Cutting device for industrial product production
By designing a cutting device for industrial products production that includes components such as protective cabinets, workbenches, deflectors, and treatment devices, the problem of poor handling of large particles and powder-like dust during cutting in the prior art is solved, and a more efficient cutting and a safer working environment are achieved.
Patent Information
- Application Number
- CN202510452966.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing industrial material cutting device has too simple structure and cannot effectively deal with the large amount of large particles of debris and powder-like dust generated during the cutting process, resulting in reduced flexibility of the mobile mechanism and dust spreading the workshop, which may cause lung diseases of the operators and cause pollution to the environment.
A cutting device for the production of industrial supplies is designed, including a protective cabinet, a workbench, a deflector, a treatment device, a linear drive mechanism, a telescopic mechanism, a driving body, a cutting piece, a suction end cover, a primary impurity removal device and a secondary impurity removal device. Through the synergy of these components, debris and dust generated by cutting can be processed step by step, reducing the negative impact of debris.
It effectively reduces the negative impact of debris during cutting, improves cutting efficiency and performance, and ensures the health of operators and the safety of the environment.
Smart Images

Figure CN119952770A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cutting equipment, in particular to a cutting device for producing industrial products. Background Art
[0002] With the expansion of international exchanges, the scale and level of industrial development have become an important indicator of the development and progress of a country and society. In the production process of industrial products, cutting of raw materials is essential.
[0003] At present, the structure of the existing industrial material cutting device is too simple. During the cutting process, a large amount of large-particle debris and powdery dust and other debris will be generated. These debris cannot be handled in time. The large-particle debris will affect the flexibility of the mobile mechanism, and the powdery dust will spread throughout the workshop. After the operator inhales a large amount of it, it may cause lung diseases to the operator, which is not good for the health of the operator, resulting in low work efficiency and pollution to the environment. Some use filter screens for filtering, but they are prone to clogging and require manual regular cleaning, which is time-consuming and labor-intensive, and reduces the performance of use. Summary of the invention
[0004] In order to solve the above technical problems, the present invention provides a cutting device for the production of industrial supplies, which solves the problem that the existing industrial supply material cutting device has an overly simple structure. During the cutting process, a large amount of large-particle debris, powdery dust and other debris will be generated, and these debris cannot be handled in time. The large-particle debris will affect the flexibility of the moving mechanism, and the powdery dust will spread throughout the entire workshop. After the operator inhales a large amount of it, it may cause lung diseases in the operator, which is detrimental to the health of the operator, resulting in low work efficiency and pollution to the environment. Some use filter screens for filtering, but they are prone to clogging and require manual cleaning on a regular basis, which is time-consuming and labor-intensive, and reduces the problem of performance.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A cutting device for industrial product production, comprising a protective cabinet, a workbench is provided at the bottom of the inner wall of the protective cabinet, a guide plate is fixedly connected to one side of the inner wall of the protective cabinet and at an end position close to the workbench, a processing device is provided at the central position of the bottom of the inner wall of the protective cabinet, a linear drive mechanism is provided at the top of the inner wall of the protective cabinet, a telescopic mechanism is provided at the output end of the linear drive mechanism, a driving body is fixedly connected to the output end of the telescopic mechanism, and a cutting blade is provided at the output end of the driving body; The processing device includes an air intake end hood, which is arranged inside the protective cabinet and close to the guide plate. A primary impurity removal device is arranged on the surface of the air intake end hood and on the side close to the guide plate. A secondary impurity removal device is arranged on the surface of the air intake end hood and on the side away from the primary impurity removal device. The industrial raw materials to be cut are placed on the workbench. At this time, the driving body and the cutting blade are driven to move by the telescopic mechanism, and then the height is adjusted appropriately. At this time, the cutting blade is driven to rotate by the driving body, and the telescopic mechanism, the driving body, and the cutting blade are driven as a whole by the linear driving mechanism to start cutting the raw materials. Through the interaction between the primary impurity removal device and the secondary impurity removal device, the entire device can timely process debris, dust and other debris generated by cutting step by step, reduce the negative impact of debris, be safe and reliable, and improve cutting efficiency and performance.
[0006] Preferably, the primary impurity removal device includes a primary filter screen, the surface edge of the primary filter screen is fixedly connected to the surface end of the air intake end cover, a collecting tube is fixedly connected to one side of the surface bottom of the primary filter screen, and a vibration device is provided on the surface top of the primary filter screen and inside the air intake end cover.
[0007] Preferably, the vibration device includes a pressure-connected base plate, the surface edge of the pressure-connected base plate is hinged to the surface of the primary filter screen, the surface end of the pressure-connected base plate is fixedly connected to a knocking rod, and a herringbone elastic member is fixedly connected between the surface ends of the pressure-connected base plate and the two sides corresponding to the surface of the primary filter screen. When the cutting blade is cutting the raw material, the debris and dust generated by the cutting will be thrown out along the rotation direction of the cutting blade, and under the guidance of the guide plate, the debris will fall off, and the servo motor on the secondary impurity removal device serves as a power, so that the rotating shaft drives the blowing device, thereby blowing the air in the connecting pipe and generating negative pressure. At this time, the suction end hood increases the suction volume, which helps to absorb the debris generated by the cutting blade, and at this time, large particles of debris are sucked away by the primary The filter screen is filtered out and slides into the collecting tube. At the same time, the pressing part will apply pressing force to the pressurized connecting substrate under the rotation of the second curved fan blade, and the surface edge of the pressurized connecting substrate is hinged with the surface of the primary filter screen. At this time, the pressurized connecting substrate rotates after being compressed. At this time, the herringbone elastic part is compressed. As the second curved fan blade drives the pressing part to rotate continuously, the pressing part is separated from the pressurized connecting substrate, and under the elastic force of the herringbone elastic part, the pressurized connecting substrate drives the knocking rod to hit the primary filter screen, thereby causing the primary filter screen to vibrate and large particles of debris remaining on the surface of the primary filter screen to fall off, thereby realizing self-cleaning and not prone to clogging. By utilizing the mutual connection and interaction between the structures, multiple functions are realized, which is safe and reliable and improves the performance of use.
[0008] Preferably, the surface of the pressure-connected substrate is configured as an arc-shaped surface, and the herringbone elastic members are evenly distributed between the ends of the pressure-connected substrate surface and the two sides corresponding to the surface of the primary filter screen.
[0009] Preferably, the secondary impurity removal device includes a connecting pipe, the surface of the connecting pipe is fixedly connected to the bottom of the inner wall of the protective cabinet, one end of the connecting pipe is connected to the air suction end cover, a servo motor is arranged inside the connecting pipe, a secondary circular filter is fixedly connected to the inner wall of the connecting pipe, a cleaning device is arranged inside the connecting pipe and near the secondary circular filter, a dust collection mechanism is arranged at the bottom of the connecting pipe and near the secondary circular filter, and one end of the connecting pipe away from the air suction end cover is connected to the air blowing pipe. When the servo motor turns the cleaning device on When the rotating shaft is driven, the blowing device blows the air in the connecting pipe, so that under the action of negative pressure, the debris generated by the cutting of the cutting blade is sucked in, and the secondary circular filter screen filters the dust carried by the airflow in time, thereby realizing secondary filtration. At the same time, the airflow will blow along the connecting pipe and blow out from the tail end of the blowing pipe, and then blow air to the cutting position of the cutting blade, blowing the debris generated by the cutting to the position of the guide plate, thereby promoting the processing of the debris, making full use of the structure, achieving multiple functions, being safe and reliable, and improving the performance.
[0010] Preferably, the cleaning device includes a rotating shaft, which is rotatably connected to the inner center position of the connecting pipe through a bracket, the surface of the rotating shaft is rotatably connected to the surface center position of the secondary circular filter, one end of the rotating shaft is fixedly connected to the output shaft of the servo motor through a coupling, the surface of the rotating shaft and the position close to the secondary circular filter are fixedly connected with an arc scraper strip, and the end of the rotating shaft away from the servo motor is provided with a blowing device. When the rotating shaft is driven by the servo motor, the arc scraper strip and the blowing device also rotate together. At this time, the blowing device blows the air in the connecting pipe to make the gas flow, and utilizes negative pressure to help absorb debris generated by cutting. With the circulation of air, the servo motor can also be cooled, so that the servo motor is not easy to generate high temperature and can work for a long time. At the same time, the rotating arc scraper strip can timely scrape off the dust filtered from the surface of the secondary circular filter to reduce the dust sticking to the surface of the secondary circular filter, thereby realizing automatic cleaning and reducing blockage. The interaction between the structures is utilized to realize multiple functions, which is safe and reliable and improves the performance.
[0011] Preferably, the blowing device includes a cylindrical connecting block, one end of the cylindrical connecting block is fixedly connected to one end of the rotating shaft, a first arc fan blade is fixedly connected to the surface of the cylindrical connecting block, and a second arc fan blade is fixedly connected to the surface of the cylindrical connecting block and close to the first arc fan blade, and a pressing piece is provided on the surface of the second arc fan blade. When the rotating shaft drives the cylindrical connecting block, the first arc fan blade and the second arc fan blade also rotate together, thereby blowing the air in the connecting pipe, so that negative pressure is generated in the connecting pipe. At this time, the air in the protective cabinet enters the connecting pipe, which helps to absorb and process debris, and the second arc fan blade is used to drive the pressing piece to rotate, so that the pressing piece can promptly apply pressing force to the pressurized connecting substrate on the vibration device, which helps to clean the primary filter. The structure is cleverly connected together, which is safe and reliable, realizes multiple functions, and improves performance.
[0012] Preferably, the first arc surface fan blades are evenly distributed on the surface of the cylindrical connecting block, and the first arc surface fan blades have the same structure as the second arc surface fan blades.
[0013] The present invention provides a cutting device for industrial product production, which has the following beneficial effects: 1. The cutting device for the production of industrial products places the raw materials of industrial products to be cut on the workbench through a protective cabinet, a workbench, a guide plate, a processing device, a linear drive mechanism, a telescopic mechanism, a driving body, a cutting blade, an air suction end cover, a primary impurity removal device, and a secondary impurity removal device. At this time, the driving body and the cutting blade are driven to move through the telescopic mechanism, and then the height is appropriately adjusted. At this time, the cutting blade is driven to rotate through the driving body, and the telescopic mechanism, the driving body, and the cutting blade are driven as a whole through the linear drive mechanism to start cutting the raw materials. Through the interaction between the primary impurity removal device and the secondary impurity removal device, the entire device can timely process debris, dust and other debris generated by cutting step by step, reduce the negative impact of debris, be safe and reliable, and improve cutting efficiency and performance.
[0014] 2. The cutting device for the production of industrial products includes an air suction end cover, a primary filter, a collecting tube, a vibration device, a pressurized connecting substrate, a knocking rod, and a herringbone elastic member. When the cutting disc is cutting the raw material, the debris and dust generated by the cutting will be thrown out along the rotation direction of the cutting disc, and under the guidance of the guide plate, the debris will fall, and the servo motor on the secondary impurity removal device is used as a power, so that the rotating shaft drives the blowing device, and then the air in the connecting pipe is blown to generate negative pressure. At this time, the air suction end cover increases the suction volume, which helps to absorb the debris generated by the cutting of the cutting disc. At this time, the large particles of debris are filtered out by the primary filter and slide into the collecting tube. At the same time, the second curved fan blade During the rotation, the pressing piece applies pressing force to the pressurized connecting substrate, and is hinged with the surface edge of the pressurized connecting substrate and the surface of the primary filter screen. At this time, the pressurized connecting substrate rotates after being compressed, and the herringbone elastic piece is compressed. As the second curved fan blade drives the pressing piece to rotate continuously, the pressing piece is separated from the pressurized connecting substrate, and under the elastic force of the herringbone elastic piece, the pressurized connecting substrate drives the knocking rod to hit the primary filter screen, thereby causing the primary filter screen to vibrate, causing large particles of debris remaining on the surface of the primary filter screen to fall off, thereby realizing self-cleaning, and not prone to clogging. By utilizing the mutual connection and interaction between the structures, multiple functions are realized, which is safe and reliable, and improves the performance of use.
[0015] 3. The cutting device for the production of industrial products is connected through a connecting pipe, a servo motor, a secondary circular filter, a cleaning device, a dust suction mechanism, and an air blowing pipe. When the servo motor drives the rotating shaft on the cleaning device, the air blowing device blows the air in the connecting pipe, so that under the action of negative pressure, the debris generated by the cutting of the cutting blade is sucked in, and the secondary circular filter promptly filters the dust carried by the airflow, thereby realizing secondary filtration. At the same time, the airflow will blow along the connecting pipe and blow out from the tail end of the air blowing pipe, and then blow air to the cutting position of the cutting blade, blowing the debris generated by the cutting to the position of the guide plate, thereby promoting the handling of the debris, making full use of the structure, achieving multiple functions, being safe and reliable, and improving the performance.
[0016] 4. The cutting device for the production of industrial products is driven by a rotating shaft, an arc-shaped scraper and a blowing device. When the rotating shaft is driven by a servo motor, the arc-shaped scraper and the blowing device also rotate together. At this time, the blowing device blows the air in the connecting pipe to make the gas flow, and utilizes negative pressure to help absorb debris generated by cutting. With the circulation of air, the servo motor can also be cooled, so that the servo motor is not easy to generate high temperature and can work for a long time. At the same time, the rotating arc-shaped scraper can timely scrape off the dust filtered from the surface of the secondary circular filter, reduce the dust sticking to the surface of the secondary circular filter, thereby realizing automatic cleaning and reducing blockage. The interaction between the structures is utilized to realize multiple functions, which is safe and reliable and improves the performance.
[0017] 5. The cutting device for the production of industrial supplies includes a cylindrical connecting block, a first curved fan blade, a second curved fan blade, and a pressing piece. When the rotating shaft drives the cylindrical connecting block, the first curved fan blade and the second curved fan blade also rotate together, thereby blowing the air in the connecting pipe, so that negative pressure is generated in the connecting pipe. At this time, the air in the protective cabinet enters the connecting pipe, which helps to absorb and process the debris. The pressing piece is driven to rotate by the second curved fan blade, so that the pressing piece can promptly apply pressing force to the pressurized connecting substrate on the vibration device, which helps to clean the primary filter. The structures are cleverly connected together, which is safe and reliable, realizes multiple functions, and improves performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the internal structure of the present invention; Figure 3 It is a schematic diagram of the overall structure of the processing device of the present invention; Figure 4 It is a schematic diagram of the internal structure of the processing device of the present invention; Figure 5 This is a schematic diagram of the structure of the primary impurity removal device of the present invention; Figure 6 It is a schematic diagram of the structure of the vibration device of the present invention; Figure 7 It is a schematic diagram of the structure of the cleaning device of the present invention; Figure 8 It is a schematic diagram of the structure of the blowing device of the present invention.
[0019] In the figure: 1 protective cabinet, 2 workbench, 3 guide plate, 4 processing device, 5 line drive mechanism, 6 telescopic mechanism, 7 drive body, 8 cutting blade, 41 suction end cover, 42 primary impurity removal device, 43 secondary impurity removal device, 421 primary filter screen, 422 collecting tube, 423 vibration device, 4231 pressure connection base plate, 4232 knocking rod, 4233 herringbone elastic member, 431 connecting pipe, 432 servo motor, 433 secondary circular filter screen, 434 cleaning device, 435 dust collection mechanism, 436 blowing pipe, 4341 rotating shaft, 4342 arc scraper, 4343 blowing device, 43431 cylindrical connecting block, 43432 first arc fan blade, 43433 second arc fan blade. DETAILED DESCRIPTION
[0020] The present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses. Example
[0021] See also Figure 1-Figure 8 The present invention provides a technical solution: a cutting device for industrial product production, comprising a protective cabinet 1, a workbench 2 is arranged at the bottom of the inner wall of the protective cabinet 1, a guide plate 3 is fixedly connected to one side of the inner wall of the protective cabinet 1 and at an end position close to the workbench 2, a processing device 4 is arranged at the central position of the bottom of the inner wall of the protective cabinet 1, a linear drive mechanism 5 is arranged at the top of the inner wall of the protective cabinet 1, a telescopic mechanism 6 is arranged at the output end of the linear drive mechanism 5, a driving body 7 is fixedly connected to the output end of the telescopic mechanism 6, and a cutting blade 8 is arranged at the output end of the driving body 7; The processing device 4 includes an air intake hood 41, which is arranged inside the protective cabinet 1 and close to the guide plate 3. A primary impurity removal device 42 is arranged on the surface of the air intake hood 41 and on the side close to the guide plate 3. A secondary impurity removal device 43 is arranged on the surface of the air intake hood 41 and on the side away from the primary impurity removal device 42. The industrial raw materials to be cut are placed on the workbench 2. At this time, the driving body 7 and the cutting blade 8 are driven to move through the telescopic mechanism 6, and then the height is appropriately adjusted. At this time, the cutting blade 8 is driven to rotate through the driving body 7, and the telescopic mechanism 6, the driving body 7, and the cutting blade 8 are driven as a whole through the linear driving mechanism 5 to start cutting the raw materials. Through the interaction between the primary impurity removal device 42 and the secondary impurity removal device 43, the entire device can timely process debris, dust and other debris generated by cutting step by step, reduce the negative impact of debris, be safe and reliable, and improve cutting efficiency and performance. Example
[0022] The primary impurity removal device 42 includes a primary filter 421, the surface edge of the primary filter 421 is fixedly connected to the surface end of the air intake end cover 41, a collecting tube 422 is fixedly connected to the bottom side of the surface of the primary filter 421, and a vibration device 423 is provided on the top of the surface of the primary filter 421 and inside the air intake end cover 41.
[0023] The vibration device 423 includes a pressure-connected substrate 4231, the surface edge of the pressure-connected substrate 4231 is hinged to the surface of the primary filter 421, a knocking rod 4232 is fixedly connected to the surface end of the pressure-connected substrate 4231, and a herringbone elastic member 4233 is fixedly connected between the surface end of the pressure-connected substrate 4231 and the two sides corresponding to the surface of the primary filter 421.
[0024] The surface of the pressurized connecting substrate 4231 is set as an arc surface, and the herringbone elastic members 4233 are evenly distributed between the ends of the surface of the pressurized connecting substrate 4231 and the two sides corresponding to the surface of the primary filter screen 421. When the cutting blade 8 is cutting the raw material, the debris and dust generated by the cutting will be thrown out along the rotation direction of the cutting blade 8, and under the guidance of the guide plate 3, the debris will fall, and the servo motor 432 on the secondary impurity removal device 43 is used as a power, so that the rotating shaft 4341 drives the blowing device 4343, and then blows the air in the connecting pipe 431 and generates negative pressure. At this time, the suction end cover 41 increases the suction volume, which helps to absorb the debris generated by the cutting of the cutting blade 8. At this time, large particles of debris are filtered out by the primary filter screen 421 and slide into the collecting tube 422. At the same time, As the arc-surface fan blades 43433 rotate, the pressing piece 43433 applies pressing force to the pressurized connecting substrate 4231, and is hinged with the surface edge of the pressurized connecting substrate 4231 and the surface of the primary filter 421. At this time, the pressurized connecting substrate 4231 rotates, and the herringbone elastic piece 4233 is compressed. As the second arc-surface fan blades 43433 drive the pressing piece 43433 to rotate continuously, the pressing piece 43433 is separated from the pressurized connecting substrate 4231, and under the elastic force of the herringbone elastic piece 4233, the pressurized connecting substrate 4231 drives the knocking rod 4232 to hit the primary filter 421, thereby causing the primary filter 421 to vibrate, causing large particles of debris remaining on the surface of the primary filter 421 to fall off, thereby achieving self-cleaning and preventing blockage. Example
[0025] The secondary impurity removal device 43 includes a connecting pipe 431, the surface of the connecting pipe 431 is fixedly connected to the bottom of the inner wall of the protective cabinet 1, one end of the connecting pipe 431 is connected to the suction end cover 41, a servo motor 432 is arranged inside the connecting pipe 431, a secondary circular filter 433 is fixedly connected to the inner wall of the connecting pipe 431, a cleaning device 434 is arranged inside the connecting pipe 431 and near the secondary circular filter 433, a dust collection mechanism 435 is arranged at the bottom of the connecting pipe 431 and near the secondary circular filter 433, and one end of the connecting pipe 431 away from the suction end cover 41 is connected to a blowing mechanism 434. Air pipe 436, when the servo motor 432 drives the rotating shaft 4341 on the cleaning device 434, the blowing device 4343 blows the air in the connecting pipe 431, so that under the action of negative pressure, the debris generated by the cutting of the cutting blade 8 is sucked in, and the secondary circular filter 433 filters the dust carried by the air flow in time, thereby realizing secondary filtration. At the same time, the air flow will blow along the connecting pipe 431 and blow out from the tail end of the blowing pipe 436, and then blow towards the cutting position of the cutting blade 8, blowing the debris generated by the cutting to the position of the guide plate 3, thereby promoting the processing of the debris.
[0026] The cleaning device 434 includes a rotating shaft 4341, which is rotatably connected to the inner center position of the connecting pipe 431 through a bracket, and the surface of the rotating shaft 4341 is rotatably connected to the surface center position of the secondary circular filter 433. One end of the rotating shaft 4341 is fixedly connected to the output shaft of the servo motor 432 through a coupling, and an arc-shaped scraper 4342 is fixedly connected to the surface of the rotating shaft 4341 near the secondary circular filter 433. A blowing device 4343 is provided at one end of the rotating shaft 4341 away from the servo motor 432. When the rotating shaft 4341 is driven by the servo motor 432, the arc-shaped scraper The strip 4342 and the blowing device 4343 also rotate together. At this time, the blowing device 4343 blows the air in the connecting pipe 431 to make the gas flow, and use the negative pressure to help absorb the debris generated by cutting. Moreover, with the circulation of air, the servo motor 432 can also be cooled, so that the servo motor 432 is not easy to generate high temperature and can work for a long time. At the same time, the rotating arc scraper strip 4342 can scrape off the dust filtered from the surface of the secondary circular filter 433 in time, reduce the dust sticking to the surface of the secondary circular filter 433, thereby realizing automatic cleaning and reducing blockage.
[0027] The blowing device 4343 includes a cylindrical connecting block 43431, one end of the cylindrical connecting block 43431 is fixedly connected to one end of the rotating shaft 4341, the surface of the cylindrical connecting block 43431 is fixedly connected to the first arc fan blade 43432, the surface of the cylindrical connecting block 43431 and the position close to the first arc fan blade 43432 is fixedly connected to the second arc fan blade 43433, and the surface of the second arc fan blade 43433 is provided with a pressing piece 43433.
[0028] The first curved fan blades 43432 are evenly distributed on the surface of the cylindrical connecting block 43431. The first curved fan blades 43432 and the second curved fan blades 43433 have the same structure. When the rotating shaft 4341 drives the cylindrical connecting block 43431, the first curved fan blades 43432 and the second curved fan blades 43433 also rotate together, thereby blowing the air in the connecting pipe 431, so that negative pressure is generated in the connecting pipe 431. At this time, the air in the protective cabinet 1 enters the connecting pipe 431, which helps to absorb and process the debris, and the second curved fan blades 43433 are used to drive the pressing piece 43433 to rotate, so that the pressing piece 43433 promptly applies pressing force to the pressurized connecting substrate 4231 on the vibration device 423, which helps to clean the primary filter 421.
[0029] When in use, place the entire device at the designated position, place the industrial raw materials to be cut on the workbench 2, and then the driving body 7 together with the cutting blade 8 are driven to move through the telescopic mechanism 6, and then the height is appropriately adjusted. At this time, the cutting blade 8 is driven to rotate through the driving body 7, and the telescopic mechanism 6, the driving body 7, and the cutting blade 8 are driven as a whole through the linear driving mechanism 5 to start cutting the raw materials. When the cutting blade 8 is cutting the raw materials, the debris and dust generated by the cutting will be thrown out along the rotation direction of the cutting blade 8, and under the guidance of the guide plate 3, the debris will fall off, and the servo motor 432 on the secondary impurity removal device 43 is used as a power, so that the rotating shaft 4341 drives the blowing device 4343, and then The air in the connecting pipe 431 is blown and negative pressure is generated. At this time, the suction end cover 41 increases the suction volume, which helps to absorb the debris generated by the cutting of the cutting blade 8. At this time, large particles of debris are filtered out by the primary filter screen 421 and slide into the collecting tube 422. At the same time, under the rotation of the second curved fan blade 43433, the pressing piece 43433 applies a pressing force to the pressurized connecting substrate 4231, and the surface edge of the pressurized connecting substrate 4231 is hinged with the surface of the primary filter screen 421. At this time, the pressurized connecting substrate 4231 rotates after being compressed. At this time, the herringbone elastic piece 4233 is compressed, and as the second curved fan blade 43433 drives the pressing piece 43433 to rotate continuously, the pressing piece 43433 and the pressurized connecting substrate are used. After the plate 4231 is detached, and under the elastic force of the herringbone elastic member 4233, the pressurized connecting base plate 4231 drives the knocking rod 4232 to hit the primary filter screen 421, thereby causing the primary filter screen 421 to vibrate, causing large particles of debris remaining on the surface of the primary filter screen 421 to fall off, thereby achieving self-cleaning and being less likely to be blocked. When the servo motor 432 drives the rotating shaft 4341 on the cleaning device 434, the blowing device 4343 blows the air in the connecting pipe 431, so that under the action of negative pressure, the debris produced by the cutting of the cutting blade 8 is sucked in, and the secondary circular filter screen 433 filters the dust carried by the airflow in time, thereby achieving secondary filtration. At the same time, the airflow will blow along the connecting pipe 431. , and blown out from the tail end of the air blowing pipe 436, and then blown to the cutting position of the cutting blade 8, blowing the debris generated by the cutting to the position of the guide plate 3, thereby promoting the processing of the debris, and when the rotating shaft 4341 is driven by the servo motor 432, the arc scraper 4342 and the blowing device 4343 also rotate together. At this time, the blowing device 4343 blows the air in the connecting pipe 431 to make the gas flow, and use the negative pressure to help absorb the debris generated by the cutting. With the circulation of air, the servo motor 432 can also dissipate heat, so that the servo motor 432 is not easy to generate high temperature and can work for a long time. At the same time, the rotating arc scraper 4342 can timely scrape off the dust filtered on the surface of the secondary circular filter 433.It reduces dust sticking to the surface of the secondary circular filter 433, thereby realizing automatic cleaning and reducing blockage. Moreover, when the rotating shaft 4341 drives the cylindrical connecting block 43431, the first arc surface fan blade 43432 and the second arc surface fan blade 43433 also rotate together, thereby blowing the air in the connecting pipe 431, so that negative pressure is generated in the connecting pipe 431. At this time, the air in the protective cabinet 1 enters the connecting pipe 431, thereby facilitating the absorption and treatment of debris. The second arc surface fan blade 43433 drives the pressing member 43433 to rotate, thereby enabling the pressing member 43433 to timely apply the pressing force to the pressurized connecting substrate 4231 on the vibration device 423, thereby facilitating the cleaning of the primary filter 421. The structures are cleverly connected together, which is safe and reliable, realizes multiple functions, and improves the performance.
[0030] Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without creative work should fall within the scope of protection of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention are implemented according to the conventional means in the field unless otherwise specified and limited.
Claims
1. A cutting device for industrial product production, comprising a protective cabinet (1), characterized in that: A workbench (2) is provided at the bottom of the inner wall of the protective cabinet (1); a guide plate (3) is fixedly connected to one side of the inner wall of the protective cabinet (1) and at an end position close to the workbench (2); a processing device (4) is provided at the central position of the bottom of the inner wall of the protective cabinet (1); a linear drive mechanism (5) is provided at the top of the inner wall of the protective cabinet (1); a telescopic mechanism (6) is provided at the output end of the linear drive mechanism (5); a drive body (7) is fixedly connected to the output end of the telescopic mechanism (6); and a cutting blade (8) is provided at the output end of the drive body (7); The processing device (4) comprises an air suction end hood (41), the air suction end hood (41) being arranged inside the protective cabinet (1) and close to the guide plate (3), a primary impurity removal device (42) being arranged on a surface of the air suction end hood (41) and on a side close to the guide plate (3), and a secondary impurity removal device (43) being arranged on a surface of the air suction end hood (41) and on a side away from the primary impurity removal device (42).
2. A cutting device for industrial product production according to claim 1, characterized in that: The primary impurity removal device (42) comprises a primary filter screen (421), the surface edge of the primary filter screen (421) being fixedly connected to the surface end of the air intake end cover (41), a collecting cylinder (422) being fixedly connected to one side of the surface bottom of the primary filter screen (421), and a vibration device (423) being provided at the surface top of the primary filter screen (421) and located inside the air intake end cover (41).
3. A cutting device for industrial product production according to claim 2, characterized in that: The vibration device (423) comprises a pressure-connected base plate (4231), the surface edge of the pressure-connected base plate (4231) is hinged to the surface of the primary filter screen (421), a knocking rod (4232) is fixedly connected to the surface end of the pressure-connected base plate (4231), and a herringbone elastic member (4233) is fixedly connected between the surface end of the pressure-connected base plate (4231) and the two sides corresponding to the surface of the primary filter screen (421).
4. A cutting device for industrial product production according to claim 3, characterized in that: The surface of the pressure-connected substrate (4231) is configured as an arc-shaped surface, and the herringbone elastic members (4233) are evenly distributed between the ends of the surface of the pressure-connected substrate (4231) and the two sides corresponding to the surface of the primary filter screen (421).
5. The cutting device for industrial product production according to claim 1, characterized in that: The secondary impurity removal device (43) comprises a connecting pipe (431), the surface of the connecting pipe (431) is fixedly connected to the bottom of the inner wall of the protective cabinet (1), one end of the connecting pipe (431) is communicated with the air suction end cover (41), a servo motor (432) is arranged inside the connecting pipe (431), a secondary round filter (433) is fixedly connected to the inner wall of the connecting pipe (431), a cleaning device (434) is arranged inside the connecting pipe (431) and close to the secondary round filter (433), a dust collection mechanism (435) is arranged at the bottom of the connecting pipe (431) and close to the secondary round filter (433), and one end of the connecting pipe (431) away from the air suction end cover (41) is communicated with an air blowing pipe (436).
6. The cutting device for industrial product production according to claim 5, characterized in that: The cleaning device (434) comprises a rotating shaft (4341), the rotating shaft (4341) being rotatably connected to the inner center position of the connecting pipe (431) via a bracket, the surface of the rotating shaft (4341) being rotatably connected to the surface center position of the secondary circular filter (433), one end of the rotating shaft (4341) being fixedly connected to the output shaft of the servo motor (432) via a coupling, an arc-shaped scraper strip (4342) being fixedly connected to the surface of the rotating shaft (4341) near the secondary circular filter (433), and a blowing device (4343) being provided at one end of the rotating shaft (4341) away from the servo motor (432).
7. A cutting device for industrial product production according to claim 6, characterized in that: The blowing device (4343) includes a cylindrical connecting block (43431), one end of the cylindrical connecting block (43431) is fixedly connected to one end of the rotating shaft (4341), the surface of the cylindrical connecting block (43431) is fixedly connected to a first curved fan blade (43432), the surface of the cylindrical connecting block (43431) and a position close to the first curved fan blade (43432) is fixedly connected to a second curved fan blade (43433), and the surface of the second curved fan blade (43433) is provided with a pressing piece (43433).
8. The cutting device for industrial product production according to claim 7, characterized in that: The first curved fan blades (43432) are evenly distributed on the surface of the cylindrical connecting block (43431), and the first curved fan blades (43432) and the second curved fan blades (43433) have the same structure.
Citation Information
Patent Citations
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