CN106996187B - Scaffold work platform and processing equipment thereof - Google Patents

Scaffold work platform and processing equipment thereof Download PDF

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Publication number
CN106996187B
CN106996187B CN201710368495.7A CN201710368495A CN106996187B CN 106996187 B CN106996187 B CN 106996187B CN 201710368495 A CN201710368495 A CN 201710368495A CN 106996187 B CN106996187 B CN 106996187B
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CN
China
Prior art keywords
aluminum alloy
wood board
locking
groove
punching
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CN201710368495.7A
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Chinese (zh)
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CN106996187A (en
Inventor
史考特
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Foshan Weikesi Scaffold Co ltd
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Foshan Weikesi Scaffold Co ltd
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Priority to CN201710368495.7A priority Critical patent/CN106996187B/en
Publication of CN106996187A publication Critical patent/CN106996187A/en
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    • 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
    • E04G1/15Scaffolds primarily resting on the ground essentially comprising special means for supporting or forming platforms; Platforms
    • E04G1/152Platforms made of metal or with metal-supporting frame
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P19/00Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
    • B23P19/02Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes for connecting objects by press fit or for detaching same
    • B23P19/027Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes for connecting objects by press fit or for detaching same using hydraulic or pneumatic means
    • 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
    • E04G1/15Scaffolds primarily resting on the ground essentially comprising special means for supporting or forming platforms; Platforms
    • E04G2001/155Platforms with an access hatch for getting through from one level to another

Abstract

The invention discloses a scaffold working platform and processing equipment thereof, wherein the scaffold working platform comprises an aluminum alloy frame, a fixed anti-slip wood board embedded in the aluminum alloy frame, an open-close anti-slip wood board which is in rotary connection with the aluminum alloy frame at one side, and hooks arranged at two ends of the aluminum alloy frame and hung on a scaffold transverse pipe. The rust problem is effectively avoided, the device is lighter and convenient to install; the anti-slip wood board can be opened and closed so that a constructor can directly push the anti-slip wood board to enter the working platform from the lower direction of the working platform, and also can stand on the fixed anti-slip wood board of the working platform, and the anti-slip wood board can be pulled upwards to enter the working platform below, so that the risk of falling when the constructor enters the upper working platform and the lower working platform from the side is reduced. Simultaneously, still provide the professional equipment of a processing antiskid plank that opens and shuts, fasten aluminum alloy strip card on one side of plank through stamping process, accomplish the processing of antiskid plank that opens and shuts fast.

Description

Scaffold work platform and processing equipment thereof
Technical Field
The invention relates to a scaffold work platform and processing equipment thereof.
Background
The scaffold is various supports which are erected for workers to operate and solve the problems of vertical and horizontal transportation on a construction site, and is commonly used in places where the height of an outer wall layer on the construction site is high and direct construction cannot be performed. The working platform is one of the main components of the scaffold and is mainly used for construction work of construction workers standing on the working platform. Most scaffold work platforms at present are of iron frame welding structures, the surfaces of the work platforms are of iron net structures, rust is easy to occur, and the weight is large; in addition, the existing scaffold work platform generally needs to enter and exit from the side of the work platform, and the risk of falling exists.
Accordingly, the prior art is still in need of improvement and development.
Disclosure of Invention
The invention aims to solve the problems in the prior art, and aims to provide a scaffold working platform which aims to solve the problems that the existing scaffold working platform is easy to rust, heavy and poor in safety.
The technical scheme of the invention is as follows: the scaffold work platform comprises an aluminum alloy frame, a fixed anti-slip wood board embedded in the aluminum alloy frame, an opening and closing anti-slip wood board which is matched and rotationally connected with the aluminum alloy frame on one side, and hooks arranged at two ends of the aluminum alloy frame and hung on a scaffold transverse pipe.
The scaffold work platform comprises a scaffold work platform, wherein the opening and closing anti-slip wood plate comprises a wood plate and an aluminum alloy strip arranged on one side of the wood plate, a wood plate groove for clamping the wood plate is formed in one side of the aluminum alloy strip, clamping teeth for clamping the wood plate are arranged on the inner wall of the wood plate groove, a rotary connecting portion is arranged on the other side of the wood plate groove, and a rotary groove matched with the rotary connecting portion is formed in the corresponding position of the aluminum alloy frame.
The scaffold work platform, wherein, the rotation connecting portion includes the rotation arc of being connected with the plank groove, and is located rotation arc centre of a circle department, one side and the axis of rotation that the rotation arc is connected, rotation groove lower part internal surface cooperatees with the rotation arc, and upper portion is equipped with the axis of rotation groove, the axis of rotation cooperation inserts in the axis of rotation groove.
The scaffold work platform, wherein, be equipped with the locking device on the adjacent aluminum alloy frame of its another side hasp on the antiskid plank that opens and shuts, locking device is including fixing the locking bottom plate on the antiskid plank bottom surface that opens and shuts, sliding connection's locking sliding plate on locking bottom plate to and locking spring, locking spring is parallel with the slip direction of locking sliding plate, and locking bottom plate is connected to one end, another connection locking sliding plate, locking sliding plate's one end is equipped with locking couple, be equipped with on the aluminum alloy frame bottom surface with locking couple matched with locking draw-in strip.
The scaffold work platform is characterized in that the corresponding positions of the opening and closing anti-skid board, the locking bottom plate and the locking sliding plate are respectively provided with an operation through hole.
The invention further provides processing equipment for the open-close anti-slip wood board, which comprises a base, a wood board supporting piece and an aluminum alloy strip supporting piece which are arranged on the base, a wood board pressing tool positioned above the wood board supporting piece, an aluminum alloy strip pressing tool positioned above the aluminum alloy strip supporting piece, a pressing power device for driving the wood board pressing tool and the aluminum alloy strip pressing tool to press down, and a control system.
The processing equipment for the open-close anti-skid wood board is characterized in that a limit groove matched with the convex edge on the outer surface of the aluminum alloy strip is formed in the lower surface of the aluminum alloy strip pressing tool.
The processing equipment of the open-close anti-slip wood board further comprises a push plate which pushes the aluminum alloy strip to the wood board direction to enable the wood board groove to be clamped on the edge of the wood board, the outer side face of the push plate is connected with a push-pull power device, and a push plate groove which is matched with and accommodates the side edge of the aluminum alloy strip is formed in the inner side face of the push plate.
The processing equipment for the open-close anti-slip wood board comprises a base, a punching die and a punching device, wherein the punching die is arranged on the base, the punching device is arranged above the punching die and is provided with a punching groove, the punching device comprises an iron block which moves up and down, one end of the punching device is fixed on the bottom surface of the iron block, a punching column corresponding to the punching groove, and a punching power device which drives the iron block to move up and down.
The processing equipment of the anti-slip wood plate is characterized in that the punching device further comprises a rebound mechanism arranged below the iron block, the rebound mechanism comprises an upper pressing plate connected with the iron block, a lower pressing plate and a spring arranged between the upper pressing plate and the lower pressing plate, and the punching column sequentially penetrates through the upper pressing plate and the lower pressing plate.
The beneficial effects of the invention are as follows: according to the invention, the framework of the scaffold work platform is formed by adopting the aluminum alloy frame, the anti-slip wood board is embedded and fixed in the framework, so that the problem of rust after long-time use is effectively avoided, the scaffold work platform is lighter than the traditional iron work platform, and the two ends of the aluminum alloy frame are connected with the scaffold transverse pipe through the hooks, so that the scaffold work platform is rapid and convenient to install; the anti-skid board that opens and shuts that rotates to be connected with the aluminum alloy frame on one side for constructor can directly push open the anti-skid board that opens and shuts from work platform's lower direction to get into work platform, also can stand on work platform's fixed anti-skid board, upwards pull open the anti-skid board that opens and shuts, get into the work platform of below, thereby reduce constructor and take place the risk of falling when getting into upper and lower work platform from the side. Meanwhile, the invention also provides special equipment for processing the open-close anti-skid wood board, and the aluminum alloy strip is fastened and fixed on one side of the wood board through a stamping process, so that the open-close anti-skid wood board is rapidly processed.
Drawings
Fig. 1 is a schematic perspective view of a hand and foot rest working platform when the foldable movable plate is in a closed state in an embodiment of the invention.
Fig. 2 is a schematic perspective view of a hand and foot rest working platform when the opening and closing movable plate is in an open state in an embodiment of the invention.
FIG. 3 is a schematic cross-sectional view of the aluminum alloy strip and the metal frame in the present invention in a rotating fit.
Fig. 4 is a bottom view of the locking device in a locked state according to an embodiment of the present invention.
Fig. 5 is a top view of the locking device according to an embodiment of the present invention.
Fig. 6 is a front cross-sectional view of the locking device according to the embodiment of the present invention.
Fig. 7 is a schematic partial structure of the anti-drop device in a contracted state according to an embodiment of the invention.
Fig. 8 is a schematic partial structure of the anti-drop device in the pulled-out state according to the embodiment of the invention.
Fig. 9 is a schematic front view of an apparatus for processing an open-close anti-slip wood board according to an embodiment of the invention.
Fig. 10 is a schematic perspective view of an apparatus for processing an open-close type anti-slip wood board according to an embodiment of the present invention.
Fig. 11 is a schematic structural view of a punching die according to an embodiment of the present invention.
1-aluminum alloy frame, 2-fixed anti-slip wood, 3-open/close anti-slip wood, 4-hook, 5-wood, 6-aluminum alloy strip, 7-wood groove, 8-latch, 9-rotation groove, 10-rotation arc, 11-rotation axis, 12-rotation axis groove, 13-rotation limiter, 14-locking bottom plate, 15-locking slide plate, 16-locking spring, 17-limit post, 18-locking hook, 19-strip hole, 20-spring groove, 21-locking clip strip, 22-operation through hole, 23-anti-slip device, 24-upper square hole, 25-lower square hole, 26-sliding limiter, 27-base, 28-wood support, 29-aluminum alloy strip support, 30-wood press, 31-aluminum alloy strip press, 32-push power device, 33-bead, 34-limit groove, 35-push plate, 36-push power device, 37-push plate groove, 38-punching die, 39-punching groove, 40-iron block, 41-column, 42-punching power device, 43-lower press plate, 44-lower press plate, 45-spring.
Detailed Description
The present invention will be described in further detail with reference to the following examples, in order to make the objects, technical solutions and effects of the present invention more clear and distinct. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
As shown in fig. 1-2, the present embodiment relates to a scaffold working platform, which comprises an aluminum alloy frame 1, a fixed anti-slip wood board 2 embedded in the aluminum alloy frame 1, an opening and closing anti-slip wood board 3 rotatably connected with the aluminum alloy frame 1 in a matching manner, and hooks 4 arranged at two ends of the aluminum alloy frame 1 and hung on a scaffold transverse pipe. The framework of the scaffold working platform is formed by adopting the aluminum alloy frame 1, and the anti-slip wood board 2 is embedded and fixed in the framework, so that the problem of rust after long-time use is effectively avoided, and the scaffold working platform is lighter and more anti-slip than the traditional iron working platform; the two ends of the aluminum alloy frame 1 are connected with the scaffold transverse pipe through the hooks 3, so that the installation is quick and convenient; the anti-skid board that opens and shuts that rotates to be connected with the aluminum alloy frame on one side for constructor can directly push open the anti-skid board that opens and shuts from work platform's lower direction to get into work platform, also can stand on work platform's fixed anti-skid board, upwards pull open the anti-skid board that opens and shuts, get into the work platform of below, thereby reduce constructor and take place the risk of falling when getting into upper and lower work platform from the side.
As shown in fig. 1-3, the opening and closing anti-slip wood board 3 comprises a wood board 5 and an aluminum alloy strip 6 arranged on one side of the wood board, wherein a wood board groove 7 for clamping the wood board 5 is formed in one side of the aluminum alloy strip 6, a latch 8 for clamping the wood board 5 is arranged on the inner wall of the wood board groove 7, a rotary connecting part is arranged on the other side of the wood board groove, and a rotary groove 9 matched with the rotary connecting part is formed in the corresponding position of the aluminum alloy frame 1. In this embodiment, open and shut antiskid plank and be connected through aluminum alloy strip 6 and aluminum alloy frame 1 cooperation rotation, and not adopt traditional hinge connection, need not to use the screw, not only easy to assemble, can avoid the long-time problem that the screw is not hard up after using moreover.
As shown in fig. 3, the rotation connection part comprises a rotation arc 10 connected with the plank groove 7, and a rotation shaft 11 positioned at the center of the rotation arc 10 and connected with the rotation arc 10 at one side, wherein the inner surface of the lower part of the rotation groove 9 is matched with the rotation arc 10, the upper part of the rotation groove is provided with a rotation shaft groove 12, and the rotation shaft 11 is matched and inserted into the rotation shaft groove 12. Through ingenious design rotation connecting portion and the structure of rotating the groove, realized opening the rotation of antiskid plank 3 and aluminum alloy frame and be connected, during practical application, in order to prevent that aluminum alloy strip 6 from sliding out from rotating the groove 9, still be in rotating arc 10 and rotating the tip of groove 9 lower part internal surface and all establishing corresponding rotation limiting part 13.
As shown in fig. 2 and 4-6, in order to improve stability of the anti-slip wood board 3 during construction, in this embodiment, a locking device for locking the other side of the anti-slip wood board 5 onto an adjacent aluminum alloy frame is arranged on the wood board 5, the locking device comprises a locking bottom plate 14 fixed on the bottom surface of the wood board 5, a locking sliding plate 15 slidingly connected onto the locking bottom plate 14, and a locking spring 16, a limit post 17 is arranged on the locking bottom plate 14, one end of the locking sliding plate 15 is provided with a locking hook 18, the bottom surface is provided with a bar-shaped guide hole 19 matched with the limit post 17, and a spring groove 20 connected with the bar-shaped guide hole 19, the locking spring 16 is positioned in the spring groove 20, is parallel to the sliding direction of the locking sliding plate 15, one end is connected with the limit post 17, the other end is connected with the inner wall of the spring groove 20, and a locking clamping bar 21 matched with the locking hook 18 is arranged at a corresponding position on the bottom surface of the aluminum alloy frame 1.
In the construction process, when the locking sliding plate 15 is slid towards the aluminum alloy frame 1, the locking hook 18 is driven to slide towards the aluminum alloy frame 1 until the locking hook 18 is hooked on the locking clamping strip 21 on the bottom surface of the aluminum alloy frame 1, and the opening and closing anti-slip wood plate 3 is locked on the aluminum alloy frame 1 under the reaction force of the locking spring 16, so that the opening and closing anti-slip wood plate 3 cannot be upwards turned open, and the stability of the opening and closing anti-slip wood plate 3 is ensured. When the opening and closing anti-slip wood plate 3 is required to be opened, the locking sliding plate 15 is only required to slightly slide towards the aluminum alloy frame 1 again, so that the locking hooks 18 are separated from the locking clamping strips 21 on the aluminum alloy frame 1. The spring groove 20, the limit post 17 and the bar-shaped hole 19 matched with the limit post 17 play a limiting role in the sliding process of the locking sliding plate 15.
In this embodiment, the locking bottom plate 14 is fixed on the bottom surface of the wood board 5 by screws, and the corresponding positions of the opening and closing anti-slip wood board 3, the locking bottom plate 14 and the locking sliding plate 15 are all provided with the operation through holes 22, so that a constructor can insert a finger into the operation through holes 22, and the locking sliding plate 15 can be pushed to slide towards the direction of the aluminum alloy frame 1 above or below the working platform, which is very convenient.
In the scaffold work platform, two hooks 4 are respectively provided at two ends of the aluminum alloy frame 1, and a pull-out and anti-drop device 23 is provided below one of the hooks 4. In practical application, couple 3 and anticreep device 23 can adopt multiple structure and connected mode to realize, say couple 4 can be fixed in the both ends of aluminum alloy frame 1 through technologies such as welding, cold pressing cold expansion, and anticreep device 23 can utilize spring coupling to be connected with aluminum alloy frame 1, when using, make couple 4 hang earlier and detain on the scaffold crossbeam through pressing anticreep device 23, after unclamping anticreep device 23, under the effect of spring, anticreep device 23 is automatic outwards stretched out, locks couple 4 for work platform and scaffold violently manage closely to detain together, avoided the danger that the pine that ordinary work platform probably appears takes off or tip over.
In this embodiment, as shown in fig. 7 to 8, an upper square hole 24 and a lower square hole 25 are provided at the end of the aluminum alloy frame 1, one end of the hook 4 is inserted into the upper square hole 24 and fixed by a screw, and one end of the anti-falling device 23 is slidably inserted into the lower square hole 25, so as to slide back and forth. When the scaffold is used, the function of locking the hook 4 on the scaffold beam is realized by sliding the other end of the pull-out anti-drop device 23 back and forth in the lower square hole 25, and the scaffold is simple in structure and convenient to process and install. In order to prevent the anti-falling device 23 from being completely pulled out or pushed into the lower square hole 25 during sliding, sliding stoppers 26 are provided at both ends of the anti-falling device 23 in the present embodiment.
The present embodiment further relates to a special processing device for the above-mentioned anti-slip wooden board 3, as shown in fig. 9-10, which includes a base 27, a wooden board support 28 and an aluminum alloy strip support 29 disposed on the base 27, a wooden board presser 30 disposed above the wooden board support 28, an aluminum alloy strip presser 31 disposed above the aluminum alloy strip support 29, a pressing power device 32 (in this embodiment, a vertical cylinder) for driving the wooden board presser 30 and the aluminum alloy strip presser 31 to press, and a control system.
As shown in fig. 10, when the above-mentioned apparatus is used to process the opening and closing anti-slip wood board 3, the wood board 5 and the aluminum alloy strip 6 are respectively placed on the wood board supporting member 28 and the aluminum alloy strip supporting member 29, one side of the wood board 5 is inserted into the wood board groove 7 of the aluminum alloy strip 6, then the pressing power device 32 is started, under the control of the control system, the wood board presser 30 moves downwards until the wood board 5 is pressed and fixed, and the aluminum alloy strip presser 31 moves downwards until the latch 8 on the inner wall of the wood board groove 7 is clamped into the wood board 5, thus the fixed connection between the aluminum alloy strip 6 and the wood board 5 is completed.
In order to prevent the aluminum alloy strip 6 from being deviated during the process of pressing the aluminum alloy strip 6, a limit groove 34 matching with the convex edge 33 on the outer surface of the aluminum alloy strip 6 is provided on the lower surface of the aluminum alloy strip presser 31 in the embodiment.
As a preferred embodiment, the processing device for the opening and closing anti-slip wood board further comprises a push plate 35 for automatically pushing the aluminum alloy strip 6 to the direction of the wood board 5 to enable the wood board groove 7 to be clamped on one side of the wood board 5, wherein the outer side surface of the push plate 35 is connected with a push-pull power device 36 (a horizontal push-pull cylinder in the embodiment), and a push plate groove 37 for accommodating the side edge of the aluminum alloy strip 6 in a matching manner is formed in the inner side surface. In use, as shown in fig. 11, the aluminum alloy strip 6 is prevented from being placed on the push plate 35, and the push-pull power device 36 is started to drive the push plate 35 to automatically push the aluminum alloy strip 6 towards the direction of the wood board 5 until one side of the wood board 5 is inserted into the wood board groove 7 of the aluminum alloy strip 6. In practice, the push-pull power device is connected with a pneumatic limit switch, and under the control of the control system, when the aluminum alloy strip 6 moves to a required position, the push-pull power device 36 is automatically stopped.
In this embodiment, since the locking device is connected to the board 5 to be processed by screws, the locking device needs to be installed by punching, and the operation through hole 22 is provided, as shown in fig. 8-11, in order to improve the processing efficiency, in the processing device for the open-close anti-slip board, a punching die 38 is further provided at a suitable position of the base 27, a punching device is provided above the punching die 38, a punching slot 39 is provided on the punching die 38, the punching device includes an iron block 40 moving up and down, one end of the punching device is fixed on the bottom surface of the iron block 40, a punching column 41 corresponding to the punching slot 39, and a punching power device 42 (in this embodiment, a vertical cylinder) driving the iron block 40 to move up and down. After the wood board 5 and the aluminum alloy strip 6 are placed, the pressing power device 32 and the punching power device 42 are started simultaneously, the aluminum alloy strip 6 is pressed on one side of the wood board 5, and the iron block 40 drives the punching column 41 to move downwards together under the action of the control system and the punching power device 42, so that the bottom end of the punching column 41 penetrates through the wood board 5 and enters the punching groove 39 on the punching die 38, and the punching process on the wood board 5 is completed.
As a preferred embodiment, the punching device further includes a rebound mechanism disposed below the iron block, the rebound mechanism including an upper press plate 43 connected with the iron block 40, a lower press plate 44, and a plurality of springs 45 disposed between the upper press plate 43 and the lower press plate 44, the punching posts 41 passing through the upper press plate 43 and the lower press plate 44 in sequence. When the punching device moves downwards until the lower pressing plate 44 contacts with the wood board 5, the upper pressing plate 43 continues to move downwards to compress the spring 45 until the punching is completed, at this time, under the rebound action of the spring 45, the upper pressing plate 43 and the iron block 40 move upwards, so as to drive the punching column 41 to move upwards, and prevent the lower end of the punching column 41 from being clamped in the wood board 5. Further, the processing equipment for the opening and closing anti-skid wood boards further comprises an upper guide rail and a lower guide rail which are arranged on the outer side of the punching device, and the outer side of the upper pressing plate is connected with the guide rails. So that the punching device is prevented from being deviated when punching downwards.
It is to be understood that the invention is not limited in its application to the examples described above, but is capable of modification and variation in light of the above teachings by those skilled in the art, and that all such modifications and variations are intended to be included within the scope of the appended claims.

Claims (8)

1. The scaffold working platform is characterized by comprising an aluminum alloy frame, a fixed anti-slip wood board embedded in the aluminum alloy frame, an opening and closing anti-slip wood board, a hook and a locking mechanism, wherein one side of the opening and closing anti-slip wood board is matched and rotationally connected with the aluminum alloy frame, and the hooks are arranged at two ends of the aluminum alloy frame and hung and buckled on a scaffold transverse pipe; the anti-slip wood board comprises a wood board and an aluminum alloy strip arranged on one side of the wood board, wherein a wood board groove for clamping the wood board is formed in one side of the aluminum alloy strip, clamping teeth for clamping the wood board are formed in the inner wall of the wood board groove, a rotary connecting part is arranged on the other side of the wood board groove, and a rotary groove matched with the rotary connecting part is formed in a corresponding position of the aluminum alloy frame; the rotary connecting part comprises a rotary arc connected with the wood board groove and a rotary shaft positioned at the center of the rotary arc and connected with the rotary arc on one side, the inner surface of the lower part of the rotary groove is matched with the rotary arc, the upper part of the rotary groove is provided with a rotary shaft groove, and the rotary shaft is matched with and inserted into the rotary shaft groove.
2. The scaffold work platform according to claim 1, wherein the locking device for locking the other side of the locking and unlocking anti-slip wood plate on the adjacent aluminum alloy frame is arranged on the locking and unlocking anti-slip wood plate, the locking device comprises a locking bottom plate fixed on the bottom surface of the wood plate, a locking sliding plate slidingly connected to the locking bottom plate, and a locking spring, the locking spring is parallel to the sliding direction of the locking sliding plate, one end of the locking spring is connected with the locking bottom plate, the other end of the locking spring is connected with the locking sliding plate, a locking hook is arranged at one end of the locking sliding plate, and a locking clamping strip matched with the locking hook is arranged on the bottom surface of the aluminum alloy frame.
3. The scaffold work platform according to claim 2, wherein the corresponding positions of the opening and closing anti-slip wood plate, the locking bottom plate and the locking sliding plate are provided with operation through holes.
4. A processing device for processing an open-close anti-slip wood board in a scaffold working platform according to any one of claims 1-2, wherein the processing device comprises a base, a wood board supporting piece and an aluminum alloy strip supporting piece which are arranged on the base, a wood board pressing tool positioned above the wood board supporting piece, an aluminum alloy strip pressing tool positioned above the aluminum alloy strip supporting piece, a pressing power device for driving the wood board pressing tool and the aluminum alloy strip pressing tool to press down, and a control system.
5. The processing apparatus of claim 4, wherein the lower surface of the aluminum alloy strip presser is provided with a limit groove which is matched with the convex edge on the outer surface of the aluminum alloy strip.
6. The processing apparatus according to claim 5, further comprising a push plate for pushing the aluminum alloy strip toward the wood board to clamp the wood board groove on the edge of the wood board, wherein an outer side surface of the push plate is connected with the push-pull power device, and a push plate groove for accommodating the side edge of the aluminum alloy strip in a matching manner is formed on an inner side surface of the push plate.
7. The processing apparatus according to claim 6, further comprising a punching die provided on the base and a punching device provided above the punching die, the punching die being provided with a punching groove, the punching device comprising an iron block moving up and down, a punching column having one end fixed to a bottom surface of the iron block in correspondence with the punching groove, and a punching power device for driving the iron block to move up and down.
8. The tooling of claim 7 wherein the punching means further comprises a rebound mechanism disposed below the iron block, the rebound mechanism comprising an upper platen connected to the iron block, a lower platen, and a spring disposed between the upper platen and the lower platen, the punching posts passing through the upper platen and the lower platen in sequence.
CN201710368495.7A 2017-05-23 2017-05-23 Scaffold work platform and processing equipment thereof Active CN106996187B (en)

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CN107762128A (en) * 2017-11-28 2018-03-06 湖北省磊源石业有限公司 Dedicated platform is overhauled in work high above the ground of driving a vehicle
CN107989353A (en) * 2017-12-30 2018-05-04 金华市亚虎工具有限公司 A kind of table top overturning type foot hand cradle

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