CN217581106U - Quick-moving whole set of scaffold device - Google Patents

Quick-moving whole set of scaffold device Download PDF

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Publication number
CN217581106U
CN217581106U CN202221555105.XU CN202221555105U CN217581106U CN 217581106 U CN217581106 U CN 217581106U CN 202221555105 U CN202221555105 U CN 202221555105U CN 217581106 U CN217581106 U CN 217581106U
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China
Prior art keywords
angle steel
bottom plate
cross rod
screw
screw holes
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Application number
CN202221555105.XU
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Chinese (zh)
Inventor
胡培杰
朱金康
王羽佳
毕四华
陈旭
田福云
李渊潮
张志业
雷小龙
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Super High Voltage Branch Of State Grid Xinjiang Electric Power Co ltd
State Grid Corp of China SGCC
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Super High Voltage Branch Of State Grid Xinjiang Electric Power Co ltd
State Grid Corp of China SGCC
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Application filed by Super High Voltage Branch Of State Grid Xinjiang Electric Power Co ltd, State Grid Corp of China SGCC filed Critical Super High Voltage Branch Of State Grid Xinjiang Electric Power Co ltd
Priority to CN202221555105.XU priority Critical patent/CN217581106U/en
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Abstract

The utility model discloses a fast moving whole set of scaffold device, including four moving assembly that install respectively on four supporting legs of scaffold frame bottom, moving assembly comprises bottom plate, universal wheel and the supporting mechanism who fixes below the bottom plate respectively, the bottom plate is square structure, set up the quad slit that is used for installing the supporting leg in one corner of bottom plate, the universal wheel sets up in the bottom surface middle part of bottom plate, the supporting mechanism comprises two first angle steel and the second angle steel that the structure is the same, first angle steel and second angle steel are the right angle and distribute, through the articulated connection of hinge between the contact surface of first angle steel and second angle steel; the support leg fixing device is characterized by further comprising buckle type fixing modules, wherein the buckle type fixing modules are installed on the side face of the bottom plate and located on two sides of the square hole, and the buckle type fixing modules are used for limiting the support legs; the device has the advantages of convenient movement, quick assembly and disassembly and the like.

Description

Rapid moving whole set of scaffold device
Technical Field
The utility model relates to an electric power appurtenance technical field especially relates to a quick travel puts up device in whole group.
Background
The insulating scaffold is used as a common tool in electric power overhaul, particularly in outdoor operation, because the power failure time of an overhaul site is limited, workers are required to assemble the scaffold firstly and then can bring the scaffold into the site, and for a large-scale overhaul site, 4 to 5 groups of scaffolds are generally required, the assembly, disassembly and carrying work of the scaffolds is time-consuming and labor-consuming, and great difficulty is caused to the overhaul construction site.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that current insulating scaffold frame causes very big difficulty for overhauing the scene because of dismouting and the transport are inconvenient, discloses a quick travel entire group scaffold frame device, has and removes the convenience, advantages such as loading and unloading are quick.
The utility model provides a technical scheme that its technical problem adopted is: a fast moving whole set of scaffold device comprises four moving assemblies which are respectively arranged on four supporting legs at the bottom of a scaffold frame, wherein each moving assembly is composed of a bottom plate, a universal wheel and a supporting mechanism fixed below the bottom plate, the bottom plate is of a square structure, a square hole for mounting the supporting legs is formed in one corner of the bottom plate, the universal wheel is arranged in the middle of the bottom surface of the bottom plate, the supporting mechanism is composed of two pieces of first angle steel and two pieces of second angle steel which are identical in structure, the first angle steel and the second angle steel are distributed in a right-angle mode, and contact surfaces of the first angle steel and the second angle steel are connected in a hinged mode through hinges;
still including knot formula fixed module, knot formula fixed module installs in the bottom plate side and is located the both sides of quad slit, should detain formula fixed module and be used for spacingly the supporting leg.
Preferably, the perpendicular face of first angle steel and second angle steel is respectively along the interior border longitudinal distribution of quad slit, through welded mode fixed connection between the contact surface of the top surface of first angle steel and second angle steel and bottom plate.
Preferably, the bottom of the scaffold frame is positioned between two adjacent supporting legs, a first cross rod and a second cross rod are sequentially arranged along the same horizontal plane, and the first cross rod and the second cross rod are respectively distributed between the four supporting legs in parallel;
the bottom plate is placed below the first cross rod and the second cross rod through the square holes and is in fit connection with the contact surfaces of the first cross rod and the second cross rod through the support legs;
the bottom plate is characterized in that a plurality of first screw holes are formed in the bottom plate at intervals corresponding to contact surfaces of the first cross rod and the second cross rod, a plurality of threaded holes matched with the first screw holes are formed in the first cross rod and the second cross rod corresponding to the first screw holes respectively, and the bottom plate is fixed below the first cross rod and the second cross rod through a plurality of fastening screws which are screwed into the threaded holes and the first screw holes respectively.
Preferably, two groups of second screw holes and third screw holes are respectively arranged on one surface of the supporting leg corresponding to the first angle steel and the second angle steel at intervals, and a plurality of fourth screw holes and fifth screw holes matched with the second screw holes and the third screw holes are respectively arranged on the first angle steel and the second angle steel;
the first angle steel penetrates through the second screw hole and the fourth screw hole in sequence through the first bolt and is fixed on the supporting leg by combining the first nut;
and the second angle steel sequentially penetrates through the third screw hole and the fifth screw hole through a second bolt and is fixed on the supporting leg by combining a second nut.
Preferably, the buckle type fixing module consists of a hook and a retaining ring, and the hook and the retaining ring are fixed on the side surfaces of the bottom plate on two sides of the square hole through screws.
Preferably, telescopic supporting seats are further arranged on one side, located on the universal wheel, of the bottom face of the bottom plate at intervals, each supporting seat is composed of a screw cylinder and a screw bolt, the hollow structure is formed in the corresponding supporting seat, external threads are arranged on the surfaces of the screw bolts, internal threads matched with the external threads are arranged on the inner side face of the screw cylinder, and the screw bolts and the screw cylinders are screwed into the screw cylinders through the external threads matched with the internal threads.
Preferably, the bottom surface of the stud is also provided with a backing plate which is in contact with the ground, and the stud is fixed in the middle of the backing plate in a welding mode.
Compared with the prior art, the beneficial effects of the utility model are that: a fast moving whole set of scaffold device, through installing the moving assembly on four supporting legs of bottom of the original insulating scaffold frame, make the insulating scaffold move easily, reduce the insulating scaffold and carry, manpower, material resources while transferring outdoors, greatly save the time of overhauling the on-the-spot transfer scaffold, thus avoid because the power off time is shorter, the time limit for a project is short and close to live-line equipment, etc. happen the phenomenon that the work content finishes the quality badly;
a square hole is formed in one corner of the bottom plate, the supporting leg is installed in the square hole, and the bottom plate is fixed on the first cross rod and the second cross rod at the bottom of the scaffold frame through set screws; in addition, a first angle steel and a second angle steel which are vertically distributed are arranged on the bottom plate, hinges are hinged between contact surfaces, the first angle steel and the second angle steel are fixed on supporting legs of the scaffold frame through bolts, gravity borne by the bottom plate is further dispersed, the surface of the bottom plate is uniformly stressed, and the problem that the universal wheels are not beneficial to moving of the scaffold frame due to the fact that bolts at joints of the angle steels and the supporting legs are loosened due to shaking of the bottom plate caused by uneven road surfaces in the moving process is solved;
through at bottom plate bottom surface installation telescopic supporting seat, the direct manually operation double-screw bolt of maintainer when using scaffold frame is unscrewed the double-screw bolt from screw section of thick bamboo in, alright fix scaffold frame on ground, its convenient to use, this scaffold frame need not increase in addition again with the bracing piece of ground contact.
Drawings
Fig. 1 is a front view of the mobile assembly of the present invention mounted on a scaffold frame;
FIG. 2 is an enlarged schematic view of the point A in FIG. 1;
fig. 3 is a schematic side view of the mobile assembly of the present invention mounted on the scaffold frame;
FIG. 4 is an enlarged view of the point B in FIG. 3;
fig. 5 is a front view of the moving assembly of the present invention;
fig. 6 is a side view of the moving assembly of the present invention;
fig. 7 is a schematic view of the three-dimensional structure of the bottom plate of the present invention;
fig. 8 is a schematic view of the three-dimensional structure of the bottom plate connected with the first angle steel and the second angle steel.
In the figure: 1. a scaffold frame; 2. a moving assembly; 3. a buckle type fixing module; 4. tightening the screw; 5. a first bolt; 6. a first nut; 7. a second bolt; 8. a second nut; 9. a supporting seat;
11. supporting legs; 12. a first cross bar; 13. a second cross bar; 14. a second screw hole; 15. a third screw hole;
21. a base plate; 22. a universal wheel; 23. a first angle steel; 24. a second angle steel; 25. a hinge;
31. hooking; 32. a retaining ring;
91. a screw cylinder; 92. a stud; 93. a base plate;
210. a square hole; 211. a first screw hole;
231. a fourth screw hole; 241. and a fifth screw hole.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-8, the present invention provides a technical solution: a fast moving whole set of scaffold device comprises four moving assemblies 2 which are respectively arranged on four supporting legs 11 at the bottom of a scaffold frame 1, wherein each moving assembly 2 is respectively composed of a bottom plate 21, a universal wheel 22 and a supporting mechanism fixed below the bottom plate, the bottom plate 21 is of a square structure, a square hole 210 for installing the supporting leg 11 is formed in one corner of the bottom plate 21, the universal wheel 22 is arranged in the middle of the bottom surface of the bottom plate 21, the universal wheel 22 is fixed below the bottom plate through a connecting rod in the embodiment, and the connecting rod is fixedly connected with the bottom plate through a welding mode;
the supporting mechanism is composed of a first angle steel 23 and a second angle steel 24 which are identical in structure, the first angle steel 23 and the second angle steel 24 are distributed in a right-angle mode, and contact surfaces of the first angle steel 23 and the second angle steel 24 are connected in a hinged mode through hinges 25; in this embodiment, the hinge 25 is provided at a position near the bottom plate 21 at the top of the contact surface between the first angle steel 23 and the second angle steel 24.
Still including knot formula fixed module 3, knot formula fixed module 3 is installed in bottom plate 21 side and is located the both sides of quad slit 210, and this knot formula fixed module 3 is used for spacing supporting leg 11, avoids universal wheel 22 to arouse supporting leg 11 to run the position at the removal in-process.
This embodiment is through installing removal subassembly 2 on four supporting legs 11 in the bottom of original insulating scaffold frame 1 for insulating scaffold can easily remove, has reduced the manpower of insulating scaffold frame in outdoor transport, when shifting, and the time of overhauing on-the-spot transfer scaffold has been saved greatly to the material resources, thereby avoids taking place the not good phenomenon of work content completion quality because of the power off time is short, the time limit for a project is nervous and apart from the electrified equipment circumstances such as near.
Referring to fig. 8, the vertical surfaces of the first angle steel 23 and the second angle steel 24 are respectively distributed along the inner edge of the square hole 210 in the longitudinal direction, and the contact surfaces of the top surfaces of the first angle steel 23 and the second angle steel 24 and the bottom plate 21 are fixedly connected by welding; in this embodiment, the bottom plate 21 is made of steel, and the first angle steel 23 and the second angle steel 24 are respectively made of flat steel with a right-angled triangle structure with one side bent at 90 degrees.
Referring to fig. 1 and 3, a first cross bar 12 and a second cross bar 13 are sequentially arranged between two adjacent support legs 11 at the bottom of the scaffold frame 1 along the same horizontal plane, and the first cross bar 12 and the second cross bar 13 are respectively distributed between the four support legs 11 in parallel;
the supporting legs 11 place the bottom plate 21 below the first cross bar 12 and the second cross bar 13 through the square holes 210 and are in fit connection with the contact surfaces of the first cross bar 12 and the second cross bar 13;
referring to fig. 2, 3 and 7, a plurality of first screw holes 211 are formed in the bottom plate 21 at intervals corresponding to the contact surfaces of the first cross bar 12 and the second cross bar 13, a plurality of screw holes matched with the first screw holes 211 are respectively formed in the positions of the first cross bar 12 and the second cross bar 13 corresponding to the first screw holes 211, and the bottom plate 21 is screwed into the screw holes and the first screw holes 211 through a plurality of set screws 4 to fix the bottom plate 21 below the first cross bar 12 and the second cross bar 13; this embodiment is through seting up quad slit 210 in bottom plate 21 one corner, installs supporting leg 11 in quad slit 210, has guaranteed that the bottom surface of first horizontal pole 12 and second horizontal pole 13 can contact with bottom plate 21 top surface, is convenient for fix bottom plate 21 on first horizontal pole 12 and second horizontal pole 13.
Referring to fig. 2, 4 and 8, two groups of second screw holes 14 and third screw holes 15 are respectively arranged on one surface of the support leg 11 corresponding to the first angle steel 23 and the second angle steel 24 at intervals, and a plurality of fourth screw holes 231 and fifth screw holes 241 matched with the second screw holes 14 and the third screw holes 15 are respectively arranged on the first angle steel 23 and the second angle steel 24;
the first angle steel 23 sequentially penetrates through the second screw hole 14 and the fourth screw hole 231 through the first bolt 5 and is combined with the first nut 6 to fix the first angle steel 23 on the supporting leg 11;
the second angle steel 24 sequentially penetrates through the third screw hole 15 and the fifth screw hole 241 through the second bolt 7 and is fixed on the supporting leg 11 by combining the second nut 8.
In the embodiment, the first cross rod 12 and the second cross rod 13 are fixed with the bottom plate 21 through the set screws 4, and in addition, the supporting legs 11 are fixed with the first angle steel 23 and the second angle steel 24 through the first bolts 5, the first nuts 6, the second bolts 7 and the second nuts 8, so that the moving assembly 2 is conveniently installed on the supporting legs 11 at the bottom of the scaffold frame 1, and the dismounting and the installation are convenient; this device is through reforming transform current scaffold frame 1, has promoted the maintenance in-process and has used the utilization ratio that shifts insulating scaffold, has solved the problem that insulating scaffold shifts, loading and unloading difficulty among the maintenance process, compares with insulating scaffold frame in the past and has the removal convenience, the quick advantage of loading and unloading.
Referring to fig. 8, the fastening module 3 is composed of a hook 31 and a fastening ring 32, and the hook 31 and the fastening ring 32 are both fixed on the side surfaces of the bottom plate at two sides of the square hole 210 by screws. In this embodiment, the support leg 11 is limited in the square hole 210 by the matching of the hook 31 and the retaining ring 32, so that the support leg 11 is prevented from being dislocated during the movement of the universal wheel 22.
Referring to fig. 5 and 6, a telescopic support seat 9 is further disposed at an interval on one side of the bottom surface of the bottom plate 21, which is located on the universal wheel 22, the support seat 9 is composed of a hollow screw cylinder 91 and a screw stud 92, an external thread is disposed on the surface of the screw stud 92, an internal thread matched with the external thread is disposed on the inner side surface of the screw cylinder 91, and the screw stud 92 and the screw cylinder 91 are screwed into the screw cylinder 91 through the external thread matching with the internal thread. In this embodiment, the screw cylinder 91 at the top of the supporting seat 9 is fixed on the bottom surface of the bottom plate 21 by welding.
Referring to fig. 5, a backing plate 93 contacting with the ground is further disposed on the bottom surface of the stud 92, and the stud 92 is fixed in the middle of the backing plate 93 by welding.
This embodiment is through at bottom plate 21 bottom surface installation telescopic supporting seat 9, and the maintainer is direct manual operation double-screw bolt 92 when using scaffold frame 1, and the screw is unscrewed from spiral shell 91 with double-screw bolt 92, alright fix scaffold frame 1 subaerial, its convenient to use, this scaffold frame need not increase in addition again with the bracing piece of ground contact.
In the embodiment, a square hole 210 is formed at one corner of the bottom plate 21, the supporting leg 11 is installed in the square hole 210, and the bottom plate 21 is fixed on the first cross bar 12 and the second cross bar 13 at the bottom of the scaffold frame 1 by using the set screw 4; set up first angle steel 23 and the second angle steel 24 that is the vertical distribution on bottom plate 21 in addition, and articulated hinge 25 between the contact surface, utilize the bolt to fix first angle steel 23 and second angle steel 24 on scaffold frame 1's supporting leg 11, the gravity that the bottom plate bore has further been disperseed, it is even to have guaranteed that the bottom plate surface atress is even, avoid universal wheel 22 to arouse the bottom plate because of the road surface unevenness to rock and cause the angle steel not hard up with the supporting leg junction bolt at the removal in-process, be unfavorable for the problem that scaffold frame removed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a quick travel puts up a complete set of scaffold device which characterized in that: the scaffold frame comprises four moving assemblies which are respectively arranged on four supporting legs at the bottom of the scaffold frame, wherein each moving assembly comprises a bottom plate, a universal wheel and a supporting mechanism fixed below the bottom plate, the bottom plate is of a square structure, one corner of the bottom plate is provided with a square hole for mounting the supporting legs, the universal wheel is arranged in the middle of the bottom surface of the bottom plate, the supporting mechanism comprises two pieces of first angle steel and two pieces of second angle steel which are identical in structure, the first angle steel and the second angle steel are distributed in a right-angle mode, and the contact surfaces of the first angle steel and the second angle steel are connected in a hinged mode through hinges;
still including knot formula fixed module, knot formula fixed module installs in the bottom plate side and is located the both sides of quad slit, should detain formula fixed module and be used for spacingly the supporting leg.
2. A fast moving complete set of scaffolding devices according to claim 1, characterized in that: the perpendicular of first angle steel and second angle steel is respectively along the interior border longitudinal distribution of quad slit, through welded mode fixed connection between the top surface of first angle steel and second angle steel and the contact surface of bottom plate.
3. A fast moving whole set of scaffolding device according to claim 1, wherein: the bottom of the scaffold frame is positioned between two adjacent supporting legs and is sequentially provided with a first cross rod and a second cross rod along the same horizontal plane, and the first cross rod and the second cross rod are respectively distributed between the four supporting legs in parallel;
the bottom plate is placed below the first cross rod and the second cross rod through the square holes and is in fit connection with the contact surfaces of the first cross rod and the second cross rod through the support legs;
the bottom plate is characterized in that a plurality of first screw holes are formed in the bottom plate at intervals corresponding to contact surfaces of the first cross rod and the second cross rod, a plurality of threaded holes matched with the first screw holes are formed in the first cross rod and the second cross rod corresponding to the first screw holes respectively, and the bottom plate is fixed below the first cross rod and the second cross rod through a plurality of set screws in the threaded holes and the first screw holes respectively.
4. A fast moving complete set of scaffolding devices according to claim 1, characterized in that: two groups of second screw holes and third screw holes are respectively arranged on one surface of the supporting leg corresponding to the first angle steel and the second angle steel at intervals, and a plurality of fourth screw holes and fifth screw holes matched with the second screw holes and the third screw holes are respectively arranged on the first angle steel and the second angle steel;
the first angle steel penetrates through the second screw hole and the fourth screw hole in sequence through the first bolt and is fixed on the supporting leg by combining the first nut;
and the second angle steel sequentially penetrates through the third screw hole and the fifth screw hole through a second bolt and is fixed on the supporting leg by combining a second nut.
5. A fast moving complete set of scaffolding devices according to claim 1, characterized in that: the buckle type fixing module is composed of a hook and a buckle ring, and the hook and the buckle ring are fixed on the side faces of the bottom plate on two sides of the square hole through screws.
6. A fast moving complete set of scaffolding devices according to claim 1, characterized in that: the bottom surface of bottom plate is located one side of universal wheel and still the interval is provided with telescopic supporting seat, the supporting seat comprises hollow structure's a spiral shell section of thick bamboo and double-screw bolt, the double-screw bolt surface is provided with the external screw thread, spiral shell section of thick bamboo medial surface is provided with the internal thread that matches with the external screw thread, through external screw thread cooperation internal thread screw in to spiral shell section of thick bamboo inside between this double-screw bolt and the spiral shell section of thick bamboo.
7. A fast moving complete set of scaffolding devices according to claim 6, wherein: the bottom surface of the stud is also provided with a backing plate which is in contact with the ground, and the stud is fixed in the middle of the backing plate in a welding mode.
CN202221555105.XU 2022-06-21 2022-06-21 Quick-moving whole set of scaffold device Active CN217581106U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221555105.XU CN217581106U (en) 2022-06-21 2022-06-21 Quick-moving whole set of scaffold device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221555105.XU CN217581106U (en) 2022-06-21 2022-06-21 Quick-moving whole set of scaffold device

Publications (1)

Publication Number Publication Date
CN217581106U true CN217581106U (en) 2022-10-14

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ID=83530784

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221555105.XU Active CN217581106U (en) 2022-06-21 2022-06-21 Quick-moving whole set of scaffold device

Country Status (1)

Country Link
CN (1) CN217581106U (en)

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