A tool cleaning device
By designing a tool cleaning device that uses a roller brush assembly to clean hair and debris from electric clippers and hair shears, and by using an automatic collection component to improve collection efficiency, the device solves the problems of high cleaning costs, long processing times, and low efficiency in existing technologies, and achieves a highly efficient and automated tool cleaning and disinfection process.
Patent Information
- Application Number
- CN202310649865.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-02
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2043-06-02
AI Technical Summary
In existing technologies, hair adhering to hair-cutting tools, especially electric clippers and scissors, is difficult to clean, resulting in high cleaning costs, long processing times, and low efficiency.
A tool cleaning device is designed, comprising a housing assembly, a placement assembly, a cleaning assembly, and a collection assembly. The device uses a roller brush assembly to clean impurities from the tool, a disinfection lamp for disinfection, and the collection assembly automatically separates and collects impurities through a baffle assembly and a power assembly, thereby improving collection efficiency.
It reduces cleaning costs, shortens cleaning time, improves cleaning efficiency, and automates the tool cleaning and disinfection process.
Smart Images

Figure CN116833126B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of tool cleaning technology, and particularly relates to a tool cleaning device. Background Technology
[0002] As people become increasingly aware of hygiene, safety, and health, the disinfection and sterilization of tools that come into close contact with different customers, such as hair clippers, electric clippers, and combs, are receiving more and more attention from relevant practitioners and customers.
[0003] Haircutting tools mainly include hair clippers, electric clippers, combs, and hair clips. Cleaning hair clippers and electric clippers is more complicated. Before use, the tools need to be disinfected. After use, the tools need to be cleaned of any hair, disinfected, and stored.
[0004] For cleaning equipment for hairdressing tools, most existing technologies use general-purpose sterilization cabinets to regularly or uniformly disinfect and sterilize hairdressing tools. However, cleaning hairdressing tools, especially electric clippers and scissors, which are often stuck to the blades, usually requires manual cleaning with tools before being placed in a sterilization cabinet. However, some stubborn hair can accumulate in the gaps between the clipper heads or scissor heads of electric clippers. Manual cleaning with tools is time-consuming and labor-intensive. After cleaning the hair off the clippers, it's also necessary to clean up any hair that has fallen onto the floor, resulting in high costs, long processing times, and low efficiency. Summary of the Invention
[0005] The purpose of this invention is to provide a tool cleaning device to solve the problem that during the cleaning process of existing hair-cutting tools, some difficult-to-remove hair will stick to the gaps between the clipper heads or scissor heads of electric clippers. Manual cleaning with tools requires more time and effort. After cleaning the hair on the electric clippers, the hair that has fallen on the floor also needs to be cleaned up. This results in problems such as high cleaning costs, long time and low efficiency.
[0006] The present invention is implemented as follows: a tool cleaning device includes a housing assembly, a placement assembly, a cleaning assembly, and a collection assembly;
[0007] The placement component is disposed on the housing component, and the placement component is provided with a placement groove for placing the tool to be cleaned;
[0008] The cleaning component is set at the bottom of the placement slot on the placement component. The cleaning component is equipped with a roller brush component for cleaning the haircutting tool. The cleaning component is equipped with a first power component for providing power for the movement of the roller brush component. The cleaning component is equipped with a disinfection lamp for disinfecting and sterilizing the tool.
[0009] The collection component is installed at the bottom of the cleaning component. The collection component is equipped with a collection box for collecting impurities that fall off the haircutting tools after cleaning. The collection box is equipped with several collection frames, and a baffle assembly is set between the collection frames. The baffle assembly is equipped with a filter screen, which is used to separate the collection frames and block impurities. The baffle assembly is equipped with a baffle, which is used to cooperate with the second drive assembly. As impurities increase in the collection frames, each collection frame opens sequentially along the airflow direction to allow impurities to enter the corresponding collection frame. The collection component is equipped with a second power assembly to provide power for the collection of impurities.
[0010] The housing assembly is used to protect the placement, cleaning, and collection components inside the tool cleaning device.
[0011] This invention includes a cleaning component and a collection component. The cleaning component uses a roller brush to remove impurities from the hair-cutting tool, and an auxiliary component to fix the tool to the cleaning component and disinfect the tool after cleaning. The collection component has multiple collection boxes, each designed for independent collection. A baffle component is installed inside each collection box, and the baffle in the baffle component is used to cooperate with a second power component. As impurities increase in the collection box, each collection box opens sequentially along the airflow direction to allow impurities to enter the corresponding collection box. The multiple collection boxes improve the utilization rate of the entire collection box, thus solving the problems of high cleaning costs, long timeframes, and low efficiency. Attached Figure Description
[0012] Figure 1 A perspective structural diagram of a tool cleaning device provided in an embodiment of the present invention;
[0013] Figure 2 This is an internal structural diagram of a tool cleaning device provided in an embodiment of the present invention;
[0014] Figure 3 This is a schematic diagram of the structure of a tool cleaning device placement assembly provided in an embodiment of the present invention;
[0015] Figure 4 This is a schematic diagram of the cleaning component structure of a tool cleaning device provided in an embodiment of the present invention;
[0016] Figure 5 A schematic diagram of the roller brush assembly and the first power assembly of a tool cleaning device provided in an embodiment of the present invention;
[0017] Figure 6 This is a schematic diagram of the collection component structure of a tool cleaning device provided in an embodiment of the present invention;
[0018] Figure 7A structural diagram of a collection box for a tool cleaning device provided in an embodiment of the present invention;
[0019] Figure 8 This is a structural diagram of the internal structure of the collection box of a tool cleaning device provided in an embodiment of the present invention;
[0020] Figure 9 This is a partial structural diagram of a collection box for a tool cleaning device provided in an embodiment of the present invention;
[0021] Figure 10 This is a schematic diagram of the housing assembly structure of a tool cleaning device provided in an embodiment of the present invention.
[0022] In the attached diagram: 1. Housing assembly; 11. Outer shell; 12. Base; 2. Placement assembly; 21. Placement trough; 22. Top plate; 23. Middle plate; 24. Bottom shell; 3. Cleaning assembly; 31. Auxiliary assembly; 311. Guide rod; 312. First spring; 313. Disinfection lamp; 32. First power assembly; 321. First motor; 322. Pinion gear; 323. Gear; 33. Roller brush assembly; 331. Roller brush housing; 332. Brush cylinder; 333. Roller; 4. Collection assembly; 41. Collection box; 411. First collection frame; 412. Second collection frame; 413. Third collection frame; 414. Baffle; 415. Filter screen; 416. Slider; 417. Second spring; 42. Second power assembly; 421. Second motor; 422. Fan blade. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0024] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0025] like Figure 2 The diagram shown is a structural diagram of a tool cleaning device provided in an embodiment of the present invention, including: a housing assembly 1, a placement position assembly 2, a cleaning assembly 3, and a collection assembly 4;
[0026] The placement component 2 is disposed on the housing component 1, and the placement component 2 is provided with a placement groove 21 for placing the tool to be cleaned;
[0027] The cleaning component 3 is set at the bottom of the placement slot 21 on the placement component 2. The cleaning component 3 is equipped with a roller brush component 33 for cleaning the haircutting tools. The cleaning component 3 is equipped with a first power component 32 for providing power for the movement of the roller brush component 33. The cleaning component 3 is equipped with a disinfection lamp 313 for disinfecting and sterilizing the tools.
[0028] The collecting component 4 is installed at the bottom of the cleaning component 3. The collecting component 4 is equipped with a collecting box 41 for collecting impurities that fall off the haircutting tools after cleaning. The collecting box 41 is equipped with several collecting frames, and a baffle 414 assembly is provided between the collecting frames. The baffle 414 assembly is equipped with a filter screen 415, which is used to separate the collecting frames and block impurities. The baffle 414 assembly is equipped with a baffle 414, which is used to cooperate with the second power component 42. As the impurities in the collecting frames increase, each collecting frame opens sequentially along the airflow direction to allow the impurities to enter the corresponding collecting frame. The collecting component 4 is equipped with a second power component 42 to provide power for the collection of impurities.
[0029] The housing assembly 1 is used to protect the placement assembly 2, cleaning assembly 3 and collection assembly 4 inside the tool cleaning device.
[0030] In this embodiment of the invention, the tool cleaning device consists of four main parts: a housing assembly 1, a placement position assembly 2, a cleaning assembly 3, and a collection assembly 4. Preferably, the haircutting tool is placed in the placement groove 21 on the placement position assembly 2, and the end of the haircutting tool contacts the roller brush assembly 33 in the cleaning assembly 3. The first power assembly 32 drives the roller brush assembly 33 to rotate and remove impurities from the tool, so that the hair and impurities adhering to the tool fall into the collection box 41 on the collection assembly 4. The collection component 4 is equipped with a second power component 42 to draw impurities into the collection frame of the collection box 41. A baffle 414 component can be installed inside the collection frame to separate it and form a semi-closed state. The baffle 414 component can be configured to cooperate with the second power component 42. When the filter screen 415 on the first collection frame is full of debris, the operation of the second power component 42 creates a pressure difference between the outside and inside of the second collection frame 412, which can push the first baffle 414 on the second collection frame and open the second collection frame to continue collecting impurities. This process continues, and the remaining collection frames operate on the same principle until the filter screen 415 on the last collection frame is full of impurities. Then, the entire collection box 41 can be cleaned, which improves the utilization rate of the entire collection box 41. This reduces the labor cost of cleaning tools, shortens the cleaning time, and improves the cleaning efficiency.
[0031] In this embodiment of the invention, the housing assembly 1 can be configured as a housing with a certain internal cavity structure, and the cleaning assembly 3, the placement assembly 2 and the collection assembly 4 can be installed inside the housing assembly 1.
[0032] In this embodiment of the invention, the placement component 2 can be fixed on the inner wall of the housing component 1. From the perspective of the entire tool cleaning device, the placement component 2 is located in the upper part of the entire structure.
[0033] In this embodiment of the invention, the cleaning component 3 can be installed on the placement component 2. From the perspective of the entire tool cleaning device, the cleaning component 3 is located in the middle of the entire structure.
[0034] In this embodiment of the invention, the collection component 4 can be installed on the placement component 2. From the perspective of the entire tool cleaning device, the collection component 4 is located in the lower layer of the entire structure.
[0035] like Figure 3 As shown, in a preferred embodiment of the present invention, the placement assembly 2 includes a middle plate 23, a top plate 22, and a bottom shell 24;
[0036] The placement trough 21 is provided with a first placement port, a second placement port and a connecting plate. The first placement port is provided with a plurality of mounting holes and travel holes for the installation of the cleaning component 3. The second placement port is provided with a strip-shaped through hole and a mounting hole. The strip-shaped through hole is used for ventilation of the tool. The mounting hole is used for the installation of the disinfection lamp 313 in the cleaning component 3. The connecting plate is fixedly connected to the housing component 1.
[0037] The intermediate plate 23 is disposed at the bottom of the first placement port and the second placement port on the placement tank 21. The upper layer of the intermediate plate 23 is provided with a mounting position for fixing the placement tank 21 and the disinfection lamp 313 of the cleaning component 3. The bottom of the intermediate plate 23 is used to fix the roller brush component 33 on the cleaning component 3.
[0038] The upper layer of the bottom shell 24 is provided with an installation position for installing the first power component 32 and the roller brush component 33 in the cleaning component 3. The lower layer of the bottom shell 24 is used to install the collection component 4. The bottom of the bottom shell 24 is fixedly connected to the shell component 1. The bottom shell 24 is fixedly connected to the connecting plate on the placement trough 21.
[0039] The top plate 22 is disposed on the placement groove 21. The top plate 22 is provided with buckles and mounting holes. The top plate 22 is installed on the first placement opening.
[0040] In this embodiment of the invention, the placement component 2 is mainly composed of a placement groove 21, an intermediate plate 23, a top plate 22 and a bottom shell 24. Preferably, the main structure of the placement component 2 is the placement groove 21. An intermediate plate 23 and a bottom shell 24 can be provided at the bottom of the placement groove 21, and a top plate 22 can be provided on the placement groove 21 and installed on the first placement opening.
[0041] The placement trough 21 can be configured with a first placement opening, a second placement opening, and a connecting plate. Preferably, the first placement opening can be configured as a rectangular upper slot with a certain width and depth. The first placement opening can be used to place electric clippers in the hair-cutting tool. The lower side of the inner wall of the first placement opening can be configured as a slope extending downward at a certain angle, with the opening at the end being a lower slot. The shape can be rectangular. Two opposite mounting holes can be provided in the bottom extension of the first placement opening. The mounting holes can be used to install the disinfection lamp 313 in the cleaning component 3. Two pairs of travel holes can be provided on the side wall of the placement trough 21 between the upper and lower slots. All travel holes can be set to the same size. Two sets of travel holes with opposite positions are provided on the inner side walls on both sides along the length direction of the placement trough 21. The travel holes can be used to install the auxiliary component 31 on the cleaning component 3. They can be set on the two sides at the end of the travel hole along the length direction. A rectangular through hole and a rectangular protrusion can be provided at the upper slot for installing the top plate 22.
[0042] Preferably, the second placement opening can be set on the same horizontal plane as the first placement opening. The second placement opening can be provided with a rectangular groove with a certain depth. A protrusion can be provided on the outer side of the upper end of the rectangular groove of the second placement opening. The second placement opening can be set as several and used to place scissors in the hair-cutting tool. The depth of the rectangular groove can be determined according to the blade length of the scissors. A strip-shaped through hole and a mounting hole can be provided on the second placement opening. The strip-shaped through hole can be set on one side of the inner wall of the second placement opening. The length direction of the strip-shaped through hole can be set to be consistent with the length direction of the second placement opening. The mounting hole can be set on the protrusion. The mounting hole can be used to install the disinfection lamp 313 in the cleaning component 3. When the hair-cutting tool is placed in the second placement opening, the disinfection lamp 313 can be used to disinfect and sterilize the hair-cutting tool.
[0043] Preferably, the connecting plate can be disposed on one side of the first placement port and the second placement port. The connecting plate can be configured as a Z-shaped plate with a certain thickness. The connecting plate can be composed of two side wing plates and a middle plate 23. A protrusion can be provided at the bottom of the end of the two side wing plates to form a fixed connection with the housing assembly 1. The first wing plate can be disposed on the same horizontal plane as the upper surface of the first placement port and the second placement port. The length direction of the middle plate 23 can be disposed in the same direction as the depth direction of the first placement port and the second placement port.
[0044] In this embodiment of the invention, the intermediate plate 23 can be fixed to the bottom of the placement trough 21 by screws. Preferably, the intermediate plate 23 can be set as a rectangular plate with a certain thickness. The intermediate plate 23 can be provided with a rectangular through hole, which can be set to correspond to the lower groove of the first placement opening on the placement trough 21. The bottom of the intermediate plate 23 can be provided with screw mounting positions at the corners for fixing and connecting the cleaning component 3.
[0045] In this embodiment of the invention, the bottom shell 24 can be fixedly mounted on the bottom of the cleaning component 3. Preferably, the bottom shell 24 can be provided with a rectangular mounting hole corresponding to the bottom of the cleaning component 3. The bottom shell 24 is used for the fixed installation of the collecting component 4 and the cleaning component 3. At this time, after the haircutting tool is placed into the first placement port of the placement groove 21, after cleaning by the cleaning component 3, the impurities on the haircutting tool fall from the bottom of the cleaning component 3 and are collected by the collecting component 4 after passing through the rectangular mounting hole of the bottom shell 24.
[0046] In this embodiment of the invention, preferably, the size of the top plate 22 can be set according to the size of the upper slot of the first placement opening on the placement groove 21. The top plate 22 can be provided with mounting holes and buckles to be fixedly connected with the rectangular through hole and rectangular protrusion of the upper slot. When the tool cleaning device is not used, the edge of the top plate 22 is in close contact with the inner wall of the first placement opening to form a closed state. When the tool cleaning device is used, the buckle on one side of the top plate 22 is disengaged from the rectangular through hole of the upper slot, and the first placement opening is opened to allow the haircutting tool to enter the placement groove 21.
[0047] like Figure 4 As shown, in a preferred embodiment of the present invention, the cleaning component 3 includes a first power component 32, a roller brush component 33, and an auxiliary component 31. One end of the first power component 32 and the roller brush component 33 are configured to be connected by transmission. The first power component 32, the roller brush component 33, and the auxiliary component 31 are installed on the placement component 2. The auxiliary component 31 is used to assist the haircutting tool in entering the placement component 2 and to disinfect and sterilize the tool.
[0048] In this embodiment of the invention, the cleaning component 3 mainly consists of a first power component 32, a roller brush component 33, and an auxiliary component 31. Preferably, the cleaning component 3 can be fixedly installed above the bottom shell 24 and below the placement groove 21. The first power component 32 can be located on the right side of the cleaning component 3, the roller brush component 33 and the auxiliary component 31 are located on the left side of the cleaning component 3, the roller brush component 33 and the auxiliary component 31 can be arranged directly below the first placement opening, and the first power component 32 can be arranged directly below the second placement opening.
[0049] like Figure 5As shown, in a preferred embodiment of the present invention, the first power assembly 32 includes a first motor 321, a large gear 323, and a small gear 322. Two large gears 323 and two small gears 322 are respectively provided. The first small gear 322 and the second small gear 322 are meshed together. The first small gear 322 and the first large gear 323 are driven together. The first large gear 323 and the second large gear 323 are meshed together. The output end of the first motor 321 is driven together with the first small gear 322. The first large gear 323 and the second large gear 323 are driven together with the roller brush assembly 33.
[0050] In this embodiment of the invention, the first power component 32 may be composed of a first motor 321, a large gear 323, and a small gear 322. Preferably, the number of gear sets of the large gear 323 and the small gear 322 may be adjusted according to the setting of the roller brush component 33 in the cleaning component 3. The small gear 322 may be connected to the first motor 321 for transmission, and the large gear 323 may be connected to the roller brush component 33 for transmission. The large gear 323 and the small gear 322 may be connected for transmission. At this time, the first motor 321 transmits power to the small gear 322. The small gear 322 and the large gear 323 are connected for transmission to present a deceleration function. The large gear 323 is connected to the roller brush component 33 for transmission and can transmit power to the roller brush component 33. The roller brush component 33 moves and cleans the impurities on the hair cutting tool.
[0051] like Figure 5 As shown, in a preferred embodiment of the present invention, the roller brush assembly 33 includes a roller brush housing 331, a roller 333, and a brush cylinder 332;
[0052] The roller brush housing 331 is provided with a plurality of mounting holes for mounting the roller 333. The roller brush housing 331 is provided with a mounting plate installed inside the housing. The mounting plate is used to limit the mounting position of the roller 333 and the brush cylinder 332. The roller brush housing 331 is fixed on the placement assembly 2.
[0053] The roller 333 is mounted on the mounting hole on the roller brush housing 331. Two sets of rollers 333 are provided. The rollers 333 are connected to the first power component 32 in a transmission connection. The rollers 333 are used to guide the rotation of the brush cylinder 332.
[0054] The brush cylinder 332 is mounted and fixed on the roller 333, and two sets of the brush cylinder 332 are provided.
[0055] In this embodiment of the invention, the roller brush assembly 33 may be composed of a roller brush housing 331, rollers 333, and brush cylinders 332. Preferably, the roller brush housing 331 may be a rectangular housing with a certain cavity structure. Multiple sets of mounting holes with opposite positions may be provided along the length of the housing. The opposite mounting holes may be provided on the inner walls of two opposite sides of the housing. Each set of mounting holes may be used to install a set of rollers 333. Each set of rollers 333 may be used to install a set of roller brushes. At this time, the rollers 333 and the large gear 323 of the first power assembly 32 may be configured to be connected in a transmission manner. When the first motor 321 transmits power to the small gear 322 and the large gear 323, the power is reduced and then transmitted to the rollers 333 installed on the roller brush housing 331, so that the brush cylinders 332 on the rollers 333 rotate. Two sets of rollers 333 and brush cylinders 332 may be provided at the same time. Under the meshing and transmission of the large and small gears 322, the two sets of rollers 333 rotate in different directions. At this time, the hair-cutting tools on the placement trough 21 can be cleaned more thoroughly.
[0056] like Figure 4 As shown, in a preferred embodiment of the present invention, the auxiliary component 31 includes a guide rod 311, a first spring 312, and a disinfection lamp 313;
[0057] The guide rod 311 is disposed on the placement assembly 2, and several sets of the guide rod 311 are provided. The guide rod 311 is used to fix the haircutting tool placed on the placement assembly 2.
[0058] The first spring 312 is disposed on the guide rod 311, and several sets of the first spring 312 are disposed thereon. The first spring 312 is used to connect the guide rod 311.
[0059] The disinfection lamp 313 is installed on the placement component 2. Several sets of disinfection lamps 313 are provided. The disinfection lamps 313 are used to disinfect and sterilize the tools to be cleaned.
[0060] In this embodiment of the invention, the auxiliary component 31 may be composed of a guide rod 311, a first spring 312, and a disinfection lamp 313. Preferably, the guide rod 311 may be installed at the stroke hole position on the placement slot 21 in the placement component 2. The guide rod 311 may be a rod with a certain length. Fixing holes may be provided at both ends of the guide rod 311. The number of guide rods 311 may be determined according to the number of stroke holes set on the placement slot 21. Two sets of guide rods 311 may be set on one placement slot 21. The two sets of guide rods 311 may be installed at the same height and the length directions of the two sets of guide rods 311 may be parallel to each other.
[0061] Preferably, the first spring 312 can be configured as a spring with a certain length, and the two ends of the first spring 312 can be configured to be installed on one end of different guide rods 311 in the same direction. The first spring 312 can be used to connect two sets of guide rods 311, and the number of first springs 312 can be determined according to the number of sets of guide rods 311.
[0062] Preferably, the disinfection lamp 313 can be installed on the first placement port and the second placement port on the placement position assembly 2, and the number of disinfection lamps 313 can be determined according to the mounting holes on the first placement port and the second placement port.
[0063] At this time, the placement slot 21 on the first placement port can be provided with two sets of stroke holes, and each set of stroke holes can be provided with a set of guide rods 311. The installation directions of the two sets of guide rods 311 are parallel to each other and located on the same horizontal plane. One end of the two sets of guide rods 311 located on the same side can be provided with a set of first springs 312 for connection. When the haircutting tool is placed on the placement slot 21, the haircutting tool contacts the guide rods 311 and contacts the brush cylinder 332 in the roller brush assembly 33 along the placement direction. Utilizing the telescopic characteristic of the first spring 312, the cooperation between the first spring 312 and the guide rods 311 fixes the haircutting tool on the first placement port. After the haircutting tool is completely cleaned, it is disinfected and sterilized by the disinfection lamp 313 before the haircutting tool is taken out.
[0064] like Figure 6 As shown, in a preferred embodiment of the present invention, the collection component 4 includes a second power component 42 and a collection box 41. The second power component 42 and the collection box 41 are disposed on the placement component 2. The second power component 42 is provided with a second motor 421 and a fan blade 422. The output end of the second motor 421 is connected to the fan blade 422 for transmission. The second power component 42 is installed on one side of the collection box 41. The second power component 42 is used to enhance airflow and allow impurities to be adsorbed into the collection box 41.
[0065] In this embodiment of the invention, the collecting component 4 may be composed of a second power component 42 and a collecting box 41. The second power component 42 and the collecting box 41 may be mounted and fixed on the bottom shell 24 of the placement component 2. The second power component 42 is located on the right side of the entire collecting component 4, and the collecting box 41 may be located on the left side of the entire structure. Preferably, the second power component 42 may be composed of a second motor 421 and a fan blade 422. The output end of the second motor 421 is connected to one end of the fan blade 422 for transmission. The power of the second motor 421 is transmitted to the fan blade 422. The fan blade 422 rotates to form an airflow and creates a pressure difference with the surrounding air, which can adsorb the impurities cleaned off by the brush tube 332 on the haircutting tool into the collecting box 41.
[0066] like Figure 7As shown, in a preferred embodiment of the present invention, the collection box 41 is fixedly mounted on the placement assembly 2. The collection box 41 is provided with a first collection frame 411, a second collection frame 412, a third collection frame 413, and a baffle 414 assembly. The first collection frame 411 and the second collection frame 412 are separated by the baffle 414 assembly, and the second collection frame 412 and the third collection frame 413 are also separated by the baffle 414 assembly. The collection box 41 is provided with a mounting slot for mounting the baffle 414 assembly.
[0067] The baffle 414 assembly includes a baffle 414, a slider 416, a second spring 417, and a filter screen 415. The slider 416 comprises a first slider 416 and a second slider 416. The first slider 416 is disposed at one end of the mounting groove, and the second slider 416 is disposed at the other end of the mounting groove. The first slider 416 is used to mount one end of the baffle 414 and one end of the second spring 417. The other end of the second spring 417 is fixedly connected to the second slider 416. The filter screen 415 is installed and fixedly mounted on the inner wall of the collection box 41. The filter screen 415 includes a first filter screen 415, a second filter screen 416, and a third filter screen 415. The filter 415 is used to separate the first collection frame 411 and the second collection frame 412, the second filter 415 is used to separate the second collection frame 412 and the third collection frame 413, and the third filter 415 is used for power transmission of the second power assembly 42. The baffle 414 is configured as a first baffle 414 and a second baffle 414. One end of the first baffle 414 is in close contact with the first filter 415 and the other end is in close contact with the second filter 415. One end of the second baffle 414 is in close contact with the second filter 415 and the other end is in close contact with the third filter 415.
[0068] like Figure 8 As shown, in this embodiment of the invention, the collection box 41 in the collection component 4 can be configured as a first collection frame 411, a second collection frame 412, a third collection frame 413, and a baffle 414 assembly. The collection box 41 can be configured as a cavity structure with a certain space, and the inside of the collection box 41 is divided into multiple collection areas, which can be configured as the first collection frame 411, the second collection frame 412, and the third collection frame 413 in sequence. An installation groove can be provided inside the collection box 41 for installing the baffle 414 assembly. The installation groove can be provided on the inner wall of the collection box 41. The installation groove can be configured as an L-shaped groove with a width. The short side of the L-shaped groove can be configured as an arc groove with a certain curvature. The long side of the L-shaped groove can be determined according to the width of the baffle 414 in the baffle 414 assembly. A baffle 414 assembly can be provided between the collection frames to separate them.
[0069] like Figure 9As shown, in this embodiment of the invention, the baffle 414 assembly can be configured to consist of a baffle 414, a slider 416, a second spring 417, and a filter screen 415. The number of baffle 414 assemblies can be adjusted according to the number of collection frames. Each set of baffle 414 assemblies has the same configuration. Preferably, in the baffle 414 assembly, the slider 416 can be configured to have a first slider 416 and a second slider 416, which can be disposed on the mounting groove. The first slider 416 can be disposed at the bottom of the long side of the mounting groove, and the second slider 416 can be disposed at the end of the short side of the mounting groove. At this time, one end of the second spring 417 can be fixed on the first slider 416, and the other end can be mounted on the second slider 416. The number of filter screens 415 can be set to be the same as the number of collection frames, and each filter screen 415 can... Used to separate two adjacent collection frames, preferably, the filter 415 can be provided with a first filter 415, a second filter 415 and a third filter 415, the filter 415 can be provided with a number of small diameter circular holes, and the height of the distribution area of the circular holes can be determined according to the length of the baffle 414; preferably, the baffle 414 can be provided with a first baffle 414 and a second baffle 414, the baffle 414 can be provided with a rectangular plate with a certain length and thickness, the baffle 414 can be provided with a protrusion and fixedly connected to the second slider 416, the plane of the thickness direction of the two sides of the baffle 414 can be in close contact with the plane of the length direction of the two sets of filters 415 at the same time, and the plane of the length direction of the baffle 414 and the plane of the length direction of the filters 415 can be set to be perpendicular to each other.
[0070] At this time, the transmission between the second motor 421 and the fan blade 422 of the second power assembly 42 causes the airflow difference in the collection box 41 to collect the fallen impurities into each collection frame. The collection box 41 can be configured with multiple collection frames. When the first collection frame 411 is in the process of collection, the second collection frame 412 and the third collection frame 413 are provided with baffles 414 so that the fallen impurities preferentially enter the first collection frame 411 and are blocked by the first filter screen 415. The impurities are collected in the first collection frame 411. After the round holes on the first filter screen 415 in the first collection frame 411 are attached by the fallen impurities, causing a large pressure difference to form between the airflow between the first collection frame 411 and the second collection frame 412, the unfixed end of the first baffle 414 is released with the second spring. The extension and retraction of spring 417 causes the plane along the length of the first baffle 414 to come into close contact with the plane along the length of the filter screen 415. The second collection frame 412 opens accordingly, continuing to collect impurities. When the surface of the second filter screen 415 on the second collection frame 412 reaches the same level as the first filter screen 415, the third collection frame 413 opens along with the movement of the second baffle 414. When the third filter screen 415 reaches the same level as the first and second filters, and the cooperation of the second motor 421 and the fan blade 422 is no longer sufficient to collect impurities into the collection box 41, the entire collection box 41 can be removed. After cleaning all the impurities in the collection frames, the baffle 414 can be returned to its original position, and the collection action can be repeated.
[0071] like Figure 10 As shown, in a preferred embodiment of the present invention, the housing assembly 1 includes a base 12 and a housing 11. The housing 11 and the base 12 are fixedly connected. After the housing 11 and the base 12 are fixedly connected, a cavity structure is formed inside. The base 12 is used to fix the placement assembly 2, and the housing 11 is used to protect the cleaning assembly 3, the collection assembly 4, and the placement assembly 2.
[0072] In this embodiment of the invention, the housing assembly 1 may be composed of a base 12 and a housing 11. Preferably, the base 12 may be a rectangular plate with a mounting position. The mounting position may be set at the edge of the housing 11. The shape of the housing 11 may be designed according to the structure and installation position of the internal placement assembly 2, cleaning assembly 3 and collection assembly 4. The base 12 and the housing 11 may be connected by screws to form a complete housing. The housing 11 may also have a small diameter hole on its side wall as a heat dissipation hole.
[0073] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A tool cleaning device, characterized in that, The tool cleaning device includes a housing assembly, a placement assembly, a cleaning assembly, and a collection assembly; The placement component is disposed on the housing component, and the placement component is provided with a placement groove for placing the tool to be cleaned; The cleaning component is set at the bottom of the placement slot on the placement component. The cleaning component is equipped with a roller brush component for cleaning the haircutting tool. The cleaning component is equipped with a first power component for providing power for the movement of the roller brush component. The cleaning component is equipped with a disinfection lamp for disinfecting and sterilizing the tool. The collection component is installed at the bottom of the cleaning component. The collection component is equipped with a collection box for collecting impurities that fall off the haircutting tools after cleaning. The collection box is equipped with several collection frames, and a baffle assembly is set between the collection frames. The baffle assembly is equipped with a filter screen, which is used to separate the collection frames and block impurities. The baffle assembly is equipped with a baffle, which is used to cooperate with the second power component. As impurities increase in the collection frames, each collection frame opens sequentially along the airflow direction to allow impurities to enter the corresponding collection frame. The collection component is equipped with a second power component to provide power for the collection of impurities. The housing assembly is used to protect the placement components, cleaning components, and collection components inside the tool cleaning device; The collection component includes a second power component and a collection box. The second power component and the collection box are disposed on the placement component. The second power component is provided with a second motor and a fan blade. The output end of the second motor is connected to the fan blade drive. The second power component is installed on one side of the collection box. The second power component is used to enhance airflow and allow impurities to be adsorbed into the collection box. The collection box is fixed on the placement assembly. The collection box is provided with a first collection frame, a second collection frame, a third collection frame, and a baffle assembly. The first collection frame and the second collection frame are separated by a baffle assembly to form an independent structure. The second collection frame and the third collection frame are also separated by a baffle assembly. The collection box is provided with a mounting slot for installing the baffle assembly. The baffle assembly includes a baffle, a slider, a second spring, and a filter screen. The slider is configured as a first slider and a second slider. The first slider is located at the bottom of the long side of the mounting groove, and the second slider is located at the end of the short side of the mounting groove. The first slider is used to mount one end of the baffle and one end of the second spring. The other end of the second spring is fixedly connected to the second slider. The filter screen is installed and fixed on the inner wall of the collection box. The filter screen is configured as a first filter screen, a second filter screen, and a third filter screen. The first filter screen is used to separate the first collection frame and the second collection frame. The second filter screen is used to separate the second collection frame and the third collection frame. The third filter screen is used for power transmission of the second power assembly. The baffle is configured as a first baffle and a second baffle. The first baffle is located on the second collection frame, and the second baffle is located on the third collection frame. One end of the first baffle is in close contact with the first filter screen, and the other end is in close contact with the second filter screen. One end of the second baffle is in close contact with the second filter screen, and the other end is in close contact with the third filter screen. The mounting slot is set as an L-shaped slot with a width, the short side of the L-shaped slot is set as an arc-shaped slot with a certain curvature, and the long side of the L-shaped slot is determined according to the width of the baffle in the baffle assembly. Baffle assemblies are set between the collection frames to separate them.
2. The tool cleaning device according to claim 1, characterized in that, The placement assembly includes a placement slot, a middle plate, a top plate, and a bottom shell; The placement trough is provided with a first placement opening, a second placement opening, and a connecting plate. The first placement opening is provided with several mounting holes for the installation of the cleaning component. The second placement opening is provided with a strip-shaped through hole and a mounting hole. The strip-shaped through hole is used for ventilation of the tool, and the mounting hole is used for the installation of the disinfection lamp in the cleaning component. The connecting plate is fixedly connected to the housing component. The intermediate plate is set at the bottom of the first and second placement openings on the placement tank. The upper part of the intermediate plate is provided with a mounting position for fixing the placement tank and the disinfection lamp of the cleaning component. The bottom of the intermediate plate is used to fix the roller brush component on the cleaning component. The upper layer of the bottom shell is provided with an installation position for installing the first power component and the roller brush component in the cleaning assembly. The lower layer of the bottom shell is used to install the collection component. The bottom of the bottom shell is configured to be fixedly connected to the shell assembly. The bottom shell is configured to be fixedly connected to the connecting plate on the placement trough. The top plate is set on the placement groove, and the top plate is provided with buckles and mounting holes. The top plate is installed on the first placement opening.
3. The tool cleaning device according to claim 1, characterized in that, The cleaning component includes a first power component, a roller brush component, and an auxiliary component. One end of the first power component and the roller brush component are configured for transmission connection. The first power component, the roller brush component, and the auxiliary component are installed on the placement component. The auxiliary component is used to assist the haircutting tool in entering the placement component and to disinfect and sterilize the tool.
4. The tool cleaning device according to claim 3, characterized in that, The first power assembly includes a first motor, a large gear, and a small gear. Two large gears and two small gears are provided. The first small gear and the second small gear are meshed together. The first small gear and the first large gear are driven together. The first large gear and the second large gear are meshed together. The output end of the first motor is driven together with the first small gear. The first large gear and the second large gear are driven together with the roller brush assembly.
5. A tool cleaning device according to claim 3, characterized in that, The roller brush assembly includes a roller brush housing, a roller, and a brush cylinder; The roller brush housing is provided with a number of mounting holes for mounting rollers. The roller brush housing is provided with a mounting plate installed inside the housing. The mounting plate is used to limit the installation position of the rollers and brush cylinder. The roller brush housing is fixed on the placement assembly. The roller is mounted on the mounting hole on the roller brush housing. Two sets of rollers are provided. The rollers are connected to the first power component for transmission. The rollers are used to guide the rotation of the brush cylinder. The brush cylinders are mounted and fixed on the rollers, and two sets of brush cylinders are provided.
6. The tool cleaning device according to claim 3, characterized in that, The auxiliary components include a guide rod, a first spring, and a disinfection lamp; The guide rod is set on the placement assembly, and several sets of the guide rod are provided. The guide rod is used to fix the haircutting tool placed on the placement assembly. The first spring is mounted on the guide rod, and several sets of the first spring are provided. The first spring is used to connect the guide rod. The disinfection lamp is installed on the placement assembly, and several sets of the disinfection lamp are provided. The disinfection lamp is used to disinfect and sterilize the tools to be cleaned.
7. A tool cleaning device according to claim 1, characterized in that, The housing assembly includes a base and an outer shell, which are fixedly connected to the base. After the outer shell and the base are fixedly connected, a cavity structure is formed inside. The base is used to fix the placement component, and the outer shell is used to protect the cleaning component, the collection component, and the placement component.
Citation Information
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