CN216479313U - Pressure-bearing pipe network companion line support device - Google Patents

Pressure-bearing pipe network companion line support device Download PDF

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Publication number
CN216479313U
CN216479313U CN202122870747.0U CN202122870747U CN216479313U CN 216479313 U CN216479313 U CN 216479313U CN 202122870747 U CN202122870747 U CN 202122870747U CN 216479313 U CN216479313 U CN 216479313U
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groove
small
support
clamping block
pipeline
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CN202122870747.0U
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Chinese (zh)
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马宏
冯旭
王占英
王少雷
郝云锋
颜景润
刘向辉
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Hebei University of Architecture
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Hebei University of Architecture
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Abstract

The technical scheme of the utility model relates to a pressure-bearing pipe network tracing support device which comprises a support, a large hole, a large clamping block, a small hole, an arc bottom, a large through groove and a small through groove. The lower part of support sets up to the circular arc end, can be fine with the pipeline laminating, the mounting means such as being convenient for splice, a plurality of supports distribute along the direction of laying "a" word of pipeline on the pipeline, and the distance between the adjacent support is set for according to the test demand. The utility model is designed with 2 through grooves, can adapt to the trace with two diameter specifications, and can also adapt to the working conditions that the same trace is provided with an insulating layer and the insulating layer is removed. This support device can support the companion line to keep the distance between companion line and the pipeline stable, keep companion line and pipeline parallel to each other. The utility model is provided with the clamping block, so that the accompanying line is conveniently fixed and clamped on the bracket, and the accompanying line is prevented from moving or falling off in the construction and use processes.

Description

Pressure-bearing pipe network companion line support device
Technical Field
The technical scheme of the utility model relates to a support device, in particular to a pressure-bearing pipe network tracing support device.
Background
Along with urbanization construction, pressure-bearing pipe networks are increasingly used in municipal construction. The state monitoring of pressure-bearing pipe network is the important component part of pipe network wisdom monitoring, and wherein the running state of the pipe network that accompanies can effectively be responded to through monitoring insulation resistance and return circuit resistance isoparametric to the accompanying line monitoring technology, and the accompanying line monitoring technology is comparatively common in the monitoring of heat supply pipe network, owing to reasons such as the support device that lacks the accompanying line, and the accompanying line monitoring technology is less in water supply pipe network application. The utility model provides a support device which can be used for supporting a monitoring accompanying line outside a water supply pipe network, and meanwhile, the support device can also be applied to the field of supporting accompanying lines of the existing heat supply pipe network.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: the utility model provides a pressure-bearing pipe network companion line support device, can support the monitoring companion line at the water supply pipe network outside.
The technical scheme adopted by the utility model for solving the technical problem is that the pressure-bearing pipe network tracing line bracket device comprises a bracket, a large hole, a large clamping block, a small hole, an arc bottom, a large through groove and a small through groove, wherein the bottom edge of the bracket is designed into the arc bottom, other three edges of the outer contour of the bracket are arranged into straight lines, the left side of the upper part of the bracket is provided with a vertical large through groove, the left side and the right side of the large through groove are parallel, the bottom of the large through groove is arranged into a semicircle, the distance between the circle center of the semicircle at the bottom of the large through groove and the circle center of the arc bottom is set according to monitoring requirements, the large clamping block is arranged in the large through groove, the left side and the right side of the large clamping block form interference fit with the two sides of the large through groove, the lower end of the large clamping block is arranged into the semicircle with the same diameter as the semicircle at the bottom of the large through groove, the semicircle at the lower end of the large clamping block and the bottom of the large through groove form a whole circle which is a large hole, the upper part of the large clamping block is lower than the upper edge of the bracket, the thickness of the large clamping block is smaller than that of the bracket, and the front surface and the rear surface of the large clamping block correspondingly sink in the front and the rear surfaces of the bracket;
furthermore, a vertical small through groove is formed in the right side of the upper portion of the support, the left side and the right side of the small through groove are parallel, the bottom of the small through groove is semicircular, the center distance between the circle center of the semicircle at the bottom of the small through groove and the circle center of the arc bottom is set according to monitoring requirements, the small clamping block is installed in the small through groove, the left side and the right side of the small clamping block form interference fit with the two sides of the small through groove, the lower end of the small clamping block is semicircular and has the same diameter as the semicircle at the bottom of the small through groove, the semicircle at the lower end of the small clamping block and the semicircle at the bottom of the small through groove enclose a whole circle which is a small hole, the upper portion of the small clamping block is lower than the upper side of the support, the thickness of the small clamping block is smaller than the thickness of the support, and the front face and the back face of the small clamping block correspondingly sink in the front and back face of the support;
further, the lower extreme fixed connection of support is on the excircle of pipeline, and a plurality of supports distribute along pipeline's laying direction "a" word on the pipeline, and the distance between the adjacent support is set for according to the test demand, and a plurality of supports all distribute directly over the pipeline, and the macropore of each support all lies in same one side of pipeline, and the aperture of each support all lies in the opposite side of pipeline.
According to the support device for the accompanying line of the pressure-bearing pipe network, the center distance between the circle center of the semicircle at the bottom of the large through groove and the circle center of the arc bottom is set to be 70 mm according to monitoring requirements.
According to the support device for the accompanying line of the pressure-bearing pipe network, the center distance between the circle center of the semicircle at the bottom of the small through groove and the circle center of the arc bottom is set to be 70 mm according to monitoring requirements.
According to the support device for the pressure-bearing pipe network accompanying line, the large hole is directly 5 mm.
Above-mentioned pressure-bearing pipe network companion line support device, the diameter of aperture is 3 millimeters.
According to the pressure-bearing pipe network wire-tracing support device, the diameter of the circular arc bottom is 100 mm.
According to the support device for the pressure-bearing pipe network accompanying line, the distance between the adjacent supports is set to be 120 mm according to the test requirement.
The components of the above-mentioned trace support device for pressure-bearing pipe network are well known to those skilled in the art, and are all obtained by known means. The method of joining the components is within the skill of the art.
Compared with the prior art, the pressure-bearing pipe network accompanying line support device has the beneficial effects that:
(1) the lower part of the utility model is provided with the arc bottom, which can be well jointed with the pipeline and is convenient for installation modes such as glue joint and the like.
(2) The utility model is designed with 2 through grooves in size, can adapt to the trace lines with two diameter specifications, and can also adapt to the working conditions that the same trace line is provided with an insulating layer and the insulating layer is removed.
(3) The utility model can support the trace, keep the distance between the trace and the pipeline stable and keep the trace and the pipeline parallel to each other.
(4) The utility model is provided with the clamping block, so that the accompanying line is conveniently fixed and clamped on the bracket, and the accompanying line is prevented from moving or falling off in the construction and use processes.
Drawings
The utility model is further illustrated with reference to the following figures and examples.
Fig. 1 is a structural diagram of a pressure-bearing pipe network trace support device of the utility model.
Fig. 2 is a structural diagram of the pressure-bearing pipe network trace support device with a large clamping block and a small clamping block removed.
Fig. 3 is a plane structure view of the pressure-bearing pipe network trace support device with the large clamping block and the small clamping block removed.
Fig. 4 is a schematic view of the pressure-bearing pipe network trace support device matched with a thick trace line and installed on a pipeline.
Fig. 5 is a schematic view of the pressure-bearing pipe network trace support device matched with a thin trace line to be installed on a pipeline.
In the figure: 1. the device comprises a support, 2 parts of a large hole, 3 parts of a large clamping block, 4 parts of a small clamping block, 5 parts of a small hole, 6 parts of an arc bottom, 7 parts of a large through groove, 8 parts of a small through groove, 9 parts of a thick trace, 10 parts of a pipeline and 11 parts of a thin trace.
Detailed Description
The embodiment shown in figures 1-5 shows that the pressure-bearing pipe network tracing line bracket device comprises a bracket 1, a large hole 2, a large clamping block 3, a small clamping block 4, a small hole 5, an arc bottom 6, a large through groove 7 and a small through groove 8, wherein the bottom edge of the bracket 1 is designed into the arc bottom 6, other three edges of the outer contour of the bracket 1 are arranged into straight lines, the bracket 1 integrally presents a quadrangle with three straight lines and one arc line, the left side of the upper part of the bracket 1 is provided with the vertical large through groove 7, the large through groove 7 is used for passing a tracing line, the left side and the right side of the large through groove 7 are parallel, the bottom is arranged into a semicircle, the circle center distance between the circle center of the semicircle at the bottom of the large through groove 7 and the circle center of the arc bottom 6 is set according to monitoring requirements, the large clamping block 3 is arranged in the large through groove 7, the large clamping block 3 is used for clamping the tracing line at the bottom of the large through groove 7, and the left side and the right side of the large clamping block 3 form interference fit with the two sides of the large through groove 7, the lower end of the large clamping block 3 is semicircular and has the same diameter with the semicircle at the bottom of the large through groove 7, the semicircle at the lower end of the large clamping block 3 and the semicircle at the bottom of the large through groove 7 form a whole circle, the whole circle is a large hole 2, the large hole 2 is used for a tracing line to pass through, the diameter of the large hole 2 is the same as the outer diameter of the selected tracing line, the upper part of the large clamping block 3 is lower than the upper edge of the bracket 1, the thickness of the large clamping block 3 is smaller than that of the bracket 1, the front and the back of the large clamping block 3 are correspondingly sunk in the front and the back of the bracket 1, and all directions of the large clamping block 3 are contracted in the bracket 1 so as to facilitate the large clamping block 3 not to move due to error;
further, a vertical small through groove 8 is arranged on the right side of the upper portion of the support 1, the small through groove 8 is used for a tracing line to pass through, the left side and the right side of the small through groove 8 are parallel, the bottom of the small through groove 8 is semicircular, the distance between the circle center of the semicircle at the bottom of the small through groove 8 and the circle center of the circular arc bottom 6 is set according to monitoring requirements, the small clamping block 4 is installed in the small through groove 8, the small clamping block 4 is used for clamping the tracing line at the bottom of the small through groove 8, the left side and the right side of the small clamping block 4 are in interference fit with the two sides of the small through groove 8, the lower end of the small clamping block 4 is semicircular and has the same diameter as the semicircle at the bottom of the small through groove 8, the semicircle at the lower end of the small clamping block 4 and the semicircle at the bottom of the small through groove 8 form a whole circle which is a small hole 5, the small hole 5 is used for the tracing line to pass through, the diameter of the small hole 5 is the same as the outer diameter of the selected tracing line, the upper portion of the small clamping block 4 is lower than the upper side of the support 1, the thickness of the small clamping block 4 is smaller than that of the bracket 1, the front surface and the rear surface of the small clamping block 4 are correspondingly sunk in the front surface and the rear surface of the bracket 1, and the small clamping block 4 is contracted in the bracket 1 in all directions so as to be convenient for the small clamping block 4 not to move due to mistaken collision;
further, the lower end of the support 1 is fixedly connected to the outer circle of the pipeline 10, and can adopt modes such as bonding and welding, the plurality of supports 1 are distributed in a shape like a Chinese character 'yi' along the laying direction of the pipeline 10 on the pipeline 10, the number of the supports 1 is determined according to the lengths of the accompanying lines and the pipeline 10, the distance between the adjacent supports 1 is set according to the test requirement, the plurality of supports 1 are all distributed right above the pipeline 10, the large holes 2 of each support 1 are located on the same side of the pipeline 10, the large holes 2 are used for ensuring that the large holes 2 are located at the coaxial positions so as to facilitate the arrangement of the accompanying lines, the small holes 5 of each support 1 are located on the other side of the pipeline 10, and the small holes 5 are located at the coaxial positions so as to facilitate the arrangement of the accompanying lines.
Example 1
According to the aforesaid figure 1 ~ 5 show, make a pressure-bearing pipe network wisdom monitoring system companion line support 1 device, wherein the centre of a circle between the centre of a circle of 7 bottom semicircles in big logical groove and the centre of a circle of 6 at the bottom of the circular arc apart from setting for 70 millimeters as required according to the monitoring, the centre of a circle between the centre of a circle of 8 bottom semicircles in little logical groove and the centre of a circle of 6 at the bottom of the circular arc apart from setting for 70 millimeters as required according to the monitoring, macropore 2 directly is 5 millimeters, the diameter of aperture 5 is 3 millimeters, the diameter of 6 at the bottom of the circular arc is 100 millimeters, distance between the adjacent support 1 sets for 120 millimeters according to the test demand.
Taking the disposable use as an example, taking the arrangement of the coarse trace 9 on the large hole 2 as an example, the outer diameter of the coarse trace 9 is selected to be 5 mm, and the outer diameter of the pipeline 10 is selected to be 100 mm.
First, stick the stent 1
And (3) bonding the arc bottom 6 of the support 1 to the outer wall of the pipeline 10, and bonding a plurality of supports 1 according to the test requirement.
Second, a coarse trace 9 is laid out
The thick tracing line 9 is straightened and then sequentially passes through the large through groove 7 of the bracket 1, so that the tracing line is arranged at the bottom of the large through groove 7, and the whole thick tracing line 9 is parallel to the pipeline 10.
Thirdly, clamping the thick trace 9
The large clamping block 3 is inserted into the large through groove 7, and the lower part of the large clamping block 3 is tightly attached to the outer diameter of the thick trace 9.
The coarse trace 9 is arranged to a set length according to the method, and the arrangement is completed.
The above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, several modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.

Claims (7)

1. The utility model provides a pressure-bearing pipe network companion line support device, includes that support, macropore, big chucking piece, little chucking piece, aperture, circular arc end, big logical groove and little logical groove, its characterized in that: the bottom edge of the support is designed to be an arc bottom, other three edges of the outer contour of the support are arranged to be straight lines, a vertical large through groove is formed in the left side of the upper portion of the support, the left side and the right side of the large through groove are parallel, the bottom of the large through groove is arranged to be semicircular, the distance between the circle center of the semicircle at the bottom of the large through groove and the circle center of the arc bottom is set according to monitoring requirements, a large clamping block is installed in the large through groove, the left side and the right side of the large clamping block are in interference fit with the two sides of the large through groove, the lower end of the large clamping block is arranged to be semicircular and has the same diameter as the semicircle at the bottom of the large through groove, the semicircle at the lower end of the large clamping block and the semicircle at the bottom of the large through groove form a whole circle, the whole circle is a large hole, the upper portion of the large clamping block is lower than the upper edge of the support, the thickness of the large clamping block is smaller than the thickness of the support, and the front surface and the back surface of the large clamping block correspondingly sink in the front and the back surface of the support;
furthermore, a vertical small through groove is formed in the right side of the upper portion of the support, the left side and the right side of the small through groove are parallel, the bottom of the small through groove is semicircular, the center distance between the circle center of the semicircle at the bottom of the small through groove and the circle center of the arc bottom is set according to monitoring requirements, the small clamping block is installed in the small through groove, the left side and the right side of the small clamping block form interference fit with the two sides of the small through groove, the lower end of the small clamping block is semicircular and has the same diameter as the semicircle at the bottom of the small through groove, the semicircle at the lower end of the small clamping block and the semicircle at the bottom of the small through groove enclose a whole circle which is a small hole, the upper portion of the small clamping block is lower than the upper side of the support, the thickness of the small clamping block is smaller than the thickness of the support, and the front face and the back face of the small clamping block correspondingly sink in the front and back face of the support;
further, the lower extreme fixed connection of support is on the excircle of pipeline, and a plurality of supports distribute along pipeline's laying direction "a" word on the pipeline, and the distance between the adjacent support is set for according to the test demand, and a plurality of supports all distribute directly over the pipeline, and the macropore of each support all lies in same one side of pipeline, and the aperture of each support all lies in the opposite side of pipeline.
2. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the distance between the circle center of the semicircle at the bottom of the large through groove and the circle center of the arc bottom is set to be 70 mm according to the monitoring requirement.
3. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the distance between the circle center of the semicircle at the bottom of the small through groove and the circle center of the arc bottom is set to be 70 mm according to the monitoring requirement.
4. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the macropore diameter is 5 mm.
5. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the diameter of the small hole is 3 mm.
6. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the diameter of the arc bottom is 100 mm.
7. The pressure-bearing pipe network accompanying line bracket device according to claim 1, characterized in that: the distance between the adjacent brackets is set to be 120 mm according to the test requirement.
CN202122870747.0U 2021-11-22 2021-11-22 Pressure-bearing pipe network companion line support device Active CN216479313U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122870747.0U CN216479313U (en) 2021-11-22 2021-11-22 Pressure-bearing pipe network companion line support device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122870747.0U CN216479313U (en) 2021-11-22 2021-11-22 Pressure-bearing pipe network companion line support device

Publications (1)

Publication Number Publication Date
CN216479313U true CN216479313U (en) 2022-05-10

Family

ID=81399367

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122870747.0U Active CN216479313U (en) 2021-11-22 2021-11-22 Pressure-bearing pipe network companion line support device

Country Status (1)

Country Link
CN (1) CN216479313U (en)

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