CN222362749U - Building protection locking mechanism - Google Patents

Building protection locking mechanism Download PDF

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Publication number
CN222362749U
CN222362749U CN202420222895.2U CN202420222895U CN222362749U CN 222362749 U CN222362749 U CN 222362749U CN 202420222895 U CN202420222895 U CN 202420222895U CN 222362749 U CN222362749 U CN 222362749U
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Prior art keywords
metal plate
limiting
locking
locking plug
locking mechanism
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CN202420222895.2U
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肖悦军
肖彦冰
刘传华
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Qingdao Jiaozhou Bay Construction Group Co ltd
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Qingdao Jiaozhou Bay Construction Group Co ltd
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Abstract

The utility model provides a building protection locking mechanism, which relates to the technical field of building engineering and comprises a scaffold main body, wherein a protection climbing frame net piece is arranged in front of the scaffold main body, two metal plate connecting pieces are arranged at the upper end and the lower end of the protection climbing frame net piece, circular pipe connecting pieces are arranged on the metal plate connecting pieces, the positioning clamping plates can be pressed through arc fit of a first locking plug-in unit and a limiting through hole, the connection structure is simple, the construction and installation are convenient, the two locking clamping plates are stably clamped on the scaffold main body, and the position of the protection climbing frame net piece can be conveniently adjusted because the two locking clamping plates are not required to be fixedly connected through welding or bolts.

Description

Building protection locking mechanism
Technical Field
The utility model relates to the technical field of constructional engineering, in particular to a protective locking mechanism for a building.
Background
When the building climbing frame net is installed, the special connecting piece is connected to the scaffold, and the electric lifting frame is manufactured after the installation is completed, so that the construction and the use are convenient. When connecting a climbing frame net and a scaffold of a building, required circular pipe connectors are usually assembled by a locking mechanism.
When the existing building protection locking mechanism is used, the circular pipe connecting piece is generally connected and fixed with the building climbing frame net through welding or bolts, the connecting mode is complex, the construction assembly process is troublesome, the welding or bolt fixing mode can stably connect the building climbing frame net and the scaffold, but the building climbing frame net is not easy to adjust after being installed, and when the assembly effect is not ideal, the building climbing frame net is difficult to adjust.
Disclosure of utility model
The embodiment of the disclosure relates to a building protection locking mechanism, which can compress a positioning clamping plate through arc matching of a first locking plug-in and a limiting through hole, ensure stable clamping of a protection climbing frame net sheet, has a simple connecting structure, is convenient to construct and install, and can be stably clamped on a scaffold main body through two locking clamping plates, and can conveniently adjust the position of the protection climbing frame net sheet due to no need of being fixed through welding or bolting, so that the practicability of the locking mechanism is improved.
The first aspect of the disclosure provides a building protection locking mechanism, which specifically comprises a scaffold main body, wherein a protection climbing frame net piece is arranged in front of the scaffold main body, two metal plate connecting pieces are arranged at the upper end and the lower end of the protection climbing frame net piece and distributed in a symmetrical mode, round pipe connecting pieces are arranged on the metal plate connecting pieces, two sliding rings are sleeved on the round pipe connecting pieces, and the sliding rings correspond to the scaffold main body in position.
In at least some embodiments, the metal plate connecting piece is of a T-shaped structure, the metal plate connecting piece is provided with a limiting slot, the metal plate connecting piece is provided with two limiting through holes, the two limiting through holes are symmetrically distributed, and the limiting through holes are positioned at the rear side of the limiting slot.
In at least some embodiments, the metal plate connecting piece is provided with a positioning clamping plate, the positioning clamping plate is provided with a limiting clamping groove, the metal plate connecting piece is provided with a first locking plug-in, the first locking plug-in is of a U-shaped structure, the tops of two vertical frames of the first locking plug-in are provided with supporting blocks, and the bottom end of the first locking plug-in is provided with a chamfer.
In at least some embodiments, the locating clamp plate is slidably connected with the transverse plate of the metal plate connecting piece through a limiting clamping groove, the locating clamp plate is distributed in a parallel mode with the vertical plate of the metal plate connecting piece, the protective climbing frame net piece is clamped between the locating clamp plate and the vertical plate of the metal plate connecting piece, the first locking plug-in unit slides to penetrate through the limiting slot, the supporting block is located at the top of the limiting slot, and the first locking plug-in unit is in contact with the locating clamp plate.
In at least some embodiments, the circular tube connecting piece is of a cylindrical through cavity structure, the front part of the circular tube connecting piece is provided with an installation slot, the side wall of the circular tube connecting piece is provided with two groups of positioning holes, the circular tube connecting piece is provided with a second locking plug-in unit, the second locking plug-in unit is of a U-shaped structure, and two vertical frames of the second locking plug-in unit are elastic buckles.
In at least some embodiments, when the round tube connecting piece is in a connection state with the metal plate connecting piece, the rear end of the transverse plate of the metal plate connecting piece is inserted into the mounting slot, the second locking plug-in penetrates through the positioning hole and the limiting through hole at the same time, and the two elastic buckles of the second locking plug-in are clamped with the rectangular bayonets of the bottom positioning hole.
In at least some embodiments, two groups of limit sliding grooves are formed in the side wall of the circular tube connecting piece and are distributed in a front-back symmetrical mode, a rotating sleeve is arranged at the top of the outer peripheral surface of the circular tube connecting piece and located between the front limit sliding grooves and the rear limit sliding grooves, an adjusting rotating rod is rotatably installed on the rotating sleeve and distributed in a parallel mode with the circular tube connecting piece, two reverse threads are formed in the outer peripheral surface of the adjusting rotating rod, and the reverse threads correspond to the limit sliding grooves in position.
In at least some embodiments, two limiting rods are arranged on the sliding ring and distributed in a vertical mode, a threaded sliding sleeve is arranged at the top end of each limiting rod, locking clamping plates are arranged at the bottoms of the two limiting rods on the inner sides of the bottoms of the two limiting rods, and the locking clamping plates are of arc structures.
In at least some embodiments, the sliding ring is slidably connected to the limiting chute through a limiting rod, the threaded sliding sleeve is slidably mounted on the reverse thread through threads, and the two locking clamping plates are clamped on the scaffold main body.
The utility model provides a building protection locking mechanism, which has the following beneficial effects:
The metal plate connecting piece is arranged, the locating clamping plate and the vertical plate of the metal plate connecting piece are clamped on the protective climbing frame net piece, the locating clamping plate can be tightly pressed through arc matching of the first locking plug-in and the limiting through hole, stable clamping of the protective climbing frame net piece is ensured, the connecting structure is simple, construction and installation are convenient, and the loading and unloading efficiency of the protective climbing frame net piece is effectively improved.
In addition, through manual two adjacent elastic buckles of second locking plug-in components pair pinching to opposite direction, make elastic buckle and locating hole's rectangle bayonet socket lose joint relation, then upwards pull the second locking plug-in components, make second locking plug-in components follow locating hole and spacing through-hole interior slip take out to make the metal sheet connecting piece break away from in can following the installation slot of pipe connecting piece fast, be convenient for use this pipe connecting piece and metal sheet connecting piece fast assembly.
In addition, through the knob of adjusting the bull stick tip, utilize the screw thread sliding sleeve and adjust the reverse thread drive of bull stick, can order about two sliding rings simultaneously along spacing spout to relative sliding adjustment, can make two locking splint stably centre gripping in the scaffold frame main part, in the whole assembly process, owing to need not to fix through welding or bolted connection, and then can conveniently adjust the position of protection climbing the frame net piece, improved this locking mechanical system's practicality.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present utility model, the drawings of the embodiments will be briefly described below.
The drawings described below are only for illustration of some embodiments of the utility model and are not intended to limit the utility model.
In the drawings:
FIG. 1 shows a schematic view of the overall axial view of the present application;
Fig. 2 shows a schematic view of the structure of part of the scaffold body, the protective climbing frame net sheet, the metal plate connecting pieces, the circular pipe connecting pieces and the sliding ring of the application;
FIG. 3 is a schematic view showing an exploded state construction of the sheet metal connector of the present application;
FIG. 4 is a schematic view showing an exploded state of the sheet metal connector and the round tube connector according to the present application;
FIG. 5 shows a schematic diagram of the explosive state structure of the sliding ring and the adjusting rotating rod of the application.
List of reference numerals:
1. a scaffold body;
2. A protective climbing frame net sheet;
3. a metal plate connecting member; 301, a limiting slot, 302, a limiting through hole, 303, a positioning clamping plate, 304, a limiting clamping groove, 305, a first locking plug-in, 306 and a supporting block;
4. The device comprises a round pipe connecting piece, a mounting slot, a 402, a locating hole, a 403, a second locking plug-in, a 404, a limiting chute, a 405, a rotating sleeve, a 406, an adjusting rotating rod, a 407 and a reverse thread;
5. the device comprises a sliding ring, a limiting rod, a threaded sliding sleeve, a locking clamping plate and a locking clamping plate.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present utility model more clear, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. It will be apparent that the described embodiments are some, but not all, embodiments of the utility model. All other embodiments, which can be made by a person skilled in the art without creative efforts, based on the described embodiments of the present utility model fall within the protection scope of the present utility model.
Please refer to fig. 1 to 5:
The utility model provides a building protection locking mechanism which comprises a scaffold main body 1, wherein a protection climbing frame net piece 2 is arranged in front of the scaffold main body 1, two metal plate connecting pieces 3 are arranged at the upper end and the lower end of the protection climbing frame net piece 2, the upper metal plate connecting pieces 3 and the lower metal plate connecting pieces 3 are symmetrically distributed, a circular pipe connecting piece 4 is arranged on the metal plate connecting pieces 3, two sliding rings 5 are sleeved on the circular pipe connecting piece 4, and the sliding rings 5 correspond to the scaffold main body 1 in position.
In the embodiment of the disclosure, as shown in fig. 3, the metal plate connecting piece 3 has a T-shaped structure, and the metal plate connecting piece 3 is provided with a limiting slot 301, the metal plate connecting piece 3 is provided with two limiting through holes 302, the two limiting through holes 302 are symmetrically distributed, and the limiting through holes 302 are located at the rear side of the limiting slot 301;
the metal plate connecting piece 3 is provided with a positioning clamping plate 303, the positioning clamping plate 303 is provided with a limiting clamping groove 304, the metal plate connecting piece 3 is provided with a first locking plug-in 305, the first locking plug-in 305 is of a U-shaped structure, the tops of two vertical frames of the first locking plug-in 305 are provided with supporting blocks 306, and the bottom end of the first locking plug-in 305 is provided with a chamfer;
The locating clamp plate 303 passes through spacing draw-in groove 304 and the diaphragm sliding connection of metal sheet connecting piece 3, and locating clamp plate 303 is parallel mode distribution with the riser of metal sheet connecting piece 3, and the protection climbs frame net piece 2 centre gripping between locating clamp plate 303 and the riser of metal sheet connecting piece 3, first locking plug-in components 305 slip runs through spacing slot 301, and supporting shoe 306 is located spacing slot 301 top, and first locking plug-in components 305 contact with locating clamp plate 303, wherein be equipped with metal sheet connecting piece 3, utilize the riser centre gripping of locating clamp plate 303 and metal sheet connecting piece 3 to climb on the protection frame net piece 2, through first locking plug-in components 305 and spacing through-hole 302 arc cooperation, can compress tightly locating clamp plate 303, guarantee the steady grip to protection frame net piece 2.
In the embodiment of the disclosure, as shown in fig. 4, the circular tube connecting piece 4 is in a cylindrical cavity structure, the front part of the circular tube connecting piece 4 is provided with an installation slot 401, the side wall of the circular tube connecting piece 4 is provided with two groups of positioning holes 402, the circular tube connecting piece 4 is provided with a second locking plug-in 403, the second locking plug-in 403 is in a U-shaped structure, and two vertical frames of the second locking plug-in 403 are elastic buckles;
When the round tube connecting piece 4 and the metal plate connecting piece 3 are in a connecting state, the rear end of the transverse plate of the metal plate connecting piece 3 is inserted into the mounting slot 401, the second locking plug-in 403 simultaneously penetrates through the positioning hole 402 and the limiting through hole 302, two elastic buckles of the second locking plug-in 403 are clamped with rectangular bayonets of the bottom positioning hole 402, two adjacent elastic buckles of the second locking plug-in 403 pair are manually pinched in opposite directions, so that the elastic buckles lose clamping relation with the rectangular bayonets of the positioning hole 402, then the second locking plug-in 403 is pulled upwards, the second locking plug-in 403 is taken out in a sliding manner from the positioning hole 402 and the limiting through hole 302, and accordingly the metal plate connecting piece 3 can be quickly separated from the mounting slot 401 of the round tube connecting piece 4.
In the second embodiment, as shown in fig. 4 and 5, two sets of limiting sliding grooves 404 are formed on the side wall of the circular tube connecting piece 4, the two sets of limiting sliding grooves 404 are distributed in a front-back symmetrical manner, a rotating sleeve 405 is arranged on the top of the outer circumferential surface of the circular tube connecting piece 4, the rotating sleeve 405 is positioned between the front set of limiting sliding grooves 404 and the rear set of limiting sliding grooves 404, an adjusting rotating rod 406 is rotatably mounted on the rotating sleeve 405, the adjusting rotating rod 406 and the circular tube connecting piece 4 are distributed in a parallel manner, two opposite threads 407 are formed on the outer circumferential surface of the adjusting rotating rod 406, and the opposite threads 407 correspond to the positions of the limiting sliding grooves 404;
the two sliding rings 5 are provided with limiting rods 501, the limiting rods 501 are distributed in a vertical mode, the tops of the limiting rods 501 are provided with threaded sliding sleeves 502, the bottoms of the two limiting rods 501 are provided with locking clamping plates 503 on the inner sides opposite to each other, and the locking clamping plates 503 are of arc structures;
the sliding ring 5 is slidably connected with the limiting sliding groove 404 through the limiting rod 501, the threaded sliding sleeve 502 is slidably mounted at the reverse thread 407 in a threaded manner, the two locking clamping plates 503 are clamped on the scaffold main body 1, the two locking clamping plates 503 can be stably clamped on the scaffold main body 1 by rotating the knob at the end of the adjusting rotating rod 406 and utilizing the threaded sliding sleeve 502 to drive the reverse thread 407 of the adjusting rotating rod 406 to perform transmission, and the two sliding rings 5 can be simultaneously driven to relatively slide and adjust along the limiting sliding groove 404.
The working principle of the embodiment is that when the circular tube connecting piece 4 and the metal plate connecting piece 3 are in a connecting state, the rear end of the transverse plate of the metal plate connecting piece 3 is inserted into the mounting slot 401, the second locking plug 403 simultaneously penetrates through the locating hole 402 and the locating through hole 302, two elastic buckles at two positions of the second locking plug 403 are clamped with rectangular bayonets of the bottom locating hole 402, in the dismounting process, two adjacent elastic buckles of the second locking plug 403 are manually driven to face opposite directions, so that the elastic buckles lose clamping relation with the rectangular bayonets of the locating hole 402, the second locking plug 403 is pulled upwards, when the circular tube connecting piece 4 and the metal plate connecting piece 3 are in a connecting state, the transverse plate rear end of the metal plate connecting piece 3 is inserted into the mounting slot 401, the second locking plug 403 simultaneously penetrates through the locating hole 402 and the locating through hole 302, the two elastic buckles at two positions of the second locking plug 403 are clamped with the rectangular bayonets of the bottom locating hole 402, in the dismounting process, the two adjacent elastic buckles of the second locking plug 403 are driven to face opposite directions, so that the elastic buckles lose clamping relation with the rectangular bayonets of the locating hole 402, the second locking plug 403 is pulled upwards, the second locking plug 403 is pulled out of the locating plug 403 from the locating hole 4 and the locating hole 402, the two locking plug 403 can be pulled upwards, and the two locking plug brackets can be rotated to the two slide rods can rotate along the two slide grooves 5 and the two slide grooves and the slide grooves are opposite to the slide groove 5 through the slide grooves and the slide groove 5, and the slide groove 404 can be adjusted, and the slide groove is opposite to the slide groove 5 and can slide to the slide and the slide groove 5 and can slide down.
The foregoing is merely a specific embodiment of the disclosure, but the protection scope of the disclosure is not limited thereto, and any person skilled in the art can easily think about changes or substitutions within the technical scope of the disclosure, and it should be covered in the protection scope of the disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims (9)

1.一种建筑防护锁定机构,其特征在于,包括:脚手架主体,所述脚手架主体前方设有防护爬架网片;所述防护爬架网片上下两端均设有两处金属板连接件,且上下金属板连接件呈对称方式分布;所述金属板连接件上设有圆管连接件;所述圆管连接件上套装有两处滑动环,且滑动环与脚手架主体位置相对应。1. A building protection locking mechanism, characterized in that it comprises: a scaffolding body, a protective climbing frame mesh is arranged in front of the scaffolding body; two metal plate connectors are arranged at the upper and lower ends of the protective climbing frame mesh, and the upper and lower metal plate connectors are distributed in a symmetrical manner; a round tube connector is arranged on the metal plate connector; two sliding rings are mounted on the round tube connector, and the sliding rings correspond to the position of the scaffolding body. 2.根据权利要求1所述的一种建筑防护锁定机构,其特征在于,2. A building protection locking mechanism according to claim 1, characterized in that: 所述金属板连接件为“T”字形结构,且金属板连接件上开设有限位插槽,金属板连接件上开设有两处限位通孔,且两处限位通孔呈对称方式分布,并且限位通孔位于限位插槽后侧。The metal plate connector is a "T"-shaped structure, and a limiting slot is provided on the metal plate connector. Two limiting through holes are provided on the metal plate connector, and the two limiting through holes are distributed in a symmetrical manner, and the limiting through holes are located at the rear side of the limiting slot. 3.根据权利要求2所述的一种建筑防护锁定机构,其特征在于,3. A building protection locking mechanism according to claim 2, characterized in that: 所述金属板连接件上设有定位夹板,定位夹板上设有限位卡槽,金属板连接件上设有第一锁紧插件,第一锁紧插件为“U”字形结构,且第一锁紧插件的两处竖架顶端设有支撑块,并且第一锁紧插件底端设有倒角。The metal plate connector is provided with a positioning clamp, the positioning clamp is provided with a limit slot, the metal plate connector is provided with a first locking plug-in, the first locking plug-in is a "U"-shaped structure, and the top ends of the two vertical frames of the first locking plug-in are provided with support blocks, and the bottom end of the first locking plug-in is provided with a chamfer. 4.根据权利要求3所述的一种建筑防护锁定机构,其特征在于,4. A building protection locking mechanism according to claim 3, characterized in that: 所述定位夹板通过限位卡槽与金属板连接件的横板滑动连接,且定位夹板与金属板连接件的竖板呈平行方式分布,并且防护爬架网片夹持于定位夹板和金属板连接件的竖板之间,第一锁紧插件滑动贯穿限位插槽,且支撑块位于限位插槽顶部,并且第一锁紧插件与定位夹板相接触。The positioning clamp is slidably connected to the horizontal plate of the metal plate connecting piece through a limiting slot, and the positioning clamp and the vertical plate of the metal plate connecting piece are distributed in parallel, and the protective climbing frame mesh is clamped between the positioning clamp and the vertical plate of the metal plate connecting piece, the first locking plug-in slides through the limiting slot, and the support block is located at the top of the limiting slot, and the first locking plug-in is in contact with the positioning clamp. 5.根据权利要求1所述的一种建筑防护锁定机构,其特征在于,5. A building protection locking mechanism according to claim 1, characterized in that: 所述圆管连接件为柱形通腔结构,且圆管连接件前部设有安装插槽,圆管连接件侧壁设有两组定位孔,圆管连接件上设有第二锁紧插件,第二锁紧插件为“U”字形结构,且第二锁紧插件的两处竖架为弹性卡扣。The round tube connector is a cylindrical through-cavity structure, and an installation slot is provided at the front of the round tube connector, two groups of positioning holes are provided on the side wall of the round tube connector, and a second locking plug-in is provided on the round tube connector. The second locking plug-in is a "U"-shaped structure, and the two vertical frames of the second locking plug-in are elastic buckles. 6.根据权利要求5所述的一种建筑防护锁定机构,其特征在于,6. A building protection locking mechanism according to claim 5, characterized in that: 当所述圆管连接件与金属板连接件呈连接状态时,金属板连接件的横板后端插接于安装插槽,且第二锁紧插件同时贯穿定位孔和限位通孔,并且第二锁紧插件的两处弹性卡扣与底部定位孔的矩形卡口相卡接。When the round tube connector and the metal plate connector are in a connected state, the rear end of the horizontal plate of the metal plate connector is inserted into the installation slot, and the second locking plug-in passes through the positioning hole and the limiting through hole at the same time, and the two elastic buckles of the second locking plug-in are engaged with the rectangular snap-in of the bottom positioning hole. 7.根据权利要求6所述的一种建筑防护锁定机构,其特征在于,7. A building protection locking mechanism according to claim 6, characterized in that: 所述圆管连接件侧壁设有两组限位滑槽,且两组限位滑槽呈前后对称方式分布,圆管连接件外周面顶部设有转动套筒,且转动套筒位于前后两组限位滑槽之间,转动套筒上转动安装有调节转杆,且调节转杆与圆管连接件呈平行方式分布,调节转杆外周面设有两处反向螺纹,且反向螺纹与限位滑槽位置相对应。The side wall of the circular tube connector is provided with two groups of limiting grooves, and the two groups of limiting grooves are distributed in a front-to-back symmetrical manner. A rotating sleeve is provided at the top of the outer circumference of the circular tube connector, and the rotating sleeve is located between the front and rear groups of limiting grooves. An adjusting rotating rod is rotatably installed on the rotating sleeve, and the adjusting rotating rod is distributed in parallel with the circular tube connector. Two reverse threads are provided on the outer circumference of the adjusting rotating rod, and the reverse threads correspond to the positions of the limiting grooves. 8.根据权利要求7所述的一种建筑防护锁定机构,其特征在于,8. A building protection locking mechanism according to claim 7, characterized in that: 两处所述滑动环上设有限位杆,且限位杆呈竖直方式分布,限位杆顶端设有螺纹滑套,两处限位杆底部相对内侧设有锁紧夹板,且锁紧夹板为弧形结构。Limit rods are arranged on the two sliding rings, and the limit rods are distributed in a vertical manner. A threaded sliding sleeve is arranged on the top of the limit rod. Locking clamps are arranged on the inner sides of the bottoms of the two limit rods, and the locking clamps are arc-shaped structures. 9.根据权利要求8所述的一种建筑防护锁定机构,其特征在于,9. A building protection locking mechanism according to claim 8, characterized in that: 所述滑动环通过限位杆与限位滑槽滑动连接,且螺纹滑套通过螺纹的方式滑动安装于反向螺纹处,并且两处锁紧夹板夹持于脚手架主体上。The sliding ring is slidably connected with the limiting sliding groove through a limiting rod, and the threaded sliding sleeve is slidably installed on the reverse thread through a thread, and two locking clamps are clamped on the scaffolding body.
CN202420222895.2U 2024-01-30 2024-01-30 Building protection locking mechanism Active CN222362749U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420222895.2U CN222362749U (en) 2024-01-30 2024-01-30 Building protection locking mechanism

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Application Number Priority Date Filing Date Title
CN202420222895.2U CN222362749U (en) 2024-01-30 2024-01-30 Building protection locking mechanism

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Publication Number Publication Date
CN222362749U true CN222362749U (en) 2025-01-17

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