Reserved pipe piece for monitoring reserved internal thread prism
By pre-embedding the reserved tube sheet inner prism monitor on the tube sheet to form a joint structure, the problem of difficulty in monitoring the settling of the tube sheet in the prior art is solved, and the effect of rapid response and monitoring is achieved.
Patent Information
- Application Number
- CN202421879467.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-05
AI Technical Summary
The existing reserved tube sheets monitored by reserved inner wire prisms are difficult to monitor in time when the tube sheets settle.
The wire prism monitor in the reserved tube sheet is directly embedded on the tube sheet to form a joint structure so that the monitor can monitor in a linkage when the tube sheet settles.
It realizes that when the pipe sheet is settled, the monitor can respond quickly and monitor, making it easier for people to detect the pipe sheet settlement in a timely manner.
Smart Images

Figure CN222951748U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a reserved pipe segment, more precisely a reserved pipe segment for reserved inner-thread prism monitoring. Background Art
[0002] The existing prism monitoring device for reserved pipe segments with reserved inner wire prism monitoring is generally fixed by a bracket, and there is no fixed connection between the prism monitoring device and the pipe segment. When the pipe segment sinks, it is difficult for the prism monitoring device to detect it in time. For example, patent publication number: CN218765241U discloses a prism rod used for deformation and settlement observation, such as Figure 5 As shown, this device is fixed by an independent bracket and has no fixed connection with the pipe segment. When the pipe segment sinks, this device cannot monitor it well. Summary of the invention
[0003] The purpose of the utility model is to provide a reserved pipe segment for reserved internal wire prism monitoring, which can combine the pipe segment with the reserved pipe segment internal wire prism monitor, and directly embed the reserved pipe segment internal wire prism monitor on the pipe segment, so that the pipe segment and the reserved pipe segment internal wire prism monitor are connected as one, so that when the pipe segment sinks, the reserved pipe segment internal wire prism monitor and the pipe segment can be linked together, so as to facilitate personnel to quickly discover the settlement of the pipe segment.
[0004] In order to achieve the above purpose, the utility model is implemented through the following technical solutions:
[0005] A reserved pipe segment for reserved internal wire prism monitoring comprises a pipe segment, a reserved pipe segment internal wire prism monitor is installed on the pipe segment, the reserved pipe segment internal wire prism monitor comprises a fixing plate, the fixing plate is pre-buried and installed on the pipe segment, a second square tube is installed on one side of the fixing plate, the second square tube is a tubular shell structure with one end sealed, the second square tube can slide along the surface of the fixing plate, one end of the second square tube is connected to the first square tube, the length direction of the second square tube is perpendicular to the length direction of the first square tube, the interior of one end of the first square tube is connected to the interior of the second square tube, a level adjuster is installed on the first square tube, and the level adjuster The regulator includes a square sleeve, which is sleeved on the first square tube. The square sleeve can slide along the first square tube. The outer side of the square sleeve is connected to the sedimentation observation prism. A longitudinal adjuster is installed on the fixed plate. The longitudinal adjuster includes a second nut. The outer side of the second nut is connected to the fixed plate. The second nut is threadedly connected to the second bolt. The screw end of the second bolt can cooperate with the sealing end of the second square tube. One side of the fixed plate is connected to the U-shaped plate. Both sides of the U-shaped plate are connected to the fixed plate. The U-shaped plate and the fixed plate cooperate to form a square hole. The second square tube can pass through the square hole formed by the U-shaped plate and the fixed plate.
[0006] In order to further achieve the purpose of the utility model, the following technical solution can also be adopted: one side of the fixed plate is connected to a reserved inner screw rod, one end of the reserved inner screw rod is connected to an embedded plate, and the reserved inner screw rod and the embedded plate are both embedded in the pipe segment.
[0007] A linkage locking device is installed on the first square tube, and the linkage locking device includes a first nut and a linkage lock. The outer side of the first nut is connected to the fixing plate, and the internal thread of the first nut is connected to the first bolt, and the first bolt can be plugged and matched with the open end of the second square tube. The linkage lock includes a first transmission square rod and a second transmission square rod. A strip groove is provided at the bottom of the first square tube, and two rotating rods are installed inside the strip groove. The length directions of the two rotating rods are parallel to each other. The middle part of the rotating rod is hinged to the inner wall of the strip groove, one end of the rotating rod is hinged to the first transmission square rod, and the other end of the rotating rod is hinged to the second transmission square rod. One side of the second transmission square rod can cooperate with the inner side of the square sleeve, and an elastic steel belt is connected to one side of the first transmission square rod. A roller is installed on the inner side of one end of the first square tube, and the wheel frame of the roller is connected to the first square tube. The outer side of the wheel of the roller cooperates with the middle part of the elastic steel belt, one side of the elastic steel belt cooperates with the first transmission square rod, and the other side of the U-shaped area is connected to the inner wall of the second square tube. A U-shaped area is set on one side of the elastic steel belt, and the screw rod end of the first bolt can cooperate with the U-shaped area.
[0008] The advantage of the utility model is that the utility model combines the pipe segment with the reserved internal wire prism monitor of the pipe segment, and directly pre-buries the reserved internal wire prism monitor of the pipe segment on the pipe segment, so that the pipe segment and the reserved internal wire prism monitor of the pipe segment are connected as one, so that when the pipe segment sinks, the reserved internal wire prism monitor of the pipe segment can be linked with the pipe segment, so as to facilitate personnel to quickly discover the settlement of the pipe segment. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0010] Figure 1 It is a schematic diagram of the structure of the utility model;
[0011] Figure 2 for Figure 1 Schematic diagram of the enlarged structure of Part I;
[0012] Figure 3 for Figure 1 Schematic diagram of the enlarged structure of Part II;
[0013] Figure 4 This is a schematic diagram of the installation structure of the utility model;
[0014] Figure 5It is a structural schematic diagram of the prior art patent publication number: CN218765241U. DETAILED DESCRIPTION
[0015] The preferred embodiments of the present utility model are described below in conjunction with the accompanying drawings. Example 1
[0016] A reserved pipe segment for monitoring with a reserved inner wire prism, such as Figure 1-Figure 4 As shown, it includes a pipe segment 6, on which a reserved pipe segment internal wire prism monitor 20 is installed, and the reserved pipe segment internal wire prism monitor 20 includes a fixing plate 3, which is pre-buried and installed on the pipe segment 6, and a second square tube 8 is installed on one side of the fixing plate 3. The second square tube 8 is a tubular shell structure with one end sealed, and the second square tube 8 can slide along the surface of the fixing plate 3. One end of the second square tube 8 is connected to the first square tube 7, and the length direction of the second square tube 8 is perpendicular to the length direction of the first square tube 7. The interior of one end of the first square tube 7 is connected to the interior of the second square tube 8. A horizontal regulator is installed on the first square tube 7, and the horizontal regulator includes a square sleeve 14, and the square sleeve 14 Sleeved on the first square tube 7, the square sleeve 14 can slide along the first square tube 7, the outer side of the square sleeve 14 is connected to the sedimentation observation prism 13, and a longitudinal adjuster is installed on the fixed plate 3, and the longitudinal adjuster includes a second nut 21, the outer side of the second nut 21 is connected to the fixed plate 3, the second nut 21 is threadedly connected to the second bolt 12, and the screw end of the second bolt 12 can cooperate with the sealing end of the second square tube 8, one side of the fixed plate 3 is connected to the U-shaped plate 11, and both sides of the U-shaped plate 11 are connected to the fixed plate 3, the U-shaped plate 11 and the fixed plate 3 cooperate to form a square hole, and the second square tube 8 can pass through the square hole formed by the U-shaped plate 11 and the fixed plate 3.
[0017] The utility model combines the pipe segment 6 with the reserved pipe segment internal wire prism monitor 20, and directly pre-buries the reserved pipe segment internal wire prism monitor 20 on the pipe segment 6, so that the pipe segment 6 and the reserved pipe segment internal wire prism monitor 20 are connected as one. Therefore, when the pipe segment 6 sinks, the reserved pipe segment internal wire prism monitor 20 and the pipe segment 6 can be linked together, so that it is convenient for personnel to quickly discover the sinking of the pipe segment 6.
[0018] Specific implementation of material selection and feasibility analysis: The samples we actually made use the drawings in the specification as drawings, and are implemented according to the proportions and matching methods of the various components in the drawings in the specification. The connection is a common connection method such as strong adhesive connection, welding, riveting, flange connection, and one-piece molding connection. In actual production, the corresponding connection method, thickness and strength of the connection point can be selected according to the actual connection strength requirements without creativity. The settlement observation prism 13 of the utility model can adopt the prism lens 2 disclosed in patent publication number: CN218765241U. When adjusting, it is generally necessary to first rotate the second bolt 12, use the second bolt 12 to press the second square tube 8 to adjust the vertical height of the settlement observation prism 13, and then adjust the horizontal position of the settlement observation prism 13. After the position of the settlement observation prism 13 is adjusted, the personnel can tighten the first bolt 1. On the one hand, the first bolt 1 and the second nut 21 can cooperate to clamp the second square tube 8 to improve the stability of the longitudinal position locking of the settlement observation prism 13. On the other hand, the screw rod of the first bolt 1 can push the elastic steel belt 16, so that the elastic steel belt 16 is tightened, so that the elastic steel belt 16 pulls the first transmission square rod 9. After the first transmission square rod 9 is pulled, it can drive the two rotating rods 15 to rotate, thereby driving the second transmission square rod 10 downward with a certain pressure to cooperate with the square sleeve 14, so as to lock the horizontal position of the settlement observation prism 13. The settlement observation prism can be used to monitor the settlement of land or structures. Through the principle of triangulation, the prism is fixed in the area to be monitored and measured regularly, and the changes in the settlement of the area can be obtained. This monitoring method can help predict the trend of land or structure settlement, detect potential safety hazards in advance, and prevent accidents. It is widely used in construction engineering, bridge engineering, geotechnical engineering and other fields. At the same time, the settlement observation prism is also one of the indispensable measurement tools in scientific research and practice. The settlement observation prism is a tool used to monitor the settlement and deformation of structures. It is installed on the structure and identifies the settlement by measuring the change in the distance between the prism and the fixed point by laser. This tool is widely used in the fields of construction, foundation and transportation engineering. By monitoring the settlement, the deformation of the structure can be detected in time and the safety hazards of the building can be reduced; at the same time, the stability of the foundation can be evaluated, the construction and maintenance of the project can be guided, and the safety of people's lives and property can be ensured. Therefore, the settlement observation prism is a very necessary and practical tool in engineering construction and land use management. Example 2
[0019] A reserved pipe segment for monitoring with a reserved inner wire prism, such as Figure 1-Figure 4As shown, it includes a pipe segment 6, on which a reserved pipe segment internal wire prism monitor 20 is installed, and the reserved pipe segment internal wire prism monitor 20 includes a fixing plate 3, which is pre-buried and installed on the pipe segment 6, and a second square tube 8 is installed on one side of the fixing plate 3. The second square tube 8 is a tubular shell structure with one end sealed, and the second square tube 8 can slide along the surface of the fixing plate 3. One end of the second square tube 8 is connected to the first square tube 7, and the length direction of the second square tube 8 is perpendicular to the length direction of the first square tube 7. The interior of one end of the first square tube 7 is connected to the interior of the second square tube 8. A horizontal regulator is installed on the first square tube 7, and the horizontal regulator includes a square sleeve 14, and the square sleeve 14 Sleeved on the first square tube 7, the square sleeve 14 can slide along the first square tube 7, the outer side of the square sleeve 14 is connected to the settlement observation prism 13, and a longitudinal adjuster is installed on the fixed plate 3, the longitudinal adjuster includes a second nut 21, the outer side of the second nut 21 is connected to the fixed plate 3, the second nut 21 is threadedly connected to the second bolt 12, the screw end of the second bolt 12 can cooperate with the sealed end of the second square tube 8, one side of the fixed plate 3 is connected to the U-shaped plate 11, both sides of the U-shaped plate 11 are connected to the fixed plate 3, the U-shaped plate 11 and the fixed plate 3 cooperate to form a square hole, and the second square tube 8 can pass through the square hole formed by the U-shaped plate 11 and the fixed plate 3. One side of the fixed plate 3 is connected to the reserved inner screw 4, one end of the reserved inner screw 4 is connected to the embedded plate 5, and the reserved inner screw 4 and the embedded plate 5 are both embedded in the pipe segment 6.
[0020] The reserved inner screw rod 4 of the utility model cooperates with the embedded plate 5 to facilitate the fixing of the fixing plate 3 and the pipe segment 6. Example 3
[0021] A reserved pipe segment for monitoring with a reserved inner wire prism, such as Figure 1-Figure 4As shown, it includes a pipe segment 6, on which a reserved pipe segment internal wire prism monitor 20 is installed, and the reserved pipe segment internal wire prism monitor 20 includes a fixing plate 3, which is pre-buried and installed on the pipe segment 6, and a second square tube 8 is installed on one side of the fixing plate 3. The second square tube 8 is a tubular shell structure with one end sealed, and the second square tube 8 can slide along the surface of the fixing plate 3. One end of the second square tube 8 is connected to the first square tube 7, and the length direction of the second square tube 8 is perpendicular to the length direction of the first square tube 7. The interior of one end of the first square tube 7 is connected to the interior of the second square tube 8. A horizontal regulator is installed on the first square tube 7, and the horizontal regulator includes a square sleeve 14, and the square sleeve 14 Sleeved on the first square tube 7, the square sleeve 14 can slide along the first square tube 7, the outer side of the square sleeve 14 is connected to the sedimentation observation prism 13, and a longitudinal adjuster is installed on the fixed plate 3, and the longitudinal adjuster includes a second nut 21, the outer side of the second nut 21 is connected to the fixed plate 3, the second nut 21 is threadedly connected to the second bolt 12, and the screw end of the second bolt 12 can cooperate with the sealing end of the second square tube 8, one side of the fixed plate 3 is connected to the U-shaped plate 11, and both sides of the U-shaped plate 11 are connected to the fixed plate 3, the U-shaped plate 11 and the fixed plate 3 cooperate to form a square hole, and the second square tube 8 can pass through the square hole formed by the U-shaped plate 11 and the fixed plate 3. A linkage locking device is installed on the first square tube 7, and the linkage locking device includes a first nut 2 and a linkage lock. The outer side of the first nut 2 is connected to the fixing plate 3, and the internal thread of the first nut 2 is connected to the first bolt 1. The first bolt 1 can be plugged and matched with the open end of the second square tube 8. The linkage lock includes a first transmission square rod 9 and a second transmission square rod 10. A strip groove 19 is provided at the bottom of the first square tube 7, and two rotating rods 15 are installed inside the strip groove 19. The length directions of the two rotating rods 15 are parallel to each other. The middle part of the rotating rod 15 is hinged to the inner wall of the strip groove 19, and one end of the rotating rod 15 is connected to the first transmission square rod 9. The rod 9 is hinged, the other end of the rotating rod 15 is hinged to the second transmission square rod 10, one side of the second transmission square rod 10 can cooperate with the inner side of the square sleeve 14, one side of the first transmission square rod 9 is connected to the elastic steel belt 16, a roller 17 is installed on the inner side of one end of the first square tube 7, the wheel frame of the roller 17 is connected to the first square tube 7, the outer side of the wheel of the roller 17 cooperates with the middle part of the elastic steel belt 16, one side of the elastic steel belt 16 cooperates with the first transmission square rod 9, the other side of the U-shaped area 18 is connected to the inner wall of the second square tube 8, a U-shaped area 18 is set on one side of the elastic steel belt 16, and the screw end of the first bolt 1 can cooperate with the U-shaped area 18.
[0022] The horizontal locking structure of the existing settlement observation prism 13 is generally a top screw. After adjusting the position of the settlement observation prism 13, the personnel need to manually tighten the top screw to fix the position of the settlement observation prism 13. However, this method has errors due to manual operation. During the process of manually tightening the top screw, it is easy to cause the settlement observation prism 13 to deviate from the set position, resulting in errors. After the longitudinal regulator and the horizontal regulator of the utility model adjust the settlement observation prism 13 to the preset position, the personnel can tighten the first bolt 1. On the one hand, the first bolt 1 cooperates with the second nut 21 to clamp the second square tube 8, thereby improving the stability of the longitudinal position locking of the settlement observation prism 13; on the other hand, the screw rod of the first bolt 1 can push the elastic steel belt 16, thereby tightening the elastic steel belt 16, thereby allowing the elastic steel belt 16 to pull the first transmission square rod 9. After the first transmission square rod 9 is pulled, it can drive the two rotating rods 15 to rotate, thereby driving the second transmission square rod 10 downward to cooperate with the square sleeve 14 with a certain pressure, thereby locking the horizontal position of the settlement observation prism 13. This method does not involve personnel manually tightening the top screw, and will not affect the horizontal position of the settlement observation prism 13 due to excessive manual operation, thereby improving the accuracy.
[0023] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention.
Claims
1. A reserved pipe segment for monitoring by a reserved inner-thread prism, characterized in that: The invention comprises a pipe segment (6), a reserved pipe segment internal wire prism monitor (20) is installed on the pipe segment (6), the reserved pipe segment internal wire prism monitor (20) comprises a fixing plate (3), the fixing plate (3) is pre-buried and installed on the pipe segment (6), a second square tube (8) is installed on one side of the fixing plate (3), the second square tube (8) is a tubular shell structure with one end sealed, the second square tube (8) can slide along the surface of the fixing plate (3), one end of the second square tube (8) is connected to the first square tube (7), the length direction of the second square tube (8) is perpendicular to the length direction of the first square tube (7), the interior of one end of the first square tube (7) is connected to the interior of the second square tube (8), and a level adjuster is installed on the first square tube (7), the level adjuster comprises a square sleeve (14), the square sleeve (14) is sleeved on the first square tube (7), and the first square tube (7) is connected to the second square tube (8). On the first square tube (7), a square sleeve (14) is capable of sliding along the first square tube (7), the outer side of the square sleeve (14) is connected to the sedimentation observation prism (13), and a longitudinal adjuster is installed on the fixing plate (3), wherein the longitudinal adjuster comprises a second nut (21), the outer side of the second nut (21) is connected to the fixing plate (3), the second nut (21) is threadedly connected to a second bolt (12), the screw end of the second bolt (12) is capable of cooperating with the sealing end of the second square tube (8), one side of the fixing plate (3) is connected to a U-shaped plate (11), both sides of the U-shaped plate (11) are connected to the fixing plate (3), the U-shaped plate (11) and the fixing plate (3) cooperate to form a square hole, and the second square tube (8) can pass through the square hole formed by the U-shaped plate (11) and the fixing plate (3).
2. The reserved pipe segment for monitoring by the reserved inner-thread prism according to claim 1 is characterized in that: One side of the fixing plate (3) is connected to a reserved inner screw rod (4), one end of the reserved inner screw rod (4) is connected to an embedded plate (5), and both the reserved inner screw rod (4) and the embedded plate (5) are embedded in the pipe segment (6).
3. The reserved pipe segment for monitoring by the reserved inner-wire prism according to claim 1 is characterized in that: A linkage locking device is installed on the first square tube (7), the linkage locking device comprising a first nut (2) and a linkage lock, the outer side of the first nut (2) is connected to the fixing plate (3), the inner thread of the first nut (2) is connected to the first bolt (1), the first bolt (1) can be plugged into and matched with the open end of the second square tube (8), the linkage lock comprises a first transmission square rod (9) and a second transmission square rod (10), a strip groove (19) is provided at the bottom of the first square tube (7), two rotating rods (15) are installed inside the strip groove (19), the length directions of the two rotating rods (15) are parallel to each other, the middle part of the rotating rod (15) is hinged to the inner wall of the strip groove (19), one end of the rotating rod (15) is connected to the first transmission square rod (9 ), the other end of the rotating rod (15) is hinged to the second transmission square rod (10), one side of the second transmission square rod (10) can cooperate with the inner side of the square sleeve (14), one side of the first transmission square rod (9) is connected to the elastic steel belt (16), a roller (17) is installed on the inner side of one end of the first square tube (7), the wheel frame of the roller (17) is connected to the first square tube (7), the outer side of the wheel of the roller (17) cooperates with the middle part of the elastic steel belt (16), one side of the elastic steel belt (16) cooperates with the first transmission square rod (9), the other side of the U-shaped area (18) is connected to the inner wall of the second square tube (8), one side of the elastic steel belt (16) is provided with the U-shaped area (18), and the screw rod end of the first bolt (1) can cooperate with the U-shaped area (18).
Citation Information
Patent Citations
Prism bar used in deformation and settlement observation
CN218765241U