Cleaning machine

By integrating the shell assembly, water tank assembly, partition assembly and liquid inlet assembly into the cleaning equipment, the problems of complex structure and low space utilization caused by the independent functional modules of existing cleaning equipment are solved, efficient multi-functional integration and stable medium supply are achieved, and the overall performance and ease of use of the equipment are improved.

CN120770748APending Publication Date: 2025-10-14FOSHAN BEST ELECTRIC APPLIANCE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511202286.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2025-10-14

AI Technical Summary

Technical Problem

The functional modules of existing cleaning equipment are independently set, with complex structures and loose system layouts, resulting in poor continuity in the operating process. It is difficult to achieve efficient and multi-functional integration in a limited space, affecting the overall performance and practicality of the equipment.

Method used

Through the integrated layout of the shell assembly, water tank assembly, partition assembly, liquid inlet assembly and air inlet assembly, a high degree of functional integration is achieved. The air duct in the partition assembly is used to centrally carry the air flow transmission. The liquid inlet assembly is directly connected to the shell assembly, and the wind output of the air inlet assembly is coordinated to simplify the structure and ensure functional coordination.

Benefits of technology

It significantly improves system integration and space utilization, ensures the stability of gas and liquid supply, and improves the overall performance and ease of use of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120770748A_ABST
    Figure CN120770748A_ABST
Patent Text Reader

Abstract

The invention relates to a cleaning machine, and belongs to the technical field of cleaning equipment. The cleaning machine comprises a shell assembly, the shell assembly is provided with a washing cavity, and a communicating opening is formed in the side wall of the shell assembly and communicates with the washing cavity; the water tank assembly is arranged on the shell assembly; the partition plate assembly is arranged on the shell assembly and extends in the height direction of the shell assembly, the partition plate assembly is located between the shell assembly and the water tank assembly, the side, facing the shell assembly, of the partition plate assembly is provided with an output opening communicating with the communicating opening, and an air channel is formed in the partition plate assembly and communicates with the output opening; the output port is used for discharging air to the washing cavity; the liquid inlet assembly is arranged on the shell assembly, one end of the liquid inlet assembly communicates with the water tank assembly, and the other end of the liquid inlet assembly communicates with the shell assembly; and the air inlet assembly is arranged on the shell assembly, and the air inlet assembly communicates with the air duct. The cleaning machine is high in integration degree and efficient in function cooperation.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning equipment, in particular to a cleaning machine. BACKGROUND

[0002] The structural integration and functional synergy of the cleaning equipment have important influence on the use experience and operation efficiency. The functional modules of some existing cleaning equipment are often independently arranged, the structure is complex, the system layout is loose, a large space is occupied, and the operation process continuity is poor due to the insufficient synergy of components, so it is difficult to realize efficient multifunctional integration in limited space, which affects the overall performance and practicality of the equipment. SUMMARY

[0003] Therefore, it is necessary to provide a cleaning machine aiming at the problems of the structural integration and functional synergy of the cleaning equipment.

[0004] A cleaning machine, comprising: a shell assembly, the shell assembly is provided with a washing cavity, a communication port is arranged on the side wall of the shell assembly, and the communication port is communicated with the washing cavity; a water tank assembly, the water tank assembly is arranged on the shell assembly; a partition plate assembly, the partition plate assembly is arranged on the shell assembly and extends along the height direction of the shell assembly, the partition plate assembly is located between the shell assembly and the water tank assembly, an output port communicated with the communication port is arranged on the side of the partition plate assembly facing the shell assembly, an air duct is arranged in the partition plate assembly, the air duct is communicated with the output port, and the output port is used for air outlet to the washing cavity; a liquid inlet assembly, the liquid inlet assembly is arranged on the shell assembly, one end of the liquid inlet assembly is communicated with the water tank assembly, and the other end of the liquid inlet assembly is communicated with the shell assembly; and an air inlet assembly, the air inlet assembly is arranged on the shell assembly, and the air inlet assembly is communicated with the air duct.

[0005] The above cleaning machine realizes high integration of functions through integrated layout of core components such as the shell assembly, the water tank assembly and the partition plate assembly. The washing cavity of the shell assembly serves as a core operation space, and the air flow is communicated through the communication port and the output port, so that the gas stably acts on the operation area. The air duct in the partition plate assembly concentrates the air flow transmission function, the liquid inlet assembly is directly communicated with the shell assembly to realize independent liquid supply, and the air inlet assembly is matched with the air outlet to simplify the structure, guarantee the functional synergy, and significantly improve the system integration and space utilization.

[0006] In one of the embodiments, the shell assembly comprises a base, a box and a bottom cover, the box is arranged on the base, the side wall of the box is provided with the communication port, the box and the base cooperate to form the washing cavity, the bottom cover is arranged on the base and located on the side of the base away from the box, the bottom cover and the base cooperate to form the mounting area, and the liquid inlet assembly and the air inlet assembly are located in the mounting area. The base, the box and the bottom cover of the shell assembly are in a split structure, which facilitates the standardized production of each component and forms functional partitions through combination. The washing cavity enclosed by the box and the base provides a closed environment for cleaning, and the communication port in the side wall of the box can accurately receive the airflow output by the baffle assembly, ensuring that the gas efficiently acts on the washing object; the mounting area formed by the bottom cover and the base centrally arranges the liquid inlet assembly and the air inlet assembly, so that the core functional components and the washing cavity are in an upper-lower partition, which not only avoids direct erosion of the liquid to the power components, but also realizes the connection of the channels through the internal structure of the base, thereby improving the rationality of the overall layout.

[0007] In one of the embodiments, the base is provided with a first limiting groove, the water tank assembly is arranged on the base, the first limiting groove is located between the water tank assembly and the box, the side of the box close to the water tank assembly is provided with a second limiting groove, the baffle assembly abuts against the groove walls of the first limiting groove and the second limiting groove respectively, the first limiting groove and the second limiting groove cooperate to form a limiting area, and the baffle assembly is at least partially located in the limiting area. The limiting area enclosed by the first limiting groove of the base and the second limiting groove of the box integrally restricts the baffle assembly, ensuring that it remains in a stable state during equipment operation. This limiting structure ensures that the output port of the baffle assembly and the communication port of the box are always accurately aligned, avoiding wind loss caused by vibration; at the same time, the design that the baffle assembly abuts against the two groove walls disperses the fluid impact force acting on the baffle assembly to the base and the box, thereby enhancing the load resistance of the overall structure and ensuring the functional stability in long-term use.

[0008] In one of the embodiments, the base comprises a base shell, a first limiting plate and a second limiting plate, the first limiting plate and the second limiting plate are arranged on the base shell, the first limiting plate and the second limiting plate are arranged side by side and opposite to each other, the first limiting plate and the second limiting plate cooperate to form the first limiting groove, the baffle assembly abuts against or is inserted into the first limiting plate and the second limiting plate respectively, and part of the baffle assembly extends to the mounting area through the first limiting groove. The base forms the first limiting groove through the opposite arrangement of the first limiting plate and the second limiting plate, and effectively limits the relative displacement of the baffle assembly through the double-side clamping of the limiting plates and the abutting or inserting structure. The part of the baffle assembly extending to the mounting area through the limiting groove can be closely connected with the air inlet assembly in the area, thereby shortening the gas transmission path.

[0009] In one of the embodiments, the first limiting groove is a through groove. The through groove design of the first limiting groove not only axially limits the shaking of the partition assembly installed therein, but also facilitates the position adjustment of the partition assembly from both sides when installed, thereby reducing the installation deviation caused by one-side operation. Meanwhile, the through structure facilitates the installation of the air inlet assembly in the installation area, realizes the butt joint of the air inlet assembly and the partition assembly, provides a structural basis for the gas transmission to the washing cavity, and facilitates the disassembly and replacement of the partition assembly, thereby improving the assembly convenience and functional continuity.

[0010] In one of the embodiments, the first limiting groove extends along the width or length direction of the base. The extension of the first limiting groove along the width or length direction of the base makes the installation direction of the partition assembly compatible with the structural layout of the base, reduces the space interference between components, improves the utilization rate of the internal space of the base, and improves the balance of stress.

[0011] In one of the embodiments, the base is further provided with a water tank water inlet, and the water tank assembly, the water tank water inlet and the liquid inlet assembly are sequentially communicated. The water tank water inlet of the base communicates the water tank assembly and the liquid inlet assembly, forming a complete liquid transmission link from the water source to the washing cavity. This structure ensures the continuity of liquid supply, reduces the risk of leakage in the transmission process, and makes the installation position of the water tank assembly more flexible, thereby optimizing the internal space layout of the equipment.

[0012] In one of the embodiments, at least part of the tank and / or the water tank assembly is made of transparent material. The part of the tank and / or the water tank assembly made of transparent material constructs a visual observation window, so that the user can monitor the working state in the washing cavity and the water level change of the water tank in real time without interrupting the operation of the equipment. This design can also assist in quickly troubleshooting, thereby improving the use convenience and maintenance efficiency.

[0013] In one of the embodiments, the box comprises a box body and a cover, the cover and the box body enclosing the washing cavity, the box body being arranged on the base, the box body being provided with a mounting groove, the mounting groove being circumferentially arranged along the outer wall of the box body, and the shell assembly further comprising a shielding assembly, the shielding assembly being arranged on the box body and at least partially located in the mounting groove. The combined structure of the box body and the cover of the box provides an independent environment for the cleaning operation through the closed space structure, which can effectively block the outward splashing of the cleaning liquid during the spraying process. The mounting groove circumferentially arranged along the outer wall of the box body provides an embedding basis for the shielding assembly, so that the shielding assembly can be installed along the contour of the box body, and the circumferential wrapping enhances the anti-deformation ability of the box body, especially when there is pressure fluctuation in the washing cavity, which can disperse local stress and improve the structural strength.

[0014] In one of the embodiments, the shielding assembly is internally provided with a wire harness groove, the wire harness groove extending along the length direction of the shielding assembly, both ends of the wire harness groove being open, the outer side wall of the baffle assembly and the inner side wall of the second limiting groove cooperating to form a wire harness channel, the wire harness channel being circumferentially arranged along the outer side wall of the baffle assembly, the wire harness channel being in communication with the wire harness groove, the wire harness groove being internally provided with an induction device, the wire of the induction device being used to connect with the control system after passing through the wire harness groove and the wire harness channel, and the cover being provided with a signal triggering assembly, the signal triggering assembly being oppositely arranged with the induction device and being capable of being inducted. The wire harness groove of the shielding assembly and the wire harness channel of the baffle assembly form a through wiring space, so that the wire harness of the induction device can be orderly arranged along the gap between the outer wall of the box body and the baffle assembly, avoiding interference with the fluid channel. The corresponding arrangement of the induction device and the signal triggering assembly of the cover realizes real-time monitoring of the cover state through non-contact induction, and cooperates with the hidden arrangement of the wire harness, which not only guarantees electrical safety, but also maintains the neat appearance of the equipment.

[0015] In one of the embodiments, the shielding assembly is a C-shaped piece. The shielding assembly designed as a C-shaped piece has high adaptability with the mounting groove circumferentially arranged along the outer wall of the box body, and after installation, it can form an integral structure with the box body, enhancing the structural strength of the shell assembly and reducing the vibration deformation of the equipment during operation. The C-shaped structure can also protect the corners of the box body, improving the durability of the equipment.

[0016] In one of the embodiments, the baffle assembly further comprises a liquid inlet channel, the liquid inlet channel comprises a flow passage and a liquid outlet, the flow passage is arranged circumferentially along the inner side wall of the baffle assembly, the liquid inlet assembly, the flow passage and the liquid outlet are sequentially communicated, and the liquid outlet is located downstream of the air duct and communicated with the air duct. The flow passage of the liquid inlet channel extends circumferentially along the inner side wall of the baffle assembly, and the liquid is stably transported through the side wall path. The liquid outlet is designed to be communicated with the downstream of the air duct, so that the liquid can be output through the liquid outlet alone or combined with the gas in the air duct before output, forming a diversified medium supply mode. The directional communication between the liquid inlet assembly and the flow passage ensures that the liquid transmission direction is adapted to the structure of the baffle assembly, reducing internal loss.

[0017] In one of the embodiments, the air duct is open at both ends, one end of the air duct is communicated with the air inlet assembly, and the other end of the air duct is communicated with the output port. The air duct forms a through air flow transmission path through the open design at both ends. This structure design reduces the resistance loss in the air flow transmission process, ensures that the air force stably acts on the washing cavity, and provides continuous and uniform air flow support for the cleaning operation.

[0018] In one of the embodiments, the baffle assembly is further provided with a sewage channel and an anti-siphon channel, the anti-siphon channel is provided with a first anti-siphon port and a second anti-siphon port at both ends respectively, the first anti-siphon port is located downstream of the sewage channel and communicated with the sewage channel, and the second anti-siphon port is located downstream of the air duct and communicated with the air duct. The anti-siphon channel of the baffle assembly connects the sewage channel and the air duct through the first anti-siphon port and the second anti-siphon port respectively, forming an air pressure balance loop. When the sewage channel appears siphon negative pressure, the gas in the air duct can be quickly supplemented through the anti-siphon channel, and the liquid backflow is inhibited through pressure compensation, which protects the one-way flow characteristic of the sewage channel and ensures the independence and stability of the functions of each channel.

[0019] In one of the embodiments, the anti-siphon channel is provided with a plurality of anti-siphon baffles, adjacent two anti-siphon baffles arranged along the length direction of the anti-siphon channel are located on the inner walls on both sides of the anti-siphon channel and partially staggered, and the anti-siphon baffles extend from the inner walls of the anti-siphon channel to the direction of the sewage channel. The anti-siphon baffles in the anti-siphon channel are staggered, which prolongs the flow path of the fluid in the channel and enhances the resistance to the fluid. The design that the anti-siphon baffles extend towards the sewage channel can effectively prevent the sewage to be discharged from flowing back to the washing cavity through the anti-siphon channel, further improving the anti-siphon effect. At the same time, the staggered structure can also buffer the fluid impact, ensuring the stable play of the air pressure balance function.

[0020] In one of the embodiments, the partition assembly is further provided with a first drainage port and a second drainage port, the first drainage port and the second drainage port are respectively located at two ends of the sewage channel, a third drainage port is provided on the outer wall of the shell assembly, and the first drainage port, the sewage channel, the second drainage port and the third drainage port are sequentially communicated. The first drainage port, the sewage channel, the second drainage port and the third drainage port form a complete sewage discharge path, which ensures smooth discharge of sewage in the washing cavity; when the operation is stopped, the relative orientation of the air duct and the sewage channel makes the airflow quickly intervene in the balanced air pressure, further enhances the anti-siphon effect, and avoids sewage backflow.

[0021] In one of the embodiments, the cleaning machine further comprises an illumination assembly, the illumination assembly is arranged on the partition assembly and located in the interior of the partition assembly, one side of the partition assembly provided with the output port is further provided with an illumination hole, the illumination hole is communicated with the washing cavity, and the illumination assembly is arranged opposite to the illumination hole. The illumination assembly is arranged in the interior of the partition assembly, and provides light source for the washing cavity through the illumination hole, so that the user can clearly observe the cleaning condition in the washing cavity in a relatively dark environment, and the cleaning degree of the object is facilitated to be judged. The illumination assembly is arranged in the partition assembly, interference with the fluid channel is avoided, the illumination assembly is protected by the partition assembly, and the service life is prolonged.

[0022] In one of the embodiments, the cleaning machine further comprises a heating assembly, the heating assembly is arranged on the shell assembly and located in the mounting area, and the heating assembly is arranged opposite to the washing cavity. The heating assembly is located in the mounting area and arranged opposite to the washing cavity, temperature regulation is performed on the medium in the washing cavity, the installation position of the heating assembly is physically separated from the operation area, and the influence of heat on other functional assemblies is reduced. The heating assembly is arranged opposite to the washing cavity, heat energy is efficiently transmitted, and the response speed of temperature regulation is improved.

[0023] In one of the embodiments, the partition assembly is in a rectangular shape. The rectangular partition assembly has high adaptability to the shell assembly, facilitates cooperation and installation with structures such as the first limiting groove of the base and the second limiting groove of the box, and improves assembly efficiency. The rectangular structure is also beneficial to the layout design of the internal air duct, the liquid inlet channel and the sewage channel, makes the arrangement of the channels more regular, reduces space waste, and enhances the compactness of the equipment structure. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a perspective view of the cleaning machine;

[0025] Figure 2 It is an exploded view of the cleaning machine;

[0026] Figure 3 It is a sectional view of the cleaning machine;

[0027] Figure 4is a perspective view of the shell assembly;

[0028] Figure 5 is an exploded view of the shell assembly;

[0029] Figure 6 is a sectional view of the shell assembly;

[0030] Figure 7 is a perspective view of the base;

[0031] Figure 8 is a sectional view of the base;

[0032] Figure 9 is a perspective view of the tank;

[0033] Figure 10 is an assembled sectional view of the tank and the shielding assembly;

[0034] Figure 11 is a first perspective view of the partition assembly;

[0035] Figure 12 is a second perspective view of the partition assembly;

[0036] Figure 13 is a first sectional view of the partition assembly;

[0037] Figure 14 is a second sectional view of the partition assembly;

[0038] Figure 15 is an enlarged view of area A of Figure 14 ;

[0039] Figure 16 is an enlarged view of area B of Figure 14 ;

[0040] Figure 17 is an assembled sectional view of the tank, the shielding assembly and the partition assembly;

[0041] Figure 18 is an assembled perspective view of the partition assembly and the lighting assembly.

[0042] Wherein, the correspondence between the reference signs and the component names is as follows:

[0043] 1 shell assembly, 11 base, 111 base shell, 112 first limiting plate, 113 second limiting plate, 1101 first limiting groove, 1102 water tank inlet, 12 tank, 121 tank body, 122 cover, 1201 second limiting groove, 1202 mounting groove, 13 bottom cover, 14 shielding assembly, 1401 wire harness groove, 101 washing cavity, 102 communication port, 103 mounting area, 104 limiting area, 105 third drain;

[0044] 2 water tank assembly;

[0045] 3 baffle assembly, 31 anti-siphon baffle, 301 output port, 302 air duct, 303 harness channel, 304 liquid inlet channel, 3041 flow channel, 3042 liquid outlet, 305 sewage channel, 306 anti-siphon channel, 3061 first anti-siphon port, 3062 second anti-siphon port, 307 first drain port, 308 second drain port, 309 lighting hole;

[0046] 4 liquid inlet components;

[0047] 5. Air inlet assembly;

[0048] 6 lighting components;

[0049] 7 Heating components. DETAILED DESCRIPTION

[0050] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.

[0051] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0052] The cleaning machines according to some embodiments of the present invention will be described below with reference to the accompanying drawings.

[0053] like Figures 1 to 18 As shown, this embodiment discloses a cleaning machine, including a shell assembly 1, the shell assembly 1 is provided with a washing chamber 101, and a connecting port 102 is opened on the side wall of the shell assembly 1, and the connecting port 102 is connected to the washing chamber 101; a water tank assembly 2, the water tank assembly 2 is arranged on the shell assembly 1; a partition assembly 3, the partition assembly 3 is arranged on the shell assembly 1 and extends along the height direction of the shell assembly 1, the partition assembly 3 is located between the shell assembly 1 and the water tank assembly 2, and the partition assembly 3 is provided with an output port 301 connected to the connecting port 102 on the side facing the shell assembly 1, and an air duct 302 is provided inside the partition assembly 3, and the air duct 302 is connected to the output port 301, and the output port 301 is used to discharge air to the washing chamber 101; a liquid inlet assembly 4, the liquid inlet assembly 4 is arranged on the shell assembly 1, one end of the liquid inlet assembly 4 is connected to the water tank assembly 2, and the other end of the liquid inlet assembly 4 is connected to the shell assembly 1; an air inlet assembly 5, the air inlet assembly 5 is arranged on the shell assembly 1, and the air inlet assembly 5 is connected to the air duct 302.

[0054] The cleaning machine disclosed in the application realizes high integration of functions through integrated layout of core components such as the shell assembly 1, the water tank assembly 2, and the partition assembly 3. The washing cavity 101 of the shell assembly 1 serves as a core working space, and is in airflow communication with the output port 301 through the communication port 102, so that the gas can stably act on the working area. The air duct 302 in the partition assembly 3 concentrates the airflow transmission function, the liquid inlet assembly 4 is directly communicated with the shell assembly 1 to realize independent liquid supply, and the air output of the air inlet assembly 5 is matched, which simplifies the structure while ensuring function cooperation, significantly improves the system integration and space utilization.

[0055] As shown in Figures 1 to 6 In addition to the features of the above-mentioned embodiments, the present embodiment further limits that: the shell assembly 1 includes a base 11, a box body 12, and a bottom cover 13, the box body 12 is arranged on the base 11, the side wall of the box body 12 is provided with a communication port 102, the box body 12 and the base 11 cooperatively form a washing cavity 101, the bottom cover 13 is arranged on the base 11 and located on the side of the base 11 away from the box body 12, the bottom cover 13 and the base 11 cooperatively form a mounting area 103, and the liquid inlet assembly 4 and the air inlet assembly 5 are located in the mounting area 103. The split structure of the base 11, the box body 12, and the bottom cover 13 of the shell assembly 1 not only facilitates the standardized production of each component, but also forms functional partitions through combination. The washing cavity 101 enclosed by the box body 12 and the base 11 provides a closed environment for cleaning, the communication port 102 in the side wall of the box body 12 can accurately receive the airflow output by the partition assembly 3, ensuring that the gas can efficiently act on the washing object; the mounting area 103 formed by the bottom cover 13 and the base 11 centrally arranges the liquid inlet assembly 4 and the air inlet assembly 5, so that the core functional components and the washing cavity 101 form an upper and lower partition, which not only avoids direct liquid erosion of the power components, but also realizes channel connection through the internal structure of the base 11, improving the rationality of the overall layout.

[0056] As shown in Figures 1 to 8As shown, in addition to the features of the above embodiments, the present embodiment is further limited in that: the base 11 is provided with a first limiting groove 1101, the water tank assembly 2 is arranged on the base 11, the first limiting groove 1101 is located between the water tank assembly 2 and the tank body 12, the side of the tank body 12 close to the water tank assembly 2 is provided with a second limiting groove 1201, the groove wall of the first limiting groove 1101 and the groove wall of the second limiting groove 1201 abut the partition plate assembly 3 respectively, the first limiting groove 1101 and the second limiting groove 1201 cooperate to form a limiting area 104, and the partition plate assembly 3 is at least partially located in the limiting area 104. The limiting area 104 enclosed by the first limiting groove 1101 of the base 11 and the second limiting groove 1201 of the tank body 12 forms an overall constraint on the partition plate assembly 3, ensuring that it remains in a stable state during equipment operation. This limiting structure ensures that the output port 301 of the partition plate assembly 3 and the communication port 102 of the tank body 12 are always accurately aligned, avoiding wind loss caused by vibration; at the same time, the design of the partition plate assembly 3 abutting against the two groove walls disperses the fluid impact force acting on it to the base 11 and the tank body 12, enhancing the load resistance of the overall structure and ensuring the functional stability during long-term use.

[0057] In addition to the features of the above embodiments, the present embodiment is further limited in that: the base 11 includes a base shell 111, a first limiting plate 112 and a second limiting plate 113, the first limiting plate 112 and the second limiting plate 113 are arranged on the base shell 111, the first limiting plate 112 and the second limiting plate 113 are arranged side by side and opposite to each other, the first limiting plate 112 and the second limiting plate 113 cooperate to form the first limiting groove 1101, the partition plate assembly 3 abuts or is inserted with the first limiting plate 112 and the second limiting plate 113 respectively, and part of the partition plate assembly 3 extends to the mounting area 103 through the first limiting groove 1101. The base 11 forms the first limiting groove 1101 through the opposite arrangement of the first limiting plate 112 and the second limiting plate 113, and uses the limiting plates to form a double-sided clamping on the partition plate assembly 3, which effectively limits the relative displacement of the partition plate assembly 3 in cooperation with the abutting or inserting structure. The part of the partition plate assembly 3 extending to the mounting area 103 through the limiting groove can be connected closely with the air inlet assembly 5 in the area, shortening the gas transmission path.

[0058] In addition to the features of the above embodiments, the present embodiment is further limited in that: the first limiting groove 1101 is a through groove. The design of the first limiting groove 1101 as a through groove not only forms axial limiting on the partition plate assembly 3 arranged therein to reduce shaking, but also facilitates position adjustment of the partition plate assembly 3 from both sides when it is arranged, reducing installation deviation caused by single-side operation; at the same time, the through structure facilitates the arrangement of the air inlet assembly 5 in the mounting area 103, realizes the butt joint of the air inlet assembly 5 and the partition plate assembly 3, provides a structural basis for gas transmission to the washing cavity 101, and facilitates the disassembly and replacement of the partition plate assembly 3, improving assembly convenience and functional continuity.

[0059] In addition to the features of the above embodiments, the present embodiment is further defined as: the first limiting groove 1101 extends along the width or length direction of the base 11. The design of the first limiting groove 1101 extending along the width or length direction of the base 11 makes the installation direction of the partition assembly 3 adapt to the structural layout of the base 11, reduces the space interference between components, improves the utilization rate of the internal space of the base 11, and at the same time, the extension design improves the balance of stress.

[0060] In addition to the features of the above embodiments, the present embodiment is further defined as: the base 11 is further provided with a water tank inlet 1102, and the water tank assembly 2, the water tank inlet 1102 and the liquid inlet assembly 4 are sequentially communicated. The water tank inlet 1102 of the base 11 communicates the water tank assembly 2 with the liquid inlet assembly 4, forming a complete liquid transmission link from the water source to the washing cavity 101. This structure ensures the continuity of liquid supply, reduces the risk of leakage during transmission, and at the same time makes the installation position of the water tank assembly 2 more flexible, optimizing the internal space layout of the equipment.

[0061] In addition to the features of the above embodiments, the present embodiment is further defined as: at least part of the tank body 12 and / or the water tank assembly 2 is made of transparent material. The part of the tank body 12 and / or the water tank assembly 2 made of transparent material constructs a visual observation window, so that the user can monitor the working state in the washing cavity 101 and the water level change of the water tank in real time, and observe the real-time state without interrupting the operation of the equipment. This design can also assist in quickly troubleshooting, improving the convenience of use and the efficiency of maintenance.

[0062] As Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 9 , Figure 10 , and Figure 17As shown, in addition to the features of the above embodiment, this embodiment further defines that: the box body 12 includes a box body 121 and a cover body 122, the cover body 122 and the box body 121 enclose a washing chamber 101, the box body 121 is disposed on the base 11, and the box body 121 is provided with a mounting groove 1202, which is circumferentially arranged along the outer wall of the box body 121, and the shell assembly 1 further includes a shielding assembly 14, which is disposed on the box body 121 and at least partially located within the mounting groove 1202. The combined structure of the box body 121 and the cover body 122 of the box body 12 provides an independent environment for the cleaning operation through a closed space structure, which can effectively prevent the cleaning liquid from splashing to the outside during the spraying process. The circumferential installation groove 1202 on the outer wall of the box body 121 provides a base for embedding the shielding component 14, so that the shielding component 14 can be installed along the contour of the box body 121. The circumferential wrapping enhances the deformation resistance of the box body 121, especially when there is pressure fluctuation in the washing chamber 101, which can disperse local stress and improve structural strength.

[0063] In addition to the features of the above-described embodiment, this embodiment further defines: a wiring harness trough 1401 is provided within the shielding assembly 14. The wiring harness trough 1401 extends along the length of the shielding assembly 14 and is open at both ends. The outer wall of the partition assembly 3 and the inner wall of the second limiting groove 1201 cooperate to form a wiring harness channel 303. The wiring harness channel 303 is circumferentially arranged along the outer wall of the partition assembly 3 and communicates with the wiring harness trough 1401. A sensing device is provided within the wiring harness trough 1401. The wiring of the sensing device passes through the wiring harness trough 1401 and the wiring harness channel 303 to connect to the control system. A signal trigger assembly is provided on the cover 122. The signal trigger assembly is arranged opposite the sensing device and can generate sensing. The wiring harness trough 1401 of the shielding assembly 14 and the wiring harness channel 303 of the partition assembly 3 form a continuous wiring space, allowing the wiring harness of the sensing device to be arranged in an orderly manner along the gap between the outer wall of the box body 121 and the partition assembly 3, avoiding interference with the fluid channel. The corresponding setting of the sensing device and the signal trigger component of the cover body 122 realizes real-time monitoring of the status of the cover body 122 through non-contact sensing. Combined with the hidden arrangement of the wiring harness, it not only ensures electrical safety but also maintains a neat appearance of the equipment.

[0064] In addition to the features of the aforementioned embodiment, this embodiment further provides that the shielding assembly 14 is a C-shaped member. This C-shaped design allows for a high degree of compatibility with the mounting groove 1202 circumferentially disposed on the outer wall of the housing 121. Once installed, the shielding assembly 14 forms an integral structure with the housing 121, enhancing the structural strength of the housing assembly 1 and reducing vibration and deformation during device operation. The C-shaped structure also protects the corners of the housing 121, improving the durability of the device.

[0065] like Figure 1 、Figure 2 、 Figure 3 、 Figure 6 、 Figure 11 、 Figure 13 、 Figure 14 、 Figure 15 and Figure 16 As shown in the drawings, in addition to the features of the above-mentioned embodiments, the present embodiment is further limited in that: the baffle assembly 3 further comprises a liquid inlet channel 304, the liquid inlet channel 304 comprising a flow-through channel 3041 and a liquid outlet 3042, the flow-through channel 3041 being circumferentially arranged along the inner side wall of the baffle assembly 3, the liquid inlet assembly 4, the flow-through channel 3041 and the liquid outlet 3042 being sequentially communicated, and the liquid outlet 3042 being located downstream of the air duct 302 and communicated with the air duct 302. The flow-through channel 3041 of the liquid inlet channel 304 extends circumferentially along the inner side wall of the baffle assembly 3, realizes stable transportation of liquid through the side wall path, and cooperates with the downstream communication design of the liquid outlet 3042 and the air duct 302 to make the liquid output through the liquid outlet 3042 alone or flow together with the gas in the air duct 302 before output, forming diversified medium supply modes. The directional communication of the liquid inlet assembly 4 and the flow-through channel 3041 ensures that the liquid transmission direction is adapted to the structure of the baffle assembly 3, reducing internal loss.

[0066] In addition to the features of the above-mentioned embodiments, the present embodiment is further limited in that: the air duct 302 is open at both ends, one end of the air duct 302 is communicated with the air inlet assembly 5, and the other end of the air duct 302 is communicated with the output port 301. The air duct 302 forms a through-type airflow transmission path through the two-end opening design, which reduces the resistance loss in the airflow transmission process, ensures that the wind force stably acts on the washing cavity 101, provides continuous and uniform airflow support for the cleaning operation, and improves the cleaning effect driven by the wind force.

[0067] In addition to the features of the above-mentioned embodiments, the present embodiment is further limited in that: the baffle assembly 3 is further provided with a sewage channel 305 and an anti-siphon channel 306, the anti-siphon channel 306 being provided with a first anti-siphon port 3061 and a second anti-siphon port 3062 at both ends, the first anti-siphon port 3061 being located downstream of the sewage channel 305 and communicated with the sewage channel 305, and the second anti-siphon port 3062 being located downstream of the air duct 302 and communicated with the air duct 302. The anti-siphon channel 306 of the baffle assembly 3 connects the sewage channel 305 and the air duct 302 through the first anti-siphon port 3061 and the second anti-siphon port 3062, respectively, forming a gas pressure balance loop. When siphon negative pressure occurs in the sewage channel 305, the gas in the air duct 302 can be quickly supplemented through the anti-siphon channel 306, the liquid backflow is inhibited through pressure compensation, the one-way flow characteristic of the sewage channel 305 is ensured, and the independence and stability of the functions of each channel are ensured.

[0068] In addition to the features of the above embodiments, the present embodiment is further limited in that: a plurality of anti-siphon baffles 31 are arranged in the anti-siphon channel 306, and adjacent two anti-siphon baffles 31 arranged along the length direction of the anti-siphon channel 306 are located on the inner walls on both sides of the anti-siphon channel 306 and partially staggered, and the anti-siphon baffles 31 extend from the inner walls of the anti-siphon channel 306 towards the sewage channel 305. The anti-siphon baffles 31 in the anti-siphon channel 306 are staggered, which prolongs the flow path of the fluid in the channel and enhances the obstruction to the fluid. The design that the anti-siphon baffles 31 extend towards the sewage channel 305 can effectively block the sewage that needs to be discharged from flowing back to the washing cavity 101 through the anti-siphon channel 306, further improving the anti-siphon effect. At the same time, the staggered structure can also buffer the fluid impact and ensure the stable play of the air pressure balance function.

[0069] As shown in Figure 1 , Figure 2 , Figure 4 , Figure 11 and Figure 12 , in addition to the features of the above embodiments, the present embodiment is further limited in that: the partition assembly 3 is further provided with a first drain 307 and a second drain 308, the first drain 307 and the second drain 308 are respectively located at both ends of the sewage channel 305, the outer wall of the shell assembly 1 is provided with a third drain 105, and the first drain 307, the sewage channel 305, the second drain 308 and the third drain 105 are sequentially communicated. The first drain 307, the sewage channel 305, the second drain 308 and the third drain 105 form a complete sewage discharge path, which ensures smooth discharge of the sewage in the washing cavity 101; when the operation is stopped, the relative orientation of the air duct 302 and the sewage channel 305 makes the airflow quickly intervene in the balanced air pressure, further enhances the anti-siphon effect, and avoids sewage backflow.

[0070] As shown in Figure 1 , Figure 2 , Figure 6 , Figure 11 and Figure 18 , in addition to the features of the above embodiments, the present embodiment is further limited in that: the cleaning machine further comprises a lighting assembly 6, the lighting assembly 6 is arranged on the partition assembly 3 and located inside the partition assembly 3, one side of the partition assembly 3 provided with the output port 301 is further provided with a lighting hole 309, the lighting hole 309 is communicated with the washing cavity 101, and the lighting assembly 6 is arranged opposite to the lighting hole 309. The lighting assembly 6 is arranged inside the partition assembly 3, and provides light source for the washing cavity 101 through the lighting hole 309, so that the user can clearly observe the cleaning condition in the washing cavity 101 in a relatively dark environment, and conveniently judge the cleaning degree of the articles. The design that the lighting assembly 6 is built-in in the partition assembly 3 avoids interference with the fluid channel, and is protected by the partition assembly 3, prolonging the service life.

[0071] As Figure 1 , Figure 2 , Figure 3 and Figure 6 indicated, in addition to the features of the above-mentioned embodiments, the present embodiment is further limited in that: the cleaning machine further comprises a heating assembly 7, which is arranged on the housing assembly 1 and located in the mounting area 103, and the heating assembly 7 is arranged opposite to the washing cavity 101. The heating assembly 7 is located in the mounting area 103 and opposite to the washing cavity 101, and the medium in the washing cavity 101 is temperature-regulated, and the installation position is physically separated from the working area, reducing the influence of heat on other functional assemblies. The opposite layout of the heating assembly 7 and the washing cavity 101 ensures efficient heat transfer and improves the response speed of temperature regulation.

[0072] As Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 11 and Figure 13 indicated, in addition to the features of the above-mentioned embodiments, the present embodiment is further limited in that: the partition plate assembly 3 is rectangular. The rectangular partition plate assembly 3 has high adaptability with the housing assembly 1, facilitating installation with structures such as the first limiting groove 1101 of the base 11, the second limiting groove 1201 of the box body 12, etc., improving the assembly efficiency. The rectangular structure also facilitates the layout design of the internal liquid inlet channel 304, the air duct 302 and the sewage channel 305, making the arrangement of each channel more regular, reducing space waste, and enhancing the compactness of the equipment structure.

[0073] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described, however, as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.

[0074] The above-mentioned embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of variations and improvements can be made, which are within the scope of the present application. Therefore, the scope of protection of the present application should be subject to the appended claims.

Claims

1. A cleaning machine, characterized in that: The cleaning machine comprises: A housing assembly (1), the housing assembly (1) being provided with a washing chamber (101), a communication port (102) being provided on a side wall of the housing assembly (1), the communication port (102) being in communication with the washing chamber (101); A water tank assembly (2), the water tank assembly (2) being arranged on the housing assembly (1); a partition assembly (3), the partition assembly (3) being arranged on the shell assembly (1) and extending along the height direction of the shell assembly (1), the partition assembly (3) being located between the shell assembly (1) and the water tank assembly (2), the partition assembly (3) being provided with an output port (301) communicating with the communication port (102) on a side facing the shell assembly (1), an air duct (302) being provided inside the partition assembly (3), the air duct (302) being communicated with the output port (301), and the output port (301) being used to discharge air into the washing chamber (101); a liquid inlet assembly (4), the liquid inlet assembly (4) being arranged on the housing assembly (1), one end of the liquid inlet assembly (4) being in communication with the water tank assembly (2), and the other end of the liquid inlet assembly (4) being in communication with the housing assembly (1); An air inlet assembly (5), the air inlet assembly (5) is arranged on the housing assembly (1), and the air inlet assembly (5) is in communication with the air duct (302).

2. The cleaning machine according to claim 1, characterized in that The housing assembly (1) comprises a base (11), a box body (12) and a bottom cover (13); the box body (12) is arranged on the base (11); the side wall of the box body (12) is provided with the communication port (102); the box body (12) and the base (11) cooperate to form the washing chamber (101); the bottom cover (13) is arranged on the base (11) and is located on a side of the base (11) away from the box body (12); the bottom cover (13) and the base (11) cooperate to form an installation area (103); the liquid inlet assembly (4) and the air inlet assembly (5) are located in the installation area (103).

3. The cleaning machine according to claim 2, characterized in that The base (11) is provided with a first limiting groove (1101), the water tank assembly (2) is arranged on the base (11), the first limiting groove (1101) is located between the water tank assembly (2) and the box body (12), the box body (12) is provided with a second limiting groove (1201) on a side close to the water tank assembly (2), the partition assembly (3) is respectively abutted against the groove wall of the first limiting groove (1101) and the groove wall of the second limiting groove (1201), the first limiting groove (1101) and the second limiting groove (1201) cooperate to form a limiting area (104), and the partition assembly (3) is at least partially located in the limiting area (104).

4. The cleaning machine according to claim 3, characterized in that The base (11) comprises a base shell (111), a first limiting plate (112) and a second limiting plate (113); the first limiting plate (112) and the second limiting plate (113) are arranged on the base shell (111); the first limiting plate (112) and the second limiting plate (113) are arranged in parallel and opposite to each other; the first limiting plate (112) and the second limiting plate (113) cooperate to form the first limiting groove (1101); the partition assembly (3) is respectively abutted against or plugged into the first limiting plate (112) and the second limiting plate (113); a portion of the partition assembly (3) passes through the first limiting groove (1101) and extends to the installation area (103); and / or the first limiting groove (1101) is a through groove; and / or the first limiting groove (1101) extends along the width or length direction of the base (11); And / or the base (11) is further provided with a water tank water inlet (1102), and the water tank assembly (2), the water tank water inlet (1102) and the liquid inlet assembly (4) are sequentially connected; And / or, at least part of the box body (12) and / or the water tank assembly (2) is made of transparent material.

5. The cleaning machine according to claim 3, characterized in that The box body (12) comprises a box body (121) and a cover body (122), wherein the cover body (122) and the box body (121) enclose the washing chamber (101), the box body (121) is arranged on the base (11), the box body (121) is provided with a mounting groove (1202), and the mounting groove (1202) is arranged along the circumference of the outer wall of the box body (121), and the shell assembly (1) further comprises a shielding assembly (14), wherein the shielding assembly (14) is arranged on the box body (121) and is at least partially located in the mounting groove (1202).

6. The cleaning machine according to claim 5, characterized in that A wiring harness groove (1401) is provided inside the shielding assembly (14), and the wiring harness groove (1401) extends along the length direction of the shielding assembly (14). Both ends of the wiring harness groove (1401) are open. The outer side wall of the partition assembly (3) and the inner side wall of the second limiting groove (1201) cooperate to form a wiring harness channel (303). The wiring harness channel (303) is circumferentially arranged along the outer side wall of the partition assembly (3). The wiring harness channel (303) is connected to the wiring harness groove (1401). A sensing device is provided in the wiring harness groove (1401). The wires of the sensing device pass through the wiring harness groove (1401) and the wiring harness channel (303) and are used to connect to a control system. A signal triggering assembly is provided on the cover body (122). The signal triggering assembly is arranged relative to the sensing device and can generate sensing. And / or the shielding component (14) is a C-shaped component.

7. The cleaning machine according to claim 1, characterized in that The partition assembly (3) further comprises a liquid inlet channel (304), the liquid inlet channel (304) comprising a flow channel (3041) and a liquid outlet (3042), the flow channel (3041) being circumferentially arranged along the inner side wall of the partition assembly (3), the liquid inlet assembly (4), the flow channel (3041) and the liquid outlet (3042) being sequentially connected, and the liquid outlet (3042) being located downstream of the air duct (302) and being connected to the air duct (302); And / or both ends of the air duct (302) are open, one end of the air duct (302) is connected to the air inlet assembly (5), and the other end of the air duct (302) is connected to the output port (301).

8. The cleaning machine according to claim 1, characterized in that The partition assembly (3) is further provided with a sewage channel (305) and an anti-siphon channel (306); a first anti-siphon port (3061) and a second anti-siphon port (3062) are respectively provided at both ends of the anti-siphon channel (306); the first anti-siphon port (3061) is located downstream of the sewage channel (305) and communicates with the sewage channel (305); the second anti-siphon port (3062) is located downstream of the air duct (302) and communicates with the air duct (302).

9. The cleaning machine according to claim 8, characterized in that A plurality of anti-siphon baffles (31) are provided in the anti-siphon channel (306), and two adjacent anti-siphon baffles (31) arranged along the length direction of the anti-siphon channel (306) are respectively located on the inner walls on both sides of the anti-siphon channel (306) and are partially staggered, and the anti-siphon baffles (31) extend from the inner wall of the anti-siphon channel (306) toward the sewage channel (305); And / or, the partition assembly (3) is further provided with a first drain outlet (307) and a second drain outlet (308), the first drain outlet (307) and the second drain outlet (308) being respectively located at two ends of the sewage channel (305), and a third drain outlet (105) is provided on the outer wall of the shell assembly (1), and the first drain outlet (307), the sewage channel (305), the second drain outlet (308) and the third drain outlet (105) are sequentially connected.

10. The cleaning machine according to claim 1, characterized in that It also includes a lighting assembly (6), the lighting assembly (6) being arranged on the partition assembly (3) and located inside the partition assembly (3); a lighting hole (309) is also provided on one side of the partition assembly (3) where the output port (301) is provided; the lighting hole (309) is communicated with the washing chamber (101); the lighting assembly (6) and the lighting hole (309) are arranged opposite to each other; and / or further comprising a heating component (7), the heating component (7) being arranged on the housing component (1) and located within the installation area (103), the heating component (7) being arranged opposite to the washing chamber (101); And / or the partition assembly (3) is rectangular.