Measuring device of adjustable pipeline elevation support and working method thereof

CN117308866BActive Publication Date: 2026-08-28SHANGHAI INSTALLATION ENGINEERING GROUP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202311162342.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-08
Publication Date
2026-08-28
Estimated Expiration
2043-09-08

AI Technical Summary

Technical Problem

[0005]本发明的目的在于提供一种可调管道标高支架的测量装置及其工作方法,以解决使用现有技术中施工人员在综合支架计算下料和预制过程中存在误差,需要切割木托才能确保管组达到设计标高,导致管道保温厚度无法满足设计需求,造成能量损失的问题

Benefits of technology

[0015]在本发明所提供的可调管道标高支架的测量装置及其工作方法中,基于本发明设计的可调管道标高支架的测量装置进行管道标高支架的高度的测量,测量过程基于基准木托作为参考依据基础上,基于木托支架的国标尺完成木托支架标高的测量,结果准确,其余木托位置可基于管组形式适应性调节木托支架位置,无需做局部垫高或切割,保证管道保温厚度设计需求,弥补了传统手工计算管道标高时产生的误差以及施工人员对成品支架二次加工时产生的误差,有效提高成排管道的综合支架制作的一次成型率,提高了施工的效率,降低施工人员的劳动强度,为管道在安装时提供了有效的技术保障。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117308866B_ABST
    Figure CN117308866B_ABST
Patent Text Reader

Abstract

The application provides a measuring device of an adjustable pipeline elevation support and a working method thereof. The measuring device of the adjustable pipeline elevation support designed based on the application measures the height of the pipeline elevation support. The measuring process is based on a reference wood support as a reference basis. The national standard ruler of the wood support support is used to complete the measurement of the elevation of the wood support support. The result is accurate. The positions of the remaining wood supports can be adjusted adaptively based on the pipe group form. Local heightening or cutting is not needed, the design requirements of the pipeline insulation thickness are guaranteed, the errors generated during the traditional manual calculation of the pipeline elevation and the errors generated during the secondary processing of the finished support by the construction personnel are compensated, the one-time forming rate of the comprehensive support manufacturing of the row pipeline is effectively improved, the construction efficiency is improved, the labor intensity of the construction personnel is reduced, and effective technical support is provided for the installation of the pipeline.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of building engineering technology, and in particular to a measuring device for an adjustable pipe elevation support and its working method. Background Technology

[0002] According to pipeline process requirements, in addition to concentric reduction, different eccentric methods are usually adopted for reducers—when the medium being transported is steam, the bottom of the pipe is made flat to facilitate drainage; when the medium being transported is hot water, the top of the pipe is made flat to facilitate venting. At the same time, different specifications of insulation wooden supports are used according to different pipe insulation thicknesses. These different pipes include, for example, insulation thicknesses for pipes of different diameters, insulation thicknesses for steam heating pipes and air conditioning pipes, and insulation thicknesses for indoor anti-condensation insulation and outdoor anti-freezing insulation.

[0003] Based on the above two factors, when fabricating integrated supports for rows of pipes, if the pipe with the largest diameter and thickest insulation in the row is used as the reference for the support crossarm, other pipes need to be locally raised for support. If there are errors in the calculation, cutting, and prefabrication processes of the integrated support, the wooden supports will need to be cut to ensure that the pipe assembly reaches the design elevation. Thus, if the thickness of the wooden support is less than the design insulation value, the cold or heat of the medium during transportation will dissipate from the pipe to the support, causing energy loss. In severe cases, condensation may occur on the support surface due to thermal bridging.

[0004] In view of the adverse consequences caused by errors in the calculation, material cutting and prefabrication of integrated supports by construction workers in the existing technology, and the need to cut wooden supports to ensure that the pipe assembly reaches the design elevation, those skilled in the art have been looking for solutions. Summary of the Invention

[0005] The purpose of this invention is to provide a measuring device and its working method for an adjustable pipe elevation support, in order to solve the problem that in the existing technology, construction workers have errors in the calculation, cutting and prefabrication of the integrated support, which requires cutting wooden supports to ensure that the pipe assembly reaches the design elevation, resulting in the pipe insulation thickness not meeting the design requirements and causing energy loss.

[0006] To solve the above-mentioned technical problems, the present invention provides a measuring device for an adjustable pipe elevation support, the measuring device for the adjustable pipe elevation support comprising: A support body includes: a frame, a first marker, and a second marker; wherein the first marker and the second marker are parallel to each other, and the first marker is fixedly connected to the frame; both ends of the second marker are respectively embedded in the frame, and can be moved up and down relative to the first marker along the frame to adjust and fix the position of the reference wooden support carried by the second marker; At least one wooden support bracket is embedded in the second marker post and can be raised and lowered relative to the second marker post to adjust the position of the wooden support it supports; wherein, each wooden support includes: a national standard ruler to measure the support elevation of the wooden support bracket; Several centering discs, each centering disc comprising: a disc body, four telescopic arms partially embedded in the disc body, and a fine-tuning handle, wherein the four telescopic arms are all connected to the fine-tuning handle; and each of the four telescopic arms has a positioning hole at its free end.

[0007] Optionally, in the measuring device of the adjustable pipe elevation bracket, the disc body includes: a first body, a second body, and a third body stacked together; wherein, the four telescopic arms are partially embedded in the second body, dividing the second body into four equal parts; the third body has four hollow elongated holes, and the ends of the four telescopic arms partially embedded in the second body are respectively embedded in the four hollow elongated holes, and can move along them; the fine-tuning handle passes through the first body and the second body in sequence, and is connected to the four telescopic arms partially embedded in the second body.

[0008] Optionally, in the measuring device of the adjustable pipe elevation support, each centering disc further includes a connecting rod, and the four telescopic arms are all connected to the fine-tuning handle through the connecting rod.

[0009] Optionally, in the measuring device for the adjustable pipe elevation support, each wooden support further includes: The wooden support body is embedded in the second standard rod, and the national standard ruler is set on the side of the wooden support body; An adjustable handle is fixedly connected to the wooden support body to adjust the longitudinal position of the wooden support body; Move the slider to slide the wooden support body onto the second benchmark to adjust the lateral position of the wooden support body.

[0010] Optionally, in the measuring device of the adjustable pipe elevation support, a level is used in conjunction with the second benchmark to ensure that the second benchmark is in a horizontal state.

[0011] Optionally, in the measuring device of the adjustable pipe elevation bracket, a plumb line is used in conjunction with the centering disc to ensure that the two telescopic arms of the centering disc are in a vertical state when in use.

[0012] The present invention also provides a method for using a measuring device for an adjustable pipe elevation support, the method of using the measuring device for the adjustable pipe elevation support comprising: S1: Prepare wooden supports of appropriate size and a measuring device for adjustable pipe elevation supports as described in any of the above items, based on the number of pipes in the row of pipes. S2: Use the wooden support that supports the pipe with the largest diameter in the row of pipes as the reference wooden support, and fix it on the second benchmark; S3: Place a centering disc in the reference wooden support, and adjust the positions of the four telescopic arms of the centering disc in sequence to form a cross shape, with the two longitudinal telescopic arms collinear and perpendicular to the horizontal plane; adjust the length of the four telescopic arms of the centering disc so that the length of each telescopic arm is equal to the radius of the reference wooden support; adjust the fine-tuning handle of the centering disc to make the four telescopic arms and the reference wooden support tightly and firmly connected. S4: Adjust the position of the second benchmark according to the form of the pipeline laying scheme, so as to adjust and fix the position of the reference wooden support; S5: Place the Nth wooden support on the Nth wooden support bracket, and place a centering disk in the Nth wooden support. Adjust the positions of the four telescopic arms of the centering disk sequentially to form a cross shape, with the two longitudinal telescopic arms collinear and perpendicular to the horizontal plane. Adjust the length of the four telescopic arms of the centering disk so that the length of each telescopic arm is equal to the radius of the reference wooden support. Adjust the fine-tuning handle of the centering disk to ensure a tight and secure connection between the four telescopic arms and the reference wooden support. Wherein, N is a positive integer. S6: According to the form of the pipeline laying scheme, adjust the position of the Nth wooden support to the predetermined position of the reference wooden support to obtain the height of the Nth wooden support support; S7: Repeat steps S5 and S6 until the height of all wooden support brackets is obtained.

[0013] Optionally, in the method of using the adjustable pipe elevation support measuring device, the form of the pipe laying scheme includes three forms: pipe group top level, pipe group concentric, and pipe group bottom level; executing S4 includes the following steps: When the tube assembly is in the normal position, adjust the position of the second marker so that the positioning hole at the highest point of the longitudinal direction of the centering disk in the reference wooden support is tangent to the first marker. When the tube assembly is in the lower position, adjust the position of the second benchmark so that the positioning hole of the lowest longitudinal point of the centering disk in the reference wooden support is tangent to the first benchmark. When the tube assembly is concentric, adjust the position of the second marker so that the lateral positioning hole of the centering disk in the reference wooden support is tangent to the first marker.

[0014] Optionally, in the method of using the adjustable pipe elevation support measuring device, the form of the pipe laying scheme includes three forms: pipe group top level, pipe group concentric, and pipe group bottom level; executing S6 includes the following steps: When the form is a pipe assembly, adjust the position of the wooden support bracket so that the positioning hole of the highest point of the longitudinal direction of the centering disc in the Nth wooden support is tangent to the first benchmark. When the form is a tube assembly, adjust the position of the wooden support bracket so that the positioning hole of the lowest point of the longitudinal direction of the centering disc in the Nth wooden support is tangent to the first benchmark. When the tube assembly is concentric, adjust the position of the wooden support bracket so that the lateral positioning hole of the centering disc in the Nth wooden support is tangent to the first marker.

[0015] In the adjustable pipe elevation support measuring device and its working method provided by this invention, the height of the pipe elevation support is measured based on the adjustable pipe elevation support measuring device designed by this invention. The measurement process is based on the reference wooden support as a reference, and the elevation of the wooden support is measured based on the national standard ruler of the wooden support. The result is accurate. The positions of the remaining wooden supports can be adjusted adaptively according to the pipe group form, without the need for local shimming or cutting, ensuring the design requirements of pipe insulation thickness. It makes up for the errors generated when calculating pipe elevation manually in the traditional way, as well as the errors generated when construction personnel process the finished support in the secondary process. It effectively improves the one-time molding rate of the comprehensive support for row of pipes, improves construction efficiency, reduces the labor intensity of construction personnel, and provides effective technical support for pipe installation. Attached Figure Description

[0016] The above and other objects, features and advantages of this disclosure will become more apparent from the more detailed description of exemplary embodiments thereof taken in conjunction with the accompanying drawings, in which the same reference numerals generally represent the same components.

[0017] Figure 1 This is a schematic diagram of the measuring device for an adjustable pipe elevation support in one embodiment of the present invention; Figure 2 yes Figure 1 Side view; Figure 3 yes Figure 1 Top view; Figure 4 This is a front view of a centering disk in one embodiment of the present invention; Figure 5 This is a front view of a centering disk in one embodiment of the present invention; Figure 6 This is another front view of the centering disk in one embodiment of the present invention; Figure 7 This is a schematic diagram of the centering disk removing the third body in one embodiment of the present invention; Figure 8 This is a flowchart illustrating the method of using the measuring device for the adjustable pipe elevation support according to an embodiment of the present invention; Figure 9 This is a schematic diagram showing the adjustment of the measuring device on the adjustable pipe elevation support when the pipe group is in the form of a row of pipes. Figure 10 This is a schematic diagram showing the adjustment of the measuring device on the adjustable pipe elevation support when the pipe group is laid flat. Figure 11 This is a schematic diagram showing the adjustment of the measuring device for the adjustable pipe elevation support when the pipe group is concentric.

[0018] In the picture: 1-Bracket body; 11-First marker; 12-Second marker; 13-Frame; 14-Fastening nut; 2-Wooden support bracket; 21-Wooden support bracket body; 22-National standard ruler; 23-Adjustable handle; 24-Moving slider; 3-Centering disc; 31-Disc body; 311-First body; 312-Second body; 313-Third body; 3131-Hollowed elongated hole; 32-Telescopic arm; 33-Fine adjustment handle; 34-Positioning hole; 4-Base wooden support; 5-Nth wooden support; Detailed Implementation

[0019] The following detailed description, in conjunction with the accompanying drawings and specific embodiments, provides a more comprehensive overview of the adjustable pipe elevation support measuring device and its operating method proposed in this invention. The advantages and features of this invention will become clearer from the following description and claims. It should be noted that the drawings are all in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of this invention.

[0020] Please refer to Figures 1 to 7 ,like Figures 1 to 4As shown, the measuring device of the adjustable pipe elevation support includes: a support body 1, comprising: a frame 13, a first marker 11, and a second marker 12; wherein, the first marker 11 and the second marker 12 are parallel to each other, and the first marker 11 is fixedly connected to the frame 13; both ends of the second marker 12 are respectively embedded in the frame 13, and can be raised and lowered relative to the first marker 11 along the frame 13 to adjust and fix the position of the reference wooden support 4 carried by the second marker 12; at least one wooden support bracket 2 is embedded in the second marker 12 and can be raised and lowered relative to the first marker 11. The second marker 12 moves up and down to adjust the position of the wooden support it carries; each wooden support includes: a national standard ruler 22 to measure the support elevation of the wooden support bracket 2; several centering discs 3 (the specific number of centering discs is equal to the number of connecting pipes), each centering disc 3 includes: a disc body 31, four telescopic arms 32 (i.e., components similar to umbrella ribs) partially embedded in the disc body 31, and a fine-tuning handle 33, the four telescopic arms 32 are all connected to the fine-tuning handle 33; the free ends of the four telescopic arms 32 are all provided with positioning holes 34.

[0021] Preferably, the bracket body 1 also includes a fastening nut 14, the position of the second marker 12 on the frame can be adjusted by adjusting the tightness of the fastening nut 14, and it can be tightened and fixed as needed.

[0022] The measuring device of this invention can ensure that the batch prefabrication rate of the integrated pipe support is high, the installation form is uniform, the installation cycle is shortened, the material and labor costs are reduced, the installation quality is reliable, and the pipe layout is beautiful. It can meet the special pipe process requirements such as eccentric reducers and concentric reducers, and can also ensure that the pipe insulation thickness meets the design requirements.

[0023] Among them, such as Figures 4 to 7 As shown, the disc body 31 includes: a first body 311, a second body 312, and a third body 313 stacked together; wherein, the four telescopic arms 32 are partially embedded in the second body 312, dividing the second body 312 into four equal parts; the third body 313 has four hollow elongated holes 3131, and the ends of the four telescopic arms 32 partially embedded in the second body 312 are respectively embedded in the four hollow elongated holes 3131, and can move along them; the fine-tuning handle 33 passes through the first body 311 and the second body 312 in sequence, and is connected to the four telescopic arms 32 partially embedded in the second body 312.

[0024] Preferably, each centering disc 3 also includes a connecting rod, and the four telescopic arms 32 are all connected to the fine-tuning handle 33 through the connecting rod. The same fine-tuning handle 33 can simultaneously adjust the length of the four telescopic arms 32 so that the length of the four telescopic arms 32 is equal to the radius of the wooden support they are on. Then, when the centering disc 3 is placed in the wooden support, the fine-tuning handle 33 can be further adjusted to make the four telescopic arms 32 and the reference wooden support 4 tightly and firmly connected, so that the centering disc 3 and the wooden support form a whole.

[0025] Please continue to refer to this. Figure 1 Each wooden support bracket 2 further includes: a wooden support bracket body 21, an adjustable handle 23, and a movable slider 24; the wooden support bracket body 21 is embedded in the second benchmark 12, and the national standard ruler 22 is set on the side of the wooden support body; the adjustable handle 23 is fixedly connected to the wooden support bracket body 21 to adjust the longitudinal position of the wooden support bracket body 21, thereby adjusting the height of the wooden support bracket, without having to compensate for the calculation / prefabrication error in the early stage of construction by locally raising the bracket or cutting the bracket thickness; the movable slider 24 slides the wooden support bracket body 21 onto the second benchmark 12 to adjust the lateral position of the wooden support bracket body 21, thereby adjusting the distance between two adjacent wooden supports.

[0026] To avoid errors in measuring pipe group elevation due to reference datum errors, the measuring device of the adjustable pipe elevation support of the present invention further includes a level and a plumb line. The level is used in conjunction with the second benchmark 12 to ensure that the second benchmark 12 is in a horizontal state. The plumb line is used in conjunction with the centering disk 3 to ensure that when the centering disk 3 is in use, the two telescopic arms 32 are in a vertical state, thereby ensuring that the positioning holes 34 on the free ends of the two telescopic arms 32 in a vertical state are in the same vertical direction (both on the Y-axis of the coordinate axis), confirming that there is no deviation when using the positioning holes 34 for positioning, thereby obtaining an accurate pipe group elevation (corresponding to the height of the wooden support 2 where it is located measured by the national standard ruler 22).

[0027] It is understood that the above examples are merely examples listed to better understand the technical solutions of the embodiments of this application, and are not intended to be the only limitation on the embodiments.

[0028] To better understand the application principle of the adjustable pipe elevation support measuring device of the present invention, this embodiment also provides a method for using the adjustable pipe elevation support measuring device. See below for reference. Figure 1 , Figures 9 to 10 and Figure 8 This embodiment describes in detail the method of using the measuring device for the adjustable pipe elevation support.

[0029] First, please refer to Figure 1In step S1, prepare appropriately sized wooden supports and a measuring device for an adjustable pipe elevation support as described above, based on the number of pipes in the row. Specifically, the number of centering discs in the measuring device for the adjustable pipe elevation support is equal to the number of wooden supports, and the number of wooden supports is equal to the number of pipes N.

[0030] Next, step S2 is performed, where the wooden support supporting the pipe with the largest diameter in the row of pipes is used as the reference wooden support 4, and it is fixed to the second benchmark 12, specifically with a clamp.

[0031] Next, step S3 is performed: a centering disc 3 is placed in the reference wooden support 4; the positions of the four telescopic arms 32 of the centering disc 3 are adjusted in sequence to form a cross shape, and the two longitudinal telescopic arms 32 are collinear and perpendicular to the horizontal plane; the lengths of the four telescopic arms 32 of the centering disc 3 are adjusted so that the length of each telescopic arm 32 is equal to the radius of the reference wooden support 4; the fine-tuning handle 33 of the centering disc 3 is adjusted so that the four telescopic arms 32 are tightly and firmly attached to the reference wooden support 4.

[0032] Next, step S4 is executed. Based on the form of the pipe laying scheme, the position of the second benchmark 12 is adjusted accordingly to fix the position of the reference wooden support 4. The forms of the pipe laying scheme include three types: pipe groups level at the top, pipe groups concentric, and pipe groups level at the bottom. It can be understood that the reference wooden support 4 in step S3 serves as the alignment object for different pipe laying schemes (the reference wooden support 4 is like the lead soldier). Subsequent wooden supports (the Nth wooden support 5, similar to other personnel in the same row needing to align with the lead soldier) will be adjusted to align with the reference wooden support 4, thereby achieving the leveling, concentricity, or leveling of the pipe groups.

[0033] In this embodiment, the two ends of the second marker 12 are fixed to the frame 13 by tightening the fastening nuts 14 located on the frame 13 at both ends of the second marker 12, thereby fixing and locking the position of the reference wooden support 4.

[0034] Specifically, when the form of the pipeline laying scheme is different, please refer to... Figures 9 to 10 The specific process of executing S4 includes the following steps: When the tube assembly is in its normal position, adjust the position of the second marker 12 so that the positioning hole 34 at the highest point of the longitudinal direction of the centering disk 3 in the reference wooden support 4 is tangent to the first marker 11 (see details below). Figure 9 (The part selected by the dashed rectangle in the middle) It is understandable that in order to fix the position of the positioning hole 34, the positioning hole 34 at the highest point needs to be used with a positioning pin. The same applies to the other tube groups, which will not be elaborated on. When the tube assembly is in a horizontal position, adjust the position of the second marker 12 so that the positioning hole 34 of the lowest longitudinal point of the centering disk 3 in the reference wooden support 4 is tangent to the first marker 11 (see details below). Figure 10 (The area selected by the dashed rectangle).

[0035] When the tube assembly is concentric, adjust the position of the second marker 12 so that the lateral positioning hole 34 of the centering disk 3 in the reference wooden support 4 is tangent to the first marker 11 (see details below). Figure 11 (The area selected by the dashed rectangle).

[0036] Next, step S5 is executed. The Nth wooden support 5 is placed on the Nth wooden support bracket (i.e., the bracket that supports the remaining wooden supports other than the reference wooden support 4; only the reference wooden support 4 is placed directly on the second benchmark 12, while the remaining wooden supports need to be placed on the wooden support bracket to facilitate the adjustment of the wooden support position). A centering disk 3 is placed in the Nth wooden support 5. The positions of the four telescopic arms 32 of the centering disk 3 are adjusted in sequence to form a cross shape, and the two longitudinal telescopic arms 32 are collinear and perpendicular to the horizontal plane. The lengths of the four telescopic arms 32 of the centering disk 3 are adjusted so that the length of each telescopic arm 32 is equal to the radius of the reference wooden support 4. The fine-tuning handle 33 of the centering disk 3 is adjusted so that the four telescopic arms 32 are tightly and firmly connected to the reference wooden support 4. Wherein, N is a positive integer.

[0037] Next, step S6 is executed, and the position of the Nth wooden support 5 is adjusted to align with the predetermined position of the reference wooden support 4 according to the form of the row of pipes laying scheme, so as to obtain the height of the Nth wooden support bracket 2.

[0038] Specifically, when the form of the pipeline laying scheme is different, the execution of S6 includes the following steps: When the form is a tube assembly, adjust the position of the wooden support bracket so that the positioning hole 34 of the highest longitudinal point of the centering disk 3 in the Nth wooden support 5 is tangent to the first marker 11. When the form is a tube assembly, adjust the position of the wooden support bracket so that the positioning hole 34 of the lowest longitudinal point of the centering disk 3 in the Nth wooden support 5 is tangent to the first benchmark 11. When the tube assembly is concentric, adjust the position of the wooden support bracket so that the lateral positioning hole 34 of the centering disc 3 in the Nth wooden support 5 is tangent to the first marker 11.

[0039] Next, execute step S7, and repeat steps S5 and S6 until the height of all wooden support brackets is obtained.

[0040] The usage method disclosed in the embodiments is relatively simple to describe because it is based on the measuring device of the adjustable pipe elevation support disclosed in the embodiments. For relevant details, please refer to the device section description.

[0041] In summary, the adjustable pipe elevation support measuring device and its working method provided by this invention measure the height of the pipe elevation support. The measurement process is based on the reference wooden support 4 as a reference, and the elevation of the wooden support is measured using the national standard ruler of the wooden support. The result is accurate. The positions of the remaining wooden supports can be adjusted adaptively based on the pipe group form without the need for local shimming or cutting, ensuring the design requirements of pipe insulation thickness. This compensates for the errors generated when calculating pipe elevation manually in the traditional way, as well as the errors generated when construction personnel process the finished support in the secondary process. It effectively improves the one-time forming rate of the comprehensive support for row of pipes, improves construction efficiency, reduces the labor intensity of construction personnel, and provides effective technical support for pipe installation.

[0042] The above description is merely a description of preferred embodiments of the present invention and is not intended to limit the scope of the present invention in any way. Any changes or modifications made by those skilled in the art based on the above disclosure shall fall within the protection scope of the claims.

Claims

1. A measuring device for an adjustable pipe elevation support, characterized in that, include: A support body includes: a frame, a first marker, and a second marker; wherein the first marker and the second marker are parallel to each other, and the first marker is fixedly connected to the frame; both ends of the second marker are respectively embedded in the frame, and can be moved up and down relative to the first marker along the frame to adjust and fix the position of the reference wooden support carried by the second marker; At least one wooden support bracket is embedded in the second marker post and can be raised and lowered relative to the second marker post to adjust the position of the wooden support it supports; wherein, each wooden support includes: a national standard ruler to measure the support elevation of the wooden support bracket; A plurality of centering discs, each centering disc comprising: a disc body, four telescopic arms partially embedded in the disc body, and a fine-tuning handle, wherein each of the four telescopic arms is connected to the fine-tuning handle; each of the four telescopic arms has a positioning hole at its free end; wherein the disc body comprises: a first body, a second body, and a third body stacked on top of each other; wherein the four telescopic arms are partially embedded in the second body, dividing the second body into four equal parts; the third body has four hollow elongated holes, and the ends of the four telescopic arms partially embedded in the second body are respectively embedded in the four hollow elongated holes and can move along them; the fine-tuning handle passes through the first body and the second body in sequence, and is connected to the four telescopic arms partially embedded in the second body; Each centering disc also includes a connecting rod, and all four telescopic arms are connected to the fine-tuning handle via the connecting rod.

2. The measuring device for the adjustable pipe elevation support as described in claim 1, characterized in that, Each wooden support also includes: The wooden support body is embedded in the second standard rod, and the national standard ruler is set on the side of the wooden support body; An adjustable handle is fixedly connected to the wooden support bracket body to adjust the longitudinal position of the wooden support bracket body; Move the slider to slide the wooden support body onto the second benchmark to adjust the lateral position of the wooden support body.

3. The measuring device for the adjustable pipe elevation support as described in claim 1, characterized in that, Also includes: A level is used in conjunction with the second benchmark to ensure that the second benchmark is level.

4. The measuring device for the adjustable pipe elevation support as described in claim 1, characterized in that, Also includes: A plumb line ruler is used in conjunction with the centering disc to ensure that the two telescopic arms of the centering disc are in a vertical position when in use.

5. A method of using a measuring device for an adjustable pipe elevation support, characterized in that, include: S1: Prepare wooden supports of appropriate size and a measuring device for an adjustable pipe elevation support as described in any one of claims 1 to 4, according to the number of pipes in the row of pipes. S2: Use the wooden support that supports the pipe with the largest diameter in the row of pipes as the reference wooden support, and fix it on the second benchmark; S3: Place a centering disc in the reference wooden support, and adjust the positions of the four telescopic arms of the centering disc in sequence to form a cross shape, with the two longitudinal telescopic arms collinear and perpendicular to the horizontal plane; adjust the length of the four telescopic arms of the centering disc so that the length of each telescopic arm is equal to the radius of the reference wooden support; adjust the fine-tuning handle of the centering disc to make the four telescopic arms and the reference wooden support tightly and firmly connected. S4: Adjust the position of the second benchmark according to the form of the pipeline laying scheme, so as to adjust and fix the position of the reference wooden support; S5: Place the Nth wooden support on the Nth wooden support bracket, and place a centering disk in the Nth wooden support. Adjust the positions of the four telescopic arms of the centering disk sequentially to form a cross shape, with the two longitudinal telescopic arms collinear and perpendicular to the horizontal plane. Adjust the length of the four telescopic arms of the centering disk so that the length of each telescopic arm is equal to the radius of the reference wooden support. Adjust the fine-tuning handle of the centering disk to ensure a tight and secure connection between the four telescopic arms and the reference wooden support. Wherein, N is a positive integer. S6: According to the form of the pipeline laying scheme, adjust the position of the Nth wooden support to the predetermined position of the reference wooden support to obtain the height of the Nth wooden support support; S7: Repeat steps S5 and S6 until the height of all wooden support brackets is obtained.

6. The method of using the measuring device for the adjustable pipe elevation support as described in claim 5, characterized in that, The pipeline laying scheme includes three forms: pipe groups laid horizontally at the top, pipe groups laid concentrically, and pipe groups laid horizontally at the bottom; executing S4 includes the following steps: When the tube assembly is in the normal position, adjust the position of the second marker so that the positioning hole at the highest point of the longitudinal direction of the centering disk in the reference wooden support is tangent to the first marker. When the tube assembly is in the lower position, adjust the position of the second benchmark so that the positioning hole of the lowest longitudinal point of the centering disk in the reference wooden support is tangent to the first benchmark. When the tube assembly is concentric, adjust the position of the second marker so that the lateral positioning hole of the centering disk in the reference wooden support is tangent to the first marker.

7. The method of using the measuring device for the adjustable pipe elevation support as described in claim 6, characterized in that, The pipeline laying scheme includes three forms: pipe groups laid horizontally at the top, pipe groups laid concentrically, and pipe groups laid horizontally at the bottom; executing S6 includes the following steps: When the form is a tube assembly, adjust the position of the wooden support bracket so that the positioning hole of the highest point of the longitudinal direction of the centering disc in the Nth wooden support is tangent to the first benchmark. When the form is a tube assembly, adjust the position of the wooden support bracket so that the positioning hole of the lowest longitudinal point of the centering disc in the Nth wooden support is tangent to the first benchmark. When the tube assembly is concentric, adjust the position of the wooden support bracket so that the lateral positioning hole of the centering disc in the Nth wooden support is tangent to the first marker.

Citation Information

Patent Citations

  • Connecting pipe and flange assembling device

    CN103921043A

  • Inner diameter measuring device for hydraulic engineering pipeline

    CN217716245U