A building electromechanical installation pipeline erecting device

By combining the design of the drive wheel and the limiting ring structure, the problems of easy loosening of the screw and swaying of the pipeline in the existing technology are solved, and the stable transportation and separation of the pipeline are realized, thus improving the performance of the building electromechanical pipeline installation device.

CN120914672BActive Publication Date: 2025-12-12德通建设集团有限公司
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202511439637.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2025-12-12
Estimated Expiration
2045-10-10

AI Technical Summary

Technical Problem

During the transportation process, the screws of existing building electromechanical pipeline installation devices are prone to loosening, and various types of pipelines are prone to tangling and swaying, making it impossible to effectively limit their movement.

Method used

The system uses a drive wheel to move the base, and a combination of screw and disc design. The side clamp and limit ring structure realize the separation and limitation of pipelines. The system uses the cooperation of electric push rod and universal ball to achieve stable pipeline transportation.

Benefits of technology

This effectively prevents the screw from loosening during rotation, ensures the stability of the pipeline during transportation, reduces lateral swaying, and improves the reliability of the installation device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120914672B_ABST
    Figure CN120914672B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of pipeline installation and discloses a building electromechanical installation pipeline erecting device, the upper end of the inner wall of a feeding frame hole is hingedly connected with a universal ball, the lower end of the universal ball is swing-connected with a limiting ring, a sliding rod is slidably connected in the sliding groove of the feeding frame, swing-connection plates are swing-connected to the two sides of the sliding rod close to the limiting ring, the universal ball and the limiting ring are in a vertical direction and are swing-tilted, the limiting ring penetrates the hole inside the feeding frame, one end of a screw rod is provided with a disc, so that when the conveying frame rotates, the screw rod rotates in the inside of the side clamping cylinder through the disc, at this time, the side clamping cylinder is in a static state, the screw rod rotates as a whole by 360 degrees, the screw rod and the conveying frame are in a screw joint state, so that the erecting device can conveniently wind the pipeline on the outside of the conveying frame, and the pipeline is prevented from loosening in the screw rotation process of the conveying frame after being wound on the outside of the conveying frame because the screw rod is usually in a fixed state.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application relates to the technical field of pipeline installation and discloses a building mechanical and electrical installation pipeline erecting device. BACKGROUND

[0002] During building mechanical and electrical installation, a building mechanical and electrical pipeline erecting device is needed to erect and install a building mechanical and electrical pipeline support frame. The erecting device is composed of an installation top plate, a cushion table, a pipeline limiting mechanism and two groups of supporting mechanisms. The supporting mechanism comprises an adjusting screw, the adjusting screw is connected with the pipeline limiting mechanism, the top end of the adjusting screw is rotationally connected with the installation top plate, the bottom is detachably connected with an installation sleeve rotationally arranged on the cushion table, a power mechanism is arranged in the cushion table, the power mechanism drives two installation sleeves to drive two adjusting screws to rotate, so that the distance between the pipeline limiting mechanism and the cushion table changes, thereby the height is adjusted and limited according to building mechanical and electrical pipelines of different sizes.

[0003] At present, the CN202110656372.X pipeline erecting support for building mechanical and electrical pipeline construction discloses a pipeline erecting support. A plurality of support rods are arranged at intervals between the bottom plate and the top plate. An installation ring is arranged in the middle of the support rod to install the pipeline. Under the pressure of external pressure from top to bottom, the lower end of the support rod will slide on the bottom plate in a certain direction within a certain range to transfer the external pressure. The pipeline erecting support for building mechanical and electrical pipeline construction of the application uses the top plate and the rigid spring to buffer and protect the pipeline. In addition, the lower part of the support rod slides to further buffer and reduce the damage of external extrusion to the pipeline.

[0004] In combination with the prior art and the comparison file, it is found that the erecting device winds the pipeline outside the conveying mechanism. The conveying mechanism is disassembled by the screw rod. The pipeline is wound outside the conveying mechanism. Since the screw rod is usually in a fixed state after installation, the screw rod is prone to looseness during the rotation of the conveying mechanism to convey the pipeline.

[0005] At the same time, during the conveying process of the pipeline, since there are many types of pipelines required by building mechanical and electrical equipment, when the erecting device simultaneously erects and conveys pipelines of various types, the pipelines are prone to winding, which causes the erecting device to be unable to limit and convey the pipelines during the conveying process, and avoids the situation that the pipelines swing and have a large amplitude during the conveying process. SUMMARY

[0006] In view of the defects in the prior art, the application provides a building mechanical and electrical installation pipeline erecting device.

[0007] In order to solve the above technical problems, the application proposes the following technical scheme:

[0008] The utility model provides a building electromechanical installation pipeline erection device, including the base, both sides of base are rotatably connected with the drive wheel, and both sides of the middle part of base are equipped with the guide rail, and one end of guide rail is equipped with motor, and one end of motor is rotatably connected with the conveying frame, and the end away from motor of conveying frame is spirally connected with screw rod, and one end away from conveying frame of screw rod is equipped with disc.

[0009] Further, the side of the drive wheel is provided with an electric motor, and the electric motor and the motor are connected with the power circuit through the power line. The drive wheel drives the base to move horizontally.

[0010] Further, the guide rail is on the side of the drive wheel, and a track is formed in the inner side of the guide rail away from the motor.

[0011] Further, the outer side of the conveying frame is surrounded by a partition plate, and the end of the guide rail close to the screw rod is provided with a side clamping cylinder.

[0012] Further, the end of the conveying frame close to the screw rod is provided with a threaded groove, and the conveying frame is spirally connected with the screw rod through the threaded groove. The screw rod and the side of the disc are horizontally "T" shaped.

[0013] Further, the partition plate is arranged in 3-5, the side clamping cylinder is horizontally arranged, the disc is inside the side clamping cylinder, the side clamping cylinder is horizontally rotatably nested with the screw rod through the disc, and the inner side of the side clamping cylinder is horizontally arranged.

[0014] Further, the end of the guide rail track inside is provided with an electric push rod, the telescopic end of the electric push rod is slidably connected with a sleeve ring, the inner side of the sleeve ring is slidably sleeved with a clamping frame, and the inner side of the clamping frame is rotatably connected with a feeding frame.

[0015] Further, the hole is formed in the inner side of the clamping frame, and the two sides of the clamping frame close to the hole are provided with a sliding groove, the sliding groove is vertically arranged in an arc shape, the arc angle is 90-120°, the hole and the conveying frame are arranged in the same horizontal line, and the pipeline is formed in the hole.

[0016] Further, the end of the clamping frame close to the sleeve ring is horizontally arranged, the sleeve ring moves horizontally, the clamping frame moves synchronously, and the feeding frame moves horizontally at this time.

[0017] Further, the electric push rod is connected with the power circuit through the power line, the sleeve ring moves horizontally driven by the electric push rod, the sleeve ring moves in the track of the guide rail, and the diameter of the sleeve ring is 2-4cm larger than the diameter of the middle part of the end of the clamping frame.

[0018] Further, the upper end of the inner wall of the hole of the feeding frame is hingedly connected with a universal ball, the lower end of the universal ball is swingably connected with a limiting ring, the inside of the sliding groove of the feeding frame is slidably connected with a sliding rod, the two sides of the limiting ring close to the sliding rod are swingably connected with a baffle, the inner side of the lower end of the limiting ring is provided with an inclined plate, the inside of the inclined plate is slidably penetrated with a bearing, and the two ends of the bearing are penetrated with a baffle.

[0019] Further, the universal ball and the limiting ring are vertically inclined to swing, the limiting ring penetrates the inside of the hole of the feeding frame, the lower end of the limiting ring is arc-shaped, the arc angle is 180 degrees, and one end of the baffle is in abutting butt joint with the side surface of the limiting ring.

[0020] Further, the sliding rod is vertically arc-shaped in the inside of the sliding groove, the baffle is vertically inclined to swing through the sliding rod, the sliding rod and the baffle are matched and arranged, and the sliding rod and the baffle are respectively arranged on the two sides of the limiting ring.

[0021] Further, the overall weight of the baffle and the sliding rod is greater than the weight of the limiting ring by 5-10g.

[0022] Further, when the limiting ring does not swing, the inclined plate is inclined by 45 degrees, at this time, the bearing and the baffle are at one end of the inclined plate close to the limiting ring, the inner side of the inclined plate is provided with a groove, and the two ends of the bearing slide in the inside of the groove.

[0023] Further, the baffle penetrates the upper and lower ends of the inclined plate, the inclined plate is mouth-shaped, and every two inclined plates are arranged in a group.

[0024] From the above technical solution, the beneficial effects of the present application are:

[0025] The screw is manually rotated in the threaded groove at one end of the conveying frame, the screw and the disc are pushed to the inside of the side clamping cylinder, the pipelines are conveniently and quickly wound outside the conveying frame, the different models of pipelines are separated by the partition plate, then the screw is re-spirally installed at one end of the conveying frame, and the conveying frame is rotated as a whole under the driving of the motor.

[0026] One end of the screw is provided with a disc, so that the screw rotates in the side clamping cylinder through the disc when the conveying frame rotates, at this time, the side clamping cylinder is in a stationary state, the screw is 360° rotated as a whole, the screw and the conveying frame are in a spiral butt joint state, so that the pipeline winding device can conveniently wind the pipelines outside the conveying frame, and avoids the situation that the screw is loose in the spiral rotation process of the conveying frame after the pipelines are wound outside the conveying frame because the screw is usually in a fixed state.

[0027] When the pipeline is inside the hole of the feeding frame, the pipeline is synchronously penetrated into the lower end of the limiting ring, the limiting ring is arranged in an arc shape, and the arc angle is 180°. Therefore, when the pipeline is shaken left and right during pipeline erection, the pipeline is extruded to one side of the inner wall of the limiting ring, and when the extrusion force of the pipeline on the inner wall of the limiting ring is less than 10g, the limiting ring is in a static state through the extrusion of the lining plate on the limiting ring.

[0028] When the pipeline shaking amplitude is large, the pipeline continuously extrudes the inner wall of the limiting ring, the limiting ring is vertically inclined and swings through the universal ball, one side of the limiting ring swings upward, and the lining plate is upwardly slid through the slide rod driven by the limiting ring. Since the sliding groove is arranged in a vertical direction and an arc shape, and the arc angle is 90-120°, after the lining plate is upwardly slid, downward sliding inertia is generated, and then the lining plate can form downward extrusion on the limiting ring through the slide rod. Through the inertia of downward sliding reset of the lining plate and the slide rod and the weight of the lining plate and the slide rod, the limiting ring can be reset and swung, the limiting ring can assist the pipeline to reset, and the pipeline is prevented from being greatly shaken left and right during pipeline transportation by the erection device.

[0029] When the limiting ring is not inclined and swung, the bearing and the baffle are located at one end of the inclined plate close to the limiting ring, and at this time, the baffle is spaced apart from the pipeline inside the limiting ring. When one side of the limiting ring is inclined and swung upward, the inclined plate is synchronously swung, and after the inclined plate is in a downward inclined state, the baffle on one side inside the limiting ring is downwardly and inclinedly slid inside the inclined plate through the bearing. At this time, the baffle slides toward one side of the pipeline, and the pipeline is further limited by the baffle, so that when the limiting ring is swung due to extrusion of the pipeline, the pipeline is quickly limited by the downward sliding of the baffle. BRIEF DESCRIPTION OF DRAWINGS

[0030] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the specific embodiments or prior art description will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, various elements or parts are not necessarily drawn according to the actual proportions.

[0031] Figure 1 It is a whole schematic view of the present application;

[0032] Figure 2 It is an overall explosion schematic view of the present application;

[0033] Figure 3 It is a guide rail assembly schematic view of the present application;

[0034] Figure 4 It is an explosion schematic view of the guide rail assembly of the present application;

[0035] Figure 5 It is a conveying frame assembly schematic view of the present application;

[0036] Figure 6 The explosion schematic view of the conveying frame assembly in the application;

[0037] Figure 7 The schematic view of the side clamping cylinder and the screw in the application;

[0038] Figure 8 The schematic view of the feeding frame assembly in the application;

[0039] Figure 9 The explosion schematic view of the feeding frame assembly in the application;

[0040] Figure 10 The schematic view of the limiting ring assembly in the application;

[0041] Figure 11 The partial explosion schematic view of the limiting ring assembly in the application.

[0042] Reference signs:

[0043] 1-base, 101-driving wheel, 102-guide rail, 2-conveying frame, 201-motor, 202-baffle, 3-screw, 301-disc, 302-side clamping cylinder, 4-feeding frame, 401-clamping frame, 402-electric push rod, 403-sleeve ring, 5-limiting ring, 501-universal ball, 502-sliding rod, 503-liner, 6-inclined plate, 601-bearing, 602-baffle. DETAILED DESCRIPTION

[0044] The embodiments of the technical solutions of the application will be described in detail below with reference to the drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the application, and therefore only serve as examples, and cannot limit the protection scope of the application.

[0045] Reference Figures 1-7 A building electromechanical installation pipeline erecting device, comprising a base 1, driving wheels 101 are rotatably connected to the two sides of the base 1, guide rails 102 are arranged on the two sides of the middle part of the base 1, a motor 201 is arranged at one end of the guide rail 102, a conveying frame 2 is rotatably connected to one end of the motor 201, a screw 3 is spirally connected to one end of the conveying frame 2 away from the motor 201, and a disc 301 is arranged at one end of the screw 3 away from the conveying frame 2.

[0046] Among them: the side surface of the driving wheel 101 is provided with a motor, the motor and the motor 201 are connected with the power supply circuit through the power supply line, and the driving wheel 101 drives the base 1 to move in the horizontal direction as a whole.

[0047] The guide rail 102 is on the side of the driving wheel 101, an inner side of the guide rail 102 away from the motor 201 is provided with a track, and the track is arranged in the horizontal direction. For reference, see the drawings in the specification Figure 3As shown;

[0048] The outer side of the conveying frame 2 is surrounded by the partition plates 202, and the guide rail 102 is provided with a side clamping cylinder 302 at one end close to the screw rod 3;

[0049] The conveying frame 2 is provided with a threaded groove at one end close to the screw rod 3, and the conveying frame 2 is screw-connected with the screw rod 3 through the threaded groove, and the screw rod 3 is horizontally “T”-shaped with the side of the disc 301;

[0050] The screw rod 3 is horizontally “T”-shaped with the side of the disc 301, and the combination of the screw rod 3 and the disc 301 can reduce the contact area between the screw rod 3 and the inside of the side clamping cylinder 302;

[0051] The partition plates 202 are arranged in 3-5, the side clamping cylinder 302 is arranged horizontally, the disc 301 is inside the side clamping cylinder 302, the side clamping cylinder 302 is horizontally rotationally nested and connected with the screw rod 3 through the disc 301, and the inside of the side clamping cylinder 302 is horizontally arranged;

[0052] The inside of the side clamping cylinder 302 is horizontally arranged, which facilitates the sliding of the disc 301 inside the side clamping cylinder 302 and avoids the falling of the disc 301 inside the side clamping cylinder 302, and the specific arrangement can be referred to the drawings in the specification Figure 7 As shown;

[0053] Among them: manually rotate the screw rod 3 in the threaded groove at one end of the conveying frame 2, push the screw rod 3 and the disc 301 to slide to the inside of the side clamping cylinder 302, facilitate the rapid winding of the pipeline outside the conveying frame 2, separate different types of pipelines through the partition plates 202, then re-screw the screw rod 3 to one end of the conveying frame 2, and the motor 201 drives the whole conveying frame 2 to rotate;

[0054] One end of the screw rod 3 is provided with the disc 301, so that the screw rod 3 rotates inside the side clamping cylinder 302 through the disc 301 when the conveying frame 2 rotates, at this time the side clamping cylinder 302 is in a static state, the screw rod 3 rotates 360° as a whole, and the screw rod 3 is screw-connected with the conveying frame 2, so that the device facilitates the winding of the pipeline outside the conveying frame 2, and avoids the loosening of the screw rod 3 during the screw rotation of the conveying frame 2 because the screw rod 3 is usually in a fixed state;

[0055] Then the driving wheel 101 drives the whole base 1 to move horizontally, thereby facilitating the erection and conveying of the pipeline;

[0056] Referring to the drawings in the specification Figure 4 , 8And 9, in this embodiment, the guide rail 102 track inside one end is equipped with electric push rod 402, electric push rod 402 telescopic end sliding connection has the thimble 403, the inside of the thimble 403 slidingly fits into the clamping frame 401, the inner side of the clamping frame 401 is rotationally connected with the feeding frame 4;

[0057] Wherein: the inside of feeding frame 4 is through the hole, the two sides of feeding frame 4 near the inside of the hole are provided with a sliding slot, the sliding slot is vertically arranged in arc shape, the arc angle is 90-120°, the hole is arranged in the same horizontal line with the conveying frame 2, the pipeline is through the inside of the hole, can refer to the drawings Figure 9 ;

[0058] The one end of the clamping frame 401 near the thimble 403 is transversely shaped, when the thimble 403 moves horizontally, the clamping frame 401 moves synchronously, at this time the feeding frame 4 moves horizontally;

[0059] The electric push rod 402 is connected with the power supply circuit through the power line, the electric push rod 402 drives the thimble 403 to move horizontally, the thimble 403 moves inside the track of the guide rail 102, the diameter of the thimble 403 is 2-4cm larger than the diameter of the middle part of the one end of the clamping frame 401;

[0060] Wherein: the electric push rod 402 drives the thimble 403 to move horizontally, the thimble 403 moves inside the track of the guide rail 102, because the one end of the clamping frame 401 near the thimble 403 is transversely shaped, when the thimble 403 moves horizontally, the clamping frame 401 moves synchronously, at this time the feeding frame 4 moves horizontally, the pipeline can be driven to move horizontally by the feeding frame 4, thereby realizing the rapid adjustment of the length of the pipeline;

[0061] Refer to the drawings Figures 8-11 , in this embodiment, the upper end of the hole inner wall of the feeding frame 4 is hinged with a universal ball 501, the lower end of the universal ball 501 is swing connected with a limiting ring 5, the sliding slot inside the feeding frame 4 is slidingly connected with a slide rod 502, the two sides of the slide rod 502 near the limiting ring 5 are swing connected with a lining plate 503, the inner side of the lower end of the limiting ring 5 is provided with an inclined plate 6, the inside of the inclined plate 6 is slidingly through a bearing 601, the two ends of the bearing 601 are through a baffle 602;

[0062] Wherein: the universal ball 501 and the limiting ring 5 are inclined to swing vertically, the limiting ring 5 penetrates the inside of the hole of the feeding frame 4, the lower end of the limiting ring 5 is arranged in arc shape, the arc angle is 180°, one end of the lining plate 503 is in abutting connection with the side surface of the limiting ring 5, can refer to the drawings Figure 10 ;

[0063] The lower end of the limiting ring 5 is arranged in arc shape, the arc angle is 180°, through the shape of the limiting ring 5, it is convenient for the pipeline to penetrate the lower end of the limiting ring 5;

[0064] The sliding rod 502 is vertically arc-shapedly slid in the sliding groove, and the lining plate 503 is vertically and obliquely swung through the sliding rod 502, the sliding rod 502 and the lining plate 503 are matched and arranged, and the sliding rod 502 and the lining plate 503 are respectively arranged on two sides of the limiting ring 5;

[0065] The total weight of the lining plate 503 and the sliding rod 502 is greater than the weight of the limiting ring 5 by 5-10 g;

[0066] When the limiting ring 5 is not swung, the inclined plate 6 is arranged at an inclination of 45°, at this time, the bearing 601 and the baffle 602 are arranged at one end of the inclined plate 6 close to the limiting ring 5, a groove is formed in the inner side of the inclined plate 6, and the two ends of the bearing 601 are slid in the groove, which can be referred to as shown in the accompanying drawings; Figure 10

[0067] The baffle 602 penetrates through the upper and lower ends of the inclined plate 6, the inclined plate 6 is arranged in a mouth shape, and every two inclined plates 6 are arranged in a group;

[0068] When the pipeline penetrates through the hole of the feeding frame 4, the pipeline is synchronously penetrated through the lower end of the limiting ring 5, the limiting ring 5 is arranged in an arc shape, and the arc angle is 180°, so that when the pipeline is left and right shaken due to conveying during the pipeline erection, the pipeline is pressed to one side of the inner wall of the limiting ring 5, and when the pressing force of the pipeline to the inner wall of the limiting ring 5 is less than 10 g, the limiting ring 5 is in a static state through the pressing of the lining plate 503 to the limiting ring 5;

[0069] When the pipeline shaking amplitude is large, the pipeline continuously presses to the inner wall of the limiting ring 5, the limiting ring 5 is vertically and obliquely swung through the universal ball 501, one side of the limiting ring 5 is swung upward, and the limiting ring 5 drives the lining plate 503 to slide upward through the sliding rod 502, because the sliding groove is arranged in a vertical arc shape and the arc angle is 90-120°, so that the lining plate 503 generates downward sliding inertia after sliding upward, and then the lining plate 503 can form downward pressing to the limiting ring 5 through the sliding rod 502, and the inertia of the downward sliding reset of the lining plate 503 and the sliding rod 502 and the self weight of the lining plate 503 and the sliding rod 502 can assist the limiting ring 5 to reset and swing, the limiting ring 5 can assist the pipeline to reset, and the situation that the pipeline is greatly shaken in the left and right directions during the conveying of the pipeline by the erection device is avoided;

[0070] ​When the limiting ring 5 is not inclined to swing, the bearing 601 and the baffle plate 602 are located at one end of the inclined plate 6 close to the limiting ring 5, at this time, the baffle plate 602 is spaced from the inner pipeline of the limiting ring 5, when the limiting ring 5 is inclined to swing to one side, the inclined plate 6 swings synchronously, after the inclined plate 6 is inclined downward, the baffle plate 602 on one side of the limiting ring 5 is inclined to slide downward in the inclined plate 6 through the bearing 601, at this time, the baffle plate 602 slides toward one side of the pipeline, the baffle plate 602 can further limit the pipeline, so that when the limiting ring 5 swings due to the extrusion of the pipeline, the baffle plate 602 can quickly limit the pipeline through the downward sliding;

[0071] When the limiting ring 5 is not inclined to swing, the baffle plate 503 limits the two sides of the limiting ring 5, avoiding the situation that the limiting ring 5 is easily inclined to swing left and right due to the rotatability of the universal ball 501 in the conveying process, so that the baffle plate 503 can avoid the situation that the limiting ring 5 is inclined to swing left and right during the movement of the feeding frame 4, and in combination with the above steps, it can be known that the baffle plate 503 and the sliding rod 502 can utilize the downward sliding inertia to avoid the large-scale shaking of the limiting ring 5 left and right during the movement of the feeding frame 4, and at the same time, the baffle plate 503 and the sliding rod 502 can limit and erect the pipeline in the conveying process.

[0072] It should be noted that in this paper, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the present application; the terms "first", "second", "third" are only for description purposes, and cannot be understood as indicating or implying relative importance, in addition, unless otherwise explicitly specified and limited, the terms "fixed", "mounted", "connected", "linked" should be understood in a broad sense, for example, "linked" can be fixed connection, or detachable connection, or integrally connected; "connected" can be mechanical connection, or electrical connection; "connected" can be directly connected, or indirectly connected through an intermediate medium, or the connection between two elements inside. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0073] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should be covered in the scope of the claims and the description of the present application.

Claims

1. A building electromechanical installation pipelaying device comprising a base (1), characterised in that: Both sides of the base (1) are rotatably connected with driving wheels (101), both sides of the middle part of the base (1) are provided with guide rails (102), one end of the guide rail (102) is provided with a motor (201), one end of the motor (201) is rotatably connected with a conveying frame (2), the end of the conveying frame (2) away from the motor (201) is screwedly connected with a screw rod (3), and one end of the screw rod (3) away from the conveying frame (2) is provided with a disc (301); The side surface of the driving wheel (101) is provided with an electric motor, and the electric motor and the motor (201) are connected with a power supply circuit through power supply lines, and the driving wheel (101) drives the base (1) to move in a horizontal direction as a whole; The guide rail (102) is located on the side of the driving wheel (101), and the inner side of the guide rail (102) is provided with a track at the end away from the motor (201), and the track is arranged in a horizontal direction; The outer side of the conveying frame (2) is surrounded by a partition plate (202), and one end of the guide rail (102) close to the screw rod (3) is provided with a side clamping cylinder (302); One end of the conveying frame (2) close to the screw rod (3) is provided with a threaded groove, the conveying frame (2) is screwedly connected with the screw rod (3) through the threaded groove, and the screw rod (3) and the disc (301) are transversely "T"-shaped on the side surface; The partition plate (202) is arranged in 3-5, the side clamping cylinder (302) is transversely arranged, the disc (301) is located in the side clamping cylinder (302), the side clamping cylinder (302) is rotatably nested and connected with the screw rod (3) through the disc (301), and the inner side surface of the side clamping cylinder (302) is arranged in a "T" shape; One end of the track inside the guide rail (102) is provided with an electric push rod (402), the telescopic end of the electric push rod (402) is slidably connected with a sleeve ring (403), the sleeve ring (403) is slidably sleeved with a clamping frame (401), and the inner side of the clamping frame (401) is rotatably connected with a feeding frame (4); The feeding frame (4) is provided with a hole inside, and the feeding frame (4) is provided with a sliding groove on both sides close to the inside of the hole, the sliding groove is arranged in a vertical direction and is arc-shaped, the arc angle is 90-120°, the hole is arranged on the same horizontal line with the conveying frame (2), and a pipeline penetrates the inside of the hole; The electric push rod (402) drives the sleeve ring (403) to move in a horizontal direction, the sleeve ring (403) moves in the track inside the guide rail (102), and the diameter of the sleeve ring (403) is 2-4cm larger than the diameter of the middle part of one end of the clamping frame (401); The upper end of the hole inner wall of the feeding frame (4) is hingedly connected with a universal ball (501), the lower end of the universal ball (501) is swingingly connected with a limiting ring (5), the sliding groove inside the feeding frame (4) is slidably connected with a sliding rod (502), the two sides of the limiting ring (5) close to the sliding rod (502) are swingingly connected with a lining plate (503), the inner side of the lower end of the limiting ring (5) is provided with an inclined plate (6), the inside of the inclined plate (6) is slidably penetrated through a bearing (601), and the two ends of the bearing (601) are penetrated through a baffle (602).

2. A building electromechanical installation pipeline erecting device according to claim 1, characterized in that, The universal ball (501) is inclined to swing in a vertical direction, the limiting ring (5) penetrates the hole inside the feeding frame (4), the lower end of the limiting ring (5) is arranged in an arc shape, the arc angle is 180°, one end of the lining plate (503) is in abutting butt joint with the side surface of the limiting ring (5).

3. A building electromechanical installation pipeline erecting device according to claim 1, characterized in that, The sliding rod (502) is vertically and arcuately slid in the sliding groove, the lining plate (503) is inclined to swing in a vertical direction through the sliding rod (502), the sliding rod (502) and the lining plate (503) are arranged in pairs, and the sliding rod (502) and the lining plate (503) are respectively arranged at two sides of the limiting ring (5).

4. A building electromechanical installation pipeline erecting device according to claim 1, characterized in that, The whole weight of the lining plate (503) and the sliding rod (502) is greater than the weight of the limiting ring (5) by 5-10g.

5. A building electromechanical installation pipeline erecting device according to claim 1, characterized in that, When the limiting ring (5) is not swung, the inclined plate (6) is arranged in an inclination of 45°, at this time, the bearing (601) and the baffle (602) are at one end of the inclined plate (6) close to the limiting ring (5), the inner side of the inclined plate (6) is provided with a groove, and the two ends of the bearing (601) slide in the groove; The baffle (602) penetrates the upper and lower ends of the inclined plate (6), the inclined plate (6) is arranged in a mouth shape, and every two inclined plates (6) are arranged in a group.

Citation Information

Patent Citations

  • Pipeline erecting support for building electromechanical pipeline construction

    CN113363901A

  • Cable pay-off device for power construction

    CN110061451A

  • Pay-off device for drag chain cable processing

    CN213265035U