Grooving and wiring device suitable for communication engineering line construction
By introducing operation protection devices and grooving specification control components into the grooving wiring device, the problems of unstable motor starting and non-standard operation in the existing technology have been solved, realizing safe and stable motor starting and improving grooving quality.
Patent Information
- Application Number
- CN202511317789.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-14
AI Technical Summary
Existing grooving machines for cabling are difficult to automate and delay grooving in communication engineering line construction, which can lead to motor overheating or starting sluggishness. Furthermore, improper operation can easily result in reverse grooving, affecting grooving quality and safety.
By employing operating protection devices, wall-attachment detection components, and stop protection components, and through elastic support and mechanical constraints, the stable start-up and standardized operation of the grooving motor are ensured. Combined with grooving standard control components, reverse grooving is prevented and the grooving quality is improved.
This technology enables safe and stable starting of the grooving motor, avoids motor overheating and cutting accidents, ensures the standardization of grooving and the quality of grooving, and improves the safety and efficiency of operation.
Smart Images

Figure CN120941577A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cable tray cutting technology, specifically to a cable tray cutting and wiring device suitable for communication engineering line construction. Background Technology
[0002] In actual communication engineering wiring work, after the manufacture of concrete structures or building blocks, secondary grooving is required to facilitate wiring. Grooving is usually done using tools such as grooving machines for efficient grooving. Current wiring grooving machines have wide grooving wheels, and the standard requires grooving to be performed after the motor has started to protect the motor. However, manual operation is prone to non-standard practices, causing problems such as motor overheating or starting jamming. It is not convenient to automatically control the delayed grooving, nor is it convenient to guide the wiring. At the same time, it is not easy to improve the standardization of grooving by workers, and it is easy to violate the rules and perform reverse grooving, causing the grinding wheel to be in a buckling state when it contacts the wall, affecting the grooving quality.
[0003] Therefore, we propose a slotted cabling device suitable for communication engineering line construction. Summary of the Invention
[0004] The purpose of this invention is to provide a slotting and cabling device suitable for communication engineering line construction, so as to solve the problems mentioned in the background art that the current slotting devices for cabling are not convenient for automatic control of delayed slotting, nor are they convenient for improving the standardization of slotting by workers, and are prone to illegal operation and reverse slotting.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a slotting cabling device suitable for communication engineering line construction, comprising a slotting mounting component, wherein an operation protection device is mounted on the slotting mounting component; two wall-adhesion detection components are mounted on the bottom of the operation protection device; the two wall-adhesion detection components are used to adhere to the wall surface; the operation protection device is used to provide time-delay protection for the slotting mounting component; two stop protection components are mounted on the slotting mounting component; the stop protection components are used to stop the operation protection device; a slotting specification control component is mounted on the side of the slotting mounting component; the slotting mounting component includes: a slotting mounting frame, a slotting motor, and a slotting grinding wheel; the slotting motor is fixedly mounted on the slotting mounting frame, and the slotting motor passes through the slotting mounting frame; a protective cover is provided on the slotting mounting frame; a slotting grinding wheel is fixedly mounted on the output shaft of the slotting motor, and the slotting grinding wheel is located inside the protective cover provided on the slotting mounting frame.
[0006] Preferably, the grooving mounting component further includes: a handle, a guide hole, and a nozzle; two handles are fixedly mounted on the grooving mounting frame, and each handle is provided with a rubber sleeve; a guide hole is fixedly mounted at the bottom of the grooving mounting frame, and the guide hole is provided with a through hole; a nozzle is fixedly mounted on the grooving mounting frame, and the nozzle is used to spray water onto the grooving grinding wheel.
[0007] Preferably, the operation protection device includes: lifting columns, a panel, a connecting plate, a protective spring, a sliding mounting shell, a time delay switch, and a motor switch. Four lifting columns are slidably mounted on the slotted mounting frame. A panel is fixedly mounted on the bottom of the four lifting columns. Two connecting plates are provided, and the two connecting plates are respectively fixedly mounted on the top of two lifting columns on the same side. The panel is used to adhere to the wall surface. Protective springs are fixedly mounted on the bottom of the two connecting plates, and the ends of the two protective springs are respectively fixedly mounted on the slotted mounting frame. Two sliding mounting shells are fixedly mounted on the panel. A time delay switch is fixedly mounted inside the left sliding mounting shell. A motor switch is fixedly mounted inside the right sliding mounting shell. The two sliding mounting shells are used to pass through the slotted mounting frame. The panel has a through groove, and the through groove on the panel is aligned with the slotting grinding wheel.
[0008] Preferably, the wall-attachment detection component includes: a wall-attachment column, with the wall-attachment column slidably inserted into each of the two sliding mounting shells, and the ends of the two wall-attachment columns are respectively arc-shaped structures; the two wall-attachment columns are respectively used to move upward to press and adhere to the time-delay switch and the motor switch.
[0009] Preferably, the wall-mounted detection component further includes: an anti-accidental touch spring, wherein the two sliding mounting shells are respectively fitted with anti-accidental touch springs, and the two anti-accidental touch springs are respectively connected between the two sliding mounting shells and the wall-mounted column; the anti-accidental touch spring is used to elastically support the wall-mounted column.
[0010] Preferably, the stop protection component includes: a stop slider and a stop spring, with two stop sliders slidably inserted into the slotted mounting bracket; the ends of the two stop sliders are respectively inclined structures; the two stop sliders are used to stop the two connecting plates respectively; the two stop sliders are L-shaped structures; stop springs are fixedly installed on the two stop sliders respectively, and the ends of the two stop springs are respectively fixedly installed on the side of the slotted mounting bracket; the stop sliders are made of ferrous metal.
[0011] Preferably, the stop protection component further includes: an electromagnetic frame and an electromagnet; two electromagnetic frames are fixedly installed on the side of the slotted mounting bracket; an electromagnet is fixedly installed on each of the two electromagnetic frames, and the two electromagnets are respectively aligned with the two stop sliders; the electromagnets are electrically connected to a time delay switch; and the motor switch is electrically connected to the slotted motor.
[0012] Preferably, the grooving specification control component includes: a cover, a rotating shaft, and a one-way bearing. The cover is fixedly installed on the side of the grooving mounting frame; the rotating shaft is rotatably sleeved on the cover; the inner ring of the one-way bearing is fixedly sleeved on the end of the rotating shaft; the one-way bearing is used for unidirectional rotation.
[0013] Preferably, the grooving specification control component further includes: a rotary wheel, on which the outer ring of the one-way bearing is fixedly sleeved; a rubber ring is provided on the outer side of the rotary wheel, and the rubber ring on the outer side of the rotary wheel is a hollow elastic structure; the rubber ring on the outer side of the rotary wheel is used to roll and adhere to the wall surface.
[0014] Preferably, the grooving specification control component further includes: a counterweight and an adhesive contact plate, wherein the counterweight is fixedly installed on the rotating shaft; the counterweight is located inside the housing; the bottom of the counterweight has an arc-shaped structure; an adhesive contact plate is fixedly installed inside the housing, and the adhesive contact plate is an elastic conductive copper sheet; the counterweight is attached to the adhesive contact plate; and the grooving motor, the counterweight, and the adhesive contact plate are connected in series with a power supply.
[0015] Compared with the prior art, the beneficial effects of the present invention are: This invention employs a protective device that can elastically support the grooving installation component, thereby improving safety during use. Through this elastic support, workers need to apply additional force to press the grooving installation component during actual use to ensure that it is tightly attached to the wall surface during grooving, thus guaranteeing stability and reducing the risk of slipping. At the same time, by using a motor switch control method, the grooving motor can be automatically controlled to stop quickly when the grooving grinding wheel leaves the wall surface, avoiding cuts.
[0016] The use of a stop protection component, in conjunction with a wall-attachment detection component, can automatically control the grooving wheel to adhere to the wall surface after a delay, avoiding the need to attach the grooving wheel to the wall surface before starting the grooving motor. Through mechanical restriction, it prevents manual grooving work from being performed directly without a soft start, thereby improving the safety of the grooving motor and ensuring that the grooving wheel is cutting at a normal speed after the grooving motor is started.
[0017] The use of grooving standard control components allows for control over the direction of grooving operation by the worker, preventing the worker from holding the grooving mounting frame in the opposite direction. This avoids conflicts between the actual rotation and movement directions of the grooving wheel, causing the wheel to lift up the wall surface during grooving, affecting the smoothness of the grooved edges, and even causing the wall plaster to peel off. Instead of rotating the wheel in opposite directions on the wall surface to apply downward pressure, it also affects the position of the sprinkler head, resulting in ineffective cooling and dust removal. At the same time, the use of one-way bearings prevents the worker from grooving from top to bottom, which also affects the cutting quality. This structure can effectively ensure the standardization of cutting. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of a slotted cabling device suitable for communication engineering line construction according to the present invention. Figure 2 This is a schematic diagram of the bottom structure of a slotted cabling device suitable for communication engineering line construction according to the present invention. Figure 3This is a cross-sectional view of a slotted cabling device applicable to the construction of communication engineering lines according to the present invention. Figure 4 This is a schematic diagram of the slotted mounting component structure of the present invention; Figure 5 This is a schematic diagram of the structure of the operation protection device of the present invention; Figure 6 This is a cross-sectional view of the position of the delay switch of the present invention; Figure 7 For the present invention Figure 3 Enlarged view of the structure of region C in the middle; Figure 8 This is a schematic diagram of the structure of the stop protection component of the present invention; Figure 9 For the present invention Figure 2 Enlarged view of the structure of region E in the middle; Figure 10 This is a schematic diagram of the grooving specification control component of the present invention.
[0019] In the diagram: 1. Slotting mounting component; 101. Slotting mounting bracket; 102. Slotting motor; 1021. Slotting grinding wheel; 103. Handle; 104. Guide hole; 105. Nozzle; 2. Operation protection device; 201. Lifting column; 2011. Attaching panel; 202. Coupling plate; 203. Protective tension spring; 204. Sliding mounting shell; 205. Time delay switch; 206. Motor switch; 3. Wall contact detection component; 301. Wall contact column; 302. Anti-accidental contact spring; 4. Stop protection component; 401. Stop slider; 402. Stop tension spring; 403. Electromagnetic frame; 404. Electromagnet; 5. Slotting specification control component; 501. Cover; 502. Rotary shaft; 503. One-way bearing; 504. Rotary wheel; 505. Counterweight; 506. Attaching connector. Detailed Implementation
[0020] The technical solutions of 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.
[0021] Example 1: Please refer to Figures 1 to 10 As shown: This invention provides a technical solution: a slotting cabling device suitable for communication engineering line construction, including a slotting mounting component 1, on which an operation protection device 2 is installed; two wall-adhesion detection components 3 are installed at the bottom of the operation protection device 2; the two wall-adhesion detection components 3 are used to adhere to the wall surface; the operation protection device 2 is used to provide time-delay protection for the slotting mounting component 1; two stop protection components 4 are installed on the slotting mounting component 1; the stop protection components 4 are used to stop the operation protection device 2; a slotting specification control component 5 is installed on the side of the slotting mounting component 1; the slotting mounting component 1 includes: a slotting mounting frame 101, a slotting motor 102, and a slotting grinding wheel 1021, the slotting motor 102 is fixedly installed on the slotting mounting frame 101, and the slotting motor 102 passes through the slotting mounting frame 101; a protective cover is provided on the slotting mounting frame 101; the slotting grinding wheel 1021 is fixedly installed on the output shaft of the slotting motor 102, and the slotting grinding wheel 1021 is located inside the protective cover provided on the slotting mounting frame 101.
[0022] The grooving mounting component 1 further includes: a handle 103, a guide hole 104, and a nozzle 105. Two handles 103 are fixedly mounted on the grooving mounting frame 101, and each handle 103 is provided with a rubber sleeve. A guide hole 104 is fixedly mounted at the bottom of the grooving mounting frame 101, and the guide hole 104 is provided with a through hole. A nozzle 105 is fixedly mounted on the grooving mounting frame 101, and the nozzle 105 is used to spray water onto the grooving grinding wheel 1021. The operation protection device 2 includes: a lifting column 201, a panel 2011, a connecting plate 202, a protective tension spring 203, a sliding mounting shell 204, a time delay switch 205, and a motor switch 206. The NKPZ-22 type time delay switch 205 can be used. Four lifting columns 201 are slidably mounted on the mounting bracket 101; a panel 2011 is fixedly mounted on the bottom of the four lifting columns 201; two connecting plates 202 are provided, and the two connecting plates 202 are respectively fixedly mounted on the top of the two lifting columns 201 on the same side; the panel 2011 is used to adhere to the wall surface; protective tension springs 203 are respectively fixedly mounted on the bottom of the two connecting plates 202, and the ends of the two protective tension springs 203 are respectively fixedly mounted on the slotted mounting bracket 101; two sliding mounting shells 204 are fixedly mounted on the panel 2011; a time delay switch 205 is fixedly mounted inside the left sliding mounting shell 204; a motor switch 206 is fixedly mounted inside the right sliding mounting shell 204; the two sliding mounting shells 204 04 is used to pass through the grooving mounting bracket 101; the panel 2011 has a through groove, and the through groove on the panel 2011 is aligned with the grooving grinding wheel 1021. The operation protection device 2 can elastically support the grooving mounting part 1, which can improve the safety of use. With the elastic support, the operator needs to press the grooving mounting part 1 with force during actual use to ensure that the grooving mounting part 1 is tightly against the wall for grooving, which improves stability. At the same time, the grooving motor 102 can be automatically controlled to stop quickly when the grooving grinding wheel 1021 leaves the wall by using the motor switch 206 to avoid cutting accidents. The nozzle 105 can facilitate the guidance of the line, and the operator can manually use the clip to fasten the line after grooving. Once the parts are fixed in the groove, the structure is simple and flexible to operate. To ensure the grooving depth during use, the operator needs to hold the handle 103 and press the grooving mounting bracket 101 with force to stretch the protective spring 203 so that the grooving grinding wheel 1021 can cut into the wall normally. At the same time, as the panel 2011 is attached to the wall, the wall stop presses the wall post 301, compresses the anti-accidental contact spring 302, and then presses the motor switch 206 to control the grooving motor 102 to drive the grooving grinding wheel 1021 to rotate, thus achieving rapid grooving. At the same time, if the panel 2011 cannot be attached to the wall due to the completion of grooving or due to unstable hand, the motor switch 206 will no longer be pressed, controlling the grooving motor 102 to quickly stop for protection.
[0023] The wall-attachment detection component 3 includes: a wall-attachment post 301, which is slidably inserted into two sliding mounting shells 204, and the ends of the two wall-attachment posts 301 are respectively arc-shaped structures; the two wall-attachment posts 301 are used to move upward and press against the time-delay switch 205 and the motor switch 206; the wall-attachment detection component 3 also includes: an anti-accidental touch spring 302, which is sleeved inside the two sliding mounting shells 204, and the two anti-accidental touch springs 302 are respectively connected between the two sliding mounting shells 204 and the wall-attachment post 301. The anti-accidental contact spring 302 is used for elastic support of the wall-mounted column 301; the stop protection component 4 includes: a stop slider 401 and a stop tension spring 402, two stop sliders 401 are slidably inserted on the slotted mounting bracket 101; the ends of the two stop sliders 401 are respectively inclined structures; the two stop sliders 401 are respectively used to stop the two connecting plates 202; the two stop sliders 401 are L-shaped structures; stop tension springs 402 are respectively fixedly installed on the two stop sliders 401, and the ends of the two stop tension springs 402 are respectively fixedly installed on the slotted mounting bracket 101. The mounting bracket 101 has two sides; the stop slider 401 is made of ferrous metal; the stop protection component 4 also includes: an electromagnetic frame 403 and an electromagnet 404. Two electromagnetic frames 403 are fixedly installed on the side of the slotted mounting bracket 101; an electromagnet 404 is fixedly installed on each of the two electromagnetic frames 403, and the two electromagnets 404 are respectively aligned with the two stop sliders 401; the electromagnets 404 are electrically connected to the time delay switch 205; the motor switch 206 is electrically connected to the slotting motor 102. The stop protection component 4 can be used in conjunction with the wall-attachment detection component 3 to automatically control the slotting. The grinding wheel 1021 is delayed in contact with the wall surface for grooving. This avoids the situation where the grooving grinding wheel 1021 is first placed against the wall surface before starting the grooving motor 102. In this case, the grooving motor 102 is subjected to greater friction between the grooving grinding wheel 1021 and the wall surface at the moment of starting, which affects the starting of the grooving motor 102 and may even cause overheating. This structure, through mechanical restriction, avoids the grooving work being carried out directly without a soft start by the operator, which can improve the safety of the grooving motor 102 and ensure that the grooving grinding wheel 1021 is cutting at a normal speed after the grooving motor 102 is started.
[0024] In Example 2, based on Example 1, the grooving specification control component 5 includes: a cover 501, a rotating shaft 502, and a one-way bearing 503. The cover 501 is fixedly installed on the side of the grooving mounting bracket 101; the rotating shaft 502 is rotatably sleeved on the cover 501; the inner ring of the one-way bearing 503 is fixedly sleeved on the end of the rotating shaft 502; the one-way bearing 503 is used for unidirectional rotation; the grooving specification control component 5 also includes: a rotating wheel 504, the outer ring of the one-way bearing 503 is fixedly sleeved on the rotating wheel 504; a rubber ring is provided on the outer side of the rotating wheel 504, and the rubber ring on the outer side of the rotating wheel 504 is a hollow elastic structure; the rubber ring on the outer side of the rotating wheel 504 is used for rolling and adhering to the wall surface; The grooving specification control component 5 also includes: a counterweight 505 and a contacting electrode 506. The counterweight 505 is fixedly installed on the rotating shaft 502; the counterweight 505 is located inside the housing 501; the bottom of the counterweight 505 has an arc-shaped structure; the contacting electrode 506 is fixedly installed inside the housing 501, and the contacting electrode 506 is an elastic conductive copper sheet; the counterweight 505 is attached to the contacting electrode 506; the grooving motor 102, the counterweight 505, and the contacting electrode 506 are connected in series with a power supply. By using the grooving specification control component 5, the direction of the grooving operation by the operator can be controlled, thus avoiding the operator holding the grooving mounting frame 101 in the wrong direction, which could cause damage to the actual grooving grinding wheel. The conflict between the rotation and movement directions of the grooving wheel 1021 causes it to lift up the wall surface during grooving, affecting the smoothness of the grooved edges and even causing the wall plaster to peel off. Instead of rotating in opposite directions on the wall surface to apply downward pressure, this also affects the water supply position of the nozzle 105, resulting in ineffective cooling and dust removal. Furthermore, the use of the one-way bearing 503 prevents workers from grooving from top to bottom, which also affects cutting quality and causes the wall surface to lift up. This structure effectively ensures the standardization of cutting, ensuring that when workers use the grooving mounting bracket 101, the nozzle 105 is positioned above the grooving wheel 1021, and the grooving mounting bracket 1021... 1. Grooving from bottom to top: Horizontal grooving is usually used for installing junction boxes. It usually requires the use of an electric hammer, and the national standard limits the length of horizontal grooving to no more than 30 cm, which is the maximum distance for normal junction box openings. To avoid wall cracking, vertical grooving is required to guide the wiring harness and reduce damage to the wall. When holding the grooving mounting bracket 101 in the forward direction, the counterweight 505 can stick to the junction plate 506 under the action of gravity. The grooving motor 102 conducts normally and does not affect subsequent control. At the same time, when the grooving mounting bracket 101 moves upward to groove, the rubber ring on the outside of the rotary wheel 504 rolls against the wall. At this time, the one-way bearing 503 is in the free-running state, and the grooving work can be carried out normally.
[0025] The working principle of this embodiment is as follows: First, the operator holds the handle 103 and presses down on the grooving mounting bracket 101, stretching the protective spring 203 to allow the grooving grinding wheel 1021 to cut into the wall surface normally. Simultaneously, as the panel 2011 is attached to the wall, the wall stop compresses the wall-mounted post 301, compressing the anti-accidental-touch spring 302, and then the motor switch 206 is pressed. This controls the grooving motor 102 to drive the grooving grinding wheel 1021 to rotate, achieving rapid grooving. If the panel 2011 fails to adhere to the wall surface due to grooving completion or unstable handling, the motor switch 206 is released, controlling the grooving motor 102 to quickly stop for protection. Simultaneously, as the grooving mounting bracket 101 moves upward to begin grooving, the external water pump connected to the nozzle 105 is activated to supply water. To reduce temperature and dust, when the actual panel 2011 is attached to the wall, another wall-mounting post 301 will simultaneously press the delay switch 205. At this time, the grooving motor 102 has been powered on and started. After the delay switch 205 is pressed, it will delay for three seconds to control the electromagnet 404 to magnetically attract the stop slider 401. At this time, the stop slider 401 no longer blocks the connecting plate 202 and releases the limit. Only when the grooving mounting bracket 101 is pressed can it be normally controlled to move down by the pressing force, stretching the stop spring 402, and grooving the wall surface through the grooving grinding wheel 1021. The wire harness can pass through the guide hole 104. The wire harness is covered by a yellow wax tube, which facilitates the movement with the grooving and guides it. Another worker can operate and use the buckle to fix the wire harness in the wall groove. Alternatively, the guide hole 104 can be omitted, and the subsequent conduit can be buried directly to guide the wire. When the grooving mounting bracket 101 is held upright, the counterweight 505 can adhere to the contacting electrode 506 under gravity, and the grooving motor 102 is normally connected without affecting subsequent control. At the same time, when the grooving mounting bracket 101 moves upward to cut the groove, the rubber ring on the outside of the rotary wheel 504 rolls against the wall surface. At this time, the one-way bearing 503 is in an idle state and will not cause interference. Correspondingly, once the grooving mounting bracket 101 is held in reverse, the counterweight 505 no longer adheres to the contacting electrode 506 under gravity and is on the opposite side. The grooving motor 102 cannot be normally connected. When the grooving mounting bracket 101 is moved downward, the rubber ring on the outside of the rotary wheel 504 rolls against the wall surface. At this time, the one-way bearing 503 is in a locked state, driving the lower counterweight 505 to rotate, which will misalign with the contacting electrode 506. The grooving motor 102 cannot be normally connected and will stop directly, making it impossible to groove normally, thus ensuring the quality of wall grooving.
[0026] 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 process, method, article, or apparatus.
[0027] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A slotted cabling device suitable for communication engineering line construction, comprising a slotted mounting component (1), wherein an operation protection device (2) is installed on the slotted mounting component (1); characterized in that: The operation protection device (2) has two wall-mounted detection components (3) installed at its bottom; the two wall-mounted detection components (3) are used to adhere to the wall surface; the operation protection device (2) is used to delay protection of the slotted installation component (1); Two stop protection components (4) are installed on the slotted mounting component (1); the stop protection components (4) are used to stop the operation protection device (2); The slotted mounting component (1) has a slotted specification control component (5) installed on its side; The slotting mounting component (1) includes: a slotting mounting frame (101), a slotting motor (102), and a slotting grinding wheel (1021). The slotting mounting frame (101) is fixedly mounted with the slotting motor (102), and the slotting motor (102) passes through the slotting mounting frame (101). The slotting mounting frame (101) is provided with a protective cover. The output shaft of the slotting motor (102) is fixedly mounted with the slotting grinding wheel (1021), and the slotting grinding wheel (1021) is located inside the protective cover provided on the slotting mounting frame (101).
2. The slotted cabling device for communication engineering line construction according to claim 1, characterized in that: The grooving mounting component (1) further includes: a handle (103), a guide hole (104), and a nozzle (105). Two handles (103) are fixedly installed on the grooving mounting frame (101), and each handle (103) is provided with a rubber sleeve. A guide hole (104) is fixedly installed at the bottom of the grooving mounting frame (101), and a through hole is provided on the guide hole (104). A nozzle (105) is fixedly installed on the grooving mounting frame (101), and the nozzle (105) is used to spray water onto the grooving grinding wheel (1021).
3. The slotted cabling device for communication engineering line construction according to claim 1, characterized in that: The operation protection device (2) includes: lifting columns (201), a panel (2011), a connecting plate (202), a protective tension spring (203), a sliding mounting shell (204), a time delay switch (205), and a motor switch (206). Four lifting columns (201) are slidably mounted on the slotted mounting bracket (101). The panel (2011) is fixedly mounted on the bottom of the four lifting columns (201). There are two connecting plates (202), and the two connecting plates (202) are respectively fixedly mounted on the top of the two lifting columns (201) on the same side. The panel (2011) is used to adhere to the wall. The two connecting plates (2011) are fixedly mounted on the top of the two lifting columns (201) on the same side. 2) Protective tension springs (203) are fixedly installed at the bottom respectively, and the ends of the two protective tension springs (203) are fixedly installed on the slotted mounting bracket (101) respectively; two sliding mounting shells (204) are fixedly installed on the panel (2011); a time delay switch (205) is fixedly installed inside the sliding mounting shell (204) on the left; a motor switch (206) is fixedly installed inside the sliding mounting shell (204) on the right; the two sliding mounting shells (204) are used to pass through the slotted mounting bracket (101); the panel (2011) is provided with a through groove, and the through groove on the panel (2011) is aligned with the slotted grinding wheel (1021).
4. A slotted cabling device suitable for communication engineering line construction according to claim 3, characterized in that: The wall-attachment detection component (3) includes: a wall-attachment column (301), and two wall-attachment columns (301) are slidably inserted into the two sliding mounting shells (204), and the ends of the two wall-attachment columns (301) are respectively arc-shaped structures; the two wall-attachment columns (301) are respectively used to move upward to press and adhere to the delay switch (205) and the motor switch (206).
5. A slotted cabling device suitable for communication engineering line construction according to claim 4, characterized in that: The wall-mounted detection component (3) further includes: an anti-accidental touch spring (302), with the two sliding mounting shells (204) respectively fitted with anti-accidental touch springs (302), and the two anti-accidental touch springs (302) respectively connected between the two sliding mounting shells (204) and the wall-mounted column (301); the anti-accidental touch springs (302) are used to elastically support the wall-mounted column (301).
6. A slotted cabling device suitable for communication engineering line construction according to claim 3, characterized in that: The stop protection component (4) includes: a stop slider (401) and a stop spring (402). Two stop sliders (401) are slidably inserted into the slotted mounting bracket (101). The ends of the two stop sliders (401) are respectively inclined structures. The two stop sliders (401) are used to stop the two connecting plates (202) respectively. The two stop sliders (401) are L-shaped structures. Stop springs (402) are fixedly installed on the two stop sliders (401) respectively, and the ends of the two stop springs (402) are fixedly installed on the side of the slotted mounting bracket (101) respectively. The stop sliders (401) are made of iron metal.
7. A slotted cabling device suitable for communication engineering line construction according to claim 6, characterized in that: The stop protection component (4) further includes: an electromagnetic frame (403) and an electromagnet (404). Two electromagnetic frames (403) are fixedly installed on the side of the slotted mounting bracket (101); an electromagnet (404) is fixedly installed on each of the two electromagnetic frames (403), and the two electromagnets (404) are respectively aligned with the two stop sliders (401); the electromagnet (404) is electrically connected to a time delay switch (205); the motor switch (206) is electrically connected to a slotted motor (102).
8. A slotted cabling device suitable for communication engineering line construction according to claim 1, characterized in that: The slotting specification control component (5) includes: a cover (501), a rotating shaft (502), and a one-way bearing (503). The cover (501) is fixedly installed on the side of the slotting mounting bracket (101). The rotating shaft (502) is rotatably sleeved on the cover (501). The inner ring of the one-way bearing (503) is fixedly sleeved on the end of the rotating shaft (502). The one-way bearing (503) is used for one-way rotation.
9. A slotted cabling device suitable for communication engineering line construction according to claim 8, characterized in that: The grooving specification control component (5) further includes: a rotary wheel (504), the outer ring of the one-way bearing (503) is fixedly sleeved with the rotary wheel (504); a rubber ring is provided on the outer side of the rotary wheel (504), and the rubber ring on the outer side of the rotary wheel (504) is a hollow elastic structure; the rubber ring on the outer side of the rotary wheel (504) is used to roll and adhere to the wall surface.
10. A slotted wiring device suitable for communication engineering line construction according to claim 9, characterized in that: The grooving specification control component (5) further includes: a counterweight (505) and a bonding contact plate (506). The counterweight (505) is fixedly installed on the rotating shaft (502). The counterweight (505) is located inside the cover (501). The bottom of the counterweight (505) has an arc-shaped structure. The bonding contact plate (506) is fixedly installed inside the cover (501), and the bonding contact plate (506) is an elastic conductive copper sheet. The counterweight (505) is attached to the bonding contact plate (506). The grooving motor (102), the counterweight (505), and the bonding contact plate (506) are connected in series with a power supply.