Hoisting rod drilling and mounting integrated system

By automating the integrated drilling and installation of components, the problem of complicated and time-consuming installation of booms has been solved, improving construction efficiency and protecting the health of workers.

CN224089326UActive Publication Date: 2026-04-07SHAANXI NO 7 CONSTR ENG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The installation of the suspension rod is a complicated and time-consuming task that affects the health of workers and requires frequent tool changes and observation of positional deviations.

Method used

A system for drilling and installing booms is provided, which integrates drilling components, installation components, and imaging components. The system enables automated operation through a control device, displays the position of the components, adjusts the position of the components, and controls the start and stop of each component through a control switch.

Benefits of technology

Improve construction efficiency, reduce manual operation, protect workers' health, and reduce the frequency of tool replacement and the risk of positional deviation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224089326U_ABST
    Figure CN224089326U_ABST
Patent Text Reader

Abstract

The utility model discloses a suspender drilling and mounting integrated system which comprises a maneuvering device, and the maneuvering device comprises a drilling component, a mounting component and an imaging component. The control device comprises a display part, an adjusting part and a control switch part; the display component is used for displaying a top plate picture shot by the imaging component; the adjusting component is used for adjusting the positions of the drilling component and the mounting component according to a top plate picture; the control switch component is connected with the drilling component, the mounting component, the imaging component and the display component. A maneuvering device is arranged at the top of the main body, and a control device is arranged in the middle of the main body. The scheme is used for drilling and installation work of the suspended ceiling suspender, and the occupational health of workers is guaranteed while the construction work efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of construction tools technology, and in particular to an integrated system for drilling and installing booms. Background Technology

[0002] In the building decoration industry, a suspended ceiling refers to a type of decoration applied to the top of a building's ceiling. It is an important part of interior decoration, serving functions such as heat insulation, sound insulation, and sound absorption. It also conceals electrical, ventilation, air conditioning, communication, fire protection, and alarm wiring and equipment.

[0003] Decorative ceiling finishes are typically constructed from materials such as gypsum board, aluminum panels, and aluminum square tubes. The supporting structure is generally a light steel keel support system, with the light steel keel connected to the ceiling structure panel by hangers and expansion bolts. During construction, the installation of traditional hangers is usually quite complex and time-consuming. Due to the high ceiling height, drilling and hanger installation require close-range operation, necessitating frequent ups and downs of scaffolding and frequent changes of tools. Furthermore, workers must look up to check for positional deviations during drilling and hanger installation. Therefore, prolonged hanger installation work can seriously affect the neck and shoulder health of workers. Utility Model Content

[0004] The embodiments of this application provide an integrated system for drilling and installing ceiling hangers, which is used for drilling and installing ceiling hangers, improving construction efficiency while protecting the occupational health of workers.

[0005] To achieve the above objectives, embodiments of this application provide an integrated system for drilling and installing suspension rods, comprising:

[0006] The motorized device includes: drilling components, mounting components, and imaging components;

[0007] The control device includes: a display component, an adjustment component, and a control switch component; the display component is used to display the top panel image captured by the imaging component; the adjustment component is used to adjust the positions of the drilling component and the mounting component according to the top panel image; the control switch component is connected to the drilling component, the mounting component, the imaging component, and the display component respectively;

[0008] The main body has a motor mounted on its top and a control device mounted in its middle.

[0009] In one embodiment, the drilling component includes:

[0010] drill;

[0011] Drill chuck, a chuck for holding drill bits;

[0012] The first motor is connected to the drill chuck; the first motor is also connected to the control switch components.

[0013] The imaging component is mounted on the first support platform;

[0014] A scissor lift platform, with its top fixedly connected to the first support platform;

[0015] The second motor is connected to the scissor lift platform; the second motor is also connected to the control switch components.

[0016] The second support platform, the first motor, the second motor, and the scissor lift platform are mounted on the second support platform, and the second support platform is connected to the main body.

[0017] In one embodiment, a dust collection chamber is provided on the first support platform, and the dust collection chamber surrounds the drill bit.

[0018] In one embodiment, the mounting component includes:

[0019] Electric wrench;

[0020] The third motor drives the electric wrench; the third motor is connected to the control switch components.

[0021] Electric wrench climbing structure, which is installed on the main body;

[0022] The fourth motor drives the electric wrench climbing structure to move the electric wrench up and down; the fourth motor is connected to the control switch component.

[0023] In one embodiment, the electric wrench includes:

[0024] The power gear is connected to the bearing of the third motor;

[0025] Wrench gear, the wrench gear has a wrench slot;

[0026] Two auxiliary gears are positioned between the power gear and the wrench gear.

[0027] In one embodiment, the electric wrench climbing structure includes:

[0028] The first gear is connected to the bearing of the fourth motor;

[0029] The ring gear has nut threads inside and is connected to the main body through these nut threads.

[0030] A gear belt, fitted with the first gear and the ring gear;

[0031] Gear fixing component, used to fix the distance between the first gear and the ring gear.

[0032] In one embodiment, the control switch component includes:

[0033] The first switch is connected to both the first motor and the second motor.

[0034] The second switch is connected to the third motor;

[0035] The third switch is connected to the fourth motor.

[0036] The fourth switch is connected to both the imaging component and the display component;

[0037] Both the first and third switches are forward and reverse switches.

[0038] In one embodiment, the adjusting component includes:

[0039] Sleeve, the sleeve is connected to the main body;

[0040] The first outer casing is coaxially connected to the sleeve.

[0041] A rotating grip is connected to the first housing.

[0042] The second gear is fixedly connected to the first housing.

[0043] A rotary bearing is used to rotate and adjust the position of the drilling and mounting components; a second gear is sleeved on the outside of the rotary bearing.

[0044] The second housing is connected to the rotary bearing;

[0045] A rotating platform, which is connected to the second housing.

[0046] In one embodiment, the adjustment component further includes: a fine-tuning handwheel;

[0047] The fine-tuning handwheel includes:

[0048] The screw, whose thread meshes with the second gear;

[0049] A fine-tuning knob is located at one end of the rotating grip.

[0050] The screw connecting rod is connected to the screw, and the screw connecting rod passes through the rotating handle and connects to the fine-tuning knob.

[0051] In one embodiment, the body includes:

[0052] Tripod bracket, with a control device mounted on top of the tripod bracket;

[0053] The threaded hollow steel pipe has one end inserted into and connected to a sleeve, and the other end connected to a second support platform.

[0054] This application has the following advantages over the prior art:

[0055] The integrated drilling and installation system for booms provided in this embodiment integrates the drilling component and the installation component. It can acquire the positions of the drilling component and the installation component through the imaging component and display them on the display component. The position of the drilling component and the installation component can be adjusted by the adjustment component according to the displayed image. The drilling component, the installation component, the imaging component, and the display component can be started and stopped by the control switch component. There is no need for manual drilling and installation, which improves the efficiency of construction work and protects the occupational health of workers. Attached Figure Description

[0056] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0057] Figure 1 This is a schematic diagram of the integrated drilling and installation system for the suspension rod provided in the embodiments of this application;

[0058] Figure 2 This is a schematic diagram of the motor device in the integrated system for drilling and installing booms provided in the embodiments of this application;

[0059] Figure 3 This is a schematic diagram of the control device in the integrated system for drilling and installing booms provided in the embodiments of this application;

[0060] Figure 4 A schematic diagram of the scissor lift platform in the integrated system for drilling and installing booms provided in this application embodiment. Figure 1 ;

[0061] Figure 5 A schematic diagram of the scissor lift platform in the integrated system for drilling and installing booms provided in this application embodiment. Figure 2 ;

[0062] Figure 6 This is a schematic diagram of the structure of the electric wrench provided in the embodiments of this application;

[0063] Figure 7 A schematic diagram of the electric wrench climbing structure provided in the embodiments of this application. Figure 1 ;

[0064] Figure 8 A schematic diagram of the electric wrench climbing structure provided in the embodiments of this application. Figure 2 ;

[0065] Figure 9 Wiring diagram of the forward / reverse switch provided in the embodiments of this application;

[0066] Figure 10 Schematic diagram of the structure of the adjustment component provided in the embodiments of this application Figure 1 ;

[0067] Figure 11 Schematic diagram of the structure of the adjustment component provided in the embodiments of this application Figure 2 . Detailed Implementation

[0068] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0069] In the description of this application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0070] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation", "connection" and "joining" should be interpreted broadly, for example, they can refer to fixed connection, detachable connection, or integral connection; for those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0071] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.

[0072] Reference Figure 1 The embodiments of this application provide an integrated system for drilling and installing a suspension rod, comprising:

[0073] Motor device 1, such as Figure 2As shown, the motorized device 1 includes: a drilling component 11, a mounting component 12, and an imaging component 13;

[0074] Control device 2, such as Figure 3 As shown, the control device 2 includes: a display component 21, an adjustment component 22, and a control switch component 23; the display component 21 is used to display the top plate image captured by the imaging component 13; the adjustment component 22 is used to adjust the positions of the drilling component 11 and the mounting component 12 according to the top plate image; the control switch component 23 is connected to the drilling component 11, the mounting component 12, the imaging component 13, and the display component 21 respectively.

[0075] The main body 3 has a motor 1 installed on its top and a control device 2 installed in its middle.

[0076] Specifically, the drilling component 11 is used to complete the drilling work on the top slab, and the mounting component 12 is used to complete the installation of the suspension rods. The imaging component 13 is used to capture images of the top slab. The imaging component 13 can be a wide-angle camera.

[0077] Display component 21 displays the image of the top panel captured by imaging component 13 to observe the positions of drilling component 11 and mounting component 12. Display component 21 can be a liquid crystal display screen, for example, a 10-inch liquid crystal display screen. Adjustment component 22 can adjust the positions of drilling component 11 and mounting component 12 to perform drilling and installation of the hoist at preset positions. Control component can control the start and stop of drilling component 11, mounting component 12, imaging component 13, and display component 21.

[0078] The main body 3 is used to support and fix the motorized device 1 and the control device 2. The motorized device 1 is mounted on the top of the main body 3 to facilitate drilling and installation of the boom in the top plate.

[0079] The integrated drilling and installation system for booms provided in this embodiment integrates the drilling component and the installation component. It can acquire the positions of the drilling component and the installation component through the imaging component and display them on the display component. The position of the drilling component and the installation component can be adjusted by the adjustment component according to the displayed image. The drilling component, the installation component, the imaging component, and the display component can be started and stopped by the control switch component. There is no need for manual drilling and installation, which improves the efficiency of construction work and protects the occupational health of workers.

[0080] In one embodiment, reference continues to be made to Figure 1 Main body 3 includes:

[0081] Triangular bracket 32, with control device 2 mounted on top of the tripod bracket 32;

[0082] The threaded hollow steel pipe 31 has one end inserted into and connected to the sleeve 221; the other end of the threaded hollow steel pipe 31 is connected to the second support platform 117 of the motor device 1.

[0083] Specifically, the triangular bracket 32 ​​supports the entire integrated drilling and installation system for the boom. The control device 2 is installed on top of the triangular bracket 32 ​​at a height suitable for manual operation, facilitating worker operation. The threaded hollow steel pipe 31 supports the motorized device 1, positioning it at a higher position so that it can reach the top plate after a short distance for drilling and installation work. The threaded hollow steel pipe 31 can be a 50mm outer diameter and 40mm inner diameter threaded hollow steel pipe.

[0084] Understandable, continue to refer to Figure 1 A support plate is set on the tripod 32 to hold the rechargeable lithium battery 321, which can supply power to the drilling component 11, the mounting component 12, the imaging component 13, the display component 21 and the control switch component 23.

[0085] It's understandable, continue to refer to it. Figure 1 Friction anti-slip pads 322 can be installed at the bottom of each of the triangular brackets 32.

[0086] In one embodiment, reference continues to be made to Figure 2 The drilling component 11 includes:

[0087] Drill bit 111;

[0088] Electric drill chuck 112, electric drill chuck 112 holds drill bit 111;

[0089] The first motor 113 is connected to the drill chuck 112; the first motor 113 is also connected to the control switch component 23.

[0090] The imaging component 13 is disposed on the first support platform 114;

[0091] The top of the scissor lift platform 115 is fixedly connected to the first support platform 114;

[0092] The second motor 116 is connected to the scissor lift platform 115; the second motor 116 is also connected to the control switch component 23.

[0093] The second support platform 117, the first motor 113, the second motor 116, and the scissor lift platform 115 are mounted on the second support platform 117, and the second support platform 117 is connected to the main body 3.

[0094] Specifically, the scissor lift platform 115 can extend and retract vertically to move the drill bit 111 up and down. For example... Figure 4 , Figure 5 A schematic diagram of a scissor lift platform 115 is shown. The scissor lift platform 115 includes an upper support plate 1151 and a lower support plate 1152. A scissor lift rod 1153 is disposed between the upper support plate 1151 and the lower support plate 1152. The scissor lift rod 1153 mainly lengthens or shortens vertically by changing its included angle. An upper connector 1154 is provided on the upper support plate 1151, and an elongated through hole is formed on the upper connector. A slider 1155 is provided at the upper end of the scissor lift rod 1153. The slider can slide within the elongated through hole. The slider is connected to the upper end of the scissor lift rod to ensure that the angle of the scissor lift rod can be freely changed while reducing movement resistance. A nut 1156 is provided at the lower end of the scissor lift rod 1153. The nut 1156 is screwed to a threaded rod 1157, which is fixed on the lower support plate 1152. One end of the threaded rod 1157 is connected to the second motor 116. The second motor 116 drives the threaded rod 1157 to rotate, while the position of the threaded rod 1157 remains unchanged during rotation, forcing the nut 1156 to move horizontally on the threaded rod 1157. The nut 1156 is fitted onto the threaded rod 1157 and connected to the lower end of the scissor lift rod 1153, providing it with the power to change the angle of the scissor lift rod. The slider 1155 slides in the elongated through hole to drive the scissor lift rod 1153 to extend and retract vertically, thereby realizing the vertical extension and retraction of the scissor lift platform 115.

[0095] During drilling, the first motor 113 rotates, driving the drill chuck 112 to rotate, which in turn drives the drill bit 111 to rotate. The drill bit 111 then has the ability to drill. The scissor lift platform 115 moves the drill bit 111 upward to complete the drilling. Understandably, a fixing collar 118 can be used to fix the scissor lift platform 115 and the first motor 113 together.

[0096] The first motor 113 can be a 24V DC motor with a speed of 10,000 r / min to drive the drill bit 111. The second motor 116 can be a 24V DC motor with a speed of 100 r / min to drive the scissor lift platform 115.

[0097] In one embodiment, reference continues to be made to Figure 2 A dust collection chamber 1141 is provided on the first support platform 114, and the dust collection chamber 1141 surrounds the drill bit 111.

[0098] Specifically, the dust collection chamber 1141 is used to collect dust generated during drilling, preventing dust from flying everywhere and ensuring a clean and hygienic environment after drilling is completed. The dust collection chamber 1141 can be funnel-shaped, with a larger diameter near the drill bit 111 and a smaller diameter further away from the drill bit 111, and the central axis of the funnel-shaped dust collection chamber 1141 is aligned with the drill bit 111. Alternatively, the entire first support platform 114 can be configured as a dust collection chamber, with the portion of the first support platform corresponding to the drill chuck shaped like an inverted conical funnel, and the remaining portion being a cuboid. The bottom of the dust collection chamber is connected to the top of the scissor lift platform.

[0099] In one embodiment, reference continues to be made to Figure 2 The mounting component 12 includes:

[0100] Electric wrench 121;

[0101] The third motor 122 drives the electric wrench 121; the third motor 122 is connected to the control switch component 23.

[0102] Electric wrench climbing structure 123 is installed on the main body 3;

[0103] The fourth motor 124 drives the electric wrench climbing structure 123 to move the electric wrench 121 up and down; the fourth motor 124 is connected to the control switch component 23.

[0104] Specifically, the electric wrench 121 is used to tighten the nut below the expansion bolt, forcing the expansion bolt tube to deform and tighten inside the hole drilled by the drill bit 111, thus completing the installation of the hanger.

[0105] The electric wrench climbing structure 123 is used to drive the electric wrench 121 to move up and down, so as to move the boom and expansion bolt to the hole.

[0106] The third motor 122 can be a 24V DC motor with a speed of 1000 r / min to drive the electric wrench 121. The fourth motor 124 can be a 24V DC motor with a speed of 100 r / min to drive the electric wrench climbing structure 123.

[0107] In one embodiment, such as Figure 6 As shown, the electric wrench 121 includes:

[0108] The power gear 1211 is connected to the bearing of the third motor 122;

[0109] Wrench gear 1212, wrench gear 1212 is provided with a wrench slot;

[0110] Two auxiliary gears 1213 are disposed between the power gear 1211 and the wrench gear 1212.

[0111] Specifically, the power gear 1211 is a power transmission gear, which transmits power from the third motor 122 to the other gears. The wrench gear 1212 is used to provide torque to the nut below the expansion bolt. The two auxiliary gears 1213 are located between the power gear 1211 and the wrench gear 1212, and their main function is to ensure that the power to the wrench gear 1212 is uninterrupted. Since the wrench gear 1212 has an open part, this part has no gear teeth and cannot bear force during rotation. The two auxiliary gears 1213 can alternately provide power to the wrench gear 1212.

[0112] Understandably, the electric wrench 121 also includes a housing, with all four gears located inside the housing.

[0113] It is understandable that a planetary gear set 1221 is also installed on the motor bearing of the third motor 122, which can reduce the input speed, output low speed, and increase torque at the same time to achieve the ideal transmission effect.

[0114] In one embodiment, such as Figure 7 , Figure 8 As shown, the electric wrench climbing structure 123 includes:

[0115] The first gear 1231 is connected to the bearing of the fourth motor 124;

[0116] The ring gear 1232 has nut threads inside and is connected to the main body 3 through the nut threads.

[0117] Gear belt 1233, fitted with first gear 1231 and ring gear 1232;

[0118] The gear fixing component 1234 is used to fix the distance between the first gear 1231 and the ring gear 1232.

[0119] Specifically, the first gear 1231 is fixedly connected to the bearing of the fourth motor 124. The annular gear 1232 has nut threads inside and is fitted onto the threaded hollow steel tube 31 of the main body 3. The gear belt 1233 is nested on the first gear 1231 and the annular gear 1232. The gear fixing part 1234 is used to fix the distance between the first gear 1231 and the annular gear 1232. The fourth motor 124 is the main power source. The rotation of the fourth motor 124 drives the first gear 1231 to rotate, and the first gear 1231 drives the annular gear 1232 to rotate through the gear belt 1233. Because the annular gear 1232 has nut threads inside, it will move up and down along the threaded hollow steel tube 31 after rotation.

[0120] Understandably, to prevent the electric wrench climbing device from tipping over during climbing and descending, multiple sets of electric wrench climbing structures 123 can be installed. The figure shows two sets of electric wrench climbing structures 123. In the two sets of electric wrench climbing structures 123, the two annular gears 1232 are both sleeved on the threaded hollow steel pipe 31 of the main body, and the two first gears 1231 are both connected to the bearings of the fourth motor 124.

[0121] In one embodiment, reference continues to be made to Figure 3 The control switch component 23 includes:

[0122] The first switch 231 is connected to both the first motor 113 and the second motor 116.

[0123] The second switch 232 is connected to the third motor 122;

[0124] The third switch 233 is connected to the fourth motor 124;

[0125] The fourth switch 234 is connected to both the imaging component 13 and the display component 21;

[0126] Both the first switch 231 and the third switch 233 are forward and reverse switches.

[0127] Among them, the first switch 231 is the start / stop switch for the electric drill, and also the lifting switch for the scissor lift platform 115; the second switch 232 is the start / stop switch for the electric wrench 121; the third switch 233 is the switch for the electric wrench climbing structure 123 to move up and down; and the fourth switch 234 is the switch for the camera and the display screen.

[0128] To enable the forward and reverse rotation of the drill bit 111, the vertical extension and retraction of the scissor lift platform 115, and the vertical movement of the electric wrench climbing structure 123, the first switch 231 and the third switch 233 are forward and reverse switches. For example... Figure 9 As shown, the forward and reverse switch mainly includes a switch button, a torsion spring, wires, etc. Its main working principle is that when the switch button is pressed to the left, the positive circuit of the motor (including the first motor 113, the second motor 116 and the fourth motor 124) is connected, and the motor rotates forward. When the switch button is pressed to the right, the reverse circuit of the motor is connected, and the motor rotates in reverse. When the switch button is in the middle, all circuits are disconnected and the motor does not run.

[0129] In one embodiment, such as Figure 10 , Figure 11 As shown, the adjustment component 22 includes:

[0130] Sleeve 221 is connected to the main body 3; sleeve 221 is fitted with threaded hollow steel pipe 31.

[0131] The first outer shell 222 is coaxially connected to the sleeve 221;

[0132] Rotary grip 223, which is connected to the first housing 222;

[0133] The second gear 224 is fixedly connected to the first housing 222;

[0134] A rotary bearing 225 is used to rotate and adjust the positions of the drilling component 11 and the mounting component 12; a second gear 224 is sleeved on the outside of the rotary bearing 225.

[0135] The second housing 226 is connected to the rotary bearing 225;

[0136] Rotating platform 227 is connected to second housing 226.

[0137] In one embodiment, the adjustment component 22 further includes: a fine-tuning handwheel 228;

[0138] The fine-tuning handwheel 228 includes:

[0139] Screw 2281, the thread of screw 2281 meshes with the second gear 224;

[0140] Fine adjustment knob 2282 is located at one end of the rotating grip 223;

[0141] Screw connecting rod 2283 is connected to screw 2281, and screw connecting rod 2283 passes through rotating handle 223 and is connected to fine adjustment knob 2282.

[0142] Specifically, the rotating platform 227 is used for components above the load-bearing platform. The rotary bearing 225 is used to rotate and adjust the position of the drill bit 111 and the electric wrench 121. The fine-tuning handwheel 228 is used to fine-tune the position of the drill bit 111 and the electric wrench 121.

[0143] In the fine-tuning handwheel 228, the screw 2281 is used to drive the second gear 224 to rotate, the fine-tuning knob 2282 is used to rotate the screw 2281, and the second gear 224 is used to rotate the whole.

[0144] When the fine-tuning knob 2282 is turned, the screw 2281 is rotated through the screw connecting rod 2283. The thread on the screw 2281 engages with the second gear 224. When rotated, the second gear 224 is rotated horizontally. The second gear 224 is fixedly connected to the first housing 222 and connected to the second housing 226 through a rotary bearing 225. When the second gear 224 rotates, the first housing 222 rotates accordingly, while the second housing 226 remains stationary. At the same time, due to the difference in radius between the screw 2281 and the second gear 224, the rotation amplitude of the second gear 224 is small when the screw 2281 is turned, thus realizing the fine-tuning of the motor device 1.

[0145] The working principle of the integrated drilling and installation system for suspension rods provided in this application is as follows:

[0146] Drilling: Turn on the display screen switch (i.e., the fourth switch 234) and simultaneously turn on the wide-angle camera. Observe the position of the drill bit 111 through the screen, and adjust the drill bit 111 to the preset position by rotating the handle 223 and the fine-tuning handwheel 228; turn on the drill start / stop switch to the left (i.e., the first switch 231), the drill's forward rotation circuit is connected, and the drill bit 111 has the ability to drill. The scissor lift platform 115 control motor (i.e., the second motor 116) and the drill motor (i.e., the first motor 113) are controlled by the same switch and work simultaneously. With the forward rotation circuit connected, the scissor lift platform 115 has the ability to rise, and the electric drill and scissor lift platform 115 work simultaneously to complete the drilling of the top plate. Resetting the electric drill start / stop switch stops the electric drill and the scissor lift platform 115. Turning the electric drill start / stop switch to the right connects the electric drill reverse circuit, causing the drill bit 111 to reverse. Simultaneously, the reverse circuit of the scissor lift platform 115 control motor is connected, causing the scissor lift platform 115 to descend. The reverse rotation of the electric drill and the descent of the scissor lift platform 115 carry away dust from the hole, which falls into the dust collection bin 1141. Finally, resetting the electric drill start / stop switch again stops the electric drill and the scissor lift platform 115.

[0147] Installation: Turn the electric wrench 121 up / down movement switch (i.e., the third switch 233) to the left. The electric wrench 121 up / down movement control motor (i.e., the fourth motor 124) rotates forward, driving the first gear 1231 to rotate. The gear belt 1233 rotates around the gear belt, which in turn drives the circular gear 1232 to rotate. The circular gear 1232 has nut threads inside. As the first gear 1231 rotates, the nut threads inside the circular gear 1232 cause the electric wrench 121 to move down along the threaded hollow steel pipe 31 to above the rotating platform 227. Reset the electric wrench 121 up / down movement switch, and the electric wrench 121 stops moving down. Place the pre-prepared lifting rod and expansion bolt into the wrench slot of the electric wrench 121. Inside, turn the electric wrench 121 up-and-down movement switch to the right. The electric wrench 121 up-and-down movement control motor reverses, and the electric wrench 121 begins to move upward. When it reaches the bottom of the top plate, reset the electric wrench 121 up-and-down movement switch, and the electric wrench 121 stops moving upward. Observe the position of the electric wrench 121 through the screen, and adjust the electric wrench 121 to the position where the drilling has been completed by rotating the handle 223 and the fine-tuning handwheel 228. Turn on the electric wrench 121 start-stop switch (i.e., the second switch 232), and the electric wrench 121 starts working, turning the nut below the expansion bolt, forcing the expansion bolt tube to deform and tighten in the hole. Reset the electric wrench 121 start-stop switch, and the electric wrench 121 stops working, completing the installation of the hanger.

[0148] The integrated drilling and installation system for suspension rods provided in this application allows workers to simply turn the control switches on and off on the ground and adjust the position of the drill bit or electric wrench according to the screen display when drilling and installing the suspension rods. This can improve construction efficiency and protect the occupational health of workers.

[0149] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. An integrated system for drilling and installing suspension rods, characterized in that, include: The motorized device (1) includes: a drilling component (11), a mounting component (12), and an imaging component (13); The control device (2) includes: a display component (21), an adjustment component (22), and a control switch component (23); the display component (21) is used to display the top plate image captured by the imaging component (13); the adjustment component (22) is used to adjust the positions of the drilling component (11) and the mounting component (12) according to the top plate image; the control switch component (23) is connected to the drilling component (11), the mounting component (12), the imaging component (13), and the display component (21) respectively; The main body (3) has the motor (1) disposed on its top and the control device (2) disposed in its middle.

2. The integrated drilling and installation system for suspension rods according to claim 1, characterized in that, The drilling component (11) includes: Drill bit (111); A drill chuck (112) that holds the drill bit (111); A first motor (113) is connected to the drill chuck (112); the first motor (113) is also connected to the control switch component (23). The first support platform (114) is provided on which the imaging component (13) is disposed; A scissor lift platform (115), the top of which is fixedly connected to the first support platform (114); The second motor (116) is connected to the scissor lift platform (115); the second motor (116) is connected to the control switch component (23); The second support platform (117) is provided with the first motor (113), the second motor (116) and the scissor lift platform (115) mounted on the second support platform (117), and the second support platform (117) is connected to the main body (3).

3. The integrated drilling and installation system for suspension rods according to claim 2, characterized in that, The first support platform (114) is provided with a dust collection chamber (1141) which surrounds the drill bit (111).

4. The integrated drilling and installation system for suspension rods according to claim 2, characterized in that, The mounting component (12) includes: Electric wrench (121); A third motor (122) drives the electric wrench (121); the third motor (122) is connected to the control switch component (23); An electric wrench climbing structure (123) is mounted on the main body (3); The fourth motor (124) drives the electric wrench climbing structure (123) to move the electric wrench (121) up and down; the fourth motor (124) is connected to the control switch component (23).

5. The integrated drilling and installation system for suspension rods according to claim 4, characterized in that, The electric wrench (121) includes: A power gear (1211) is connected to the bearing of the third motor (122); A wrench gear (1212) is provided with a wrench slot; Two auxiliary gears (1213) are disposed between the power gear (1211) and the wrench gear (1212).

6. The integrated drilling and installation system for suspension rods according to claim 4, characterized in that, The electric wrench climbing structure (123) includes: The first gear (1231) is connected to the bearing of the fourth motor (124); A circular gear (1232) has a nut thread inside, and the circular gear (1232) is connected to the main body (3) through the nut thread; A gear belt (1233) is fitted over the first gear (1231) and the ring gear (1232); A gear fixing member (1234) is used to fix the distance between the first gear (1231) and the ring gear (1232).

7. The integrated drilling and installation system for suspension rods according to claim 4, characterized in that, The control switch component (23) includes: The first switch (231) is connected to both the first motor (113) and the second motor (116); The second switch (232) is connected to the third motor (122); The third switch (233) is connected to the fourth motor (124); A fourth switch (234) is connected to both the imaging component (13) and the display component (21); Both the first switch (231) and the third switch (233) are forward and reverse switches.

8. The integrated drilling and installation system for suspension rods according to claim 2, characterized in that, The adjustment component (22) includes: Sleeve (221), which is connected to the main body (3); A first outer shell (222) is coaxially connected to the sleeve (221); A rotating grip (223) is connected to the first housing (222); The second gear (224) is fixedly connected to the first housing (222); A rotary bearing (225) is used to rotate and adjust the positions of the drilling component (11) and the mounting component (12); the second gear (224) is sleeved on the outside of the rotary bearing (225); A second housing (226) is connected to the rotary bearing (225); A rotating platform (227) is connected to the second housing (226).

9. The integrated drilling and installation system for suspension rods according to claim 8, characterized in that, The adjustment component (22) further includes: a fine-tuning handwheel (228); The fine-tuning handwheel (228) includes: A screw (2281) whose thread engages with the second gear (224); A fine-tuning knob (2282) is located at one end of the rotating grip (223); A screw connecting rod (2283) is connected to the screw (2281), and the screw connecting rod (2283) passes through the rotating grip (223) and is connected to the fine-tuning knob (2282).

10. The integrated drilling and installation system for suspension rods according to claim 8, characterized in that, The main body (3) includes: A tripod bracket (32), on the top of which the control device (2) is mounted; A threaded hollow steel pipe (31) is provided, with one end of which is inserted into and connected to the sleeve (221); the other end of which is connected to the second support platform (117).