A traffic facility maintenance device
By designing a traffic facility maintenance device that includes a handheld pole, an electric telescopic pole, and a clamping head, the problem of inaccurate disposal of garbage at heights has been solved, achieving a fast and precise garbage cleaning effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HEFEI GELYU INFORMATION TECH CO LTD
- Filing Date
- 2022-09-19
- Publication Date
- 2026-04-17
AI Technical Summary
Existing traffic facility maintenance equipment is difficult to handle quickly and accurately when operating at heights, increasing the difficulty of operation.
A traffic facility maintenance device was designed, comprising a handheld rod, a connecting shaft, an electric telescopic rod, a support plate, a clamping head, and a probe body. The device controls the movement of the probe and the precise operation of the clamping head via a motor, and displays the operating position on a monitor to achieve precise clamping and cleaning.
It enables rapid and accurate waste disposal when operating at heights, reducing operational difficulty and improving work efficiency.
Smart Images

Figure CN115579789B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of traffic facility maintenance technology, specifically a traffic facility maintenance device. Background Technology
[0002] Traffic facilities require regular maintenance and protection during their use. Many traffic facilities are located in high places, which makes maintenance very inconvenient and difficult for staff. For example, when cleaning up debris on the top of utility poles and on power lines, it is necessary to use an insulated operating rod.
[0003] However, due to the distance, staff cannot quickly and accurately process the waste when operating the existing levers, which increases the difficulty of the operation. Summary of the Invention
[0004] (a) Technical problems to be solved
[0005] To address the shortcomings of existing technologies, this invention provides a traffic facility maintenance device that solves the problem that, due to distance constraints, workers cannot quickly and accurately process waste when operating with existing levers, thus increasing the difficulty of operation.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, the present invention provides the following technical solution: a traffic facility maintenance device, comprising a handheld pole, several first connecting shafts and second connecting shafts. The end of the handheld pole is provided with a fixedly connected connecting rod, and the end of the connecting rod is mounted with a fixedly connected support plate. A fixedly connected base is located in the middle of one side of the support plate. An electric telescopic pole is mounted on the base. The output end of the electric telescopic pole is provided with a fixedly connected short rod. Both ends of the short rod are provided with long rods. The two ends of the short rod are respectively rotatably connected to one end of each of the two long rods via first connecting shafts. The other ends of each of the two long rods are provided with triangular rods, each triangular rod having a first end angle, a second end angle, and a third end angle. The other end of each long rod is rotatably connected to the first end angle of the triangular rod via a first connecting shaft. Two first swing arms symmetrically distributed about the electric telescopic pole are located in the middle of one side of the support plate. One end of each first swing arm is rotatably connected to the support plate via a first connecting shaft, and the middle of each first swing arm is rotatably connected to the second end angle of the triangular rod via a first connecting shaft. Two second swing arms symmetrically distributed about the electric telescopic pole are located in the middle of one side of the support plate. One end of the second swing arm is rotatably connected to the support plate via a first connecting shaft. Two third swing arms, symmetrically distributed about the electric telescopic rod, are located at the end of the other side of the support plate. One end of each third swing arm is rotatably connected to the support plate via a first connecting shaft. Two fourth swing arms, symmetrically distributed about the electric telescopic rod, are located in the middle of the other side of the support plate. One end of each fourth swing arm is rotatably connected to the support plate via a first connecting shaft. A connecting rod is provided between each of the first and third swing arms on the same side. One end of each connecting rod is connected to the first connecting shaft... The first and third pendulum rods are rotatably connected. The other end of the connecting rod is rotatably connected to the adjacent second and fourth pendulum rods via a first connecting shaft. The other ends of the two first pendulum rods are provided with clamping heads, and the two clamping heads are located between the first and second pendulum rods. The other ends of the first pendulum rods, the third end of the triangular rod, the other end of the third pendulum rod, and the clamping heads are rotatably connected via the first connecting shaft. The other ends of the second and fourth pendulum rods and the clamping heads are rotatably connected via the first connecting shaft.
[0008] Preferably, the end of the connecting rod is provided with a bottom frame, and the bottom frame is provided with a first support rod and a second support rod. The end of the first support rod is equipped with a first motor. The output end of the first motor passes through the end of the first support rod and is provided with a first folding rod that is fixedly connected. The end of the first folding rod located on the side away from the first motor is provided with a second folding rod that is rotatably connected. The end of the second folding rod located on the side away from the first folding rod is provided with a probe body. The end of the second folding rod is rotatably connected to the probe body through a second connecting shaft. The end of the second support rod is equipped with a second motor. The end of the second motor passes through the second support rod and is provided with a U-shaped rod that is fixedly connected. The two ends of the U-shaped rod are respectively rotatably connected to the probe body through the second connecting shaft.
[0009] Preferably, the central axis of the connecting shaft between the second folding rod and the probe body is on the same straight line as the central axis of the output end of the second motor.
[0010] Preferably, the surface of the handheld handle is provided with an insulating layer and an anti-slip layer.
[0011] Preferably, a collar is provided between the handheld rod and the connecting rod, and the collar is made of insulating material.
[0012] Preferably, the connecting rod is an adjustable telescopic rod.
[0013] Preferably, the end of the handheld rod located away from the connecting rod is provided with a rod seat, and the rod seat is provided with multiple adjustment switches, which are respectively connected to the first motor, the second motor and the electric telescopic rod circuit.
[0014] (III) Beneficial Effects
[0015] This invention provides a traffic facility maintenance device that effectively solves the problem that, due to distance constraints, workers cannot quickly and accurately process garbage when operating with existing control levers, thus increasing the difficulty of operation. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of the device of the present invention;
[0017] Figure 2 This is a diagram showing the connection between the support plate and the electric telescopic rod of the present invention.
[0018] Figure 3 This is a diagram showing the connection between the support plate and the clamping head of the present invention;
[0019] Figure 4 This is a three-dimensional structural diagram of the support plate of the present invention;
[0020] Figure 5 This is a structural diagram of the internal structure of the bottom frame of the present invention.
[0021] The components include: 1. Handheld rod; 2. Collar; 3. Connecting rod; 4. Rod base; 501. Support plate; 502. Base; 503. Electric telescopic rod; 504. Short rod; 505. Long rod; 506. Triangular rod; 507. First swing rod; 508. Second swing rod; 509. Linkage rod; 510. First connecting shaft; 511. Clamping head; 512. Third swing rod; 513. Fourth swing rod; 601. Base frame; 602. First support rod; 603. First motor; 604. First folding rod; 605. Second folding rod; 606. Probe body; 607. Second support rod; 608. Second motor; 609. U-shaped rod. Detailed Implementation
[0022] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0023] Example
[0024] like Figure 1-5As shown, this embodiment of the invention provides a traffic facility maintenance device, including a handheld lever 1, several first connecting shafts 510 and second connecting shafts. The end of the handheld lever 1 is provided with a fixedly connected connecting rod 3. The end of the connecting rod 3 is mounted with a fixedly connected support plate 501. A fixedly connected base 502 is provided in the middle of one side of the support plate 501. An electric telescopic rod 503 is mounted on the base 502. The output end of the electric telescopic rod 503 is provided with a fixedly connected short rod 504. Both ends of the short rod 504 are provided with long rods 505. The two ends of the short rod 504 are rotatably connected to one end of each of the two long rods 505 via the first connecting shafts 510. The other ends of each of the two long rods 505 are provided with triangular rods 506, each triangular rod 506 having a first end angle, a second end angle, and... At the third end, the other end of the long rod 505 is rotatably connected to the first end of the triangular rod 506 via the first connecting shaft 510. Two first swing rods 507, symmetrically distributed about the electric telescopic rod 503, are provided on one side of the support plate 501. One end of each first swing rod 507 is rotatably connected to the support plate 501 via the first connecting shaft 510. The middle of each first swing rod 507 is rotatably connected to the second end of the triangular rod 506 via the first connecting shaft 510. Two second swing rods 508, symmetrically distributed about the electric telescopic rod 503, are provided on the middle of one side of the support plate 501. One end of each second swing rod 508 is rotatably connected to the support plate 501 via the first connecting shaft 510. Two second swing rods 508, symmetrically distributed about the electric telescopic rod 503, are provided on the other side of the support plate 501. Three swing arms 512, one end of the third swing arm 512 is rotatably connected to the support plate 501 via the first connecting shaft 510. Two fourth swing arms 513 are symmetrically distributed about the electric telescopic rod 503 on the other side of the support plate 501. One end of each fourth swing arm 513 is rotatably connected to the support plate 501 via the first connecting shaft 510. A connecting rod 509 is provided between the first swing arm 507 and the third swing arm 512 on the same side. One end of the connecting rod 509 is rotatably connected to both the first swing arm 507 and the third swing arm 512 via the first connecting shaft 510, and the other end of the connecting rod 509 is rotatably connected to the adjacent second swing arm and fourth swing arm 513 via the first connecting shaft 510. A clamping head 511 is provided at the other end of each of the two first swing arms 507. Both gripping heads 511 are located between the first swing arm 507 and the second swing arm 508. The other end of the first swing arm 507, the third end of the triangular rod 506, the other end of the third swing arm 512, and the gripping head 511 are rotatably connected by the first connecting shaft 510. The other end of the second swing arm 508, the other end of the fourth swing arm 513, and the gripping head 511 are also rotatably connected by the first connecting shaft 510. The electric telescopic rod 503 drives the short rod 504 to move up and down. The short rod 504 controls the movement of the end of the long rod 505 connected to it, thereby controlling the movement of the triangular rod 506 through the long rod 505. The triangular rod 506 controls the movement of one of the first swing arms 507 and one of the second swing arms 508. The linkage rod 509 is also involved.This allows the two first swing arms 507, two second swing arms 508, two third swing arms 512, and two fourth swing arms 513 to move simultaneously, thereby controlling the clamping operation of the gripper head 511. The entire operation is simple and can achieve precise clamping.
[0025] As a further embodiment, the end of the connecting rod 3 is provided with a base frame 601, and the base frame 601 is provided with a first support rod 602 and a second support rod 607. A first motor 603 is installed at the end of the first support rod 602. The output end of the first motor 603 passes through the end of the first support rod 602 and is provided with a first folding rod 604 fixedly connected. The end of the first folding rod 604 located on the side away from the first motor 603 is provided with a second folding rod 605 rotatably connected. The end of the second folding rod 605 located on the side away from the first folding rod 604 is provided with a probe body 606. The probe body 606 is rotatably connected to the second connecting shaft. The end of the second support rod 607 is equipped with a second motor 608. The end of the second motor 608 passes through the second support rod 607 and is fixedly connected to a U-shaped rod 609. The two ends of the U-shaped rod 609 are rotatably connected to the probe body 606 through the second connecting shaft. The probe body 606 is moved up and down and left and right by the first motor 603 and the second motor 608. The image captured by the probe body 606 is then displayed on the electrically connected display, so that the operator can accurately see the condition of the operating part.
[0026] As a further embodiment, the central axis of the connecting shaft connecting the second folding rod 605 and the probe body 606 is on the same straight line as the central axis of the output end of the second motor 608, thereby allowing for more precise control of the direction of the probe body 606.
[0027] As a further embodiment, the surface of the handheld rod 1 is provided with an insulating layer and an anti-slip layer to eliminate safety hazards.
[0028] As a further embodiment, a collar 2 is provided between the handheld rod 1 and the connecting rod 3. The collar 2 is made of insulating material to avoid safety hazards during operation.
[0029] As a further embodiment, the connecting rod 3 is an adjustable telescopic rod, which facilitates adjustment of the device's length.
[0030] As a further embodiment, a rod base 4 is provided at the end of the handheld rod 1 located away from the connecting rod 3. Multiple adjustment switches are provided on the rod base 4, and these switches are respectively connected to the circuitry of the first motor 603, the second motor 608, and the electric telescopic rod 503. This facilitates the operator's control of the first motor 603, the second motor 608, and the electric telescopic rod 503.
[0031] As a further embodiment, the pole base 4 is equipped with a display, which is electrically connected to the probe body 606 to facilitate viewing by staff.
[0032] Working principle: In use, the first motor 603 and the second motor 608 control the up-down and left-right movement of the probe body 606. The image captured by the probe body 606 is then displayed on the electrically connected display, allowing the operator to accurately see the situation of the operating part. The electric telescopic rod 503 drives the short rod 504 to move up and down. The short rod 504 controls the movement of the end of the long rod 505 connected to it, thereby controlling the movement of the triangular rod 506 through the long rod 505. The triangular rod 506 controls the movement of one of the first swing rods 507 and one of the second swing rods 508. Through the setting of the linkage rod 509, the two first swing rods 507, the two second swing rods 508, the two third swing rods 512, and the two fourth swing rods 513 move simultaneously, thereby controlling the clamping operation of the gripper head 511. The whole operation is simple and can achieve precise clamping.
[0033] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
Claims
1. A traffic facility maintenance device, characterized by, The device includes a handheld lever (1), several first connecting shafts (510), and second connecting shafts. The end of the handheld lever (1) is provided with a fixedly connected connecting rod (3). The end of the connecting rod (3) is fitted with a fixedly connected support plate (501). A fixedly connected base (502) is located in the middle of one side of the support plate (501). An electric telescopic rod (503) is mounted on the base (502). The output end of the electric telescopic rod (503) is provided with a fixedly connected short rod (504). Both ends of the short rod (504) are provided with long rods (505). The two ends of the short rod (504) are rotatably connected to one end of each of the two long rods (505) via the first connecting shafts (510). The other end of each long rod (505) is provided with a triangular rod (506), the triangular rod (506) having a first end angle, a second end angle, and a third end angle. The other end of the long rod (505) is rotatably connected to the first end angle of the triangular rod (506) via a first connecting shaft (510). Two first swing rods (507) are symmetrically distributed about the electric telescopic rod (503) at one end of the support plate (501). One end of each first swing rod (507) is rotatably connected to the support plate (501) via a first connecting shaft (510), and the middle of each first swing rod (507) is rotatably connected to the second end angle of the triangular rod (506) via a first connecting shaft (510). The support plate (501)... Two second swing arms (508) are symmetrically distributed about the electric telescopic rod (503) at the center of one side. One end of the second swing arms (508) is rotatably connected to the support plate (501) via a first connecting shaft (510). Two third swing arms (512) are symmetrically distributed about the electric telescopic rod (503) at the end of the other side of the support plate (501). One end of the third swing arms (512) is rotatably connected to the support plate (501) via a first connecting shaft (510). Two fourth swing arms (513) are symmetrically distributed about the electric telescopic rod (503) at the center of the other side of the support plate (501). One end of the fourth swing arms (513) is connected to the support plate (501) via a first connecting shaft. (510) is rotatably connected to the support plate (501). A connecting rod (509) is provided between the first swing rod (507) and the third swing rod (512) located on the same side. One end of the connecting rod (509) is rotatably connected to the first swing rod (507) and the third swing rod (512) respectively through the first connecting shaft (510). The other end of the connecting rod (509) is rotatably connected to the adjacent second swing rod and the fourth swing rod (513) respectively through the first connecting shaft (510). The other end of the two first swing rods (507) is provided with a clamping head (511). The two clamping heads (511) are located between the first swing rod (507) and the second swing rod (508).The other end of the first swing arm (507) is rotatably connected to the third end angle of the triangular rod (506) via a first connecting shaft (510). The third end angle of the triangular rod (506) is rotatably connected to the third swing arm (512) via a first connecting shaft (510). The third swing arm (512) is rotatably connected to the clamping head (511) via a first connecting shaft (510). The other end of the second swing arm (508) is rotatably connected to the other end of the fourth swing arm (513) via a first connecting shaft (510). The other end of the fourth swing arm (513) is rotatably connected to the clamping head (511) via a first connecting shaft (510).
2. A traffic facility maintenance device according to claim 1, characterized in that The end of the connecting rod (3) is provided with a base frame (601), and the base frame (601) is provided with a first support rod (602) and a second support rod (607). A first motor (603) is installed at the end of the first support rod (602). The output end of the first motor (603) passes through the end of the first support rod (602) and is provided with a first folding rod (604) fixedly connected. The end of the first folding rod (604) located away from the first motor (603) is provided with a second folding rod (605) rotatably connected. A probe body (606) is provided at the end of the second folding rod (605) on one side of the folding rod (604). The end of the second folding rod (605) is rotatably connected to the probe body (606) through a second connecting shaft. A second motor (608) is installed at the end of the second support rod (607). The end of the second motor (608) passes through the second support rod (607) and is provided with a fixedly connected U-shaped rod (609). The two ends of the U-shaped rod (609) are respectively rotatably connected to the probe body (606) through the second connecting shaft.
3. A traffic facility maintenance device according to claim 2, characterized in that The central axis of the second connecting shaft connecting the second folding rod (605) and the probe body (606) is on the same straight line as the central axis of the output end of the second motor (608).
4. The traffic facility maintenance device according to claim 1, characterized in that: The surface of the handheld lever (1) is provided with an insulating layer and an anti-slip layer.
5. The apparatus for maintaining a traffic facility according to claim 1, wherein: A collar (2) is provided between the handheld rod (1) and the connecting rod (3), and the collar (2) is made of insulating material.
6. The apparatus of claim 1, wherein: The connecting rod (3) is an adjustable telescopic rod.
7. The apparatus of claim 2, wherein: The end of the handheld rod (1) located away from the connecting rod (3) is provided with a rod seat (4), and the rod seat (4) is provided with a plurality of adjustment switches, which are respectively connected to the first motor (603), the second motor (608) and the electric telescopic rod (503).
Citation Information
Patent Citations
High-voltage transmission line ground wire operation device
CN113394710A
Automobile pipe fitting of convenient operation uses towards arc machine
CN206392672U