Integrated fire-fighting pipeline processing platform
The design of the integrated fire protection pipeline processing platform solves the difficulties in pipeline installation caused by on-site structural errors, enables flexible adjustment and adaptation of pipelines on-site, and improves installation efficiency and applicability.
Patent Information
- Application Number
- CN202423264977.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-29
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-29
AI Technical Summary
Due to structural errors or pipeline intersections at the project site, prefabricated fire protection pipes in the factory cannot be directly installed, requiring complicated on-site adjustments or modifications.
An integrated fire protection pipeline processing platform is provided, which includes a processing table, pulleys, pipe fitting storage box, cutting machine, grooving machine, drilling machine, threading machine, waste collection box and leveling mechanism. It can perform cutting, grooving, drilling and threading operations on pipes on site, and can adapt to different specifications of pipes by adjusting the height of the bracket.
It solves the difficulties in pipe installation caused by on-site structural errors, improves the flexibility and efficiency of pipe installation, avoids cumbersome on-site adjustments, and is compatible with fire protection pipes of different specifications.
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Figure CN223588769U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building fire protection pipeline installation technical field, concretely is a kind of integrated fire protection pipeline processing platform. BACKGROUND
[0002] Fire protection pipeline refers to the pipeline material for fire protection, connecting fire-fighting equipment, conveying fire-fighting water, gas or other medium, due to special requirements, the thickness and material of fire protection pipeline have special requirements, and red paint is sprayed, conveying fire-fighting water.
[0003] At present, fire protection pipeline is first prefabricated and processed in factory, when prefabricated pipeline is installed on site, pipeline originally prefabricated and processed in factory cannot be directly installed on site due to on-site structural error or space position conflict between different pipelines (pipeline intersection collision), and partial adjustment or rectification is needed, when pipeline is grooved on site, it needs to be supported by supporting bracket to keep horizontal, the supporting bracket is usually composed of bracket main body and base, and a plurality of bolts are attached to the top end of the base, and a plurality of studs are respectively penetrated through the plurality of bolts, when the height of the supporting bracket is adjusted, the bolts on the outer side of the supporting bracket need to be loosened to adjust the height and support the pipeline, the adjustment mode is relatively complicated and it is difficult to keep the supporting bracket horizontal, therefore, the integrated fire protection pipeline processing platform is provided to solve the above problems. CONTENT OF UTILITY MODEL
[0004] In view of the deficiencies of prior art, the utility model provides an integrated fire protection pipeline processing platform, which has the advantages of being able to adjust or rectify the prefabricated pipeline completed by factory on site, solves the problem that when prefabricated pipeline is installed on site, pipeline originally prefabricated and processed in factory cannot be directly installed on site due to on-site structural error or space position conflict between different pipelines (pipeline intersection collision), and partial adjustment or rectification is needed.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: an integrated fire protection pipeline processing platform, comprising a processing table and a plurality of pulleys arranged at the bottom of the processing table, the upper surface of the processing table is provided with a pipeline connecting piece storage box, a pulley, a pipeline cutting machine, a pipeline grooving machine, a pipeline drilling machine, an integrated power supply control box, two sliding rails, a pipeline threading machine and a pipeline waste collection box, the upper surface of the processing table is provided with a bracket used in conjunction with the pipeline grooving machine, and the upper surface of the processing table is provided with a leveling mechanism for adjusting the height of the bracket.
[0006] The upper surface of the processing table is provided with a placing frame for placing the bracket, and the two sliding rails are arranged on the upper and lower sides of the pipeline cutting machine respectively.
[0007] Further, the leveling mechanism comprises two mounting grooves formed in the front side of the bracket, two rollers are rotationally connected between the left and right side walls of the inner cavities of the two mounting grooves, the back wall of the inner cavity of the bracket is rotationally connected with a movable rod through a bearing, a first gear is welded to the outer side of the movable rod, a first bevel gear is welded to the outer side of the movable rod and located in front of the first gear, a second bevel gear is engaged with the outer side of the first bevel gear, two second gears are engaged with the outer side of the first gear and located at the top end and the bottom end of the first gear, sleeves are welded to the inner portions of the two second gears, lead screws are screw-connected to the inner portions of the two sleeves, and the same bottom plate is welded to the back sides of the two lead screws.
[0008] Further, the leveling mechanism further comprises a connecting rod welded to the inner portion of the second bevel gear, and a handle is welded to the left end of the connecting rod.
[0009] Further, the two sleeves are rotationally connected to the front side walls of the inner cavities of the two empty grooves through bearings, and square grooves are formed in the outer sides of the first gears on the left and right sides of the bracket.
[0010] Further, two positioning rods are welded to the front side of the bottom plate, and positioning grooves are formed in the back side of the bracket and are in sliding connection with the two positioning rods.
[0011] Further, the thread directions of the two lead screws are opposite, and the outer diameter of the first gear is larger than the outer diameter of the second gear.
[0012] Compared with the prior art, the technical scheme has the following beneficial effects:
[0013] The integrated fire-fighting pipeline processing platform can adjust the height of the bracket until the pipeline is lifted by rotating the handle, can adapt to fire-fighting pipelines of different specifications by adjusting the height of the bracket, improves the practicability, and can perform a series of processing operations on the pipeline by arranging the pipeline connecting piece storage box, the pipeline cutting machine, the pipeline groove pressing machine, the pipeline drilling machine, the two sliding rails, the pipeline threading machine and the pipeline waste collecting box, avoids the problem that the pipeline that has been pre-processed in the factory cannot be directly installed on the site due to structural errors or space position conflicts between different pipelines (pipeline intersection collision), and needs to be partially adjusted or reformed, and has the advantages of being capable of partially adjusting or reforming the pipeline that has been pre-processed in the factory on the site. BRIEF DESCRIPTION OF DRAWINGS
[0014] Fig. 1 It is a structure top view of the utility model;
[0015] Fig. 2 It is a structure perspective view of the utility model;
[0016] Fig. 3 It is the structure schematic view of the placing bracket of the utility model;
[0017] Fig. 4 It is the schematic view of the leveling mechanism of the utility model;
[0018] Fig. 5 It is the side view of the leveling mechanism of the utility model.
[0019] In the figure: 1 processing platform, 2 leveling mechanism, 201 bracket, 202 installation slot, 203 roller, 204 movable rod, 205 first gear, 206 first bevel gear, 207 second bevel gear, 208 second gear, 209 sleeve, 210 screw rod, 211 bottom plate, 212 support plate, 213 empty slot, 3 pipeline connecting piece storage box, 4 slide rail, 5 pulley, 6 pipeline cutting machine, 7 pipeline groove pressing machine, 8 pipeline drilling machine, 9 integrated power supply control box, 10 pipeline threading machine, 11 pipeline waste collection box, 12 placing frame. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0021] Please refer to Figs. 1 to 3 In the embodiment, the integrated fire-fighting pipeline processing platform comprises a processing platform 1 and a plurality of pulleys 5 arranged at the bottom of the processing platform 1. The upper surface of the processing platform 1 is provided with a pipeline connecting piece storage box 3, the pulley 5, a pipeline cutting machine 6, a pipeline groove pressing machine 7, a pipeline drilling machine 8, an integrated power supply control box 9, two slide rails 4, a pipeline threading machine 10 and a pipeline waste collection box 11. The upper surface of the processing platform 1 is provided with a bracket 201 matched with the pipeline groove pressing machine 7. The processing platform 1 is provided with a leveling mechanism 2 for adjusting the height of the bracket 201.
[0022] The upper surface of the processing platform 1 is provided with a placing frame 12 for placing the bracket 201. The two slide rails 4 are arranged on the upper and lower sides of the pipeline cutting machine 6 respectively.
[0023] It can be understood that the integrated fire pipeline processing platform can be moved to the use area through the pulley 5. When the structural error or the spatial position conflict between different pipelines occurs during the installation of the prefabricated pipeline on the project site, the fire pipeline needs to be temporarily cut, threaded, grooved, and drilled, etc. The pipeline connector storage box 3, the pulley 5, the pipeline cutting machine 6, the pipeline grooving machine 7, the pipeline drilling machine 8, the integrated power supply control box 9, the two sliding rails 4, the pipeline threading machine 10, and the pipeline waste collection box 11 can be used to perform a series of processing operations on the pipeline.
[0024] Among them, the pipeline connector storage box 3 (used for storing and storing pipeline connectors);
[0025] The pipeline cutting machine 6 (used for cutting the fire pipeline. When cutting the pipeline, the pipeline to be cut can be placed in the sliding rail 4 and moved towards the pipeline cutting machine 6. The pipeline can be cut by fixing the pipeline cutting machine 6);
[0026] The pipeline grooving machine 7 (used for grooving the fire pipeline);
[0027] The pipeline drilling machine 8 (used for drilling part of the pipeline);
[0028] The integrated power supply control box 9 (used for power supply to each electrical equipment);
[0029] The pipeline threading machine 10 (used for processing the external threads of the fire pipeline);
[0030] The pipeline waste collection box 11 (used for collecting the waste of the processed pipeline).
[0031] Please refer to Figs. 4 to 5 In this embodiment, the leveling mechanism 2 includes two installation grooves 202 opened on the front side of the bracket 201. Rollers 203 are rotatably connected between the left and right side walls of the inner cavities of the two installation grooves 202. The back wall of the inner cavity of the bracket 201 is rotatably connected with a movable rod 204 through a bearing. A first gear 205 is welded to the outer side of the movable rod 204. A first bevel gear 206 is welded to the outer side of the movable rod 204 and located in front of the first gear 205. A second bevel gear 207 is engaged with the outer side of the first bevel gear 206. Two second gears 208 are engaged with the outer side of the first gear 205 and located at the top end and the bottom end thereof. Two sleeves 209 are welded to the interiors of the two second gears 208. Two lead screws 210 are screw-connected to the interiors of the two sleeves 209. The same bottom plate 211 is welded to the back sides of the two lead screws 210. Support plates 212 are welded to the left and right sides of the bottom plate 211 and respectively close to the top end and the bottom end thereof. Two empty grooves 213 are opened on the back side of the bracket 201.
[0032] The leveling mechanism 2 further comprises a connecting rod welded inside the second bevel gear 207, and a handle is welded to the left end of the connecting rod. Since the grooving of the fire pipe needs to be supported by the bracket 201, the bracket 201 needs to be taken out of the placing frame 12 and placed vertically below the pipe grooving machine 7. The pipe to be grooved is fixed at the machining end of the pipe grooving machine 7. Then the handle is rotated by the person skilled in the art, so that the first gear 205 starts to rotate, and then the two second gears 208 drive the two sleeves 209 to rotate, respectively. Since the two lead screws 210 are welded to the front side of the bottom plate 211, the rotation of the two lead screws 210 drives the bracket 201 to adjust the height until the pipe is lifted. The left and right sides of the bracket 201 are both provided with a square groove outside the first gear 205. The front side of the bottom plate 211 is welded with two positioning rods, and the back side of the bracket 201 is provided with a positioning groove in sliding connection with the two positioning rods. The screw directions of the two lead screws 210 are opposite. Since the rotation directions of the two second gears 208 are opposite, when the two lead screws 210 rotate, the bracket 201 adjusts the height. The outer diameter of the first gear 205 is greater than the outer diameter of the second gear 208. When the pipe grooving machine 7 starts to drive the pipe to rotate for grooving, the two rollers 203 provided on the bracket 201 can also assist the rotation of the pipe to improve stability. By adjusting the height of the bracket 201, different specifications of fire pipes can be adapted, improving its practicality.
[0033] The bracket 201 can be adjusted in height by rotating the handle until the pipe is lifted. By adjusting the height of the bracket 201, different specifications of fire pipes can be adapted, improving its practicality. At the same time, by providing the pipe connecting piece storage box 3, the pipe cutting machine 6, the pipe grooving machine 7, the pipe drilling machine 8, the two sliding rails 4, the pipe threading machine 10 and the pipe waste collection box 11, a series of machining operations can be performed on the pipe. Avoid the problem that the pipe which has been pre-processed in the factory cannot be directly installed on site due to structural errors on site or space position conflicts between different pipelines (pipeline intersection collision), and needs to be partially adjusted or modified. It has the advantages of being able to partially adjust or modify the pipe which has been pre-processed in the factory on site.
[0034] It can be understood that the electrical components appearing in the text are all electrically connected with the main control unit and the power supply, and the electrical components appearing in the text are all conventional known devices. This application will not be described in more detail. The main control unit can be a computer or other conventional known device that controls. The control circuit of the main control unit can be realized by simple programming by the person skilled in the art. The power supply is also a common knowledge in the art. And the utility model is mainly used to protect mechanical devices, so the control mode and circuit connection of the utility model will not be explained in detail. Meanwhile, the parts not described in detail in the utility model are the common knowledge of the person skilled in the art.
[0035] In the description of the utility model, it is to explain that, unless there is definite stipulation and limitation, the term "installation", "connection", "connection" should be broad sense understanding, for example, can be fixed connection, can be detachable connection, or integrally connected, can be mechanical connection, can be electrical connection, can be direct connection, can be indirect connection through the intermediate medium, can be the communication of two elements inside. For ordinary skilled in the art, the above-mentioned terms can be understood by the specific meaning in the utility model through specific circumstances.
[0036] The working principle of the above embodiment is:
[0037] When the integrated fire pipeline machining platform needs to be used, the integrated fire pipeline machining platform is moved to the use area through the pulley 5, when the project site is installed for the prefabricated pipeline, the structural error or the space position conflict between different pipelines occurs, so that the fire pipeline needs to be temporarily cut, threaded, grooved and drilled, etc. When the process, the pipeline connecting piece storage box 3 (for storing the pipeline connecting piece), the pipeline cutting machine 6 (for cutting the fire pipeline), the pipeline grooving machine 7 (for the grooving work of the fire pipeline), the pipeline drilling machine 8 (for the drilling work of the partial area of the pipeline), the integrated power supply control box 9 (for power supply to each electrical equipment), the pipeline threading machine 10 (for processing the external thread of the fire pipeline) and the pipeline waste collecting box 11 (for collecting the waste of the processed pipeline) are used to carry out a series of processing operations on the pipeline. When cutting the pipeline, the fire pipeline to be cut is placed in the slide rail 4 and moved towards the pipeline cutting machine 6. The pipeline is fixed by the pipeline cutting machine 6 to cut the pipeline. Since the grooving of the fire pipeline needs to be supported by the bracket 201, the bracket 201 is taken out and placed in the frame 12 and placed vertically below the pipeline grooving machine 7. The pipeline to be grooved is fixed at the machining end of the pipeline grooving machine 7. Then the person skilled in the art rotates the handle, so that the first gear 205 starts to rotate, and the two second gears 208 drive the two sleeves 209 to rotate respectively. Since the two lead screws 210 are welded on the front side of the bottom plate 211, the rotation of the two lead screws 210 drives the bracket 201 to adjust the height until the pipeline is lifted. At this time, the pipeline grooving machine 7 starts to drive the pipeline to rotate for grooving work. The two rollers 203 provided on the bracket 201 can also assist the rotation of the pipeline to improve the stability. By adjusting the height of the bracket 201, different specifications of fire pipelines can be adapted to improve its practicability.
[0038] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it is intended to be limited only by the words recited in the appended claims. The scope of the present application shall be limited only by the claims.
[0039] While the embodiments of the present application have been shown and described with respect to particular embodiments thereof, it will be understood by those skilled in the art that various changes in form and details can be made therein without departing from the spirit and scope of the application. Therefore, the scope of the application should not be limited by the embodiments, but should be defined only in accordance with the following claims and their equivalents.
Claims
1. An integrated fire pipeline processing platform, comprising a processing table (1) and a plurality of pulleys (5) disposed at its bottom, characterized in that: The upper surface of the processing table (1) is provided with a pipe connector storage box (3), pulleys (5), a pipe cutter (6), a pipe grooving machine (7), a pipe drilling machine (8), an integrated power supply control box (9), two slide rails (4), a pipe threading machine (10), and a pipe waste collection box (11). The upper surface of the processing table (1) is provided with a bracket (201) for use with the pipe grooving machine (7). The processing table (1) is provided with a leveling mechanism (2) above it to adjust the height of the bracket (201). The upper surface of the processing table (1) is provided with a placement frame (12) for placing the bracket (201), and the two slide rails (4) are respectively set on the upper and lower sides of the pipe cutting machine (6).
2. The integrated fire pipeline processing platform according to claim 1, characterized in that: The leveling mechanism (2) includes two mounting slots (202) on the front side of the bracket (201). Rollers (203) are rotatably connected between the left and right side walls of the inner cavity of the two mounting slots (202). A movable rod (204) is rotatably connected to the back wall of the inner cavity of the bracket (201) via a bearing. A first gear (205) is welded to the outside of the movable rod (204). A first bevel tooth (206) is welded to the outside of the movable rod (204) and in front of the first gear (205). A second bevel tooth meshes with the outside of the first bevel tooth (206). (207) Two second gears (208) mesh with the outside of the first gear (205) at its top and bottom ends. Sleeves (209) are welded inside the two second gears (208). Screws (210) are screwed inside the two sleeves (209). The same base plate (211) is welded to the back of the two screws (210). Support plates (212) are welded to the left and right sides of the base plate (211) near its top and bottom ends, respectively. Two slots (213) are opened on the back of the bracket (201).
3. The integrated fire pipeline processing platform according to claim 2, characterized in that: The leveling mechanism (2) also includes a connecting rod welded inside the second bevel tooth (207), and a handle is welded to the left end of the connecting rod.
4. The integrated fire pipeline processing platform according to claim 2, characterized in that: The two sleeves (209) are rotatably connected to the front side wall of the cavity of the slot (213) by bearings, and square slots located outside the first gear (205) are provided on both the left and right sides of the bracket (201).
5. The integrated fire pipeline processing platform according to claim 2, characterized in that: Two positioning rods are welded to the front side of the base plate (211), and a positioning groove that is slidably connected to the two positioning rods is provided on the back side of the bracket (201).
6. The integrated fire pipeline processing platform according to claim 2, characterized in that: The two lead screws (210) have opposite thread directions, and the outer diameter of the first gear (205) is larger than the outer diameter of the second gear (208).