Multidirectional telescopic composite panel assembly

CN117684743BActive Publication Date: 2026-08-11SHANXI CONSTR ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-11
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

叠合楼板整体性好,板的上下表面平整,便于饰面层装修,传统叠合板支撑体系主要是用三脚架独立支撑体系、铝模独立支撑体系、盘扣式脚手架支撑体系;目前,主要是现场安装方面,由于支撑体系在施工过程中工艺复杂,人工和三钢租赁成本较高,是目前制约叠合板快速发展的一个难题,目前的叠合板组合架不便于实现辅助水平检测工作,施工支撑误差大,同时场地适配性较差,工作组合架设繁琐还危险系数高

Benefits of technology

[0015]本发明中采用水平辅助检测件,可以用于辅助实现实时的平整支撑调节工作,通过采用可调节的支撑高度结构,根据需求,在叠合板进行安装后,通过本结构的四个压力传感器,实时感测压力,有效的避免叠合板安装时出现偏差,可以同时也是便于自由灵活调整楼板安装角度实用性更强,异形叠合板亦可灵活进行高精度检测。

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Abstract

This invention provides a multi-directional telescopic composite slab assembly frame, relating to the technical field of composite slab assembly frame equipment. It includes a support mounting component, on which telescopic support components are fixedly mounted; an alarm control auxiliary component is fixedly mounted on the support mounting component; support module components are tightly inserted into the support mounting component; a lifting control device is fixedly mounted on the support module components; and a lateral adjustment device is mounted on the lifting control device. The lateral adjustment device has a symmetrical structure and can be used to assist in real-time leveling support adjustment, ensuring the installation accuracy of the composite slab and effectively avoiding deviations during installation. This solves a major problem currently hindering the rapid development of composite slab assembly frames: current composite slab assembly frames are inconvenient for auxiliary leveling detection, have large construction support errors, poor site adaptability, and are cumbersome and dangerous to assemble.
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Description

Technical Field

[0001] This invention relates to the field of composite slab assembly equipment technology, and in particular to a multi-directional telescopic composite slab assembly frame. Background Technology

[0002] Composite slabs are assembled monolithic floor slabs made by stacking precast slabs and cast-in-place reinforced concrete layers. Composite slabs have good integrity, and the upper and lower surfaces of the slabs are flat, facilitating the finishing layer decoration. Traditional composite slab support systems mainly use tripod independent support systems, aluminum formwork independent support systems, and disc-lock scaffolding support systems. Currently, the main challenge is on-site installation. Due to the complexity of the support system construction process and the high costs of labor and steel frame rental, this is a major obstacle to the rapid development of composite slabs. Current composite slab scaffolding is not convenient for auxiliary leveling work, has large construction support errors, poor site adaptability, and the work assembly is cumbersome and has a high risk factor. Summary of the Invention

[0003] This disclosure relates to a multi-directional telescopic composite slab assembly frame, whose horizontal auxiliary detection component can be used to assist in real-time flat support adjustment, ensuring the installation accuracy of the composite slab, effectively avoiding deviations during installation, and also facilitating free and flexible adjustment of the floor slab installation angle, making it more practical. Irregularly shaped composite slabs can also be flexibly detected.

[0004] In a first aspect, this disclosure provides a multi-directional telescopic composite panel assembly frame, specifically including a support mounting component. Telescopic support components are fixedly mounted on the support mounting component. An alarm control auxiliary component is fixedly mounted on the support mounting component. A support module is tightly inserted into the support mounting component. A lifting control device is fixedly mounted on the support module. A horizontal adjustment device is mounted on the lifting control device. The horizontal adjustment device has a symmetrical structure. Four expansion support auxiliary components are slidably inserted into the horizontal adjustment device. Four horizontal auxiliary detection components are threaded onto the lifting control device. The four horizontal auxiliary detection components are electrically connected to the alarm control auxiliary component. The support mounting component includes: a support mounting plate, support rollers, support positioning bolts, a horizontal bubble, and a support mounting frame. Four support rollers are mounted on the bottom of the support mounting plate. Four support positioning bolts are threaded onto the support mounting plate. The support mounting frame is fixedly welded to the support mounting plate. The horizontal bubble is fixedly mounted on the support mounting plate. An insertion post is provided at the bottom of the support heightening frame.

[0005] In at least some embodiments, the support mounting component further includes: four assembly bolts, each of which is threaded onto the support mounting frame.

[0006] In at least some embodiments, the lifting control device includes: a lifting control hydraulic cylinder, a lifting sliding mounting plate, and a lifting slide shaft. The lifting sliding mounting plate is fixedly mounted on the output shaft of the lifting control hydraulic cylinder. Four lifting slide shafts are welded to the bottom of the lifting sliding mounting plate. The four lifting slide shafts are slidably connected to the support riser frame. The lifting control hydraulic cylinder is fixedly mounted on the support riser frame. The lifting sliding mounting plate is provided with four threaded holes.

[0007] In at least some embodiments, the expansion support auxiliary component includes: an expansion support sliding rod, a support hydraulic cylinder, and a support leveling plate. The expansion support sliding rod is slidably mounted on a sliding adjustable support rod. A support hydraulic cylinder is fixedly mounted on the expansion support sliding rod. A support leveling plate is welded to the output shaft of the support hydraulic cylinder. Four support adjustment and positioning bolts respectively press against four expansion support sliding rods.

[0008] In at least some embodiments, the telescopic support includes: a telescopic support mounting rod, a support adjusting threaded rod, and a ground support plate; the telescopic support mounting rod is slidably mounted on the support mounting plate; the telescopic support mounting rod is threadedly connected to the support adjusting threaded rod; the ground support plate is rotatably mounted on the bottom of the support adjusting threaded rod; and four support positioning bolts respectively press against four telescopic support mounting rods.

[0009] In at least some embodiments, the support module includes: a support auxiliary frame, positioning bolts, and a support extension frame. The support auxiliary frame is slidably inserted into the support mounting frame. Four positioning bolts are threaded onto the support auxiliary frame. The support extension frame is inserted into the support auxiliary frame. The four positioning bolts press against the support extension frame. The four assembly bolts press against the bottom of the support auxiliary frame.

[0010] In at least some embodiments, the lateral adjustment device includes: a lateral adjustment mounting base, a lateral adjustment drive threaded rod, a sliding adjustment support rod, and support adjustment positioning bolts. The lateral adjustment mounting base is fixedly welded to a lifting sliding mounting plate. A lateral adjustment drive threaded rod with reverse threads is rotatably connected to the lateral adjustment mounting base. A handle is provided on the lateral adjustment drive threaded rod. Two sliding adjustment support rods are slidably connected to the lifting sliding mounting plate, and the two sliding adjustment support rods are respectively threaded to both sides of the lateral adjustment drive threaded rod. Two support adjustment positioning bolts are threadedly connected to the sliding adjustment support rod.

[0011] In at least some embodiments, the alarm control auxiliary component includes: an alarm controller and alarm auxiliary lights, wherein four alarm auxiliary lights are electrically connected to the alarm controller; the alarm controller is fixedly mounted on a support mounting frame; and the four alarm auxiliary lights are respectively fixedly mounted on the support mounting frame.

[0012] In at least some embodiments, the horizontal auxiliary detection component includes: a horizontal detection mounting screw, a sliding mounting sleeve, and a contact spring; the horizontal detection mounting screw is threadedly connected to a lifting sliding mounting plate; the sliding mounting sleeve is fixedly mounted on the horizontal detection mounting screw; and the contact spring is fitted inside the sliding mounting sleeve.

[0013] In at least some embodiments, the horizontal auxiliary detection component further includes: a sliding mounting plate, a pressure sensor, and a contact, wherein the sliding mounting plate is slidably mounted on a sliding mounting sleeve; the pressure sensor is attached to the sliding mounting plate; the contact is slidably connected to the sliding mounting sleeve; the contact is connected to the pressure sensor; and the contact spring is connected between the sliding mounting plate and the sliding mounting sleeve.

[0014] This invention provides a multi-directional telescopic composite panel assembly frame, which has the following beneficial effects:

[0015] This invention employs a horizontal auxiliary detection component, which can be used to assist in real-time flat support adjustment. By using an adjustable support height structure, the pressure can be sensed in real time through four pressure sensors after the composite slab is installed, effectively avoiding deviations during the installation of the composite slab. It also facilitates free and flexible adjustment of the floor slab installation angle, making it more practical. Irregularly shaped composite slabs can also be flexibly and accurately detected.

[0016] In addition, the use of the designed support mounting components allows for easy movement and transportation, making it more flexible. Combined with the designed support modules, this structure adopts an integrated quick-assembly structure, which can achieve rapid docking and disassembly. This facilitates overall installation and accelerates installation efficiency, and also makes it easy to transport the material through the construction site unloading platform after disassembly.

[0017] In addition, the lateral adjustment device and the expansion support auxiliary components ensure the support adaptability of the composite plate. They can be freely adjusted according to the area of ​​the composite plate. The structure is reasonable and can ensure the stability of the support. At the same time, the expansion support auxiliary components used in this structure can realize independent support adjustment, which can be better suited to some irregular support requirements, such as some inclined installation requirements. The structure is more reasonable, versatile and flexible. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0020] In the attached diagram:

[0021] Figure 1A schematic diagram of the overall structure of the modular frame of this application is shown;

[0022] Figure 2 A schematic diagram of the bottom structure of the combined frame of this application is shown;

[0023] Figure 3 A cross-sectional view of the internal structure of the assembly frame of this application is shown;

[0024] Figure 4 A schematic diagram of the support mounting structure of this application is shown;

[0025] Figure 5 A schematic diagram of the telescopic support structure of this application is shown;

[0026] Figure 6 A schematic diagram of the support module structure of this application is shown;

[0027] Figure 7 A schematic diagram of the transverse adjustment device structure of this application is shown;

[0028] Figure 8 A schematic diagram of the structure of the horizontal auxiliary detection component of this application is shown;

[0029] Figure 9 A schematic diagram of the bottom structure of the expansion support auxiliary component of this application is shown;

[0030] List of reference numerals

[0031] 1. Support mounting components; 101. Support mounting plate; 1011. Support rollers; 1012. Support positioning bolts; 1013. Horizontal bubble; 102. Support mounting frame; 103. Assembly bolts;

[0032] 2. Telescopic support components; 201. Telescopic support mounting rod; 202. Support adjusting threaded rod; 203. Ground support plate;

[0033] 3. Alarm control auxiliary components; 301. Alarm controller; 302. Alarm auxiliary lights;

[0034] 4. Support module components; 401. Support auxiliary frame; 4011. Positioning bolts; 402. Support extension frame;

[0035] 5. Lifting control device; 501. Lifting control hydraulic cylinder; 502. Lifting sliding mounting plate; 503. Lifting slide shaft;

[0036] 6. Lateral adjustment device; 601. Lateral adjustment mounting base; 602. Lateral adjustment drive threaded rod; 603. Sliding adjustment support rod; 604. Support adjustment positioning bolt;

[0037] 7. Expansion support auxiliary components; 701. Expansion support sliding rod; 702. Support hydraulic cylinder; 703. Support leveling plate;

[0038] 8. Horizontal auxiliary detection component; 801. Horizontal detection mounting screw; 802. Sliding mounting sleeve; 803. Contact spring; 804. Sliding mounting plate; 805. Pressure sensor; 806. Contact. Detailed Implementation

[0039] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the described 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.

[0040] Example 1: Please refer to Figures 1 to 9 :

[0041] This invention proposes a multi-directional telescopic composite panel frame, comprising a support mounting component 1, on which a telescopic support component 2 is fixedly mounted; an alarm control auxiliary component 3 is fixedly mounted on the support mounting component 1; a support module component 4 is tightly inserted into the support mounting component 1; a lifting control device 5 is fixedly mounted on the support module component 4; a horizontal adjustment device 6 is mounted on the lifting control device 5; the horizontal adjustment device 6 has a symmetrical structure; four expansion support auxiliary components 7 are slidably inserted into the horizontal adjustment device 6; and four horizontal auxiliary components are threaded onto the lifting control device 5. Detection component 8; four horizontal auxiliary detection components 8 are electrically connected to the alarm control auxiliary component 3 respectively; the support mounting component 1 includes: support mounting plate 101, support rollers 1011, support positioning bolts 1012, horizontal bubble 1013, and support mounting frame 102. Four support rollers 1011 are installed at the bottom of the support mounting plate 101; four support positioning bolts 1012 are threadedly connected to the support mounting plate 101; the support mounting frame 102 is fixedly welded to the support mounting plate 101; the horizontal bubble 1013 is fixedly installed on the support mounting plate 101.

[0042] In this embodiment, the support mounting component 1 further includes: four assembly bolts 103, each threadedly connected to the support mounting frame 102; the telescopic support component 2 includes: a telescopic support mounting rod 201, a support adjusting threaded rod 202, and a ground support plate 203, the telescopic support mounting rod 201 being slidably mounted on the support mounting plate 101; the telescopic support mounting rod 201 is threadedly connected to the support adjusting threaded rod 202; the ground support plate 203 is rotatably mounted on the bottom of the support adjusting threaded rod 202; four support positioning bolts 1012 respectively press against the four telescopic support mounting rods 201; the support module component 4 includes: a support auxiliary frame 401, positioning bolts 4011, and a support raising frame 402, the support auxiliary frame 401 being slidably inserted into the support mounting frame 102; the support auxiliary frame 401 is threadedly connected to the support auxiliary frame 401; the support auxiliary frame 401 is threadedly connected to the support adjusting threaded rod 202; the support adjusting threaded rod 202 is rotatably mounted on the bottom of the support adjusting threaded rod 202; four support positioning bolts 1012 are respectively pressed against the four telescopic support mounting rods 201; the support module component 4 includes: a support auxiliary frame 401, positioning bolts 4011, and a support raising frame 402, the support auxiliary frame 401 being slidably inserted into the support mounting frame 102; the support auxiliary frame 401 is threadedly connected to the support adjusting threaded rod 202; the support auxiliary frame 401 is threadedly connected to the support adjusting threaded rod 202; the support adjusting threaded rod 202 is rotatably mounted on the bottom of the support adjusting threaded rod 202; four support positioning bolts 1012 are respectively pressed against the The structure is connected by four positioning bolts 4011; a support extension frame 402 is inserted into the support auxiliary frame 401; the four positioning bolts 4011 press against the support extension frame 402 respectively; four assembly bolts 103 press against the bottom of the support auxiliary frame 401 respectively, and the bottom of the support extension frame 402 is also provided with an insertion post; by using the set support mounting parts 1, it can be easily moved and transported, making it more flexible. With the set support module parts 4, this structure adopts an integrated quick-installation structure, which can realize quick docking and disassembly, which can not only facilitate the overall installation and accelerate the installation efficiency, but also facilitate the transportation through the construction site unloading platform after disassembly. The use of telescopic support parts 2 ensures the stability of the structural support and can realize auxiliary support on the ground, effectively ensuring the flexibility of use. With the help of the observation level bubble 1013, the leveling work is carried out. The operation and assembly are simple and convenient.

[0043] In this embodiment of the present disclosure, the lifting control device 5 includes: a lifting control hydraulic cylinder 501, a lifting sliding mounting plate 502, and a lifting slide shaft 503. The lifting sliding mounting plate 502 is fixedly mounted on the output shaft of the lifting control hydraulic cylinder 501. Four lifting slide shafts 503 are welded to the bottom of the lifting sliding mounting plate 502. The four lifting slide shafts 503 are slidably connected to the support riser 402. The lifting control hydraulic cylinder 501 is fixedly mounted on the support riser 402. The lifting sliding mounting plate 502 is provided with four threaded holes. The horizontal adjustment device 6 includes: The system comprises a horizontal adjustment mounting base 601, a horizontal adjustment drive threaded rod 602, a sliding adjustment support rod 603, and a support adjustment positioning bolt 604. The horizontal adjustment mounting base 601 is fixedly welded to the lifting sliding mounting plate 502. The horizontal adjustment drive threaded rod 602 with reverse threads is rotatably connected to the horizontal adjustment mounting base 601. The horizontal adjustment drive threaded rod 602 is provided with a handle. Two sliding adjustment support rods 603 are slidably connected to the lifting sliding mounting plate 502, and the two sliding adjustment support rods 603 are respectively threaded to the horizontal adjustment drive threaded rod 604. On both sides of the sliding support rod 602; two support adjustment positioning bolts 604 are threadedly connected to the sliding adjustment support rod 603; the expansion support auxiliary component 7 includes: an expansion support sliding rod 701, a support hydraulic cylinder 702, and a support leveling plate 703. The expansion support sliding rod 701 is slidably mounted on the sliding adjustment support rod 603; the support hydraulic cylinder 702 is fixedly mounted on the expansion support sliding rod 701; the support leveling plate 703 is welded to the output shaft of the support hydraulic cylinder 702; the four support adjustment positioning bolts 604 respectively press against the four expansion support sliding rods 701. 1. The structure employs a lifting control device 5 in conjunction with a horizontal adjustment device 6 and an expansion support auxiliary component 7, ensuring the adaptability of the support to the composite slab. It can be freely adjusted according to the area of ​​the composite slab, with a reasonable structure that ensures stable support. At the same time, the expansion support auxiliary component 7 used in this structure can achieve independent support adjustment, making it more suitable for some irregular support requirements. The independent support position can be adjusted to achieve the optimal support position. Independent four-corner support can be achieved by adjusting the support leveling plate 703 driven by the support hydraulic cylinder 702.

[0044] In Example 2, based on Example 1, the alarm control auxiliary component 3 includes: an alarm controller 301 and four alarm auxiliary lights 302. The alarm controller 301 is electrically connected to four alarm auxiliary lights 302. The alarm controller 301 is fixedly mounted on the support mounting frame 102. The four alarm auxiliary lights 302 are respectively fixedly mounted on the support mounting frame 102. The horizontal auxiliary detection component 8 includes: a horizontal detection mounting screw 801, a sliding mounting sleeve 802, and a contact spring 803. The horizontal detection mounting screw 801 is threaded onto the lifting sliding mounting plate 502. The sliding mounting sleeve 802 is fixedly mounted on the horizontal detection mounting screw 801. The contact spring 803 is fitted inside the sliding mounting sleeve 802. The horizontal auxiliary detection component 8 also includes: a sliding mounting plate 804, a pressure sensor 805, and a contact 806. The sliding mounting plate 804 is slidably mounted on the sliding mounting sleeve 802. The pressure sensor 805 is attached to the sliding mounting plate 804. The contact 806 is slidably connected to the sliding mounting sleeve 802. The mounting sleeve 802 is used; the contact 806 is connected to the pressure sensor 805; the contact spring 803 is connected between the sliding mounting plate 804 and the sliding mounting sleeve 802. A horizontal auxiliary detection component 8 is used to assist in real-time flatness support adjustment, ensuring the installation accuracy of the composite slab. By adopting an adjustable support height structure, after the composite slab is installed, the four pressure sensors 805 of this structure sense the pressure in real time. If there is a large deviation in pressure, there is a large deviation in flatness, effectively avoiding deviations during composite slab installation. It also facilitates free and flexible adjustment of the floor slab installation angle, making it more practical. Irregularly shaped composite slabs can also be flexibly detected. The four horizontal detection mounting screws 801 can be independently adjusted to adapt and adjust the support detection height. After the composite slab is installed, the contact 806, when attached to the composite slab, will squeeze the pressure sensor 805. The four pressure sensors 805 simultaneously sense the pressure, and the contact spring 803 provides auxiliary cushioning.

[0045] The working principle of this embodiment is as follows: First, the horizontal adjustment drive threaded rod 602 can be rotated to drive the two sliding adjustable support rods 603 to adjust the distance. After sliding expansion support sliding rod 701, tighten support adjustment positioning bolt 604. After connecting the support mounting plate 101 with support auxiliary frame 401, tighten assembly bolt 103. Connect support heightening frame 402 and tighten positioning bolt 4011. Position the sliding telescopic support mounting rod 201 by tightening support positioning bolt 1012. Rotate support adjustment threaded rod 202 to support the ground through ground support plate 203. Leveling can be performed by observing the level bubble 1013. The lifting control hydraulic cylinder 501 drives the lifting sliding mounting plate 502 to move, which in turn drives the sliding adjustable support rod. The 603 support plate can be adjusted to achieve the optimal support position. Independent four-corner support can be achieved by adjusting the support leveling plate 703 driven by the support hydraulic cylinder 702. The four horizontal detection mounting screws 801 can be freely and independently adjusted to adapt and adjust the support detection height. After the plate is installed, the lifting control hydraulic cylinder 501 drives the lifting sliding mounting plate 502 to rise. After the contact 806 is attached to the plate, it will squeeze the pressure sensor 805. The four pressure sensors 805 sense the pressure at the same time. The contact spring 803 can assist in buffering. If the pressure difference of the four pressure sensors 805 is large, the alarm controller 301 can control the corresponding alarm auxiliary light 302 to assist in alarm prompting.

[0046] The following points should be noted in this article:

[0047] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.

[0048] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0049] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. A multi-directional telescopic laminated plate combined frame, comprising a support mounting piece (1), a telescopic support piece (2) is fixedly installed on the support mounting piece (1); characterized in that: An alarm control auxiliary component (3) is fixedly installed on the support mounting component (1); a support module component (4) is tightly inserted into the support mounting component (1); a lifting control device (5) is fixedly installed on the support module component (4); a horizontal adjustment device (6) is installed on the lifting control device (5); the horizontal adjustment device (6) has a symmetrical structure; four expansion support auxiliary components (7) are slidably inserted into the horizontal adjustment device (6); four horizontal auxiliary detection components (8) are threaded onto the lifting control device (5); the four horizontal auxiliary detection components (8) are electrically connected to the alarm control device (1). Police control auxiliary component (3); the support mounting component (1) includes: support mounting plate (101), support rollers (1011), support positioning bolts (1012), horizontal bubble (1013), and support mounting frame (102). Four support rollers (1011) are installed at the bottom of the support mounting plate (101); four support positioning bolts (1012) are threaded onto the support mounting plate (101); the support mounting frame (102) is fixedly welded to the support mounting plate (101); and the horizontal bubble (1013) is fixedly installed on the support mounting plate (101). The expansion support auxiliary component (7) includes: an expansion support sliding rod (701), a support hydraulic cylinder (702), and a support leveling plate (703). The support hydraulic cylinder (702) is fixedly installed on the expansion support sliding rod (701); the support leveling plate (703) is welded to the output shaft of the support hydraulic cylinder (702). The horizontal auxiliary detection component (8) includes: a horizontal detection mounting screw (801), a sliding mounting sleeve (802), and a contact spring (803). The sliding mounting sleeve (802) is fixedly mounted on the horizontal detection mounting screw (801); the contact spring (803) is fitted inside the sliding mounting sleeve (802). The horizontal auxiliary detection component (8) further includes: a sliding mounting plate (804), a pressure sensor (805), and a contact (806). The sliding mounting plate (804) is slidably mounted on a sliding mounting sleeve (802). The pressure sensor (805) is attached to the sliding mounting plate (804). The contact (806) is slidably connected to the sliding mounting sleeve (802). The contact (806) is connected to the pressure sensor (805). The contact spring (803) is connected between the sliding mounting plate (804) and the sliding mounting sleeve (802).

2. The multi-directional telescoping panel assembly of claim 1, wherein, The support mounting component (1) further includes: assembly bolts (103), four assembly bolts (103) are provided, and the four assembly bolts (103) are threadedly connected to the support mounting frame (102).

3. The multi-directional telescoping panel combination set of claim 1, wherein, The telescopic support component (2) includes: a telescopic support mounting rod (201), a support adjusting threaded rod (202), and a ground support plate (203). The telescopic support mounting rod (201) is slidably mounted on the support mounting plate (101). The telescopic support mounting rod (201) is threadedly connected to the support adjusting threaded rod (202). The ground support plate (203) is rotatably mounted on the bottom of the support adjusting threaded rod (202). The four support positioning bolts (1012) press against the four telescopic support mounting rods (201) respectively.

4. A multi-directional telescopic composite plate assembly frame according to claim 1, characterized in that, The alarm control auxiliary component (3) includes: an alarm controller (301) and an alarm auxiliary light (302). The alarm controller (301) is electrically connected to four alarm auxiliary lights (302). The alarm controller (301) is fixedly installed on the support mounting frame (102). The four alarm auxiliary lights (302) are respectively fixedly installed on the support mounting frame (102).

5. A multi-directional telescopic composite plate assembly frame according to claim 2, characterized in that, The support module (4) includes: a support auxiliary frame (401), positioning bolts (4011), and a support extension frame (402). The support auxiliary frame (401) is slidably inserted into the support mounting frame (102). Four positioning bolts (4011) are threaded onto the support auxiliary frame (401). The support extension frame (402) is inserted into the support auxiliary frame (401). The four positioning bolts (4011) press against the support extension frame (402) respectively. The four assembly bolts (103) press against the bottom of the support auxiliary frame (401) respectively. The bottom of the support extension frame (402) is provided with a plug-in post.

6. A multi-directional telescopic composite plate assembly frame according to claim 5, characterized in that, The lifting control device (5) includes: a lifting control hydraulic cylinder (501), a lifting sliding mounting plate (502), and a lifting slide shaft (503). The lifting control hydraulic cylinder (501) has a lifting sliding mounting plate (502) fixedly mounted on its output shaft. Four lifting slide shafts (503) are welded to the bottom of the lifting sliding mounting plate (502). The four lifting slide shafts (503) are slidably connected to the support riser frame (402). The lifting control hydraulic cylinder (501) is fixedly mounted on the support riser frame (402). The lifting sliding mounting plate (502) has four threaded holes.

7. A multi-directional telescopic composite plate assembly frame according to claim 6, characterized in that, The lateral adjustment device (6) includes: a lateral adjustment mounting base (601), a lateral adjustment drive threaded rod (602), a sliding adjustment support rod (603), and a support adjustment positioning bolt (604). The lateral adjustment mounting base (601) is fixedly welded to the lifting sliding mounting plate (502). The lateral adjustment mounting base (601) is rotatably connected to the lateral adjustment drive threaded rod (602) with reverse threads. The lateral adjustment drive threaded rod (602) is provided with a handle. The lifting sliding mounting plate (502) is slidably connected to two sliding adjustment support rods (603), and the two sliding adjustment support rods (603) are respectively threaded to both sides of the lateral adjustment drive threaded rod (602). The sliding adjustment support rod (603) is threaded with two support adjustment positioning bolts (604).

8. A multi-directional telescopic composite plate assembly frame according to claim 7, characterized in that, The expansion support sliding rod (701) is slidably mounted on the sliding adjustment support rod (603); the four support adjustment positioning bolts (604) respectively press against the four expansion support sliding rods (701).

9. A multi-directional telescopic composite plate assembly frame according to claim 6, characterized in that, The horizontal detection mounting screw (801) is threaded onto the lifting sliding mounting plate (502).

Citation Information

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