CN114961198B - Construction work platform for house building and construction method thereof - Google Patents

Construction work platform for house building and construction method thereof Download PDF

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Publication number
CN114961198B
CN114961198B CN202210480714.1A CN202210480714A CN114961198B CN 114961198 B CN114961198 B CN 114961198B CN 202210480714 A CN202210480714 A CN 202210480714A CN 114961198 B CN114961198 B CN 114961198B
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China
Prior art keywords
plate
operation platform
translation
guardrail
translation plate
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Application number
CN202210480714.1A
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Chinese (zh)
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CN114961198A (en
Inventor
胡永幸
周胡蒙
叶深深
叶剑武
高海丰
项建挺
林艳凡
曾飞晗
施思
李安霞
胡智
姜建雪
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Wenzhou Yide Construction Co ltd
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Wenzhou Yide Construction Co ltd
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Priority to CN202210480714.1A priority Critical patent/CN114961198B/en
Publication of CN114961198A publication Critical patent/CN114961198A/en
Application granted granted Critical
Publication of CN114961198B publication Critical patent/CN114961198B/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
    • 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
    • E04G5/00Component parts or accessories for scaffolds
    • E04G5/14Railings
    • E04G5/142Railings extensible or telescopic
    • 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
    • E04G5/00Component parts or accessories for scaffolds
    • E04G5/14Railings
    • E04G5/144Railings specific for the lateral, i.e. short side of a scaffold

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Refuge Islands, Traffic Blockers, Or Guard Fence (AREA)

Abstract

The application relates to a house construction operation platform, which comprises a platform main body, wherein the platform main body comprises an operation platform and a support frame, and the support frame is supported at the bottom of the operation platform; the operation platform is provided with an extension device, the extension device comprises a translation plate movably connected to the operation platform and a positioning structure for fixing the translation plate, the positioning structure comprises a positioning block movably connected to the side wall of the operation platform and a positioning groove formed at a corresponding position on the translation plate, and when the translation plate extends out of the operation platform, the positioning block is positioned in the positioning groove; and also relates to a construction method of the house construction work platform. In this application, translation board can accomodate in operation platform, shifts out in operation platform when needing to use to fix after the constant head tank that is located on the translation board through the locating piece of activity realizes that the translation board slides, improve the stability when the translation board is in extended position, reach the usable floor area of adjusting the operation rack from this, reduce the number of times of removing operation platform during the construction, help improving the efficiency of construction.

Description

Construction work platform for house building and construction method thereof
Technical Field
The application relates to the technical field of building construction equipment, in particular to a building construction operation platform and a construction method thereof.
Background
The house construction refers to production activities in the engineering construction implementation stage, and is the construction process of various buildings; a plurality of construction equipment is needed in the house construction process, including a construction work platform for carrying out high-altitude work; for example, when building construction is performed, an operator steps on the bound floor steel reinforcement frame, which inevitably causes deformation and displacement of the floor steel reinforcement frame, so that related operations are required to be completed by means of the operation bench.
The existing operation bench can not be adjusted due to the fact that the using area of the platform plate is not adjustable, so that construction staff can conveniently construct the operation bench, the operation bench needs to be moved frequently, time is wasted, and the use requirement cannot be met.
Disclosure of Invention
In order to adjust the use area of the operation bench, the application provides a building construction operation platform and a construction method thereof.
In a first aspect, the present application provides a building construction operation platform that adopts following technical scheme:
the house construction operation platform comprises a platform main body, wherein the platform main body comprises an operation platform and a support frame, and the support frame is supported at the bottom of the operation platform; the operation platform is provided with an extension device, the extension device comprises a translation plate movably connected to the operation platform and a positioning structure for fixing the translation plate, the positioning structure comprises a positioning block movably connected to the side wall of the operation platform and a positioning groove formed in the corresponding position of the translation plate, and when the translation plate extends out of the operation platform, the positioning block is positioned in the positioning groove.
Through adopting above-mentioned technical scheme, the translation board can be accomodate in operation platform, shifts out from operation platform when needing to use to fix after the fixed slot that the locating piece that passes through the activity is located on the translation board realizes that the translation board slides, improve the stability of translation board when being in extended position, reach the usable floor area of adjusting the operation rack from this, reduce the number of times of removing operation platform during the construction, help improving the efficiency of construction.
Preferably, the extension device further comprises a matching plate which is arranged in front of and behind the translation plate and is movably connected in the operation platform; when the translation plate slides in the same direction relative to the combination plate, an extended combination plate is formed on one side of the operation platform; when the translation plate and the matching plate move oppositely, the translation plate slides to one side of the operation platform, and the matching plate can slide to the other side opposite to the translation plate; the extension device further comprises a fixing structure for positioning the matching plate.
Through adopting above-mentioned technical scheme, translation board and cooperation board set up around, can slide to operation platform both ends respectively, or splice the composition board that makes up into the area bigger at operation platform's same end, can satisfy multiple user demand from this, improve construction work platform's practicality.
Preferably, a bump extends from one side of the positioning block, which is close to the operation platform, and a lifting groove for plugging and lifting the bump is formed in the side wall of the operation platform, and the bump is connected with the lifting groove through a lifting spring; the fixing structure comprises a guide sleeve fixed on the matching plate and a fixing block accommodated in the guide sleeve, and a connecting spring is fixedly connected between the fixing block and the guide sleeve; a guide groove for sliding the guide sleeve is formed in the operation platform, and one end of the guide groove extends vertically along the longitudinal direction; the end parts of the guide grooves are provided with fixing grooves for the fixing blocks to be inserted and positioned.
By adopting the technical scheme, the lifting of the positioning block is realized by the convex blocks connected in the lifting groove through the lifting springs, and the process of inserting the positioning block in the positioning groove is controlled; the connecting spring realizes the lifting of the fixed block in the guide sleeve and controls the process of inserting the fixed block into the fixed groove; therefore, the purpose of positioning the translation plate and the matching plate is achieved, and the translation plate and the matching plate are easier to change from a fixed state to a sliding state.
Preferably, the operation platform is respectively provided with a transverse guardrail and a longitudinal guardrail, the longitudinal guardrail comprises a rotary guardrail and a movable guardrail, the rotary guardrail and the movable guardrail are respectively and adjacently arranged at two ends of the operation platform, and the movable guardrail is positioned at one side of the operation platform close to the construction position and is movably connected to the operation platform through a movable structure; the rotary guardrail is positioned on one side of the operation platform far away from the construction position.
By adopting the technical scheme, the transverse guardrails and the longitudinal guardrails play a role in protecting the operation platform; when the translation plate and the matching plate are positioned at two ends of the operation platform, the movable guardrail and the rotary guardrail are respectively detached and positioned on the translation plate and the matching plate, so that the purpose of effective protection is achieved.
Preferably, the movable structure comprises fixed sleeves fixed on the movable guardrails at intervals and connecting columns penetrating through the fixed sleeves and connected into the fixed sleeves through the connecting structures, and the bottoms of the connecting columns are connected into the operation platform through threads; the translation board and the cooperation board are provided with threaded mounting holes for inserting connection columns and connecting threads correspondingly, the translation board and the cooperation board are respectively located at two ends of the operation platform, the corresponding connection columns of the movable guardrails can be inserted into the corresponding threaded mounting holes of the translation board and the cooperation board and are connected with threads correspondingly, and the movable guardrails extend to one side far away from the construction position.
Through adopting above-mentioned technical scheme, adopt spliced pole threaded connection to realize dismantling of spliced pole in operation platform, be convenient for simultaneously again with movable guardrail fixed on the translation board that removes to operation platform one end, can provide more reliable protection for constructor who is under construction on the translation board.
Preferably, the connecting structure comprises a connecting ring and a connecting groove, wherein the connecting ring is fixed on the side wall of the connecting column, the connecting groove is arranged on the inner side wall of the fixed sleeve, and the connecting ring is rotationally connected with the connecting groove; the connection ring can be lifted in the connection groove.
Preferably, one end of the rotary guardrail close to the construction position is connected to the operation platform by a fixed sleeve and a connecting column which have the same structure as the movable guardrail, the other end of the rotary guardrail far away from the construction position is fixed with a rotary column, and the bottom of the rotary column is inserted on the operation platform; when the translation plate and the matching plate are respectively positioned at two ends of the operation platform, the rotary guardrails respectively correspondingly move to one sides of the translation plate and the matching plate far away from the construction position, threaded matching holes for plugging connecting columns on the corresponding rotary guardrails are respectively formed in the translation plate and the matching plate, the rotary columns are oppositely plugged in corresponding positions on the operation platform, and the opposite rotary columns are respectively positioned at longitudinal extension positions of the initial installation positions of the corresponding rotary guardrails; when translation board and cooperation board concatenation combination are in operation platform's same side, one side movable guardrail dismantles and installs on translation board and extend to the cooperation board, and the spliced pole of the rotatory guardrail of same side can be along with the rotation of rotation post, removes and be located the one side of keeping away from the construction position on the cooperation board.
Through adopting above-mentioned technical scheme, rotatory guardrail one end is fixed in operation platform by the spliced pole, and the other end is fixed by the spliced pole, makes rotatory guardrail detachable can also rotate by the spliced pole as the axial lead simultaneously, and when rotatory guardrail rotated with the spliced pole as the axial lead, the spliced pole can correspond to peg graft on the screw thread cooperation hole, need not to open pores in addition; therefore, the protection requirement of the matched plate moving to one side of the operation platform and the combined translational plate and matched plate at one side of the operation platform can be met.
Preferably, the operation platform is respectively provided with a slideway which transversely extends along the sliding direction of the translation plate and the matching plate and corresponds to the translation plate and the matching plate, the translation plate and the matching plate are respectively provided with a driving groove, and driving shafts can be inserted into the slideway and the driving grooves; the drive shaft may be placed in a slide.
In a second aspect, the present application provides a construction method of a building construction work platform, which adopts the following technical scheme:
a construction method of a house construction operation platform comprises the following steps:
during construction, the translation plate and the matching plate are respectively moved to two ends of the operation platform according to the requirement; the driving shaft drives the translation plate to horizontally slide to one end of the operation platform; then driving the matched plate to horizontally slide to move to the other end opposite to the translation plate, and then continuing to slide towards one side close to the construction position until the matched plate is positioned; then the movable guardrails at the two ends are detached and installed at the two ends of the corresponding translation plate and the matching plate; disassembling and installing the rotary guardrails at the two ends on one side, far away from the construction position, of the corresponding translation plate and the matched plate;
when the translation plate and the matching plate are moved to the same side of the operation platform and combined into a combined plate, the movable guardrails on the same side of the operation platform are detached and mounted on the translation plate, and the movable guardrails extend to the matching plate; and then the connecting column of the rotary guardrail is screwed out, the rotary guardrail is rotated by taking the rotary column as an axis, the rotary guardrail is rotated to the matched plate, and then the connecting column is screwed into the corresponding position on the matched plate to be positioned.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the translation plate can be stored in the operation platform, and is moved out of the operation platform when in use, and the movable positioning block is positioned on the positioning groove on the translation plate to realize the fixation after the translation plate slides, so that the stability of the translation plate in an extended position is improved, the use area of the operation bench is adjusted, the frequency of moving the operation platform is reduced during construction, and the construction efficiency is improved;
2. the connecting column is connected with the operation platform through threads to realize the disassembly of the connecting column, and meanwhile, the movable guardrail is convenient to fix on the translation plate which is moved to one end of the operation platform, so that more reliable protection can be provided for constructors who construct on the translation plate;
3. one end of the rotary guardrail is positioned on the operation platform by the rotary column, and the other end of the rotary guardrail is fixed by the connecting column, so that the rotary guardrail can be disassembled and can also rotate by taking the rotary column as an axial lead, and when the rotary guardrail rotates by taking the rotary column as the axial lead, the connecting column can be correspondingly inserted into the threaded matching hole without additional holes; therefore, the protection requirement of the matched plate moving to one side of the operation platform and the combined translational plate and matched plate at one side of the operation platform can be met.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present application;
FIG. 2 is a schematic structural view of a translating plate and a mating plate according to an embodiment of the present application;
FIG. 3 is a schematic view, partially in section, of a translating plate within an operator platform according to an embodiment of the present application, intended to show the structure of the positioning block and translating plate;
FIG. 4 is a schematic partial cross-sectional view of the operating platform at the mating plate, according to an embodiment of the present application, intended to show the structure of the guide sleeve and the fixed block;
FIG. 5 is a schematic cross-sectional structural view of an operator platform according to an embodiment of the present application, intended to show a guide slot structure;
fig. 6 is a schematic view of a partially cut-away configuration of a rotating barrier according to an embodiment of the present application as highlighted.
Reference numerals illustrate: 1. a platform body; 11. an operating platform; 111. a receiving chamber; 1111. a guide groove; 112. a lifting groove; 12. a support frame; 2. an extension device; 3. a translation plate; 4. a positioning structure; 41. a positioning block; 411. a bump; 4111. a lifting spring; 42. a positioning groove; 5. a transverse guardrail; 6. longitudinal guardrails; 61. a movable guardrail; 62. rotating the guardrail; 621. rotating the column; 7. a movable structure; 71. a fixed sleeve; 72. a connecting column; 8. a connection structure; 81. connecting the loops; 82. a connecting groove; 9. a threaded mounting hole; 10. a threaded mating hole; 13. a slideway; 14. a driving groove; 15. a drive shaft; 16. matching plates; 17. a fixed structure; 171. a guide sleeve; 172. a fixed block; 173. a connecting spring; 18. a fixing groove.
Detailed Description
The present application is described in further detail below with reference to the accompanying drawings.
The embodiment of the application discloses a construction work platform is built in room and construction method thereof, refer to fig. 1, and a construction work platform is built in room includes platform main part 1, and platform main part 1 includes operation platform 11 and support frame 12, and support frame 12 supports in operation platform 11's bottom.
Referring to fig. 1 and 2, an extension device 2 is disposed on an operation platform 11, the extension device 2 includes a translation plate 3 and a mating plate 16, a receiving cavity 111 is formed in the operation platform 11, the translation plate 3 and the mating plate 16 are disposed front and back and are respectively movably connected in the receiving cavity 111, and the translation plate 3 can slide in the same direction or opposite directions with the mating plate 16.
Referring to fig. 1 and 2, a slide way 13 extending transversely along the sliding direction of the translation plate 3 and the matching plate 16 is respectively arranged on the operation platform 11 and corresponds to the translation plate 3 and the matching plate 16, driving grooves 14 are respectively arranged on the translation plate 3 and the matching plate 16, driving shafts 15 can be inserted into the slide way 13 and the driving grooves 14, and after the driving shafts 15 are inserted into the driving grooves 14, the translation plate 3 and the matching plate 16 can be respectively pushed to slide along the slide way 13, so that the sliding process of the translation plate 3 and the matching plate 16 from the accommodating cavity 111 is easier to control; when not in use, the driving shaft 15 can be placed in the slideway 13, so that the structure is more reasonable; the extension device 2 further comprises a positioning structure 4 for fixing the translating plate 3.
Referring to fig. 2 and 3, the positioning structure 4 includes positioning blocks 41 movably connected to outer side walls of two ends of the operation platform 11, and positioning grooves 42 formed at left and right ends of the translation plate 3; a bump 411 extends from one side of the positioning block 41 close to the operation platform 11, a lifting groove 112 for inserting and lifting the bump 411 is formed in the side wall of the operation platform 11, and the bump 411 is connected with the lifting groove 112 through a lifting spring 4111; when the translation plate 3 extends outside the operation platform 11, the positioning blocks 41 are positioned at the corresponding positioning grooves 42.
Referring to fig. 1 and 4, the extension device 2 further comprises a fixing structure 17 for positioning the mating plate 16; when the translation plate 3 and the mating plate 16 move away from each other, the translation plate 3 slides to the right end of the operation platform 11, the mating plate 16 can slide to the left end opposite to the translation plate 3, at this time, the mating plate 16 is positioned by the fixing structure 17, and the fixing structure 17 includes a guide sleeve 171 fixed to the middle of the right end on the mating plate 16.
Referring to fig. 4 and 5, a guide groove 1111 for sliding the guide sleeve 171 is formed in the receiving chamber 111, and a left end of the guide groove 1111 extends vertically in a longitudinal direction; thereby, the fitting plate 16 can slide horizontally along the guide groove 1111 and slide to the other side opposite to the translation plate 3 along the left end of the guide groove 1111.
Referring to fig. 4 and 5, the fixing structure 17 further includes a fixing block 172, the fixing block 172 is accommodated in the guide sleeve 171, a connecting spring 173 is fixedly connected between the fixing block 172 and the guide sleeve 171, the end portions of the guide grooves 1111 are provided with fixing grooves 18 for positioning the fixing block 172, and when the guide sleeve 171 slides to the end portions of the guide grooves 1111, the fixing block 172 is inserted and positioned in the fixing grooves 18 under the acting force of the connecting spring 173.
Referring to fig. 1 and 2, when the mating plate 16 slides toward the left side of the operation platform 11, the translation plate 3 slides in the same direction, and is combined to form an extended mating plate on the left side of the operation platform 11, and a larger extension plane is formed at one end of the operation platform 11, so that a larger construction space is extended on the basis of the operation platform 11.
Referring to fig. 1, a transverse guardrail 5 and a longitudinal guardrail 6 are respectively mounted on an operation platform 11, and the transverse guardrail 5 is fixed on one side of the operation platform 11 far from a construction position; the longitudinal rails 6 are located at both ends of the operation platform 11, and the longitudinal rails 6 include a rotating rail 62 and a movable rail 61 that are respectively and adjacently disposed at the same end of the operation platform 11.
Referring to fig. 1, a movable rail 61 is located at one side of the operation platform 11 near the construction site and is movably connected to the operation platform 11 through a movable structure 7; the movable structure 7 comprises a fixed sleeve 71 fixed on the movable guardrail 61 at intervals along the vertical direction and a connecting column 72 penetrating through the fixed sleeve 71, and the bottom of the connecting column 72 is in threaded connection with the operation platform 11.
Referring to fig. 1 and 6, the connecting post 72 is connected to the fixing sleeve 71 by a connecting structure 8, the connecting structure 8 includes a connecting ring 81 and a connecting groove 82, the connecting ring 81 is fixed on the side wall of the connecting post 72, the connecting groove 82 is opened on the inner side wall of the fixing sleeve 71, and the connecting ring 81 is rotatably connected to the connecting groove 82; the connection collar 81 is lifted and lowered in the connection groove 82 so that the connection groove 82 provides a certain movable space for the connection collar 81, thereby making the rotational fixing operation of the connection post 72 easier.
Referring to fig. 1 and 2, the translation plate 3 and the matching plate 16 are correspondingly provided with threaded mounting holes 9 for inserting and connecting the connecting posts 72, when the translation plate 3 and the matching plate 16 are respectively positioned at two ends of the operation platform 11, the connecting posts 72 of the movable guardrail 61 near one side of the translation plate 3 can be inserted and connected in the corresponding threaded mounting holes 9 on the translation plate 3, the connecting posts 72 of the movable guardrail 61 near one side of the matching plate 16 can be inserted and connected in the corresponding threaded mounting holes 9 on the matching plate 16, and the movable guardrail 61 extends to one side far away from the construction position.
Referring to fig. 1 and 6, an end of the rotating fence 62 near the movable fence 61 is screw-coupled to the operation platform 11 by a fixed sleeve 71 and a coupling post 72 having the same structure as the movable fence 61.
Referring to fig. 6, the other end of the rotating guardrail 62 is fixed with a rotating post 621, and the bottom of the rotating post 621 is inserted on the operation platform 11; when the translation plate 3 and the matching plate 16 are respectively located at two ends of the operation platform 11, the rotation guard rail 62 is respectively moved to one side of the translation plate 3 and the matching plate 16 away from the construction position, and extends transversely.
Referring to fig. 2 and 6, the translation plate 3 and the matching plate 16 are respectively provided with a threaded matching hole 10 for inserting the connecting post 72 of the rotating guardrail 62, the connecting post 72 of the rotating guardrail 62 close to the translation plate 3 is in threaded connection with the threaded matching hole 10 of the translation plate 3, and the connecting post 72 of the rotating guardrail 62 close to the matching plate 16 is in threaded connection with the threaded matching hole 10 of the matching plate 16.
Referring to fig. 1 and 6, the operation platform 11 is relatively provided with a plugging hole for plugging the rotating column 621, the rotating column 621 of the rotating guardrail 62 at the position of the translation plate 3 is plugged into the plugging hole at one end of the operation platform 11 close to the translation plate 3, and the rotating column 621 of the rotating guardrail 62 at the position of the matching plate 16 is plugged into the plugging hole at one end of the operation platform 11 close to the matching plate 16; and the rotating posts 621 positioned at the two ends of the operation platform 11 are respectively positioned at the longitudinal extension positions of the initial installation positions of the corresponding rotating guardrails 62, so that when the rotating guardrails 62 rotate by taking the rotating posts 621 as the axes, the connecting posts 72 can be correspondingly inserted into the threaded matching holes 10 without additional holes.
Referring to fig. 1 and 2, when the translation plate 3 and the mating plate 16 are assembled on the same side of the operation platform 11, the movable rail 61 near the translation plate 3 and the mating plate 16 is detached and mounted on the translation plate 3 and extends to the mating plate 16, and the connection post 72 near one end of the movable rail 61 near the rotating rail 62 adjacent to the movable rail 61 is rotated out of the operation platform 11 with the rotation post 621 as an axis and positioned in the corresponding threaded mating hole 10 on the mating plate 16.
A construction method of a house construction operation platform comprises the following steps: the method comprises the following steps:
during construction, the translation plate 3 and the matching plate 16 are respectively moved to two ends of the operation platform 11 according to the requirement; the driving shaft 15 drives the translation plate 3 to horizontally slide to one end of the operation platform 11; the matched plate 16 is driven to horizontally slide to move to the other end opposite to the translation plate 3, and then the matched plate continues to slide towards one side close to the construction position until being positioned; then the movable guardrails 61 at the two ends are detached and installed at the two ends of the corresponding translation plate 3 and the matching plate 16; the rotary guardrails 62 at the two ends are detached and installed on one side, far away from the construction position, of the corresponding translation plate 3 and the matched plate 16;
when the translation plate 3 and the matching plate 16 are moved to the same side of the operation platform 11 and combined into a combined plate, the movable guardrail 61 on the same side of the operation platform 11 is detached and mounted on the translation plate 3; the connection post 72 of the rotating fence 62 is then unscrewed, the rotating fence 62 is rotated about the rotation post 621 as an axis, the rotating fence 62 is rotated onto the mating plate 16, and then the connection post 72 is screwed into a corresponding location on the mating plate 16.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (6)

1. A construction work platform is built in room, its characterized in that: the device comprises a platform main body (1), wherein the platform main body (1) comprises an operation platform (11) and a support frame (12), and the support frame (12) is supported at the bottom of the operation platform (11); the device is characterized in that an extension device (2) is arranged on the operation platform (11), the extension device (2) comprises a translation plate (3) movably connected to the operation platform (11) and a positioning structure (4) for fixing the translation plate (3), the positioning structure (4) comprises a positioning block (41) movably connected to the side wall of the operation platform (11) and a positioning groove (42) formed in a corresponding position on the translation plate (3), and when the translation plate (3) extends out of the operation platform (11), the positioning block (41) is positioned in the positioning groove (42); the extension device (2) further comprises a matching plate (16) which is arranged in front of and behind the translation plate (3) and is movably connected in the operation platform (11); when the translation plate (3) slides in the same direction relative to the combination plate (16), an extended combination plate is formed by combining at one side of the operation platform (11); when the translation plate (3) and the matching plate (16) move away from each other, the translation plate (3) slides to one side of the operation platform (11), and the matching plate (16) can slide to the other side opposite to the translation plate (3); the extension device (2) further comprises a fixing structure (17) for positioning the matching plate (16); a bump (411) extends out of one side of the positioning block (41) close to the operation platform (11), a lifting groove (112) for inserting and lifting the bump (411) is formed in the side wall of the operation platform (11), and the bump (411) is connected with the lifting groove (112) through a lifting spring (4111); the fixing structure (17) comprises a guide sleeve (171) fixed on the matching plate (16) and a fixing block (172) accommodated in the guide sleeve (171), and a connecting spring (173) is fixedly connected between the fixing block (172) and the guide sleeve (171); a guide groove (1111) for sliding the guide sleeve (171) is formed in the operation platform (11), and one end of the guide groove (1111) extends vertically along the longitudinal direction; the end parts of the guide grooves (1111) are respectively provided with a fixing groove (18) for inserting and positioning the fixing block (172); the operation platform (11) is provided with a transverse guardrail (5) and a longitudinal guardrail (6) respectively, the longitudinal guardrail (6) comprises a rotary guardrail (62) and a movable guardrail (61), the rotary guardrail (62) and the movable guardrail (61) are respectively and adjacently arranged at two ends of the operation platform (11), and the movable guardrail (61) is positioned at one side of the operation platform (11) close to a construction position and is movably connected to the operation platform (11) through a movable structure (7); the rotary guardrail (62) is positioned on one side of the operating platform away from the construction site.
2. A building construction work platform according to claim 1, wherein: the movable structure (7) comprises fixed sleeves (71) fixed on the movable guardrails (61) at intervals and connecting columns (72) penetrating through the fixed sleeves (71) and connected into the fixed sleeves (71) through connecting structures (8), and the bottoms of the connecting columns (72) are connected into the operation platform (11) through threads; the translation board (3) and the cooperation board (16) are correspondingly provided with threaded mounting holes (9) for inserting and connecting the connecting columns (72), when the translation board (3) and the cooperation board (16) are respectively positioned at two ends of the operation platform (11), the connecting columns (72) of the corresponding movable guardrails (61) can be inserted and connected in the corresponding threaded mounting holes (9) on the translation board (3) and the cooperation board (16) in a threaded manner, and the movable guardrails (61) extend to one side far away from the construction position.
3. A building construction work platform according to claim 2, wherein: the connecting structure (8) comprises a connecting ring (81) and a connecting groove (82), wherein the connecting ring (81) is fixed on the side wall of the connecting column (72), the connecting groove (82) is formed on the inner side wall of the fixed sleeve (71), and the connecting ring (81) is rotationally connected with the connecting groove (82); the connection collar (81) can be lifted in the connection slot (82).
4. A building construction work platform according to claim 3, wherein: one end of the rotary guardrail (62) close to the construction position is connected to the operation platform (11) through threads by a fixed sleeve (71) and a connecting column (72) which have the same structure as the movable guardrail (61), the other end of the rotary guardrail (62) far away from the construction position is fixed with a rotary column (621), and the bottom of the rotary column (621) is inserted on the operation platform (11); when the translation plate (3) and the matching plate (16) are respectively positioned at two ends of the operation platform (11), the rotary guardrails (62) respectively move to one sides of the translation plate (3) and the matching plate (16) far away from the construction position, threaded matching holes (10) for inserting connecting columns (72) on the corresponding rotary guardrails (62) are respectively formed in the translation plate (3) and the matching plate (16), the rotary columns (621) are oppositely inserted in corresponding positions on the operation platform (11), and the opposite rotary columns (621) are respectively positioned at longitudinal extension positions of the initial installation positions of the corresponding rotary guardrails (62); when the translation plate (3) and the matching plate (16) are spliced and combined on the same side of the operation platform (11), the movable guardrail (61) on one side is detached and installed on the translation plate (3) and extends to the matching plate (16), and the connecting column (72) of the rotating guardrail (62) on the same side can move along with the rotation of the rotating column (621) and is positioned on one side, far away from the construction position, of the matching plate (16).
5. The building construction work platform according to claim 4, wherein: a slide way (13) transversely extending along the sliding direction of the translation plate (3) and the matching plate (16) is respectively arranged on the operation platform (11) corresponding to the translation plate (3) and the matching plate (16), driving grooves (14) are respectively arranged on the translation plate (3) and the matching plate (16), and driving shafts (15) can be inserted into the slide way (13) and the driving grooves (14); the driving shaft (15) can be placed in the slideway (13).
6. A construction method of the building construction work platform according to claim 5, characterized in that: the method comprises the following steps:
during construction, the translation plate (3) and the matching plate (16) are respectively moved to two ends of the operation platform (11) according to the requirement; the driving shaft (15) is used for driving the translation plate (3) to horizontally slide to one end of the operation platform (11); then the matched plate (16) is driven to horizontally slide to move to the other end opposite to the translation plate (3), and then the matched plate continues to slide towards one side close to the construction position until the matched plate is positioned; then the movable guardrails (61) at the two ends are detached and installed at the two ends of the corresponding translation plate (3) and the corresponding matching plate (16); the rotary guardrails (62) at the two ends are detached and installed on one side, far away from the construction position, of the corresponding translation plate (3) and the corresponding matching plate (16);
when the translation plate (3) and the matching plate (16) are moved to the same side of the operation platform (11) and combined into a combined plate, the movable guardrail (61) on the same side of the operation platform (11) is detached and mounted on the translation plate (3), and the movable guardrail (61) extends to the matching plate (16); and then the connecting column (72) of the rotary guardrail (62) is screwed out, the rotary guardrail (62) is rotated by taking the rotating column (621) as an axis, the rotary guardrail (62) is rotated onto the matching plate (16), and then the connecting column (72) is screwed into the corresponding position on the matching plate (16) to be positioned.
CN202210480714.1A 2022-05-05 2022-05-05 Construction work platform for house building and construction method thereof Active CN114961198B (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2863291A1 (en) * 2003-12-05 2005-06-10 Doka Ind Gmbh Safety railing for balcony extension of scaffold frame has extending side sections to adjust to the size of the structure
CN207776396U (en) * 2017-12-06 2018-08-28 南京沃匠工程技术有限公司 For building strengthening, the operating platform of protection
CN212176478U (en) * 2020-03-27 2020-12-18 北京建工一建工程建设有限公司 Scaffold frame that engineering construction operation was used is built in room
CN213391145U (en) * 2020-09-17 2021-06-08 福建创润建设有限公司 Construction hanging flower basket is built in room
CN214995791U (en) * 2021-07-30 2021-12-03 梁成 Supporting structure for building engineering construction
CN216109583U (en) * 2021-07-15 2022-03-22 杜珊珊 Building structure construction-based supporting platform

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2863291A1 (en) * 2003-12-05 2005-06-10 Doka Ind Gmbh Safety railing for balcony extension of scaffold frame has extending side sections to adjust to the size of the structure
CN207776396U (en) * 2017-12-06 2018-08-28 南京沃匠工程技术有限公司 For building strengthening, the operating platform of protection
CN212176478U (en) * 2020-03-27 2020-12-18 北京建工一建工程建设有限公司 Scaffold frame that engineering construction operation was used is built in room
CN213391145U (en) * 2020-09-17 2021-06-08 福建创润建设有限公司 Construction hanging flower basket is built in room
CN216109583U (en) * 2021-07-15 2022-03-22 杜珊珊 Building structure construction-based supporting platform
CN214995791U (en) * 2021-07-30 2021-12-03 梁成 Supporting structure for building engineering construction

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