Support assembly cutting device with cleaning structure

By introducing a cutting blade, movable frame, chamber, and air pump suction system into the bracket assembly cutting device, the problem of inconvenient cleaning of existing devices is solved, realizing automated debris and dust cleaning, and improving cleaning efficiency and space utilization.

CN224273543UActive Publication Date: 2026-05-26XUZHOU YAOU CONSTR MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XUZHOU YAOU CONSTR MASCH CO LTD
Filing Date
2025-05-21
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing bracket assembly cutting device lacks an effective automatic cleaning structure, which means that the debris and dust generated during the cutting process need to be cleaned manually, increasing the labor intensity of operators and reducing work efficiency.

Method used

A support assembly cutting device with a cleaning structure was designed. By setting a cutting blade, a movable frame, a chamber, a slot and a pipe on the base, the suction airflow generated by the air pump forms a complete suction channel, which automatically cleans the debris and dust generated during the cutting process, and the sliding of the movable frame achieves comprehensive cleaning.

Benefits of technology

It achieves automated debris and dust removal, improves the thoroughness and coverage of cleaning, reduces equipment space occupation, and facilitates other operations and equipment maintenance for operators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of support assembly cutting, in particular to a support assembly cutting device with a cleaning structure, which comprises a base, and a cutting blade is rotatably connected in the base in a penetrating manner; the device comprises a movable frame, frame bodies are fixedly connected to the inner walls of the two sides of the movable frame, two supports are rotationally connected between the inner walls of the two sides of the movable frame, cavities are formed in the side walls of the supports, and notches are formed in the side walls of the supports. Through relative rotation and inclination of the support, the notch is located above the vertex of the cutting blade, meanwhile, the air pump generates powerful suction airflow, a complete suction channel is formed through the notch, the cavity and the pipeline, chippings and dust generated by cutting at the upper end of the base can be directly sucked and guided, and the chippings and dust are effectively collected from the surface of the base; and during suction cleaning, the movable frame transversely slides to drive the whole cleaning structure to move on the base, so that the upper end of the base can be comprehensively cleaned.
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Description

Technical Field

[0001] This utility model relates to the field of bracket assembly cutting technology, and in particular to a bracket assembly cutting device with a cleaning structure. Background Technology

[0002] A bracket assembly cutting device is a mechanical device specifically designed for cutting bracket assemblies. It aims to separate the bracket assembly material through specific cutting actions and functions to meet specific production or processing needs.

[0003] Existing bracket assembly cutting devices lack an effective automatic cleaning structure, which means that the debris and dust generated during the cutting process need to be cleaned manually. This not only increases the labor intensity of operators but also reduces work efficiency. Utility Model Content

[0004] The purpose of this invention is to provide a bracket assembly cutting device with a cleaning structure, which facilitates the cleaning of the device and solves the problem of inconvenient cleaning of the device in the prior art.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A bracket assembly cutting device with a cleaning structure includes a base, a cutting blade rotatably connected through the base, a drive motor fixedly connected inside the base, and an output end of the drive motor fixedly connected to the side wall of the cutting blade; a movable frame slidably disposed on the upper end of the base, with a frame body fixedly connected to both inner walls of the movable frame, a clamping plate slidably connected between the inner walls of the two sides of the frame, two brackets rotatably connected between the inner walls of the two sides of the movable frame, a cavity provided inside the side wall of the bracket, and a slot provided in the side wall of the bracket communicating with the cavity; and a box body fixedly disposed on the upper end of the movable frame, with two pipes fixedly connected through both sides of the box body, and the pipes communicating with the interior of the cavity.

[0007] Preferably, both sides of the base are provided with sliding grooves, one of the sliding grooves is rotatably connected to a screw, a motor is fixedly connected to the side wall of the base, and the output end of the motor is fixedly connected to the end of the screw through a coupling.

[0008] Preferably, the end of the movable frame is slidably connected to the slide groove, and the screw is threadedly connected to the movable frame.

[0009] Preferably, electric actuators are fixedly connected to the inside of both sides of the movable frame, and the output end of the electric actuator is fixedly connected to the side wall of the clamping plate.

[0010] Preferably, two gears are rotatably connected inside the side wall of the movable frame, the two gears mesh, a servo motor is fixedly connected to the side wall of the movable frame, the output end of the servo motor is fixedly connected to one of the gear side walls, and the gear side wall is fixedly connected to the end of the bracket.

[0011] Preferably, a filter screen is fixedly connected inside the housing, and an air pump is fixedly connected to the bottom of the housing, with the air pump located below the filter screen.

[0012] Compared with the prior art, the advantages of this utility model are:

[0013] 1. By rotating and tilting the bracket relative to each other, the slot is positioned above the apex of the cutting blade. At the same time, the air pump generates a strong suction airflow. The slot, chamber and pipe form a complete suction channel, which can directly suck and guide the debris and dust generated by cutting at the upper part of the base. This effectively collects the debris and dust from the base surface, avoids debris and dust residue, and improves the thoroughness of cleaning.

[0014] 2. While the suction is being applied, the movable frame slides laterally, moving the entire cleaning structure on the base. This allows for a thorough cleaning of the upper part of the base. No matter where the debris and dust are located on the upper part of the base, they can be captured by the suction airflow, ensuring that all areas of the base are effectively cleaned, thus improving the coverage and effectiveness of the cleaning.

[0015] 3. After cleaning, the bracket will occupy a large space above the base and around the movable frame when it is tilted. Storing it inside the side wall of the movable frame can significantly reduce the overall space occupied by the equipment, so that the equipment has a more spacious environment when it is idle or in subsequent operation, which helps to improve space utilization and facilitates operators to perform other operations or equipment maintenance. Attached Figure Description

[0016] Figure 1 This is a front view of the external structure of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0017] Figure 2 This is a rear view of the external structure of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0018] Figure 3 This is a bottom view of the external structure of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0019] Figure 4 This is a front sectional view of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0020] Figure 5This is a rear cross-sectional view of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0021] Figure 6 This is a side sectional view of a bracket assembly cutting device with a cleaning structure proposed in this utility model.

[0022] In the diagram: 001, base; 101, slide rail; 102, screw; 103, motor; 104, cutting disc; 105, drive motor; 002, movable frame; 201, frame; 202, clamping plate; 203, electric actuator; 204, bracket; 205, chamber; 206, slot; 207, gear; 208, servo motor; 003, housing; 301, pipe; 302, filter screen; 303, air pump. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0024] Reference Figure 1-6A cutting device for a support assembly with a cleaning structure includes a base 001, a cutting blade 104 rotatably connected through the base 001, a drive motor 105 fixedly connected inside the base 001, and an output end of the drive motor 105 fixedly connected to the side wall of the cutting blade 104; a movable frame 002, slidably disposed on the upper end of the base 001, with frames 201 fixedly connected to both inner walls of the movable frame 002, a clamping plate 202 slidably connected between the inner walls of the two sides of the frame 201, and two supports 204 rotatably connected between the inner walls of the two sides of the movable frame 002. A chamber 205 is provided inside the side wall of each support 204. The side wall is provided with a slot 206, which communicates with the chamber 205; the box body 003 is fixedly mounted on the upper end of the movable frame 002, and two pipes 301 are fixedly connected through both sides of the box body 003. The pipes 301 communicate with the inside of the chamber 205. A scraper is fixedly connected to the side wall of the clamping plate 202. When it is necessary to cut the frame-shaped support assembly, the operator places the frame-shaped support assembly inside the upper end of the two frames 201. Then the two clamping plates 202 slide relative to each other, and the support assembly is fixed by the two relative sliding clamping plates 202. Then the drive motor 105 drives the cutting blade 104 to rotate. 2. The support assembly is moved by the two frames 201, and then the support assembly comes into contact with the rotating cutting blade 104. The cutting blade 104 cuts the support assembly. After the support assembly is cut, the two clamping plates 202 slide relative to each other to loosen the fixation of the support assembly. Then the operator removes the cut support assembly from the upper part of the two frames 201. After the support assembly is removed, the two clamping plates 202 drive the scrapers on their respective side walls to slide, pushing the debris inside the frames 201 to the upper part of the base 001. When it is necessary to clean the debris and dust on the upper part of the base 001, the cutting blade 104 stops rotating, and the two supports 204... With relative rotation and tilt, the slot 206 on the side wall of the bracket 204 is located above the apex of the cutting disc 104. Subsequently, a strong suction airflow flows inside the housing 003. The suction airflow draws into the chamber 205 through the pipe 301. The suction airflow then draws and guides the debris and dust on the upper end of the base 001 through the slot 206, so that the debris and dust on the upper end of the base 001 enter the housing 003 through the slot 206, the chamber 205 and the pipe 301. At the same time, the movable frame 002 slides laterally to thoroughly clean the upper end of the base 001, thus facilitating the cleaning of the upper end of the base 001. The pipe 301 is a telescopic pipe.

[0025] Both sides of the base 001 are provided with sliding grooves 101. A screw 102 is rotatably connected inside one of the sliding grooves 101. A motor 103 is fixedly connected to the side wall of the base 001. The output end of the motor 103 is fixedly connected to the end of the screw 102 through a coupling. The output end of the motor 103 drives the screw 102 to rotate.

[0026] The end of the movable frame 002 is slidably connected to the slide groove 101, and the screw 102 is threadedly connected to the movable frame 002. When the screw 102 rotates, the end of the movable frame 002 slides inside the slide groove 101 through the cooperation between the screw 102 and the movable frame 002.

[0027] Electric actuators 203 are fixedly connected to the inside of both sides of the movable frame 002. The output end of the electric actuator 203 is fixedly connected to the side wall of the clamping plate 202. The output ends of the two electric actuators 203 push the two clamping plates 202 to slide, so that the two clamping plates 202 slide relative to each other.

[0028] The movable frame 002 has two gears 207 rotatably connected inside its side wall. The two gears 207 mesh with each other. A servo motor 208 is fixedly connected to the side wall of the movable frame 002. The output end of the servo motor 208 is fixedly connected to the side wall of one of the gears 207. The side wall of the gear 207 is fixedly connected to the end of the bracket 204. The output end of the servo motor 208 drives one of the gears 207 to rotate. Through the cooperation between the two gears 207, the other gear 207 rotates accordingly. At the same time, the gear 207 drives the bracket 204 to rotate. The gear 207 is a spur gear.

[0029] A filter screen 302 is fixedly connected inside the housing 003, and an air pump 303 is fixedly connected to the bottom of the housing 003. The air pump 303 is located below the filter screen 302. The filter screen 302 filters and collects debris and dust inside the housing 003, and the air pump 303 draws air from inside the housing 003, creating a strong suction airflow inside the housing 003.

[0030] In this utility model, when the frame bracket assembly needs to be cut, the operator places the frame bracket assembly inside the upper end of the two frames 201. The output ends of the two electric push rods 203 push the two clamping plates 202 to slide, so that the two clamping plates 202 slide inward relative to each other. The bracket assembly is fixed by the two relatively sliding clamping plates 202. Then, the drive motor 105 drives the cutting blade 104 to rotate. The output end of the motor 103 drives the screw 102 to rotate. Then, through the cooperation between the screw 102 and the movable frame 002, the end of the movable frame 002 slides inside the slide groove 101. The movable frame 002 drives the bracket assembly to move through the two frames 201. Then, the bracket assembly contacts the rotating cutting blade 104, and the bracket assembly is cut by the cutting blade 104.

[0031] After the bracket assembly is cut, the two clamping plates 202 slide outward relative to each other to loosen the fixation on the bracket assembly. Then, the operator takes out the cut bracket assembly from the inside of the upper end of the two frames 201. After the bracket assembly is taken out, when it is necessary to clean the debris inside the frame 201, the two clamping plates 202 drive the scrapers on their respective side walls to slide inward, pushing the debris inside the frame 201 to the upper end of the base 001.

[0032] When it is necessary to clean the debris and dust on the upper part of the base 001, the cutting blade 104 stops rotating. The output of the servo motor 208 drives one of the gears 207 to rotate. Through the cooperation between the two gears 207, the other gear 207 rotates accordingly. At the same time, the gear 207 drives the bracket 204 to rotate. The two brackets 204 rotate and tilt relative to each other. The groove 206 on the side wall of the bracket 204 is located above the apex of the cutting blade 104. The air pump 303 sucks the air from the inside of the housing 003. This generates a strong suction airflow inside the housing 003. The suction airflow draws air into the chamber 205 through the pipe 301, and then draws and guides debris and dust from the upper part of the base 001 through the slot 206. This allows the debris and dust from the upper part of the base 001 to enter the housing 003 through the slot 206, the chamber 205, and the pipe 301. At the same time, the movable frame 002 slides laterally to thoroughly clean the upper part of the base 001, thus facilitating the cleaning of the upper part of the base 001.

[0033] After the upper part of the base 001 is cleaned, one of the gears 207 is driven to rotate by the output of the servo motor 208. Through the cooperation between the two gears 207, the other gear 207 rotates accordingly. At the same time, the gear 207 drives the bracket 204 to rotate. The two brackets 204 rotate relative to each other. The bracket 204 rotates from an inclined state to a vertical state and is stored inside the side wall of the movable frame 002.

[0034] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A stent assembly cutting device having a cleaning structure, characterized by, include A base (001) has a cutting blade (104) rotatably connected inside the base (001), and a drive motor (105) is fixedly connected inside the base (001). The output end of the drive motor (105) is fixedly connected to the side wall of the cutting blade (104). A movable frame (002) is slidably mounted on the upper end of a base (001). A frame (201) is fixedly connected to the inner walls on both sides of the movable frame (002). A clamp (202) is slidably connected between the inner walls on both sides of the frame (201). Two supports (204) are rotatably connected between the inner walls on both sides of the movable frame (002). A chamber (205) is provided inside the side wall of the support (204). A slot (206) is provided on the side wall of the support (204). The slot (206) communicates with the chamber (205). The box body (003) is fixedly mounted on the upper end of the movable frame (002). Two pipes (301) are fixedly connected through both sides of the box body (003). The pipes (301) are connected to the interior of the chamber (205).

2. The stent assembly cutting device with a cleaning structure according to claim 1, wherein, The base (001) has sliding grooves (101) on both sides, and a screw (102) is rotatably connected inside one of the sliding grooves (101). A motor (103) is fixedly connected to the side wall of the base (001), and the output end of the motor (103) is fixedly connected to the end of the screw (102) through a coupling.

3. The bracket assembly cutting device with a cleaning structure according to claim 2, characterized in that, The end of the movable frame (002) is slidably connected to the slide groove (101), and the screw (102) is threadedly connected to the movable frame (002).

4. The bracket assembly cutting device with a cleaning structure according to claim 1, characterized in that, Electric actuators (203) are fixedly connected to the inside of both sides of the movable frame (002), and the output end of the electric actuators (203) is fixedly connected to the side wall of the clamping plate (202).

5. The bracket assembly cutting device with a cleaning structure according to claim 1, characterized in that, The movable frame (002) has two gears (207) rotatably connected inside its side wall. The two gears (207) mesh with each other. A servo motor (208) is fixedly connected to the side wall of the movable frame (002). The output end of the servo motor (208) is fixedly connected to the side wall of one of the gears (207). The side wall of the gear (207) is fixedly connected to the end of the bracket (204).

6. The bracket assembly cutting device with a cleaning structure according to claim 1, characterized in that, A filter screen (302) is fixedly connected inside the housing (003), and an air pump (303) is fixedly connected to the bottom of the housing (003). The air pump (303) is located below the filter screen (302).