Cable erecting equipment for building mechanical and electrical installation
By designing a cable mount equipment for building electromechanical installations that includes multiple motors and control systems, the existing cable mount methods are solved, and efficient, safe and automated cable mount effects are achieved.
Patent Information
- Application Number
- CN202421696892.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing cable mount methods are inefficient and have poor accuracy, resulting in poor installation results.
A cable mount equipment for building electromechanical installation is designed, including components such as vehicle body, support rod, stability plate, stability motor, stable telescope, cable tray motor, hoisting controller, clamping motor and cutting motor. Through the coordinated work of these components, automated cable mount and management are realized.
Improve the efficiency and accuracy of cable mounts, ensure the stability and safety of equipment, reduce manual operation, and realize automated cable management and cutting.
Smart Images

Figure CN222839328U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cable erection equipment, in particular to a cable erection equipment for building mechanical and electrical installation. Background Art
[0002] A cable is a device for transmitting electrical energy or signals. It is usually a rope-like cable made up of several or several groups of conductors (at least two in each group). A large number of cables are needed during construction. There are many ways to lay cables, such as pipeline, tunnel and direct burial.
[0003] However, in the existing cable installation, the cables need to be installed to a preset height by manual dragging. This method has low installation efficiency and low installation accuracy, resulting in poor installation effect. In this regard, the utility model designs a cable installation device for building mechanical and electrical installation to solve the above problems. Utility Model Content
[0004] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a cable laying device for building mechanical and electrical installation, which effectively solves the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a cable laying device for building mechanical and electrical installation, comprising a vehicle body, a plurality of support rods are fixed at the bottom of the vehicle body, a roller positioning plate is slidably connected to the bottom of each support rod, a universal wheel is rotatably connected inside each roller positioning plate, a universal wheel locker is arranged outside each universal wheel, a plurality of stabilizing plates are arranged around the vehicle body, a stabilizing head is arranged at the bottom of each stabilizing plate, a handrail is fixed at the top of the vehicle body, a controller is fixed to the right side of the handrail, a power supply is fixed to the right side of the controller, and a cable drum positioning plate is also fixed to the right side of the handrail. A cable drum is rotatably connected to the cable drum positioning plate via a rotating shaft, and cables are wound inside the cable drum. A plurality of lifting rods are also fixed to the upper surface of the vehicle body, and a lifting plate is fixed on the top of the plurality of lifting rods. A pulley is provided on the top of the jacking plate, and a wire clamping rod is provided on the left side of the pulley. A main clamping ring is provided on the top of the wire clamping rod, and a secondary clamping ring is provided at the rear of the main clamping ring. A cutting knife moving rod is fixed to the left side of the wire clamping rod, and the left end of the cutting knife moving rod is rotatably connected to a main cutting knife via a rotating shaft, and a secondary cutting knife is provided at the front end of the main cutting knife, and the secondary cutting knife is rotatably connected to the cutting knife moving rod via a rotating shaft.
[0006] Preferably, multiple groups of stabilizing blocks are fixed around the vehicle body, each group of stabilizing blocks is rotatably connected to a stabilizing shaft inside, each stabilizing shaft is fixedly connected to the stabilizing plate inside it, one end of each stabilizing shaft is rotatably connected to a stabilizing motor, each stabilizing motor is fixedly connected to the stabilizing block at one end thereof, a stabilizing rod is fixed to the bottom of each stabilizing plate, each stabilizing rod is fixedly connected to the stabilizing head at its bottom, and a stabilizing telescope is also fixed to the bottom of each stabilizing plate.
[0007] Preferably, a cable positioning ring is also fixed on the top of the vehicle body, and the cable positioning ring is slidably connected to the cable, a cable drum rotating sub-gear is fixed to the front end of the cable drum rotating shaft, and the cable drum rotating sub-gear is meshingly connected to the cable drum rotating main gear, and the rear part of the cable drum rotating main gear is rotatably connected to the cable drum motor, and the cable drum motor is fixedly connected to the cable drum positioning plate.
[0008] Preferably, a lifting controller is also fixed to the upper surface of the vehicle body, a clamping camera is fixed to the top of the lifting plate, a pulley positioning plate is also fixed to the top of the lifting plate, the pulley positioning plate is rotatably connected to the pulley through a rotating shaft, a cable positioning plate is fixed to the top of the pulley, a cable monitoring camera is fixed to the top of the cable positioning plate, and the pulley is slidably connected to the cable.
[0009] Preferably, the inside of the wire clamping rod is rotatably connected to the clamping main ring via a rotating shaft, a clamping sub-gear is fixed to the left side of the clamping main ring via a rotating shaft, the clamping sub-gear is meshingly connected to the clamping main gear, the left side of the clamping main gear is rotatably connected to the clamping motor, the clamping motor is fixedly connected to the wire clamping rod, the right side of the clamping main gear is fixedly connected to the clamping sub-ring via a rotating shaft, a cutting knife movement controller is also fixed to the left side of the wire clamping rod, a cutting sub-gear is fixed to the bottom of the cutting sub-knife via a rotating shaft, the cutting sub-gear is meshingly connected to the cutting main gear, the top of the cutting main gear is fixedly connected to the cutting main knife via a rotating shaft, the bottom of the cutting main gear is rotatably connected to the cutting motor via a rotating shaft, and the cutting motor is fixedly connected to the cutting knife moving rod.
[0010] Compared with the prior art, the beneficial effects of the utility model are:
[0011] (1) The utility model can drive multiple stabilizing plates to rotate through multiple stabilizing motors, thereby driving multiple stabilizing heads to rotate to a fixed angle with the ground, and further drive the stabilizing rods to extend through multiple stabilizing telescoping devices to drive the stabilizing heads to be inserted into the ground, thereby preventing the entire device from moving, thereby ensuring the stability of the equipment, thereby ensuring the safety of the cables during installation, and thereby ensuring the effect of cable installation.
[0012] (2) The utility model can drive the cable drum to rotate the main gear through the cable drum motor, thereby driving the cable drum to rotate the sub-gear, and then driving the cable drum to rotate, so as to loosen the cable, thereby facilitating the storage and loosening of the cables, thereby saving labor. At the same time, the equipment can drive the jacking rod to extend and retract through the jacking controller, and can drive the jacking plate to move up and down, thereby driving the pulley to move up and down, thereby ensuring that the cable can reach the required height during installation, thereby ensuring the installation effect and improving the installation efficiency. At the same time, the cable monitoring camera can monitor the horizontality of the cable, thereby further ensuring the installation effect.
[0013] (3) The clamping motor of the utility model can drive the clamping main gear to rotate, thereby driving the clamping sub-gear to rotate, thereby driving the clamping sub-ring and the clamping main ring to rotate, thereby clamping the cable, thereby facilitating cutting. At the same time, the device drives the cutting main gear to rotate through the cutting motor, which can drive the cutting sub-gear to rotate, thereby driving the cutting main knife and the cutting sub-knife to rotate, thereby cutting the cable, thereby realizing automation, thereby ensuring the erection effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention.
[0015] In the attached picture:
[0016] Figure 1 It is an overall schematic diagram of the utility model;
[0017] Figure 2 It is a schematic diagram of the left side of the utility model;
[0018] Figure 3 This is a schematic diagram of the cable reel of the utility model;
[0019] Figure 4 This is a schematic diagram of the clamping mechanism of the utility model;
[0020] Figure 5 It is a bottom schematic diagram of the clamping mechanism of the utility model.
[0021] In the figure: 1-car body; 2-support rod; 3-stabilizing block; 4-cable drum positioning plate; 5-lifting rod; 6-pulley positioning plate; 7-cutting knife moving rod; 8-clamping rod; 101-handrail; 102-controller; 103-power supply; 201-roller positioning plate; 202-universal wheel; 203-universal wheel locker; 301-stabilizing plate; 302-stabilizing motor; 303-stabilizing rod; 304-stabilizing head; 305-stabilizing telescope; 306-stabilizing shaft; 401-cable drum; 402-cable; 403-cable positioning ring; 404-cable drum Rotating secondary gear; 405-cable drum rotating main gear; 406-cable drum motor; 501-lifting plate; 502-lifting controller; 503-clamping camera; 601-pulley; 602-cable positioning plate; 603-cable monitoring camera; 701-cutting knife movement controller; 702-cutting main knife; 703-cutting secondary knife; 704-cutting secondary gear; 705-cutting main gear; 706-cutting motor; 801-clamping main ring; 802-clamping secondary ring; 803-clamping secondary gear; 804-clamping main gear; 805-clamping motor. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments; based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.
[0023] Embodiment 1, by Figure 1-2 , Figure 4The utility model includes a vehicle body 1, which is made of alloy material and used to support the entire device. A plurality of support rods 2 are fixed at the bottom of the vehicle body 1, and the support rods 2 are made of alloy material. The support rods 2 are used to position the roller positioning plate 201. The bottom of each support rod 2 is slidably connected with a roller positioning plate 201, and the roller positioning plate 201 is made of alloy material. The roller positioning plate 201 is used to position the universal wheel 202. Each roller positioning plate 201 is internally rotatably connected with a universal wheel 202. The universal wheel 202 can drive the entire device to move and turn at the same time. Each universal wheel 202 is provided with a universal wheel locker 203 on the outside. The universal wheel locker 203 The universal wheel locker 203 is made of alloy material, and the universal wheel 202 can be locked. A plurality of stabilizing plates 301 are arranged around the vehicle body 1, and the stabilizing plates 301 are made of alloy material. The stabilizing plates 301 are used to position the stabilizing rods 303. A stabilizing head 304 is arranged at the bottom of each stabilizing plate 301, and the end of the stabilizing head 304 adopts a triangular prism structure. The stabilizing head 304 is made of alloy material, and the stabilizing head 304 can ensure the stability of the entire device. A handrail 101 is fixed on the top of the vehicle body 1, and the handrail 101 is made of alloy material. The handrail 101 facilitates the staff to move the entire device. A controller 102 is fixed on the right side of the handrail 101, and the controller 102 is used to control the entire device. A device, a power supply 103 is fixed on the right side of the controller 102, and the power supply 103 provides the required energy for the entire device. A cable drum positioning plate 4 is also fixed on the right side of the armrest 101, and the cable drum positioning plate 4 is made of alloy material. The cable drum positioning plate 4 is used to position the cable drum 401, and the cable drum positioning plate 4 is connected to the cable drum 401 through a rotating shaft. The cable drum 401 is made of alloy material, and the cable drum 401 is used to wind the cable 402. The cable drum 401 is wound with a cable 402. A plurality of lifting rods 5 are also fixed on the upper surface of the vehicle body 1, and the lifting rods 5 are retractable, thereby driving the lifting plate 501 to move up and down. Due to the action of the plurality of lifting rods 5 The stability of the jacking plate 501 can be ensured. A jacking plate 501 is fixed on the top of the plurality of jacking rods 5. The jacking plate 501 is made of alloy material. The jacking plate 501 is used to support the pulley positioning plate 6. A pulley 601 is provided on the top of the jacking plate 501. The pulley 601 is made of alloy material. The pulley 601 can facilitate the movement of the cable 402. A clamping rod 8 is provided on the left side of the pulley 601. The clamping rod 8 is made of alloy material. The clamping rod 8 is used to position the clamping main ring 801 and the clamping secondary ring 802. A clamping main ring 801 is provided on the top of the clamping rod 8. The clamping main ring 801 is made of alloy material. A clamping secondary ring 802 is provided at the rear of the clamping main ring 801.The clamping secondary ring 802 is made of alloy material, the clamping main ring 801 and the clamping secondary ring 802 cooperate to clamp the cable 402, a cutting knife moving rod 7 is fixed on the left side of the clamping rod 8, the cutting knife moving rod 7 is retractable, so as to drive the cutting main knife 702 and the cutting secondary knife 703 to move, the left end of the cutting knife moving rod 7 is rotatably connected with the cutting main knife 702 through a rotating shaft, the cutting main knife 702 is made of alloy material, the front end of the cutting main knife 702 is provided with a cutting secondary knife 703, the cutting secondary knife 703 is made of alloy material, the cutting main knife 702 and the cutting secondary knife 703 cooperate to cut the cable 402, and the cutting secondary knife 703 is rotatably connected with the cutting knife moving rod 7 through a rotating shaft.
[0024] Embodiment 2, based on embodiment 1, Figure 3 , Figure 5It is given that a plurality of groups of stabilizing blocks 3 are fixed around the vehicle body 1, and the stabilizing blocks 3 are made of alloy material. The stabilizing blocks 3 are used to position the stabilizing shaft 306. Each group of the stabilizing blocks 3 is internally rotatably connected with a stabilizing shaft 306, and the stabilizing shaft 306 is made of alloy material. The stabilizing shaft 306 is used to position the stabilizing plate 301. Each stabilizing shaft 306 is fixedly connected to the stabilizing plate 301 therein, and one end of each stabilizing shaft 306 is rotatably connected with a stabilizing motor 302, and the stabilizing motor 302 can drive the stabilizing shaft 306 at one end thereof to rotate, and each stabilizing motor 302 is fixedly connected to the stabilizing block 3 at one end thereof, and a stabilizing rod 303 is fixedly connected to the bottom of each stabilizing plate 301. 303 is retractable, thereby driving the stabilizing head 304 to move, each of the stabilizing rods 303 is fixedly connected to the stabilizing head 304 at its bottom, and a stabilizing retractor 305 is also fixed at the bottom of each stabilizing plate 301, and the stabilizing retractor 305 can drive the stabilizing rod 303 at its bottom to retract, and a cable positioning ring 403 is also fixed on the top of the vehicle body 1, and the cable positioning ring 403 is made of alloy material, and the cable positioning ring 403 is used to position the cable 402, and the cable positioning ring 403 is slidably connected to the cable 402, and a cable reel rotating sub-gear 404 is fixed at the front end of the rotating shaft of the cable reel 401, and the cable reel rotating sub-gear 404 can drive the cable reel 401 to rotate, and the cable reel rotating The movable sub-gear 404 is meshedly connected with the cable drum rotating main gear 405, and the cable drum rotating main gear 405 can drive the cable drum rotating sub-gear 404 to rotate. The rear part of the cable drum rotating main gear 405 is rotatably connected with the cable drum motor 406, and the cable drum motor 406 can drive the cable drum rotating main gear 405 to rotate. The cable drum motor 406 is fixedly connected to the cable drum positioning plate 4. A jacking controller 502 is also fixed on the upper surface of the vehicle body 1, and the jacking controller 502 can drive the jacking rod 5 on its left side to extend and retract. A clamping camera 503 is fixed on the top of the jacking plate 501, and the clamping camera 503 can monitor the clamping condition of the clamping main ring 801. The top of the jacking plate 501 is also fixed A pulley positioning plate 6 is fixed, the pulley positioning plate 6 is made of alloy material, the pulley positioning plate 6 is used to position the pulley 601, the pulley positioning plate 6 is rotatably connected to the pulley 601 through a rotating shaft, a cable positioning plate 602 is fixed on the top of the pulley 601, the cable positioning plate 602 is made of alloy material, the cable positioning plate 602 is used to position the cable 402, a cable monitoring camera 603 is fixed on the top of the cable positioning plate 602, the cable monitoring camera 603 can monitor the cable 402, so as to ensure the horizontality of the cable 402, the pulley 601 is slidably connected to the cable 402, the clamping rod 8 is rotatably connected to the clamping main ring 801 through a rotating shaft,A clamping sub-gear 803 is fixed on the left side of the clamping main ring 801 through a rotating shaft, and the clamping sub-gear 803 can drive the clamping main ring 801 to rotate. The clamping sub-gear 803 is meshedly connected with a clamping main gear 804, and the clamping main gear 804 can drive the clamping sub-gear 803 to rotate. The left side of the clamping main gear 804 is rotatably connected with a clamping motor 805, and the clamping motor 805 can drive the clamping main gear 804 to rotate and the clamping sub-ring 802 to rotate at the same time. The clamping motor 805 is fixedly connected to the wire clamping rod 8, and the right side of the clamping main gear 804 is fixedly connected to the clamping sub-ring 802 through a rotating shaft. A cutting knife movement controller 701 is also fixed on the left side of the wire clamping rod 8. The motion controller 701 can drive the cutting knife moving rod 7 to extend and retract. A cutting sub-gear 704 is fixed at the bottom of the cutting sub-knife 703 through a rotating shaft. The cutting sub-gear 704 can drive the cutting sub-knife 703 to rotate. The cutting sub-gear 704 is meshedly connected with a cutting main gear 705. The cutting main gear 705 can drive the cutting sub-gear 704 to rotate and can also drive the cutting main knife 702 to rotate. The top of the cutting main gear 705 is fixedly connected to the cutting main knife 702 through a rotating shaft. The bottom of the cutting main gear 705 is rotatably connected to a cutting motor 706 through a rotating shaft. The cutting motor 706 can drive the cutting main gear 705 to rotate. The cutting motor 706 is fixedly connected to the cutting knife moving rod 7;
[0025] When using the device, the staff drives the plurality of universal wheels 202 to rotate through the handrail 101, thereby driving the entire device to move. The staff further fixes the cable 402 at the desired installation location, and further controls the handrail 101 to move the entire device. At this time, the controller 102 controls the cable drum motor 406 to work, thereby driving the cable drum rotation main gear 405 to rotate, thereby driving the cable drum rotation sub-gear 404 to rotate, thereby driving the cable drum 401 to rotate, thereby loosening the cable 402. When the entire device moves to the next fixed point, the staff controls the universal wheel locker 203 to lock the universal wheel 202, and further the controller 102 The plurality of stabilizing motors 302 are controlled to work, thereby driving the plurality of stabilizing shafts 306 to rotate, and then driving the plurality of stabilizing plates 301 to rotate, thereby driving the plurality of stabilizing heads 304 to rotate. When the angle between the stabilizing head 304 and the ground is the required angle, the controller 102 controls the plurality of stabilizing retractors 305 to work, thereby driving the plurality of stabilizing rods 303 to extend, thereby driving the plurality of stabilizing heads 304 to move downward, so that the plurality of stabilizing heads 304 are inserted into the ground, thereby ensuring the stability of the entire device. Further, the controller 102 controls the lifting controller 502 to work, thereby driving the plurality of lifting rods 5 to extend and retract, thereby driving the lifting plate 501 to move up and down. The cable 402 is moved, and the cable monitoring camera 603 can monitor the horizontality of the cable 402. At this time, the cable 402 can slide along the pulley 601. When the cable monitoring camera 603 detects that the cable 402 is parallel to the second fixed point, the controller 102 controls the cable drum motor 406 to work in the reverse direction, and controls the lifting controller 502 to stop working, so that the cable 402 is reversely wound, so that the cable 402 is taut. When the cable monitoring camera 603 detects that the cable 402 is horizontal, the controller 102 controls the clamping motor 805 to work, thereby driving the clamping main gear 804 to work, thereby driving the clamping sub-gear 80 3 rotates, thereby driving the clamping main ring 801 and the clamping sub-ring 802 to rotate, thereby clamping the cable 402. When it is necessary to cut the cable 402, the controller 102 controls the cutting knife movement controller 701 to work, thereby driving the cutting knife movement rod 7 to extend, thereby driving the cutting sub-knife 703 and the cutting main knife 702 to move leftward, and further the controller 102 controls the cutting motor 706 to work, thereby driving the cutting main gear 705 to work, thereby driving the cutting sub-gear 704 to rotate, thereby driving the cutting main knife 702 and the cutting sub-knife 703 to rotate, thereby cutting the cable 402, thereby completing the installation of the cable 402.
[0026] The working process of the utility model is as follows: when using the device, the staff drives the plurality of universal wheels 202 to rotate through the handrail 101, thereby driving the entire device to move, and further the staff fixes the cable 402 at the desired installation location, and further the staff controls the handrail 101 to move the entire device, at which time the controller 102 controls the cable drum motor 406 to work, thereby driving the cable drum rotation main gear 405 to rotate, thereby driving the cable drum rotation sub-gear 404 to rotate, thereby driving the cable drum 401 to rotate, thereby loosening the cable 402, and when the entire device moves to the next fixed point, the staff controls the universal wheel locker 203 to lock the universal wheel 202, and further The controller 102 controls the plurality of stabilizing motors 302 to work, thereby driving the plurality of stabilizing shafts 306 to rotate, and then driving the plurality of stabilizing plates 301 to rotate, thereby driving the plurality of stabilizing heads 304 to rotate. When the angle between the stabilizing head 304 and the ground is the required angle, the controller 102 controls the plurality of stabilizing retractors 305 to work, thereby driving the plurality of stabilizing rods 303 to extend, thereby driving the plurality of stabilizing heads 304 to move downward, thereby allowing the plurality of stabilizing heads 304 to be inserted into the ground, thereby ensuring the stability of the entire device. Further, the controller 102 controls the lifting controller 502 to work, thereby driving the plurality of lifting rods 5 to extend and retract, thereby driving the lifting plates 501 moves up and down, at this time the cable monitoring camera 603 can monitor the horizontality of the cable 402, at this time the cable 402 can slide along the pulley 601, when the cable monitoring camera 603 detects that the cable 402 is parallel to the second fixed point, the controller 102 controls the cable drum motor 406 to work in the reverse direction, and controls the lifting controller 502 to stop working, so that the cable 402 is reversely wound, so that the cable 402 is taut, when the cable monitoring camera 603 detects that the cable 402 is horizontal, the controller 102 controls the clamping motor 805 to work, thereby driving the clamping main gear 804 to work, thereby driving the clamping auxiliary gear The wheel 803 rotates, thereby driving the clamping main ring 801 and the clamping sub-ring 802 to rotate, thereby clamping the cable 402. When the cable 402 needs to be cut, the controller 102 controls the cutting knife movement controller 701 to work, thereby driving the cutting knife movement rod 7 to extend, thereby driving the cutting sub-knife 703 and the cutting main knife 702 to move to the left. Further, the controller 102 controls the cutting motor 706 to work, thereby driving the cutting main gear 705 to work, thereby driving the cutting sub-gear 704 to rotate, thereby driving the cutting main knife 702 and the cutting sub-knife 703 to rotate, thereby cutting the cable 402, thereby completing the installation of the cable 402.
[0027] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0028] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cable laying device for building mechanical and electrical installation, characterized in that: The vehicle comprises a vehicle body (1), wherein a plurality of support rods (2) are fixed at the bottom of the vehicle body (1), a roller positioning plate (201) is slidably connected at the bottom of each support rod (2), a universal wheel (202) is rotatably connected inside each roller positioning plate (201), a universal wheel (202) is provided outside each universal wheel (202), a plurality of stabilizing plates (301) are provided around the vehicle body (1), a stabilizing head (304) is provided at the bottom of each stabilizing plate (301), an armrest (101) is fixed at the top of the vehicle body (1), a controller (102) is fixed at the right side of the armrest (101), a power supply (103) is fixed at the right side of the controller (102), a cable drum positioning plate (4) is also fixed at the right side of the armrest (101), a cable drum positioning plate (4) is rotatably connected inside the cable drum positioning plate (4) via a rotating shaft A cable drum (401) is provided, wherein a cable (402) is wound inside the cable drum (401), a plurality of lifting rods (5) are fixed on the upper surface of the vehicle body (1), a lifting plate (501) is fixed on the top of the plurality of lifting rods (5), a pulley (601) is provided on the top of the lifting plate (501), a wire clamping rod (8) is provided on the left side of the pulley (601), a clamping main ring (801) is provided on the top of the wire clamping rod (8), a clamping secondary ring (802) is provided at the rear of the clamping main ring (801), a cutting knife moving rod (7) is fixed on the left side of the wire clamping rod (8), a left end of the cutting knife moving rod (7) is rotatably connected to a cutting main knife (702) via a rotating shaft, a cutting secondary knife (703) is provided at the front end of the cutting main knife (702), and the cutting secondary knife (703) is rotatably connected to the cutting knife moving rod (7) via a rotating shaft.
2. A cable laying device for building mechanical and electrical installation according to claim 1, characterized in that: A plurality of groups of stabilizing blocks (3) are fixed around the vehicle body (1); each group of stabilizing blocks (3) is rotatably connected to a stabilizing shaft (306) inside; each stabilizing shaft (306) is fixedly connected to the stabilizing plate (301) inside it; one end of each stabilizing shaft (306) is rotatably connected to a stabilizing motor (302); each stabilizing motor (302) is fixedly connected to the stabilizing block (3) at one end thereof; a stabilizing rod (303) is fixedly connected to the bottom of each stabilizing plate (301); each stabilizing rod (303) is fixedly connected to the stabilizing head (304) at the bottom thereof; and a stabilizing retractor (305) is also fixedly connected to the bottom of each stabilizing plate (301).
3. A cable laying device for building mechanical and electrical installation according to claim 2, characterized in that: A cable positioning ring (403) is also fixed on the top of the vehicle body (1), and the cable positioning ring (403) is slidably connected to the cable (402). A cable drum rotating sub-gear (404) is fixed to the front end of the rotating shaft of the cable drum (401), and the cable drum rotating sub-gear (404) is meshingly connected to a cable drum rotating main gear (405). The rear part of the cable drum rotating main gear (405) is rotatably connected to a cable drum motor (406), and the cable drum motor (406) is fixedly connected to the cable drum positioning plate (4).
4. A cable laying device for building mechanical and electrical installation according to claim 3, characterized in that: A lifting controller (502) is also fixed on the upper surface of the vehicle body (1); a clamping camera (503) is fixed on the top of the lifting plate (501); a pulley positioning plate (6) is also fixed on the top of the lifting plate (501); the pulley positioning plate (6) is rotatably connected to the pulley (601) via a rotating shaft; a cable positioning plate (602) is fixed on the top of the pulley (601); a cable monitoring camera (603) is fixed on the top of the cable positioning plate (602); and the pulley (601) is slidably connected to the cable (402).
5. The cable laying equipment for building mechanical and electrical installation according to claim 1, characterized in that: The inside of the clamping rod (8) is rotatably connected to the clamping main ring (801) via a rotating shaft. A clamping sub-gear (803) is fixed to the left side of the clamping main ring (801) via a rotating shaft. The clamping sub-gear (803) is meshingly connected to a clamping main gear (804). A clamping motor (805) is rotatably connected to the left side of the clamping main gear (804). The clamping motor (805) is fixedly connected to the clamping rod (8). The right side of the clamping main gear (804) is fixedly connected to the clamping sub-ring (802) via a rotating shaft. A cutting knife moving controller (701) is also fixed to the left side of the wire clamping rod (8); a cutting auxiliary gear (704) is fixed to the bottom of the cutting auxiliary knife (703) via a rotating shaft; the cutting auxiliary gear (704) is meshedly connected to a cutting main gear (705); the top of the cutting main gear (705) is fixedly connected to the cutting main knife (702) via a rotating shaft; the bottom of the cutting main gear (705) is rotatably connected to a cutting motor (706) via a rotating shaft; and the cutting motor (706) is fixedly connected to the cutting knife moving rod (7).
Citation Information
Cited By
Cable erecting equipment for building mechanical and electrical installation
CN224438372U