A construction device for a BIM-based fabricated building
By using BIM-based construction equipment, precise alignment and stable support of the wall are achieved through bracket plates and support adjustment structures, which solves the problems of insufficient installation accuracy and seismic resistance in traditional prefabricated buildings, and improves construction efficiency and seismic performance.
Patent Information
- Application Number
- CN202511310599.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-09-15
AI Technical Summary
Traditional prefabricated building construction suffers from problems such as difficulty in ensuring wall installation accuracy, insufficient seismic resistance, limited construction progress, and time-consuming manual adjustments, especially in high-rise buildings where it is difficult to meet the requirements of industrialized construction.
The BIM-based construction device includes brackets, support adjustment structures, and alignment structures. By adjusting the angles and positions of the main and auxiliary support rods, it provides stable vertical guidance and precise alignment. The locking structure of the locking rods and sliders ensures that the wall does not shift during hoisting, and provides visual and tactile positioning references through physical matching relationships.
It improves the construction efficiency and seismic performance of prefabricated buildings, reduces human error, enhances hoisting accuracy and installation error tolerance, is suitable for walls of various thicknesses, and reduces the types of special molds and supporting components.
Smart Images

Figure CN120798005B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of assembly construction, in particular to a construction device for assembly building based on BIM. BACKGROUND
[0002] With the rapid development of assembly building, construction efficiency, installation precision and cost control have become the focus of the industry. Traditional assembly wall construction mainly relies on manual hoisting and positioning, which has problems such as large deviation, long adjustment time, and dependence on worker experience, which seriously affects the construction quality and progress. Especially in high-rise buildings or complex structure projects, the precision requirement of wall installation is higher, and the traditional method is difficult to meet the needs of industrialized construction. It guarantees the quality of the building, but in the construction process, its construction progress is restricted by many factors such as the production speed of the manufacturer's components, transportation methods, etc. Changes in the construction process are not conducive to the production of components, and during the installation process, problems such as "mistakes, omissions, collisions, and defects" may occur. The application of BIM technology can effectively improve the inventory and site management of prefabricated components and improve the efficiency of construction site management. Assembly building has high degree of mechanization and complex construction technology. Currently, BIM technology is mainly used to optimize construction processes and construction schemes, thereby achieving high-quality installation. In the assembly building construction process, the data model of BIM technology can be used to track and monitor the implementation of the construction progress, and dynamically manage the progress and cost.
[0003] The patent with publication number CN215859178U discloses a construction device for assembly wall based on BIM, which relates to the technical field of construction device for assembly wall. The construction device for assembly wall based on BIM includes two walls, each of which is provided with an installation frame. A lead screw is arranged inside the installation frame. A universal wheel is fixedly connected to the bottom of the installation frame. The lead screw penetrates through the installation frame and is rotationally connected to the installation frame. The threads on the outer sides of the two ends of the lead screw are opposite. A moving seat is connected to the outer sides of the two ends of the lead screw through a ball nut pair. The construction device for assembly wall based on BIM can avoid loosening after installation by rotating the threaded rod, pushing the connecting plate through the third extension rod, placing the connecting plate between the two walls, and connecting the connecting plate with the two walls through bolts, and then assembling the walls. However, the patent still has problems such as large bending moment of the wall affecting the support column and poor seismic resistance. Therefore, a construction device for assembly building based on BIM is proposed to solve the above-mentioned problems. SUMMARY
[0004] The technical problem to be solved by the present application is to provide a construction device for assembly building based on BIM to solve the problems in the prior art.
[0005] To solve the above technical problems, the technical scheme adopted by the present application is: a construction device for fabricated building based on BIM, comprising a wallboard, a bracket plate is arranged on the side of the wallboard, and a support adjusting structure is arranged on the front side of the bracket plate;
[0006] The support adjusting structure comprises a connecting plate, screw rods are fixedly connected to the upper and lower ends of the connecting plate, a hinge block is fixedly connected to the front side of the connecting plate, a main support rod is hingedly connected to the inner side of the hinge block, a corner clamp is arranged on the side of the hinge block, a ruler slot is formed in the side of the corner clamp, a clamping position inserting rod is slidably connected to the top end of the main support rod, a vertical slot sliding block is slidably connected to the end of the clamping position inserting rod away from the corner clamp, a control pull rod is fixedly connected to the bottom end of the vertical slot sliding block, a rod slot is formed in the front side of the bracket plate, an embedded slot is formed in the rear side of the bracket plate, a groove is formed in the outer surface of the end of the clamping position inserting rod, and a mounting slot is formed in the side of the bracket plate.
[0007] According to the above technical scheme, the outer side of the bottom end of the main support rod is provided with an extension support structure, the bottom end of the extension support structure is provided with a positioning structure, and the bottom surface of the wallboard is provided with a pre-buried jack.
[0008] According to the above technical scheme, the corner clamp is fixedly connected to the connecting plate, the embedded slot is in communication with the rod slot, the clamping position inserting rod and the ruler slot constitute a clamping structure, the vertical slot sliding block is slidably connected to the groove, and the connecting plate mounted on the side of the bracket plate can be adjusted according to the position of the pre-buried jack on the bottom surface of the wallboard. Before hoisting, the interval distance of the pre-buried jack is measured, the screw outside the screw rod is loosened, the connecting plate is pushed to make the screw rod slide along the rod slot on the side of the bracket plate, the screw outside the screw rod is tightened after the position is adjusted, the screw is hidden in the embedded slot, so as to correspond to the pre-buried jack of different models of wallboards. At the same time, the clamping position inserting rod connected through the vertical slot sliding block is slidably penetrated through the top of the main support rod, so that the clamping position inserting rod is clamped in the inner side of the ruler slot of the corner clamp. When the main support rod and the connecting plate are in the state of adhesion, the main support rod is in the vertical state, the clamping position inserting rod is clamped in the inner side of the ruler slot at this time, the main support rod and the hinge block are prevented from being deflected, the clamping position inserting rod does not move when the vertical slot sliding block is pulled vertically, and the clamping position inserting rod and the main support rod are slid and separated from the corner clamp to adjust the included angle between the main support rod and the connecting plate when the vertical slot sliding block is pulled horizontally and the control pull rod is pulled horizontally.
[0009] According to the technical scheme, the extension support structure comprises a sliding rod block, the side surface of the sliding rod block is fixedly connected with an auxiliary support rod, the outer side middle part of the auxiliary support rod is fixedly connected with a clamping block, the side surface of the clamping block is slidably connected with an insertion block, the bottom end of the control pull rod is fixedly connected with a connecting block, the end of the connecting block away from the control pull rod is fixedly connected with a guide sliding rod, the outer surface upper half of the auxiliary support rod is provided with an extension clamping groove, the bottom end of the auxiliary support rod is slidably connected with a guide block, the bottom end of the auxiliary support rod is hingedly connected with a top rod seat, and the upper surface of the top rod seat is provided with a screw groove.
[0010] According to the technical scheme, the sliding rod block is slidably connected with the outer surface of the main support rod, the clamping block is slidably connected with the outer surface of the main support rod, the outer side of the guide sliding rod is provided with a reset spring, and the two ends of the reset spring are fixedly connected with the insertion block and the connecting block respectively, and the guide block is fixedly connected with the outer surface of the main support rod. When the main support rod keeps a vertical state and the clamping insertion rod limits the clamping angle ruler, the hoisted wallboard slowly approaches the site pre-installation position, the control pull rod is vertically moved downward by hand at a position about 0.4 meters away from the pre-installation position of the wallboard, the bottom end of the control pull rod is connected with the connecting block at this time, the connecting block drives the guide sliding rod to hold out the insertion block, the insertion block slides out of the extension clamping groove of the corresponding position of the side surface of the auxiliary support rod at this time, and the insertion block is slid along the guide sliding rod to press the reset spring, the auxiliary support rod can slide along the outer side of the main support rod vertically downward through the sliding rod block and the clamping block connected therewith, the top rod seat is adhered to the bottom surface by stepping on the top rod seat, the hoisted wallboard is guided to fall vertically and accurately, and the main support rod keeps an inclined state and the clamping insertion rod limits the clamping angle ruler, the control pull rod is also moved downward by hand, the extended auxiliary support rod is resisted by the top rod seat, or the site reserved nail is fixed by punching to provide support for the wallboard, and the auxiliary support rod is slid along the outer side of the main support rod through the sliding rod block and the clamping block connected therewith by the above-mentioned same steps.
[0011] According to the technical scheme, the alignment structure comprises a bottom block, the rear side surface of the bottom block is fixedly connected with a shaft block, the side surface of the shaft block is rotatably connected with a sliding rod hinge block, the side surface of the sliding rod hinge block is slidably connected with a U-shaped rod, and the end of the U-shaped rod is fixedly connected with a fixed rod strip.
[0012] According to the technical scheme, the top surface of the fixed rod strip is fixedly connected with an alignment plate, the upper surface of the alignment plate is provided with an alignment groove, and the bottom surface of the sliding rod hinge block is threadedly connected with a screw knob.
[0013] According to the technical scheme, the bottom block is fixedly connected with the bottom end of the main support rod, the alignment groove is slidably penetrated from the upper surface of the alignment plate to the lower surface, the screw knob is penetrated from the bottom surface of the sliding rod hinge block to the inside, the position of the alignment groove corresponds to the position of the embedded socket, when the embedded steel bars at the installation position of the site need to be aligned with the embedded socket at the bottom surface of the wall plate, the alignment groove at the same vertical position of the embedded steel bars and the embedded socket is pre-aligned, through the vertical guidance of the auxiliary support rod mentioned above, whether the embedded steel bars and the alignment groove are accurately aligned can be quickly and intuitively observed, the efficiency of alignment installation is improved, when the steel bars are inserted into the embedded socket by a part, at this time, the screw knob is rotated, the screw knob is separated from the U-shaped rod downward, the U-shaped rod and the sliding rod hinge block are relatively slid, the sliding rod hinge block is flipped from the horizontal state to the vertical state around the shaft block, at this time, the falling of the hoisted wall plate can be controlled, meanwhile, by adjusting the sliding of the U-shaped rod and the sliding rod hinge block, the interval between the alignment plate and the bottom block is adjusted, the position of the alignment groove is changed to adapt to the position of the embedded socket reserved in the wall body of different thickness.
[0014] The technical scheme can bring the following beneficial effects:
[0015] The construction device of the fabricated building based on BIM can adapt to the angle of the embedded nail on site by adjusting the support angle of the main support rod, meanwhile, the stress distribution of the structure is optimized by reasonably adjusting the inclination angle of the main support rod, so that the wall body is more stable when bearing vertical load or horizontal force such as wind load and earthquake action, the inclined main support rod can convert part of the load into axial force, reduce the influence of bending moment on the column body, and thus improve the lateral displacement resistance and seismic performance of the overall structure.
[0016] The construction device of the fabricated building based on BIM can provide stable vertical guidance in the hoisting process through the telescopic structure of the auxiliary support rod and the main support rod, ensure that the wall body can be accurately aligned, avoid deviation caused by manual adjustment or wind force and other factors, reduce the time of repeated calibration of the guiding effect, greatly improve the hoisting efficiency, especially suitable for high-rise or large-span fabricated buildings, so that the main support rod can be flexibly adjusted within a certain angle, the size deviation of the wall plate in the hoisting or splicing process, the uneven foundation or the cumulative error of construction can be actively compensated, the self-adaptive characteristics avoid the stress concentration of components or the damage of connection nodes caused by forced correction, significantly improve the installation fault tolerance, ensure the accurate installation of components, and more significantly improve the site construction efficiency.
[0017] The construction device of the BIM-based fabricated building provides clear visual and tactile positioning references for the installation process through the physical matching relationship, workers can intuitively judge whether the wall is aligned without the help of complex measuring instruments, when the alignment groove and the reinforcing steel bar insertion hole are completely matched, the wall is naturally in the design position, greatly reducing the human judgment error, through the adjusting mechanism, the same set of supporting system can match walls of multiple thickness specifications, greatly reducing the types of special molds and matching components. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is whole wall plate installation position's structural schematic diagram of the application;
[0019] Figure 2 It is whole bracket plate front surface three-dimensional structure schematic diagram of the application;
[0020] Figure 3 It is bracket plate rear view three-dimensional structure schematic diagram of the application;
[0021] Figure 4 It is the schematic diagram of the structural position distribution of the application;
[0022] Figure 5 It is the enlarged structural schematic diagram of A in the application; Figure 4
[0023] It is the connecting structure schematic diagram of the embedded groove of the application; Figure 6
[0024] It is the connecting structure schematic diagram of the connecting plate of the application; Figure 7
[0025] It is the schematic diagram of the extension supporting structure of the application; Figure 8
[0026] It is the enlarged structural schematic diagram of B in the application; Figure 9 Figure 8 It is the schematic diagram of the alignment structure of the application;
[0027] Figure 10 It is the enlarged structural schematic diagram of C in the application.
[0028] Figure 11 Figure 10
[0029] In the figure: 1, wallboard; 2, bracket plate; 3, support adjusting structure; 31, connecting plate; 32, screw rod; 33, hinged block; 34, clamping ruler; 35, caliper slot; 36, clamping position plug rod; 37, vertical slot sliding block; 38, control pull rod; 39, embedded slot; 310, rod passing slot; 311, groove; 312, mounting slot; 4, main support rod; 5, extension support structure; 51, sliding rod block; 52, auxiliary support rod; 53, clamping block; 54, plug-in block; 55, guide sliding rod; 56, connecting block; 57, extension clamping slot; 58, guide block; 59, jacking rod seat; 510, screw slot; 6, alignment structure; 61, bottom block; 62, shaft block; 63, sliding rod hinged block; 64, screw knob; 65, U-shaped rod; 66, alignment plate; 67, fixed rod strip; 68, alignment slot; 7, pre-buried jack. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0031] Please refer to Figures 1-11 The embodiment of the present application is: a construction device for fabricated building based on BIM, comprising a wallboard 1, the side of the wallboard 1 is provided with a bracket plate 2, the front side of the bracket plate 2 is provided with a support adjusting structure 3;
[0032] The support adjusting structure 3 comprises a connecting plate 31, both upper and lower ends of the connecting plate 31 are fixedly connected with screw rods 32, the front side of the connecting plate 31 is fixedly connected with a hinged block 33, the inner side of the hinged block 33 is hingedly connected with a main support rod 4, the side of the hinged block 33 is provided with a clamping angle ruler 34, the side of the clamping angle ruler 34 is provided with a clamping ruler groove 35, the top end of the main support rod 4 is slidingly connected with a clamping position inserting rod 36, the end of the clamping position inserting rod 36 away from the clamping angle ruler 34 is slidingly connected with a vertical groove sliding block 37, the bottom end of the vertical groove sliding block 37 is fixedly connected with a control pull rod 38, the front side of the bracket plate 2 is provided with a rod passing groove 310, the rear side of the bracket plate 2 is provided with an embedded groove 39, the end outer surface of the clamping position inserting rod 36 is provided with a groove 311, the side of the bracket plate 2 is provided with a mounting groove 312, the bottom end outer side of the main support rod 4 is provided with an extension support structure 5, the bottom end of the extension support structure 5 is provided with a positioning structure 6, the bottom surface of the wall plate 1 is provided with a pre-buried jack 7, the clamping angle ruler 34 is fixedly connected with the connecting plate 31, the embedded groove 39 is in communication with the rod passing groove 310, the clamping position inserting rod 36 and the clamping ruler groove 35 constitute a clamping structure, the vertical groove sliding block 37 is slidingly connected with the groove 311, the connecting plate 31 mounted on the side of the bracket plate 2 can be adjusted according to the position of the pre-buried jack 7 on the bottom surface of the wall plate 1, before hoisting, the interval distance of the pre-buried jack 7 is measured, then the screw outside the screw rod 32 is loosened, the connecting plate 31 is pushed to make the screw rod 32 slide along the rod passing groove 310 on the side of the bracket plate 2, after the position is adjusted, the screw outside the screw rod 32 is tightened, so that the screw is hidden in the embedded groove 39, so as to correspond to the pre-buried jack 7 of the wall plate 1 of different models, at the same time, the clamping position inserting rod 36 connected with the vertical groove sliding block 37 is slidingly penetrated through the top of the main support rod 4, so that the clamping position inserting rod 36 is clamped in the inner side of the clamping ruler groove 35, when the main support rod 4 and the connecting plate 31 are in the state of adhesion, the main support rod 4 is in the vertical state, at this time, the clamping position inserting rod 36 is clamped in the inner side of the clamping ruler groove 35, preventing the main support rod 4 and the hinged block 33 from deflecting, when the vertical groove sliding block 37 is pulled vertically, the clamping position inserting rod 36 does not move, when the vertical groove sliding block 37 is pulled horizontally by pulling the control pull rod 38 horizontally, the clamping position inserting rod 36 slides with the main support rod 4 and is separated from the clamping angle ruler 34 to release the positioning, so as to adjust the included angle between the main support rod 4 and the connecting plate 31, by adjusting the support angle of the main support rod 4, the angle of the pre-buried nail on the site is adapted, at the same time, by reasonably adjusting the inclination angle of the main support rod 4, the stress distribution of the structure is optimized, so that the wall body is more stable when bearing vertical load or horizontal force such as wind load, earthquake action, the inclined main support rod 4 can convert part of the load into axial force, reducing the influence of bending moment on the column body, so as to improve the lateral displacement resistance and seismic performance of the overall structure.
[0033] The extension support structure 5 comprises a sliding rod block 51, the side surface of the sliding rod block 51 is fixedly connected with an auxiliary support rod 52, the outer side of the auxiliary support rod 52 is fixedly connected with a clamping block 53, the side surface of the clamping block 53 is slidably connected with an insertion block 54, the bottom end of the control pull rod 38 is fixedly connected with a connecting block 56, the end of the connecting block 56 away from the control pull rod 38 is fixedly connected with a guide sliding rod 55, the upper half of the outer surface of the auxiliary support rod 52 is provided with an extension clamping groove 57, the bottom end of the auxiliary support rod 52 is slidably connected with a guide block 58, the bottom end of the auxiliary support rod 52 is hingedly connected with a top rod seat 59, the upper surface of the top rod seat 59 is provided with a screw groove 510, the sliding rod block 51 is slidably connected with the outer surface of the main support rod 4, the clamping block 53 is slidably connected with the outer surface of the main support rod 4, the outer side of the guide sliding rod 55 is provided with a return spring, and the two ends of the return spring are fixedly connected with the insertion block 54 and the connecting block 56 respectively, the guide block 58 is fixedly connected with the outer surface of the main support rod 4, when the main support rod 4 keeps a vertical state and the clamping insertion rod 36 limits the clamping angle ruler 34, the hoisting wallboard 1 slowly approaches the site pre-installation position, at a distance of about zero point four meters from the pre-installation position of the wallboard 1, the control pull rod 38 is controlled to move vertically downward by hand, at this time, the bottom end of the control pull rod 38 is connected with the connecting block 56, so that the connecting block 56 drives the guide sliding rod 55 to lift the insertion block 54, at this time, the insertion block 54 will slide out of the corresponding extension clamping groove 57 on the side of the auxiliary support rod 52 from the inside of the clamping block 53, and the insertion block 54 will slide and press the return spring along the guide sliding rod 55, at this time, the auxiliary support rod 52 can slide vertically downward along the outer side of the main support rod 4 through the sliding rod block 51 and the clamping block 53 connected thereto, the top rod seat 59 is made to adhere to the bottom surface by stepping on it, the wallboard 1 below is guided to hoist, and the wallboard 1 falls vertically and accurately, when the main support rod 4 keeps an inclined state and the clamping insertion rod 36 limits the clamping angle ruler 34, the control pull rod 38 is also pulled downward by hand, so that the extended auxiliary support rod 52 is resisted by the top rod seat 59 to reserve a nail on the site or to punch a hole on the site to provide support for the wallboard 1, at this time, the auxiliary support rod 52 is slid and extended along the outer side of the main support rod 4 through the sliding rod block 51 and the clamping block 53 connected thereto by the above-mentioned same steps, the telescopic structure of the auxiliary support rod 52 and the main support rod 4 provides stable vertical guidance in the hoisting process, ensures that the wall body can be accurately aligned, avoids deviation caused by manual adjustment or wind force and the like, reduces the time for repeated calibration of the guiding effect, greatly improves the hoisting efficiency, is especially suitable for high-rise or large-span fabricated buildings, makes the main support rod 4 flexible to adjust within a certain angle, can actively compensate for the size deviation of the wallboard 1 in the hoisting or splicing process, the foundation unevenness or the cumulative error in construction, the self-adaptive characteristics avoid stress concentration or damage to the connection joint caused by forced correction, significantly improve the installation fault tolerance, ensure the accurate installation of the components, and can significantly improve the on-site construction efficiency.
[0034] The alignment structure 6 comprises a bottom block 61, the rear side of the bottom block 61 is fixedly connected with a shaft block 62, the side of the shaft block 62 is rotatably connected with a sliding rod hinge block 63, the side of the sliding rod hinge block 63 is slidably connected with a U-shaped rod 65, the end of the U-shaped rod 65 is fixedly connected with a fixed rod strip 67, the top surface of the fixed rod strip 67 is fixedly connected with an alignment plate 66, the upper surface of the alignment plate 66 is provided with an alignment slot 68, the bottom surface of the sliding rod hinge block 63 is threadedly connected with a screw knob 64, the bottom block 61 is fixedly connected with the bottom end of the main supporting rod 4, the alignment slot 68 is slidably penetrated from the upper surface to the lower surface of the alignment plate 66, the screw knob 64 is penetrated from the bottom surface to the inside of the sliding rod hinge block 63, the position of the alignment slot 68 corresponds to the position of the pre-buried socket 7, when the reinforcing steel bars pre-buried in the installation position of the site need to be aligned with the pre-buried socket 7 in the bottom surface of the wallboard 1, the alignment slot 68 in the same vertical position as the pre-buried socket 7 can be pre-aligned, through the vertical guidance of the auxiliary supporting rod 52 mentioned above, it can be quickly and intuitively seen whether the pre-buried reinforcing steel bars are accurately aligned with the alignment slot 68, the efficiency of the alignment installation is improved, when the reinforcing steel bars are inserted into the pre-buried socket 7 by a part, at this time, the screw knob 64 is rotated to make the screw knob 64 downwardly separate from the U-shaped rod 65, and the U-shaped rod 65 is pulled to slide relative to the sliding rod hinge block 63, so that the sliding rod hinge block 63 is flipped from the horizontal state to the vertical state around the shaft block 62, at this time, the hoisted wallboard 1 is controlled to fall, at the same time, the sliding of the U-shaped rod 65 and the sliding rod hinge block 63 is adjusted, the interval between the alignment plate 66 and the bottom block 61 is adjusted, the position of the alignment slot 68 is changed to adapt to the position of the pre-buried socket 7 of the wall body of different thicknesses, through the physical matching relationship, a clear visual and tactile positioning reference is provided for the installation process, the workers can intuitively judge whether the wall body is aligned without the help of complex measuring instruments, when the alignment slot 68 is completely matched with the reinforcing steel bar socket, the wall body is naturally in the designed position, the human judgment error is greatly reduced, through the adjusting mechanism, the same set of supporting system can match the wall bodies of multiple thickness specifications, the types of special molds and matching components are greatly reduced.
[0035] Working principle: the connecting plate 31 installed on the side of the bracket plate 2 can be adjusted according to the position of the embedded socket 7 on the bottom surface of the wall plate 1. Before hoisting, the interval distance of the embedded socket 7 is measured, then the screw outside the screw rod 32 is loosened, the connecting plate 31 is pushed to make the screw rod 32 slide along the rod slot 310 on the side of the bracket plate 2, and after adjusting the position, the screw outside the screw rod 32 is tightened to make the screw hidden in the inlay groove 39, so as to correspond to the embedded socket 7 of different models of wall plate 1, at the same time, the clamping position plug rod 36 connected by the vertical slot slider 37 slides through the top of the main support rod 4, so that the clamping position plug rod 36 is clamped in the inside of the angle ruler slot 35 of the clamping angle ruler 34, when the main support rod 4 and the connecting plate 31 are in the state of adhesion, the main support rod 4 is in the vertical state, at this time the clamping position plug rod 36 is clamped in the inside of the angle ruler slot 35, preventing the main support rod 4 and the hinge block 33 from deflecting, when the vertical slot slider 37 is pulled vertically, the clamping position plug rod 36 does not move, when the vertical slot slider 37 is pulled horizontally by the horizontal control pull rod 38, the clamping position plug rod 36 slides with the main support rod 4 and is separated from the clamping angle ruler 34 to release the limiting to adjust the included angle between the main support rod 4 and the connecting plate 31, by adjusting the support angle of the main support rod 4 to adapt to the angle of the embedded nail on site, at the same time, by reasonably adjusting the inclination angle of the main support rod 4, the stress distribution of the structure is optimized, so that the wall body is more stable when bearing vertical load or horizontal force such as wind load and earthquake action, the inclined main support rod 4 can convert part of the load into axial force, reduce the influence of bending moment on the column body, so as to improve the lateral displacement resistance and seismic performance of the overall structure;
[0036] When the main support rod 4 remains in an upright state and the clamping plug rod 36 limits the clamping angle ruler 34, the hoisted wallboard 1 slowly approaches the site pre-assembly position, and when the wallboard 1 is about 0.4 meters away from the pre-assembly position, the pull rod 38 is controlled to move vertically downward by hand, and at this time the bottom end of the pull rod 38 is connected to the connecting block 56, so that the connecting block 56 drives the guide slide rod 55 downward to lift the plug block 54, at this time the plug block 54 will slide out of the corresponding extension slot 57 on the side of the auxiliary support rod 52 from the inside of the clamping block 53, and the plug block 54 will slide along the guide slide rod 55 to compress the reset spring, at this time the auxiliary support rod 52 can slide vertically downward along the outside of the main support rod 4 through the connected slide rod block 51 and clamping block 53, and the top rod seat 59 is pressed by the foot to make the top rod seat 59 adhere to the bottom surface, guiding the hoisted wallboard 1 to fall vertically and accurately, when the main support rod 4 remains in an inclined state and the clamping plug rod 36 limits the clamping angle ruler 34, the control pull rod 38 is pulled downward by hand, and the extended auxiliary support rod 52 is resisted by the top rod seat 59 to the site reserved nail or the site for punching to provide support for the wallboard 1, at this time the auxiliary support rod 52 is extended along the outside of the main support rod 4 through the above-mentioned synchronous steps through the connected slide rod block 51 and clamping block 53, and the telescopic structure of the auxiliary support rod 52 and the main support rod 4 provides stable vertical guidance during hoisting, ensures that the wall body can be accurately aligned, avoids deviation caused by manual adjustment or wind force and other factors, reduces the time of repeated calibration of the guiding effect, greatly improves the hoisting efficiency, and is especially suitable for high-rise or large-span prefabricated buildings, so that the main support rod 4 can be flexibly adjusted within a certain angle, and the size deviation, uneven foundation or construction cumulative error of the wallboard 1 during hoisting or splicing can be actively compensated, the self-adaptive characteristics avoid stress concentration or damage of the connection node caused by forced correction, significantly improve the installation fault tolerance, ensure the accurate installation of the components, and more significantly improve the site construction efficiency;
[0037] When the embedded steel bars need to be aligned with the embedded insertion hole 7 on the bottom surface of the wall plate 1, the alignment slot 68 at the same vertical position of the embedded insertion hole 7 can be pre-aligned, and through the vertical guidance of the auxiliary support rod 52 mentioned above, it can be quickly and intuitively determined whether the embedded steel bars are accurately aligned with the alignment slot 68, thereby improving the efficiency of alignment and installation. When the steel bars are inserted into the embedded insertion hole 7 by a part, at this time, the screw knob 64 is rotated to make the screw knob 64 contact the U-shaped rod 65 downward, and the U-shaped rod 65 is pulled to slide relative to the sliding rod hinge block 63, so that the sliding rod hinge block 63 is flipped from a horizontal state to a vertical state around the shaft block 62. At this time, the hoisted wall plate 1 can be controlled to fall, and at the same time, the interval between the alignment plate 66 and the bottom block 61 is adjusted by adjusting the sliding of the U-shaped rod 65 and the sliding rod hinge block 63, so as to change the position of the alignment slot 68 to adapt to the position of the embedded insertion hole 7 of the wall body of different thicknesses. Through the physical matching relationship, clear visual and tactile positioning references are provided for the installation process, and workers can intuitively determine whether the wall body is aligned without the help of complex measuring instruments. When the alignment slot 68 is completely matched with the steel bar insertion hole, the wall body is naturally in the designed position, which greatly reduces the human judgment error. Through the adjusting mechanism, the same set of support systems can match wall bodies of multiple thickness specifications, thereby greatly reducing the types of special molds and matching components.
[0038] The application provides a construction device for fabricated buildings based on BIM. There are many methods and approaches to achieve the technical solution, and the above description is only the preferred embodiment of the application. It should be noted that for ordinary skilled persons in the technical field, some improvements and refinements can be made without departing from the principles of the application, and these improvements and refinements should also be considered within the protection scope of the application. The components not explicitly described in the embodiment can be realized by using existing technologies.
Claims
1. A construction device for a BIM-based fabricated building, comprising a wall panel (1), characterized in that: The side of the wallboard (1) is provided with a bracket plate (2), and the front side of the bracket plate (2) is provided with a support adjusting structure (3); The support adjusting structure (3) comprises a connecting plate (31), the upper and lower ends of the connecting plate (31) are fixedly connected with screw rods (32), the front side of the connecting plate (31) is fixedly connected with a hinged block (33), the inner side of the hinged block (33) is hingedly connected with a main support rod (4), the side of the hinged block (33) is provided with a clamping angle ruler (34), the side of the clamping angle ruler (34) is provided with a ruler slot (35), the top end of the main support rod (4) is slidably connected with a clamping position inserting rod (36), the end of the clamping position inserting rod (36) away from the clamping angle ruler (34) is slidably connected with a vertical slot sliding block (37), the bottom end of the vertical slot sliding block (37) is fixedly connected with a control pull rod (38), the front side of the bracket plate (2) is provided with a rod slot (310), the rear side of the bracket plate (2) is provided with an embedded slot (39), the end surface of the clamping position inserting rod (36) is provided with a groove (311), and the side of the bracket plate (2) is provided with a mounting slot (312); The bottom end of the main support rod (4) is provided with an extension support structure (5), the bottom end of the extension support structure (5) is provided with a positioning structure (6), and the bottom surface of the wallboard (1) is provided with a pre-buried jack (7); The positioning structure (6) comprises a bottom block (61), the rear side of the bottom block (61) is fixedly connected with a shaft block (62), the side of the shaft block (62) is rotatably connected with a sliding rod hinged block (63), the side of the sliding rod hinged block (63) is slidably connected with a U-shaped rod (65), and the end of the U-shaped rod (65) is fixedly connected with a fixed rod strip (67); The top surface of the fixed rod strip (67) is fixedly connected with a positioning plate (66), and the upper surface of the positioning plate (66) is provided with a positioning slot (68); the bottom surface of the sliding rod hinged block (63) is threadedly connected with a screw knob (64); The bottom block (61) is fixedly connected with the bottom end of the main support rod (4), the positioning slot (68) is slidably penetrated from the upper surface to the lower surface of the positioning plate (66), the screw knob (64) is penetrated from the bottom surface to the inside of the sliding rod hinged block (63), and the position of the positioning slot (68) corresponds to the position of the pre-buried jack (7).
2. The BIM-based construction device for fabricated buildings according to claim 1, characterized in that: The clamping angle ruler (34) is fixedly connected with the connecting plate (31), the embedded slot (39) is in communication with the rod slot (310), the clamping position inserting rod (36) and the ruler slot (35) form a clamping structure, and the vertical slot sliding block (37) is slidably connected with the groove (311).
3. The construction device for a BIM-based fabricated building according to claim 1, characterized in that: The extension support structure (5) comprises a sliding rod block (51), the side surface of the sliding rod block (51) is fixedly connected with an auxiliary support rod (52), the outer side middle part of the auxiliary support rod (52) is fixedly connected with a clamping block (53), the side surface of the clamping block (53) is slidably connected with an insertion block (54), the bottom end of the control pull rod (38) is fixedly connected with a connecting block (56), the end, away from the control pull rod (38), of the connecting block (56) is fixedly connected with a guide sliding rod (55), the outer surface upper half of the auxiliary support rod (52) is provided with an extension clamping groove (57), the bottom end of the auxiliary support rod (52) is slidably connected with a guide block (58), the bottom end of the auxiliary support rod (52) is hingedly connected with a top rod base (59), and the upper surface of the top rod base (59) is provided with a screw groove (510).
4. The BIM-based construction device for fabricated buildings according to claim 3, characterized in that: The sliding rod block (51) is slidably connected with the outer surface of the main support rod (4), the clamping block (53) is slidably connected with the outer surface of the main support rod (4), the outer side of the guide sliding rod (55) is provided with a return spring, the two ends of the return spring are fixedly connected with the insertion block (54) and the connecting block (56) respectively, and the guide block (58) is fixedly connected with the outer surface of the main support rod (4).
Citation Information
Patent Citations
Construction device of fabricated wall based on BIM (Building Information Modeling)
CN215859178U
Fabricated building external wall panel construction protection device
CN116556707A
Fabricated building wallboard hinge piece
CN214740083U