CN110748233B - Building site enclosure with accomodate bearing structure function - Google Patents

Building site enclosure with accomodate bearing structure function Download PDF

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Publication number
CN110748233B
CN110748233B CN201910914148.9A CN201910914148A CN110748233B CN 110748233 B CN110748233 B CN 110748233B CN 201910914148 A CN201910914148 A CN 201910914148A CN 110748233 B CN110748233 B CN 110748233B
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CN
China
Prior art keywords
limiting
rod
groove
telescopic rod
wall body
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Expired - Fee Related
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CN201910914148.9A
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Chinese (zh)
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CN110748233A (en
Inventor
卢建博
刘春江
郭红强
陈瑞宁
孟永锋
王自越
李金勇
陈妙平
刘灿辉
钟卫东
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Huizhou First Construction Engineering Co ltd
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Huizhou First Construction Engineering Co ltd
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Priority to CN201910914148.9A priority Critical patent/CN110748233B/en
Publication of CN110748233A publication Critical patent/CN110748233A/en
Application granted granted Critical
Publication of CN110748233B publication Critical patent/CN110748233B/en
Expired - Fee Related legal-status Critical Current
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/14Fences constructed of rigid elements, e.g. with additional wire fillings or with posts
    • E04H17/16Fences constructed of rigid elements, e.g. with additional wire fillings or with posts using prefabricated panel-like elements, e.g. wired frames
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/14Fences constructed of rigid elements, e.g. with additional wire fillings or with posts
    • E04H17/20Posts therefor
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/14Fences constructed of rigid elements, e.g. with additional wire fillings or with posts
    • E04H17/20Posts therefor
    • E04H17/22Anchoring means therefor, e.g. specially-shaped parts entering the ground; Struts or the like

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Fencing (AREA)
  • Forms Removed On Construction Sites Or Auxiliary Members Thereof (AREA)

Abstract

The invention relates to a building site fence with a function of accommodating a supporting structure, belonging to the technical field of auxiliary structures of building engineering, and the main scheme of the building site fence comprises a plurality of fence units, wherein each fence unit comprises two groups of main supporting columns which are oppositely arranged and a wall body which is arranged between the two groups of main supporting columns; the supporting structure comprises a telescopic rod, a limiting assembly and a limiting strip, wherein one end of the telescopic rod is hinged to the accommodating groove and used for supporting the wall body, the limiting assembly is arranged on the telescopic rod and used for adjusting the length of the telescopic rod, and one end of the limiting strip is hinged to the accommodating groove and used for limiting one end of the telescopic rod; when the supporting structure is accommodated in the accommodating groove, the limiting strip cover is arranged on the outer side of the telescopic rod, and the wall body is provided with a plug-in assembly used for limiting the limiting strip in the accommodating groove. The invention can solve the problem that the prior enclosure of the construction site occupies more space when being transported or stored after being disassembled.

Description

Building site enclosure with accomodate bearing structure function
Technical Field
The invention relates to the technical field of auxiliary structures of constructional engineering, in particular to a construction site fence with a function of accommodating a supporting structure.
Background
Before a construction project is carried out, a temporary enclosing wall is usually arranged around a construction site, and the construction site is isolated from the off-site environment through the temporary enclosing wall so as to improve the construction safety of the construction project.
At present, the enclosure of building site mainly has two kinds, one is the brickwork enclosure, and the other is composite sheet concatenation enclosure. Wherein, the brickwork enclosure has firm, the good advantage of stability, but, when demolising the brickwork enclosure, not only waste time and energy, the unable reuse such as the useless brick of dismantling, solidification grout piece moreover can form a large amount of solid rubbish, causes very big waste, has polluted the environment simultaneously. The composite board splicing enclosing wall has the advantage of being detachable for recycling, and can solve the problem that the masonry enclosing wall is easy to cause waste and environmental pollution; however, the enclosing wall spliced by the existing composite plates is usually formed by splicing a plurality of composite plates together and then is fixed on the ground through bolts; in addition, the enclosure needs to be supported obliquely to reinforce the enclosure and prevent strong wind from blowing down the enclosure.
The current bearing structure who carries out the bearing diagonal to the enclosure sets up in the enclosure fixedly usually, and when dismantling the enclosure, bearing structure can't dismantle, consequently, takes more space when transporting or depositing.
Disclosure of Invention
The invention aims to provide a building site enclosure wall with a function of containing a supporting structure, and solves the problem that the existing building site enclosure wall occupies a large space when being transported or stored after being disassembled.
The above object of the present invention is achieved by the following technical solutions:
a building site fence with a function of containing and supporting structures comprises a plurality of fence units, wherein each fence unit comprises two groups of main supporting columns which are arranged oppositely and a wall body arranged between the two groups of main supporting columns, two opposite side walls of the wall body are both provided with strip-shaped containing grooves along the vertical direction, and supporting structures which are used for obliquely supporting the wall body are arranged in the containing grooves; the supporting structure comprises a telescopic rod, a limiting component and a limiting strip, wherein one end of the telescopic rod is hinged to the accommodating groove and used for supporting the wall body, one end of the limiting component is arranged on the telescopic rod and used for adjusting the length of the telescopic rod, and one end of the limiting strip is hinged to the accommodating groove and used for limiting one end, far away from the wall body, of the telescopic rod; when the supporting structure is accommodated in the accommodating groove, the limiting strip cover is arranged on the outer side of the telescopic rod, and the wall body is provided with a plug-in assembly used for limiting the limiting strip in the accommodating groove.
By adopting the technical scheme, the supporting structure comprises the telescopic rod for obliquely supporting the wall body, wherein one end of the telescopic rod is hinged and fixed to the accommodating groove, the length of the telescopic rod is adjusted through the limiting assembly to enable the telescopic rod to be obliquely supported on the ground, and the telescopic rod is limited through the limiting strip, so that the integral stability of the enclosure wall is enhanced; in addition, the one end of spacing strip articulates in the one side of accomodating the groove and being close to ground, when dismantling the enclosure unit, remove the limiting displacement of spacing subassembly to the telescopic link, the length of readjustment telescopic link makes the telescopic link be located and accomodates the inslot, then locate the telescopic link with spacing strip lid, and spacing through the grafting subassembly is accomodating the inslot, thereby realize accomodating bearing structure in the purpose of accomodating the inslot, solve the problem that occupation space is many when current building site enclosure is dismantled or is deposited.
The invention is further configured to: the telescopic link include the sleeve and slide set up in telescopic movable rod, the sleeve is provided with the fixed orifices, the movable rod is provided with a plurality of locating holes along length direction, spacing subassembly passes simultaneously the fixed orifices with the locating hole, in order to realize right the length adjustment of telescopic link.
Through adopting above-mentioned technical scheme, the telescopic link includes that sleeve and one end slide and set up the movable rod in the sleeve, and the sleeve is provided with the fixed orifices, and the movable rod is provided with a plurality of locating holes, through sliding the movable rod, makes fixed orifices and locating hole link up mutually, then inserts spacing subassembly toward fixed orifices and locating hole, can realize the length adjustment of telescopic link.
The length of the movable rod can be adjusted by adjusting the movable rod in a sliding way,
the invention is further configured to: the limiting assembly comprises a limiting cylinder arranged in the fixing hole, a limiting rod which is connected in the limiting cylinder in a sliding mode along the length direction perpendicular to the telescopic rod and is connected with the limiting cylinder in a rotating mode along the circumferential direction of the limiting cylinder, an elastic part which is arranged in the limiting cylinder and sleeved on the periphery of the limiting rod, a pressing part which is arranged in the limiting cylinder and fixed on the periphery of the limiting rod and is used for compressing the elastic part, a rotating cap arranged at one end of the limiting rod and a clamping block arranged on one side, facing the limiting cylinder, of the rotating cap; the clamping blocks are arranged in a plurality of numbers, the clamping blocks are arranged around the circumferential direction of the limiting cylinder, and the inner diameter of a circular ring formed by the clamping blocks is larger than the inner diameter of the limiting cylinder and smaller than the outer diameter of the limiting cylinder; in addition, the limiting cylinder is provided with a clamping groove for the clamping block to be clamped in.
By adopting the technical scheme, when in limiting, the rotating cap is pulled outwards to separate the clamping block from the clamping groove, and the rotating cap is rotated to clamp the clamping block on the end surface of the limiting cylinder, and at the moment, the elastic part in the limiting cylinder is in a compressed state; then the movable rod is slid to adjust the position of the positioning hole, so that the positioning hole is communicated with the fixing hole, when the turncap is rotated, when the clamping block rotates to the position above the clamping groove, under the elastic action of the elastic part, the clamping block of the limiting rod is clamped into the clamping groove, and meanwhile, the limiting rod penetrates through the positioning hole, so that the relative sliding of the movable rod and the sleeve is limited, and the length adjustment of the telescopic rod is realized.
The invention is further configured to: the limiting strips are matched with the containing grooves, a plurality of limiting holes are formed in the limiting strips along the length direction, and when the telescopic rods are used for obliquely supporting the wall body, one ends, far away from the wall body, of the telescopic rods are located in the limiting holes.
By adopting the technical scheme, one end of the telescopic rod is hinged to the accommodating groove, so that the telescopic rod is limited when the telescopic rod is supported on the ground so as to prevent the telescopic rod from continuously moving outwards; the limiting strip is provided with a limiting hole, and one end of the telescopic rod, which is far away from the wall body, is positioned in the limiting hole, so that the limiting hole can limit the telescopic rod to continuously move outwards, and the limiting of the telescopic rod is realized; the limiting holes are provided with a plurality of limiting strips along the length direction, so that the angle of the inclined support of the telescopic rod can be adjusted according to actual needs.
The invention is further configured to: the limiting strip faces towards one side of the accommodating groove and is provided with a groove in a U shape, and the telescopic rod is located in the groove.
Through adopting above-mentioned technical scheme, when bearing structure accomodates in accomodating the inslot, the telescopic link is located to spacing strip lid, sets up the recess in spacing strip orientation one side of accomodating the groove, and the telescopic link is located the recess, is favorable to making the surface of spacing strip level mutually in the surface of wall body, saves the shared space of enclosure unit after dismantling.
The invention is further configured to: the plug-in assembly comprises a plug-in rod arranged at the top of the accommodating groove and a handle vertically arranged on the plug-in rod; the wall body is provided with a sliding groove for the insertion rod to slide at the top of the accommodating groove, and one side of the sliding groove, which is close to the accommodating groove, is provided with a through groove which is the same as the accommodating groove; in addition, one end of the limiting strip, which is close to the sliding groove, is provided with an insertion groove matched with the insertion rod.
Through adopting above-mentioned technical scheme, follow the spout and slide the grafting pole, make the grafting pole pass and link up the groove and get into the inserting groove to the realization is spacing in the purpose of accomodating the inslot with spacing, with the shared space of enclosure unit after the reduction dismantlement.
The invention is further configured to: the spout extends perpendicularly has to the standing groove that the handle placed, works as the inserted link is the pole, works as the inserted link plug to when the inserted link, rotate the handle makes the handle accomodate in the standing groove.
Through adopting above-mentioned technical scheme, set up the standing groove that can accomodate the handle, dismantle the enclosure unit back, can place the handle in the standing groove, save the shared space of enclosure unit.
The invention is further configured to: a retaining ring for connecting adjacent main supporting columns is arranged on one side of each main supporting column; the retaining rings of two adjacent main supporting columns are arranged in a vertically staggered mode, and fixing rods for connecting the two adjacent main supporting columns penetrate through the retaining rings arranged in the vertically staggered mode.
Through adopting above-mentioned technical scheme, adjacent two the connection can be dismantled to the enclosure unit, is convenient for realize carrying out recycle to the enclosure unit, can adjust the circumference of enclosure unit in order to adjust the building site enclosure according to the actual conditions of building site simultaneously.
The invention is further configured to: the inner periphery side of the retaining ring is provided with a notch, and the fixing rod is provided with a convex block matched with the notch.
Through adopting above-mentioned technical scheme, the lug joint is in the breach department of buckle, is favorable to restricting dead lever and bulge loop and takes place relative rotation, influences the stability of two adjacent enclosure unit connections.
The invention is further configured to: the wall body includes two main wallboard to and set up two a plurality of movable wallboard between the main wallboard, the main wallboard with movable wallboard looks lock joint.
Through adopting above-mentioned technical scheme, the circumference of enclosure is adjusted to the quantity of accessible regulation activity wallboard between two main wall boards, is applicable to the range that the amplitude of regulation is less. .
In conclusion, the beneficial technical effects of the invention are as follows: the supporting structure comprises a telescopic rod for obliquely supporting the wall, wherein one end of the telescopic rod is hinged and fixed to the accommodating groove, the length of the telescopic rod is adjusted through the limiting assembly, so that the telescopic rod is obliquely supported on the ground, and the telescopic rod is limited through the limiting strip, so that the integral stability of the enclosure wall is enhanced; in addition, the one end of spacing strip articulates in the one side of accomodating the groove and being close to ground, when dismantling the enclosure unit, remove the limiting displacement of spacing subassembly to the telescopic link, the length of readjustment telescopic link makes the telescopic link be located and accomodates the inslot, then locate the telescopic link with spacing strip lid, and spacing through the grafting subassembly is accomodating the inslot, thereby realize accomodating bearing structure in the purpose of accomodating the inslot, solve the problem that occupation space is many when current building site enclosure is dismantled or is deposited.
Drawings
FIG. 1 is a schematic structural view of the present embodiment in use;
FIG. 2 is an enlarged partial schematic view of portion A of FIG. 1;
FIG. 3 is a schematic structural diagram of the enclosure unit of this embodiment in a use state;
FIG. 4 is a partial exploded view of the telescoping pole of FIG. 3;
FIG. 5 is a cross-sectional view of the stop assembly of FIG. 4;
fig. 6 is a schematic structural view of the enclosure unit of the present embodiment after the supporting structure is received in the receiving groove.
In the figure, 1, a fence unit; 2. a main support column; 21. a fixed seat; 22. a retaining ring; 221. a notch; 23. fixing the rod; 231. a bump; 232. a tip; 3. a wall body; 31. a main wall panel; 311. a receiving groove; 312. a chute; 313. a placement groove; 32. a movable wall panel; 33. a hook member; 34. a fastener; 4. a support structure; 5. a telescopic rod; 51. a sleeve; 511. a fixing hole; 52. a movable rod; 521. positioning holes; 6. a limiting component; 61. a limiting cylinder; 611. a card slot; 62. a limiting rod; 63. an elastic member; 64. a pressing member; 65. screwing the cap; 66. a clamping block; 7. a limiting strip; 71. a groove; 72. a limiting hole; 73. a containing groove; 74. inserting grooves; 8. a plug-in assembly; 81. a plug rod; 82. a handle.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
In this embodiment: referring to fig. 1, the building site enclosure with the function of accommodating and supporting structures disclosed by the invention comprises a plurality of enclosure units 1, wherein each enclosure unit 1 comprises two groups of main supporting columns 2 and a wall 3 arranged between the two groups of main supporting columns 2. Wherein, the one end fixedly connected with fixing base 21 that main tributary dagger 2 is close to ground, and the bottom side of fixing base 21 is less than the bottom side of wall body 3, and fixing base 21 is connected with ground through the bolt.
In order to facilitate the adjustment of the perimeter of the enclosure of the construction site according to the actual conditions of the construction site, several enclosure units 1 are detachably connected to each other. Referring to fig. 1 and 2, two sets of main supporting pillars 2 of the same enclosure unit 1 are respectively provided with a retaining ring 22 at one side far away from the wall 3, when the enclosure unit 1 is connected with an adjacent enclosure unit 1, the retaining rings 22 of the main supporting pillars of the adjacent enclosure unit 1 are arranged in a vertically staggered manner, a fixing rod 23 for connecting the two adjacent enclosure units 1 is arranged in the retaining ring 22 arranged in a vertically staggered manner in a penetrating manner, the size of the fixing rod 23 is consistent with that of the inner ring of the retaining ring 22, and one end of the fixing rod 23 close to the ground is a tip 232, so that the fixing rod 23 is conveniently inserted and fixed on the ground.
The retaining ring 22 may be a circular ring or a square ring, when the retaining ring 22 is a circular ring, the inner ring of the retaining ring 22 is provided with a notch 221, the outer side wall of the fixing rod 23 is provided with a projection 231 matched with the notch 221, the projection 231 is matched with the notch 221, the fixing rod 23 can be limited to rotate around the circumferential direction of the retaining ring 22, and the improvement of the connection stability of two adjacent enclosure units 1 is facilitated.
Referring to fig. 3, the wall 3 includes two main wall panels 31 fixed to one side of the two main support pillars 2, respectively, and a plurality of movable wall panels 32 detachably disposed between the two main wall panels 31, wherein the size of the movable wall panels 32 can be changed according to actual needs. Through this scheme, the circumference of enclosure can be adjusted through adjusting the quantity of activity wallboard 32, is applicable to the range that the amplitude of regulation is less.
The detachable fixing manner of the main wall panel 31 and the movable wall panel 32 can be plug-in, buckling, or screw-fixed connection, and in this embodiment, the connection manner of the main wall panel 31 and the movable wall panel 32 takes buckling as an example. Wherein, one side of main wallboard 31 keeping away from main tributary dagger 2 is provided with hook 33, and one side of another main tributary dagger keeping away from main tributary dagger 2 is provided with fastener 34, and hook 33 sets up with fastener 34 is relative, when need not increase movable wallboard 32, the accessible is with hook 33 lock joint in fastener 34, can directly couple together two main wallboards 31. And the two opposite sides of the movable wall plate 32 are also respectively provided with a hook member 33 and a fastener 34, and the movable wall plate 32 is detachably mounted between the two main wall plates 31 by buckling the hook member 33 of the movable wall plate 32 on the fastener 34 of the main wall plate 31 and buckling the hook member 33 of the main wall plate 31 on the fastener 34 of the movable wall plate 32.
To enhance the supporting function of the enclosure, referring to fig. 3, two opposite sides of two main wall panels 31 of the same enclosure unit 1 are respectively provided with a supporting structure 4 for supporting the wall 3 obliquely. In addition, after the building engineering is completed, the enclosure needs to be disassembled for secondary utilization, and in order to solve the problem that the occupied area of the enclosure unit 1 is relatively large because the supporting structure 4 is obliquely supported on the main wall boards 31, in this embodiment, two main wall boards 31 of the same enclosure unit 1 are respectively provided with the accommodating grooves 311 along the vertical direction, the accommodating grooves 311 are arranged in a long strip shape, and the supporting structure 4 is accommodated in the accommodating grooves 311.
Referring to fig. 3 and 4, the supporting structure 4 includes a telescopic rod 5 for supporting the wall 3, a limiting assembly 6 disposed on the telescopic rod 5 for adjusting the length of the telescopic rod 5, and a limiting strip 7 for limiting one end of the telescopic rod 5. Wherein, one end of the telescopic rod 5 is hinged with one side of the accommodating groove 311 far away from the ground, and one end of the limit strip 7 is hinged with one side of the accommodating groove 311 near the ground
The telescopic rod 5 comprises a sleeve 51 and a movable rod 52 slidably arranged in the sleeve 51. Wherein, one side wall of the sleeve 51 is provided with a fixed hole 511 with internal threads, and the movable rods 52 are uniformly provided with a plurality of positioning holes 521 along the length direction.
Referring to fig. 3 and 5, the limiting component 6 includes a limiting cylinder 61 in threaded fit with the fixing hole 511, a limiting rod 62 slidably connected in the limiting cylinder 61 along a direction perpendicular to the length direction of the telescopic rod 5 and rotatably connected along the circumferential direction of the limiting cylinder 61, a spring disposed in the limiting cylinder 61 and sleeved on the periphery of the limiting rod 62, a pressing member 64 fixed on the periphery of the limiting rod 62 and located in the limiting cylinder 61, a screw cap 65 fixed on one end of the limiting rod 62, and a plurality of clamping blocks 66 disposed on one side of the screw cap 65 facing the limiting cylinder 61. The plurality of clamping blocks 66 are uniformly distributed along the circumferential direction of the limiting cylinder 61, and the inner diameter of a ring surrounded by the plurality of clamping blocks 66 is larger than the inner diameter of the limiting cylinder 61 and smaller than the outer diameter of the limiting cylinder 61. At least two of the clamping blocks 66 are provided, in this embodiment, two clamping blocks 66 are taken as an example, the two clamping blocks 66 are symmetrically provided, and one side of the limiting cylinder 61 close to the clamping blocks 66 is provided with a clamping groove 611 for the clamping blocks 66 to clamp.
During limiting, the rotating cap 65 is pulled outwards to enable the fixture block 66 to be separated from the clamping groove 611, the rotating cap 65 is rotated to enable the fixture block 66 to be clamped on the end face of the limiting cylinder 61, and at the moment, the spring in the limiting cylinder 61 is in a compressed state; then, the movable rod 52 is slid to adjust the position of the positioning hole 521, so that the positioning hole 521 is communicated with the fixing hole 511, when the screw cap 65 is rotated, when the latch 66 is rotated to the upper side of the slot 611, under the elastic action of the spring, the latch 66 of the limiting rod 62 is latched into the slot 611, and meanwhile, the limiting rod 62 passes through the positioning hole 521, so that the relative sliding between the movable rod 52 and the sleeve 51 is limited, and the length adjustment of the telescopic rod 5 is realized.
The limiting strip 7 is in a rod shape, and the shape and the size of the limiting strip 7 are matched with the accommodating groove 311. When the supporting structure 4 is accommodated in the accommodating groove 311, since the accommodating groove 311 is provided with the telescopic rod 5, in order to make the surface of the limiting strip 7 level with the surface of the main wall plate 31, one side of the limiting strip 7 facing the accommodating groove 311 is provided with a groove 71, the cross section of the groove 71 is in a U shape, and the telescopic rod 5 is located in the groove 71. In addition, one side of the limiting strip 7 facing the accommodating groove 311 is further provided with an accommodating groove 73 for accommodating the limiting component 6.
Because the one end of telescopic link 5 articulates in accomodating the groove 311, when supporting enclosure unit 1, for the rotation of restriction telescopic link 5, spacing 7 carries out spacing hole 72 to the one end that main wallboard 31 was kept away from to telescopic link 5, and the one end that main wallboard 31 was kept away from to telescopic link 5 is located spacing hole 72, and the outer wall butt of telescopic link 5 is in the inside of spacing hole 72. In this embodiment, the spacing hole 72 is provided with a plurality of, and the length direction equipartition setting of spacing strip 7 is followed to the spacing hole 72 of a plurality of, is favorable to according to actual need, adjusts the angle of the bearing diagonal of telescopic link 5.
Referring to fig. 3 and 6, in order to prevent the position-limiting strip 7 received in the receiving groove 311 from separating from the receiving groove 311, the top of the receiving groove 311 is provided with a plug-in component 8 for limiting the position-limiting strip 7 in the receiving groove 311. The plug assembly 8 comprises a plug rod 81 and a handle 82 arranged perpendicular to the plug rod 81. The top of the accommodating groove 311 is provided with a sliding groove 312 along the vertical direction, a through groove communicated with the accommodating groove 311 is arranged on the side wall of the sliding groove 312 close to the accommodating groove 311 toward one side of the accommodating groove 311, the inserting rod 81 is positioned in the sliding groove 312, and the inserting rod 81 is connected with the sliding groove 312 and the through groove in a sliding manner along the vertical direction. In addition, one end of the limiting strip 7 close to the sliding groove 312 is provided with a plug-in groove 74 corresponding to the through groove, and the plug-in rod 81 is plugged in the plug-in groove 74, so that the limiting strip 7 is limited in the accommodating groove 311.
In order to accommodate the handle 82 into the main wall panel 31, the sliding slot 312 extends along one side with two placement slots 313 respectively matched with the handle 82, the placement slots 313 are perpendicular to the sliding slot 312, and one side of the placement slots 313 close to the sliding slot 312 is communicated with the sliding slot 312. When the support structure 4 is received in the receiving groove 311, the handle 82 is positioned in the placement groove 313 adjacent to the receiving groove 311; when the support structure 4 is in the support state, the handle 82 is located in the placement groove 313 away from the receiving groove 311. In this embodiment, the insertion rod 81 is a round rod, the handle 82 is a square rod, and after the insertion rod 81 is inserted into the insertion groove 74, the handle 82 can be rotated to position the handle 82 in the placement groove 313.
The implementation principle of the embodiment is as follows: when the wall body support is used, the inserting rod 81 is pulled out of the inserting groove 74, the limiting strip 7 is placed on the ground and fixed with the ground, the length of the telescopic rod 5 is adjusted, the telescopic rod 5 is enabled to support the wall body 3 in an inclined mode, and the telescopic rod 5 is limited through the limiting hole 72 of the limiting strip 7; during the dismantlement, adjust the length of telescopic link 5 earlier, make telescopic link 5 arrange in completely and accomodate the groove 311 in, then with spacing 7 lid establish with telescopic link 5 to slip grafting pole 81 and make grafting pole 81 and inserting groove 74 cooperate, and rotate handle 82, make the handle 82 of grafting pole 81 be located standing groove 313, solve the problem that occupation space is big when enclosure unit 1 transports or deposits.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (6)

1. The utility model provides a building site enclosure with accomodate bearing structure function which characterized in that: the wall structure comprises a plurality of wall units (1), wherein each wall unit (1) comprises two groups of main supporting columns (2) which are arranged oppositely and a wall body (3) arranged between the two groups of main supporting columns (2); one end, close to the ground, of the main support column (2) is fixedly connected with a fixed seat (21), the bottom side of the fixed seat (21) is lower than the bottom side of the wall body (3), two opposite side walls of the wall body (3) are provided with strip-shaped accommodating grooves (311) along the vertical direction, and support structures (4) for obliquely supporting the wall body (3) are arranged in the accommodating grooves (311);
a retaining ring (22) used for connecting the adjacent main supporting columns (2) is arranged on one side of each main supporting column (2); the retaining rings (22) of two adjacent main supporting columns (2) are arranged in a vertically staggered manner, and the retaining rings (22) arranged in the vertically staggered manner penetrate through fixing rods (23) for connecting the two adjacent main supporting columns (2); a notch (221) is formed in the inner peripheral side of the retaining ring (22), and a protruding block (231) matched with the notch (221) is arranged on the fixing rod (23);
the supporting structure (4) comprises a telescopic rod (5) with one end hinged to the accommodating groove (311) and used for supporting the wall body (3), a limiting component (6) arranged on the telescopic rod (5) and used for adjusting the length of the telescopic rod (5), and a limiting strip (7) with one end hinged to the accommodating groove (311) and used for limiting one end, far away from the wall body (3), of the telescopic rod (5); when the supporting structure (4) is accommodated in the accommodating groove (311), the limiting strip (7) is covered on the outer side of the telescopic rod (5), and the wall body (3) is provided with an inserting assembly (8) for limiting the limiting strip (7) in the accommodating groove (311);
the telescopic rod (5) comprises a sleeve (51) and a movable rod (52) arranged in the sleeve (51) in a sliding mode, the sleeve (51) is provided with a fixed hole (511), the movable rod (52) is provided with a plurality of positioning holes (521) along the length direction, and the limiting assembly (6) penetrates through the fixed hole (511) and the positioning holes (521) simultaneously to achieve length adjustment of the telescopic rod (5);
the limiting component (6) comprises a limiting cylinder (61) arranged in the fixing hole (511), a limiting rod (62) which is connected in the limiting cylinder (61) in a sliding manner along the length direction perpendicular to the telescopic rod (5) and is connected with the limiting cylinder (61) in a rotating manner along the circumferential direction of the limiting cylinder (61), an elastic part (63) which is arranged in the limiting cylinder (61) and is sleeved on the circumferential side of the limiting rod (62), a pressing part (64) which is arranged in the limiting cylinder (61) and is fixed on the circumferential side of the limiting rod (62) and is used for compressing the elastic part (63), a rotating cap (65) arranged at one end of the limiting rod (62), and a clamping block (66) arranged on one side, facing the limiting cylinder (61), of the rotating cap (65); the clamping blocks (66) are arranged in a plurality, the clamping blocks (66) are arranged around the circumferential direction of the limiting cylinder (61), and the inner diameter of a circular ring formed by the clamping blocks (66) is larger than the inner diameter of the limiting cylinder (61) and smaller than the outer diameter of the limiting cylinder (61); in addition, the limiting cylinder (61) is provided with a clamping groove (611) for clamping the clamping block (66).
2. A construction site fence having a function of housing a support structure as claimed in claim 1, wherein: spacing (7) with accomodate groove (311) looks adaptation, spacing (7) are provided with a plurality of spacing holes (72) along length direction, work as telescopic link (5) are right during wall body (3) carry out the bearing diagonal, telescopic link (5) are kept away from the one end of wall body (3) is located in spacing hole (72).
3. A construction site fence having a function of housing a support structure as claimed in claim 1, wherein: spacing (7) orientation one side of accomodating groove (311) is provided with recess (71) that are "U" font, telescopic link (5) are located in recess (71).
4. A construction site fence having a function of housing a support structure as claimed in claim 1, wherein: the plug-in component (8) comprises a plug-in rod (81) arranged at the top of the accommodating groove (311) and a handle (82) vertically arranged on the plug-in rod (81); the top of the accommodating groove (311) of the wall body (3) is provided with a sliding groove (312) for the insertion rod (81) to slide, and one side of the sliding groove (312) close to the accommodating groove (311) is provided with a through groove which is the same as the accommodating groove (311); in addition, one end of the limiting strip (7) close to the sliding groove (312) is provided with an insertion groove (74) matched with the insertion rod (81).
5. A construction site fence having a function of housing a support structure as defined in claim 4, wherein: the sliding groove (312) is vertically provided with a placing groove (313) for placing the handle (82), when the insertion rod (81) is a round rod, when the insertion rod (81) is inserted into the insertion groove (74), the handle (82) is rotated to enable the handle (82) to be contained in the placing groove (313).
6. A construction site fence having a function of housing a support structure as claimed in claim 1, wherein: the wall body (3) comprises two main wall boards (31) and a plurality of movable wall boards (32) arranged between the two main wall boards (31), wherein the main wall boards (31) are buckled with the movable wall boards (32).
CN201910914148.9A 2019-09-25 2019-09-25 Building site enclosure with accomodate bearing structure function Expired - Fee Related CN110748233B (en)

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