CN213452070U - Wall heat-insulating pipeline mounting structure - Google Patents

Wall heat-insulating pipeline mounting structure Download PDF

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Publication number
CN213452070U
CN213452070U CN202022556258.3U CN202022556258U CN213452070U CN 213452070 U CN213452070 U CN 213452070U CN 202022556258 U CN202022556258 U CN 202022556258U CN 213452070 U CN213452070 U CN 213452070U
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China
Prior art keywords
pipeline
support
depression bar
sleeve
fixedly connected
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CN202022556258.3U
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Chinese (zh)
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李坤学
干吕
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Hubei Liangyouliang Decoration Engineering Co ltd
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Hubei Liangyouliang Decoration Engineering Co ltd
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Abstract

The utility model relates to a wall body heat preservation pipeline mounting structure relates to the field of installation engineering design, and it includes that a plurality of is used for bearing the support of pipeline, support fixed connection is in the wall body, support fixedly connected with mounting bracket, the mounting bracket slides in the vertical direction and is provided with the depression bar, the one end fixedly connected with preforming of the directional pipeline of depression bar, the mounting bracket be provided with the depression bar is fixed mounting in the vertical direction. This application can extrude the pipeline through depression bar and the preforming that sets up and slide on the mounting bracket, makes the mounting bracket have the not effect of unidimensional pipeline of adaptation.

Description

Wall heat-insulating pipeline mounting structure
Technical Field
The application relates to the field of installation engineering design, in particular to a wall heat-preservation pipeline installation structure.
Background
The split type hot water system is an indirect solar hot water system with a heat collector and a heat storage water tank separated at present, the heat collector is installed at a position where solar light energy on a roof or the ground is irradiated, and is required to be not shielded, the water tank, a pump station, a control system and the like are installed indoors, the heat collector converts absorbed solar radiation into heat energy, so that the temperature of working media in the heat collector is continuously increased, and the pump station is started to convey heat conduction working media to a coil pipe heat exchange structure in the water tank for heat exchange.
The heat collector and the heat storage water tank are separately arranged, so that the integration of solar energy and a building is easier to realize, heat transfer efficiency is greatly improved by adopting a heat exchange working medium with a low freezing point and a high boiling point, a pipeline for conveying the heat transfer working medium is fixedly installed along a wall body, and a heat preservation layer is additionally arranged on the pipeline for heat preservation and heat insulation.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: the scale of hot water systems adopted by commercial buildings of different sizes is different, the sizes of used hot water pipelines are different, and when large-scale installation is carried out, the installation rack of standard size cannot be suitable for pipelines of different specifications.
SUMMERY OF THE UTILITY MODEL
In order to improve the poor problem of mounting bracket to the compatibility of unidimensional pipeline size, this application provides a wall body heat preservation pipeline mounting structure.
The application provides a wall body heat preservation pipeline mounting structure adopts following technical scheme:
the utility model provides a wall body heat preservation pipeline mounting structure, includes that a plurality of is used for bearing the support of pipeline, support fixed connection is in the wall body, support fixedly connected with mounting bracket, the mounting bracket slides in the vertical direction and is provided with the depression bar, the one end fixedly connected with preforming of the directional pipeline of depression bar, the mounting bracket be provided with the depression bar is fixed mounting in the vertical direction.
Through adopting above-mentioned technical scheme, the support is fixed in the wall body and supports the pipeline, the mounting bracket is used for being fixed in the support with the pipeline on, preforming on the depression bar compresses tightly the pipeline vertically downwards on the support, make the pipeline be fixed in on the support, the mounting is fixed the depression bar in vertical direction, make the preforming can keep the pressure to the pipeline, when the size of pipeline is different, only need adjust the depression bar and make preforming and pipeline butt in the ascending position of vertical direction, fix through the mounting and can realize fixing not unidimensional pipeline.
Optionally, the mounting bracket includes the riser of two vertical settings and the diaphragm of level setting, the diaphragm with two the one end fixed connection of riser.
Through adopting above-mentioned technical scheme, the one end and the support fixed connection of two risers, the one end of two risers is erect to the diaphragm, and the diaphragm is worn to establish by the depression bar and is extruded the pipeline, and two risers support the depression bar on to diaphragm and the diaphragm.
Optionally, the transverse plate is fixedly connected with a vertically arranged sleeve, the outer peripheral side of the pressure rod is provided with threads, the pressure rod is slidably arranged on the sleeve in a penetrating manner, the fixing part is arranged to be rotatably connected with a threaded sleeve at one end of the sleeve, the threaded sleeve is in spiral fit with the pressure rod, and the inner wall of the sleeve is provided with a limiting part for limiting the rotation of the pressure rod.
Through adopting above-mentioned technical scheme, when rotating the thread bush, the threaded rod is linear motion under the limiting displacement of screw drive effect and locating part, makes the depression bar drive the preforming and make upwards or decurrent linear motion through the rotation direction that changes the thread bush, and then makes the preforming move to with the pipeline butt according to the size of pipeline, produces the packing force to the pipeline for the pipeline is fixed in on the support.
Optionally, a sliding groove is formed in the peripheral wall of the pressing rod along the axial direction of the pressing rod, and the limiting member is a clamping block slidably disposed in the sliding groove.
Through adopting above-mentioned technical scheme, when rotating the thread bush, the fixture block of sleeve inner wall slides in the spout under the limiting displacement of spout for the depression bar is linear motion, and then the drive preforming is linear motion and pipeline butt.
Optionally, an annular groove is formed in an end face of the sleeve, which is close to one end of the threaded sleeve, a connection ring matched with the annular groove is fixedly connected to one end of the threaded sleeve, which is close to the sleeve, and the cross-sectional shapes of the inner wall of the annular groove and the connection ring are both T-shaped.
By adopting the technical scheme, the cross-sectional shapes of the connecting ring and the inner wall of the annular groove enable the threaded sleeve to be fixed on the sleeve while one end of the sleeve rotates, so that the threaded sleeve cannot fall off.
Optionally, the pressing sheet is arc-shaped, and one side of the concave surface of the pressing sheet faces the pipeline.
Through adopting above-mentioned technical scheme, the preforming becomes convex and camber is little, and preforming concave surface one side when the installation with the cambered surface week side butt of pipeline, increased with the pipeline periphery wall between area of contact for it is better to compress tightly the effect.
Optionally, the pressing sheet faces one side of the pipeline and the support is fixedly connected with a rubber pad at the position where the pressing sheet abuts against the pipeline.
Through adopting above-mentioned technical scheme, soft rubber pad and pipeline direct contact avoid the pipeline to receive the damage at the extrusion lower surface, and the rubber pad takes place deformation and all side laminating of pipeline when rubber pad and pipeline butt simultaneously, has increased the area of contact with the pipeline for fixed effect to the pipeline is better.
Optionally, one end of the vertical plate is fixedly connected with a lug attached to the support, and a bolt and a nut for fixing are arranged between the lug and the support.
Through adopting above-mentioned technical scheme, the bolt passes auricle and support, and the nut is screwed in the one end that the support was worn out to the bolt to be fixed in on the support with mounting bracket and depression bar.
Optionally, a plurality of expansion bolts for fixing are arranged on one side of the bracket.
Through adopting above-mentioned technical scheme, be fixed in the wall with the support through expansion bolts on.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the pipeline is extruded by arranging the pressing rod and the pressing sheet which can slide on the mounting frame, so that the pipelines with different sizes are pressed and fixed;
2. the pressing rod is driven by the threaded sleeve which is rotatably connected to the mounting frame, and then the pressing sheet on the pressing rod is used for pressing and fixing the pipeline on the support.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
FIG. 2 is a schematic cross-sectional view of the pressing rod, the threaded sleeve and the pressing sheet according to the embodiment of the present application.
Reference numerals: 1. a pipeline; 2. a support; 3. a wall body; 4. an expansion bolt; 5. a vertical plate; 6. a transverse plate; 7. a tab; 8. a bolt; 9. a nut; 10. a sleeve; 11. a pressure lever; 12. tabletting; 13. a threaded sleeve; 14. a connecting ring; 15. an annular groove; 16. a chute; 17. a clamping block; 18. and (7) a rubber pad.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses wall body heat preservation pipeline mounting structure. Referring to fig. 1, wall body thermal insulation pipeline mounting structure includes that a plurality of is used for bearing the weight of support 2 of pipeline 1, and support 2 fixed connection is in wall body 3, and support 2 generally adopts the angle steel welding to form, and support 2 can set up to triangle-shaped, and 2 one sides of support are provided with a plurality of expansion bolts 4, and expansion bolts 4 pass the mounting hole that support 2 and wall chisel established, and the rethread adjusting nut 9 makes one end of expansion bolts 4 expand the mounting hole to the realization is fixed with support 2.
Be fixed with the mounting bracket on the support 2, the mounting bracket includes the riser 5 of two vertical settings and the diaphragm 6 of level setting, diaphragm 6 and the one end fixed connection of two risers 5, the one end and the support 2 fixed connection of two risers 5, diaphragm 6 erects the one end of two risers 5, the auricle 7 of 5 one end fixedly connected with of riser and the laminating of support 2, be provided with between auricle 7 and the support 2 and be used for fixed bolt 8 and nut 9, bolt 8 passes auricle 7 and support 2, nut 9 screws in the one end that bolt 8 worn out support 2, thereby be fixed in on support 2 mounting bracket and depression bar 11. The mounting bracket is prefabricated in advance, and the project efficiency is improved.
Referring to fig. 1 and 2, the pipeline 1 is located on the support 2 below the transverse plate 6, the sleeve 10 of the vertical setting of fixedly connected with on the transverse plate 6 slides in the sleeve 10 and is provided with a pressing rod 11, one end fixedly connected with pressing sheet 12 of the directional pipeline 1 of the pressing rod 11, the pressing sheet 12 can be abutted against the upper side of the pipeline 1 with different sizes by sliding the pressing rod 11, and then the pipeline 1 is fixed on the support 2. Preforming 12 is arc, and 12 concave surface one sides of preforming are towards pipeline 1, and arc and camber are little, 12 concave surface one sides of preforming when the installation with pipeline 1's cambered surface week side butt, increased with the area of contact between the 1 periphery wall of pipeline for it is better to compress tightly the effect. Preforming 12 is towards pipeline 1 one side and equal fixedly connected with rubber pad 18 of support 2 and pipeline 1 butt department, and soft rubber pad 18 and 1 direct contact of pipeline avoid pipeline 1 to receive the damage on the extrusion lower surface, and rubber pad 18 takes place deformation and the week side laminating of pipeline 1 when rubber pad 18 and 1 butt of pipeline simultaneously, has increased the area of contact with pipeline 1 for fixed effect to pipeline 1 is better.
Referring to fig. 1 and 2, the mounting bracket is provided with the mounting with depression bar 11 fixed on vertical direction, the mounting sets up to thread bush 13, depression bar 11 periphery side is seted up threadedly, screw fit makes depression bar 11 can be fixed between depression bar 11 and the thread bush 13, the one end fixedly connected with go-between 14 of thread bush 13, ring channel 15 has been seted up to the one end terminal surface of sleeve 10, go-between 14 is located ring channel 15, the inner wall of ring channel 15 and the cross sectional shape of go-between 14 all set up to the T shape, thread bush 13 is fixed in on sleeve 10 in sleeve 10 one end pivoted, make thread bush 13 can not take place to drop.
Referring to fig. 1 and 2, in order to enable the thread bushing 13 to drive the pressing rod 11 to do linear motion, a sliding groove 16 along the axis direction of the pressing rod 11 is formed in the peripheral wall of the pressing rod 11, a limiting part limiting the rotation of the pressing rod 11 is arranged on the inner wall of the sleeve 10, the limiting part is arranged to be a clamping block 17 slidably arranged in the sliding groove 16, when the thread bushing 13 is rotated, the clamping block 17 on the inner wall of the sleeve 10 slides in the sliding groove 16 under the limiting effect of the sliding groove 16, so that the pressing rod 11 does linear motion, and the pressing piece 12 is driven to do.
The implementation principle of the wall heat-preservation pipeline installation structure in the embodiment of the application is as follows: support 2 is fixed in wall body 3 through expansion bolts 4 and supports pipeline 1, the mounting bracket is used for being fixed in pipeline 1 on support 2, preforming 12 on the depression bar 11 compresses tightly pipeline 1 vertically downwards on support 2, make pipeline 1 be fixed in on support 2, 13 drive depression bar 11 movements of thread bush are fixed depression bar 11 in vertical direction in, make preforming 12 can keep the pressure to pipeline 1, when pipeline 1's size is different, only need adjustment depression bar 11 to make preforming 12 and pipeline 1 butt can realize fixing not unidimensional pipeline 1 in the ascending position of vertical direction.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a wall body heat preservation pipeline mounting structure which characterized in that: the support comprises a plurality of supports (2) used for bearing pipelines (1), the supports (2) are fixedly connected to a wall body (3), the supports (2) are fixedly connected with mounting racks, pressing rods (11) are arranged on the mounting racks in a sliding mode in the vertical direction, one ends of the pressing rods (11) point to the pipelines (1) and are fixedly connected with pressing sheets (12), and the mounting racks are provided with fixing pieces for fixing the pressing rods (11) in the vertical direction.
2. The wall heat-insulating pipeline installation structure according to claim 1, characterized in that: the mounting bracket comprises two vertically arranged vertical plates (5) and a horizontal plate (6), wherein the horizontal plate (6) is fixedly connected with one ends of the vertical plates (5).
3. The wall heat-insulating pipeline installation structure according to claim 2, characterized in that: diaphragm (6) fixedly connected with sleeve (10) of vertical setting, depression bar (11) periphery side is seted up threadedly, depression bar (11) slide and wear to locate sleeve (10), the mounting set up to rotate connect in thread bush (13) of sleeve (10) one end, thread bush (13) with depression bar (11) screw fit, sleeve (10) inner wall is provided with the restriction depression bar (11) pivoted locating part.
4. The wall heat-insulating pipeline installation structure according to claim 3, wherein: the edge is seted up to depression bar (11) periphery wall spout (16) of depression bar (11) axis direction, the locating part set up to slide set up in fixture block (17) of spout (16).
5. The wall heat-insulating pipeline installation structure according to claim 4, wherein: an annular groove (15) is formed in the end face, close to one end of the threaded sleeve (13), of the sleeve (10), a connecting ring (14) matched with the annular groove (15) is fixedly connected to one end, close to the sleeve (10), of the threaded sleeve (13), and the cross sections of the inner wall of the annular groove (15) and the connecting ring (14) are T-shaped.
6. The wall heat-insulating pipeline installation structure according to claim 1, characterized in that: the pressing sheet (12) is arc-shaped, and one side of the concave surface of the pressing sheet (12) faces the pipeline (1).
7. The wall heat-insulating pipeline installation structure according to claim 6, wherein: the pressing sheet (12) faces one side of the pipeline (1) and the support (2) is connected with a rubber pad (18) in a propping mode with the pipeline (1).
8. The wall heat-insulating pipeline installation structure according to claim 2, characterized in that: the support is characterized in that one end of the vertical plate (5) is fixedly connected with a lug (7) attached to the support (2), and a bolt (8) and a nut (9) used for fixing are arranged between the lug (7) and the support (2).
9. The wall heat-insulating pipeline installation structure according to claim 1, characterized in that: and a plurality of expansion bolts (4) for fixing are arranged on one side of the bracket (2).
CN202022556258.3U 2020-11-06 2020-11-06 Wall heat-insulating pipeline mounting structure Active CN213452070U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022556258.3U CN213452070U (en) 2020-11-06 2020-11-06 Wall heat-insulating pipeline mounting structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022556258.3U CN213452070U (en) 2020-11-06 2020-11-06 Wall heat-insulating pipeline mounting structure

Publications (1)

Publication Number Publication Date
CN213452070U true CN213452070U (en) 2021-06-15

Family

ID=76300899

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022556258.3U Active CN213452070U (en) 2020-11-06 2020-11-06 Wall heat-insulating pipeline mounting structure

Country Status (1)

Country Link
CN (1) CN213452070U (en)

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