CN115059316B - Building deck reservation entrance to a cave component plugging structure in architectural design - Google Patents
Building deck reservation entrance to a cave component plugging structure in architectural design Download PDFInfo
- Publication number
- CN115059316B CN115059316B CN202210636758.9A CN202210636758A CN115059316B CN 115059316 B CN115059316 B CN 115059316B CN 202210636758 A CN202210636758 A CN 202210636758A CN 115059316 B CN115059316 B CN 115059316B
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- Prior art keywords
- wall
- hydraulic
- pipe
- sleeve
- stem
- Prior art date
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Links
- 230000000149 penetrating effect Effects 0.000 claims abstract description 42
- 238000007789 sealing Methods 0.000 claims abstract description 24
- 238000003780 insertion Methods 0.000 claims 1
- 230000037431 insertion Effects 0.000 claims 1
- 239000000945 filler Substances 0.000 abstract description 20
- 230000000694 effects Effects 0.000 abstract description 7
- 238000004140 cleaning Methods 0.000 abstract description 3
- 239000002699 waste material Substances 0.000 abstract description 2
- 229920003266 Leaf® Polymers 0.000 description 3
- 239000000853 adhesive Substances 0.000 description 2
- 230000001070 adhesive effect Effects 0.000 description 2
- 230000006978 adaptation Effects 0.000 description 1
- 239000010837 adhesive waste Substances 0.000 description 1
- 238000005452 bending Methods 0.000 description 1
- 230000002146 bilateral effect Effects 0.000 description 1
- 230000000903 blocking effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 230000001788 irregular Effects 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04G—SCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
- E04G23/00—Working measures on existing buildings
- E04G23/02—Repairing, e.g. filling cracks; Restoring; Altering; Enlarging
- E04G23/0203—Arrangements for filling cracks or cavities in building constructions
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04G—SCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
- E04G23/00—Working measures on existing buildings
- E04G23/02—Repairing, e.g. filling cracks; Restoring; Altering; Enlarging
- E04G23/0203—Arrangements for filling cracks or cavities in building constructions
- E04G23/0211—Arrangements for filling cracks or cavities in building constructions using injection
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04G—SCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
- E04G23/00—Working measures on existing buildings
- E04G23/02—Repairing, e.g. filling cracks; Restoring; Altering; Enlarging
- E04G23/0203—Arrangements for filling cracks or cavities in building constructions
- E04G23/0214—Arrangements for filling cracks or cavities in building constructions using covering strips
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Electrochemistry (AREA)
- Mechanical Engineering (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Pipe Accessories (AREA)
Abstract
The invention discloses a building board reserved hole member plugging structure in building design, which comprises a wall penetrating pipe, wherein a plurality of feeding holes are formed in the outer side wall of the wall penetrating pipe at equal intervals, a hydraulic sleeve is fixedly arranged in the wall penetrating pipe, a core column is inserted in the hydraulic sleeve and the wall penetrating pipe in a sealing sliding mode, a first screw groove is formed in the upper end of the core column, a screw upper cover is arranged in the first screw groove, a pouring groove is formed in the upper surface of the screw upper cover, a plurality of pouring gates are symmetrically formed in the side wall of a screw section of the screw upper cover, and a sealing cover is arranged at a notch of the pouring groove. According to the invention, the filling effect can be improved, the filling difficulty can be reduced, waste and cleaning difficulty caused by leakage of the filling agent are avoided, the fixed diameter can be adjusted by the check positioner to adapt to the reserved holes with various apertures, the application range is wider, the operation is simple, and the plugging effect is better.
Description
Technical Field
The invention relates to the technical field of building engineering plugging, in particular to a building slab reserved hole member plugging structure in building design.
Background
When the floor reserved hole is used for pouring the concrete floor, the reserved hole is reserved for pouring pipeline pipelines such as water and electricity, but the reserved hole is not necessarily used completely, and is not necessarily regular round, and the unused reserved hole needs to be plugged, so that the long-term weathering influence on structural safety of the hole is avoided.
The existing reserved hole plugging member is usually plugged by adopting a through-wall pipe, namely, the through-wall pipe with the size close to the irregular reserved hole and the thickness equal to the thickness of the floor slab is inserted into the reserved hole, then waterproof adhesive is filled between the periphery of the through-wall pipe and the reserved hole, so that the through-wall pipe is fixed in the reserved hole, and then the through-wall pipe is sealed in specification, but the plugging is easy to lead the filled adhesive to leak outwards, thereby causing adhesive waste and difficult cleaning, and the reserved holes with different apertures are required to be selected by different through-wall pipes, so that the operation is troublesome and the filling is inconvenient.
Disclosure of Invention
The invention aims to solve the problems that in the prior art, preformed holes of various specifications cannot be plugged, filling agents are easy to leak out during plugging, waste is generated, and cleaning is difficult to perform, and provides a building board preformed hole member plugging structure in building design.
In order to achieve the above purpose, the present invention adopts the following technical scheme:
the utility model provides a building design is middle floor reserved hole component plugging structure, includes the wall pipe, a plurality of feed inlets have been seted up to annular equidistance on the lateral wall of wall pipe, wall intraductal fixed mounting has hydraulic pressure sleeve pipe, hydraulic pressure sleeve pipe and wall intraductal sealed slip lock pin that has jointly, first screw channel has been seted up to the upper end of stem pin, install the screw rod upper cover in the first screw channel, the pouring spout has been seted up to the upper surface of screw rod upper cover, a plurality of pouring spouts have been seted up on the screw segment lateral wall of screw rod upper cover symmetry, sealed lid is installed to the notch department of pouring spout, the second screw channel has been seted up to the lower extreme of stem pin, hydraulic pressure sleeve pipe's lower extreme sealed slip lock pin has the pipe box, the lower extreme sealed slip lock pin of stem pin is in the pipe box, the lower extreme of wall pipe is inserted and is equipped with the screw rod lower cover, the screw segment of screw rod lower cover extends to the pipe box in and installs in the second screw channel with screw thread.
Further, a plurality of circular hydraulic slotted holes are formed in the upper end of the hydraulic sleeve at equal intervals in a circular shape, hydraulic push rods are inserted in the circular hydraulic slotted holes in a sealing sliding mode, and the upper ends of the hydraulic push rods extend to the upper side of the hydraulic sleeve and are rotationally embedded with balls.
Further, annular equidistance is fixed in middle on the lateral wall of wall pipe and is inserted and is equipped with a plurality of piston pipes, every the piston pipe is close to hydraulic sleeve's one end all extends to the shape of a book hydraulic slotted hole in and keep away from one side of hydraulic push rod, every the piston pipe is kept away from hydraulic sleeve's one end all is arranged in the outside of wall pipe and is sealed sliding to insert and be equipped with the piston rod, every the piston rod is kept away from hydraulic sleeve's one end and is all installed the non return locator jointly with wall pipe's lateral wall.
Further, every the non return locator all includes the roof of fixing on the piston rod and two spacing smooth boxes of bilateral symmetry on the wall pipe outer wall, every all rotate on the roof and install two non return cardboard, every the non return cardboard is kept away from the one end of roof and all is extended to spacing smooth box in, every the non return ratchet groove has all been seted up on the interior diapire of spacing smooth box, every the non return cardboard is kept away from the one end of roof and all is supported in the non return ratchet inslot, every the non return cardboard is located one section of spacing smooth box and all installs the anticreep pole, anticreep pole slidable mounting is on the inside wall of spacing smooth box.
Further, evenly install a plurality of leafs on the lateral wall of wall pipe, every the feed inlet all is located between two adjacent leafs, every check locator all is located between a plurality of vertical adjacent leafs.
Further, the stem comprises an upper section, a middle section and a lower section, wherein the diameter of the upper section of the stem is equal to the inner diameter of the wall penetrating pipe, the upper section of the stem is inserted in the wall penetrating pipe in a sealing sliding manner, the diameter of the middle section of the stem is equal to the inner diameter of the hydraulic sleeve, the middle section of the stem is inserted in the hydraulic sleeve in a sealing sliding manner, the diameter of the lower section of the stem is equal to the inner diameter of the sleeve, and the lower section of the stem is inserted in the sleeve in a sealing sliding manner.
The advantages are that: through adopting the mode of filling of the both sides of reserving the entrance to a cave and carrying out the filler of shutoff placed in the middle, can enough promote the filling effect, also can reduce the degree of difficulty of filling, and avoid the filler to spill and cause extravagant and the clearance difficulty, and can adjust the reservation entrance to a cave of multiple aperture of fixed diameter adaptation through the non return locator, application scope is wider, and easy operation, and the shutoff effect is better.
Drawings
FIG. 1 is a schematic structural diagram of a building slab reserved hole member plugging structure in a building design according to the present invention;
FIG. 2 is a schematic view of a wall pipe with a part cut away of a building slab reserved hole member plugging structure in the building design;
FIG. 3 is a schematic illustration of a stem portion cut away of a building panel pre-reserved hole member plugging structure in accordance with the present invention;
fig. 4 is a schematic view of a limiting slide box of a building board reserved hole member plugging structure in a partially cut-away view in the building design.
In the figure: the wall penetrating pipe 1, the blade plate 11, the feed inlet 12, the hydraulic sleeve 2, the back-shaped hydraulic slotted hole 21, the hydraulic push rod 22, the ball 23, the piston pipe 24, the piston rod 25, the sleeve 26, the check positioner 3, the top plate 31, the limit sliding box 32, the check clamping plate 33, the check ratchet groove 34, the anti-drop rod 35, the core column 4, the first screw groove 41, the second screw groove 42, the lower cover of the 5 screw, the upper cover of the 6 screw, the pouring groove 61, the pouring gate 62 and the sealing cover 63.
Detailed Description
Referring to 1-4, a building board reserved hole member plugging structure in architectural design comprises a wall penetrating pipe 1, a plurality of feed inlets 12 are annularly and equidistantly formed in the outer side wall of the wall penetrating pipe 1, a hydraulic sleeve 2 is fixedly installed in the wall penetrating pipe 1, a core column 4 is inserted in the hydraulic sleeve 2 and the wall penetrating pipe 1 in a sealing sliding mode, a first screw groove 41 is formed in the upper end of the core column 4, a screw upper cover 6 is installed in the first screw groove 41, a pouring groove 61 is formed in the upper surface of the screw upper cover 6, a plurality of pouring gates 62 are symmetrically formed in the side wall of a screw section of the screw upper cover 6, a sealing cover 63 is installed at a notch of the pouring groove 61, a second screw groove 42 is formed in the lower end of the core column 4, a pipe sleeve 26 is inserted in the lower end of the hydraulic sleeve 2 in a sealing sliding mode, a screw lower cover 5 is inserted in the lower end of the wall penetrating pipe 1 in a sealing sliding mode, and a screw section of the screw lower cover 5 extends to the inside 26 and is installed in the second screw groove 42 in a threaded mode.
The stem 4 is inserted into the wall pipe 1, so that the lower end of the stem 4 is inserted into the hydraulic sleeve 2, the upper end of the stem 4 is installed through the first screw groove 41 and the screw upper cover 6, the lower end of the stem 4 is installed through the second screw groove 42 and the screw lower cover 5, and the space between the lower end of the stem 4 and the hydraulic sleeve 2 is sealed by the sleeve 26, the screw upper cover 6 and the screw lower cover 5 are respectively locked in the first screw groove 41 and the second screw groove 42, namely, the screw upper cover 6 is tightly abutted against the upper end of the wall pipe 1 and the screw lower cover 5 is tightly abutted against the lower end of the wall pipe 1, and when the screw upper cover 6 and the screw lower cover 5 are tightly covered with the reserved hole, the reserved hole is closed, and the wall pipe 1 is inserted into the reserved hole, through pouring into leak protection filler in the groove 61 into for leak protection filler gets into through runner 62 in through wall pipe 1 and be located the top of stem 4, then leak protection filler gets into between the outer wall of wall pipe 1 and the reservation entrance to a cave from a plurality of feed inlets 12, then make the reservation entrance to a cave be filled gradually, and cover sealed lid 63, make wall pipe 1 fill the bonding with the reservation entrance to a cave, reach the effect of shutoff, and can fill leak protection filler after plugging up reservation entrance to a cave both sides, can make the filling more convenient and fill the effect better, and can avoid leak protection filler to spill, can save leak protection filler, also can avoid leak protection filler to spill and lead to the floor surface clearance degree of difficulty to increase.
A plurality of circular hydraulic slotted holes 21 are formed in the upper end of the hydraulic sleeve 2 at equal intervals, hydraulic push rods 22 are inserted in each circular hydraulic slotted hole 21 in a sealing sliding mode, and the upper end of each hydraulic push rod 22 extends to the upper side of the hydraulic sleeve 2 and is rotationally embedded with a ball 23.
When the core column 4 moves between the wall penetrating pipe 1 and the hydraulic sleeve 2, the core column 4 can squeeze the balls 23 and push the hydraulic push rod 22 to move, the hydraulic push rod 22 can move towards the inside of the square-shaped hydraulic slotted hole 21, the pressure in the square-shaped hydraulic slotted hole 21 is increased, when the balls 23 can enable the core column 4 to rotate, the core column 4 is prevented from generating horizontal thrust to the hydraulic push rod 22, namely bending of the hydraulic push rod 22 can be avoided, and the reliability of the hydraulic push rod 22 is improved.
The annular equidistant fixed plug in the middle is equipped with a plurality of piston pipes 24 on the lateral wall of wall pipe 1, and the one end that every piston pipe 24 is close to hydraulic sleeve pipe 2 all extends to the one side that returns shape hydraulic slotted hole 21 and keep away from hydraulic push rod 22, and the one end that every piston pipe 24 kept away from hydraulic sleeve pipe 2 all is arranged in the outside of wall pipe 1 and sealed slip plug in and is equipped with piston rod 25, and the one end that every piston rod 25 kept away from hydraulic sleeve pipe 2 and the lateral wall of wall pipe 1 all install check locator 3 jointly.
When the pressure in the annular hydraulic slotted hole 21 is increased, the pressure in the piston tube 24 is increased, and the piston rod 25 moves outwards, namely the check positioner 3 can be pushed to work, so that the check positioner 3 can fix the wall penetrating tube 1 in a reserved hole, and the influence of the movement of the wall penetrating tube 1 in the plugging process on the plugging effect is avoided.
Each check positioner 3 comprises a top plate 31 fixed on the piston rod 25 and two limit sliding boxes 32 which are vertically symmetrical on the outer wall of the wall penetrating pipe 1, each top plate 31 is provided with two check clamping plates 33 in a rotating mode, one end, away from the top plate 31, of each check clamping plate 33 extends into each limit sliding box 32, each limit sliding box 32 is provided with a check ratchet groove 34 on the inner bottom wall, one end, away from the top plate 31, of each check clamping plate 33 abuts against each check ratchet groove 34, one section, located in each limit sliding box 32, of each check clamping plate 33 is provided with an anti-falling rod 35, and each anti-falling rod 35 is slidably mounted on the inner side wall of each limit sliding box 32.
When the piston rod 25 moves outwards, the top plate 31 is pushed to move and prop against the hole wall of the reserved hole, the top plate 31 moves to pull the check clamping plates 33 on two sides to move, one end of the check clamping plates 33, which is far away from the top plate 31, is limited in the limiting sliding box 32 by the anti-falling rod 35, so that the check clamping plates 33 rotate on the top plate 31, the check clamping plates 33 slide in the check ratchet grooves 34, and the check clamping plates 33 are reversely locked by the ratchet grooves 34, the top plate 31 can be prevented from returning, namely, when the plugging operation is carried out after the wall penetrating pipe 1 is fixed by the check positioner 3, even if damage and leakage occurs between the hydraulic push rod 22 and the return hydraulic slotted hole 21 due to misoperation, the wall penetrating pipe 1 can be ensured to be fixed in the middle of the reserved hole, the plugging reliability is improved, and the movement of the top plate 31 can fix the reserved holes with different hole sizes, and the application range is increased, namely, the assembly depth of the first screw groove 41 and the screw upper cover 6 and the assembly depth of the second screw groove 42 and the screw lower cover 5 are adjusted.
A plurality of blades 11 are evenly installed on the outer side wall of the wall penetrating pipe 1, each feeding hole 12 is located between two adjacent blades 11, and each check locator 3 is located between a plurality of vertically adjacent blades 11.
The blade plate 11 can increase the resistance between the leakage-proof filler and the wall penetrating pipe 1, and after the leakage-proof filler is solidified, even if the screw upper cover 6 and the screw lower cover 5 are damaged and fall off, the wall penetrating pipe 1 can be prevented from falling off, and the firmness of the blocking of the wall penetrating pipe 1 is increased.
The stem 4 comprises an upper section, a middle section and a lower section, the diameter of the upper section of the stem 4 is equal to the inner diameter of the wall penetrating pipe 1, the upper section of the stem 4 is inserted in the wall penetrating pipe 1 in a sealing sliding manner, the diameter of the middle section of the stem 4 is equal to the inner diameter of the hydraulic sleeve 2, the middle section of the stem 4 is inserted in the hydraulic sleeve 2 in a sealing sliding manner, the diameter of the lower section of the stem 4 is equal to the inner diameter of the sleeve 26, and the lower section of the stem 4 is inserted in the sleeve 26 in a sealing sliding manner.
The stem 4 is in sealing sliding connection with the wall penetrating pipe 1 through the upper section, is in sealing sliding connection with the hydraulic sleeve 2 through the middle section and is in sealing sliding connection with the pipe sleeve 26 through the lower section, so that the wall penetrating pipe 1 is internally sealed, namely, the leakage-proof filler entering the wall penetrating pipe 1 can only flow into a reserved hole through the feed inlet 12, and the leakage of the leakage-proof filler is avoided, so that the consumption is increased.
Inserting the wall penetrating pipe 1 into the reserved hole, enabling two end faces of the wall penetrating pipe 1 to be flush with two end faces of the reserved hole, then inserting the pipe sleeve 26 into the lower end of the hydraulic sleeve 2 in the wall penetrating pipe 1, inserting the core column 4 into the wall penetrating pipe 1, enabling the upper section of the core column 4 to be inserted on the inner wall of the wall penetrating pipe 1 in a sliding mode, enabling the middle section of the core column 4 to be inserted on the inner wall of the hydraulic sleeve 2 in a sliding mode, enabling the lower section of the core column 4 to be inserted on the inner wall of the pipe sleeve 26 in a sliding mode, covering the lower end of the wall penetrating pipe 1, pushing the core column 4 to enable the screw section of the lower screw cover 5 to be inserted into the second screw groove 42, inserting the screw section of the upper screw cover 6 into the first screw groove 41 and rotating a certain number of turns, pushing the upper screw cover 6 to enable the core column 4 to move, enabling the upper screw cover 6 to push the lower screw cover 5 to move out of the wall penetrating pipe 1, enabling the lower screw cover 5 to abut against the wall penetrating pipe 1, and enabling the lower screw cover 5 to abut against the reserved hole to be covered by the screw cover 5;
when the stem 4 moves, the upper section of the stem 4 pushes the ball 23 and the hydraulic push rod 22 to move into the return-shaped hydraulic slotted hole 21, so that the pressure in the return-shaped hydraulic slotted hole 21 is increased, the pressure in the piston tube 24 is increased, the piston rod 25 moves outwards and pushes the top plate 31 to move tightly against the inner wall of the reserved hole, namely, the wall penetrating tube 1 is fixed in the middle of the reserved hole by the top plate 31 and the piston rod 25, the top plate 31 moves to drive the check clamping plate 33 to move and rotate, and one end of the check clamping plate 33 positioned in the limit sliding box 32 slides and is reversely blocked by the check ratchet groove 34;
when the wall penetrating pipe 1 is centrally fixed in the reserved hole and the reserved hole is sealed by the screw upper cover 6 and the screw lower cover 5, the leakage-proof filler is inserted into the pouring groove 61 through the external pipeline and is injected into the pouring groove, so that the leakage-proof filler can enter the wall penetrating pipe 1 along the pouring gate 62, then enter the reserved hole through the feeding hole 12 and is filled with the leakage-proof filler, the sealing cover 63 is covered, after the leakage-proof filler is solidified, the wall penetrating pipe 1 is tightly adhered with the reserved hole, and the blade 11 can prevent the wall penetrating pipe 1 from loosening and falling in the leakage-proof filler.
Claims (5)
1. The utility model provides a building panel reservation entrance to a cave component plugging structure in architectural design, includes wall pipe (1), its characterized in that, a plurality of feed inlets (12) have been seted up to annular equidistance on the lateral wall of wall pipe (1), fixed mounting has hydraulic sleeve (2) in wall pipe (1), sealed slip cartridge has been equipped with stem (4) jointly in hydraulic sleeve (2) and wall pipe (1), first helicoidal groove (41) have been seted up to the upper end of stem (4), install screw rod upper cover (6) in first helicoidal groove (41), pouring spout (61) have been seted up on the upper surface of screw rod upper cover (6), a plurality of runner (62) have been seted up on the screw segment lateral wall of screw rod upper cover (6), sealed lid (63) are installed to notch department of pouring spout (61), second helicoidal groove (42) have been seted up to the lower extreme of stem (4), the lower extreme seal slip cartridge (26) of hydraulic sleeve (2), the lower extreme seal cartridge sleeve (26) have been equipped with sleeve (26), the lower extreme slip cartridge (26) has been equipped with in screw rod upper cover (5) to the screw rod (5) in the screw rod upper cover (42);
the stem (4) comprises an upper section, a middle section and a lower section, the diameter of the upper section of the stem (4) is equal to the inner diameter of the through-wall pipe (1), the upper section of the stem (4) is inserted in the through-wall pipe (1) in a sealing sliding manner, the diameter of the middle section of the stem (4) is equal to the inner diameter of the hydraulic sleeve (2), the middle section of the stem (4) is inserted in the hydraulic sleeve (2) in a sealing manner, the diameter of the lower section of the stem (4) is equal to the inner diameter of the sleeve (26), and the lower section of the stem (4) is inserted in the sleeve (26) in a sealing manner.
2. The building board reserved hole member plugging structure according to claim 1, wherein a plurality of circular hydraulic slots (21) are formed in the upper end of the hydraulic sleeve (2) at equal intervals, hydraulic push rods (22) are inserted in the circular hydraulic slots (21) in a sealing sliding manner, and the upper ends of the hydraulic push rods (22) extend to the upper side of the hydraulic sleeve (2) and are rotationally embedded with balls (23).
3. The building design floor reserved hole member plugging structure according to claim 2, wherein a plurality of piston pipes (24) are fixedly inserted in the middle of annular equidistance on the outer side wall of the through-wall pipe (1), one end of each piston pipe (24) close to the hydraulic sleeve (2) extends into the loop-shaped hydraulic slotted hole (21) and is far away from one side of the hydraulic push rod (22), one end of each piston pipe (24) far away from the hydraulic sleeve (2) is arranged on the outer side of the through-wall pipe (1) and is provided with a piston rod (25) in a sealing sliding insertion mode, and one end of each piston rod (25) far away from the hydraulic sleeve (2) and the outer side wall of the through-wall pipe (1) are jointly provided with a check positioner (3).
4. A floor reserved hole member plugging structure in a building design according to claim 3, wherein each check positioner (3) comprises a top plate (31) fixed on a piston rod (25) and two limit sliding boxes (32) vertically symmetrical on the outer wall of a wall penetrating pipe (1), each top plate (31) is rotatably provided with two check clamping plates (33), one end, far away from the top plate (31), of each check clamping plate (33) extends into each limit sliding box (32), a check ratchet groove (34) is formed in the inner bottom wall of each limit sliding box (32), one end, far away from the top plate (31), of each check clamping plate (33) is propped against the check ratchet groove (34), one section, located in the limit sliding box (32), of each check clamping plate (33) is provided with an anti-falling rod (35), and the anti-falling rod (35) is slidably arranged on the inner side wall of the limit sliding box (32).
5. A floor slab pre-hole member plugging structure in a building design according to claim 3, wherein a plurality of blades (11) are uniformly installed on the outer side wall of the wall penetrating pipe (1), each feeding hole (12) is located between two adjacent blades (11), and each non-return locator (3) is located between a plurality of vertically adjacent blades (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202210636758.9A CN115059316B (en) | 2022-06-07 | 2022-06-07 | Building deck reservation entrance to a cave component plugging structure in architectural design |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202210636758.9A CN115059316B (en) | 2022-06-07 | 2022-06-07 | Building deck reservation entrance to a cave component plugging structure in architectural design |
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CN115059316A CN115059316A (en) | 2022-09-16 |
CN115059316B true CN115059316B (en) | 2024-03-15 |
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CN202210636758.9A Active CN115059316B (en) | 2022-06-07 | 2022-06-07 | Building deck reservation entrance to a cave component plugging structure in architectural design |
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JP6788859B1 (en) * | 2020-08-06 | 2020-11-25 | 杭州易薪科技創新有限公司 | Antifouling pipeline valve suitable for attachment and detachment |
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