An adjustable support device for single X-column assembly

By designing the pillars and support mechanism, combined with the self-locking winch and servo motor drive, the problem that the single X column support device cannot accurately adjust the angle is solved, stable support and precise adjustment are achieved, and the convenience and accuracy of the support device are improved.

CN119801275BActive Publication Date: 2025-08-08BAOTOU ZHONGSHANG STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202510297715.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-08-08
Estimated Expiration
2045-03-13

AI Technical Summary

Technical Problem

When the existing support devices support a single X column, they cannot accurately adjust the support angle, resulting in insufficient support strength.

Method used

An adjustment and support device including a pillar mechanism and a support mechanism is designed to adjust the angle between the non-contractable pillar and the single X column through a self-locking winch and a servo motor drive, and to improve the adjustment accuracy and flexibility through a lubricating oil system.

Benefits of technology

The stable support and precise angle adjustment of the single X column are achieved, which improves the convenience and accuracy of the support, ensuring that the single X column can support the equipment and buildings at the best angle during the molding process.

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Abstract

The present invention provides an adjustable support device for assembling a single X-pillar, which belongs to the technical field of single X-pillar support. The adjustable support device for assembling a single X-pillar comprises a single X-pillar, a splint is fixedly mounted on the cross section of the single X-pillar, a first connecting frame is mounted on one end of the splint, a support mechanism is provided on one side of the single X-pillar, the support mechanism comprises a first support plate and a second support plate, and the first support plate is provided above the second support plate. The present invention forms a triangular system between the non-telescopic support and the single X-pillar, thereby achieving stable support for the single X-pillar, so that the single X-pillar can obtain stable support during the molding process, thereby increasing the convenience of supporting the single X-pillar, and the movement of the C-shaped frame in different directions can drive the first support plate to move synchronously, thereby changing the angle between the non-telescopic support and the single X-pillar, and achieving fine adjustment of the support angle of the single X-pillar.
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Description

Technical Field

[0001] The present invention relates to the technical field of single X-pillar supports, and in particular to an adjustable support device for assembling a single X-pillar. Background Art

[0002] Temporary support of X-shaped steel tube concrete column structure of thermal power air-cooling tower refers to a temporary support measure taken during the construction and maintenance of thermal power plant air-cooling tower to ensure the stability and safety of X-shaped steel tube concrete column during the construction or use stage. The purpose is to withstand the load that may occur during the construction process, prevent the structure from deformation or tilting, and provide support for subsequent concrete pouring and steel pipe installation.

[0003] However, the existing support device still has some problems in actual use. For example, the existing support structure can only roughly adjust the support angle of the single X-pillar during the process of supporting the single X-pillar, while the single X-pillar needs to accurately determine the support angle during the support process. Therefore, the existing support structure easily causes the difference in the support angle of the single X-pillar to become larger, thereby affecting the support strength of the single X-pillar. Summary of the Invention

[0004] In order to remedy the above deficiencies, the present invention provides an adjustable support device for assembling a single X-pillar, which overcomes the above technical problems or at least partially solves the above problems.

[0005] The present invention is achieved in that:

[0006] The present invention provides an adjustable support device for assembling a single X-pillar, comprising a single X-pillar, a clamping plate fixedly mounted at the intersection of the single X-pillar, a first connecting frame mounted at one end of the clamping plate, a support mechanism provided on one side of the single X-pillar, the support mechanism comprising a first support plate and a second support plate, the first support plate being arranged above the second support plate, a protrusion fixedly mounted at the middle of the top surface of the first support plate, a second connecting frame mounted on the outside of the protrusion, a non-telescopic support fixedly mounted on one side surface of the second connecting frame, a connecting flange fixedly mounted at one end of the non-telescopic support, the connecting flange being mounted to the first connecting frame by bolts;

[0007] A support shell is installed between the second support plate and the first support plate, and a support mechanism is provided on the top surface of the second support plate. The support mechanism includes a transverse frame. There are two transverse frames, and the two transverse frames are fixedly installed on the top surface of the second support plate. Casters are movably connected to the interior of the two transverse frames, and columns are fixedly installed on the top surfaces of the casters. One end of the column is fixedly connected to the bottom surface of the first support plate. The support mechanism is used to fine-tune the angle of the non-telescopic support column.

[0008] In a preferred embodiment, two vertical frames are fixedly mounted on the top surface of the first support plate, a self-locking winch is mounted between the two vertical frames, a steel cable is wound around the inside of the self-locking winch, a mounting frame is fixedly mounted on the outer surface of the non-telescopic support, and one end of the steel cable is sleeved inside the mounting frame.

[0009] In a preferred solution, a snap-in groove is provided on the bottom surface of the first support plate, a snap-in plate is movably snap-inned inside the snap-in groove, the bottom surface of the snap-in plate is fixedly connected to the top surface of the support shell, a bracket 1 and a bracket 2 are provided inside the support shell, the number of the bracket 1 and the number of the bracket 2 are both two, and they are symmetrically arranged with each other, a connecting plate is movably connected between the two bracket 1s and the two bracket 2s, the top surfaces of the two bracket 1s are respectively fixedly installed with a mounting plate 1 and a mounting plate 2, and the internal threads of the mounting plate 2 and the mounting plate 1 are sleeved with a screw rod.

[0010] In a preferred solution, one end of the rotating shaft 1 extends to the outside of the support shell, an extension plate is fixedly installed on one side surface of the second support plate, a servo motor is fixedly installed on the top surface of the extension plate, the output end of the servo motor and the end of the rotating shaft 1 extending to the outside of the support shell are both fixedly installed with pulleys, a transmission belt is provided between the two pulleys, a C-shaped frame is fixedly installed on one side of one of the brackets 1, and one end of the C-shaped frame is fixedly connected to the column.

[0011] In a preferred solution, a protective mechanism is provided below the bracket one, and the protective mechanism includes a tank body and a storage box. The tank body is provided between the two brackets one, and a connecting pipe is fixedly connected between the tank body and the storage box, and a first one-way valve is fixedly installed on the outer surface of the connecting pipe. An oil outlet pipe is fixedly connected to one side of the tank body, and a second one-way valve is fixedly installed on the outer surface of the oil outlet pipe. A cavity is opened inside the clamping plate, and one end of the oil outlet pipe extends into the interior of the cavity.

[0012] In a preferred solution, a positioning groove is provided on the top surface of the second support plate, and the internal movably clamped connection of the positioning groove is with the movable plate 1 and the movable plate 2, and the movable plate 1 and the movable plate 2 are respectively fixedly mounted on the bottom surfaces of the two brackets 1, and the tank body is fixedly mounted on one side of the movable plate 2, and the internal sealing clamp of the tank body is connected with a disc, and one side surface of the disc is fixedly connected with a connecting shaft, and one end of the connecting shaft is fixedly connected to the side surface of the movable plate 1.

[0013] In a preferred solution, a knocking mechanism is provided on one side of the C-shaped frame, and the knocking mechanism includes a positioning plate, and L-shaped frames are fixedly installed on both side surfaces of the positioning plate, and a mounting shaft is rotatably installed inside the L-shaped frame. A through slot is opened on one side of the positioning plate, and a tooth plate is movably engaged with the inside of the through slot, and one end of the tooth plate is fixedly connected to one side surface of the C-shaped frame.

[0014] In a preferred solution, the outer surface of the mounting shaft located on the inner side of the two L-shaped frames is fixedly mounted with a gear, the gear and the gear plate are engaged with each other, turntables are fixedly mounted at both ends of the mounting shaft, a plurality of springs are fixedly mounted on the outer surface of the turntable, a mounting plate is fixedly mounted on one end of the spring, and a knocking ball head is fixedly mounted on one side of the mounting plate.

[0015] In a preferred solution, observation mechanisms are provided on both sides of the support shell, and the observation mechanisms include an observation plate fixedly mounted on one side of the second support plate, and a scale groove is provided on the top surface of the observation plate.

[0016] In a preferred solution, an extension shaft is fixedly connected to one side surface of the bracket 2, a connecting column is fixedly installed at one end of the extension shaft, a moving block is fixedly installed on the bottom surface of the connecting column, pointers are fixedly installed on both side surfaces of the moving block, and the bottom surface of the moving block is in contact with the top surface of the observation plate.

[0017] The present invention provides an adjustable support device for assembling a single X-pillar, which has the following beneficial effects:

[0018] 1. By setting up a support mechanism and rotating the self-locking winch to gradually reel in the steel cable inside the self-locking winch, the non-telescopic support can be moved out from the inside of the limit frame until the angle between the non-telescopic support and the single X-pillar reaches a predetermined angle. Then, the first connecting frame and the non-telescopic support are installed through the connecting flange using bolts, and the self-locking winch is locked. A triangular system is formed between the non-telescopic support and the single X-pillar, thereby achieving stable support for the single X-pillar. The single X-pillar can be stably supported during the forming process, thereby increasing the convenience of supporting the single X-pillar.

[0019] 2. By setting up a support mechanism, the movement of the C-shaped frame in different directions can drive the first support plate to move synchronously, thereby changing the angle between the non-telescopic support column and the single X-column, and realizing fine adjustment of the support angle of the single X-column. As a result, the single X-column can better support the equipment and buildings that need to be supported at the optimal angle after the formation is completed.

[0020] 3. By providing a protective mechanism, when the C-shaped frame moves toward the single X-pillar, it can synchronously drive the movable plate 1 and the movable plate 2 to move, so that the lubricating oil will be filled into the gap between the clamping plate and the clamping groove through the leakage hole, so that the first support plate can move more flexibly, thereby improving the adjustment accuracy. Moreover, as the first support plate moves, the lubricating oil flowing out through the multiple leakage holes can be coated, greatly improving the lubrication effect of the clamping plate, that is, it can further improve the flexibility and accuracy of the movement of the first support plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0022] Figure 1 It is an overall stereogram provided by an embodiment of the present invention;

[0023] Figure 2 A schematic diagram of the overall front view structure provided for an embodiment of the present invention;

[0024] Figure 3 A schematic diagram of the structure of the card slot provided in an embodiment of the present invention;

[0025] Figure 4 A schematic diagram of the support structure provided by an embodiment of the present invention;

[0026] Figure 5 A schematic diagram of the structure of a knocking mechanism provided in an embodiment of the present invention;

[0027] Figure 6 A schematic diagram of a cavity structure provided in an embodiment of the present invention;

[0028] Figure 7 A schematic diagram of the structure of a protection mechanism provided in an embodiment of the present invention;

[0029] Figure 8 Provided for the embodiments of the present invention Figure 4 A in the middle is an enlarged structural diagram;

[0030] Figure 9 Schematic diagram of the non-telescopic support storage structure provided in an embodiment of the present invention.

[0031] In the figure: 1, single X-pillar; 2, clamping plate; 3, first connecting frame; 4, first support plate; 5, second support plate; 6, protrusion; 7, second connecting frame; 8, non-telescopic support; 9, connecting flange; 10, vertical frame; 11, self-locking winch; 12, steel cable; 13, mounting frame; 14, support housing; 15, extension plate; 16, servo motor; 17, support mechanism; 1701, horizontal frame; 1702, Caster; 1703, column; 1704, snap-in groove; 1705, snap-in plate; 1706, shaft 1; 1707, mounting plate 1; 1708, mounting plate 2; 1709, bracket 1; 1710, bracket 2; 1711, connecting plate; 1712, screw rod; 1713, pulley; 1714, transmission belt; 1715, C-shaped frame; 1716, cavity; 1718, leak hole; 171 9. Rectangular groove; 18. Protective mechanism; 1801. Tank; 1802. Storage box; 1803. Connecting pipe; 1804. First one-way valve; 1805. Oil outlet pipe; 1806. Second one-way valve; 1807. Disc; 1808. Connecting shaft; 1809. Positioning groove; 1810. Moving plate 1; 1811. Moving plate 2; 19. Knocking mechanism; 1901. Positioning plate; 1902. L-shaped frame; 1903, through slot; 1904, tooth plate; 1905, mounting shaft; 1906, gear; 1907, turntable; 1908, spring; 1909, mounting plate; 1910, striking ball head; 20, limit frame; 21, observation mechanism; 2101, observation plate; 2102, scale groove; 2103, extension shaft; 2104, connecting column; 2105, moving block; 2106, pointer. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0033] Reference Figures 1-9The present invention provides a technical solution: an adjustable support device for assembling a single X-pillar, comprising a single X-pillar 1, a plywood 2 fixedly mounted on the intersection of the single X-pillar 1, a first connecting frame 3 mounted on one end of the plywood 2, a support mechanism provided on one side of the single X-pillar 1, the support mechanism comprising a first support plate 4 and a second support plate 5, the first support plate 4 being arranged above the second support plate 5, a protrusion 6 fixedly mounted on the middle portion of the top surface of the first support plate 4, a second connecting frame 7 mounted on the outside of the protrusion 6, a non-telescopic support 8 fixedly mounted on one side surface of the second connecting frame 7, a connecting flange 9 fixedly mounted on one end of the non-telescopic support 8, and the connecting flange 9 being mounted to the first connecting frame 3 by bolts;

[0034] Two uprights 10 are fixedly installed on the top surface of the first support plate 4, and a self-locking winch 11 is installed between the two uprights 10. A steel cable 12 is wound inside the self-locking winch 11, and a mounting frame 13 is fixedly installed on the outer surface of the non-telescopic support 8. One end of the steel cable 12 is sleeved inside the mounting frame 13. A limiting frame 20 is also fixedly installed on the top surface of the first support plate 4, which is used to stably place the non-telescopic support 8 when not in use, ensuring that the non-telescopic support 8 can be stored more stably when not in use.

[0035] During operation, after the single X-column 1 is hoisted to a suitable position, the device can be placed as a whole on the side with the first connecting frame 3. At this time, it can be connected to the self-locking winch 11 through an external driving device, and the positioning of the self-locking winch 11 can be released. Then, by rotating the self-locking winch 11, the steel cable 12 is gradually wound inside the self-locking winch 11, and the non-telescopic support 8 can be moved out from the inside of the limit frame 20 until the angle between the non-telescopic support 8 and the single X-column 1 reaches a predetermined angle. Then, the first connecting frame 3 and the non-telescopic support 8 can be installed through the connecting flange 9 using bolts, and then the external driving device can be removed and the self-locking winch 11 can be installed. The self-locking winch 11 is relocked. At this time, a triangular system is formed between the non-telescopic support 8 and the single X-column 1, thereby achieving stable support for the single X-column 1, so that the single X-column 1 can be stably supported during the molding process, thereby increasing the convenience of supporting the single X-column 1. At the same time, when the single X-column 1 is completely formed and fixed, the threaded bolt inside the connecting flange 9 can be removed, and the entire device can be moved out. When it is used next time, the above operation is repeated. Moreover, when the entire device is evacuated, the non-telescopic support 8 is re-stored into the interior of the limit frame 20 through the rotation of the self-locking winch 11, so as to reduce the overall volume of the device so that it does not occupy too much space when not in use.

[0036] Through the above working process, this device can be reused and does not need to be assembled, which greatly saves the time of installation. When not in use, the non-telescopic support 8 can also be stored to reduce the occupied space.

[0037] A support shell 14 is installed between the second support plate 5 and the first support plate 4. A support mechanism 17 is provided on the top surface of the second support plate 5. The support mechanism 17 includes a transverse frame 1701. There are two transverse frames 1701. Both transverse frames 1701 are fixedly mounted on the top surface of the second support plate 5. Casters 1702 are movably connected to the interior of the two transverse frames 1701. A column 1703 is fixedly mounted on the top surface of the casters 1702. One end of the column 1703 is fixedly connected to the bottom surface of the first support plate 4. The setting of the support mechanism 17 is used to fine-tune the angle of the non-telescopic support column 8;

[0038] A snap-fitting groove 1704 is provided on the bottom surface of the first support plate 4, and a snap-fitting plate 1705 is movably snap-fitted inside the snap-fitting groove 1704. The bottom surface of the snap-fitting plate 1705 is fixedly connected to the top surface of the support shell 14. A bracket 1 1709 and a bracket 2 1710 are provided inside the support shell 14. There are two brackets 1709 and two brackets 1710, and they are symmetrically arranged with each other. A connecting plate 1711 is movably connected between the two brackets 1709 and the two brackets 1710. The top surfaces of the two brackets 1709 are respectively fixedly installed with a mounting plate 1 1707 and a mounting plate 2 1708. The internal threads of the mounting plate 2 1708 and the mounting plate 1 1707 are connected with a screw rod 1712 A rotating shaft 1706 is rotatably installed inside the support shell 14, one end of the rotating shaft 1706 is fixedly connected to one end of the screw rod 1712, and one end of the rotating shaft 1706 extends to the outside of the support shell 14. An extension plate 15 is fixedly installed on the side surface of the second support plate 5, and a servo motor 16 is fixedly installed on the top surface of the extension plate 15. The output end of the servo motor 16 and the end of the rotating shaft 1706 extending to the outside of the support shell 14 are both fixedly installed with pulleys 1713, and a transmission belt 1714 is sleeved between the two pulleys 1713. A C-shaped frame 1715 is fixedly installed on one side of one of the brackets 1709, and one end of the C-shaped frame 1715 is fixedly connected to the column 1703.

[0039] During operation, after the non-telescopic support 8 is installed with the first connecting frame 3 through the connecting flange 9, that is, after the non-telescopic support 8 forms a triangular support for the single X-column 1, if the angle of the single X-column 1 needs to be changed, the servo motor 16 can be controlled to start. During the start-up process of the servo motor 16, the rotating shaft 1706 can be driven to rotate. When the rotating shaft 1706 rotates clockwise under the drive of the servo motor 16, the two brackets 1709 can be caused to move in opposite directions under the action of the multiple connecting plates 1711, which can drive the C-shaped frame 1715 to move toward the direction of the single X-column 1, thereby pushing the casters 1702 to move in the same direction inside the horizontal frame 1701, and then drive the column 1703 to move synchronously. At this time, the first support plate 4 can be made to move toward the direction of the single X-column 1, and due to the non-telescopic support The column 8 is installed above the first support plate 4. Therefore, when the first support plate 4 moves toward the direction of the single X-column 1, the angle between the non-telescopic support column 8 and the single X-column 1 will become smaller, thereby driving the single X-column 1 to tilt in the direction away from the servo motor 16. Conversely, when the screw rod 1712 rotates counterclockwise under the drive of the servo motor 16, the two brackets 1709 move toward each other, causing the first support plate 4 to move toward the direction of the servo motor 16, thereby increasing the angle between the non-telescopic support column 8 and the single X-column 1, thereby driving the single X-column 1 to tilt in the direction of the servo motor 16. Through the above working process, after the single X-column 1 is triangularly supported, the support inclination angle of the single X-column 1 can be more finely adjusted, so that the single X-column 1 can present the optimal support angle after it is fully formed.

[0040] In the above process, the movement of the C-shaped frame 1715 in different directions can drive the first support plate 4 to move synchronously, thereby changing the angle between the non-telescopic support column 8 and the single X-column 1, and realizing fine adjustment of the support angle of the single X-column 1, so that the single X-column 1 can better support the equipment and buildings that need to be supported at the best angle after the formation is completed.

[0041] A protective mechanism 18 is provided below the bracket 1709. The protective mechanism 18 includes a tank body 1801 and a storage box 1802. The tank body 1801 is provided between the two brackets 1709. A connecting pipe 1803 is fixedly connected between the tank body 1801 and the storage box 1802. A first one-way valve 1804 is fixedly installed on the outer surface of the connecting pipe 1803. An oil outlet pipe 1805 is fixedly connected to one side of the tank body 1801. A second one-way valve 1806 is fixedly installed on the outer surface of the oil outlet pipe 1805. A cavity 1716 is provided inside the clamping plate 1705. One end of the oil outlet pipe 1805 extends to the interior of the cavity 1716. The second support A positioning groove 1809 is provided on the top surface of the plate 5, and a movable plate 1810 and a movable plate 2 1811 are movably connected to the interior of the positioning groove 1809. The movable plate 1810 and the movable plate 2 1811 are respectively fixedly mounted on the bottom surfaces of the two brackets 1709. The tank body 1801 is fixedly mounted on one side of the movable plate 2 1811. The internal sealing clamp of the tank body 1801 is connected to a disc 1807. A connecting shaft 1808 is fixedly connected to one side surface of the disc 1807. One end of the connecting shaft 1808 is fixedly connected to a side surface of the movable plate 1810. A plurality of leak holes 1718 and a plurality of rectangular grooves 1719 are provided on the top surface of the clamping plate 1705.

[0042] During operation, when the C-shaped frame 1715 moves toward the direction of the single X-pillar 1, it can synchronously drive the movable plate 1 1810 and the movable plate 2 1811 to move. When the movable plate 1 1810 and the movable plate 2 1811 move in opposite directions, they can drive the disc 1807 to achieve the effect of sucking materials inside the tank body 1801, thereby sucking the lubricating oil inside the storage box 1802 into the inside of the tank body 1801. Conversely, when the movable plate 1810 and the movable plate 2 1811 move toward each other, they can drive the disc 1807 to move toward the inside of the tank body 1801, and the lubricating oil sucked into the inside of the tank body 1801 can be pressed into the oil outlet pipe. 1805, and then enters the interior of the cavity 1716. When the interior of the cavity 1716 is filled with lubricating oil, when new lubricating oil enters the interior of the cavity 1716, the excess lubricating oil will be filled into the gap between the clamping plate 1705 and the clamping groove 1704 through the leakage hole 1718, so that the first support plate 4 can move more flexibly, thereby improving the adjustment accuracy, and as the first support plate 4 moves, the lubricating oil flowing out through the multiple leakage holes 1718 can be coated, which greatly improves the lubrication effect on the clamping plate 1705, that is, it can further improve the flexibility and accuracy of the movement of the first support plate 4.

[0043] A knocking mechanism 19 is provided on one side of the C-shaped frame 1715. The knocking mechanism 19 includes a positioning plate 1901. L-shaped frames 1902 are fixedly installed on both sides of the positioning plate 1901. A mounting shaft 1905 is rotatably installed inside the L-shaped frame 1902. A through slot 1903 is provided on one side of the positioning plate 1901. A tooth plate 1904 is movably connected to the interior of the through slot 1903. One end of the tooth plate 1904 is fixed to one side surface of the C-shaped frame 1715. The mounting shaft 1905 is located on the outer surface of the inner side of the two L-shaped frames 1902 and is fixedly mounted with a gear 1906. The gear 1906 and the tooth plate 1904 are meshed with each other. A turntable 1907 is fixedly mounted on both ends of the mounting shaft 1905. A plurality of springs 1908 are fixedly mounted on the outer surface of the turntable 1907. One end of the spring 1908 is fixedly mounted with a mounting plate 1909. A knocking ball head 1910 is fixedly mounted on one side of the mounting plate 1909.

[0044] During operation, when the C-frame 1715 moves toward the single X-pillar 1, that is, when the lubricating oil is injected into the cavity 1716, the gear plate 1904 can move synchronously with the movement of the C-frame 1715. Since the gear plate 1904 and the gear 1906 are engaged with each other, the mounting shaft 1905 is driven to rotate inside the L-frame 1902 during the movement of the gear plate 1904, and the turntable 1907 can be driven to rotate during the rotation. When the knocking ball head 1910 outside the turntable 1907 contacts the bottom surface of the clamping plate 1705, the clamping plate 1705 is knocked. The vibration generated by the knocking can increase the fluidity of the lubricating oil, so that the lubricating oil can be better discharged through the leakage hole 1718. In addition, as the turntable 1907 rotates, the storage box 1802 can also be knocked, so that the fluidity of the lubricating oil inside the storage box 1802 is better, that is, it can be more easily sucked into the interior of the tank body 1801.

[0045] An observation mechanism 21 is provided on both sides of the support shell 14. The observation mechanism 21 includes an observation plate 2101, which is fixedly mounted on one side of the second support plate 5. A scale groove 2102 is provided on the top surface of the observation plate 2101. An extension shaft 2103 is fixedly connected to the surface of one side of the bracket 1710. A connecting column 2104 is fixedly mounted on one end of the extension shaft 2103. A moving block 2105 is fixedly mounted on the bottom surface of the connecting column 2104. Pointers 2106 are fixedly mounted on both sides of the moving block 2105. The bottom surface of the moving block 2105 is in contact with the top surface of the observation plate 2101.

[0046] During operation, when the two brackets 1709 move in opposite directions, the two brackets 2 1710 can be retracted toward the inner side of the support shell 14 under the action of the connecting plate 1711, and then the moving block 2105 can be driven to move on the top surface of the observation plate 2101 under the action of the extension shaft 2103 and the connecting column 2104. As the moving block 2105 moves, the pointer 2106 can be driven to move synchronously. The specific adjustment value can be obtained by comparing the position of the pointer 2106 with the upper scale groove 2102. Conversely, when the two brackets 1709 move in the same direction, the moving block 2105 can be driven to move on the top surface of the observation plate 2101 toward the outer side of the support shell 14, so that the adjustment value of the other adjustment angle can be known, which further increases the accuracy of the adjustment.

[0047] Specifically, the working process or working principle of the adjustable support device for assembling a single X-column is as follows: when in use, after the single X-column 1 is hoisted to a suitable position, the entire device can be placed on the side with the first connecting frame 3. At this time, it can be connected to the self-locking winch 11 through an external driving device, and the positioning of the self-locking winch 11 can be released. Then, by rotating the self-locking winch 11, the steel cable 12 is gradually wound inside the self-locking winch 11, so that the non-telescopic support 8 can be moved out from the inside of the limit frame 20 until the angle between the non-telescopic support 8 and the single X-column 1 reaches a predetermined angle. Then, the first connecting frame 3 and the non-telescopic support 8 can be installed through the connecting flange 9 using bolts. Then, the external driving device can be removed and the self-locking winch 11 can be re-locked. At this time, a triangular system is formed between the non-telescopic support 8 and the single X-column 1, thereby achieving stable support for the single X-column 1.

[0048] During the startup of the servo motor 16, the shaft 1706 can be driven to rotate. When the shaft 1706 rotates clockwise under the drive of the servo motor 16, the two brackets 1709 can be caused to move in opposite directions under the action of the multiple connecting plates 1711, which can drive the C-shaped frame 1715 to move in the direction of the single X-column 1, thereby pushing the casters 1702 to move in the same direction inside the horizontal frame 1701, and driving the column 1703 to move synchronously. At this time, the first support plate 4 can be moved in the direction of the single X-column 1, and due to the non-telescopic support The column 8 is installed above the first support plate 4. Therefore, when the first support plate 4 moves toward the single X-column 1, the angle between the non-telescopic support column 8 and the single X-column 1 will become smaller, thereby driving the single X-column 1 to tilt away from the servo motor 16. Conversely, when the screw rod 1712 rotates counterclockwise under the drive of the servo motor 16, the two brackets 1709 move toward each other, causing the first support plate 4 to move toward the direction of the servo motor 16, thereby increasing the angle between the non-telescopic support column 8 and the single X-column 1, thereby driving the single X-column 1 to tilt toward the direction of the servo motor 16.

[0049] It should be noted that the servo motor 16 is a device or equipment existing in the prior art, or a device or equipment that can be implemented in the prior art. Its power supply, specific composition and principle are clear to those skilled in the art, so they are not described in detail.

Claims

1. An adjustable support device for assembling a single X-pillar, comprising a single X-pillar (1), characterized in that: A clamping plate (2) is fixedly mounted on the intersection of the single X-column (1), a first connecting frame (3) is mounted on one end of the clamping plate (2), a support mechanism is provided on one side of the single X-column (1), the support mechanism comprises a first support plate (4) and a second support plate (5), the first support plate (4) is arranged above the second support plate (5), a protrusion (6) is fixedly mounted on the middle of the top surface of the first support plate (4), a second connecting frame (7) is mounted on the outside of the protrusion (6), a non-telescopic support (8) is fixedly mounted on one side surface of the second connecting frame (7), a connecting flange (9) is fixedly mounted on one end of the non-telescopic support (8), and the connecting flange (9) is mounted to the first connecting frame (3) by bolts; A support shell (14) is installed between the second support plate (5) and the first support plate (4), and a support mechanism (17) is provided on the top surface of the second support plate (5), and the support mechanism (17) includes a transverse frame (1701), and the number of the transverse frames (1701) is two, and the two transverse frames (1701) are fixedly installed on the top surface of the second support plate (5), and the interiors of the two transverse frames (1701) are movably connected with casters (1702), and the top surfaces of the casters (1702) are fixedly installed with columns (1703), and one end of the column (1703) is fixedly connected to the bottom surface of the first support plate (4). The setting of the support mechanism (17) is used to fine-tune the angle of the non-telescopic support column (8); Two vertical frames (10) are fixedly mounted on the top surface of the first support plate (4), a self-locking winch (11) is mounted between the two vertical frames (10), a steel cable (12) is wound around the interior of the self-locking winch (11), a mounting frame (13) is fixedly mounted on the outer surface of the non-telescopic support (8), and one end of the steel cable (12) is sleeved inside the mounting frame (13); The bottom surface of the first support plate (4) is provided with a snap-in groove (1704), the inside of the snap-in groove (1704) is movably snap-in with a snap-in plate (1705), the bottom surface of the snap-in plate (1705) is fixedly connected to the top surface of the support shell (14), and the inside of the support shell (14) is provided with a bracket one (1709) and a bracket two (1710), the number of the bracket one (1709) and the bracket two (1710) are both two, and they are symmetrically arranged with each other, and the two brackets one (1709) and two brackets two (1710) are symmetrical with each other. A connecting plate (1711) is movably connected between the two second brackets (1710), and a mounting plate (1707) and a mounting plate (1708) are fixedly installed on the top surfaces of the two first brackets (1709), respectively. The internal threads of the mounting plate (1708) and the mounting plate (1707) are sleeved with a screw (1712), and a rotating shaft (1706) is rotatably installed inside the support shell (14), and one end of the rotating shaft (1706) is fixedly connected to one end of the screw (1712); One end of the rotating shaft (1706) extends to the outside of the supporting shell (14), an extension plate (15) is fixedly mounted on one side surface of the second supporting plate (5), a servo motor (16) is fixedly mounted on the top surface of the extension plate (15), an output end of the servo motor (16) and one end of the rotating shaft (1706) extending to the outside of the supporting shell (14) are both fixedly mounted with pulleys (1713), a transmission belt (1714) is sleeved between the two pulleys (1713), a C-shaped frame (1715) is fixedly mounted on one side of one of the brackets (1709), and one end of the C-shaped frame (1715) is fixedly connected to the column (1703).

2. The adjustable support device for single X-pillar assembly according to claim 1, characterized in that: A protective mechanism (18) is provided below the bracket one (1709), and the protective mechanism (18) includes a tank body (1801) and a storage box (1802). The tank body (1801) is provided between the two brackets one (1709), and a connecting pipe (1803) is fixedly connected between the tank body (1801) and the storage box (1802), and a first one-way valve (1804) is fixedly installed on the outer surface of the connecting pipe (1803). An oil outlet pipe (1805) is fixedly connected to one side of the tank body (1801), and a second one-way valve (1806) is fixedly installed on the outer surface of the oil outlet pipe (1805). A cavity (1716) is provided inside the clamping plate (1705), and one end of the oil outlet pipe (1805) extends into the interior of the cavity (1716).

3. The adjustable support device for single X-pillar assembly according to claim 2, characterized in that: A positioning groove (1809) is provided on the top surface of the second support plate (5), and the internal movable clamping of the positioning groove (1809) is connected to the movable plate 1 (1810) and the movable plate 2 (1811), and the movable plate 1 (1810) and the movable plate 2 (1811) are respectively fixedly mounted on the bottom surfaces of the two brackets 1 (1709), and the tank body (1801) is fixedly mounted on one side of the movable plate 2 (1811), and the internal sealing clamping of the tank body (1801) is connected to the disc (1807), and the surface of one side of the disc (1807) is fixedly connected to the connecting shaft (1808), and one end of the connecting shaft (1808) is fixedly connected to the surface of one side of the movable plate 1 (1810).

4. The adjustable support device for single X-pillar assembly according to claim 3, characterized in that: A knocking mechanism (19) is provided on one side of the C-shaped frame (1715), and the knocking mechanism (19) comprises a positioning plate (1901), and L-shaped frames (1902) are fixedly mounted on both side surfaces of the positioning plate (1901), and a mounting shaft (1905) is rotatably mounted inside the L-shaped frame (1902), and a through slot (1903) is provided through one side of the positioning plate (1901), and a tooth plate (1904) is movably engaged inside the through slot (1903), and one end of the tooth plate (1904) is fixedly connected to one side surface of the C-shaped frame (1715).

5. The adjustable support device for single X-pillar assembly according to claim 4, characterized in that: The mounting shaft (1905) is located on the outer surface of the inner side of the two L-shaped frames (1902), and a gear (1906) is fixedly mounted thereon. The gear (1906) and the toothed plate (1904) are meshed with each other. A turntable (1907) is fixedly mounted on both ends of the mounting shaft (1905). A plurality of springs (1908) are fixedly mounted on the outer surface of the turntable (1907). A mounting plate (1909) is fixedly mounted on one end of the spring (1908), and a striking ball head (1910) is fixedly mounted on one side of the mounting plate (1909).

6. The adjustable support device for assembling a single X-pillar according to claim 5, characterized in that: Observation mechanisms (21) are provided on both sides of the support shell (14), and the observation mechanism (21) comprises an observation plate (2101). The observation plate (2101) is fixedly mounted on one side of the second support plate (5), and a scale groove (2102) is provided on the top surface of the observation plate (2101).

7. The adjustable support device for assembling a single X-pillar according to claim 6, characterized in that: An extension shaft (2103) is fixedly connected to one side surface of the bracket 2 (1710), a connecting column (2104) is fixedly installed on one end of the extension shaft (2103), a moving block (2105) is fixedly installed on the bottom surface of the connecting column (2104), pointers (2106) are fixedly installed on both side surfaces of the moving block (2105), and the bottom surface of the moving block (2105) is in contact with the top surface of the observation plate (2101).

Citation Information

Patent Citations

  • Concrete member formwork supporting system and construction method thereof

    CN113513159A