303, and by starting and controlling the use of the second drive motor 306 and the first drive motor 304 to drive the second drive disk and the first drive disk to rotate, the positions of the front protection plate 301 and the side protection plate 302 are adjusted up and down along the inner walls of the first limit frame 303 and the second limit frame 305, so as to insert the front protection plate 301 and the side protection plate 302 into the soil. The four front protection plates 301 and the side protection plates 302 surround the precast beam, playing a good protection role for the precast beam during the preparation and forming process. Moreover, since the front protection plate 301 and the side protection plate 302 are inserted into the soil, it can effectively prevent external water from flowing into the precast beam placement area and maintain a suitable preparation environment;
[0054] In this embodiment, through the setting of the support column component 2, during use, by starting and controlling the use of the main lifting hydraulic cylinder, the positions of the upper protection component 4 and the rain shield component 5 on the upper cross beam 201 can be adjusted up and down as needed, so as to lift and open the use height of the device, and further improve the lighting effect and air circulation effect of the precast beam placed inside the device, and thus improve the preparation efficiency and effect of the precast beam;
[0055] In this embodiment, through the setting of the upper protection component 4, during use, it can achieve a good sunshade effect on the precast beam directly below. The setting of the folding baffle 401 can achieve better cooperation with pulling and moving the base components 1 on both sides as needed to adjust the size of the device, improving the performance of the device;
[0056] In this embodiment, through the setting of the rain shield component 5, the setting of the waterproof cloth 501 can achieve a good rain and snow shielding effect. By driving the winding rod 503 to rotate through the winding motor 502, the waterproof cloth 501 is wound and unwound, and thus can achieve better cooperation with pulling and moving the base components 1 on both sides as needed to adjust the size of the device, improving the performance of the device.
[0057] In a further preferred embodiment of the present invention, the beam lifting component 6 includes a socket mechanism 601 fittingly arranged at the bottom of the base component 1. A third drive motor 603 is fixedly connected to the inner wall of the socket mechanism 601. The output shaft of the third drive motor 603 is fixedly connected to a gear 602 through a coupling. A beam lifting block 604 is slidably connected to the inner wall of the socket mechanism 601;
[0058] The beam lifting block 604 includes a straight plate and a trapezoidal block fittingly and slidably arranged on the inner wall of the socket mechanism 601. Several teeth are equidistantly fixedly connected to the top of the straight plate. The outer wall of the gear 602 is meshed with the outer wall of the gear 602;
[0059] The socket mechanism 601 includes a sliding seat 6011 arranged at the bottom of the base assembly 1. A lower lifting hydraulic cylinder 6012 is fixedly connected to the bottom of the sliding seat 6011. A rotating shaft 6013 is fixedly connected to the bottom of the lower lifting hydraulic cylinder 6012. A bushing 6014 is movably connected to the bottom of the rotating shaft 6013. A socket 6015 is fixedly connected to the bottom of the bushing 6014. A limiting sliding groove 6016 is formed in the inner wall of the socket 6015. Several anti-sliding blocks 6017 are fixedly connected to the bottom of the socket 6015, and the anti-sliding blocks 6017 are inverted conical anti-sliding blocks.
[0060] In this embodiment, through the setting of the beam lifting assembly 6, during use, when the bottom of the socket mechanism 601 contacts the ground, the third drive motor 603 is started to drive the gear 602 to rotate, so that the gear 602 moves outward along the sliding track on the inner wall of the socket mechanism 601. Due to the setting of the trapezoidal block, the front end of the trapezoidal block first inserts into the bottom of the precast beam, and as the third drive motor 603 drives the trapezoidal block forward, the trapezoidal block gradually inserts into the precast beam inward, and then slowly lifts the precast beam from one end, so as to facilitate the user to carry the precast and formed beam.
[0061] In this embodiment, through the setting of the socket mechanism 601, during use, first, by starting and controlling the use of the lower lifting hydraulic cylinder 6012, the component can be retracted and extended for use. When the bottom of the socket 6015 contacts the ground, due to the setting of the inverted conical anti-sliding blocks, a better contact effect with the ground can be achieved. If it is a muddy ground, the anti-sliding blocks 6017 can directly sink into the ground, playing a better role in stabilizing and anti-sliding. Among them, the setting of the limiting sliding groove 6016 can achieve a better sliding fit effect between the limiting sliding groove 6016 and the straight plate in the beam lifting block 604.
[0062] In a further preferred embodiment of the present invention, the base assembly 1 includes a lower cross beam 101. A wheel protection sleeve 105 is fixedly connected to the bottom of the lower cross beam 101. A drive motor 106 is fixedly connected to the bottom of the lower cross beam 101. A bearing shaft is movably connected to the inner wall of the wheel protection sleeve 105. Several rollers 104 are movably connected to the inner wall of the wheel protection sleeve 105 through the bearing shaft. A second bevel gear 108 is fixedly connected to the outer wall of the bearing shaft. The output shaft of the drive motor 106 is fixedly connected to a first bevel gear 107 through a coupling, and the outer wall of the first bevel gear 107 is meshed with the outer wall of the second bevel gear 108.
[0063] The base assembly 1 further includes a lower telescopic hydraulic cylinder 102 fixedly connected to the bottom of the lower cross beam 101. A non-slip seat 103 is fixedly connected to the bottom of the lower telescopic hydraulic cylinder 102.
[0064] In this embodiment, through the settings in the base assembly 1, during use, the drive motor 106 is started and controlled. By driving the first bevel gear 107 to rotate, the first bevel gear 107 drives the second bevel gear 108, driving the roller 104 to roll, so as to realize pushing along the pushing direction, and further realize facilitating the movement of the effective protection area of the shielding shed according to the use needs.
[0065] In this embodiment, through the settings in the base assembly 1, when the shed moves in the protection area of the precast beam, the lower telescopic hydraulic cylinder 102 is started and controlled, so that the anti-slip seat 103 contacts the ground, thereby preventing the situation that the roller 104 rolls due to the slope of the ground, and improving the stability of the device.
[0066] It should be noted that for the foregoing embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the present invention is not limited by the described action sequence, because according to the present invention, certain steps may be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily essential to the present invention.
[0067] In several embodiments provided by the present application, it should be understood that the disclosed device can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the above-mentioned unit division can have other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point, the displayed or discussed coupling or communication connection between each other can be through some interfaces, and the indirect coupling or communication connection between devices or units can be in the form of telecommunications or other forms.
[0068] The units described as separate components above may or may not be physically separated. The components displayed as units may or may not be physical units, that is, they can be located in one place, or they can be distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0069] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than limiting the protection scope of the invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on these embodiments, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those of ordinary skill in the art can still, without conflict and without creative efforts, combine, add or delete the features in the embodiments of the present invention according to the circumstances or make other adjustments, so as to obtain different technical solutions that essentially do not depart from the concept of the present invention, and these technical solutions also fall within the scope of protection of the present invention.
Claims
1. The movable beam-making shelter is characterized by: The invention comprises a base assembly (1): the outer wall of the base assembly (1) is fixedly connected to a lower protection assembly (3); the top of the base assembly (1) is fixedly connected to a support column assembly (2); the top of the support column assembly (2) is provided with an upper protection assembly (4); the top of the support column assembly (2) is provided with a rain shield assembly (5); and the bottom of the base assembly (1) is provided with a beam assembly (6); The lower protection component (3) comprises a first limit frame (303) and a second limit frame (305) fixedly arranged on the base component (1), and a second transmission motor (306) fixedly arranged above the base component (1); the inner wall of the first limit frame (303) is slidably connected to a front protection plate (301); the inner wall of the second limit frame (305) is slidably connected to a side protection plate (302); the output shaft of the second transmission motor (306) is fixedly connected to a second transmission disk via a coupling; and the outer wall of the second transmission disk is in abutting connection with the outer wall of the side protection plate (302).
2. The movable beam-making shelter as claimed in claim 1, characterized in that: The outer wall of the first limit frame (303) is fixedly connected to a first transmission motor (304); the output shaft of the first transmission motor (304) is fixedly connected to a first transmission disk via a coupling; the outer wall of the first transmission disk is fittedly connected to the outer wall of the front protective plate (301); The bottoms of the front protection plate (301) and the side protection plate (302) are thinned and sharpened.
3. The movable beam-making shelter as claimed in claim 1, characterized in that: The support column assembly (2) comprises a connecting seat (204) fixed on the base assembly (1); the outer wall of the connecting seat (204) is fixedly connected to a lower main sleeve (203) via a flange and bolts; the outer wall of the lower main sleeve (203) is slidably connected to an upper main sleeve (202); the top end of the upper main sleeve (202) is fixedly connected to an upper crossbeam (201); The inner walls of the upper main sleeve (202) and the lower main sleeve (203) are provided with main lifting hydraulic cylinders, and the upper and lower ends of the main lifting hydraulic cylinders are respectively connected to the connection seats (204) and the upper crossbeam (201) and fixedly connected.
4. The movable beam-making shelter as claimed in claim 3, characterized in that: The upper protection component (4) comprises a side connection support block (402) fixedly arranged on the upper crossbeam (201), and the inner wall of the side connection support block (402) is movably connected to a folding shielding plate (401) via a connecting shaft; The foldable shielding plate (401) comprises a plurality of single plates, and adjacent single plates are movably connected in series via a connecting shaft.
5. The movable beam-making shelter as claimed in claim 3, characterized in that: The rain shielding assembly (5) comprises a plurality of rod sleeves (505) and a winding motor (502) fixedly arranged on an upper cross beam (201); the rod sleeves (505) are fittedly connected to an end rod (504); the inner wall of the rod sleeves (505) is fittedly connected to a winding rod (503); the output shaft of the winding motor (502) is fixedly connected to one end of the winding rod (503) via a coupling; the outer wall of the winding rod (503) is rolled up and connected to a water shielding cloth (501); and one end of the water shielding cloth (501) is fixedly connected to the outer wall of the end rod (504).
6. The movable beam-making shelter as claimed in claim 1, characterized in that: The beam-lifting assembly (6) comprises a sleeve mechanism (601) which is fitted on the bottom of the base assembly (1); the inner wall of the sleeve mechanism (601) is fixedly connected to a third transmission motor (603); the output shaft of the third transmission motor (603) is fixedly connected to a gear (602) via a coupling; and the inner wall of the sleeve mechanism (601) is slidably connected to a beam-lifting block (604); The beam raising block (604) comprises a straight plate and a trapezoidal block which are fitted and slidably arranged on the inner wall of the sleeve mechanism (601); a plurality of teeth are fixedly connected at equal intervals to the top of the straight plate; and the outer wall of the gear (602) is meshedly connected to the outer wall of the gear (602).
7. The movable beam-making shelter as claimed in claim 6, characterized in that: The seat mechanism (601) comprises a slide seat (6011) arranged at the bottom of the base assembly (1); the bottom of the slide seat (6011) is fixedly connected to a lower lifting hydraulic cylinder (6012); the bottom of the lower lifting hydraulic cylinder (6012) is fixedly connected to a rotating shaft (6013); the bottom of the rotating shaft (6013) is movably connected to a shaft sleeve (6014); the bottom of the shaft sleeve (6014) is fixedly connected to a seat (6015); a limiting sliding groove (6016) is provided on the inner wall of the seat (6015); the bottom of the seat (6015) is fixedly connected to a plurality of anti-sliding blocks (6017), and the anti-sliding blocks (6017) are inverted cone-shaped anti-sliding blocks.
8. The movable beam-making shelter as claimed in claim 1, characterized in that: The base assembly (1) comprises a lower cross beam (101), the bottom of the lower cross beam (101) is fixedly connected to a wheel protection cover (105), the bottom of the lower cross beam (101) is fixedly connected to a drive motor (106), the inner wall of the wheel protection cover (105) is movably connected to a load-bearing shaft, the inner wall of the wheel protection cover (105) is movably connected to a plurality of rollers (104) via the load-bearing shaft, the outer wall of the load-bearing shaft is fixedly connected to a second bevel gear (108), the output shaft of the drive motor (106) is fixedly connected to a first bevel gear (107) via a coupling, and the outer wall of the first bevel gear (107) is meshingly connected to the outer wall of the second bevel gear (108).
9. The movable beam-making shelter as claimed in claim 8, characterized in that: The base assembly (1) further comprises a lower telescopic hydraulic cylinder (102) fixedly connected to the bottom of the lower cross beam (101), and an anti-slip seat (103) is fixedly connected to the bottom of the lower telescopic hydraulic cylinder (102).
Citation Information
Patent Citations
Method for building movable type steel structure canopy
CN118532041A