A building drainage pipe support device
By designing a building drainage pipeline support device that includes adjustment and pushing mechanisms, the problem of difficulty in alignment of the central axis when the drainage pipeline is connected is solved, and the precise docking and fixing of the pipeline is achieved, and the installation efficiency and quality are improved.
Patent Information
- Application Number
- CN202510250629.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2045-03-04
AI Technical Summary
The prior art does not connect the pipes when docking the drainage pipes, and it is difficult to achieve accurate alignment of the central axis, which affects installation efficiency and quality.
A building drainage pipe support device is designed, including a fixing seat, an adjustment mechanism and a push mechanism. The adjustment mechanism realizes the central axis adjustment of the second pipe by moving the slider and the screw rod to align it with the central axis of the first pipe. The pushing mechanism realizes the docking and fixing of the second pipe through the cylinder and the boom.
It realizes accurate docking and fixing of drainage pipes, reduces installation difficulty and time, and improves installation efficiency and quality.
Smart Images

Figure CN119737512B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building drainage, and in particular to a building drainage pipe supporting device. Background Art
[0002] Drainage pipes refer to a system composed of pipes and their ancillary facilities that collect and discharge sewage, wastewater and rainwater, including trunk pipes, branch pipes and pipes leading to treatment plants. Regardless of whether they are built on the streets or anywhere else, as long as they are pipes that play a drainage role, they are collectively referred to as drainage pipes. When docking drainage pipes, because the pipes themselves are heavy, they are difficult to move during docking, resulting in uneven docking of the pipes. The problems in the prior art are: it is not convenient to dock drainage pipes. When docking drainage pipes, because the drainage pipes themselves are heavy, it is difficult to move the docking part laterally. There is often a deviation in the docking interface, resulting in the interface of the two drainage pipes cannot be accurately aligned, affecting the installation of the drainage pipes. In order to solve the above problems, the present invention proposes a building drainage pipe support device. Summary of the invention
[0003] To achieve the above-mentioned purpose, the present invention provides a building drainage pipe support device, including a fixing seat, on which is provided a fixing mechanism for fixing a first pipe, and an adjusting mechanism arranged on the fixing seat, the adjusting mechanism is used to adjust the second pipe to adjust the central axis of the second pipe and the central axis of the first pipe to the same straight line, and also includes a pushing mechanism arranged on the fixing seat, the pushing mechanism is used to drive the second pipe to move toward the first pipe and complete the docking after the central axis of the second pipe and the central axis of the first pipe are adjusted to the same straight line.
[0004] Optionally, the pushing mechanism includes a movable groove opened on the fixed seat, a movable plate is movably arranged in the movable groove, a first cylinder arm is fixedly connected to the side wall of the movable plate, the first cylinder arm is movably inserted into the fixed seat, one end of the first cylinder arm away from the movable plate is fixedly connected to the driving end of the first cylinder, and the first cylinder is fixedly arranged on the side plate of the fixed seat.
[0005] Optionally, the fixing mechanism includes a lower fixing plate assembly, the lower fixing plate assembly is fixedly set on the lower support seat, the lower support seat is fixedly set on the upper end surface of the fixing seat, the upper end of the lower support seat is fixedly connected to a first connecting assembly, the upper end of the first connecting assembly is fixedly connected to the lower end surface of the fixing block, the fixing block is fixedly set on the side wall of the upper fixing plate group, a first internal spiral tube is fixedly inserted on the fixing block, a first spiral rod is inserted into the internal thread of the first internal spiral tube, the lower end of the first spiral rod is rotatably set on the upper end surface of the lower support seat, and the upper end of the first spiral rod is fixedly connected to a screwing ring.
[0006] Optionally, the first connection component includes a first connecting rod, a first connecting cylinder and a first connecting spring. The first connecting rod is movably inserted into the first connecting cylinder. The first connecting spring is wound around the first connecting rod. Two ends of the first connecting spring are respectively fixedly connected to the side wall of the first connecting rod and the outer side wall of the first connecting cylinder. The first connecting rod is connected to the fixed block, and the first connecting cylinder is connected to the lower support base.
[0007] Optionally, the adjusting mechanism includes a first adjusting plate and a second adjusting plate which are oppositely arranged. Moving sliders are arranged at the lower ends of the first adjusting plate and the second adjusting plate. Both of the two moving sliders are movably arranged in a moving chute. The moving chute is formed in the moving plate. Second inner spiral tubes are fixedly inserted into both of the two moving sliders. The two second inner spiral tubes are threadedly sleeved outside a second spiral rod. Thread directions of the two second inner spiral tubes are opposite. One end of the second spiral rod is rotatably arranged on the side wall of the moving chute. The other end of the second spiral rod is connected to the driving end of a driving motor. The driving motor is fixedly arranged on the side wall of the moving plate. Two first electrode contact pieces are embedded on the inner side wall of the first adjusting plate. Two second electrode contact pieces are embedded on the inner side wall of the second adjusting plate.
[0008] Optionally, a control mechanism is further included. The control mechanism is used to control the closing of the first cylinder. The control mechanism includes a first moving chute formed in the adjusting mechanism, a first control component arranged in the first moving chute, a second moving chute formed in the fixing mechanism, and a second control component arranged in the second moving chute. During operation, when the first pipeline contacts the second pipeline, the first control component and the first moving chute also contact synchronously, and the series circuit is switched on to control the closing of the first cylinder.
[0009] Optionally, the first control component includes a third electrode contact piece. An anti-card slot is formed in the third electrode contact piece. The third electrode contact piece is fixedly arranged on a first supporting plate. The first supporting plate is movably arranged in the first moving chute. The first control component further includes a second connection component. The second connection component includes a second connecting rod. The second connecting rod is movably inserted into a second connecting cylinder. A second connecting spring is wound around the second connecting rod. Two ends of the second connecting spring are respectively fixedly connected to the side wall of the second connecting rod and the outer side wall of the second connecting cylinder. The second connecting rod is connected to the first supporting plate, and the second connecting cylinder is connected to the first moving chute.
[0010] Optionally, the second control component includes a fourth electrode contact piece movably disposed in the second moving groove. The fourth electrode contact piece is fixedly connected to the second supporting plate. The second supporting plate is movably disposed in the second moving groove. The second control component further includes a third connecting component. The third connecting component includes a third connecting rod. The third connecting rod is movably inserted into a third connecting cylinder. A third connecting spring is wound around the third connecting rod. Two ends of the third connecting spring are respectively fixedly connected to a side wall of the third connecting rod and an outer side wall of the third connecting cylinder. The third connecting rod is connected to the second supporting plate. The third connecting cylinder is connected to the second moving groove.
[0011] Optionally, the structure of the lower fixing plate component is the same as that of the upper fixing plate component, and the lower fixing plate component is disposed below the upper fixing plate component. The upper fixing plate component includes a first fixing plate. The first fixing plate is movably disposed in an installation groove. The installation groove is formed in a second fixing plate. A moving hole is formed in the second fixing plate. A support rod is movably disposed in the moving hole. The support rod is fixedly connected to the first fixing plate. Among them, the support rod and the moving hole in the upper fixing plate component are disposed at the top of the upper fixing plate component. The support rod and the moving hole in the lower fixing plate component are disposed at a side portion of the lower fixing plate component.
[0012] Optionally, a driving mechanism is further included. The driving mechanism includes an arc-shaped plate slidably disposed on an upper end surface of the second fixing plate. The arc-shaped plate is connected to an upper end of the support rod. A second cylinder arm is fixedly connected to a side wall of the arc-shaped plate. A free end of the second cylinder arm is fixedly connected to a driving end of a second cylinder. The second cylinder is fixedly disposed on the upper end surface of the second fixing plate. A first horizontal plate is fixedly connected to a side wall of the arc-shaped plate. A fourth connecting component is fixedly connected to a lower end surface of the first horizontal plate. A lower end of the fourth connecting component is fixedly connected to an upper end surface of a second horizontal plate. The second horizontal plate is fixedly disposed on the support rod in the lower fixing plate component. The fourth connecting component includes a fourth connecting rod, a fourth connecting cylinder, and a fourth connecting spring. The fourth connecting rod is movably inserted into the fourth connecting cylinder. The fourth connecting spring is wound around the fourth connecting rod. Two ends of the fourth connecting spring are respectively fixedly connected to a side wall of the fourth connecting rod and an outer side wall of the fourth connecting cylinder.
[0013] The beneficial effects of the present invention are as follows:
[0014] The present invention improves the structure of the existing support device for building drainage pipes. An adjustment mechanism is provided inside the improved support device for building drainage pipes. The setting of the adjustment mechanism can realize the adjustment of the position of the second pipe, so that the central axes of the first pipe and the second pipe to be installed are on the same horizontal line. Thus, during installation, the docking interfaces of the first pipe and the second pipe will not be skewed and can be accurately docked, thereby reducing the installation difficulty of the drainage pipes. At the same time, a pushing mechanism is also provided in the present invention, which is used to drive the second pipe to move towards the first pipe and complete the docking after the central axes of the second pipe and the first pipe are adjusted to the same straight line. The setting of the pushing mechanism can not only improve the intelligent level of the device but also improve the installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 FIG. 6 is a schematic top view of an embodiment of the support device for building drainage pipes of the present invention when not working;
[0016] Figure 2 FIG. 10 is a schematic structural view of the fixing mechanism of the first pipe in the support device for building drainage pipes of the present invention; Figure 1 in the support device for building drainage pipes of the present invention;
[0017] Figure 3 FIG. 16 is a schematic structural view of the support device for building drainage pipes of the present invention; Figure 2 FIG. 18 is an enlarged schematic view of structure A in the support device for building drainage pipes of the present invention;
[0018] Figure 4 FIG. 22 is a schematic structural view of the adjustment mechanism of the second pipe in the support device for building drainage pipes of the present invention; Figure 1 in the support device for building drainage pipes of the present invention;
[0019] Figure 5 FIG. 28 is a schematic structural view of the support device for building drainage pipes of the present invention; Figure 4 FIG. 30 is a schematic view of the first electrode contact piece and the second electrode contact piece respectively arranged on the first adjusting plate and the second adjusting plate in the support device for building drainage pipes of the present invention;
[0020] Figure 6 FIG. 34 is a schematic structural view of the first embodiment of the support device for building drainage pipes of the present invention containing a control mechanism;
[0021] Figure 7 FIG. 38 is a schematic structural view of the support device for building drainage pipes of the present invention; Figure 6 FIG. 40 is an enlarged schematic view of structure B in the support device for building drainage pipes of the present invention;
[0022] Figure 8 FIG. 44 is a schematic structural view of the second embodiment of the support device for building drainage pipes of the present invention containing a control mechanism;
[0023] Figure 9 FIG. 48 is a schematic structural view of the upper fixing plate assembly and the lower fixing plate assembly in the support device for building drainage pipes of the present invention;
[0024] Figure 10 This is a support device for building drainage pipes of the present invention Figure 9 Schematic diagram of structure C in it
[0025] Explanation of reference numerals in the drawings
[0026] Fixed seat 1, fixing mechanism 2, lower fixing plate assembly 21, lower support seat 22, first connection assembly 23, first connecting rod 231, first connecting cylinder 232, first connecting spring 233, fixing block 24, upper fixing plate group 25, first fixing plate 251, second fixing plate 252, support rod 253, moving hole 254, first screw rod 26, first inner screw tube 27, screwing ring 28, adjusting mechanism 3, first adjusting plate 31, second adjusting plate 32, moving slider 33, moving chute 34, second inner screw tube 35, second screw rod 36, driving motor 37, first electrode contact 38, second electrode contact 39, pushing mechanism 4, moving plate 41, moving groove 42, first cylinder arm 43, first cylinder 44, control mechanism 5, first control component 51, third electrode contact 511, anti-card slot 512, first supporting plate 513, second connection assembly 514, second connecting rod 5141, second connecting cylinder 5142, second connecting spring 5143, first moving groove 52, second control component 53, fourth electrode contact 531, second supporting plate 532, third connection assembly 533, third connecting rod 5331, third connecting cylinder 5332, third connecting spring 5333, second moving groove 54, driving mechanism 6, arc plate 61, second cylinder arm 62, second cylinder 63, first horizontal plate 64, second horizontal plate 65, fourth connection assembly 66, fourth connecting rod 661, fourth connecting cylinder 662, fourth connecting spring 663 Detailed implementation manners
[0027] To make the objectives, technical solutions and advantages of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein shall have the ordinary meanings understood by those of ordinary skill in the art in the field to which the present invention belongs. The words such as "including" used herein mean that the elements or items appearing before this word cover the elements or items listed after this word and their equivalents, without excluding other elements or items
[0028] In view of the problems existing in the prior art, the embodiments of the present invention provide a support device for building drainage pipes, as Figure 1As shown, the building drainage pipe support device includes a fixed seat 1, a fixing mechanism 2 for fixing the first pipe is arranged on the fixed seat 1, and an adjusting mechanism 3 arranged on the fixed seat 1. The fixing mechanism 2 is arranged on the right side of the adjusting mechanism 3. The adjusting mechanism 3 is used to adjust the second pipe so that the central axis of the second pipe and the central axis of the first pipe are on the same straight line. It also includes a pushing mechanism 4 arranged on the fixed seat 1. The pushing mechanism 4 is used to drive the second pipe to move towards the first pipe and complete the docking after the central axes of the second pipe and the first pipe are adjusted to the same straight line.
[0029] In one embodiment, as Figure 1 shown, the pushing mechanism 4 includes a moving groove 42 opened on the fixed seat 1. A moving plate 41 is movably arranged in the moving groove 42. A first cylinder arm 43 is fixedly connected to the side wall (which can be understood as the left side wall) of the moving plate 41. The first cylinder arm 43 is movably inserted on the fixed seat 1. One end (which can be understood as the left end) of the first cylinder arm 43 away from the moving plate 41 is fixedly connected to the driving end of a first cylinder 44. The first cylinder 44 is fixedly arranged on the side plate (which can be understood as the left side plate) of the fixed seat 1.
[0030] During operation, when the second pipe is adjusted to be on the same horizontal line as the central axis of the first pipe, the first cylinder 44 will be activated, and the moving plate 41 will be pushed to move to the right through the first cylinder arm 43, so as to drive the second pipe to complete the docking with the first pipe.
[0031] In order to fix the first pipe, in one embodiment, as Figure 2 and Figure 3As shown, the fixing mechanism 2 includes a lower fixing plate assembly 21, the lower fixing plate assembly 21 is fixedly arranged on the lower support base 22, the lower support base 22 is fixedly arranged on the upper end face of the fixing base 1, the upper end of the lower support base 22 is fixedly connected with a first connecting component 23, the upper end of the first connecting component 23 is fixedly connected to the lower end face of the fixing block 24, and the fixing block 24 is fixedly arranged on the side wall of the upper fixing plate group 25. It should be noted that the setting of the first connecting component 23 can not only enable the upper fixing plate group 25 to move upward or downward relative to the lower fixing plate assembly 21, but also play a role in limiting, so that the movement of the fixing plate group 25 is only carried out in the vertical direction. The number of the first connecting components 23 can be set to one, two, three or more. A first inner spiral tube 27 is fixedly inserted into the fixing block 24, a first spiral rod 26 is threadedly inserted into the first inner spiral tube 27, the lower end of the first spiral rod 26 is rotatably arranged on the upper end face of the lower support base 22, and the upper end of the first spiral rod 26 is fixedly connected with a screwing ring 28. During operation, the screwing ring 28 is rotated, and the rotation of the screwing ring 28 will drive the first spiral rod 26 to rotate. Since the first spiral rod 26 is threadedly inserted into the first inner spiral tube 27, the rotation of the first spiral rod 26 will drive the upper fixing plate group 25 to move upward or downward in the vertical direction through the first inner spiral tube 27 and the fixing block 24.
[0032] In one embodiment, as Figure 3 shown, the first connecting component 23 includes a first connecting rod 231, a first connecting cylinder 232 and a first connecting spring 233. The first connecting rod 231 is movably inserted into the first connecting cylinder 232, the first connecting spring 233 is wound around the first connecting rod 231, and both ends of the first connecting spring 233 are respectively fixedly connected to the side wall of the first connecting rod 231 and the outer side wall of the first connecting cylinder 232. The first connecting rod 231 is connected to the fixing block 24, and the first connecting cylinder 232 is connected to the lower support base 22. The structure of the first connecting component 23 is not limited to the first connecting rod 231, the first connecting cylinder 232 and the first connecting spring 233.
[0033] In order to adjust the second pipeline so that the central axis of the second pipeline is on the same horizontal line as the central axis of the first pipeline, in one embodiment, as Figure 4 and Figure 5As shown, the adjusting mechanism 3 includes a first adjusting plate 31 and a second adjusting plate 32 which are oppositely arranged. Moving sliders 33 are arranged at the lower ends of the first adjusting plate 31 and the second adjusting plate 32. Both of the two moving sliders 33 are movably arranged in a moving chute 34 which is opened on the moving plate 41. Second inner spiral tubes 35 are fixedly inserted on both of the two moving sliders 33. The two second inner spiral tubes 35 are threadedly sleeved outside a second screw rod 36. The thread directions of the two second inner spiral tubes 35 are opposite. One end (which can be understood as the left end) of the second screw rod 36 is rotatably arranged on the side wall of the moving chute 34, and the other end (which can be understood as the right end) of the second screw rod 36 is connected to the driving end of a driving motor 37. The driving motor 37 is fixedly arranged on the side wall of the moving plate 41. Two first electrode contacts 38 are inlaid on the inner side wall of the first adjusting plate 31, and two second electrode contacts 39 are inlaid on the inner side wall of the second adjusting plate 32.
[0034] It should be noted that the structures of the first adjusting plate 31 and the second adjusting plate 32 are both set as arc-shaped structures, and an arc-shaped guiding plate is arranged on the side where the first adjusting plate 31 and the second adjusting plate 32 are close to each other. When the first adjusting plate 31 and the second adjusting plate 32 move closer, it is used to guide the second pipe to move upward to the middle part of the first adjusting plate 31 and the second adjusting plate 32. During work, the second pipe is placed between the first adjusting plate 31 and the second adjusting plate 32. Then the driving motor 37 is started. The work of the driving motor 37 will drive the second screw rod 36 to rotate, and through the two second inner spiral tubes 35 and the moving sliders 33, it will drive the first adjusting plate 31 and the second adjusting plate 32 to move closer. As the first adjusting plate 31 and the second adjusting plate 32 move closer, it will guide the second pipe to move upward (which can be understood as moving to the middle part of the first adjusting plate 31 and the second adjusting plate 32) through the arc-shaped guiding plate. As the first adjusting plate 31 and the second adjusting plate 32 move, it will make the second pipe contact the first electrode contact 38 or the second electrode contact 39. When the central axis of the second pipe is on the same horizontal center line as the central axis of the first pipe, the second pipe contacts the two first electrode contacts 38 and the two second electrode contacts 39 respectively, and the first adjusting plate 31 and the second adjusting plate 32 complete the clamping and fixing of the second pipe.
[0035] When the second pipe contacts the two first electrode contacts 38 and the two second electrode contacts 39 respectively (which can be understood that the first electrode contact 38 and the second electrode contact 39 are both sensors), the driving motor 37 is controlled to shut down, and the first cylinder 44 is started.
[0036] When the second pipe contacts the first pipe, in order to control the first cylinder 44 to stop working, in one embodiment, as Figure 6 and Figure 7As shown, the building drainage pipe support device further includes a control mechanism 5 for controlling the closing of the first air cylinder 44. The control mechanism 5 includes a first moving groove 52 formed in the adjusting mechanism 3, a first control component 51 disposed in the first moving groove 52, and a second moving groove 54 formed in the fixing mechanism 2, and a second control component 53 disposed in the second moving groove 54. During operation, when the first pipe contacts the second pipe, the first control component 51 and the first moving groove 52 also come into contact synchronously, and the series circuit is turned on to control the closing of the first air cylinder 44.
[0037] In one embodiment, as Figure 7 shown, the first control component 51 includes a third electrode contact piece 511, on which an anti-card slot 512 is formed. The third electrode contact piece 511 is fixedly disposed on a first supporting plate 513. The first supporting plate 513 is movably disposed in the first moving groove 52. The first control component 51 further includes a second connecting component 514, which includes a second connecting rod 5141 movably inserted into a second connecting cylinder 5142. A second connecting spring 5143 is wound around the second connecting rod 5141, and both ends of the second connecting spring 5143 are fixedly connected to the side wall of the second connecting rod 5141 and the outer side wall of the second connecting cylinder 5142 respectively. The second connecting rod 5141 is connected to the first supporting plate 513, and the second connecting cylinder 5142 is connected to the first moving groove 52.
[0038] In one embodiment, as Figure 7 shown, the second control component 53 includes a fourth electrode contact piece 531 movably disposed in the second moving groove 54. The fourth electrode contact piece 531 is fixedly connected to a second supporting plate 532. The second supporting plate 532 is movably disposed in the second moving groove 54. The second control component 53 further includes a third connecting component 533, which includes a third connecting rod 5331 movably inserted into a third connecting cylinder 5332. A third connecting spring 5333 is wound around the third connecting rod 5331, and both ends of the third connecting spring 5333 are fixedly connected to the side wall of the third connecting rod 5331 and the outer side wall of the third connecting cylinder 5332 respectively. The third connecting rod 5331 is connected to the second supporting plate 532, and the third connecting cylinder 5332 is connected to the second moving groove 54.
[0039] During operation, when the second pipe is not in contact with the first pipe, the third electrode contact piece 511 and the fourth electrode contact piece 531 are not in contact. When the second pipe comes into contact with the first pipe, the third electrode contact piece 511 and the fourth electrode contact piece 531 come into contact, the series circuit is connected, and the first cylinder 44 stops working.
[0040] The structure of the device of the present invention is reasonably designed. When the third electrode contact piece 511 and the fourth electrode contact piece 531 come into contact, an impact force will occur. The existence of this impact force will cause damage to the third electrode contact piece 511 and the fourth electrode contact piece 531. In order to protect the third electrode contact piece 511 and the fourth electrode contact piece 531, the present invention provides a combined structure of a second connection component 514 and a third connection component 533. The setting of this combined structure can enable the third electrode contact piece 511 and the fourth electrode contact piece 531 to play a buffering role when they come into contact, thereby protecting the third electrode contact piece 511 and the fourth electrode contact piece 531. The setting of the second connection component 514 and the third connection component 533 can also enable the third electrode contact piece 511 and the fourth electrode contact piece 531 to have a greater relative movement distance in the horizontal direction. Since the control mechanism 5 is arranged on the walls of the fixing mechanism 2 and the adjusting mechanism 3, it will not affect the installation and docking of the second pipe and the first pipe.
[0041] In one embodiment, the third electrode contact piece 511 and the fourth electrode contact piece 531 are of a rectangular body structure, as Figure 7 shown. In another embodiment, the third electrode contact piece 511 and the fourth electrode contact piece 531 are of an annular structure, as Figure 8 shown. Figure 8 The working principle of the example is the same as that of Figure 7 the example, and will not be elaborated here.
[0042] In order to further improve the intelligence level of the device, reduce the installation difficulty and improve the installation efficiency, in one implementation, as Figure 9 and Figure 10As shown, the structure of the lower fixed plate assembly 21 is the same as that of the upper fixed plate assembly 25, and the lower fixed plate assembly 21 is arranged below the upper fixed plate assembly 25. The upper fixed plate assembly 25 includes a first fixed plate 251, and the first fixed plate 251 is movably arranged in an installation groove (not labeled) opened on a second fixed plate 252. A moving hole 254 is opened on the second fixed plate 252, and a support rod 253 is movably arranged in the moving hole 254. The support rod 253 is fixedly connected to the first fixed plate 251. Among them, the support rod 253 and the moving hole 254 in the upper fixed plate assembly 25 are arranged at the top of the upper fixed plate assembly 25, and the support rod 253 and the moving hole 254 in the lower fixed plate assembly 21 are arranged at the side of the lower fixed plate assembly 21. With this embodiment, through the movement of the first fixed plate 251 relative to the second fixed plate 252, the length of the upper fixed plate assembly 25 in the horizontal direction can be extended, so as to fix the butt-jointed second pipe and the first pipe together. By improving the structures of the upper fixed plate assembly 25 and the lower fixed plate assembly 21 in this example, the fixation of the second pipe and the first pipe can be completed without adding additional fixing components, which can not only reduce the installation difficulty of the equipment, but also reduce the investment cost of the equipment. It should be noted that when the second pipe is laid out, the right end of the second pipe needs to extend out of the right side of the adjusting mechanism 3. Such a setting can prevent the right end of the adjusting mechanism 3 from fitting with the left end of the fixing mechanism 2, leaving a fixing position for the second pipe and the first pipe, so that when the first fixed plate 251 moves leftward to the fixing position, it can cover the butt-joint of the second pipe and the first pipe.
[0043] In order to enable the first fixed plate 251 to move leftward relative to the second fixed plate 252 conveniently, in one embodiment, as Figure 9 and Figure 10As shown, the building drainage pipe support device further includes a driving mechanism 6. The driving mechanism 6 includes an arc-shaped plate 61 slidably disposed on the upper end surface of the second fixing plate 252. The arc-shaped plate 61 is connected to the upper end of the support rod 253. A second cylinder arm 62 is fixedly connected to the side wall of the arc-shaped plate 61. The free end of the second cylinder arm 62 is fixedly connected to the driving end of a second cylinder 63. The second cylinder 63 is fixedly disposed on the upper end surface of the second fixing plate 252. A first horizontal plate 64 is fixedly connected to the side wall of the arc-shaped plate 61. A fourth connection assembly 66 is fixedly connected to the lower end surface of the first horizontal plate 64. The lower end of the fourth connection assembly 66 is fixedly connected to the upper end surface of a second horizontal plate 65. The second horizontal plate 65 is fixedly disposed on the support rod 253 within the lower fixing plate assembly 21. The fourth connection assembly 66 includes a fourth connecting rod 661, a fourth connection cylinder 662, and a fourth connection spring 663. The fourth connecting rod 661 is movably inserted into the fourth connection cylinder 662. The fourth connection spring 663 is wound around the fourth connecting rod 661. The two ends of the fourth connection spring 663 are respectively fixedly connected to the side wall of the fourth connecting rod 661 and the outer side wall of the fourth connection cylinder 662.
[0044] During operation, in step one, after fixing the first pipe through the fixing mechanism 2 (in one example, the left end of the first pipe can also extend outside the fixing mechanism 2), place the second pipe between the first adjusting plate 31 and the second adjusting plate 32, and start the driving motor 37 to adjust the position of the second pipe through the first adjusting plate 31 and the second adjusting plate 32; when the central axis of the second pipe is on the same horizontal line as the central axis of the first pipe, the first cylinder 44 is started, and the second pipe is pushed to move rightward through the pushing mechanism 4, and the docking of the second pipe and the first pipe is achieved; when the second pipe and the first pipe are docked, the third electrode contact piece 511 and the fourth electrode contact piece 531 come into contact, and the first cylinder 44 stops working. In step two, when the docking of the second pipe and the first pipe is completed, adjust the first screw rod 26 to rotate reversely, so that the upper fixing plate group 25 moves upward, disengaging from the first pipe, and the first pipe loses the clamping effect; then start the second cylinder 63, and the second cylinder 63 will drive the upper and lower first fixing plates 251 to move leftward relative to the second fixing plate 252 through the second cylinder arm 62, the arc-shaped plate 61, the support rod 253, the first horizontal plate 64, the fourth connection assembly 66, and the second horizontal plate 65. When the first fixing plate 251 covers the docking part of the second pipe and the first pipe, turn off the second cylinder 63; adjust the first screw rod 26 to rotate forward, so that the upper fixing plate group 25 moves downward, and cooperate with the lower fixing plate assembly 21 to complete the fixing of the second pipe and the first pipe.
[0045] Although the embodiments of the present invention have been described in detail above, it will be apparent to those skilled in the art that various modifications and variations can be made to these embodiments. However, it should be understood that such modifications and variations are all within the scope and spirit of the present invention. Moreover, the present invention described herein can have other embodiments and can be implemented or realized in various ways.
Claims
1. A building drainage pipe support device, characterized in that: The invention comprises a fixing seat (1), the fixing seat (1) being provided with a fixing mechanism (2) for fixing a first pipeline, and an adjusting mechanism (3) arranged on the fixing seat (1), the adjusting mechanism (3) being used to adjust a second pipeline so as to adjust the central axis of the second pipeline and the central axis of the first pipeline to be on the same straight line, and further comprising a pushing mechanism (4) arranged on the fixing seat (1), the pushing mechanism (4) being used to drive the second pipeline to move towards the first pipeline and complete docking after the central axis of the second pipeline and the central axis of the first pipeline are adjusted to be on the same straight line; The fixing mechanism (2) comprises a lower fixing plate assembly (21), the lower fixing plate assembly (21) being fixedly arranged on a lower support seat (22), the lower support seat (22) being fixedly arranged on an upper end surface of a fixing seat (1), the upper end of the lower support seat (22) being fixedly connected to a first connecting assembly (23), the upper end of the first connecting assembly (23) being fixedly connected to a lower end surface of a fixing block (24), the fixing block (24) being fixedly arranged on a side wall of an upper fixing plate assembly (25), the fixing block (24) being fixedly plugged with a first inner spiral tube (27), the first inner spiral tube (27) being internally threadedly plugged with a first spiral rod (26), the lower end of the first spiral rod (26) being rotatably arranged on an upper end surface of the lower support seat (22), and the upper end of the first spiral rod (26) being fixedly connected to a screwing ring (28); The structure of the lower fixing plate assembly (21) is consistent with that of the upper fixing plate assembly (25), and the lower fixing plate assembly (21) is arranged below the upper fixing plate assembly (25), and the upper fixing plate assembly (25) comprises a first fixing plate (251), the first fixing plate (251) is movably arranged in a mounting groove, the mounting groove is provided on a second fixing plate (252), a movable hole (254) is provided on the second fixing plate (252), a support rod (253) is movably arranged in the movable hole (254), and the support rod (253) is fixedly connected to the first fixing plate (251), wherein the support rod (253) and the movable hole (254) in the upper fixing plate assembly (25) are arranged at the top of the upper fixing plate assembly (25), and the support rod (253) and the movable hole (254) in the lower fixing plate assembly (21) are arranged on the side of the lower fixing plate assembly (21); The driving mechanism (6) further comprises a driving mechanism (6), wherein the driving mechanism (6) comprises a curved plate (61) slidably arranged on the upper end surface of the second fixed plate (252), the curved plate (61) being connected to the upper end of the support rod (253), a second cylinder arm (62) being fixedly connected to the side wall of the curved plate (61), a free end of the second cylinder arm (62) being fixedly connected to the driving end of the second cylinder (63), the second cylinder (63) being fixedly arranged on the upper end surface of the second fixed plate (252), a first horizontal plate (64) being fixedly connected to the side wall of the curved plate (61), a fourth connecting assembly (66) being fixedly connected to the lower end surface of the first horizontal plate (64), and the The lower end of the fourth connecting component (66) is fixedly connected to the upper end surface of the second horizontal plate (65), and the second horizontal plate (65) is fixedly arranged on the support rod (253) in the lower fixed plate assembly (21). The fourth connecting component (66) includes a fourth connecting rod (661), a fourth connecting tube (662) and a fourth connecting spring (663). The fourth connecting rod (661) is movably inserted in the fourth connecting tube (662), and the fourth connecting spring (663) is wound and arranged outside the fourth connecting rod (661). The two ends of the fourth connecting spring (663) are respectively fixedly connected to the side wall of the fourth connecting rod (661) and the outer side wall of the fourth connecting tube (662).
2. The building drainage pipe support device according to claim 1, characterized in that: The pushing mechanism (4) comprises a moving groove (42) formed on the fixed seat (1), a moving plate (41) being movably arranged in the moving groove (42), a first cylinder arm (43) being fixedly connected to a side wall of the moving plate (41), the first cylinder arm (43) being movably plugged into the fixed seat (1), an end of the first cylinder arm (43) away from the moving plate (41) being fixedly connected to a driving end of a first cylinder (44), and the first cylinder (44) being fixedly arranged on a side plate of the fixed seat (1).
3. The building drainage pipe support device according to claim 2, characterized in that: The first connecting assembly (23) comprises a first connecting rod (231), a first connecting tube (232) and a first connecting spring (233); the first connecting rod (231) is movably inserted into the first connecting tube (232); the first connecting spring (233) is wound around the outside of the first connecting rod (231); two ends of the first connecting spring (233) are respectively fixedly connected to the side wall of the first connecting rod (231) and the outer side wall of the first connecting tube (232); the first connecting rod (231) is connected to the fixing block (24); and the first connecting tube (232) is connected to the lower support seat (22).
4. The building drainage pipe support device according to claim 2, characterized in that: The adjustment mechanism (3) comprises a first adjustment plate (31) and a second adjustment plate (32) which are arranged opposite to each other. A movable slider (33) is arranged at the lower end of each of the first adjustment plate (31) and the second adjustment plate (32). The two movable sliders (33) are movably arranged in a movable slide groove (34). The movable slide groove (34) is provided on the movable plate (41). A second inner spiral tube (35) is fixedly inserted on the two movable sliders (33). The two second inner spiral tubes (35) are threadedly sleeved on the second spiral rod (31). 6), the thread directions of the two second inner spiral tubes (35) are opposite, one end of the second spiral rod (36) is rotatably arranged on the side wall of the movable slide groove (34), the other end of the second spiral rod (36) is connected to the driving end of the driving motor (37), and the driving motor (37) is fixedly arranged on the side wall of the movable plate (41), the inner side wall of the first adjustment plate (31) is inlaid with two first electrode contact pieces (38), and the inner side wall of the second adjustment plate (32) is inlaid with two second electrode contact pieces (39).
5. The building drainage pipe support device according to claim 4, characterized in that: The invention also comprises a control mechanism (5), the control mechanism (5) being used for controlling the closing of the first cylinder (44), the control mechanism (5) comprising a first movable groove (52) provided on the regulating mechanism (3), a first control component (51) being arranged in the first movable groove (52), and a second movable groove (54) provided on the fixing mechanism (2), a second control component (53) being arranged in the second movable groove (54), and when the first pipe is in contact with the second pipe during operation, the first control component (51) and the first movable groove (52) are also in contact synchronously, and the series circuit is connected, so as to control the closing of the first cylinder (44).
6. The building drainage pipe support device according to claim 5, characterized in that: The first control component (51) comprises a third electrode contact piece (511), the third electrode contact piece (511) is provided with an anti-stuck groove (512), the third electrode contact piece (511) is fixedly arranged on a first supporting plate (513), the first supporting plate (513) is movably arranged in the first movable groove (52), the first control component (51) further comprises a second connecting component (514), the second connecting component (514) comprises a second connecting rod (5141), the second connecting rod (5141) is movably inserted in the second connecting tube (5142), a second connecting spring (5143) is wound around the outside of the second connecting rod (5141), two ends of the second connecting spring (5143) are respectively fixedly connected to the side wall of the second connecting rod (5141) and the outer side wall of the second connecting tube (5142), the second connecting rod (5141) is connected to the first supporting plate (513), and the second connecting tube (5142) is connected to the first movable groove (52).
7. The building drainage pipe support device according to claim 5, characterized in that: The second control component (53) comprises a fourth electrode contact piece (531) movably arranged in the second movable groove (54), the fourth electrode contact piece (531) is fixedly connected to the second supporting plate (532), the second supporting plate (532) is movably arranged in the second movable groove (54), the second control component (53) further comprises a third connecting component (533), the third connecting component (533) comprises a third connecting rod (5331), the third connecting rod (5331) is movably inserted in the third connecting cylinder (5332), a third connecting spring (5333) is wound around the outside of the third connecting rod (5331), two ends of the third connecting spring (5333) are respectively fixedly connected to the side wall of the third connecting rod (5331) and the outer side wall of the third connecting cylinder (5332), the third connecting rod (5331) is connected to the second supporting plate (532), and the third connecting cylinder (5332) is connected to the second movable groove (54).
Citation Information
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