CN116752737B - High-rise building vestibule construction support - Google Patents

High-rise building vestibule construction support

Info

Publication number
CN116752737B
CN116752737B CN202310720881.3A CN202310720881A CN116752737B CN 116752737 B CN116752737 B CN 116752737B CN 202310720881 A CN202310720881 A CN 202310720881A CN 116752737 B CN116752737 B CN 116752737B
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CN
China
Prior art keywords
rod
mounting
console
gear
groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202310720881.3A
Other languages
Chinese (zh)
Other versions
CN116752737A (en
Inventor
任中群
沈彩娥
陈琦
周薇
胡强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhongyida Construction Group Co ltd
Original Assignee
Zhongyida Construction Group Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Zhongyida Construction Group Co ltd filed Critical Zhongyida Construction Group Co ltd
Priority to CN202310720881.3A priority Critical patent/CN116752737B/en
Publication of CN116752737A publication Critical patent/CN116752737A/en
Application granted granted Critical
Publication of CN116752737B publication Critical patent/CN116752737B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G1/00Scaffolds primarily resting on the ground
    • E04G1/24Scaffolds primarily resting on the ground comprising essentially special base constructions; comprising essentially special ground-engaging parts, e.g. inclined struts, wheels
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G1/00Scaffolds primarily resting on the ground
    • E04G1/18Scaffolds primarily resting on the ground adjustable in height
    • E04G1/22Scaffolds having a platform on an extensible substructure, e.g. of telescopic type or with lazy-tongs mechanism
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G1/00Scaffolds primarily resting on the ground
    • E04G1/24Scaffolds primarily resting on the ground comprising essentially special base constructions; comprising essentially special ground-engaging parts, e.g. inclined struts, wheels
    • E04G2001/242Scaffolds movable on wheels or tracks

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Legs For Furniture In General (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)

Abstract

本申请涉及建筑施工的领域,尤其是涉及一种高层建筑连廊施工支架,其包括液压升降台、升降机构和控制台,液压升降台上设置有操作台,操作台通过升降机构升降设置于控制台上;升降机构包括驱动机构和多根安装杆,安装杆上设置有转动轴,转动轴位于安装杆长度方向的同一侧,控制台和操作台上均安装有安装板,安装杆的一端通过转动轴转动连接在安装板上,转动轴位于控制台上的安装杆为第一杆体,转动轴位于操作台上的为第二杆体,第一杆体和第二杆体交错设置且转动相连;第一杆体上和第二杆体上均连接有滚轮,操作台和控制台上均设置有挡板,挡板限制滚轮的移动,驱动机构用于驱动安装杆转动。本申请具有便于操作台的位置进行进一步调整的效果。

This application relates to the field of building construction, and in particular to a construction support for a high-rise building corridor. It includes a hydraulic lifting platform, a lifting mechanism, and a control console. An operating table is mounted on the hydraulic lifting platform, and the operating table is raised and lowered onto the control console via the lifting mechanism. The lifting mechanism includes a drive mechanism and multiple mounting rods. Each mounting rod has a rotating shaft located on the same side along its length. Mounting plates are mounted on both the control console and the operating platform. One end of each mounting rod is rotatably connected to the mounting plate via the rotating shaft. The mounting rod with its rotating shaft on the control console is the first rod, and the rod with its rotating shaft on the operating platform is the second rod. The first and second rods are staggered and rotatably connected. Rollers are connected to both the first and second rods. Baffles are provided on both the operating platform and the control console to restrict the movement of the rollers. The drive mechanism drives the mounting rods to rotate. This application facilitates further adjustment of the operating platform's position.

Description

High-rise building vestibule construction support
Technical Field
The application relates to the field of building construction, in particular to a high-rise building corridor construction support.
Background
High-rise buildings refer to residential buildings with building heights greater than 27m and non-single-storey buildings, warehouses and other civil buildings with building heights greater than 24 m. The gallery, i.e. the building and the connection structure between the buildings, has a roof and no building envelope. The corridor can be built between two high-rise buildings according to the requirements of building functions, so that the connection between two towers is convenient.
In the related art, an operator on the ground generally controls the height through a hydraulic lifting platform, an operation platform on which another operator stands is arranged on the hydraulic lifting platform, and after the operator on the ground lifts the operation platform to a designated height through the hydraulic lifting platform, the operator on the operation platform performs construction again.
With respect to the above-mentioned related art, the inventor believes that, because the height of the corridor of the high-rise building is too high, after the operator located on the ground lifts the operation panel to the approximate height of the corridor through the hydraulic lifting platform, the size of the operation panel where the operator is located is smaller than the size of the whole hydraulic lifting platform, the operator located on the ground is far away from the operator located on the operation panel, and the distance that the operation panel needs to be adjusted is not easy to see, so that the position of the operation panel is not easy to be further adjusted.
Disclosure of Invention
In order to facilitate further adjustment of the position of the operating platform, the application provides a high-rise building corridor construction support.
The application provides a high-rise building corridor construction support which adopts the following technical scheme:
The utility model provides a high-rise building corridor construction support, includes hydraulic lifting platform, elevating system and control cabinet, is provided with the operation panel that supplies operating personnel to stand on the hydraulic lifting platform, control cabinet fixed mounting is on the hydraulic lifting platform one end of keeping away from ground, the operation panel is kept away from ground than the control cabinet, the operation panel passes through elevating system and goes up and down to set up on the control cabinet;
The lifting mechanism comprises a driving mechanism and a plurality of mounting rods, each mounting rod is provided with a rotating shaft, the rotating shafts are located on the same side of the length direction of each mounting rod, mounting plates are mounted on the control console and the operation console, one ends of the mounting rods are rotatably connected to the mounting plates through the rotating shafts, the mounting rods on the control console are first rod bodies, the rotating shafts are second rod bodies on the operation console, the first rod bodies and the second rod bodies are arranged in a staggered mode and are rotatably connected, one ends, far away from the rotating shafts, of the first rod bodies are located at the bottom ends of the operation console, one ends, far away from the rotating shafts, of the second rod bodies are located on the top surface of the control console, one ends, far away from the rotating shafts, of the first rod bodies and one ends, far away from the rotating shafts, of the second rod bodies are rotatably connected with idler wheels, baffles are arranged on the operation console and the control console, the baffles are used for limiting movement of the idler wheels, and the driving mechanism is used for driving the mounting rods to rotate.
Through the technical scheme, when a high-rise building corridor is constructed, operators on the ground raise the operation table to the high-rise corridor through the hydraulic lifting table, if the operation table needs to be further raised, the operators on the control table, which are close to the operation table, drive the first rod body and the second rod body to rotate towards one end close to the rotating shaft of the mounting rod through the driving assembly, so that the plurality of rollers are driven to simultaneously roll towards the direction close to the rotating shaft of the mounting rod, meanwhile, the baffle in the chute limits the rollers to roll on the control table and the operation table, the distance between the rotating shaft of the first rod body and the rotating shaft of the second rod body is increased, so that the operation table is raised, and when the operation table needs to be further lowered, the operators on the control table drive the first rod body and the second rod body to rotate towards one end far away from the rotating shaft of the operation table through the driving assembly, drive the plurality of rollers to roll towards the direction far away from the rotating shaft of the mounting rod simultaneously, and the distance between the rotating shaft of the first rod body and the rotating shaft of the second rod body is reduced, so that the operation table is lowered, and the position of the operation table is further adjusted.
Optionally, the actuating mechanism includes installation piece and slip subassembly, the installation piece passes through slip subassembly slidable mounting on the control cabinet, the lift groove has been seted up on the installation piece, the lift inslot goes up and down to be provided with the lift piece, the lift piece passes through the connecting rod and links to each other with first body of rod.
Through adopting above-mentioned technical scheme, when the operation panel risees, make the installation piece wholly to being close to the direction slip of first body of rod axis of rotation through sliding component, the lifter passes through the connecting rod and pulls the first body of rod to being close to the direction rotation of self axis of rotation, and the lifter also risees from the lowest this moment, further drives the whole rising of first body of rod, even the first body of rod rotates towards the one end of self axis of rotation, finally realizes that first body of rod and second body of rod all rotate towards the one end of self axis of rotation to realized the pivoted drive to the installation pole.
Optionally, the sliding component comprises a first gear, a second gear, a rotating motor and a pulley, wherein a supporting seat is arranged on the control console, the supporting seat is used for supporting the rotating shafts of the first gear, the second gear and the rotating motor, the rotating shafts of the rotating motor are mutually connected with the first gear and the second gear, the first gear and the second gear are coaxially arranged with the rotating shaft of the rotating motor, a first rack is fixedly connected on the mounting block, one side, far away from the control console, of the first gear is mutually meshed with the first rack, a rotating shaft body is arranged on the roller on the control console, the rotating shaft body is rotationally connected with the supporting block, a second rack is fixedly connected on the supporting block, and one side, far away from the control console, of the second rack is meshed with one side, far away from the control console, of the second gear.
Through adopting above-mentioned technical scheme, when the operation panel goes up and down, start the rotation motor, first gear and second gear rotate simultaneously, and the installation piece passes through the pulley and slides, and then drives the gyro wheel that is located on the control panel along with the installation piece syntropy removal through first rack and second rack to the installation piece of being convenient for drives the gyro wheel and removes, has improved the efficiency that the operation panel goes up and down.
Optionally, the roller on the console is a first wheel body, the roller on the console is a second wheel body, the console is provided with a support column and a connecting piece, one end of the support column, which is close to the console, is mutually abutted with one end of the console, which is close to the ground, one end of the support column, which is far away from the console, is slidably arranged on the support block through the connecting piece, and when the first rod body and the second rod body control the console to lift, the support column is connected with the support block through the connecting piece, and one end of the support column, which is far away from the console, is always kept mutually abutted with the bottom surface of one side, which is far away from the rotation shaft of the mounting rod, of the console.
Through adopting above-mentioned technical scheme, when the operation panel risees, the installation pole moves to the one end of self axis of rotation gradually along with the slip of gyro wheel, and one side that keeps away from the installation pole axis of rotation on the operation panel loses the support gradually, and the focus of operation panel is on one side of deflection, makes the support column all the time with the one side bottom surface looks butt of keeping away from the installation pole axis of rotation on the operation panel through the connecting piece, has improved the stability of operation panel.
Optionally, the connecting piece includes continuous slider and connecting rod, be provided with the function board near control cabinet one end on the support column, be provided with first wedge on the function board near control cabinet one end, the one end that keeps away from the control cabinet on the connecting rod is provided with the second wedge, the slider links to each other with the second wedge, offer the gliding spout of confession slider on the first wedge, the slider slides and sets up in the spout, the connecting rod slides relatively through slider and support column, the one end that keeps away from the operation panel on the connecting rod links to each other with the supporting shoe, works as when the operation panel rotates and goes up and down through the installation pole, the support column is mutually supported and is gone up and down along with the operation panel through first wedge and second wedge.
By adopting the technical scheme, when the mounting rod slides, the first wheel body slides on the control console along with the mounting rod, the supporting block is driven to slide, the operating console ascends and descends along with the sliding, and the distance between the operating console and the control console changes accordingly. Meanwhile, the first wedge-shaped surface and the second wedge-shaped surface are matched with each other, the connecting rod and the supporting column slide relatively, so that the distance between the supporting column and the control console is adjusted along with the lifting of the control console, the supporting column is convenient to support the control console all the time, and the stability of the control console is further improved.
Optionally, the functional board comprises an outer cylinder and an inner rod, wherein a spring is arranged in the outer cylinder, the inner rod is arranged in the outer cylinder in a telescopic manner through the spring, one end of the spring is connected with the inner wall of the outer cylinder, the other end of the spring is connected with the inner rod, the sliding groove comprises a first groove body and a second groove body which are mutually communicated, the second groove body is positioned on the inner rod, the sliding block can slide to be abutted against the inner wall of one end, close to the rotating shaft of the mounting rod, of the second groove body, and the first groove body is positioned on the outer cylinder and is mutually communicated with the outer cylinder.
Through the technical scheme, when the operation table is lifted, the first wheel body slides towards one end close to the rotating shaft of the mounting rod, the sliding block on the connecting rod is pulled to slide into the second groove body from the first groove body until the inner rod is driven to extend out of the outer cylinder, the spring is stretched, when the operation table is lowered, the first wheel body slides towards one end far away from the rotating shaft of the mounting rod, the spring loses tension, the restoring length is gradually recovered, the inner rod is driven to return to the outer cylinder, and when the operation table is lowered, the length of the supporting column and the connecting rod together can be adjusted by contracting the inner rod into the outer cylinder, so that the operation table is not easy to influence to be close to the control table downwards.
Optionally, the device further comprises a limiting frame, wherein the limiting frame is fixedly connected to the side face, close to one side of the console, of the operating platform, and the limiting frame is used for limiting movement of the supporting column.
Through adopting above-mentioned technical scheme, carry out spacingly to the support column, further improved the stability of support column.
Optionally, the sliding block is a dovetail block, and the sliding groove is matched with the sliding block.
Through adopting above-mentioned technical scheme, make the slider be difficult for dropping out from the spout in, improved the stability of slider.
Optionally, the control console and the operation console are both provided with protective fences, and the protective fences are respectively positioned on the periphery sides of the control console and the operation console.
Through adopting above-mentioned technical scheme, when operating personnel is carrying out the high altitude construction, protect operating personnel's safety, improved operating personnel's security.
Optionally, a mounting through groove is formed in the guard rail, a rotating plate is rotatably connected to the side wall of the mounting through groove, the rotating plate can rotate to be abutted to the side wall of the mounting through groove, the rotating plate can also rotate to be exposed out of the mounting through groove, a fixing ring is arranged on the inner wall of the guard rail, mounting buckles are correspondingly arranged on the rotating plate, and when the rotating plate rotates to be abutted to the side wall of the mounting through groove, the fixing ring is hung on the mounting buckles.
Through the technical scheme, after an operator performs high-altitude operation, the operator rotates the rotating plate until the installation through groove is exposed, after a plurality of operators enter the operation table and the control table respectively, the rotating plate is rotated until the operating personnel are mutually abutted with the side wall of the installation through groove, then the fixing ring is hung on the installation buckle, after the operator stops the high-altitude operation, the fixing ring is taken down from the installation buckle, the rotating plate is rotated to enable the protective fence to be opened, and the operation personnel can conveniently enter and exit.
In summary, the present application includes at least one of the following beneficial technical effects:
1. Through the arrangement of the lifting mechanism, when a high-rise building corridor is constructed, an operator on the ground lifts the operation table to the high-rise corridor through the hydraulic lifting table, if the operation table needs to be lifted further, the operator on the control table, which is close to the operation table, drives the first rod body and the second rod body to rotate towards one end which is close to the rotating shaft of the mounting rod through the driving component, so that the plurality of rollers are driven to simultaneously roll towards the direction which is close to the rotating shaft of the mounting rod, meanwhile, the baffle in the chute limits the rollers to roll on the control table and the operation table, the distance between the rotating shaft of the first rod body and the rotating shaft of the second rod body is increased, so that the operation table is lifted up;
2. Through the setting of connecting piece, when the installation pole slides, first wheel body slides on the control cabinet thereupon, drives the supporting shoe and slides, and the operation panel goes up and down thereupon, and the distance between operation panel and the control cabinet changes from this. Meanwhile, the first wedge-shaped surface and the second wedge-shaped surface are matched with each other, and the connecting rod and the supporting column slide relatively, so that the distance between the supporting column and the control console is adjusted along with the lifting of the operating console, the supporting column is convenient to support the operating console all the time, and the stability of the operating console is further improved;
3. When the operation table descends, the first wheel body slides towards one end far away from the rotation shaft of the installation rod, the spring loses pulling force, the length of the spring is gradually recovered, the inner rod is driven to reset into the outer cylinder, and when the operation table descends, the length of the support column and the connecting rod together can be adjusted by contracting the inner rod into the outer cylinder, so that the operation table is not easy to influence to be close to the control table downwards.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a rack for constructing a corridor of a high-rise building according to an embodiment of the present application.
Fig. 2 is a schematic diagram showing a structure of a guard rail according to an embodiment of the present application.
Fig. 3 is a schematic structural view of the lifting mechanism for displaying after hiding the guard rail and part of the mounting plate in the embodiment of the application.
Fig. 4 is a schematic diagram showing a driving mechanism according to an embodiment of the present application.
Fig. 5 is a schematic structural view showing the sliding assembly after hiding the supporting seat according to an embodiment of the present application.
Fig. 6 is a schematic structural view showing the functional board and the connecting member after rotating the connecting rod according to the embodiment of the present application.
The reference numerals are 1, a hydraulic lifting table, 11, a control table, 111, a supporting seat, 2, a lifting mechanism, 21, a driving mechanism, 211, a mounting block, 2111, a lifting groove, 2112, a lifting block, 2113, a connecting rod, 2114, a first rack, 212, a sliding component, 2121, a first gear, 2122, a second gear, 2123, a rotating motor, 2124, a pulley, 22, a mounting rod, 221, a rotating shaft, 222, a first rod body, 223, a second rod body, 224, a roller, 2241, a rotating shaft body, 2242, a first wheel body, 2243, a second wheel body, 3, an operating table, 31, a guard rail, 311, a mounting through groove, 312, a rotating plate, 3121, a mounting buckle, 313, a fixed ring, 32, a mounting plate, 321, a baffle plate, 33, a limiting frame, 4, a supporting block, 41, a second rack, 5, a supporting column, 51, a function plate, 511, a first wedge surface, 5111, a sliding groove, 512, an outer cylinder, 5121, a first groove body, 513, an inner rod, a wedge surface, 5131, a spring, 514, a connecting rod, 61, a wedge surface, 61, a second wedge surface.
Detailed Description
The application is described in further detail below with reference to fig. 1-6.
The embodiment of the application discloses a high-rise building corridor construction support. Referring to fig. 1 and 2, the high-rise building corridor construction support includes a hydraulic lifting table 1, a lifting mechanism 2 and an operation table 3, a control table 11 is fixedly installed on the hydraulic lifting table 1, the operation table 3 is lifted and lowered by the lifting mechanism 2 to be arranged on the control table 11, and the area of the control table 11 is larger than that of the operation table 3. The guard rail 31 is fixedly arranged on the peripheral side walls of the control console 11 and the operation console 3, the guard rail 31 is provided with a mounting through groove 311, a rotating plate 312 is rotatably connected to the side wall of the mounting through groove 311, the rotating plate 312 can rotate to be abutted against the side wall of the mounting through groove 311, the rotating plate 312 can also rotate to be exposed out of the mounting through groove 311, the inner wall of the guard rail 31 is rotatably provided with a fixing ring 313, the rotating plate 312 is correspondingly and fixedly provided with a mounting buckle 3121, and when the rotating plate 312 rotates to be abutted against the side wall of the mounting through groove 311, the fixing ring 313 is hung on the mounting buckle 3121.
When the high-rise building corridor is constructed, an operator positioned on the ground firstly lifts the operation platform 3 to the high-rise corridor through the hydraulic lifting platform 1, and if the operation platform 3 needs to be further adjusted in position, the operator on the control platform 11 which is close to the operation platform 3 controls the operation platform 3 to lift through the lifting mechanism 2, so that the position of the operation platform 3 is further adjusted. When operating personnel are working aloft, the safety of the operating personnel is protected, and the safety of the operating personnel is improved. When the operator performs the overhead working, the operator rotates the rotating plate 312 until the installation through groove 311 is exposed, and after a plurality of operators enter the operation table 3 and the control table 11 respectively, the operator rotates the rotating plate 312 until the side walls of the installation through groove 311 are mutually abutted, then the fixing ring 313 is hung on the installation buckle 3121, when the operator stops the overhead working, the fixing ring 313 is taken down from the installation buckle 3121, and the guard rail 31 is opened by rotating the rotating plate 312, so that the operator can conveniently enter and exit.
Referring to fig. 1, 3 and 4, the lifting mechanism 2 includes a driving mechanism 21 and two sets of mounting bars 22, the two sets of mounting bars 22 are arranged in parallel along the width direction of the console 11, the number of the mounting bars 22 in each set is two, each mounting bar 22 is provided with a rotation shaft 221, and the rotation shafts 221 are located on the same side of the two sets of mounting bars 22 in the length direction. The mounting plates 32 are fixedly mounted on the peripheral side of the top surface of the console 11 and the peripheral side of the bottom surface of the console 3, one end of each mounting rod 22 is rotatably connected to the mounting plate 32 through a rotating shaft 221, each mounting rod 22 on the console 11 is a first rod body 222, each rotating shaft 221 is a second rod body 223 on the console 3, the first rod bodies 222 and the second rod bodies 223 are arranged in a staggered mode and are rotatably connected, rollers 224 are rotatably connected to one ends, far away from the rotating shafts 221, of the first rod bodies 222 and the second rod bodies 223, of each mounting plate 32 of the console 3 and the mounting plate 32 on the console 11, a plurality of baffles 321 are fixedly connected to each mounting plate 32, the baffles 321 limit movement of the rollers 224, and the driving mechanism 21 is used for driving the mounting rods 22 to rotate.
When the operation desk 3 needs to be further lifted, an operator on the control desk 11 drives the first rod body 222 and the second rod body 223 to rotate towards one end close to the rotating shaft 221 of the mounting rod 22 through the driving component, so that the plurality of rollers 224 are driven to simultaneously roll towards the direction close to the rotating shaft 221 of the mounting rod 22, meanwhile, the baffle 321 in the sliding groove 5111 limits the rollers 224 to roll on the control desk 11 and the operation desk 3 only, the distance between the rotating shaft 221 of the first rod body 222 and the rotating shaft 221 of the second rod body 223 is increased, so that the operation desk 3 is lifted, when the operation desk 3 needs to be further lowered, the operator on the control desk 11 drives the first rod body 222 and the second rod body 223 to rotate towards one end far away from the rotating shaft 221 of the operator through the driving component, so that the plurality of rollers 224 are driven to simultaneously roll towards the direction far away from the rotating shaft 221 of the mounting rod 22, and the distance between the rotating shaft 221 of the first rod body 222 and the rotating shaft 221 of the second rod 223 is reduced, so that the operation desk 3 is lowered, and the position of the operation desk 3 is finally adjusted.
Referring to fig. 3 and 4, the driving mechanism 21 includes a mounting block 211 and a sliding assembly 212, the mounting block 211 is slidably mounted on the console 11 through the sliding assembly 212, a lifting groove 2111 is formed in the mounting block 211 along the height direction of the mounting block 211, a lifting block 2112 is arranged in the lifting groove 2111 in a lifting manner, and the sliding block 61 is fixedly connected with one end, close to the rotation shaft 221, of the first rod body 222 through a connecting rod 2113.
When the operation table 3 is lifted, the sliding assembly 212 slides the whole mounting block 211 in a direction approaching to the rotation axis 221 of the first rod body 222, the lifting block 2112 pulls the first rod body 222 to rotate in a direction approaching to the rotation axis 221 of the first rod body through the connecting rod 2113, at this time, the lifting block 2112 is lifted from the lowest position, and further drives the whole first rod body 222 to lift, that is, the first rod body 222 rotates towards one end of the rotation axis 221 of the first rod body 222 and the second rod body 223 rotate towards one end of the rotation axis 221 of the first rod body 222. When the console 3 descends, the sliding assembly 212 slides the whole mounting block 211 in a direction far away from the rotation shaft 221 of the first rod body 222, the lifting block 2112 pulls the first rod body 222 to rotate in a direction far away from the rotation shaft 221 of the first rod body through the connecting rod 2113, at this time, the lifting block 2112 descends to further drive the whole first rod body 222 to descend, namely, the first rod body 222 rotates towards one end far away from the rotation shaft 221 of the first rod body 222, and finally, the first rod body 222 and the second rod body 223 both rotate towards one end far away from the rotation shaft 221 of the first rod body 223, so that the rotation of the mounting rod 22 is driven.
Referring to fig. 3,4 and 5, the sliding assembly 212 includes a first gear 2121, a second gear 2122, a rotating motor 2123 and a pulley 2124, a support base 111 is fixedly mounted on the console 11, the support base 111 is used for supporting rotating shafts of the first gear 2121, the second gear 2122 and the rotating motor 2123, the rotating shafts of the rotating motor 2123 are mutually connected with the first gear 2121 and the second gear 2122, the rotating shafts of the first gear 2121, the second gear 2122 and the rotating motor 2123 are coaxially arranged, a first rack 2114 is fixedly connected to the mounting block 211, one side, away from the console 11, of the first gear 2121 is meshed with the first rack 2114, rotating shafts 2241 are fixedly connected to two rollers 224 located on the console 11, the high-rise building gallery construction support further includes a support block 4, the two rotating shafts 2241 are rotatably connected with the support block 4, a second rack 41 is fixedly connected to the support block 4, and the second rack 41 is meshed with one side, away from the console 11, of the second gear 2122.
When the operation panel 3 is lifted, the rotating motor 2123 is started, the first gear 2121 and the second gear 2122 rotate simultaneously, the installation block 211 slides through the pulley 2124, the roller 224 on the control panel 11 is driven to move along with the installation block 211 in a direction close to the rotating shaft 221 of the installation rod 22 through the first rack 2114 and the second rack 41, when the operation panel 3 is lifted, the rotating motor 2123 is started, the first gear 2121 and the second gear 2122 rotate simultaneously, the installation block 211 slides through the pulley 2124, the roller 224 on the control panel 11 is driven to move along with the installation block 211 in a direction far away from the rotating shaft 221 of the installation rod 22 through the first rack 2114 and the second rack 41, and therefore the roller 224 is conveniently driven to move by the installation block 211, and lifting efficiency of the operation panel 3 is improved.
Referring to fig. 3, 4 and 5, the roller 224 on the console 11 is a first roller 2242, the roller 224 on the console 3 is a second roller 2243, the high-rise building corridor construction support further comprises a support column 5 and a connecting piece 6, one end of the support column 5 close to the console 3 is mutually abutted with one end of the console 3 close to the ground, one end of the support column 5 far away from the console 3 is slidably arranged on the support block 4 through the connecting piece 6, when the first rod body 222 and the second rod body 223 control the console 3 to lift, the support column 5 is connected with the support block 4 through the connecting piece 6, and one end of the support column 5 far away from the console 11 is always kept mutually abutted with one side bottom surface of the console 3 far away from the rotating shaft 221 of the mounting rod 22. The bottom surface of the operation table 3 is fixedly connected with a limiting frame 33, an inner hole of the limiting frame 33 is matched with the top surface of the support column 5, and the limiting frame 33 is used for limiting the movement of the support column 5.
When an operator on the console 11 controls the console 3 to rise through the driving mechanism 21, the mounting rod 22 gradually moves to one end of the rotating shaft 221 along with the sliding of the roller 224, and the side, away from the rotating shaft 221 of the mounting rod 22, of the console 3 gradually loses support, so that the center of gravity of the console 3 gradually shifts to the side, close to the rotating shaft 221 of the mounting rod 22, of the console 3, and the support column 5 is always abutted to the bottom surface, away from the rotating shaft 221 of the mounting rod 22, of the console 3 through the connecting piece 6, so that the stability of the console 3 is improved. Meanwhile, the support column 5 is limited by the limiting frame 33 on the operation table 3, so that the stability of the support column 5 is further improved
Referring to fig. 3, 5 and 6, the connecting piece 6 includes fixedly connected slider 61 and connecting rod 62, be close to control cabinet 11 one end on the support column 5 and be connected with function board 51, one end integrated into one piece that is close to control cabinet 11 on the function board 51 has first wedge surface 511, one end integrated into one piece that is kept away from control cabinet 11 on the connecting rod 62 has second wedge surface 621, set up the spout 5111 that supplies slider 61 to slide on the first wedge surface 511, slider 61 slides and sets up in spout 5111, slider 61 is the dovetailed block, spout 5111 and slider 61 looks adaptation make slider 61 be difficult for dropping out from spout 5111, the stability of slider 61 has been improved. The connecting rod 62 slides relative to the supporting column 5 through the sliding block 61, one end of the connecting rod 62 far away from the operating platform 3 is fixedly connected with the supporting block 4, and when the operating platform 3 ascends and descends along with the rotation of the mounting rod 22, the supporting column 5 ascends and descends along with the operating platform 3 through the mutual matching of the first wedge surface 511 and the second wedge surface 621.
When the mounting lever 22 slides, the first wheel 2242 slides on the console 11 to drive the support block 4 to slide, and the console 3 is lifted and lowered accordingly, whereby the distance between the console 3 and the console 11 is changed. Through the mutual cooperation of the first wedge surface 511 and the second wedge surface 621, the connecting rod 62 and the support column 5 slide relatively, so that the distance between the support column 5 and the control console 11 is adjusted along with the lifting of the operation console 3, the support column 5 is convenient to support the operation console 3 all the time, and the stability of the operation console 3 is further improved.
Referring to fig. 5 and 6, the functional plate 51 includes an outer cylinder 512, an inner rod 513 and a spring 514, the inner rod 513 is telescopically disposed in the outer cylinder 512 by the spring 514, one end of the spring 514 is fixedly connected with the inner wall of the outer cylinder 512, the other end of the spring 514 is fixedly connected with one end of the inner rod 513 far away from the supporting block 4, the sliding groove 5111 includes a first groove 5121 and a second groove 5131 which are mutually communicated, the second groove 5131 is located on the inner rod 513, the sliding block 61 can slide to abut against the inner wall of one end of the second groove 5131 close to the rotating shaft 221 of the mounting rod 22, and the first groove 5121 is located on the outer cylinder 512 and is mutually communicated with the outer cylinder 512.
When the console 3 is lifted, the first wheel 2242 moves toward the end near the rotation shaft 221 of the mounting rod 22, and pulls the slider 61 on the connecting rod 62 to slide from the first groove 5121 into the second groove 5131, then pulls the connecting rod 62 to slide in the second groove 5131 on the inner rod 513 until abutting against the side wall of the second groove 5131 near the mounting block 211, then continues to pull the connecting rod 62, and the connecting rod 62 applies pressure to the inner wall of the second groove 5131, so that the inner rod 513 is pulled out from the outer cylinder 512, and the spring 514 is stretched. When the console 3 descends, the first wheel 2242 slides towards one end far away from the rotation shaft 221 of the mounting rod 22, the connecting rod 62 is not abutted against the side wall of the second groove 5131, which is close to the mounting block 211, the spring 514 loses tension, the spring 514 is restored to the original length, tension is applied to the inner rod 513 to drive the inner rod 513 to reset into the outer cylinder 512, and when the console 3 descends, the length of the supporting column 5 and the connecting rod 62 can be adjusted by contracting the inner rod 513 into the outer cylinder 512, so that the supporting column 5 and the connecting rod 62 are not easy to influence the downward approach of the console 3 and the console 11 due to the too long length.
The implementation principle of the high-rise building corridor construction support is that when a corridor of a high-rise building needs to be constructed, one operator ascends the operation table 3 through a ladder, the other operator ascends the control table 11, and the operator on the ground firstly ascends the control table 11 and the operation table 3 to the approximate height of the corridor through the hydraulic lifting table 1. When the operator needs to further adjust the position of the operation platform 3 in the corridor construction process, the operator on the control platform 11 starts the rotating motor 2123 to enable the first gear 2121 and the second gear 2122 to rotate simultaneously, so that the first rack 2114 and the second rack 41 drive the mounting block 211 and the first wheel 2242 to move along the direction close to the rotating shaft 221 of the first rod body 222, the mounting block 211 moves horizontally relative to the mounting rod 22, the lifting block 2112 on the mounting block 211 moves vertically simultaneously, and the first rod body 222 is pulled to rotate around the rotating shaft 221 by matching with the horizontal movement of the mounting block 211 and the vertical movement of the sliding block 61, and the second rod body 223 is enabled to rotate along the rotating shaft 221, so that the operation platform 3 is lifted through the sliding of the first wheel 2242 and the second wheel 2243. Meanwhile, when the first wheel 2242 slides on the console 11, the first wheel 2242 keeps the support column 5 in a state of always abutting against the console 3 by relatively sliding the support column 5 and the connecting rod 62. When the first wheel 2242 and the second wheel 2243 move in a direction close to the rotation shaft 221, the center of gravity of the console 3 is shifted, the support column 5 and the console 3 always keep in a contact state, one end of the console 3 away from the rotation shaft 221 is supported, and stability of the console 3 is improved.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.

Claims (7)

1.一种高层建筑连廊施工支架,包括液压升降台(1),液压升降台(1)上设置有供操作人员站立的操作台(3),其特征在于:还包括升降机构(2)和控制台(11),所述控制台(11)固定安装在液压升降台(1)上远离地面的一端,所述操作台(3)相较于控制台(11)远离地面,所述操作台(3)通过升降机构(2)升降设置于控制台(11)上;1. A construction support for a high-rise building corridor, comprising a hydraulic lifting platform (1), wherein an operating platform (3) for operators to stand on is provided on the hydraulic lifting platform (1), characterized in that: it further comprises a lifting mechanism (2) and a control console (11), wherein the control console (11) is fixedly installed on the hydraulic lifting platform (1) at one end away from the ground, and the operating platform (3) is further away from the ground than the control console (11), wherein the operating platform (3) is lifted and lowered on the control console (11) by the lifting mechanism (2); 所述升降机构(2)包括驱动机构(21)和多根安装杆(22),每根所述安装杆(22)上均设置有转动轴(221),所述转动轴(221)位于每个安装杆(22)长度方向的同一侧,所述控制台(11)和操作台(3)上均安装有安装板(32),所述安装杆(22)的一端通过转动轴(221)转动连接在安装板(32)上,所述转动轴(221)位于控制台(11)上的安装杆(22)为第一杆体(222),所述转动轴(221)位于操作台(3)上的为第二杆体(223),所述第一杆体(222)和第二杆体(223)交错设置且转动相连;所述第一杆体(222)上远离自身转动轴(221)的一端位于操作台(3)的底端,所述第二杆体(223)上远离自身转动轴(221)的一端位于控制台(11)的顶面上,且所述第一杆体(222)上远离自身转动轴(221)的一端和第二杆体(223)上远离自身转动轴(221)的一端均转动连接有滚轮(224),所述操作台(3)和控制台(11)上均设置有挡板(321),所述挡板(321)限制滚轮(224)的移动,所述驱动机构(21)用于驱动安装杆(22)转动;位于所述控制台(11)上的滚轮(224)为第一轮体(2242),位于所述操作台(3)上的滚轮(224)为第二轮体(2243);所述控制台(11)上设置有支撑柱(5)和连接件(6),所述支撑柱(5)上靠近操作台(3)的一端与操作台(3)上靠近地面的一端相互抵接,所述支撑柱(5)上远离操作台(3)的一端通过连接件(6)滑动设置在支撑块(4)上,当所述第一杆体(222)和第二杆体(223)控制操作台(3)升降时,所述支撑柱(5)通过连接件(6)与支撑块(4)相连,且所述支撑柱(5)上远离控制台(11)的一端始终保持与操作台(3)上远离安装杆(22)转动轴(221)的一侧底面相互抵接;所述连接件(6)包括相连的滑块(61)和连接杆(62),所述支撑柱(5)上靠近控制台(11)一端设置有功能板(51),所述功能板(51)上靠近控制台(11)一端设置有第一楔形面(511),所述连接杆(62)上远离控制台(11)的一端设置有第二楔形面(621),所述滑块(61)与第二楔形面(621)相连,所述第一楔形面(511)上开设有供滑块(61)滑动的滑槽(5111),所述滑块(61)滑动设置于滑槽(5111)内,所述连接杆(62)通过滑块(61)与支撑柱(5)相对滑移,所述连接杆(62)上远离操作台(3)的一端与支撑块(4)相连;当所述操作台(3)通过安装杆(22)转动而升降时,所述支撑柱(5)通过第一楔形面(511)和第二楔形面(621)相互配合而随着操作台(3)升降;还包括限位框(33),所述限位框(33)固定连接在操作台(3)上靠近控制台(11)一侧的侧面上,所述限位框(33)用于限制支撑柱(5)的移动。The lifting mechanism (2) includes a drive mechanism (21) and multiple mounting rods (22). Each mounting rod (22) is provided with a rotating shaft (221). The rotating shaft (221) is located on the same side of the length direction of each mounting rod (22). Mounting plates (32) are installed on both the control console (11) and the operating table (3). One end of each mounting rod (22) is rotatably connected to the mounting plate (32) via the rotating shaft (221). The mounting rod (22) with the rotating shaft (221) on the control console (11) is the first rod body (222), and the mounting rod (22) with the rotating shaft (221) on the operating table (3) is the second rod body (223). The first rod body (222) and the second rod body (223) are staggered and rotatably connected. The end of the first rod body (222) away from its own rotating shaft (221) is located at the bottom end of the operating table (3). One end of the rod (223) away from its own rotation axis (221) is located on the top surface of the console (11), and both the end of the first rod (222) away from its own rotation axis (221) and the end of the second rod (223) away from its own rotation axis (221) are rotatably connected to rollers (224). Both the operating table (3) and the console (11) are provided with baffles (321), which restrict the movement of the rollers (224). The drive mechanism (21) is used to drive the mounting rod (22) to rotate. The roller (224) on the console (11) is the first wheel body (2242), and the roller (224) on the operating table (3) is the second wheel body (2243). The console (11) is provided with a support column (5) and a connector (6). The end of the support column (5) near the operating table (3) is connected to the operating table (6). 3) The ends of the support column (5) near the ground abut against each other. The end of the support column (5) away from the operating table (3) is slidably mounted on the support block (4) through the connector (6). When the first rod (222) and the second rod (223) control the operation table (3) to rise and fall, the support column (5) is connected to the support block (4) through the connector (6), and the end of the support column (5) away from the control console (11) always abuts against the bottom surface of the side of the operation table (3) away from the rotating shaft (221) of the mounting rod (22). The connector (6) includes a connected slider (61) and a connecting rod (62). A function plate (51) is provided on the end of the support column (5) near the control console (11). A first wedge surface (511) is provided on the end of the function plate (51) near the control console (11). A connecting rod (62) is provided on the end away from the control console (11). There is a second wedge surface (621), the slider (61) is connected to the second wedge surface (621), the first wedge surface (511) has a groove (5111) for the slider (61) to slide, the slider (61) is slidably disposed in the groove (5111), the connecting rod (62) slides relative to the support column (5) through the slider (61), and the end of the connecting rod (62) away from the operating table (3) is connected to the support block (4); when the operating table (3) is rotated and raised and lowered by the mounting rod (22), the support column (5) is raised and lowered with the operating table (3) through the cooperation of the first wedge surface (511) and the second wedge surface (621); it also includes a limiting frame (33), the limiting frame (33) is fixedly connected to the side of the operating table (3) near the control console (11), and the limiting frame (33) is used to limit the movement of the support column (5). 2.根据权利要求1所述的一种高层建筑连廊施工支架,其特征在于:所述驱动机构(21)包括安装块(211)和滑动组件(212),所述安装块(211)通过滑动组件(212)滑动安装在控制台(11)上,所述安装块(211)上开设有升降槽(2111),所述升降槽(2111)内升降设置有升降块(2112),所述升降块(2112)通过连杆(2113)与第一杆体(222)相连。2. A construction support for a high-rise building corridor according to claim 1, characterized in that: the driving mechanism (21) includes an installation block (211) and a sliding component (212), the installation block (211) is slidably installed on the control console (11) through the sliding component (212), the installation block (211) is provided with a lifting groove (2111), the lifting groove (2111) is provided with a lifting block (2112) for lifting, and the lifting block (2112) is connected to the first rod body (222) through a connecting rod (2113). 3.根据权利要求2所述的一种高层建筑连廊施工支架,其特征在于:所述滑动组件(212)包括第一齿轮(2121)、第二齿轮(2122)、转动电机(2123)和滑轮(2124),所述控制台(11)上设置有支撑座(111),所述支撑座(111)用于支撑第一齿轮(2121)、第二齿轮(2122)和转动电机(2123)的转轴,所述转动电机(2123)的转轴与第一齿轮(2121)、第二齿轮(2122)均相互连接,且所述第一齿轮(2121)、第二齿轮(2122)均和转动电机(2123)的转轴同轴设置;所述安装块(211)上固定连接有第一齿条(2114),所述第一齿轮(2121)上远离控制台(11)的一侧与第一齿条(2114)相互啮合,位于所述控制台(11)上的滚轮(224)上设置有转动轴体(2241),所述转动轴体(2241)转动连接有支撑块(4),所述支撑块(4)上固定连接有第二齿条(41),所述第二齿条(41)与第二齿轮(2122)上远离控制台(11)的一侧相啮合。3. A construction support for a high-rise building corridor according to claim 2, characterized in that: the sliding component (212) includes a first gear (2121), a second gear (2122), a rotating motor (2123), and a pulley (2124); a support base (111) is provided on the control console (11), the support base (111) is used to support the rotating shafts of the first gear (2121), the second gear (2122), and the rotating motor (2123); the rotating shaft of the rotating motor (2123) is interconnected with the first gear (2121) and the second gear (2122); and the first gear (2121), the second gear (2122), the second gear (2122), the third gear (2123), the fourth gear (2124), the fifth gear (2122), the sixth gear (2123), the seventh gear (2124), the eighth gear (2125), the ninth gear (2126), the ellipse (2127), the ellipse (2128), the ellipse (2129), the ellipse (2120), the ellipse (2121), the ellipse (212 ... Both gears (2122) are coaxially arranged with the rotating shaft of the rotating motor (2123); a first rack (2114) is fixedly connected to the mounting block (211), and the side of the first gear (2121) away from the console (11) meshes with the first rack (2114); a rotating shaft (2241) is provided on the roller (224) located on the console (11), and a support block (4) is rotatably connected to the rotating shaft (2241); a second rack (41) is fixedly connected to the support block (4), and the second rack (41) meshes with the side of the second gear (2122) away from the console (11). 4.根据权利要求3所述的一种高层建筑连廊施工支架,其特征在于:所述功能板(51)包括外筒(512)和内杆(513),所述外筒(512)内设置有弹簧(514),所述内杆(513)通过弹簧(514)伸缩设置于外筒(512)内,所述弹簧(514)的一端与外筒(512)的内壁相连,所述弹簧(514)的另一端与内杆(513)相连;所述滑槽(5111)包括相互连通的第一槽体(5121)和第二槽体(5131),所述第二槽体(5131)位于内杆(513)上,所述滑块(61)可滑动至与第二槽体(5131)靠近安装杆(22)转动轴(221)的一端内壁相抵接,所述第一槽体(5121)位于外筒(512)上且与外筒(512)内相互连通。4. A construction support for a high-rise building corridor according to claim 3, characterized in that: the functional plate (51) includes an outer cylinder (512) and an inner rod (513), a spring (514) is provided inside the outer cylinder (512), the inner rod (513) is telescopically disposed inside the outer cylinder (512) through the spring (514), one end of the spring (514) is connected to the inner wall of the outer cylinder (512), and the other end of the spring (514) is connected to the inner rod (513). 513) connected; the slide (5111) includes a first groove (5121) and a second groove (5131) that are connected to each other. The second groove (5131) is located on the inner rod (513). The slider (61) can slide to abut against the inner wall of the second groove (5131) near the rotating shaft (221) of the mounting rod (22). The first groove (5121) is located on the outer cylinder (512) and is connected to the inside of the outer cylinder (512). 5.根据权利要求4所述的一种高层建筑连廊施工支架,其特征在于:所述滑块(61)为燕尾块,所述滑槽(5111)与滑块(61)相适配。5. A construction support for a high-rise building corridor according to claim 4, characterized in that: the slider (61) is a dovetail block, and the slide groove (5111) is adapted to the slider (61). 6.根据权利要求1所述的一种高层建筑连廊施工支架,其特征在于:所述控制台(11)和操作台(3)上均设置有防护栏(31),所述防护栏(31)分别位于控制台(11)和操作台(3)的周侧。6. A construction support for a high-rise building corridor according to claim 1, characterized in that: both the control console (11) and the operating table (3) are provided with guardrails (31), and the guardrails (31) are located on the periphery of the control console (11) and the operating table (3). 7.根据权利要求6所述的一种高层建筑连廊施工支架,其特征在于:所述防护栏(31)上开设有安装通槽(311),所述安装通槽(311)的侧壁上转动连接有转动板(312);所述转动板(312)可转动至与安装通槽(311)的侧壁相抵接,所述转动板(312)亦可转动至露出安装通槽(311);所述防护栏(31)的内壁上设置有固定环(313),所述转动板(312)上对应设置有安装卡扣(3121),当所述转动板(312)转动至与安装通槽(311)的侧壁相抵接时,所述固定环(313)挂设于安装卡扣(3121)上。7. A construction support for a high-rise building corridor according to claim 6, characterized in that: an installation through groove (311) is provided on the guardrail (31), and a rotating plate (312) is rotatably connected to the side wall of the installation through groove (311); the rotating plate (312) can be rotated to abut against the side wall of the installation through groove (311), and the rotating plate (312) can also be rotated to expose the installation through groove (311); a fixing ring (313) is provided on the inner wall of the guardrail (31), and a corresponding mounting buckle (3121) is provided on the rotating plate (312); when the rotating plate (312) rotates to abut against the side wall of the installation through groove (311), the fixing ring (313) is hung on the mounting buckle (3121).
CN202310720881.3A 2023-06-17 2023-06-17 High-rise building vestibule construction support Active CN116752737B (en)

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