Pipeline positioning device
By designing a multifunctional pipeline positioning device, the problems of poor applicability and high operation difficulty of existing pipeline positioning devices are solved. It enables flexible fixing and multi-angle positioning of different pipelines, simplifies the operation process, and improves construction efficiency and safety.
Patent Information
- Application Number
- CN202520774118.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-04-23
AI Technical Summary
Existing pipeline positioning devices have a single working mode, poor applicability, high operation difficulty, require long-term training, and increase usage costs.
A pipe positioning device was designed, comprising a side groove rod, a bidirectional groove rod, a limiting block, a long groove rod, a base frame, a base, and a telescopic rod. By sliding the limiting block and rotating the knob, multi-angle and multi-length pipe connections can be achieved. Combined with the telescopic base frame, it can adapt to different heights and simplify operation.
It enables flexible fixing of pipes of different diameters and types, multi-angle positioning, adaptation to different heights, simplifies operation procedures, reduces training costs, and improves construction efficiency and safety.
Smart Images

Figure CN223648757U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of pipeline positioning instruments, and more specifically, it relates to a pipeline positioning device. Background Technology
[0002] In modern urban construction and industrial development, pipeline systems are widely used in water supply and drainage, gas transmission, oil transportation, and communication cable laying, serving as critical infrastructure for ensuring the normal operation of cities and industrial production. With the acceleration of urbanization and the continuous expansion of industrial scale, pipeline laying and maintenance are becoming increasingly frequent and complex. In municipal engineering, it is necessary to dig storm and sewage trenches on the ground and lay pipelines; the connection of precast concrete pipes is extremely common. In gas engineering, the precise positioning of pipelines is crucial for the safety and efficiency of installation and maintenance. Underground pipelines, as an important part of urban infrastructure, transport critical resources such as water, gas, electricity, and communications; their accurate detection and positioning play a decisive role in ensuring safe operation and preventing disasters. However, both above-ground and underground pipeline construction face the challenge of accurately determining pipeline location, urgently requiring a reliable pipeline positioning device to meet engineering needs and improve construction efficiency and quality.
[0003] Based on the above, existing pipeline positioning devices have a relatively simple working method, and the installation direction and pipe shape are also relatively simple, which greatly reduces their applicability. In addition, they are difficult to operate and require long-term training for staff to use them, which increases the cost of personnel use. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a pipe positioning device, which solves the problems that the existing pipe positioning devices have relatively simple working methods and pipe types, and are difficult to use.
[0005] This utility model discloses a pipeline positioning device, which is achieved by the following specific technical means:
[0006] A pipe positioning device includes a side groove rod, a bidirectional groove rod, a limiting block, a long groove rod, a base frame, a base, and a telescopic rod. The base frame has a set of groove rods on its upper rear side, and a set of long groove rods is welded to the middle of the upper groove rods. Two sets of side groove rods are connected to the T-shaped grooves on both sides of the upper groove rods. Each side groove rod and the long groove rod has a set of T-shaped grooves inside, and each T-shaped groove is slidably connected to a set of sliders. Each bidirectional groove rod has a set of T-shaped grooves on both sides, and each T-shaped groove on both sides is slidably connected to a set of limiting blocks. The bottom of the bidirectional groove rod has a set of circular holes, and a set of rotary knobs is fastened to the circular holes at the bottom of the bidirectional groove rod. The bottom square rod of the base frame has a set of square grooves, and the telescopic rod is telescopically connected to the square grooves within the bottom square rod of the base frame. The base has a set of circular heads on its upper part, and the base is fastened to the circular holes at the bottom of the telescopic rod via the upper circular heads.
[0007] Furthermore, the slider has a set of circular holes inside; the rotary knob has a set of circular heads at its bottom, and the circular heads at the bottom of the rotary knob are rotatably connected to the circular holes inside the slider; the bidirectional groove rod and the long groove rod are movably connected through the slider and the rotary knob.
[0008] Furthermore, a set of circular connectors is provided at the bottom rear side of the long grooved rod, and a folding grooved rod is rotatably connected to the circular connectors at the bottom rear side of the long grooved rod; two sets of square heads are provided on one side of the folding grooved rod, and two sets of square holes are provided on the rear side of the long grooved rod.
[0009] Furthermore, the bottom square block of the limiting block is provided with a circular hole; a set of circular holes is provided on each of the two sides of the inner middle of the bidirectional groove rod, and a small spring is movably connected between the circular hole on the bottom square block of the limiting block and the circular holes on the two sides of the inner middle of the bidirectional groove rod.
[0010] Furthermore, a large spring is movably connected to the top of the square groove inside the square rod at the bottom of the base frame, and the large spring is movably connected to the top of the telescopic rod.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. This utility model uses a limiting block device, in which the limiting block can slide left and right within the bidirectional groove rod, and its position is limited by an internal small spring, thus enabling the fixing of pipes of different diameters.
[0013] 2. This utility model, by setting a rotating knob and a folding groove rod, can realize multi-angle length and three sets of limiting devices for tube connection, which can be freely adjusted and can connect curved pipes, straight pipes, etc.
[0014] 3. This utility model features a retractable base frame to adapt to different heights, and the overall device design is simple and easy to operate. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of the present invention.
[0016] Figure 2 This is a schematic diagram of the internal structure of the main body of this utility model.
[0017] Figure 3 This is a top view of the main body of this utility model.
[0018] Figure 4 This is a cross-sectional structural diagram of the folding groove rod device and the connecting bidirectional groove rod clamp device of this utility model.
[0019] Figure 5 This is a cross-sectional structural schematic diagram of the bidirectional grooved rod clamping device of this utility model.
[0020] Figure 6 This is a cross-sectional view of the side of the main body of this utility model.
[0021] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0022] 1. Side groove rod; 2. Two-way groove rod; 3. Limiting block; 4. Long groove rod; 5. Slider; 6. Base frame; 7. Base; 301. Small spring; 401. Folding groove rod; 501. Rotary knob; 601. Telescopic rod; 602. Large spring. Detailed Implementation
[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0024] Example:
[0025] As attached Figure 1 To be continued Figure 6 As shown:
[0026] This utility model provides a pipe positioning device, including a side groove rod 1, a bidirectional groove rod 2, a limiting block 3, a long groove rod 4, a base frame 6, a base 7, and a telescopic rod 601; a set of groove rods is provided on the upper rear side of the base frame 6, and a set of long groove rods 4 are welded in the middle of the upper groove rods of the base frame 6; two sets of side groove rods 1 are connected in the T-shaped grooves on both sides of the upper groove rods of the base frame 6; a set of T-shaped grooves is provided inside the side groove rods 1 and the long groove rods 4, and a set of sliders 5 are slidably connected in the T-shaped grooves inside the side groove rods 1 and the long groove rods 4; the bidirectional groove rods 2. A set of T-shaped grooves is provided on each side, and a set of limiting blocks 3 are slidably connected in the T-shaped grooves on both sides of the bidirectional groove rod 2. A set of circular holes is provided at the bottom of the bidirectional groove rod 2, and a set of rotary knobs 501 are fastened in the circular holes at the bottom of the bidirectional groove rod 2. A set of square grooves is provided in the square rod at the bottom of the base frame 6, and the telescopic rod 601 is telescopically connected in the square grooves in the square rod at the bottom of the base frame 6. A set of circular heads is provided on the upper part of the base 7, and the base 7 is fastened in the circular holes at the bottom of the telescopic rod 601 through the upper circular heads.
[0027] The slider 5 has a set of circular holes inside; the rotary knob 501 has a set of circular heads at its bottom, and the circular heads at the bottom of the rotary knob 501 are rotatably connected to the circular holes inside the slider 5; the bidirectional grooved rod 2 and the long grooved rod 4 are movably connected through the slider 5 and the rotary knob 501. The rotary knob 501 and the slider 5 are rotatably connected through the circular heads and circular holes, giving the rotary knob flexible rotation operation space. Users can easily achieve precise control of the slider position by rotating the rotary knob. The bidirectional grooved rod 2 and the long grooved rod 4 are movably connected through the slider 5 and the rotary knob 501, making the connection method both flexible and stable. The relative position and angle between the grooved rods can be easily adjusted according to actual operation needs, providing support for diverse operation modes of the equipment and greatly improving the applicability and ease of operation of the equipment.
[0028] The long slotted rod 4 has a set of circular connectors at its rear bottom, and a folding slotted rod 401 is rotatably connected to these circular connectors. The folding slotted rod 401 has two sets of square heads on one side and two sets of square holes on the rear side of the long slotted rod 4. The long slotted rod 4 and the folding slotted rod 401 are rotatably connected via the circular connectors, allowing the folding slotted rod to open and close flexibly. Depending on the actual working space and task requirements, the extension or folding state can be freely adjusted, greatly expanding the equipment's application scenarios. The square heads of the folding slotted rod 401 and the square holes of the long slotted rod 4 ensure precise alignment and a stable connection when the folding slotted rod is unfolded, ensuring structural stability during operation and guaranteeing safe and efficient operation of various tasks.
[0029] The limiting block 3 has a circular hole on its bottom square block; the bidirectional groove rod 2 has a set of circular holes on each side of its inner middle. A small spring 301 is movably connected between the circular hole on the bottom square block of the limiting block 3 and the circular holes on both sides of the inner middle of the bidirectional groove rod 2. When the bidirectional groove rod 2 moves, the small spring 301 can automatically adjust the position of the limiting block 3 to make it fit tightly, ensuring that the relative positions of each component are accurate during the operation of the equipment, maintaining stable operation of the equipment, and ensuring operational accuracy.
[0030] A large spring 602 is movably connected to the top of the square groove inside the square rod at the bottom of the base frame 6. The large spring 602 is also movably connected to the top of the telescopic rod 601. Connecting the base frame 6 and the telescopic rod 601, the large spring 602 effectively buffers vibrations during equipment operation or when subjected to external impacts, preventing damage to critical components from rigid collisions and improving equipment durability. Utilizing the spring's elasticity, the telescopic rod 601 can flexibly extend and retract vertically to adapt to different working height requirements, ensuring stable operation of the equipment under various working conditions and enhancing its flexibility and adaptability.
[0031] The specific usage and function of this embodiment are as follows:
[0032] In this invention, the entire device is placed in a suitable position, and then the pipe is placed on the bidirectional groove rod 2 for parallel positioning. The middle long groove rod 4 and the folding groove rod 401 are foldable extension plates. When installing different pipe types, the bidirectional groove rod 2 and the limiting block 3 on the long groove rod 4 can be slid onto the folding groove rod 401 to increase the length for connecting different pipes. The fixing device is secured by the limiting block 3. Under the tension of the small spring 301, the limiting block 3 retracts inward to clamp the pipe. The bidirectional groove rod 2 can be rotated by the rotary knob 501 to achieve various positioning and connection methods.
[0033] Any aspects of this utility model not described in detail are well-known technologies to those skilled in the art.
Claims
1. A pipe positioning device, characterized in that: It includes a side groove rod (1), a two-way groove rod (2), a limiting block (3), a long groove rod (4), a base frame (6), a base (7), and a telescopic rod (601). The upper rear side of the base frame (6) is provided with a set of groove rods, and a set of long groove rods (4) are welded in the middle of the upper groove rods of the base frame (6). Two sets of side groove rods (1) are connected in the T-shaped grooves on both sides of the upper groove rods of the base frame (6). A set of T-shaped grooves is provided inside the side groove rods (1) and the long groove rods (4), and a set of sliders (5) are slidably connected in the T-shaped grooves inside the side groove rods (1) and the long groove rods (4). The bidirectional groove rod (2) has a set of T-shaped grooves on each side, and a set of limiting blocks (3) are slidably connected in the T-shaped grooves on both sides of the bidirectional groove rod (2). The bottom of the bidirectional groove rod (2) has a set of circular holes, and a set of rotary knobs (501) are fastened in the circular holes at the bottom of the bidirectional groove rod (2). The base frame (6) has a set of square grooves in the square rod at the bottom, and the telescopic rod (601) is telescopically connected in the square grooves in the square rod at the bottom of the base frame (6); the base (7) has a set of round heads on the upper part, and the base (7) is fastened to the round hole at the bottom of the telescopic rod (601) through the upper round heads.
2. The pipe positioning device as described in claim 1, characterized in that: The slider (5) has a set of circular holes inside; the rotary knob (501) has a set of circular heads at the bottom, and the circular heads at the bottom of the rotary knob (501) are rotatably connected to the circular holes inside the slider (5); the bidirectional groove rod (2) and the long groove rod (4) are movably connected through the slider (5) and the rotary knob (501).
3. The pipe positioning device as described in claim 1, characterized in that: The long grooved rod (4) has a set of circular connectors at the bottom rear side, and a folding grooved rod (401) is rotatably connected to the circular connectors at the bottom rear side of the long grooved rod (4); the folding grooved rod (401) has two sets of square heads on one side, and two sets of square holes on the rear side of the long grooved rod (4).
4. A pipe positioning device as described in claim 1, characterized in that: The bottom square block of the limiting block (3) has a circular hole; the inner middle of the bidirectional groove rod (2) has a set of circular holes on both sides, and a small spring (301) is movably connected between the circular hole on the bottom square block of the limiting block (3) and the circular holes on both sides inside the bidirectional groove rod (2).
5. A pipe positioning device as described in claim 1, characterized in that: A large spring (602) is movably connected to the top of the square groove inside the square rod at the bottom of the base frame (6), and the large spring (602) is movably connected to the top of the telescopic rod (601).