Building pipe connection structure

Through the welding detection device and the self-advanced wire welding gun body, combined with the moving adjustment parts and prestressed pulling parts, the problem of difficult detection of weld quality and wire offset in the building pipeline connection structure is solved, real-time monitoring and precise control of welding quality is achieved, and welding flatness and connection reliability are improved.

CN119748046BActive Publication Date: 2025-08-26QIYE CIVIL ENG CO LTD
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Patent Information

Application Number
CN202510118251.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-08-26
Estimated Expiration
2045-01-24

AI Technical Summary

Technical Problem

It is difficult to detect the quality of the weld in real time during the welding process of existing building pipeline connection structures, which affects the welding flatness and connection strength. The welding quality of long-distance pipelines is difficult to ensure, and the offset of the welding wire affects the welding accuracy.

Method used

Welding detection device and self-advanced wire welding gun body are adopted, combined with moving adjusting parts and prestressed pulling parts to realize real-time detection of weld quality and wire offset correction, and welding accuracy and stability are improved through moving adjusting parts and prestressed pulling parts.

Benefits of technology

Improve welding quality, ensure weld flatness and connection strength, reduce weld cracks, and improve the automation and accuracy of the welding process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN119748046B_ABST
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Abstract

The present invention provides a building pipe connection structure, which relates to the technical field of pipe connection, including a connection mounting part, on which a movable adjustment part is installed; the movable adjustment part is used to slide and adjust the welding position; the movable adjustment part is installed with a welding detection device; the welding detection device is used to detect the filling of the pipe weld; the movable adjustment part is installed with a self-feeding welding gun body; the self-feeding welding gun body is used to detect the deviation of the welding wire; it can be used to detect the quality of the weld, which can facilitate workers to understand in real time during the welding process, and is not affected by the length of the pipe, thereby improving the welding flatness of the inner side of the pipe, solving the problem that the current building pipe connection structure is not convenient for automatically detecting the filling effect of the weld inside the pipe, easily affecting the flatness of the inner side of the pipe, and at the same time affecting the connection strength.
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Description

Technical Field

[0001] The present invention relates to the technical field of pipeline connection, in particular to a building pipeline connection structure. Background Art

[0002] In the construction industry, pipe welding is widely used in the connection of various piping systems. The welding connection is achieved by heating the pipe and welding material to a molten state, and then connecting the two together to form a firm and durable interface. This connection method not only has a high degree of sealing and can effectively prevent leakage, but also has high joint strength and tightness. It does not require frequent maintenance after use. The currently commonly used connection method mostly uses manual handheld welding with a welding gun. The current construction pipe connection structure is not convenient for automatic detection of the weld filling effect on the inside of the pipe, which easily affects the flatness of the inside of the pipe and the connection strength. For long-distance pipes, it is not convenient for manual work to know the welding quality in real time. At the same time, it is not convenient to adjust the local prestress when the pipes are connected. After the subsequent welding is completed, factors such as the pipe's own weight will cause cracks in the weld when it sinks at the weld. It is also not convenient for the staff to maintain the welding wire accuracy in real time, and the welding wire offset will easily affect the quality of the weld path. Summary of the Invention

[0003] The disclosed embodiments relate to a building pipe connection structure, wherein a welding detection device thereof can be used to detect the quality of welds, which can facilitate workers to understand in real time during the welding process. At the same time, it is not affected by the length of the pipe, and improves the welding flatness of the inner side of the pipe. This solves the problem that the current building pipe connection structure is not convenient for automatically detecting the filling effect of the weld inside the pipe, which is easy to affect the flatness of the inner side of the pipe and the connection strength.

[0004] In the first aspect of the present disclosure, a building pipe connection structure is provided, which specifically includes a connecting mounting part, wherein a movable adjustment part is installed on the connecting mounting part; the movable adjustment part is used to slide and adjust the welding position; the movable adjustment part is installed with a welding detection device; the welding detection device is used to detect the pipe weld filling; the self-feeding welding gun body is installed on the movable adjustment part; the self-feeding welding gun body is used to detect the welding wire deviation; the movable adjustment part is installed with an alarm prompt part; the alarm prompt part is electrically connected to the self-feeding welding gun body and the welding detection device; a prestressed pulling part is installed on the connecting mounting part; the prestressed pulling part is used to apply prestress to the pipe; the connecting mounting part includes: a clamping ring, a slide groove and a pulling distance adjustment bolt, and the clamping ring is provided with four, the four clamping rings are grouped in twos, and the two groups of clamping rings are respectively connected by bolts and nuts; the four clamping rings are used to sleeve and clamp the pipe; the four sides of the clamping rings are respectively provided with slide grooves.

[0005] In at least some embodiments, the connecting mounting member further includes: pulling and adjusting distance bolts, four pulling and adjusting distance bolts are rotatably mounted on the two clamping rings on the same side, and the four pulling and adjusting distance bolts are threadedly connected to the other two clamping rings.

[0006] In at least some embodiments, the movable adjustment part includes: a movable slider, a ball, a pressure detection sliding column, a pressure sensor, a fitting rubber block and an air blow pipe, the movable slider is slidably installed on the inner side of the slide groove on the same side; two balls are embedded on both sides of the movable slider, and the four balls are respectively located in the slide groove on the same side; a pressure detection sliding column is slidably installed on the side of the movable slider; the pressure detection sliding column is located on the inner side of the slide groove on the same side; a pressure sensor is fixedly installed inside the movable slider, and the end of the pressure sensor is fitted to the pressure detection sliding column; the pressure sensor is externally connected to a display; a fitting rubber block is fixedly installed on the bottom of the movable slider, and the fitting rubber block is located between the welds; the air blow pipe is fixedly installed on the movable slider; the air blow pipe is used to promote the molten pool to penetrate the weld; the air blow pipe is located inside the fitting rubber block.

[0007] In at least some embodiments, the welding detection device includes: an arc-shaped slider, a positioning bolt, a detection spring and a primary contact, wherein the arc-shaped slider is slidably mounted on the movable slider; a detection spring is fixedly mounted on the bottom of the arc-shaped slider; a positioning bolt is inserted into the arc-shaped slider, and the positioning bolt is threadedly connected to the movable slider; a primary contact is fixedly mounted on the top of the detection spring; and the primary contact and the detection spring are insulated.

[0008] In at least some embodiments, the welding detection device further includes: a position-in-place spring clip, which is fixedly mounted on the end of the arc-shaped slider; the position-in-place spring clip is an arc-shaped spring clip structure; the position-in-place spring clip is located between the pipe welds; the position-in-place spring clip is used to fit the weld path; the distance between the bottom of the position-in-place spring clip and the detection spring clip is greater than the distance between the bottom of the position-in-place spring clip and the primary contact.

[0009] In at least some embodiments, the main body of the self-feeding welding gun includes: a welding gun head, a support column and a welding wire terminal plate, the welding gun head is obliquely sleeved on the movable slider; a circle of support columns is fixedly installed on the end of the welding gun head; welding wire terminal plates are fixedly installed on the inner side of a circle of support columns, and the welding wire terminal plates are all spring-shaped structures; the welding wire terminal plates are used to fit the welding wire.

[0010] In at least some embodiments, the self-feeding welding gun body further includes: an offset fitting ring, which is fixedly mounted on the bottom of a circle of the support columns; the offset fitting ring is used to detect welding wire offset.

[0011] In at least some embodiments, the alarm prompt component includes: a two-stage indicator light and an alarm light, wherein two two-stage indicator lights are provided, and the two two-stage indicator lights are respectively fixedly mounted on the movable slider; an alarm light is fixedly mounted on the movable slider; the detection spring clip and the in-position spring clip, the in-position spring clip and the primary contact are respectively connected in series with the two two-stage indicator lights for power supply; the two two-stage indicator lights are respectively used to prompt the quality of the weld; the alarm light is electrically connected to the welding wire terminal and the offset fitting ring.

[0012] In at least some embodiments, the prestressed pulling member includes: a pulling ring and a pulling threaded rod. There are four pulling rings, and the four pulling rings are grouped in pairs. The two groups of pulling rings are connected by bolts and nuts, and the two groups of pulling rings are used to be sleeved and clamped on the pipe; the two groups of pulling rings are respectively located on both sides of the two groups of clamping rings; six pulling threaded rods are respectively threadedly connected to the two groups of pulling rings, and handles are respectively provided at the ends of the six pulling threaded rods.

[0013] In at least some embodiments, the prestressed pulling member further includes: a pulling rope, wherein the ends of the twelve pulling threaded rods are respectively fixedly mounted with a pulling rope, and the ends of the pulling rope are connected to both sides of the two sets of clamping rings; the pulling rope is used to adjust the pressure consistency of the pipeline weld.

[0014] The present invention provides a building pipe connection structure, which has the following beneficial effects:

[0015] The welding detection device used in the present invention can be used to detect the quality of the welding path, avoiding the problem of incomplete filling or over-filling of the welding wire in the weld due to high temperature and poor wire feeding accuracy during welding. It can facilitate the staff to operate the welding gun to improve the welding quality and improve the flatness of the inner side of the pipe wall. This structure can use the elastic fit of the spring clip in place to fit the welding path, and timely prompt when poor accuracy occurs. The structure is more reasonable, avoiding the problem that long-distance pipelines in traditional buildings are difficult to observe through endoscopes.

[0016] In addition, the use of movable adjustment parts can be used for sliding displacement adjustment on the outside of the pipeline, with stable operation. The use of connecting mounting parts facilitates rapid docking and positioning of the pipeline. In conjunction with the pressure sensor, it can be used to detect the parallelism between the two sets of clamping rings with higher accuracy. At the same time, it is also used to detect the deformation of the weld after cooling after subsequent welding is completed to ensure that the welding meets the standards. The use of prestressed pulling parts can be used to perform prestress compensation on pipelines with horizontal drops when welding pipelines, which can reduce the subsidence of the weld and improve the connection reliability of the pipe welding after welding is completed.

[0017] In addition, the use of a self-feeding welding gun body can detect the skew of the wire coming out of the welding gun head to prevent the skewed wire from affecting the welding accuracy. This structure is more direct and accurate, avoiding the undetected bending of the welding wire caused by factors such as fast movement and excessive wire output, improving the straightness of the weld path, ensuring the welding quality, and using the offset fitting ring detection method, the structure is compact and the detection is direct. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0019] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0020] In the attached figure:

[0021] Figure 1 A schematic diagram showing the overall structure of a building pipeline connection structure of the present application is shown;

[0022] Figure 2 Shows the application Figure 1 A magnified view of the structure of the middle A area;

[0023] Figure 3 A schematic diagram showing the structure of the movable adjustment member of the present application is shown;

[0024] Figure 4 A cross-sectional view of the welding detection device structure of the present application is shown;

[0025] Figure 5 A schematic diagram showing the overall structure of the prestressed tensioning member of the present application is shown;

[0026] Figure 6 A cross-sectional view showing the overall structure of the movable adjustment member of the present application;

[0027] Figure 7 Shows the application Figure 4 A magnified view of the structure of the middle F region;

[0028] Figure 8 A schematic diagram showing the bottom structure of the movable adjustment member of the present application is shown;

[0029] Figure 9 Shows the application Figure 5 A magnified view of the structure of the middle G region;

[0030] Figure 10 Shows the application Figure 3 A magnified view of the structure of the middle J region.

[0031] Reference Signs List

[0032] 1. Connecting and mounting parts; 101. Clamping ring; 1011. Slide groove; 102. Pulling and adjusting bolt; 102. Pulling and adjusting bolt; 2. Moving adjustment part; 201. Moving slider; 2011. Ball bearing; 202. Pressure detection sliding column; 2021. Pressure sensor; 203. Fitting rubber block; 204. Blowing pipe; 3. Welding detection device; 301. Arc slider; 3011. Positioning bolt; 302. Detection spring; 303. Primary contact; 304. In-position spring; 4. Self-feeding welding gun body; 401. Welding gun head; 4011. Support column; 402. Welding wire terminal; 403. Offset fitting ring; 5. Alarm prompt part; 501. Two-stage indicator light; 502. Alarm light; 6. Prestressed pulling part; 601. Pulling ring; 602. Pulling threaded rod; 603. Pulling rope. DETAILED DESCRIPTION

[0033] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0034] Example 1: Please refer to Figures 1 to 10 :

[0035] The present invention proposes a building pipe connection structure, including a connecting mounting part 1, on which a movable adjustment part 2 is installed; the movable adjustment part 2 is used to slide and adjust the welding position; the movable adjustment part 2 is installed with a welding detection device 3; the welding detection device 3 is used to detect the pipe weld filling; the movable adjustment part 2 is installed with a self-feeding welding gun body 4; the self-feeding welding gun body 4 is used to detect welding wire deviation; the movable adjustment part 2 is installed with an alarm prompt part 5; the alarm prompt part 5 is electrically connected to the self-feeding welding gun body 4 and the welding detection device 3; a prestressed pulling part 6 is installed on the connecting mounting part 1; the prestressed pulling part 6 is used to apply prestress to the pipe; the connecting mounting part 1 includes: a clamping ring 101, a slide groove 1011 and a pulling distance adjusting bolt 102, four clamping rings 101 are provided, the four clamping rings 101 are in a group of two, and the two groups of clamping rings 101 are respectively connected by bolts and nuts; the four clamping rings 101 are used to sleeve and clamp the pipe; the four clamping rings 101 are respectively provided with slide grooves 1011 on the sides.

[0036] In the embodiment of the present disclosure, the connecting mounting member 1 further includes: a pulling distance adjusting bolt 102, four pulling distance adjusting bolts 102 are rotatably mounted on the two clamping rings 101 on the same side, and the four pulling distance adjusting bolts 102 are threadedly connected to the other two clamping rings 101; the moving adjusting member 2 includes: a moving slider 201, a ball 2011, a pressure detection sliding column 202, a pressure sensor 2021, a fitting rubber block 203 and an air blowing pipe 204, the moving slider 201 is slidably mounted on the inner side of the slide groove 1011 on the same side; two balls 2011 are embedded on both sides of the moving slider 201 , and the four balls 2011 are respectively located inside the slide groove 1011 on the same side; a pressure detection sliding column 202 is slidably installed on the side of the mobile slider 201; the pressure detection sliding column 202 is located inside the slide groove 1011 on the same side; a pressure sensor 2021 is fixedly installed inside the mobile slider 201, and the end of the pressure sensor 2021 is attached to the pressure detection sliding column 202; the pressure sensor 2021 is externally connected to a display; a fitting rubber block 203 is fixedly installed at the bottom of the mobile slider 201, and the fitting rubber block 203 is located between the welds; the air blow pipe 204 is fixedly installed on the mobile slider The air blowing pipe 204 is used to promote the penetration of the molten pool into the weld; the air blowing pipe 204 is located on the inner side of the fitting rubber block 203, and the movable adjustment part 2 can be used for sliding displacement adjustment on the outside of the pipe, and the operation is stable. At the same time, the connection mounting part 1 is used to facilitate rapid docking of the pipe positioning, and the operation is simple and convenient. The pressure sensor 2021 can be used to detect the parallelism between the two sets of clamping rings 101 with higher accuracy, and it is also used to detect the deformation of the weld after cooling after the subsequent welding is completed to ensure that the welding meets the standards. This structure is simple and convenient to operate, and is connected by bolts and nuts. The clamping ring 101 is used to sleeve and clamp the pipe. The pulling and adjusting distance bolt 102 can be threaded into the group clamping ring 101 on the same side to adjust the weld. During the process, the pressure sensor 2021 can be used to sense the pressure to keep the ball 2011 able to roll normally without excessive pressure. As the moving slider 201 drives the welding gun head 401 to move for welding, when the welding gun head 401 approaches the pulling and adjusting distance bolt 102, the weld path has been formed and it can be rotated and disassembled. Because there are four pulling and adjusting distance bolts 102, disassembling a single pulling and adjusting distance bolt 102 will not affect the welding accuracy of the weld.

[0037] The cam 302 is screwed to the bottom of the cam 303 and the cam 304 is screwed to the bottom of the cam 303. 03 spacing, the welding detection device 3 can be used to detect the quality of the welding path, avoid the problem that the welding wire in the weld cannot be completely filled or over-filled due to high temperature and poor wire drawing accuracy during welding, which can facilitate the staff to operate the welding gun to improve the welding quality, improve the flatness of the inner side of the pipe wall, and have a more reasonable structure. This structure can use the elastic fit of the in-place spring piece 304 to fit the welding path elastically, and timely prompt when poor accuracy occurs. The structure is more reasonable, avoiding the problem that long-distance pipelines in traditional buildings are difficult to observe through an endoscope. This structure is simple and reasonable. During actual welding work, as the moving slider 201 moves, it can drive the welding gun head 401 to weld at the weld, and at the same time drive the in-place spring piece 304 to fit the bottom of the welding path. When the in-place spring piece 304 is detected by the welding path, it can be prompted by the two-level indicator light 501. The first-level contact 303 cooperates with the detection spring piece 302 to achieve two-level detection. The structure is simple and reasonable.

[0038] In the embodiment of the present disclosure, the main body 4 of the self-feeding welding gun includes: a welding gun head 401, a support column 4011 and a welding wire connection piece 402, and the welding gun head 401 is obliquely sleeved on the movable slider 201; a circle of support columns 4011 is fixedly installed on the end of the welding gun head 401; the inner sides of the circle of support columns 4011 are respectively fixedly installed with welding wire connection pieces 402, and the welding wire connection pieces 402 are all spring structures; the welding wire connection pieces 402 are used to fit the welding wire; the main body 4 of the self-feeding welding gun also includes: an offset fitting ring 403, the offset fitting ring 403 is fixedly installed at the bottom of the circle of support columns 4011; the offset fitting ring 403 is used to detect the deviation of the welding wire; the alarm prompt part 5 includes: a two-stage indicator light 501 and an alarm light 502, the two-stage indicator lights 501 are provided with two, and the two two-stage indicator lights 501 are respectively fixedly installed on the movable slider 201; the movable An alarm light 502 is fixedly installed on the movable slider 201; the detection spring piece 302 and the in-position spring piece 304, the in-position spring piece 304 and the primary contact 303 are respectively connected in series with the two two-stage indicator lights 501; the two two-stage indicator lights 501 are respectively used to indicate the quality of the weld; the alarm light 502 is electrically connected to the welding wire terminal 402 and the offset fitting ring 403. The self-feeding welding gun body 4 can be used to detect the skew of the wire output of the welding gun head 401 to avoid the skewed wire output affecting the welding accuracy. The detection of this structure is more direct and accurate, avoiding the bending of the welding wire caused by factors such as fast travel and too fast wire output without being discovered, improving the straightness of the welding path, and ensuring the welding quality. This structure uses the offset fitting ring 403 detection method, the structure is compact, the detection is accurate and direct, and it can directly give an alarm prompt in conjunction with the alarm prompt piece 5, which is more intuitive.

[0039] Embodiment 2, on the basis of embodiment 1, the prestressed pulling member 6 includes: a pulling ring 601 and a pulling threaded rod 602, there are four pulling rings 601, the four pulling rings 601 are in a group of two, the two groups of pulling rings 601 are connected by bolts and nuts, and the two groups of pulling rings 601 are used to be sleeved and clamped on the pipe; the two groups of pulling rings 601 are respectively located on both sides of the two groups of clamping rings 101; six pulling threaded rods 602 are respectively threadedly connected to the two groups of pulling rings 601, and the ends of the six pulling threaded rods 602 are respectively provided with handles; the prestressed pulling member 6 also includes: a pulling rope 603, the ends of the twelve pulling threaded rods 602 are respectively fixed with a pulling rope 603, and the ends of the pulling rope 603 are connected to both sides of the two groups of clamping rings 101; the pulling rope 60 3 is used to adjust the pressure consistency of the pipeline weld. The prestressed pulling member 6 can be used to prestress the pipeline with a horizontal drop when welding the pipeline, which can reduce the sinking at the weld and improve the connection reliability of the pipe welding after welding is completed. After the weld is completely cooled, the weld quality is improved. The prestressed pulling member 6 is a detachable structure, which is convenient for reuse after disassembly. Before welding, according to the pipeline conditions, such as the existence of sinking at the pipeline welding, the pulling threaded rod 602 at the top can be properly rotated and tightened, and the upper part of the pipeline can be pulled by the pulling rope 603 to facilitate the lifting of the upper part of the pipeline and promote the improvement of the weld accuracy. After the weld is completed, each pulling threaded rod 602 can be independently adjusted according to the pressure change, without the need for cumbersome support adjustments at both ends of the pipeline.

[0040] The working principle of this embodiment is as follows: First, four clamping rings 101 are connected by bolts and nuts, and the sleeves are clamped on the two ends of the pipes to be welded. The pulling and adjusting bolts 102 are screwed into the clamping rings 101 on the same side to adjust the weld seam. During the process, the pressure sensor 2021 can be used to sense the pressure to keep the ball 2011 able to roll normally without excessive pressure. As the moving slider 201 drives the welding gun head 401 to move and weld, when the welding gun head 401 approaches the pulling and adjusting bolts 102, the weld path has been formed and can be rotated and disassembled. In actual welding work, as the moving slider 201 moves, the welding gun head 401 can be driven to weld at the weld seam. At the same time, Drive the spring piece 304 into position to fit the bottom of the welding path. When the spring piece 304 is fitted by the welding path, if the flux in the welding path cannot fill the weld, there will be a gap between the spring piece 304 and the primary contact 303, and the circuit will be disconnected. No light will be turned on to prompt. Similarly, if the amount of flux filling in the weld is sufficient to be flush with the inner wall of the pipe, the welding path will squeeze the spring piece 304 into position to fit the primary contact 303. At this time, the two-stage indicator light 501 corresponding to the primary contact 303 will light up to prompt. Similarly, when the welding path is too convex, it protrudes from the inner wall of the pipe. At this time, the convex welding path will squeeze the spring piece 304 into position. At this time, the spring piece 304 into position compresses the primary contact 303, and the primary contact After point 303 collapses, the shrapnel 304 in place will fit the end of the detection shrapnel 302. At this time, the two-stage indicator light 501 connected in series with the detection shrapnel 302 can light up to prompt. As the moving slider 201 moves, when the moving slider 201 moves to the weld joint, the positioning bolt 3011 can be rotated and removed, and the arc slider 301 can be pulled out to avoid the arc slider 301 affecting the weld joint. Because the remaining weld path is short, the established welding speed, temperature and other parameters are maintained to connect the weld paths, which will not affect the uniformity of pipeline welding. During the wire welding process of the welding gun head 401, the welding wire connecting piece 402 is elastically fitted to the welding wire in real time. If the end of the welding wire deviates When the wire moves and touches the offset fitting ring 403, the conductive property of the welding wire itself will turn on the alarm light 502 to give an alarm prompt. Before welding, according to the pipeline conditions, for example, there is a subsidence at the pipeline welding point, the pulling threaded rod 602 at the top can be properly rotated and tightened, and the top of the pipeline can be pulled by the pulling rope 603 to facilitate the lifting of the top of the pipeline and promote the improvement of the weld accuracy. After the weld is completed, the slider 201 can be slid to drive the pressure sensor 2021 to move and detect the pressure change between the clamping rings 101 on both sides of the weld. The pulling threaded rods 602 can be adjusted independently according to the pressure change to adjust the force uniformity at the weld.

[0041] In this article, there are several points to note:

[0042] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.

[0043] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.

[0044] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. A building pipe connection structure, comprising a connection mounting member (1), wherein a movable adjustment member (2) is mounted on the connection mounting member (1); characterized in that: The movable adjustment member (2) is used for slidingly adjusting the welding position; a welding detection device (3) is installed on the movable adjustment member (2); the welding detection device (3) is used for detecting the filling of the pipeline weld; A self-feeding welding gun body (4) is mounted on the movable adjustment member (2); the self-feeding welding gun body (4) is used to detect welding wire deviation; An alarm prompting member (5) is installed on the movable adjustment member (2); the alarm prompting member (5) is electrically connected to the self-feeding wire welding gun body (4) and the welding detection device (3); A prestressed pulling member (6) is installed on the connecting mounting member (1); the prestressed pulling member (6) is used to apply prestress to the pipeline; The connecting mounting member (1) comprises: a clamping ring (101), a slide groove (1011) and a pulling distance adjusting bolt (102); the clamping rings (101) are provided with four, and the four clamping rings (101) are grouped in pairs, and the two groups of clamping rings (101) are connected by bolts and nuts; the four clamping rings (101) are used for sleeve-clamping pipes; the sides of the four clamping rings (101) are respectively provided with slide grooves (1011); The movable adjustment member (2) comprises: a movable slider (201), a ball bearing (2011), a pressure detection sliding column (202), a pressure sensor (2021), a fitting rubber block (203) and an air blowing pipe (204); the movable slider (201) is slidably mounted inside the slide groove (1011) on the same side; two ball bearings (2011) are respectively embedded on both sides of the movable slider (201), and the four ball bearings (2011) are respectively located inside the slide groove (1011) on the same side; a pressure detection sliding column (202) is slidably mounted on the side of the movable slider (201); the pressure detection sliding column (202) is located The inner side of the slide groove (1011) on the same side; a pressure sensor (2021) is fixedly installed inside the movable slider (201), and the end of the pressure sensor (2021) is attached to the pressure detection sliding column (202); the pressure sensor (2021) is externally connected to a display; a fitting rubber block (203) is fixedly installed at the bottom of the movable slider (201), and the fitting rubber block (203) is located between the welds; the air blow pipe (204) is fixedly installed on the movable slider (201); the air blow pipe (204) is used to promote the molten pool to penetrate the weld; the air blow pipe (204) is located inside the fitting rubber block (203); The welding detection device (3) comprises: an arc-shaped slider (301), a positioning bolt (3011), a detection spring (302) and a primary contact (303); the arc-shaped slider (301) is slidably mounted on the movable slider (201); the detection spring (302) is fixedly mounted on the bottom of the arc-shaped slider (301); a positioning bolt (3011) is plugged into the arc-shaped slider (301), and the positioning bolt (3011) is threadedly connected to the movable slider (201); the primary contact (303) is fixedly mounted on the top of the detection spring (302); the primary contact (303) and the detection spring (302) are insulated; The welding detection device (3) further comprises: an in-place spring piece (304), the in-place spring piece (304) being fixedly mounted on the end of the arc-shaped slider (301); the in-place spring piece (304) being an arc-shaped spring piece structure; the in-place spring piece (304) being located between the pipe welds; the in-place spring piece (304) being used to fit the weld path; and the distance between the bottom of the in-place spring piece (304) and the detection spring piece (302) being greater than the distance between the bottom of the in-place spring piece (304) and the primary contact (303).

2. A building pipe connection structure according to claim 1, characterized in that: The connecting mounting member (1) further comprises: a pulling distance adjusting bolt (102), four pulling distance adjusting bolts (102) are rotatably mounted on the two clamping rings (101) on the same side, and the four pulling distance adjusting bolts (102) are threadedly connected to the other two clamping rings (101).

3. A building pipe connection structure according to claim 1, characterized in that: The self-feeding welding gun body (4) comprises: a welding gun head (401), a support column (4011) and a welding wire connection plate (402); the welding gun head (401) is obliquely sleeved on the movable slider (201); a circle of support columns (4011) is fixedly mounted on the end of the welding gun head (401); welding wire connection plates (402) are fixedly mounted on the inner side of a circle of support columns (4011), and the welding wire connection plates (402) are all spring-type structures; the welding wire connection plates (402) are used for bonding the welding wire.

4. A building pipe connection structure according to claim 3, characterized in that: The self-feeding welding gun body (4) further comprises: an offset fitting ring (403), wherein the offset fitting ring (403) is fixedly mounted on the bottom of a circle of the support columns (4011); the offset fitting ring (403) is used to detect welding wire offset.

5. A building pipe connection structure according to claim 4, characterized in that: The alarm prompting member (5) comprises: a two-stage indicator light (501) and an alarm light (502), wherein the two-stage indicator lights (501) are provided with two, and the two two-stage indicator lights (501) are respectively fixedly mounted on the movable slider (201); the alarm light (502) is fixedly mounted on the movable slider (201); the detection spring piece (302) and the in-position spring piece (304), the in-position spring piece (304) and the primary contact (303) are respectively connected in series with the two two-stage indicator lights (501) to form a power supply; the two two-stage indicator lights (501) are respectively used to indicate the quality of the weld; the alarm light (502) is electrically connected to the welding wire connecting piece (402) and the offset fitting ring (403).

6. A building pipe connection structure according to claim 1, characterized in that: The prestressed pulling member (6) comprises: a pulling ring (601) and a pulling threaded rod (602), wherein four pulling rings (601) are provided, and the four pulling rings (601) form a group of two, and the two groups of pulling rings (601) are connected by bolts and nuts respectively, and the two groups of pulling rings (601) are respectively used for sleeve clamping on the pipeline; the two groups of pulling rings (601) are respectively located on both sides of the two groups of clamping rings (101); six pulling threaded rods (602) are respectively threadedly connected to the two groups of pulling rings (601), and the ends of the six pulling threaded rods (602) are respectively provided with handles.

7. A building pipe connection structure according to claim 6, characterized in that: The prestressed pulling member (6) further comprises a pulling rope (603), the ends of the twelve pulling threaded rods (602) being respectively fixedly mounted with a pulling rope (603), and the ends of the pulling rope (603) being connected to both sides of the two groups of clamping rings (101); the pulling rope (603) is used to adjust the pressure consistency of the pipeline weld.

Citation Information

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