Auxiliary tool for high-altitude drilling installation
By designing auxiliary tooling to support the main rod, telescopic secondary rod and drilling assembly, the problems of low drilling efficiency and dust influence at high places are solved, and efficient and accurate drilling operations are achieved.
Patent Information
- Application Number
- CN202422079490.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The existing high-level drilling installation tools are inefficient, and personnel need to repeatedly go up and down the working frame. The shaking of the drilling equipment affects the quality and dust affects the line of sight.
An auxiliary tooling including supporting main rod, telescopic secondary rod and drilling assembly is designed. The drilling depth is adjusted using an electric telescopic rod, equipped with a laser emission head and fill light for positioning, a debris collection frame and a vacuum cleaner are set, and a self-locking universal caster is used to facilitate movement.
Improve drilling efficiency, ensure drilling quality, reduce dust interference, adapt to construction of different heights, and facilitate movement and positioning.
Smart Images

Figure CN223058064U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary tools, and particularly relates to an auxiliary tooling for high-place drilling installation. Background Technique
[0002] During the installation of building ventilation duct supports and ceiling supports at the construction site of a building project, tools are required to drill holes in the installation wall surface so as to fix objects such as supports on the ceiling.
[0003] When using the existing auxiliary tools for high-place drilling installation, generally, operation platforms such as portal movable scaffolds are used to support personnel to work at heights. During the process, personnel need to repeatedly go up and down the operation scaffold to complete drilling, with low efficiency. Moreover, during the drilling process, personnel stand at a height and hold the drilling equipment at the same time, which easily causes the drilling equipment to shake, affecting the drilling quality. In addition, a large amount of dust is generated during drilling, which is easy to stick to the personnel, and at the same time, the large amount of dust will affect the construction vision. Content of the Utility Model
[0004] The main purpose of the utility model is to provide an auxiliary tooling for high-place drilling installation, which can effectively solve the problems in the background technique that drilling can only be completed by repeatedly going up and down the operation scaffold, with low efficiency, and personnel stand at a height and hold the drilling equipment at the same time, which easily causes the drilling equipment to shake, affecting the drilling quality, and the large amount of dust will affect the construction vision.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0006] An auxiliary tooling for high-place drilling installation includes a main support rod, and a telescopic auxiliary rod is movably installed through the top end of the main support rod. A drilling assembly is arranged at the top end of the telescopic auxiliary rod.
[0007] The drilling assembly has a movable frame, and the movable frame is slidably installed at a position above the outer circle of the telescopic auxiliary rod. One side of the movable frame is installed with an electric drill body through a fixing ring. The top end of the electric drill body is provided with the electric drill body. A laser emitting head is movably installed at a position above one side of the electric drill body. Supplementary lights are installed at the front and rear ends of the movable frame through buckles. An electric telescopic rod is installed on the outer circle of the telescopic auxiliary rod and on the side far away from the electric drill body through a support plate. The end of the push rod of the electric telescopic rod is connected to the bottom end of the movable frame.
[0008] As a further scheme of the utility model, the electric drill body is detachably connected to the movable frame through a fixing ring, and the bottom end of the movable frame does not contact the support plate.
[0009] As a further solution of the utility model, a debris collection frame is slidably installed on the outer circle of the telescopic secondary rod and below the drill bit. Locking nuts are threadedly connected to the outer circle of the telescopic secondary rod at positions near the upper and lower ends of the debris collection frame, and the opposite surfaces of the two locking nuts are attached to the upper and lower ends of the debris collection frame.
[0010] As a further solution of the utility model, the top end of the debris collection frame is fixedly connected with an adsorption port, and a connecting pipe is connected to one side position at the bottom end of the adsorption port.
[0011] As a further solution of the utility model, an adjusting nut is threadedly connected through the upper position on the side of the support main rod away from the electric drill body. A number of adjusting threaded holes that are threadedly matched with the adjusting nut are provided through the side of the telescopic secondary rod near the adjusting nut, and the number of adjusting threaded holes is arranged at equal intervals on the telescopic secondary rod.
[0012] As a further solution of the utility model, a number of mounting plates are installed on the outer circle of the support main rod at a lower position through a number of mounting bolts, and self-locking universal casters are installed at the bottom ends of the mounting plates.
[0013] As a further solution of the utility model, the number of mounting plates is arranged at equal intervals on the outer circle of the support main rod, and the mounting plates are detachably connected to the support main rod through mounting bolts. The bottom ends of the number of self-locking universal casters are in the same horizontal plane.
[0014] Compared with the prior art, the utility model has the following beneficial effects:
[0015] By arranging the drilling assembly, self-locking universal casters, support main rod, and telescopic secondary rod to cooperate with each other, during the drilling construction, by fixing the electric drill body on the movable frame and pushing the electric drill body to rise and fall through the electric telescopic rod, it is convenient to drill holes in the ceiling. The process does not require personnel to climb high with the help of tools, and at the same time, there is no need to hold the tool for drilling, which is convenient to improve the construction efficiency;
[0016] And during the use process, by adjusting the extended height of the telescopic secondary rod, it is convenient to adjust the initial height of the electric drill body, with high use flexibility, which is convenient to meet the construction of different heights, and through the self-locking universal casters, it is convenient to move and change positions during the construction operation;
[0017] By setting the laser emitter head in cooperation with the supplementary light, through the laser emitter head for laser positioning and through the supplementary light for supplementary lighting, it is convenient to observe the drilling position in a room with weak light, and through the adsorption port, most of the debris generated by drilling can be collected. At the same time, by connecting the connecting pipe to an external dust suction device, it is convenient to perform dust suction, prevent a large amount of dust from flying at the construction position, and facilitate reducing the interference to the line of sight of personnel. Description of the Drawings
[0018] Figure 1 This is a schematic diagram of the overall structure of an auxiliary tooling for high - altitude drilling and installation of the present utility model;
[0019] Figure 2 This is a cross - sectional view of the connection between the support main rod and the telescopic auxiliary rod in the overall structure of an auxiliary tooling for high - altitude drilling and installation of the present utility model;
[0020] Figure 3 This is a top - view of the connection between the mounting plate and the support main rod in the overall structure of an auxiliary tooling for high - altitude drilling and installation of the present utility model.
[0021] In the figure: 1, support main rod; 2, telescopic auxiliary rod; 3, drilling assembly; 4, movable frame; 5, fixed ring; 6, electric drill body; 7, drill bit; 8, laser emitter; 9, supplementary light; 10, electric telescopic rod; 11, debris collection box; 12, adsorption port; 13, connecting pipe; 14, adjusting nut; 15, mounting plate; 16, mounting bolt; 17, self - locking universal caster. Specific embodiments
[0022] In order to make the technical means, creative features, achieved purposes and effects of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0023] As Figures 1-3 shown, an auxiliary tooling for high - altitude drilling and installation includes a support main rod 1, and a telescopic auxiliary rod 2 is movably installed through the top end of the support main rod 1. A drilling assembly 3 is arranged at the top end of the telescopic auxiliary rod 2;
[0024] The drilling assembly 3 has a movable frame 4, and the movable frame 4 is slidably installed at an upper position on the outer circle of the telescopic auxiliary rod 2. One side of the movable frame 4 is installed with an electric drill body 6 through a fixed ring 5. A drill bit 7 is arranged at the top end of the electric drill body 6. A laser emitter 8 is movably installed at an upper position on one side of the electric drill body 6. Supplementary lights 9 are installed at the front and rear ends of the movable frame 4 through buckles. An electric telescopic rod 10 is installed on the outer circle of the telescopic auxiliary rod 2 and on the side far from the electric drill body 6 through a support plate. The end of the push rod of the electric telescopic rod 10 is connected to the bottom end of the movable frame 4.
[0025] In this embodiment, the electric drill body 6 is detachably connected to the movable frame 4 through the fixed ring 5, and the bottom end of the movable frame 4 does not contact the support plate. By means of the telescopic movement of the push rod of the electric telescopic rod 10 to drive the electric drill body 6 to rise and fall, it is convenient to adjust the drilling depth, and the movable frame 4 does not contact the support plate, avoiding collision during adjustment.
[0026] In this embodiment, a debris collection frame 11 is slidably installed on the outer ring of the telescopic sub-rod 2 and located below the drill bit 7. The outer ring of the telescopic sub-rod 2 and near the upper and lower ends of the debris collection frame 11 are threadedly connected with locking nuts. The opposing surfaces of the two locking nuts are in contact with the upper and lower ends of the debris collection frame 11. The debris collection frame 11 is set up to facilitate the blocking and collection of most of the gravel particles generated by drilling.
[0027] In this embodiment, the top of the debris collection frame 11 is fixedly connected to a suction port 12, and the bottom end of the suction port 12 is connected to a connecting pipe 13 on one side. By connecting the connecting pipe 13 to an external dust suction device, most of the dust generated by the construction can be sucked away, reducing the interference of dust on people's vision.
[0028] In this embodiment, an adjusting nut 14 is threadedly connected to the upper position of the side of the supporting main rod 1 away from the electric drill body 6, and a plurality of adjusting threaded holes matching the threads of the adjusting nut 14 are arranged on the side of the telescopic sub-rod 2 close to the adjusting nut 14, and the plurality of adjusting threaded holes are equidistantly arranged on the telescopic sub-rod 2. According to the actual construction situation on site, the adjusting nut 14 can be unscrewed and the telescopic sub-rod 2 can be pulled out upward. After adjustment, the adjusting nut 14 can be screwed into the adjusting threaded hole on the telescopic sub-rod 2 again, thereby increasing the initial height of the electric drill body 6 until the construction height requirement is met.
[0029] In this embodiment, a plurality of mounting plates 15 are installed at the lower position of the outer ring of the supporting main rod 1 through a plurality of mounting bolts 16, and a self-locking universal caster 17 is installed at the bottom end of the mounting plate 15. The self-locking universal caster 17 is provided to facilitate pushing and moving, thereby solving the problem of moving back and forth during large-area construction operations.
[0030] In this embodiment, a plurality of mounting plates 15 are equidistantly arranged on the outer circle of the supporting main rod 1, and the mounting plates 15 are detachably connected to the supporting main rod 1 through mounting bolts 16. The bottom ends of a plurality of self-locking universal casters 17 are in the same horizontal plane and can be disassembled when not in use for easy transportation.
[0031] It should be noted that the utility model is an auxiliary tooling for high-altitude drilling installation. When in use, first, the electric drill body 6 can be fixed on the movable frame 4 with the help of tools. Since the movable frame 4 is installed on the telescopic auxiliary rod 2, after being fixed, the adjustment nut 14 can be screwed off according to the actual situation of the on-site construction, and the telescopic auxiliary rod 2 can be pulled out upward, so as to increase the initial height of the electric drill body 6 until the construction height requirement is met;
[0032] After the height adjustment is completed, since a number of self-locking universal casters 17 are installed at the bottom end of the supporting main rod 1, the drill bit 7 can be aligned with the position where construction drilling is required by pushing. Then, the electric drill body 6 can be started, and the electric telescopic rod 10 can be started. The drill bit 7 is driven by the electric drill body 6 to rotate to play a role in drilling. By means of the telescopic movement of the push rod of the electric telescopic rod 10 to drive the electric drill body 6 to rise and fall, the drilling depth can be adjusted. After drilling a hole, the position can be changed according to the above steps until all the construction is completed to complete the ceiling construction operation process;
[0033] During the construction process, since a laser emitter 8 is movably installed on the electric drill body 6 and a supplementary light 9 is installed on the movable frame 4, by turning the laser emitter 8 so that its laser point is aligned with the drill bit 7 and adjusting the irradiation angle of the supplementary light 9, it is convenient to assist in positioning the drilling position in a weak light environment indoors and reduce the probability of drilling in the wrong position;
[0034] At the same time, during drilling, since the debris collection box 11 is installed below the drill bit 7, most of the crushed stone particles generated by drilling can be blocked and collected, preventing them from directly falling to the ground. At the same time, during construction, by connecting the connecting pipe 13 to an external dust suction device, most of the dust generated during construction can be sucked to prevent it from floating at the construction position for a long time and reducing the interference to the line of sight of personnel.
[0035] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. An auxiliary tooling for high-place drilling installation, comprising a main support rod (1), and a telescopic auxiliary rod (2) is movably installed through the top end of the main support rod (1), characterized in that: The top end of the telescopic secondary rod (2) is provided with a drilling assembly (3); The drilling assembly (3) has a movable frame (4), and the movable frame (4) is slidably installed at a position above the outer circle of the telescopic secondary rod (2). One side of the movable frame (4) is installed with a drill body (6) through a fixing ring (5). The top end of the drill body (6) is provided with a drill body (6). A laser emitter (8) is movably installed at a position above one side of the drill body (6). Supplementary lights (9) are installed at the front and rear ends of the movable frame (4) through buckles. On the outer circle of the telescopic secondary rod (2) and on the side away from the drill body (6), an electric telescopic rod (10) is installed through a support plate. The end of the push rod of the electric telescopic rod (10) is connected to the bottom end of the movable frame (4).
2. The auxiliary tooling for high-place drilling installation according to claim 1, wherein: The drill body (6) is detachably connected to the movable frame (4) through a fixing ring (5), and the bottom end of the movable frame (4) does not contact the support plate.
3. The auxiliary tooling for high-place drilling and installation according to claim 1, characterized in that: A debris collection frame (11) is slidably installed on the outer circle of the telescopic secondary rod (2) and below the drill bit (7). Locking nuts are threadedly connected to the outer circle of the telescopic secondary rod (2) and at the upper and lower positions close to the debris collection frame (11). The opposite surfaces of the two locking nuts are attached to the upper and lower ends of the debris collection frame (11).
4. The auxiliary tooling for high-place drilling installation according to claim 3, wherein: The top end of the debris collection frame (11) is fixedly connected with a suction port (12), and a connecting pipe (13) is connected to a position on one side at the bottom end of the suction port (12).
5. The auxiliary tooling for high-place drilling and installation according to claim 1, characterized in that: A regulating nut (14) is threadedly connected through a position above one side of the support main rod (1) away from the drill body (6). A number of regulating threaded holes that are threadedly matched with the regulating nut (14) are provided through one side of the telescopic secondary rod (2) close to the regulating nut (14), and the number of regulating threaded holes is arranged at equal intervals on the telescopic secondary rod (2).
6. The auxiliary tooling for high-place drilling installation according to claim 1, wherein: A number of mounting plates (15) are installed on the outer circle of the support main rod (1) at a position below through a number of mounting bolts (16). Self-locking universal casters (17) are installed at the bottom ends of the mounting plates (15).
7. The auxiliary tooling for high-place drilling and installation according to claim 6, characterized in that: The number of the mounting plates (15) is arranged at equal intervals on the outer circle of the support main rod (1), and the mounting plates (15) are detachably connected to the support main rod (1) through the mounting bolts (16). The bottom ends of the number of self-locking universal casters (17) are on the same horizontal plane.