Side support steel structure for office decoration wall construction
By designing the drive components and auxiliary fixing mechanisms, the automated installation of lateral wall supports was achieved, solving the problem of cumbersome operation of traditional support frames, improving construction efficiency and stability, and reducing manpower consumption and equipment damage risks.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGZHOU NO 1 RENOVATION CO LTD
- Filing Date
- 2026-01-26
- Publication Date
- 2026-05-19
AI Technical Summary
In existing technologies, the installation of lateral wall supports is cumbersome and inefficient, requiring individual adjustment of the support positions and manual tightening of bolts.
The system employs a drive assembly to drive a bevel gear transmission. Through the cooperation of the first and second pulleys, the rotation of the support plate and the extension and retraction of the support rod are achieved. Combined with auxiliary fixing mechanisms and protective components, automated operation is realized.
It enables automated installation of the support frame, saving manpower, improving construction efficiency, reducing space occupation, making it easy to carry, enhancing support stability, preventing jamming and safety hazards, and reducing the risk of equipment damage.
Smart Images

Figure CN122061607A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of wall side support, specifically a side support steel structure for office decoration wall construction. Background Technology
[0002] The lateral support steel structure used in office renovation wall construction is a temporary or permanent reinforcement and support system, usually composed of steel profiles. During construction, it primarily serves to stabilize and bear loads. It is commonly used in high-rise partition walls, large-area decorative panel installations, or structural modifications to provide lateral restraint for new walls or existing structures, preventing displacement or deformation and ensuring construction accuracy and safety. This system can be firmly fixed to the floor slab, ground, or existing walls via connectors, forming a rigid support. It can be retained or removed once the main structure or wall has achieved self-supporting strength.
[0003] In existing technologies, when installing lateral supports for walls, multiple independent brackets are usually assembled and fixed on site using bolts, connectors, or welding. This installation method requires construction workers to adjust the position of each bracket, align the connecting holes, and manually tighten a large number of bolts. The process is cumbersome and time-consuming, significantly reducing construction efficiency. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a side-support steel structure for office renovation wall construction, solving the problems of cumbersome operation and low work efficiency caused by the use of multiple bracket splicing methods during the installation of side-support walls in existing technologies.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a side-support steel structure for office decoration wall construction, comprising a wall body, wherein multiple sets of support mechanisms are provided on one side of the wall body, each set of support mechanisms includes a base, a groove is provided on one side of the base, a rotating rod is provided in the groove, a support plate is provided at one end of the base, a driving component is provided between the rotating rod and the support plate, the driving component is used to drive the support plate to rotate, a central slot is provided in the middle of the base, a threaded rod is provided in the central slot, a load-bearing component is provided between the threaded rod and the support plate, an auxiliary fixing mechanism is provided between the base and the support plate, and a protective component is provided inside the base.
[0006] Through the above technical solution, this invention, by setting up a drive assembly, enables the drive motor to drive the bevel gear transmission, thereby rotating the support plate. Simultaneously, by utilizing the cooperation of the first and second pulleys, the support rod can be extended and abut against the support plate during its rotation, thus achieving stable support. After the work is completed, restarting the drive motor causes the support plate and support rod to retract synchronously to their initial positions. This structure effectively replaces the traditional support frame installation method that relies on manual assembly, achieving automated operation, saving manpower, and significantly improving construction efficiency.
[0007] Preferably, the drive assembly includes a first bevel gear mounted on the end of a rotating rod, a second bevel gear at the lower end of the first bevel gear, the first bevel gear and the second bevel gear meshing with each other, a drive shaft mounted on the second bevel gear, a third bevel gear mounted at the end of the drive shaft, a fourth bevel gear on one side of the upper end of the third bevel gear, the fourth bevel gear meshing with the third bevel gear, a rotating shaft mounted on the side wall of the fourth bevel gear, the rotating shaft being mounted on the bottom of the support plate, and the rotating shaft driving the support plate to rotate.
[0008] Preferably, the load-bearing component includes a nut block mounted on a threaded rod, with connecting blocks symmetrically arranged on the nut block, and a support rod axially connected between the connecting blocks. A connecting groove is provided on the side wall of the support plate, and a connecting block is also provided in the connecting groove. The other end of the support rod is axially connected to the connecting block in the connecting groove.
[0009] Preferably, the auxiliary fixing mechanism includes a fixing block mounted on a base, a placement groove on the fixing block, a shaft mounted on the upper end of the fixing block, a column sleeve mounted on the shaft, a first spring connected to one end of the column sleeve, the other end of the first spring connected to the fixing block, a stop block mounted on the end of the column sleeve, and a pull rod mounted on the side wall of the column sleeve. The auxiliary fixing mechanism also includes pins mounted on the two side walls of the support plate. When the support plate is in a horizontal state, the pins are inserted into the placement groove. The upper end of the stop block is inclined and triangular, and the pin is adapted to the stop block. The bottom of the placement groove is arc-shaped and adapted to the arc of the pin surface.
[0010] Preferably, a first pulley is installed at one end of the rotating rod, and a second pulley is installed at one end of the threaded rod, with the first pulley and the second pulley connected by a belt.
[0011] Preferably, baffles are symmetrically installed in the central slot, the baffles are located between the threaded rod and the support rod, and there is a gap between the two baffles with a width smaller than the diameter of the support rod.
[0012] Preferably, a drive motor is installed in the groove, the output end of the drive motor is connected to one end of the rotating rod, a protective shell is installed on the base, and the third bevel gear and the fourth bevel gear are located inside the protective shell.
[0013] Preferably, the protective assembly includes protective plates symmetrically installed in the base, the protective plates being located above the baffle, and a slider fixedly installed on the protective plates. Second springs are provided on both sides of the slider, one end of each second spring is connected to a pin, the end of the pin is connected to a three-pronged rope, one end of the three-pronged rope is connected to a pull ring, and one end of the pull ring is inserted into the slider. The protective assembly also includes limiting holes opened in the base, the pins being inserted into the limiting holes, and notches opened on each of the protective plates. The connecting block and the end of the support rod are located within the notches. Rectangular grooves are symmetrically opened on the sidewalls of the support plates. When the support plates are in a horizontal state, the pull rings are located within the rectangular grooves.
[0014] Preferably, a vertical plate is provided in the groove, one end of the rotating rod passes through the vertical plate, and the vertical plate is used to support the rotating rod.
[0015] Preferably, a brush is installed on the side wall of the nut block. The brush is used to clean the central slot and the threaded rod. A square hole is opened below the central slot. A collection groove is movably installed on the base. The dust cleaned by the brush falls from the square hole and into the collection groove. A bolt is provided on the base. One end of the bolt passes through the base and is connected to a hexagonal nut pre-embedded in the ground.
[0016] Working Principle: During operation, the base is first fixed with bolts. The drive motor is then started, and the pull rod is pulled simultaneously to unlock the pin. The output of the drive motor drives the rotating rod to rotate. As the rotating rod rotates, the first bevel gear at its end rotates accordingly. Through meshing with the second bevel gear at the lower end, it drives the transmission shaft to rotate. The third bevel gear at the end of the transmission shaft rotates synchronously, and through meshing with the fourth bevel gear on one side of the upper end, it drives the fourth bevel gear to rotate. Finally, it drives the rotating shaft installed at the bottom of the support plate to rotate, achieving a smooth rotation of the support plate from a horizontal storage state to a vertical support state. While the rotating rod rotates, the first pulley at one end drives the second pulley to rotate synchronously via a belt, causing the threaded rod in the central slot to rotate accordingly. The nut block on the threaded rod rotates along the threaded rod axis under the action of the threaded transmission. The slider moves upward, causing the support rod connected to it to rotate and extend around the hinge point, moving synchronously with the support plate. Then, the pull ring is pulled upward, causing the three-pronged rope to retract, which in turn causes the pin to disengage from the limiting hole. At this time, the second spring deforms, and then the slider moves, causing the protective plate to move and close. Then, the pull ring is released, and the second spring rebounds, pushing the pin into the limiting hole, thus fixing the slider. After the construction is completed, the pull ring is pulled upward, causing the pin to disengage from the limiting hole, and then the protective plate returns to its initial position. Then, the output end of the drive motor is started to reverse, and the support plate rotates in the opposite direction to a horizontal state. At the same time, the support rod is completely retracted under the action of the nut block, and finally stored inside the central slot. At this time, the pin of the auxiliary fixing mechanism is limited in the placement slot by the stop block, so that the support plate is stably attached to the base.
[0017] This invention provides a side-support steel structure for office wall construction. It has the following advantages: 1. This invention uses a drive assembly to activate a drive motor that drives a bevel gear transmission to rotate the support plate. Simultaneously, through the cooperation of the first and second pulleys, the support rod extends during the rotation of the support plate to hold and stabilize it. After the work is completed, the drive motor is activated again to synchronously return the support plate and support rod to their initial positions. This invention solves the problem of traditional support frame splicing methods and eliminates the need for manual operation, saving manpower and improving work efficiency.
[0018] 2. With the central hole provided by this invention, when construction is completed or no support is needed, the drive motor simultaneously drives the support plate and support rod to return to their initial positions. At this time, the support rod is stored in the central hole, and the support plate is placed horizontally on the base, which effectively reduces the space occupied and makes it easy to carry.
[0019] 3. The present invention uses an auxiliary fixing mechanism to slowly rotate the support plate onto the base when it is stored. During the rotation, the pins on both sides of the support plate cooperate with the stop blocks and are inserted into the placement slots, thereby further improving the stability of the support plate and preventing it from opening accidentally during transport.
[0020] 4. The present invention, through the setting of protective components and brushes, effectively prevents dust from falling into the central groove and the surface of the threaded rod during construction. This prevents jamming caused by dust accumulation, ensures smooth rotation of the threaded rod, and thus drives the nut block to move smoothly. The brushes then move together with the nut block to clean the central groove and the threaded rod, further enabling the threaded rod and nut block to work together. Attached Figure Description
[0021] Figure 1 This is a perspective view of the overall structure of the present invention; Figure 2 This is a schematic diagram of the support mechanism of the present invention; Figure 3 This is a schematic diagram of the groove structure of the present invention; Figure 4 This is a schematic diagram of the internal structure of the central groove of the present invention; Figure 5 This is a schematic diagram of the first and second pulley structures of the present invention; Figure 6 This is a schematic diagram of the auxiliary fixing mechanism of the present invention; Figure 7 This is a schematic diagram of the internal structure of the slider of the present invention; Figure 8 This is a schematic diagram of the device in its stored state according to the present invention.
[0022] The components are as follows: 1. Wall body; 2. Base; 3. Groove; 4. Rotating rod; 5. Support plate; 6. Drive assembly; 601. First bevel gear; 602. Second bevel gear; 603. Drive shaft; 604. Third bevel gear; 605. Fourth bevel gear; 606. Rotating shaft; 7. Central slot; 8. Threaded rod; 9. Load-bearing assembly; 901. Nut block; 902. Support rod; 10. Auxiliary fixing mechanism; 1001. Fixing block; 1002. Shaft; 10 03. Column; 1004. First spring; 1005. Stop; 1006. Pin; 1007. Pull rod; 11. First pulley; 12. Second pulley; 13. Baffle; 14. Drive motor; 15. Protective shell; 16. Vertical plate; 17. Protective assembly; 1701. Protective plate; 1702. Slider; 1703. Second spring; 1704. Pin; 1705. Three-pronged rope; 1706. Pull ring; 18. Brush; 19. Collection trough. Detailed Implementation
[0023] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0024] Reference Figures 1-4 This invention discloses a side-support steel structure for office renovation wall construction, comprising a wall body 1. Multiple support mechanisms are provided on one side of the wall body 1. Each support mechanism includes a base 2. A groove 3 is provided on one side of the base 2, and a rotating rod 4 is provided within the groove 3. A support plate 5 is provided at one end of the base 2. A driving assembly 6 is provided between the rotating rod 4 and the support plate 5 to drive the support plate 5 to rotate. A central slot 7 is provided in the middle of the base 2, and a threaded rod 8 is provided within the central slot 7. A load-bearing assembly 9 is provided on the threaded rod 8 and the support plate 5. An auxiliary fixing mechanism 10 is provided on the base 2 and the support plate 5. A protective assembly 17 is provided inside the base 2.
[0025] Specifically, the drive assembly 6 and load-bearing assembly 9 effectively solve the tedious steps of manual splicing, assembly, and debugging of traditional support frames, realizing fully automated operation of the support plate 5 and support rod 902 from unfolding support to retracting reset, significantly reducing manual labor intensity. The drive assembly 6 uses a drive motor 14 as its power source, and through multi-stage meshing transmission of the first bevel gear 601, second bevel gear 602, third bevel gear 604, and fourth bevel gear 605, combined with the power transmission of the drive shaft 603 and rotating shaft 606, it can drive the support plate 5 to smoothly and accurately complete the angle conversion from horizontal retraction to support. Simultaneously, with the synchronous transmission of the first pulley 11, second pulley 12, and belt, the drive assembly 6 can synchronously drive the threaded rod 8 of the load-bearing assembly 9 to rotate, causing the nut block 901 to move axially along the threaded rod 8, thereby driving the support rod 902 to extend and retract around the hinge point, ensuring that the support plate 5, during each stage of rotation and unfolding, maintains the support rod 902's stability. Both 02 can extend synchronously and precisely adapt to the support angle, providing stable tilt support for the support plate 5, effectively improving the stability and load-bearing capacity of the support for the wall 1, and effectively resisting the lateral pressure generated during the wall construction process, avoiding safety hazards such as tilting, displacement or even collapse of the wall 1; In addition, when the construction is completed or no support is needed, only the drive motor 14 needs to be started in reverse, and the drive component 6 can drive the support plate 5 to rotate in the opposite direction and reset to a horizontal state. At the same time, the support rod 902 of the load-bearing component 9 moves and retracts with the nut block 901 in the opposite direction, and finally is completely stored in the central slot 7, so that the support plate 5 fits tightly against the surface of the base 2. The entire device forms an integrated structure, which greatly reduces the overall space occupied. It not only avoids the problem of easy loss and damage of parts after the disassembly of traditional support frames, but also makes it easier to transport and store in narrow office construction scenarios, significantly improving construction efficiency and site utilization, and adapting to the actual needs of limited space and compact process in office decoration construction.
[0026] Reference Figure 3 The drive assembly 6 includes a first bevel gear 601 installed at the end of the rotating rod 4, a second bevel gear 602 at the lower end of the first bevel gear 601, the first bevel gear 601 and the second bevel gear 602 meshing with each other, a drive shaft 603 installed on the second bevel gear 602, a third bevel gear 604 installed at the end of the drive shaft 603, a fourth bevel gear 605 on one side of the upper end of the third bevel gear 604, the fourth bevel gear 605 meshing with the third bevel gear 604, a rotating shaft 606 installed on the side wall of the fourth bevel gear 605, the rotating shaft 606 installed at the bottom of the support plate 5, and the rotating shaft 606 driving the support plate 5 to rotate.
[0027] Specifically, through the drive component 6 and the meshing transmission structure of multiple bevel gears, combined with the power transmission between the drive shaft 603 and the rotating shaft 606, the direction of power is reversed, and the rotational power of the rotating rod 4 is stably transmitted to the support plate 5. This ensures that the support plate 5 rotates smoothly without jamming or shaking. At the same time, the bevel gear meshing transmission has a strong load-bearing capacity, which can adapt to the support needs of walls of different thicknesses and weights in office decoration wall construction, ensuring the transmission reliability and structural durability of the support mechanism during long-term use. Moreover, the rotation of the support plate 5 can be achieved by starting the drive motor 14, saving manpower and improving work efficiency.
[0028] Reference Figure 4 and Figure 5 The load-bearing component 9 includes a nut block 901 mounted on the threaded rod 8. Connecting blocks are symmetrically arranged on the nut block 901. Support rods 902 are axially connected between the connecting blocks. A connecting groove is opened on the side wall of the support plate 5. A connecting block is also provided in the connecting groove. The other end of the support rod 902 is axially connected to the connecting block in the connecting groove.
[0029] Specifically, when the support plate 5 rotates to the preset support angle that fits against the wall 1, the support rod 902 extends out and is in an inclined support state through the shaft connection of the connecting block in the connecting groove of the side wall of the support plate 5 at its other end; the extension and retraction length of the support rod 902 and the rotation angle of the support plate 5 are synchronously matched through the precise matching of the pulley drive and the bevel gear drive, ensuring that the support plate 5 can obtain uniform support force at any support angle, and avoiding deformation of the support plate 5 or tilting of the wall 1 due to uneven force; when the threaded rod 8 rotates, the nut block 901 moves along the axial direction of the threaded rod 8, thereby driving the support rod 902 to rotate around the hinge point, realizing the extension and retraction of the length. The extension and retraction of the support rod 902 can be synchronously matched with the rotation of the support plate 5, ensuring that the support plate 5 can obtain support from the support rod 902 at any rotation angle, greatly improving the support plate 5's support and load-bearing capacity for the wall 1, and avoiding deformation of the support plate 5 due to uneven force.
[0030] Reference Figure 6The auxiliary fixing mechanism 10 includes a fixing block 1001 mounted on the base 2. The fixing block 1001 has a placement groove. A shaft 1002 is mounted on the upper end of the fixing block 1001. A column 1003 is sleeved on the shaft 1002. One end of the column 1003 is connected to a first spring 1004. The other end of the first spring 1004 is connected to the fixing block 1001. A stop block 1005 is mounted on the end of the column 1003. A pull rod 1007 is mounted on the side wall of the column 1003. The auxiliary fixing mechanism 10 also includes pins 1006 mounted on the two side walls of the support plate 5. When the support plate 5 is in a horizontal state, the pins 1006 are inserted into the placement groove. The upper end of the stop block 1005 is inclined and triangular. The pins 1006 are adapted to the stop block 1005. The bottom of the placement groove is arc-shaped and adapted to the arc of the surface of the pins 1006.
[0031] Specifically, if the support plate 5 needs to be temporarily stored during construction or stored after support is completed, the drive motor 14 starts in reverse, driving the support plate 5 to rotate and reset in the opposite direction through bevel gear transmission. Then, through the first pulley 11 and the second pulley 12, the support rod 902 is driven to move and retract in the opposite direction with the nut block 901. When the support plate 5 rotates to the horizontal storage state, the pins 1006 on its two side walls will contact and press against the inclined surface of the stop block 1005 on the base 2, pushing the column cylinder 1003 to move along the shaft 1002 and compressing the first spring 1004. After the pin 1006 is completely slid into the placement groove of the fixing block 1001, the first spring 1004 elastically resets, driving the column cylinder 1003 and the stop block 1005 to move back, forming a limit fixation on the pin 1006, thereby further fixing the support plate 5. The arc design at the bottom of the placement groove and the pin 1 The surface curvature of pin 1006 is adapted to increase the contact area and improve the stability of the fixation, preventing the pin 1006 from accidentally coming out during transportation; reducing the risk of equipment damage and safety hazards; if it needs to be unfolded again, simply pull the pull rod 1007 on the side wall of the column cylinder 1003 to compress the first spring 1004 and make the stop block 1005 disengage from the pin 1006 limit; the upper end of the stop block 1005 is inclined and triangular, so that the pin 1006 can slide smoothly into the placement slot along the inclined surface during the rotation of the support plate 5, avoiding jamming and improving the smoothness of storage and fixation; the bottom of the placement slot is arc-shaped and matches the surface curvature of the pin 1006, which can increase the contact area between the pin 1006 and the placement slot, making the force on the pin 1006 more even, while improving the fit between the pin 1006 and the placement slot, enhancing the stability after fixation, and further preventing the pin 1006 from accidentally coming out after storage.
[0032] Reference Figure 4 and Figure 5One end of the rotating rod 4 is equipped with a first pulley 11, and one end of the threaded rod 8 is equipped with a second pulley 12. The first pulley 11 and the second pulley 12 are connected by a belt. A baffle 13 is symmetrically installed in the central slot 7. The baffle 13 is located between the threaded rod 8 and the support rod 902. There is a gap between the two baffles 13 and the width is smaller than the diameter of the support rod 902.
[0033] Specifically, as the rotating rod 4 rotates, the first pulley 11 at one end drives the second pulley 12 at one end of the threaded rod 8 to rotate synchronously and at the same speed via belt drive, thereby driving the threaded rod 8 in the central slot 7 to rotate accordingly. This transmission design eliminates the need for a separate power source for the threaded rod 8, relying solely on the drive motor 14 as a single power input to drive both the drive assembly 6 and the load-bearing assembly 9 through the coordinated transmission of pulleys and belts. This not only simplifies the overall structure of the equipment and reduces the number of parts and manufacturing costs, but also achieves precise synchronization between the rotational unfolding action of the support plate 5 and the telescopic adjustment action of the support rod 902, ensuring the smoothness and stability of the support unfolding process. Meanwhile, baffles 13 are installed inside the central slot 7, with a gap reserved between the two baffles 13, and the width of the gap is smaller than the diameter of the support rod 902. When the equipment enters the storage state, and the support rod 902 moves in the opposite direction with the nut block 901 to retract, the baffles 13 can provide stable support for the support rod 902, so that the support rod 902 can be placed stably on the baffles 13. This effectively avoids the support rod 902 from contacting or colliding with the threaded rod 8 due to gravity shift, vibration, etc. during the retraction or storage process, and prevents damage to the surface of the threaded rod 8 and the support rod 902. It also avoids problems such as jamming and abnormal noise caused by collision of parts, and further ensures the long-term stability and reliability of the entire equipment.
[0034] Reference Figure 2 A drive motor 14 is installed in the groove 3. The output end of the drive motor 14 is connected to one end of the rotating rod 4. A protective shell 15 is installed on the base 2. The third bevel gear 604 and the fourth bevel gear 605 are located inside the protective shell 15.
[0035] Specifically, during construction, the third bevel gear 604 and the fourth bevel gear 605 remain inside the protective shell 15, completely enclosing the two sets of meshing bevel gears without any blind spots. The office renovation site environment is complex; wall cutting generates a large amount of dust and sawdust, and fine paint particles are scattered during painting. If these impurities enter the gear meshing area, they can easily become embedded in the tooth grooves, causing wear on the gear teeth, reduced meshing accuracy, and long-term accumulation can lead to tooth corrosion, transmission jamming, and even serious malfunctions such as power transmission interruption. The protective shell 15 prevents impurities from corroding and damaging the transmission components, significantly extending the service life of transmission components such as bevel gears and drive shaft 603, reducing the frequency of equipment maintenance and subsequent operating costs. At the same time, bevel gears are rotating during power transmission, and their edges have strong kinetic energy. If construction personnel frequently move or operate on-site, accidental contact with their hands or clothing can easily cause scratches, entanglement, and other safety accidents. The protective shell 15 effectively avoids this safety risk through physical isolation, further improving the safety and reliability of the equipment.
[0036] Reference Figure 3 and Figure 7 The protective assembly 17 includes protective plates 1701 symmetrically installed in the base 2. The protective plates 1701 are located above the baffle 13. A slider 1702 is fixedly installed on the protective plates 1701. Second springs 1703 are provided on both sides of the slider 1702. One end of the second spring 1703 is connected to a pin 1704. The end of the pin 1704 is connected to a three-pronged rope 1705. One end of the three-pronged rope 1705 is connected to a pull ring 1706. One end of the pull ring 1706 is inserted into the slider 1702. The protective assembly 17 also includes a limiting hole opened on the base 2. The pin 1704 is inserted into the limiting hole. Each protective plate 1701 has a notch. The connecting block and the end of the support rod 902 are located in the notch. Rectangular grooves are symmetrically opened on the side wall of the support plate 5. When the support plate 5 is in a horizontal state, the pull ring 1706 is located in the rectangular groove.
[0037] Specifically, the protective component 17 effectively prevents dust from falling into the central slot 7 and the surface of the threaded rod 8 during construction, ensuring smooth rotation of the threaded rod 8 and thus driving the nut block 901 to move smoothly. Two sets of limiting holes are provided. When the two protective plates 1701 are closed, the pin 1704 is inserted into one set of limiting holes, thereby fixing the slider 1702 and the protective plate 1701. When the protective plate 1701 is opened, the pin 1704 is inserted into the other set of limiting holes. The rectangular groove allows the pull ring 1706 to be placed in the rectangular groove when the support plate 5 is placed horizontally.
[0038] Reference Figure 5 and Figure 8A vertical plate 16 is provided in the groove 3, and one end of the rotating rod 4 passes through the vertical plate 16. The vertical plate 16 is used to support the rotating rod 4. A brush 18 is installed on the side wall of the nut block 901. The brush 18 is used to clean the central slot 7 and the threaded rod 8. A square hole is opened below the central slot 7. A collection trough 19 is movably installed on the base 2. The dust cleaned by the brush 18 falls from the square hole and into the collection trough 19. A bolt is provided on the base 2. One end of the bolt passes through the base 2 and is connected to a hexagonal nut pre-embedded in the ground.
[0039] Specifically, the brush 18 is used to clean the inside of the central hole groove 7 and the surface of the threaded rod 8 during the movement of the nut block 901, thereby ensuring that the threaded rod 8 rotates smoothly and stably, allowing the nut block 901 to move smoothly; and the dust cleaned by the brush 18 falls from the square hole into the collection groove 19.
[0040] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A side-support steel structure for office renovation wall construction, comprising a wall body (1), characterized in that: The wall (1) is provided with multiple sets of support mechanisms on one side. Each set of support mechanisms includes a base (2). A groove (3) is provided on one side of the base (2). A rotating rod (4) is provided in the groove (3). A support plate (5) is provided at one end of the base (2). A driving component (6) is provided between the rotating rod (4) and the support plate (5). The driving component (6) is used to drive the support plate (5) to rotate. A central hole groove (7) is provided in the middle of the base (2). A threaded rod (8) is provided in the central hole groove (7). A load-bearing component (9) is provided on the threaded rod (8) and the support plate (5). An auxiliary fixing mechanism (10) is provided on the base (2) and the support plate (5). A protective component (17) is provided in the base (2).
2. The side-support steel structure for office decoration wall construction according to claim 1, characterized in that: The drive assembly (6) includes a first bevel gear (601) installed at the end of the rotating rod (4), a second bevel gear (602) provided at the lower end of the first bevel gear (601), the first bevel gear (601) and the second bevel gear (602) meshing with each other, a drive shaft (603) installed on the second bevel gear (602), a third bevel gear (604) installed at the end of the drive shaft (603), a fourth bevel gear (605) provided on one side of the upper end of the third bevel gear (604), the fourth bevel gear (605) meshing with the third bevel gear (604), a rotating shaft (606) installed on the side wall of the fourth bevel gear (605), the rotating shaft (606) installed at the bottom of the support plate (5), and the rotating shaft (606) driving the support plate (5) to rotate.
3. The side-support steel structure for office renovation wall construction according to claim 1, characterized in that: The load-bearing component (9) includes a nut block (901) mounted on a threaded rod (8). Connecting blocks are symmetrically arranged on the nut block (901). A support rod (902) is axially connected between the connecting blocks. A connecting groove is opened on the side wall of the support plate (5). A connecting block is also provided in the connecting groove. The other end of the support rod (902) is axially connected to the connecting block in the connecting groove.
4. The side-support steel structure for office renovation wall construction according to claim 1, characterized in that: The auxiliary fixing mechanism (10) includes a fixing block (1001) mounted on the base (2). The fixing block (1001) has a placement groove. A shaft (1002) is mounted on the upper end of the fixing block (1001). A cylindrical tube (1003) is sleeved on the shaft (1002). A first spring (1004) is connected to one end of the cylindrical tube (1003). The other end of the first spring (1004) is connected to the fixing block (1001). A stop block is installed at the end of the cylindrical tube (1003). (1005), a tie rod (1007) is installed on the side wall of the column (1003), and the auxiliary fixing mechanism (10) also includes a pin (1006) installed on both sides of the support plate (5). When the support plate (5) is in a horizontal state, the pin (1006) is inserted into the placement groove. The upper end of the stop (1005) is inclined and triangular. The pin (1006) is adapted to the stop (1005). The bottom of the placement groove is arc-shaped and adapted to the surface curvature of the pin (1006).
5. The side-support steel structure for office renovation wall construction according to claim 1, characterized in that: The rotating rod (4) is equipped with a first pulley (11) at one end and a second pulley (12) at one end of the threaded rod (8). The first pulley (11) and the second pulley (12) are connected by a belt.
6. The side-support steel structure for office renovation wall construction according to claim 1, characterized in that: A baffle (13) is symmetrically installed in the central slot (7). The baffle (13) is located between the threaded rod (8) and the support rod (902). There is a gap between the two baffles (13) and the width is smaller than the diameter of the support rod (902).
7. The side-support steel structure for office decoration wall construction according to claim 1, characterized in that: A drive motor (14) is installed in the groove (3). The output end of the drive motor (14) is connected to one end of the rotating rod (4). A protective shell (15) is installed on the base (2). The third bevel gear (604) and the fourth bevel gear (605) are located inside the protective shell (15).
8. The side-support steel structure for office renovation wall construction according to claim 1, characterized in that: The protective assembly (17) includes a protective plate (1701) symmetrically installed in the base (2). The protective plate (1701) is located above the baffle (13). A slider (1702) is fixedly installed on the protective plate (1701). A second spring (1703) is provided on both sides of the slider (1702). One end of the second spring (1703) is connected to a pin (1704). The end of the pin (1704) is connected to a three-pronged rope (1705). One end of the three-pronged rope (1705) is connected to... A pull ring (1706) is attached, one end of which is inserted into the slider (1702). The protective assembly (17) also includes a limiting hole on the base (2). The pin (1704) is inserted into the limiting hole. Each protective plate (1701) has a notch. The ends of the connecting block and the support rod (902) are located in the notch. The side wall of the support plate (5) has symmetrical rectangular grooves. When the support plate (5) is in a horizontal state, the pull ring (1706) is located in the rectangular groove.
9. A side-support steel structure for office renovation wall construction according to claim 1, characterized in that: The groove (3) is provided with a vertical plate (16), one end of the rotating rod (4) passes through the vertical plate (16), and the vertical plate (16) is used to support the rotating rod (4).
10. A side-support steel structure for office renovation wall construction according to claim 3, characterized in that: A brush (18) is installed on the side wall of the nut block (901). The brush (18) is used to clean the central slot (7) and the threaded rod (8). A square hole is opened below the central slot (7). A collection groove (19) is movably installed on the base (2). The dust cleaned by the brush (18) falls from the square hole and into the collection groove (19). A bolt is provided on the base (2). One end of the bolt passes through the base (2) and is connected to a hexagonal nut pre-embedded in the ground.