Lightweight steel structure electromechanical pipeline positioning structure
By using a combined positioning structure of thread pitch adjustment structure and a clamp plate in light steel structure, the loosening problems caused by pipeline weight and vibration in the prior art are solved, and more stable pipeline support and higher reliability are achieved.
Patent Information
- Application Number
- CN202421755221.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-24
AI Technical Summary
The existing light steel structure electromechanical and mechanical pipeline positioning tools are difficult to withstand weight when the number of pipelines increases, and are prone to loosening or falling off when vibrating or moving.
The positioning structure combined with the thread pitch adjustment structure and the latch plate is adopted. The spacing of the latch plate is adjusted through the thread pitch adjustment structure, so that the latch plate can be firmly stuck on the side flange of the lightweight I-shaped steel.
The support stability of the pipeline is improved, and the problems of pipeline loosening or falling off caused by vibration or movement are reduced. The structural characteristics of light I-shaped steel are adapted to the structural characteristics of lightweight I-shaped steel by adjusting the spacing of the card plates to ensure the reliability of pipeline layout.
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Figure CN222839367U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of light steel structure pipeline arrangement, in particular to a light steel structure electromechanical pipeline positioning structure. Background Art
[0002] Light steel structure is a widely used structural form in modern buildings. It uses cold-rolled thin-walled steel as the main material and has the remarkable characteristics of light weight, high strength and fast construction speed. The main types of light steel structures include light steel frame structure, light steel keel structure, light steel column structure, light steel staircase structure, light steel roof truss structure and various component structures. Light steel frame structure is composed of cold-rolled thin-walled steel and is commonly found in residential buildings and villas, providing flexible design space and efficient construction advantages. Light steel keel structure is suitable for non-load-bearing plate ceilings and partitions, making full use of the lightweight characteristics of steel. Light steel column structure is used in combination with concrete floor slabs to provide stable vertical support for the building, and by making full use of the structural characteristics of light I-beams, pipelines can be arranged in the most appropriate location to avoid occupying valuable building space or affecting the stability of the building structure;
[0003] For example, a light steel structure electromechanical pipeline positioning tool disclosed in the authorization announcement number CN221102963U includes a device shell, a pipeline socket is provided on the outer surface of the device shell, a limit rod is inserted into the inner side wall of the device shell, a top plate is arranged at one end of the limit rod, a lead screw is fixedly connected to the outer surface of the top plate, a worm gear is transmission-connected to the lead screw, a worm is arranged at the rear end of the knob, a slide rail is arranged on the inner side wall of the adapter groove, a first slider is slidably connected to the outer surface of the slide rail through the slide groove, a first positioning claw is arranged on the outer surface of the first slider, and a first reinforcing rod is arranged at the end of the first positioning claw. During use, the knob can be directly rotated to drive the worm gear. The two worm gears are driven to rotate, and the transmission connection between the lead screw and the worm gear drives the two top plates to move synchronously to both sides, and abut against the inner wall of the light steel structure. However, the above technical scheme mainly utilizes the abutment force and friction force between the top plate and the inner wall of the light steel structure to ensure that the wire pipe is supported during use. However, as the number of wire pipes and cables increases, this part of the abutment force and friction force will be unable to bear the weight of the wire pipes and cables, making it difficult for the pipeline positioning structure to carry the pipeline at a high load, especially in the case of slight movement or vibration that may occur during pipeline operation. More abutment points and greater friction are required to support the weight of all pipelines. Utility Model Content
[0004] The purpose of the utility model is to provide a light steel structure electromechanical pipeline positioning structure, which adjusts the distance between the two clamps through a threaded distance adjustment structure so that the two clamps can be clamped on the two side wing edges of the light I-beam, and the wiring arm is used to supply wire tubes, cable routing and support, so as to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a light steel structure electromechanical pipeline positioning structure, comprising a square-mouthed hollow beam and a first wiring arm fixed on one side of the top end of the square-mouthed hollow beam, a convex plate is fixed on the outer wall of the square-mouthed hollow beam on the side away from the first wiring arm, and a double-column guide structure is arranged on the top end of the convex plate, a trapezoidal connecting seat is installed on the movable end of the double-column guide structure, and a second wiring arm is installed on the outer wall of the trapezoidal connecting seat on the side close to the first wiring arm, at least two clamping plates for clamping with I-beams are installed on the top of the first wiring arm and the second wiring arm, and a threaded distance adjustment structure for driving the trapezoidal connecting seat to slide horizontally is installed inside the square-mouthed hollow beam.
[0006] Preferably, a butt joint pipe is fixed to the same end of the first routing arm and the second routing arm, and the butt joint pipe is used to be concentrically plugged with the other end of the first routing arm and the second routing arm.
[0007] Preferably, the first routing arm and the second routing arm are made of stainless steel.
[0008] Preferably, two card plates are provided on the first routing arm, and the distance between the two card plates is 15 cm to 30 cm.
[0009] Preferably, the double-column guide structure includes two symmetrical guide cylinders fixed on the outer wall of one side of the embossed plate, and a straight rod slidably installed inside the guide cylinder, one end of the straight rod is fixedly connected to the outer wall of one side of the trapezoidal connecting seat.
[0010] Preferably, the thread pitch adjustment structure includes a one-way screw rotatably installed inside the square hollow beam, a nut pair installed at the thread at one end of the one-way screw surface, and a Y-shaped connector fixed at the top of the nut pair, and the top of the Y-shaped connector is fixedly connected to the bottom end of the trapezoidal connecting seat.
[0011] Preferably, a sliding groove for the Y-type connector to slide is provided at the top end of the square-mouth hollow beam, and one end of the one-way screw rod extends to the outside of the square-mouth hollow beam and is installed with a knob.
[0012] Compared with the prior art, the beneficial effect of the utility model is that the light steel structure electromechanical pipeline positioning structure is provided with a threaded distance adjustment structure and a card plate and other structures that cooperate with each other. Compared with the simple friction support method, the threaded distance adjustment structure can more accurately control the position and fixation of the card plate by adjusting the spacing of the threads, ensuring that the card plate can be firmly clamped on the side edge of the light I-beam. In this way, not only the stability of the support can be improved, but also the problem of loosening or falling off of the pipeline caused by vibration or movement can be effectively reduced. At the same time, by adjusting the spacing between the card plates, it can better adapt to the structural characteristics of the light I-beam, make it fit closely to the side edge of the light I-beam, effectively utilize the strength and stability of the structure, and ensure the reliability of the pipeline layout. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the main structure of the utility model;
[0014] Figure 2 The three-dimensional structure of the utility model is shown in FIG. Figure 1 ;
[0015] Figure 3 The three-dimensional structure of the utility model is shown in FIG. Figure 2 ;
[0016] Figure 4 The three-dimensional structure of the utility model is shown in FIG. Figure 3 ;
[0017] Figure 5 It is a schematic diagram of the three-dimensional structure of the first routing arm and the second routing arm of the utility model.
[0018] In the figure: 1. square-mouth hollow beam; 2. first routing arm; 3. embossed plate; 4. double-column guide structure; 401. guide cylinder; 402. straight rod; 5. trapezoidal connecting seat; 6. second routing arm; 7. clamping plate; 8. threaded pitch adjustment structure; 801. one-way screw rod; 802. nut pair; 803. Y-type connector; 9. butt-jointed pipe. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0020] See also Figure 1-5The utility model provides an embodiment: a light steel structure electromechanical pipeline positioning structure, comprising a square-mouthed hollow beam 1 and a first wiring arm 2 fixed on one side of the top of the square-mouthed hollow beam 1, a convex plate 3 is fixed on the outer wall of the side of the square-mouthed hollow beam 1 away from the first wiring arm 2, and a double-column guide structure 4 is arranged on the top of the convex plate 3, a trapezoidal connecting seat 5 is installed on the movable end of the double-column guide structure 4, and a second wiring arm 6 is installed on the outer wall of the side of the trapezoidal connecting seat 5 close to the first wiring arm 2, at least two clamping plates 7 for clamping with I-beams are installed on the top of the first wiring arm 2 and the second wiring arm 6, and a threaded distance adjustment structure 8 for driving the trapezoidal connecting seat 5 to slide horizontally is installed inside the square-mouthed hollow beam 1;
[0021] The thread pitch adjustment structure 8 includes a one-way screw 801 rotatably mounted inside the square-mouth hollow beam 1, a nut pair 802 mounted at a threaded portion on one end of the surface of the one-way screw 801, and a Y-shaped connector 803 fixed to the top of the nut pair 802, the top of the Y-shaped connector 803 is fixedly connected to the bottom of the trapezoidal connecting seat 5, a slide groove for the Y-shaped connector 803 to slide is provided at the top of the square-mouth hollow beam 1, and one end of the one-way screw 801 extends to the outside of the square-mouth hollow beam 1 and is installed with a knob;
[0022] By manually turning the knob on one end of the square hollow beam 1, the knob drives the one-way screw 801 to rotate, and the one-way screw 801 drives the nut pair 802 and the Y-type connector 803 to move, and the Y-type connector 803 drives the trapezoidal connecting seat 5, the second routing arm 6 and the clamping plate 7 to move toward the wing edge of the light I-beam until the two clamping plates 7 are fastened to the wing edge of the light I-beam. During daily maintenance and overhaul, if the pipeline layout needs to be replaced or adjusted, the threaded pitch adjustment structure 8 can make it easier and faster to remove and reinstall the clamping plate 7, which is convenient for users to operate;
[0023] The double-column guide structure 4 includes two symmetrical guide cylinders 401 fixed on the outer wall of one side of the embossed plate 3, and a straight rod 402 slidably installed inside the guide cylinder 401, one end of the straight rod 402 is fixedly connected to the outer wall of one side of the trapezoidal connecting seat 5, and during the sliding process of the trapezoidal connecting seat 5, the trapezoidal connecting seat 5 will drive the straight rod 402 to slide together, and during this process, the guide cylinder 401 guides and supports the sliding of the straight rod 402;
[0024] The first wiring arm 2 is provided with two clamping plates 7, and the distance between the two clamping plates 7 is 15 cm to 30 cm. The first wiring arm 2 and the second wiring arm 6 are made of stainless steel. The stainless steel material has high strength and rigidity and can maintain a stable structure when carrying pipelines and cables.
[0025] A docking tube 9 is fixed to the same end of the first routing arm 2 and the second routing arm 6. The docking tube 9 is used to be concentrically plugged with the other ends of the first routing arm 2 and the second routing arm 6. When it is necessary to extend the supporting length of the pipeline by the positioning structure, the staff can take out another set of the positioning structure to connect the first routing arm 2 and the second routing arm 6 through the docking tube 9 to ensure that the connection between the multiple positioning structures is completed, so that the pipeline can be extended and supported.
[0026] When the embodiment of the present application is in use, the staff first takes out the positioning structure and initially clamps the right-side clamping plate 7 in the positioning structure on one wing edge of the light I-beam, and then the staff manually operates the threaded spacing adjustment structure 8 to control the spacing between the trapezoidal connecting seat 5 and the wing edge of the light I-beam through the threaded spacing adjustment structure 8, until the trapezoidal connecting seat 5 drives the left-side clamping plate 7 to move, until the clamping plate 7 is clamped on the other wing edge of the light I-beam, until the two clamping plates 7 are tightened so that the positioning structure is firmly fixed on the wing edge of the light I-beam, at this time the staff can pass the electromechanical pipelines and cables through the second routing arm 6, and the second routing arm 6 supports and holds the electromechanical pipelines and cables, and the positioning structure is threaded. The structures such as the distance-adjusting structure 8 and the trapezoidal connecting seat 5 effectively increase the tightness and contact area between the two clamps and the wing edges of the light I-beam. Compared with the simple friction support method, the threaded distance-adjusting structure 8 can more accurately control the position and fixation of the clamp 7 by adjusting the spacing by threads, ensuring that the clamp 7 can be firmly clamped on the flank edge of the light I-beam. In this way, not only the stability of the support can be improved, but also the problem of loosening or falling off of the pipeline caused by vibration or movement can be effectively reduced. At the same time, by adjusting the spacing between the clamps 7, it can better adapt to the structural characteristics of the light I-beam, make it fit closely to the flank edge of the light I-beam, effectively utilize the strength and stability of the structure, and ensure the reliability of the pipeline layout.
Claims
1. A light steel structure electromechanical pipeline positioning structure, characterized by: The invention comprises a square-mouth hollow beam (1) and a first wiring arm (2) fixed on one side of the top of the square-mouth hollow beam (1); a convex plate (3) is fixed on the outer wall of the square-mouth hollow beam (1) away from the first wiring arm (2); a double-column guide structure (4) is arranged on the top of the convex plate (3); a trapezoidal connecting seat (5) is installed on the movable end of the double-column guide structure (4); a second wiring arm (6) is installed on the outer wall of the trapezoidal connecting seat (5) close to the first wiring arm (2); at least two clamping plates (7) for clamping with I-beams are installed on the tops of the first wiring arm (2) and the second wiring arm (6); a threaded distance adjustment structure (8) for driving the trapezoidal connecting seat (5) to slide horizontally is installed inside the square-mouth hollow beam (1).
2. A light steel structure electromechanical pipeline positioning structure according to claim 1, characterized in that: A butt joint pipe (9) is fixed to the same end of the first wiring arm (2) and the second wiring arm (6), and the butt joint pipe (9) is used for being coaxially plugged with the other end of the first wiring arm (2) and the second wiring arm (6).
3. A light steel structure electromechanical pipeline positioning structure according to claim 1, characterized in that: The first wiring arm (2) and the second wiring arm (6) are made of stainless steel components.
4. The light steel structure electromechanical pipeline positioning structure according to claim 1 is characterized by: Two of the card plates (7) are arranged on the first routing arm (2), and the distance between the two card plates (7) is 15 cm to 30 cm.
5. The light steel structure electromechanical pipeline positioning structure according to claim 1 is characterized by: The double-column guide structure (4) comprises two symmetrical guide cylinders (401) fixed on the outer wall of one side of the embossed plate (3), and a straight rod (402) slidably mounted inside the guide cylinder (401), one end of the straight rod (402) being fixedly connected to the outer wall of one side of the trapezoidal connecting seat (5).
6. The light steel structure electromechanical pipeline positioning structure according to claim 1 is characterized by: The thread pitch adjustment structure (8) comprises a one-way screw (801) rotatably mounted inside the square-mouthed hollow beam (1), a nut pair (802) mounted at a threaded portion on one end of the surface of the one-way screw (801), and a Y-shaped connector (803) fixed to the top end of the nut pair (802), wherein the top end of the Y-shaped connector (803) is fixedly connected to the bottom end of the trapezoidal connector seat (5).
7. A light steel structure electromechanical pipeline positioning structure according to claim 6, characterized in that: The top end of the square-mouthed hollow beam (1) is provided with a sliding groove for the Y-shaped connector (803) to slide, and one end of the one-way screw rod (801) extends to the outside of the square-mouthed hollow beam (1) and is provided with a knob.
Citation Information
Patent Citations
Lightweight steel structure electromechanical pipeline positioning tool
CN221102963U