A device for the construction layout of fire pipelines and its construction method
By designing a fire-fighting pipeline construction and arrangement device including a front platform, pusher, moving wheel, straightening groove, screw rod, threaded section, guide rod and rotating assembly, the problem that existing devices are difficult to clamp multiple side-by-side or superimposed wire pipes is solved, and higher applicability and stability are achieved.
Patent Information
- Application Number
- CN202211227694.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-09
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2042-10-09
AI Technical Summary
It is difficult for existing construction and decoration devices to effectively clamp and straighten multiple side-by-side or superimposed wires and pipes, and their applicable capabilities are poor.
A fire-fighting pipeline construction and layout device is designed, including a front platform, pusher, moving wheel, a straightening groove, a screw, a threaded section, a guide rod and a rotating assembly. Through the synergy of these components, it is possible to clamp and straighten the wire and pipes of different specifications and models, and adjust the distance of the straightening plate when multiple pipes are arranged side by side or superimposed.
It realizes effective alignment of multiple side-by-side or superimposed wire and pipes, improves the applicability and stability of the device, and can adapt to the needs of different numbers and specifications of wire and pipes.
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Figure CN115733094B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of construction decoration, and in particular to a construction layout device for fire pipelines and its construction method. Background Art
[0002] Currently, in indoor decoration, it is necessary to design and distribute electric wires, and then arrange each line according to the design drawings; during the process of arranging electric wires, the electric wires are arranged in PVC electric wire pipes, and then the electric wire pipes are arranged. The pipeline construction layout device can straighten the pipes along the route of the design drawings.
[0003] A Chinese patent with the authorization announcement number CN206806876U in the related art provides a construction layout device for pipelines in decoration projects, including a wiring board. A number of wire pipe holes are opened on the wiring board. A number of pads are horizontally arranged at the bottom of the wiring board. The pads are arc-shaped and are arranged on one side of the wire pipe holes; during construction, the wire pipes are inserted into the wire pipe holes at the bottom of the wiring board, and at the same time, the outer surfaces of the wire pipes are closely attached to the inner walls of the pads. The wiring board is pushed to make the wiring board move along the ink line at the construction site. At this time, the pads are in contact with the surfaces of the wire pipes. When the wiring board moves, the pads straighten the wire pipes, so that the electric wire pipes can be arranged along the route of the design drawings.
[0004] In view of the above related art, the pads can only straighten single-specification electric wire pipes. When multiple electric wire pipes are arranged side by side or stacked, the wiring board cannot meet the requirements of clamping and straightening, and the applicability of the device is poor. Therefore, it needs to be improved. Summary of the Invention
[0005] The purpose of the present application is to provide a construction layout device for fire pipelines and its construction method, which has the effect of being able to clamp and straighten multiple side-by-side pipes, meeting the arrangement of electric wire pipes of different specifications and models, and improving the applicability of the device.
[0006] In a first aspect, a construction layout device for fire pipelines provided by the present application adopts the following technical solutions:
[0007] A construction layout device for fire pipelines includes a straightening platform and a pusher located on the straightening platform. A number of moving wheels are arranged at the bottom of the straightening platform. A straightening groove is opened at the bottom of the straightening platform. A lead screw is rotatably arranged in the straightening groove. A first thread section and a second thread section with opposite rotation directions are arranged on the lead screw. A guide rod is also arranged in the straightening groove. Two straightening blocks are slidably arranged on the guide rod. One of the straightening blocks is threadedly connected to the first thread section, and the other straightening block is threadedly connected to the second thread section; a rotating assembly is also arranged on the straightening platform, and the rotating assembly is used to drive the lead screw to rotate; straightening plates are arranged on the opposite surfaces of the straightening blocks.
[0008] By adopting the above technical solution, when it is necessary to straighten the wire conduit according to the designed route, the straightening platform is arranged on the wire conduit, and the wire conduit is passed through the straightening groove. At this time, the straightening plates are located on both sides of the wire conduit. Then, the rotating assembly drives the driving rod to rotate. The rotation of the driving rod drives the first threaded section and the second threaded section to rotate. Since one of the straightening blocks is threadedly connected to the first threaded section and the other straightening block is threadedly connected to the second threaded section, and at the same time, the guide rod guides the straightening block. When the lead screw rotates, it drives the straightening block to slide along the length direction of the guide rod. At the same time, since the advancing directions of the first threaded section and the second threaded section are opposite, when the lead screw rotates, it drives the straightening blocks to approach or move away from each other. The straightening blocks are moved closer to the wire conduit, so that the straightening plates abut against the outer wall of the wire conduit in the straightening groove. Then, the staff uses the push handle to push the straightening platform, and the moving wheels facilitate the movement of the straightening platform on the ground. The straightening platform is moved along the designed route, and the straightening plates abut against the wire conduit, thereby straightening the wire conduit, enabling the wire conduit to be arranged according to the set route. The straightening plates can clamp and straighten wire conduits of different specifications, models and sizes. At the same time, when multiple wire conduits are arranged side by side or stacked, the distance between the two straightening plates can be changed to adapt to the straightening requirements of wire conduits of different quantities and specifications, improving the applicability of the device.
[0009] Optionally, the rotating assembly includes a rotating rod, a driving bevel gear, a driven bevel gear and a handle. The rotating rod penetrates through the straightening platform and extends into the straightening groove. One end of the rotating rod located in the straightening groove is connected to the driving bevel gear. The driven bevel gear is fixedly sleeved on the lead screw. The driving bevel gear meshes with the driven bevel gear. The handle is arranged at one end of the rotating rod away from the driving bevel gear.
[0010] By adopting the above technical solution, when it is necessary to drive the lead screw to rotate to adjust the distance between the two straightening plates, by rotating the handle, the rotating rod is driven to rotate. The rotating rod drives the driving bevel gear to rotate. The driving bevel gear abuts against the driven bevel gear, thereby driving the driven bevel gear and the lead screw to rotate, and the operation is convenient and fast.
[0011] Optionally, the straightening plate is rotatably connected to the straightening block, and a damping rotating shaft is arranged at the rotating connection between the straightening plate and the straightening block.
[0012] By adopting the above technical solution, when clamping and straightening multiple stacked wire conduits, the straightening plate can be rotated so that the straightening plate contacts the side walls of the multiple wire conduits. When the straightening plate straightens the wire conduit according to the designed route, the stability of the arrangement of the multiple wire conduits is improved, which is beneficial to improving the straightening effect of the wire conduit.
[0013] Optionally, anti-friction grooves are formed on the surface of the alignment plate, and a plurality of anti-friction rollers are rotatably arranged in the anti-friction grooves.
[0014] By adopting the above technical solution, when the staff uses the pusher to push the alignment platform to move on the wire pipeline, the alignment plate abuts against the outer wall of the wire pipeline, the anti-friction rollers are in contact with the surface of the wire pipeline, the alignment plate moves slowly, and the anti-friction rollers rotate continuously in the anti-friction grooves. The anti-friction rollers reduce the friction between the alignment plate and the wire pipeline, so as to facilitate the sliding of the alignment plate on the outer wall of the wire pipeline.
[0015] Optionally, mounting rods are arranged on the inner wall of the alignment groove, a tightening spring is sleeved on the mounting rods, one end of the tightening spring is fixedly connected to the inner wall of the alignment groove, and the other end of the tightening spring is connected with a stabilizing plate.
[0016] By adopting the above technical solution, when aligning multiple side-by-side or stacked wire pipelines, the stabilizing plate on the tightening spring presses on the wire pipelines from above. Under the elastic force of the tightening spring, the stabilizing plate stabilizes the wire pipelines, improves the stability during pipeline alignment, and at the same time, the tightening spring can contract. The mounting rods straighten the tightening spring, and the stabilizing plate can stabilize wire pipelines at different heights. The operation is convenient and the applicability is strong.
[0017] Optionally, a group of cylinders are symmetrically installed at the bottom of the alignment platform, the piston rods of the cylinders are connected with abutting blocks, and a guiding surface is obliquely arranged on the surface of the abutting blocks.
[0018] By adopting the above technical solution, after the wire pipeline is aligned along the designed route by using the alignment platform, the piston rods of the cylinders extend to drive the two abutting blocks to approach each other. Since the guiding surface is arranged on the surface of the abutting blocks, when the abutting blocks approach each other, the guiding surface abuts against the outer wall of the wire pipeline, and the abutting blocks are inserted into the bottom of the wire pipeline. Thus, the wire pipeline is abutted against the abutting blocks by using the guiding surface, so that the bottom of the wire pipeline is separated from the ground. In this way, the staff can pass the binding wire through the bottom of the wire pipeline, and further facilitate the binding process of the aligned wire pipeline, improving the operation convenience.
[0019] Optionally, a connecting groove is formed on the surface of one of the abutting blocks, a wire roller is rotatably arranged in the connecting groove, a binding wire is wound around the wire roller, one end of the binding wire is fixed to the wire roller, and the other end of the binding wire is provided with a plastic buckle; a magnetic part is arranged on the side wall of the plastic buckle, and an adsorbing part that adsorbs with the magnetic part is arranged on the inner wall of the connecting groove. The plastic buckle is detachably connected to the binding wire; a slot for the plastic buckle to be inserted and abutted is formed at one end of the other abutting block away from the cylinder direction, and the plastic buckle is detachably connected to the slot.
[0020] By adopting the above technical solution, when it is necessary to bind the righted wire pipeline, the two cylinders drive the two abutting blocks to approach each other, so that the two abutting blocks contact each other. The plastic buckle on one of the abutting blocks can be inserted into the card slot on the other abutting block, so that the plastic buckle is fixed in the card slot. Then the piston rods of the two cylinders contract, driving the two abutting blocks to move away from each other. At this time, the magnetic part will be separated from the adsorbing part, and the plastic buckle pulls the binding wire, and the wire roller rotates, so that the binding wire is separated from the wire roller, thus realizing the function of automatically arranging the binding wire under the wire pipeline. Then the staff only needs to cut the binding wire to bind the wire pipeline with the binding wire. After binding, disassemble the separated binding wire and the plastic buckle, and separate the plastic buckle from the card slot. Connect the binding wire on the wire roller to the plastic buckle again, and adsorb the magnetic part on the plastic buckle to the adsorbing part in the connecting groove, so as to install the plastic buckle connected with the binding wire in the connecting groove, which is convenient for repeated use, saves labor when binding the wire pipeline, and improves the operation convenience.
[0021] Optionally, an installation ring for binding the binding wire is arranged on the plastic buckle.
[0022] By adopting the above technical solution, when connecting the binding wire and the plastic buckle, it is convenient to connect or separate the binding wire and the plastic buckle by binding the binding wire and the installation ring.
[0023] In the second aspect, a construction method of a construction layout device for a fire pipeline provided by the present application adopts the following technical solution:
[0024] It includes the following steps:
[0025] Arrange the straightening platform on the wire pipeline so that the wire pipeline passes through the straightening groove;
[0026] Rotate the handle to make the two straightening plates abut against the surface of the wire pipeline;
[0027] Push the pusher to make the straightening platform move on the wire pipeline along the route of the design drawing. At this time, the straightening plate straightens the wire pipeline;
[0028] After straightening, start the cylinder. The piston rod of the cylinder extends, driving the abutting block to be inserted into the bottom of the wire pipeline. At the same time, the two abutting blocks contact each other, and the plastic buckle is inserted into the card slot;
[0029] Start the cylinder. The piston rod of the cylinder contracts, driving the two abutting blocks to move away from each other. The magnetic part is separated from the adsorbing part, and the wire roller rotates to arrange the binding wire at the bottom of the wire pipeline;
[0030] Cut the binding wire and use the binding wire to bind and fix multiple wire pipelines.
[0031] In summary, the present application includes at least one of the following beneficial technical effects:
[0032] 1. By arranging a straightening platform, a pusher, a moving wheel, a straightening groove, a screw rod, a first threaded section, a second threaded section, a guide rod, a straightening block, a rotating rod, an active bevel gear, a driven bevel gear and a handle, the straightening plate can clamp and straighten wire pipes of different specifications and sizes. At the same time, when multiple wire pipes are arranged side by side or superimposed, the distance between the two straightening plates can be changed to meet the straightening requirements of wire pipes of different quantities and specifications, thereby improving the applicability of the device;
[0033] 2. By setting the installation rod, the tightening spring and the stabilizing plate, when a plurality of wire pipes arranged side by side or stacked are straightened, the stabilizing plate on the tightening spring is used to apply pressure to the wire pipe from above the wire pipe. Under the elastic force of the tightening spring, the stabilizing plate stabilizes the wire pipe, thereby improving the stability of the pipe when straightening. At the same time, the tightening spring can be contracted, the installation rod straightens the tightening spring, and the stabilizing plate can stabilize the wire pipes at different heights. The operation is convenient and the applicability is strong.
[0034] 3. By setting up a cylinder, an abutment block, a guide surface, a connecting groove, a wire roller, a wire tie, a plastic buckle, a magnetic part, an adsorption part, a slot and a mounting ring, the wire tie can be automatically arranged under the wire duct. Then the staff only needs to cut the wire tie and can use the wire tie to tie the wire duct, which can be reused, saving labor when tying the wire duct and improving the convenience of operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a structural schematic diagram of a fire protection pipeline construction layout device provided in an embodiment of the present application;
[0036] Figure 2 yes Figure 1 A partial enlarged schematic diagram of part A;
[0037] Figure 3 It is a structural schematic diagram of a fire protection pipeline construction layout device provided in an embodiment of the present application;
[0038] Figure 4 is a cross-sectional view for illustrating an abutment block in an embodiment of the present application;
[0039] In the figure, 1, straightening platform; 11, push handle; 12, moving wheel; 13, straightening groove; 2, screw; 21, first thread segment; 22, second thread segment; 3, guide rod; 31, straightening block; 4, rotating assembly; 41, rotating rod; 42, active bevel gear; 43, driven bevel gear; 44, handle; 5, straightening plate; 51, damping shaft; 52, anti-friction groove; 521, anti-friction roller; 6, mounting rod; 61, tightening spring; 62, stabilizing plate; 71, cylinder; 72, abutment block; 721, guide surface; 8, connecting groove; 81, wire roller; 811, binding wire; 82, adsorption part; 9, plastic buckle; 91, magnetic part; 92, mounting ring; 10, slot. DETAILED DESCRIPTION
[0040] The following is combined with Figure 1 -Attached Figure 4 , further details of this application are given.
[0041] The present application embodiment provides a fire protection pipeline construction arrangement device, referring to Figure 1 , including a straightening platform 1 and a push handle 11 fixedly arranged on the straightening platform 1, a plurality of moving wheels 12 are arranged at the bottom of the straightening platform 1, and the push handle 11 is pushed, and the straightening platform 1 can be driven to move on the ground by using the moving wheels 12. A straightening groove 13 is provided at the bottom of the straightening platform 1, and the length direction of the straightening groove 13 is arranged along the length direction of the straightening platform 1, and the straightening groove 13 can be passed through by the wire conduit on the ground, and the wire conduit is a hose.
[0042] Reference Figure 1 and Figure 2 A screw rod 2 is rotatably arranged in the straightening groove 13, and the length direction of the screw rod 2 is arranged along the width direction of the straightening groove 13. A first thread segment 21 and a second thread segment 22 with opposite screwing directions are symmetrically arranged on the screw rod 2, and the first thread segment 21 and the second thread segment 22 are symmetrically arranged on the screw rod 2. A guide rod 3 is fixedly arranged in the straightening groove 13 by welding, and the length direction of the guide rod 3 is parallel to the length direction of the screw rod 2. Two straightening blocks 31 are slidably arranged on the guide rod 3, and the straightening blocks 31 can slide along the length direction of the guide rod 3. One of the straightening blocks 31 is threadedly connected to the first thread segment 21, and the other straightening block 31 is threadedly connected to the second thread segment 22. Both straightening blocks 31 are connected to a straightening plate 5, and the length direction of the straightening plate 5 is arranged along the depth direction of the straightening groove 13.
[0043] Reference Figure 1 and Figure 2, a rotating assembly 4 is arranged on the straightening platform 1, and the rotating assembly 4 includes a rotating rod 41, an active bevel gear 42, a driven bevel gear 43 and a handle 44. The rotating rod 41 penetrates the straightening platform 1 and extends into the straightening groove 13, and one end of the rotating rod 41 located in the straightening groove 13 is fixedly connected to the active bevel gear 42. The driven bevel gear 43 is fixedly sleeved on the screw rod 2, and the driven bevel gear 43 and the screw rod 2 are coaxially arranged, and the active bevel gear 42 and the driven bevel gear 43 are meshed with each other. The handle 44 is fixedly arranged at one end of the rotating rod 41 away from the active bevel gear 42. When straightening the electric wire pipe on the ground, the straightening platform 1 is arranged on the electric wire pipe, and the electric wire pipe passes through the straightening groove 13, and the straightening plate 5 is located on both sides of the electric wire pipe; then the handle 44 is turned to drive the rotating rod 41 to rotate, and the rotating rod 41 drives the active bevel gear 42 to rotate, and the active bevel gear 42 and the driven bevel gear 43 are against each other, thereby driving the screw rod 2 to rotate. When the screw 2 rotates, it drives the first thread segment 21 and the second thread segment 22 to rotate, and at the same time, the guide rod 3 guides the straightening block 31, thereby driving the straightening block 31 to slide on the guide rod 3. The two straightening blocks 31 are brought closer to each other, driving the straightening plates 5 to approach each other, so that the straightening plates 5 are against the outer wall of the wire pipe in the straightening groove 13, and then the straightening platform 1 is driven to move on the ground, and the straightening platform 1 is moved along the route designed for installation. When the straightening platform 1 moves, the straightening plates 5 are against the wire pipe, so that the wire pipe is straightened according to the designed route. The screw can adjust the distance between the two straightening plates 5 to meet the straightening needs of wire pipes of different quantities and specifications.
[0044] Reference Figure 1 The straightening plate 5 is rotatably connected to the straightening block 31, and a damping shaft 51 is provided at the rotation connection between the straightening plate 5 and the straightening block 31. The damping shaft 51 increases the friction force when the straightening plate 5 and the straightening block 31 rotate. If it is necessary to clamp and straighten multiple stacked wire ducts, the straightening plate 5 and the straightening block 31 can be rotated to make the straightening plate 5 contact the side walls of the multiple wire ducts, thereby improving the stability of the multiple wire ducts when they are arranged side by side or stacked.
[0045] Reference Figure 1 The surface of the straightening plate 5 is provided with a friction-reducing groove 52, and a plurality of friction-reducing rollers 521 are rotatably arranged in the friction-reducing groove 52. The length direction of the friction-reducing rollers 521 is arranged along the width direction of the straightening plate 5. When the straightening plate 5 abuts against the outer wall of the wire duct, the straightening platform 1 moves, and the friction-reducing rollers 521 reduce the friction between the straightening plate 5 and the wire duct, so that the straightening plate 5 can slide on the outer wall of the wire duct.
[0046] Reference Figure 3A mounting rod 6 is fixedly provided on the inner wall of the straightening groove 13 by welding, and the length direction of the mounting rod 6 is arranged along the height direction of the straightening platform 1. One end of the abutting spring 61 is welded and fixed to the inner wall of the straightening groove 13, and the other end of the abutting spring 61 is welded and connected to a stabilizing plate 62, which is arranged in the horizontal direction. When straightening a plurality of wire ducts arranged side by side or stacked, the abutting spring 61 abuts against the stabilizing plate 62, and the stabilizing plate 62 abuts against the wire duct from above the wire duct, thereby improving the stability of the duct when straightening.
[0047] Reference Figure 3 A cylinder 71 is installed at the bottom of the straightening platform 1. Two cylinders 71 are symmetrically arranged. The piston rod of the cylinder 71 is connected to an abutment block 72. The length direction of the abutment block 72 is arranged along the width direction of the straightening platform 1. A guide surface 721 is inclined on the upper surface of the abutment block 72. After the straightening platform 1 is used to straighten the wire and conduit according to the designed route, multiple pipes need to be tied and fixed. At this time, the piston rod of the cylinder 71 is extended to drive the two abutment blocks 72 to approach each other, and the guide surface 721 abuts against the outer wall of the wire and conduit, so that the abutment block 72 can be inserted into the bottom of the wire and conduit, so that the bottom of the wire and conduit is separated from the ground.
[0048] Reference Figure 3 and Figure 4, a connecting groove 8 is formed on the surface of one abutting block 72. The length direction of the connecting groove 8 is arranged along the length direction of the abutting block 72. A wire roller 81 is rotatably arranged in the connecting groove 8. A binding wire 811 is wound around the wire roller 81. The binding wire 811 is a plastic binding band. One end of the binding wire 811 is adhesively fixed to the surface of the wire roller 81. The other end of the binding wire 811 is connected with a plastic buckle 9. The binding wire 811 and the plastic buckle 9 are detachably connected. A magnet is adhesively fixed on the side wall of the plastic buckle 9. The magnet is a magnetic part 91. An iron block is adhesively fixed on the inner wall of the connecting groove 8. The iron block is an attracting part 82. The attracting part 82 and the magnetic part 91 are mutually attracted. A clamping groove 10 for inserting and clamping the plastic buckle 9 is formed on the end wall of the other abutting block 72. The plastic buckle 9 and the clamping groove 10 are detachably connected. When the air cylinder 71 drives the two abutting blocks 72 to approach each other, the abutting blocks 72 jack up the wire pipeline. At the same time, the two abutting blocks 72 come into contact with each other. At this time, the plastic buckle 9 can be inserted into the clamping groove 10 on the other abutting block 72, so that the plastic buckle 9 is fixed in the clamping groove 10. Then the piston rod of the air cylinder 71 contracts, driving the two abutting blocks 72 to move away from each other. Since the plastic buckle 9 is already engaged with the clamping groove 10 at this time, when the abutting blocks 72 move away from each other, the magnetic part 91 will be separated from the attracting part 82, and the plastic buckle 9 pulls the binding wire 811, and the wire roller 81 rotates, so that the binding wire 811 is separated from the wire roller 81. When the abutting blocks 72 are completely separated from the wire pipeline, the binding wire 811 is arranged below the wire pipeline. At this time, the staff only needs to cut the binding wire 811 to fix the wire pipeline with the binding wire 811.
[0049] Referring to Figure 4 , an installation ring 92 for binding the binding wire 811 is arranged on the plastic buckle 9. After binding, the binding wire 811 after being cut and separated is untied and disassembled from the plastic buckle 9, and the plastic buckle 9 and the clamping groove 10 are separated from each other. Then the binding wire 811 on the wire roller 81 is tied and connected with the installation ring 92 on the plastic buckle 9, and the magnetic part 91 on the plastic buckle 9 is mutually attracted with the attracting part 82 in the connecting groove 8, so as to install the plastic buckle 9 connected with the binding wire 811 in the connecting groove 8, realizing the reuse of the function of the plastic buckle 9, saving the labor for binding the wire pipeline, and improving the operation convenience.
[0050] The implementation principle of the embodiment of the present application is as follows:
[0051] When it is necessary to straighten the wire pipes on the ground, place the straightening platform 1 on the wire pipes so that the wire pipes pass through the straightening groove 13. Then rotate the handle 44 to adjust the distance between the two straightening plates 5, and make the straightening plates 5 abut against the outer wall of the wire pipes. Then drive the straightening platform 1 to move on the ground. When the straightening platform 1 moves, it drives the straightening plates 5 to straighten the wire pipes, so that the wire pipes can be arranged according to the set route. The straightening plates 5 can clamp and straighten wire pipes of different specifications and models. At the same time, when multiple wire pipes are arranged side by side or stacked, the distance between the two straightening plates 5 can be changed to meet the straightening requirements of wire pipes with different quantities and specifications. The operation is convenient and fast, and the applicability of the device is improved.
[0052] The embodiment of the present application also provides a construction method of a fire pipeline construction layout device, including the following steps:
[0053] Place the straightening platform 1 on the wire pipes so that the wire pipes pass through the straightening groove 13;
[0054] Rotate the handle 44 to make the two straightening plates 5 abut against the surface of the wire pipes;
[0055] Push the pusher 11 to make the straightening platform 1 move on the wire pipes along the route of the design drawing. At this time, the straightening plates 5 straighten the wire pipes;
[0056] After straightening, start the cylinder 71. The piston rod of the cylinder 71 extends, driving the abutting block 72 to be inserted into the bottom of the wire pipe. At the same time, the two abutting blocks 72 contact each other, and the plastic buckle 9 is inserted into the card slot 10;
[0057] Start the cylinder 71. The piston rod of the cylinder 71 contracts, driving the two abutting blocks 72 to move away from each other. The magnetic part 91 is separated from the adsorption part 82, and the wire roller 81 rotates to arrange the binding wire 811 at the bottom of the wire pipe;
[0058] Cut the binding wire 811 and use the binding wire 811 to tie and fix multiple wire pipes.
[0059] The embodiments of this specific implementation manner are all preferred embodiments of the present application, and do not limit the protection scope of the present application accordingly. The same components are denoted by the same reference numerals. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A fire protection pipeline construction arrangement device, comprising a straightening platform (1) and a pusher (11) located on the straightening platform (1), wherein a plurality of moving wheels (12) are arranged at the bottom of the straightening platform (1). It is characterized in that The bottom of the straightening platform (1) is provided with a straightening groove (13), a screw rod (2) is rotatably arranged in the straightening groove (13), the length direction of the screw rod (2) is arranged along the width direction of the straightening groove (13), the screw rod (2) is provided with a first thread segment (21) and a second thread segment (22) with opposite screwing directions, a guide rod (3) is also arranged in the straightening groove (13), the length direction of the guide rod (3) is parallel to the length direction of the screw rod (2), two straightening blocks (31) are slidably arranged on the guide rod (3), one of the straightening blocks (31) is threadedly connected to the first thread segment (21), The other straightening block (31) is threadedly connected to the second threaded section (22); a rotating assembly (4) is also provided on the straightening platform (1), and the rotating assembly (4) is used to drive the screw rod (2) to rotate; a straightening plate (5) is provided on the opposite surface of the straightening block (31); the rotating assembly (4) comprises a rotating rod (41), an active bevel gear (42), a driven bevel gear (43) and a handle (44); the rotating rod (41) passes through the straightening platform (1) and extends into the straightening groove (13); one end of the rotating rod (41) located in the straightening groove (13) is connected to the active bevel gear (42), and the driven bevel gear (43) is connected to the driven bevel gear (44). The wheel (43) is fixedly sleeved on the screw rod (2), the active bevel gear (42) and the driven bevel gear (43) are meshed with each other, and the handle (44) is arranged at one end of the rotating rod (41) away from the active bevel gear (42); a group of cylinders (71) are symmetrically installed at the bottom of the straightening platform (1), the piston rod of the cylinder (71) is connected to an abutment block (72), and a guide surface (721) is obliquely arranged on the surface of the abutment block (72), wherein a connecting groove (8) is opened on the surface of one of the abutment blocks (72), and a wire roller (81) is rotatably arranged in the connecting groove (8), and a wire roller (81) is wound around the wire roller (81). A binding wire (811) is provided, one end of the binding wire (811) is fixed to the wire roller (81), and the other end of the binding wire (811) is provided with a plastic buckle (9); a magnetic part (91) is provided on the side wall of the plastic buckle (9), and an adsorption part (82) adsorbed to the magnetic part (91) is provided on the inner wall of the connecting groove (8), and the plastic buckle (9) and the binding wire (811) are detachably connected; and a slot (10) for inserting and abutting the plastic buckle (9) is provided at one end of the other abutment block (72) away from the cylinder (71), and the plastic buckle (9) and the slot (10) are detachably connected.
2. A fire protection pipeline construction layout device according to claim 1, It is characterized in that The uprighting plate (5) is rotatably connected to the uprighting block (31), and a damping rotating shaft (51) is provided at the rotational connection between the uprighting plate (5) and the uprighting block (31).
3. A fire pipeline construction layout device according to claim 2, characterized in that a friction reducing groove (52) is formed on the surface of the uprighting plate (5), and a plurality of friction reducing rollers (521) are rotatably arranged in the friction reducing groove (52).
4. A fire pipeline construction layout device according to claim 1, characterized in that a mounting rod (6) is provided on the inner wall of the uprighting groove (13), a pressing spring (61) is sleeved on the mounting rod (6), one end of the pressing spring (61) is fixedly connected to the inner wall of the uprighting groove (13), and the other end of the pressing spring (61) is connected to a stabilizing plate (62).
5. A fire pipeline construction layout device according to claim 1, characterized in that a mounting ring (92) for binding the binding wire (811) is provided on the plastic buckle (9).
6. A construction method of a fire pipeline construction layout device, applied to a fire pipeline construction layout device according to claim 1, characterized in that it includes the following steps: Arrange the uprighting platform (1) on the wire pipeline so that the wire pipeline passes through the uprighting groove (13); Rotate the handle (44) to make the two uprighting plates (5) abut against the surface of the wire pipeline; Push the push handle (11) to move the uprighting platform (1) on the wire pipeline along the route of the design drawing. At this time, the uprighting plate (5) uprights the wire pipeline; After uprighting, start the cylinder (71), the piston rod of the cylinder (71) extends, driving the abutting block (72) to be inserted into the bottom of the wire pipeline. At the same time, the two abutting blocks (72) contact each other, and the plastic buckle (9) is inserted into the card slot (10); Start the cylinder (71), the piston rod of the cylinder (71) contracts, driving the two abutting blocks (72) to move away from each other, the magnetic part (91) is separated from the adsorbing part (82), and the wire roller (81) rotates to arrange the binding wire (811) at the bottom of the wire pipeline; Cut the binding wire (811) and use the binding wire (811) to bind and fix a plurality of wire pipelines.
Citation Information
Patent Citations
Decorate engineering pipeline construction and arrange device
CN206806876U
Cable laying and landfill equipment for urban rail transit
CN114301010A
Wire duct structure for high-speed rail
CN213937220U