CN215107498U - Building structure sleeve pipe assembly component - Google Patents
Building structure sleeve pipe assembly component Download PDFInfo
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- CN215107498U CN215107498U CN202121452119.4U CN202121452119U CN215107498U CN 215107498 U CN215107498 U CN 215107498U CN 202121452119 U CN202121452119 U CN 202121452119U CN 215107498 U CN215107498 U CN 215107498U
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- sleeve
- sleeve pipe
- positioning hole
- positioning
- limiting plate
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Abstract
The utility model discloses a building structure sleeve pipe assembly component, the sleeve pipe assembly component includes limiting plate, sleeve pipe and locating hole spare, and sleeve pipe fixed mounting has two at least locating hole spares on the limiting plate on the sleeve pipe assembly component, is equipped with the locating hole on the locating hole spare, and the one end that the locating hole spare has the locating hole stretches into the intraduct portion of cover. The sleeve pipe assembly component adopts a modularized and standardized manufacturing process, improves the installation accuracy of the pre-buried sleeve pipe of the building structure, overcomes the problems of displacement of the central line of the sleeve pipe and uneven height of the sleeve pipe after the sleeve pipe is installed, can achieve the effect that the vertical installation error is not more than 3mm, the horizontal installation error is not more than 1mm, optimizes the sleeve pipe construction process, improves the sleeve pipe installation efficiency, reduces the construction cost and the later-stage pipeline installation cost, shortens the construction period and improves the engineering quality.
Description
Technical Field
The utility model relates to a construction technical field especially relates to a building structure embedded bushing's accurate positioning sleeve assembly component.
Background
In high-rise buildings, in order to ensure that pipelines can smoothly penetrate through the high-rise buildings, pre-buried sleeves need to be arranged on each floor, and an axis positioning method, a lead weight wire hanging method, a light beam positioning method and the like are adopted at present. The axis positioning method is characterized in that according to the position of a sleeve in a building design drawing, the position of the sleeve is marked on a template by utilizing building axis pay-off data, the sleeve is respectively fixed on a steel bar or the template, and then concrete is poured. The plumb bob wire hanging method is characterized in that the circle center position of a sleeve is roughly estimated by utilizing building axis line paying-off data, then a hole is formed in a template, a plumb bob is used for passing through a new hole of an upper layer template to the circle center of a next layer of sleeve, personnel are arranged to observe and adjust the plumb bob near the next layer of sleeve, the plumb bob is enabled to be superposed with the circle centers of the upper layer sleeve and the lower layer sleeve, then the circumference position of the sleeve is marked on the template, then the sleeve is respectively fixed on a steel bar or the template according to the marked position, and finally concrete is poured together with a floor slab. The beam positioning method is to position the upper casing by the lower casing by using laser equipment and then to fix and mount the casing.
The method has the advantages that accumulated errors are easily caused when the sleeves are installed, each sleeve needs to be respectively positioned and installed during construction, the process is complicated, in addition, the problems of sleeve central line displacement and uneven sleeve height can be caused due to the fact that the position relation between the adjacent sleeves cannot be accurately determined, the installation precision and efficiency of the sleeves are reduced, the engineering progress is slowed down, and the construction cost is increased.
Disclosure of Invention
An object of the utility model is to provide a building structure sleeve pipe assembly component to solve among the prior art sleeve pipe installation effectiveness low, the big scheduling problem of error.
In order to achieve the above object, the utility model provides a building structure sleeve pipe assembly component, including limiting plate, sleeve pipe and locating hole spare, sleeve pipe fixed mounting in on the limiting plate, two at least locating hole spare have on the sleeve pipe assembly component, be equipped with the locating hole on the locating hole spare, the locating hole spare has the one end of locating hole stretches into intraductal the cover.
Furthermore, the positioning hole piece and the limiting plate are of an integrated structure, and the positioning hole piece is welded with the sleeve.
Furthermore, the positioning hole piece and the limiting plate are detachably connected, the positioning hole piece is inserted into the sleeve, and a jack matched with the positioning hole piece is arranged on the wall of the sleeve.
Further, the sleeve assembling component further comprises a positioning lock, the lower end of the positioning lock is detachably connected with the limiting plate, the positioning hole piece is detachably connected with the positioning lock, the positioning hole piece is connected with the sleeve in an inserting mode, and a jack matched with the positioning hole piece is arranged on the wall of the sleeve.
Further, the positioning hole piece is provided with a cutting groove at the position which is positioned at the inner side of the sleeve and is close to the wall of the sleeve.
Furthermore, the positioning holes are through holes with the diameter of 1.5 mm-6 mm.
The utility model has the advantages that: the utility model discloses a modularization, standardized preparation sleeve pipe assembly component, improved building structure pre-buried sheathed tube installation accuracy, overcome sleeve pipe installation back sleeve pipe central line aversion and the uneven problem of sleeve pipe height, can reach perpendicular installation error and be not more than 3mm, horizontal installation error is not more than 1mm, optimized sleeve pipe construction technology simultaneously, improved sleeve pipe installation efficiency, reduced construction cost and later stage pipeline installation cost, shortened the time limit for a project, improved engineering quality.
Drawings
Fig. 1 is a schematic structural view of a sleeve assembling member according to the present invention;
fig. 2 is a schematic structural view of a first casing assembling member limiting plate according to the present invention;
fig. 3 is a schematic structural view of a first sleeve assembling member according to the present invention;
FIG. 4 is a schematic sectional view taken along line A-A of FIG. 3;
fig. 5 is a schematic structural view of a second limiting plate of a sleeve assembling member according to the present invention;
FIG. 6 is a schematic structural view of a second positioning hole member of the sleeve assembling member according to the present invention;
fig. 7 is a schematic structural view of a second sleeve assembling member according to the present invention;
FIG. 8 is a schematic cross-sectional view taken along line B-B in FIG. 7;
fig. 9 is a schematic structural view of a third limiting plate of a sleeve assembling member according to the present invention;
fig. 10 is a schematic structural view of a positioning hole member of a third sleeve assembling member according to the present invention;
fig. 11 is a schematic top view of a positioning lock for a third sleeve assembling member according to the present invention;
fig. 12 is a schematic bottom view of a third positioning lock for a sleeve assembling member according to the present invention;
fig. 13 is a schematic structural view of a third sleeve assembling member according to the present invention;
fig. 14 is a schematic cross-sectional view taken along line C-C in fig. 13.
In the figure: 1. a limiting plate; 1a, a first limiting plate; 1b, a second limiting plate; 1c, a third limiting plate; 2. a sleeve; 3. positioning a hole piece; 3a, a first positioning hole piece; 3b, a second positioning hole piece; 3c, a third positioning hole piece; 4. Positioning holes; 5. cutting off the groove; 6. casing patch; 7. a positioning lock; 8. a T-shaped support; 9. a groove; 10. t-shaped empty groove.
Detailed Description
The technical solution of the present invention will be clearly and completely described with reference to the accompanying drawings.
The utility model provides a sleeve pipe assembly component, the sleeve pipe assembly component passes through laser cutting processing according to the design drawing and accomplishes, including limiting plate 1, sleeve pipe 2 and locating hole spare 3, as shown in fig. 1, 2 fixed mounting of sleeve pipe are on limiting plate 1, the quantity and the position relation of sleeve pipe 2 on the sleeve pipe assembly component are confirmed according to building structure's actual conditions, limiting plate 1 can be steel sheet or iron plate, two at least locating hole spare 3 have on the sleeve pipe assembly component, locating hole spare 3 can be metal or non-metallic material, be equipped with locating hole 4 on the locating hole spare 3, locating hole spare 3 has the one end of locating hole 4 and stretches into the inside of sleeve pipe 2.
Specifically, the positioning hole member 3 is provided with a cut-off groove 5 at a position which is located at the inner side of the casing and is close to the casing wall, so that one end of the positioning hole member 3 located in the casing can be conveniently taken off from the positioning hole member 3.
Specifically, 4 shapes of locating hole can be rectangle, circular or other shapes all can, are circular usually, and its diameter size is relevant with laser beam width and installation accuracy, is 1.5mm ~6 mm's through-hole generally, the utility model discloses well locating hole diameter of adopting is 4.5 mm.
Example 1:
on the basis of the casing assembling component provided by the above specific embodiment, the casing assembling component in this embodiment includes the first limiting plate 1a, the casing 2 and the first positioning hole piece 3a, as shown in fig. 2 to 4, the first positioning hole piece 3a and the first limiting plate 1a are of an integrated structure and are directly completed by laser cutting, so that when the casing 2 is connected with the first limiting plate 1a, the casing wall is partially cut according to the shape of the first positioning hole piece 3a, then the casing wall is welded on the first positioning hole piece 3a, and then the notch of the casing wall is repaired by using the casing patch 6, so that the casing wall is complete, and at this time, one end of the first positioning hole piece 3a having the positioning hole 4 is located inside the casing.
Example 2:
on the basis of the sleeve assembling member provided in the above-mentioned embodiment, the sleeve assembling member in this embodiment includes the second limiting plate 1b, the sleeve 2 and the second positioning hole 3b, as shown in fig. 5 to 8, the second positioning hole 3b is an independent component, the second positioning hole 3b is detachably connected to the second limiting plate 1b, a socket corresponding to the second positioning hole 3b is provided at a joint of the sleeve wall and the second limiting plate 1b, one end of the second positioning hole 3b having the positioning hole 4 is inserted into the sleeve 2 through the socket, a hollow groove corresponding to a portion of the second positioning hole 3b located outside the sleeve 2 is provided at a corresponding position on the second limiting plate 1b, after the second positioning hole 3b is inserted into the sleeve 2, the second positioning hole 3b is welded to the second limiting plate 1b to achieve the fixing purpose, so that cutting of the sleeve wall is avoided when the sleeve 2 is connected to the second limiting plate 1b, the process is simplified.
Example 3:
on the basis of the sleeve assembling member provided in the above-mentioned embodiment, the sleeve assembling member in this embodiment includes a third limiting plate 1c, a sleeve 2, a third positioning hole member 3c and a positioning lock 7, as shown in fig. 9 to 14, a T-shaped support 8 is provided at a lower end of the positioning lock 7, a corresponding T-shaped hollow groove 10 is provided on the third limiting plate 1c, the positioning lock 7 is detachably connected with the third limiting plate 1c through the lower support, a groove 9 adapted to the structure of the third positioning hole member 3c is provided at an upper end of the positioning lock 7, the third positioning hole member 3c is detachably connected with the positioning lock 7, a socket adapted to the structure of the third positioning hole member 3c is provided at a position corresponding to the third positioning hole member 3c on the positioning lock 7 on the sleeve wall, one end of the third positioning hole member 3c having the positioning hole 4 can be inserted into the sleeve 2 through the socket, the length of the third positioning hole piece 3c can be adjusted according to actual needs during manufacturing, only the third positioning hole piece needs to be matched with the positioning lock 7 and the third limiting plate 1c, the support at the lower end of the positioning lock 7 can be in any shape, only the support needs to be matched with the shape of the empty groove of the third limiting plate 1c, and the sleeve assembling component in the embodiment is also suitable for installation of the rigid waterproof sleeve with the wing ring on the outer side.
The utility model discloses the sleeve pipe assembly component of well description both had been applicable to in the template, also was applicable to the building and reserves the interior installation sleeve pipe of tube well, and the sleeve pipe assembly component is equipped with the serial number according to the design drawing preparation on, and each sleeve pipe assembly component is rather than place floor and concrete position one-to-one, and the installation according to the serial number during installation sleeve pipe assembly component like this can. The position of the positioning hole piece can be arbitrarily selected before the component is manufactured, only the vertical consistency at the same position of different floors needs to be ensured, and in addition, the laser level meter is adopted, so that all the pipe orifices of the casing pipe can be ensured to be positioned on the same horizontal line. When the sleeve is positioned and installed, two positioning holes are selected on each sleeve assembling component, the laser plummet is respectively utilized, laser simultaneously penetrates through the positioning holes of the sleeve assembling components at the same positions of a floor to be installed, the next floor and the next two floors, a three-point and one-line mode is adopted, the accumulated error in the vertical direction is avoided, and the installation precision of the sleeve is improved. Meanwhile, the position relation between the sleeves is determined according to the design drawing when the sleeve assembling component is processed and manufactured, so that for one sleeve assembling component, whether the positions of all the sleeves on the sleeve assembling component are consistent can be determined only by randomly selecting two positioning holes on the sleeve assembling component to observe whether the positions of the sleeves are consistent with the positioning holes at the corresponding positions of two floors below, and the sleeves do not need to be observed one by one, so that the sleeve mounting efficiency is improved, and the project progress is accelerated. After the positioning installation of the sleeve is completed, the part of the positioning hole piece, which is positioned inside the sleeve, can be taken down from the cutting groove, so that the subsequent pipeline installation is prevented from being influenced, the thickness of the manufactured positioning hole piece is relatively thin, constructors can directly take down the positioning hole piece, and the positioning hole piece is simple in operation, convenient and flexible.
The utility model discloses well location hole spare that describes also is applicable to the accurate positioning of position node in the straight line direction in the installation engineering and the measurement control engineering of other relevant fields such as marine industry, petroleum industry, wherein the size that is located the locating hole on the location hole spare can decide the precision of installation or measurement control, in installation or measurement control process, make sharp laser pass the locating hole on the same location hole spare of at least three and big size shape simultaneously, and repetitive operation in proper order, can avoid the ascending accumulative error of straight line direction, ensure that the location is accurate.
The above embodiments are only preferred embodiments of the present invention, and are not used to limit the present invention, and based on the embodiments of the present invention, all other embodiments obtained by the person skilled in the art without creative work all belong to the protection scope of the present invention.
Claims (6)
1. A building structure sleeve assembly component characterized by: the sleeve assembling component comprises a limiting plate, a sleeve and positioning hole pieces, the sleeve is fixedly installed on the limiting plate, at least two positioning hole pieces are arranged on the sleeve assembling component, positioning holes are formed in the positioning hole pieces, and one ends, provided with the positioning holes, of the positioning hole pieces extend into the sleeve.
2. A building construction sleeve assembly member according to claim 1 wherein: the positioning hole piece and the limiting plate are of an integrated structure, and the positioning hole piece is welded with the sleeve.
3. A building construction sleeve assembly member according to claim 1 wherein: the positioning hole piece is detachably connected with the limiting plate, the positioning hole piece is inserted into the sleeve, and a jack matched with the positioning hole piece is arranged on the wall of the sleeve.
4. A building construction sleeve assembly member according to claim 1 wherein: the sleeve assembling component further comprises a positioning lock, the lower end of the positioning lock is detachably connected with the limiting plate, the positioning hole piece is detachably connected with the positioning lock, the positioning hole piece is connected with the sleeve in an inserting mode, and a jack matched with the positioning hole piece is arranged on the wall of the sleeve.
5. A building construction sleeve assembly member according to claim 1 wherein: the positioning hole piece is positioned on the inner side of the sleeve and is provided with a cutting groove at a position close to the wall of the sleeve.
6. A building structure sleeve assembly member according to claim 1, wherein: the positioning holes are through holes with the diameters of 1.5 mm-6 mm.
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CN202121452119.4U CN215107498U (en) | 2021-06-29 | 2021-06-29 | Building structure sleeve pipe assembly component |
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CN202121452119.4U CN215107498U (en) | 2021-06-29 | 2021-06-29 | Building structure sleeve pipe assembly component |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113309369A (en) * | 2021-06-29 | 2021-08-27 | 方泽华 | Accurate positioning and mounting method for building structure embedded sleeve and sleeve assembly component |
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2021
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113309369A (en) * | 2021-06-29 | 2021-08-27 | 方泽华 | Accurate positioning and mounting method for building structure embedded sleeve and sleeve assembly component |
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