Fabric cleaning device
By adding a second hose and a second handle to the fabric cleaning device, directly connecting the heating unit and the blowing unit, the problems of cumbersome use of drying functions and poor integrity in the prior art are solved, and a convenient and labor-saving drying effect is achieved.
Patent Information
- Application Number
- CN202421608250.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing fabric cleaning device requires external drying components when using the drying function, which is poor in integrity and is cumbersome to use and there is a risk of damage or loss of the drying components.
A fabric cleaning device is designed, and a second hose and a second handle are added. The second hose is connected to the heating unit and the blowing unit in the machine body. The hot air is blown out through the second handle for drying, so the whole machine does not need to be disassembled and assembled.
The convenience and integrity of the drying function are achieved. Users can directly use the second handle to dry, without considering the storage of external components, making it more labor-saving and safer.
Smart Images

Figure CN222888922U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of cleaning devices, and more specifically to a fabric cleaning device. Background Art
[0002] Nowadays, many furnitures are made of fabrics for comfort and beauty, such as sofas, carpets, curtains, mattresses, etc. However, fabric furnitures are difficult to clean due to the material problem. Manual cleaning of this type of fabric furniture requires a series of work steps such as disassembly, cleaning, and installation. Manual cleaning is labor-intensive and difficult to clean. Each cleaning work is a big project that consumes physical strength. In addition, since some fabric furnitures cannot be disassembled, they can only be simply cleaned on the surface, which easily leads to problems such as hiding dirt and breeding bacteria, which not only affects the beauty of fabric furnitures, but also affects human health. At present, fabric cleaning machines are mostly used to clean fabric furnitures to improve the cleaning effect and efficiency. The existing fabric cleaning machines include a handle and a water spraying device and a suction device connected to the handle. The water spraying device sprays water toward the surface of the fabric furniture through the handle. After brushing the surface of the furniture with a brush on the handle, the suction device then sucks away the sewage on the surface of the fabric through the handle to prevent the sewage from penetrating into the interior of the fabric furniture. However, after cleaning, fabric furniture needs to be dried naturally, sun-dried, or blown dry with a fan or hair dryer before it can be used again, which takes a long time and affects user use.
[0003] In response to the above problems, a utility model patent with publication number: CN220538194U discloses a cleaning machine, including: a main box; a handle disposed on the main box and connected to the main box; and a drying component disposed on the outside of the handle and detachably mounted with the handle, the drying component being electrically connected to the main box, and the drying component being used to output a hot air flow toward the items to be cleaned by the handle. In this technical solution, a drying component is disposed on the outside of the handle, and the drying component outputs a hot air flow to dry the surface of the items after the handle has been cleaned, that is, when the handle is used for cleaning, the items can be cleaned and dried at the same time, so that the items can remain dry after cleaning. However, this solution requires an external drying component when using the drying function, and the integrity is poor. In addition, the drying component needs to be disassembled and assembled each time it is used, which is cumbersome and laborious to use, and the drying component is easily damaged and lost when stored separately, and there are many problems in actual use. Utility Model Content
[0004] The technical problem to be solved by the present application is to provide a fabric cleaning device, which is additionally provided with a second hose and a second handle, the second hose being connected to a heating unit and a blowing unit in the machine body, the hot air generated by the heating unit entering the second hose through the blowing unit, and the second hose blowing out hot air through the second handle to dry the fabric, the whole machine has good integrity and does not need to be disassembled for use.
[0005] The present application provides a fabric cleaning device, including a body, a clean water tank and a sewage tank are installed on the body, the body is provided with a first hose and a second hose, the first hose is connected to a first handle, the first handle is respectively connected to the clean water tank and the sewage tank through the first hose, a cleaning component electrically connected to the body is installed in the first handle, the first handle sucks dust and sprays water to clean the surface to be cleaned through the cleaning component, the second hose is connected to the second handle, a heating unit and a blowing unit connected to the second hose are provided in the body, the gas is heated by the heating unit and then enters the second hose through the blowing unit, and the second hose blows out hot air through the second handle to dry the surface to be cleaned.
[0006] In the technical solution, a machine body is arranged to be connected to a first handle through a first hose, and the first hose is respectively connected to a clean water tank and a sewage tank. By installing a cleaning component electrically connected to the machine body in the first handle, the first handle can vacuum, spray water and suck dirt on the surface to be cleaned through the cleaning component. The first handle is provided with a water spray port and a sewage suction port. A water spray pipe and a sewage suction pipe are installed in the first hose. The water spray pipe is connected to the water spray port and the clean water tank. The cleaning component controls the water spray port to spray clean water on the surface to be cleaned. The sewage suction pipe is connected to the sewage suction port and the sewage tank. The cleaning component controls the sewage suction port to suck the sewage on the surface to be cleaned into the sewage tank, thereby achieving cleaning of the surface to be cleaned. The machine body is arranged to be connected to a second handle through a second hose, and the second hose is connected to a heating unit in the machine body. The unit and the blowing unit are connected, the heating unit can heat the air, and the heated air is transported from the second hose to the second handle through the blowing unit to be blown out, so as to achieve drying of the surface to be cleaned. In this solution, the second hose is directly connected to the machine body, and the user can hold the second hose to use the drying function without disassembly and assembly. It is labor-saving and convenient to use, and the integrity of the whole machine is better. The user does not need to consider the storage problem of the external drying component. On the other hand, the heating unit and the blowing unit are both arranged in the machine body, and the cleaning function and the drying function are separately arranged and do not interfere with each other, thereby avoiding water damage to the heating unit and the blowing unit, extending the service life of the heating unit and the blowing unit, and the separate use of the two handles can avoid user confusion and improve cleaning efficiency.
[0007] As an improvement, a first motor is installed in the body, the first motor is electrically connected to the cleaning component, and the first motor is used to drive the cleaning component to vacuum; a heat dissipation duct is provided in the body, one end of the heat dissipation duct is connected to the first motor, and the other end of the heat dissipation duct is connected to the second hose. In this technical solution, the cleaning component vacuums through the first motor, and a heat dissipation duct is provided in the body to connect the first motor and the second hose. The hot air generated by the heating unit and the blowing unit can be transported to the second hose through the heat dissipation duct, and the hot air is blown out from the air outlet of the second handle to the surface to be cleaned, thereby drying the surface to be cleaned, and the gas flow path is smooth, and the blowing efficiency is higher.
[0008] As an improvement, the present application may provide a variety of specific structures of the heating unit and the blowing unit.
[0009] One is: the first motor is connected to a first fan, and the first fan is configured as a blowing unit; a heating frame assembly is installed at the junction of the heat dissipation air duct and the second hose, and the heating frame assembly is configured as a heating unit. In this technical solution, the first motor generates heat during operation. In order to avoid overheating and damage of the first motor, the first motor is electrically connected to the first fan, and the first fan can dissipate heat from the first motor, thereby improving the service life and working efficiency of the first motor. The first fan is set as a blowing unit, and a heating frame assembly is installed at the junction of the heat dissipation air duct and the second hose. The heating frame assembly is used as a heating unit. The first fan transports air into the heat dissipation air duct. The air in the heat dissipation air duct is heated by the heating frame assembly and then transported to the second hose. The hot air is blown out from the air outlet of the second handle to the surface to be cleaned, thereby drying the surface to be cleaned. The heating frame assembly is small in size and will not increase the size of the entire machine. The structural design is ingenious, and the blowing efficiency and drying efficiency are improved.
[0010] The second is: a heating frame assembly and a second fan are installed at the junction of the heat dissipation duct and the second hose, the heating frame assembly is configured as a heating unit, and the second fan is configured as a blowing unit. In this technical solution, a heating frame assembly and a second fan are installed at the junction of the heat dissipation duct and the second hose, the heating frame assembly is used as a heating unit, and the second fan is used as a blowing unit. The second fan draws the air in the machine body into the heat dissipation duct, so that the air in the heat dissipation duct can be heated by the heating frame assembly and then transported to the second hose, and the hot air is blown out from the air outlet of the second handle to the surface to be cleaned, thereby drying the surface to be cleaned, and improving the blowing efficiency and drying efficiency.
[0011] The third is: the first motor is configured as a heating unit, the first motor is connected to a first fan, and the first fan is configured as a blowing unit. In this technical solution, the first motor generates heat during operation, and the first motor is electrically connected to the first fan. The first fan can dissipate heat from the first motor, thereby improving the service life and working efficiency of the first motor. The first motor is used as a heating unit, and the first fan is used as a blowing unit. The first fan transports the heat generated by the operation of the first motor to the heat dissipation duct, and then blows it out through the second hose and the second handle to dry the surface to be cleaned. The whole machine does not need to be equipped with a heating and blowing component, which is conducive to reducing the size of the whole machine. The structural design is ingenious, and the whole machine can realize heat circulation, which is conducive to saving energy.
[0012] Fourthly, a second fan is installed at the junction of the heat dissipation duct and the second hose, and the second fan is configured as a blowing unit; the first motor is configured as a heating unit. In this technical solution, a second fan is installed at the junction of the heat dissipation duct and the second hose, and the second fan is used as a blowing unit. The first motor generates heat during operation, and the first motor is used as a heating unit. The heat generated by the operation of the first motor is sucked into the heat dissipation duct by the second fan, and then blown out through the second hose and the second handle to dry the surface to be cleaned. The whole machine does not need to be equipped with a heating component separately, and the structural design is ingenious, which is conducive to heat circulation and energy saving.
[0013] As an improvement, a first switch electrically connected to the heating rack assembly is provided on the machine body, and the first switch is used to control the opening and closing of the heating rack assembly. In this technical solution, by providing the first switch electrically connected to the heating rack assembly on the machine body, the user can control the opening and closing of the heating rack assembly through the first switch, which is simple and convenient to use; the heating rack assembly is electrically connected to the first fan or the second fan, and when the first switch controls the operation of the heating rack assembly, the first fan or the second fan also runs synchronously.
[0014] As an improvement, a handle is provided on the body, and the first switch is provided on the handle; the handle is provided with a clamping portion adapted to the first handle, and the first handle is connected to the clamping portion to be stored on the body. In this technical solution, by providing a handle on the body, the user can move the whole machine by applying force to the handle, which is convenient for the user to carry; by providing the first switch on the handle, the first switch is closer to the user, which is convenient for the user to operate; and the second switch is provided on the body, and the positions of the first switch and the second switch are separately provided to avoid user confusion, and the operation is more intuitive and simple; by providing a clamping portion on the handle, the first handle is limited to the body by connecting to the clamping portion to achieve storage, and the storage structure is simple and reliable.
[0015] As an improvement, a second switch electrically connected to the first motor is provided on the machine body, and the second switch controls the first motor to be turned on and off. In this technical solution, a second switch electrically connected to the first motor is provided on the machine body, and the user can control the first motor to be turned on and off through the second switch, thereby controlling the vacuuming function of the cleaning component to be turned on and off, which is simple and convenient to use.
[0016] As an improvement, the first handle is provided with a third switch electrically connected to the cleaning component, and the third switch controls the water spraying of the cleaning component. In this technical solution, by providing the third switch on the first handle, the user can control the opening and closing of the water spraying function of the cleaning component through the third switch, which is simple and convenient to use, and the positions of the first switch, the second switch and the third switch are separately provided, and the drying function, the vacuuming function and the water spraying function all have corresponding switches, which can avoid user confusion and make the operation more intuitive and simple.
[0017] As an improvement, the second handle is an air outlet structure, and an anti-scalding grip is provided on the air outlet structure. In this technical solution, the second handle is provided as an air outlet structure installed on the end of the second hose. The second handle has a simple structure and can be synchronously stored around the second hose. By providing an anti-scalding grip on the air outlet structure, the user can hold the anti-scalding grip and use the second handle to dry the surface to be cleaned, ensuring safety in use.
[0018] As an improvement, the body is provided with a base, and the base is provided with a first accommodating groove and a second accommodating groove along the circumferential direction respectively, the first hose is received in the first accommodating groove, and the second hose is received in the second accommodating groove; the first accommodating groove and the second accommodating groove are distributed up and down. In the present technical solution, the first handle is connected to the body through the first hose, and the first hose has a certain length so that the first handle can have a larger moving space. By arranging the first receiving groove in the circumferential direction of the base, the first hose is surrounded and accommodated in the first receiving groove, so that the storage of the first hose has less impact on the volume of the whole machine; the second handle is connected to the body through the second hose, and the second hose has a certain length so that the second handle can have a larger moving space. By arranging the second receiving groove in the circumferential direction of the base, the second hose is surrounded and accommodated in the second receiving groove, so that the storage of the second hose has less impact on the volume of the whole machine, and the spatial distribution is more reasonable; the first receiving groove and the second receiving groove are arranged to be distributed up and down, and the storage of the first hose and the second hose does not interfere with each other, avoiding confusion between the storage of the first hose and the second hose and affecting the use, and the up and down distribution of the first receiving groove and the second receiving groove will not increase the lateral size of the whole machine, and the spatial distribution is more reasonable. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of a fabric cleaning device according to the present application.
[0020] Figure 2This is a schematic diagram of the three-dimensional structure of the fabric cleaning device of this application after part of the base is hidden.
[0021] Figure 3 This is a partial structural schematic diagram of the fabric cleaning device in Example 1 of the present application.
[0022] Figure 4 For this application Figure 3 Schematic diagram of the gas flow path for the structure shown.
[0023] Figure 5 This is a partial structural schematic diagram of the fabric cleaning device in Example 2 of the present application.
[0024] Figure 6 This is a partial structural diagram of the fabric cleaning device in Example 3 of the present application.
[0025] Figure 7 This is a partial structural schematic diagram of the fabric cleaning device in Example 5 of the present application.
[0026] As shown in the figure: 1. body; 11. base; 111. first accommodating groove; 112. second accommodating groove; 12. first switch; 13. second switch; 14. handle; 141. clamping part; 15. first motor; 16. heat dissipation duct; 17. first fan; 2. clean water tank; 3. sewage tank; 4. first hose; 5. second hose; 6. first handle; 61. cleaning component; 62. third switch; 7. second handle; 8. heating rack component; 9. second fan; 10. second motor. DETAILED DESCRIPTION
[0027] In order to better understand the present application, a more detailed description of various aspects of the present application will be made with reference to the accompanying drawings. It should be understood that these detailed descriptions are only descriptions of exemplary embodiments of the present application, and do not limit the scope of the present application in any way. Throughout the specification, the same figure numerals refer to the same elements.
[0028] In the drawings, the thickness, size and shape of objects have been slightly exaggerated for ease of explanation. The drawings are only examples and are not drawn strictly to scale.
[0029] It should also be understood that the terms “comprises,” “including,” “has,” “contains,” and “comprising,” when used in this specification, indicate the presence of the described features, integers, steps, operations, elements, and / or parts, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, parts, and / or combinations thereof.
[0030] Embodiment 1
[0031] like Figures 1 to 4As shown, this embodiment discloses a fabric cleaning device, including a machine body 1, on which a clean water tank 2 and a sewage tank 3 are installed, the machine body 1 is provided with a first hose 4 and a second hose 5, the first hose 4 is connected to a first handle 6, the first handle 6 is respectively connected to the clean water tank 2 and the sewage tank 3 through the first hose 4, a cleaning component 61 electrically connected to the machine body 1 is installed in the first handle 6, the first handle 6 absorbs dust and sprays water through the cleaning component 61 to clean the surface to be cleaned, the machine body 1 is connected to the first handle 6 through the first hose 4, and the first hose 4 is respectively connected to the clean water tank 2 and a sewage tank 3, by installing a cleaning component 61 electrically connected to the machine body 1 in the first handle 6, the first handle 6 can vacuum, spray water and suck dirt on the surface to be cleaned through the cleaning component 61, the first handle 6 is provided with a water spray port and a dirt suction port, a water spray pipe and a dirt suction pipe are installed in the first hose 4, the water spray pipe is connected with the water spray port and the clean water tank, the cleaning component 61 controls the water spray port to spray clean water on the surface to be cleaned, the dirt suction pipe is connected with the dirt suction port and the sewage tank 3, the cleaning component 61 controls the dirt suction port to suck the sewage on the surface to be cleaned into the sewage tank 3, thereby achieving cleaning of the surface to be cleaned;
[0032] The second hose 5 is connected to the second handle 7. The machine body 1 is provided with a heating unit and a blowing unit which are both connected to the second hose 5. After the gas is heated by the heating unit, it enters the second hose 5 through the blowing unit. The second hose 5 blows out hot air through the second handle 7 to dry the surface to be cleaned. The machine body 1 is arranged to be connected to the second handle 7 through the second hose 5. The second hose 5 is connected to the heating unit and the blowing unit in the machine body 1. The heating unit can heat the air, and the heated air is transported from the second hose 5 to the second handle 7 through the blowing unit to be blown out, so as to dry the surface to be cleaned. In this scheme, the second hose 5 is directly connected to the machine body 1. The user can hold the second hose 5 to use the drying function without disassembly and assembly. It is labor-saving and convenient to use. The integrity of the whole machine is better. The user does not need to consider the storage problem of the external drying component. On the other hand, the heating unit and the blowing unit are both arranged in the machine body 1. The cleaning function and the drying function are separately arranged without interfering with each other, so as to avoid water damage to the heating unit and the blowing unit, and extend the service life of the heating unit and the blowing unit. In addition, the separate use of the two handles can avoid user confusion and improve the cleaning efficiency.
[0033] More specifically, Figure 3 and Figure 4As shown, a first motor 15 is installed in the machine body 1, and the first motor 15 is electrically connected to the cleaning component 61, and the first motor 15 is used to drive the cleaning component 61 to absorb dust; a heat dissipation duct 16 is provided in the machine body 1, one end of the heat dissipation duct 16 is connected and communicated with the first motor 15, and the other end of the heat dissipation duct 16 is connected and communicated with the second hose 5, and the cleaning component 61 realizes dust absorption through the first motor 15, and a heat dissipation duct 16 is provided in the machine body 1 to connect the first motor 15 and the second hose 5, and the hot air generated by the heating unit and the blowing unit can be transported to the second hose 5 through the heat dissipation duct 16, and the hot air is blown out from the air outlet of the second handle 7 to the surface to be cleaned, so as to dry the surface to be cleaned, and the gas flow path is smooth and the blowing efficiency is higher; more specifically, the heat dissipation duct 16 in the present scheme is composed of a plurality of pipe fittings, and the pipe fittings are in a long strip shape, one end of the pipe fittings is connected and communicated with the first motor 15, and the other end of the pipe fittings is connected and communicated with the second hose 5, and the heat dissipation duct 16 has a simple and reliable structure.
[0034] More specifically, Figures 1 to 3 As shown, a handle 14 is provided on the body 1, and the handle 14 is provided with a clamping portion 141 adapted to the first handle 6. The first handle 6 is connected to the clamping portion 141 to be stored on the body 1. By providing the handle 14 on the body 1, the user can move the entire machine by applying force to the handle 14, which is convenient for the user to carry; by providing the clamping portion 141 on the handle 14, the first handle 6 is connected to the clamping portion 141 to be limited on the body 1 to achieve storage, and the storage structure is simple and reliable.
[0035] More specifically, Figure 1 and Figure 2 As shown, the second handle 7 is an air outlet structure, and an anti-scalding grip is provided on the air outlet structure. The second handle 7 is set as an air outlet structure installed on the end of the second hose 5. The second handle 7 has a simple structure and can be synchronously wrapped and stored with the second hose 5. By arranging an anti-scalding grip on the air outlet structure, the user can use the second handle 7 to dry the surface to be cleaned by holding the anti-scalding grip, thereby ensuring safe use.
[0036] Embodiment 2
[0037] like Figures 1 to 5As shown, this embodiment discloses a fabric cleaning device based on the first embodiment, and its structure is the same as that of the first embodiment, wherein the first motor 15 is connected to the first fan 17, and the first fan 17 is configured as a blowing unit; a heating frame assembly 8 is installed at the junction of the heat dissipation duct 16 and the second hose 5, and the heating frame assembly 8 is configured as a heating unit. The first motor 15 will generate heat during operation. In order to avoid overheating and damage of the first motor 15, the first motor 15 is electrically connected to the first fan 17, and the first fan 17 can dissipate heat for the first motor 15, thereby improving the service life and working efficiency of the first motor 15. 17 is a blowing unit. A heating frame assembly 8 is installed at the junction of the heat dissipation duct 16 and the second hose 5. The heating frame assembly 8 is used as a heating unit. The first fan 17 transports air to the heat dissipation duct 16. The air in the heat dissipation duct 16 is heated by the heating frame assembly 8 and then transported to the second hose 5. The hot air is blown out from the air outlet of the second handle 7 to the surface to be cleaned, thereby drying the surface to be cleaned. The heating frame assembly 8 is small in size and will not increase the size of the whole machine. The structural design is ingenious and improves the blowing efficiency and drying efficiency. In this technical solution, the heating frame assembly 8 can be electrically connected to the first motor 15, thereby saving the setting of one motor.
[0038] More specifically, Figure 1 , Figure 2 and Figure 5 As shown, a first switch 12 electrically connected to the heating rack assembly 8 is provided on the body 1, and the first switch 12 is used to control the opening and closing of the heating rack assembly 8. By providing the first switch 12 electrically connected to the heating rack assembly 8 on the body 1, the user can control the opening and closing of the heating rack assembly 8 through the first switch 12, which is simple and convenient to use; the heating rack assembly 8 is electrically connected to the first fan 17, and when the first switch 12 controls the operation of the heating rack assembly 8, the first fan 17 also runs synchronously.
[0039] More specifically, Figure 1 , Figure 2 and Figure 5As shown, the first switch 12 is arranged on the handle 14. By arranging the first switch 12 on the handle 14, the first switch 12 is closer to the user, which is convenient for the user to operate. The machine body 1 is provided with a second switch 13 electrically connected to the first motor 15. The second switch 13 controls the first motor 15 to be turned on and off. The second switch 13 electrically connected to the first motor 15 is arranged on the machine body 1. The user can control the first motor 15 to be turned on and off through the second switch 13, thereby controlling the dust collection function of the cleaning component 61 to be turned on and off. The use is simple and convenient. The second switch 13 is arranged on the machine body 1. The first switch 12 and the second switch 13 are connected. The separate positions of the switches 13 can avoid user confusion and make the operation more intuitive and simple. The first handle 6 is provided with a third switch 62 electrically connected to the cleaning component 61, and the third switch 62 controls the water spraying of the cleaning component 61. By providing the third switch 62 on the first handle 6, the user can control the opening and closing of the water spraying function of the cleaning component 61 through the third switch 62. The use is simple and convenient. The positions of the first switch 12, the second switch 13 and the third switch 62 are all separately set, and the drying function, the vacuuming function and the water spraying function all have corresponding switches, which can avoid user confusion and make the operation more intuitive and simple.
[0040] Embodiment 3
[0041] like Figures 1 to 4 , Figure 6 As shown, this embodiment discloses a fabric cleaning device based on the first embodiment, and its structure is the same as that of the first embodiment, wherein a heating frame assembly 8 and a second fan 9 are installed at the junction of the heat dissipation duct 16 and the second hose 5, the heating frame assembly 8 is configured as a heating unit, and the second fan 9 is configured as a blowing unit, and the heating frame assembly 8 and the second fan 9 are installed at the junction of the heat dissipation duct 16 and the second hose 5, the heating frame assembly 8 is used as a heating unit, and the second fan 9 is used as a blowing unit, the second fan 9 sucks the air in the body 1 into the heat dissipation duct 16, so that the air in the heat dissipation duct 16 can be heated by the heating frame assembly 8 and then transported to the second hose 5, and the hot air is blown out from the air outlet of the second handle 7 to the surface to be cleaned, thereby drying the surface to be cleaned and improving the blowing efficiency and drying efficiency; in this solution, the heating frame assembly 8 and the second fan 9 are both electrically connected to the second motor 10.
[0042] More specifically, Figure 1 , Figure 2 and Figure 6 As shown, a first switch 12 electrically connected to the heating rack assembly 8 is provided on the body 1, and the first switch 12 is used to control the opening and closing of the heating rack assembly 8. By providing the first switch 12 electrically connected to the heating rack assembly 8 on the body 1, the user can control the opening and closing of the heating rack assembly 8 through the first switch 12, which is simple and convenient to use; the heating rack assembly 8 is electrically connected to the second fan 9, and when the first switch 12 controls the operation of the heating rack assembly 8, the second fan 9 also runs synchronously.
[0043] More specifically, Figure 1 , Figure 2 and Figure 6 As shown, the first switch 12 is arranged on the handle 14. By arranging the first switch 12 on the handle 14, the first switch 12 is closer to the user, which is convenient for the user to operate. The machine body 1 is provided with a second switch 13 electrically connected to the first motor 15. The second switch 13 controls the first motor 15 to be turned on and off. The second switch 13 electrically connected to the first motor 15 is arranged on the machine body 1. The user can control the first motor 15 to be turned on and off through the second switch 13, thereby controlling the dust collection function of the cleaning component 61 to be turned on and off. The use is simple and convenient. The second switch 13 is arranged on the machine body 1. The first switch 12 and the second switch 13 are connected. The separate positions of the switches 13 can avoid user confusion and make the operation more intuitive and simple. The first handle 6 is provided with a third switch 62 electrically connected to the cleaning component 61, and the third switch 62 controls the water spraying of the cleaning component 61. By providing the third switch 62 on the first handle 6, the user can control the opening and closing of the water spraying function of the cleaning component 61 through the third switch 62. The use is simple and convenient. The positions of the first switch 12, the second switch 13 and the third switch 62 are all separately set, and the drying function, the vacuuming function and the water spraying function all have corresponding switches, which can avoid user confusion and make the operation more intuitive and simple.
[0044] Embodiment 4
[0045] like Figures 1 to 4 As shown, this embodiment discloses a fabric cleaning device based on the first embodiment, and its structure is the same as that of the first embodiment, wherein the first motor 15 is configured as a heating unit, the first motor 15 is connected to a first fan 17, the first fan 17 is configured as a blowing unit, the first motor 15 generates heat during operation, and the first motor 15 is electrically connected to the first fan 17, and the first fan 17 can dissipate heat from the first motor 15, thereby improving the service life and working efficiency of the first motor 15, and the first motor 15 is used as a heating unit, and the first fan 17 is used as a blowing unit. The first fan 17 transports the heat generated by the operation of the first motor 15 to the heat dissipation duct 16, and then blows it out through the second hose 5 and the second handle 7 to dry the surface to be cleaned. The whole machine does not need to be additionally provided with a heating and blowing component, which is beneficial to reducing the size of the whole machine, and the structural design is ingenious, the whole machine can realize heat circulation, which is beneficial to saving energy.
[0046] More specifically, Figure 1 and Figure 3As shown, a second switch 13 electrically connected to the first motor 15 is provided on the body 1, and the second switch 13 controls the opening and closing of the first motor 15. The second switch 13 electrically connected to the first motor 15 is provided on the body 1, and the user can control the opening and closing of the first motor 15 through the second switch 13, thereby controlling the opening and closing of the vacuuming function of the cleaning component 61, which is simple and convenient to use; a third switch 62 electrically connected to the cleaning component 61 is provided on the first handle 6, and the third switch 62 controls the water spraying of the cleaning component 61. By providing the third switch 62 on the first handle 6, the user can control the opening and closing of the water spraying function of the cleaning component 61 through the third switch 62, which is simple and convenient to use, and the positions of the second switch 13 and the third switch 62 are separately set, and the vacuuming function and the water spraying function have corresponding switches, which can avoid user confusion and make the operation more intuitive and simple.
[0047] Embodiment 5
[0048] like Figures 1 to 4 , Figure 7 As shown, this embodiment discloses a fabric cleaning device based on the first embodiment, and its structure is the same as that of the first embodiment, wherein a second fan 9 is installed at the junction of the heat dissipation duct 16 and the second hose 5, and the second fan 9 is configured as a blowing unit; the first motor 15 is configured as a heating unit, and the second fan 9 is installed at the junction of the heat dissipation duct 16 and the second hose 5. The second fan 9 is used as a blowing unit, and the first motor 15 generates heat during operation. The first motor 15 is used as a heating unit, and the heat generated by the operation of the first motor 15 is sucked into the heat dissipation duct 16 by the second fan 9, and then blown out through the second hose 5 and the second handle 7 to dry the surface to be cleaned. The whole machine does not need to be additionally provided with a heating component, and the structural design is ingenious, which is conducive to heat circulation and energy saving.
[0049] More specifically, Figure 1 and Figure 3 As shown, a second switch 13 electrically connected to the first motor 15 is provided on the body 1, and the second switch 13 controls the opening and closing of the first motor 15. The second switch 13 electrically connected to the first motor 15 is provided on the body 1, and the user can control the opening and closing of the first motor 15 through the second switch 13, thereby controlling the opening and closing of the vacuuming function of the cleaning component 61, which is simple and convenient to use; a third switch 62 electrically connected to the cleaning component 61 is provided on the first handle 6, and the third switch 62 controls the water spraying of the cleaning component 61. By providing the third switch 62 on the first handle 6, the user can control the opening and closing of the water spraying function of the cleaning component 61 through the third switch 62, which is simple and convenient to use, and the positions of the second switch 13 and the third switch 62 are separately set, and the vacuuming function and the water spraying function have corresponding switches, which can avoid user confusion and make the operation more intuitive and simple.
[0050] Embodiment 6
[0051] like Figures 1 to 7 As shown, this embodiment discloses a fabric cleaning device based on any one of the embodiments 1 to 5, and its structure is the same as the embodiment cited therein, wherein a body 1 is provided with a base 11, and the base 11 is provided with a first accommodating groove 111 and a second accommodating groove 112 along the circumferential direction, a first hose 4 is received in the first accommodating groove 111, and a second hose 5 is received in the second accommodating groove 112, a first handle 6 is connected to the body 1 through the first hose 4, and the first hose 4 has a certain length so that the first handle 6 can have a larger moving space, By arranging the first receiving groove 111 circumferentially on the base 11, the first hose 4 is surrounded and accommodated in the first receiving groove 111, so that the accommodation of the first hose 4 has little effect on the volume of the whole machine, the second handle 7 is connected to the body 1 through the second hose 5, and the second hose 5 has a certain length so that the second handle 7 can have a larger moving space, and by arranging the second receiving groove 112 circumferentially on the base 11, the second hose 5 is surrounded and accommodated in the second receiving groove 112, so that the accommodation of the second hose 5 has little effect on the volume of the whole body 1, and the spatial distribution is more reasonable.
[0052] More specifically, Figure 1 and Figure 2 As shown, the first accommodating groove 111 and the second accommodating groove 112 are distributed vertically. The first accommodating groove 111 and the second accommodating groove 112 are distributed vertically, and the storage of the first hose 4 and the second hose 5 do not interfere with each other, thereby avoiding confusion between the storage of the first hose 4 and the second hose 5 and affecting the use. In addition, the vertical distribution of the first accommodating groove 111 and the second accommodating groove 112 will not increase the lateral size of the whole machine, and the spatial distribution is more reasonable.
[0053] The present application is not limited to the above-mentioned optimal implementation mode. Anyone can derive other forms of products under the inspiration of the present application. However, no matter what changes are made in the shape or structure, all technical solutions that are the same or similar to those of the present application fall within the protection scope of the present application.
Claims
1. A fabric cleaning device, comprising a body (1), wherein a clean water tank (2) and a sewage tank (3) are mounted on the body (1), characterized in that: The machine body (1) is provided with a first hose (4) and a second hose (5). The first hose (4) is connected to a first handle (6). The first handle (6) is connected to a clean water tank (2) and a sewage tank (3) respectively through the first hose (4). A cleaning component (61) electrically connected to the machine body (1) is installed in the first handle (6). The first handle (6) sucks dust and sprays water to clean the surface to be cleaned through the cleaning component (61). The second hose (5) is connected to a second handle (7). The machine body (1) is provided with a heating unit and a blowing unit which are both connected to the second hose (5). After being heated by the heating unit, the gas enters the second hose (5) through the blowing unit. The second hose (5) blows out hot air through the second handle (7) to dry the surface to be cleaned.
2. A fabric cleaning device according to claim 1, characterized in that: A first motor (15) is installed in the machine body (1), the first motor (15) is electrically connected to the cleaning component (61), and the first motor (15) is used to drive the cleaning component (61) to absorb dust; a heat dissipation duct (16) is arranged in the machine body (1), one end of the heat dissipation duct (16) is connected to the first motor (15), and the other end of the heat dissipation duct (16) is connected to the second hose (5).
3. A fabric cleaning device according to claim 2, characterized in that: The first motor (15) is connected to a first fan (17), and the first fan (17) is configured as a blowing unit; a heating frame assembly (8) is installed at the junction of the heat dissipation duct (16) and the second hose (5), and the heating frame assembly (8) is configured as a heating unit.
4. A fabric cleaning device according to claim 2, characterized in that: A heating frame assembly (8) and a second fan (9) are installed at the junction of the heat dissipation air duct (16) and the second hose (5); the heating frame assembly (8) is configured as a heating unit, and the second fan (9) is configured as a blowing unit.
5. A fabric cleaning device according to claim 2, characterized in that: The first motor (15) is configured as a heating unit. The first motor (15) is connected to a first fan (17). The first fan (17) is configured as a blowing unit.
6. A fabric cleaning device according to claim 2, characterized in that: A second fan (9) is installed at the junction of the heat dissipation air duct (16) and the second hose (5), and the second fan (9) is configured as a blowing unit; and the first motor (15) is configured as a heating unit.
7. A fabric cleaning device according to claim 3 or 4, characterized in that: The machine body (1) is provided with a first switch (12) electrically connected to the heating rack assembly (8), and the first switch (12) is used to control the opening and closing of the heating rack assembly (8).
8. A fabric cleaning device according to claim 7, characterized in that: The machine body (1) is provided with a handle (14), and the first switch (12) is provided on the handle (14); the handle (14) is provided with a clamping portion (141) adapted to the first handle (6), and the first handle (6) is connected to the clamping portion (141) so as to be accommodated on the machine body (1).
9. A fabric cleaning device according to claim 5 or 6, characterized in that: The machine body (1) is provided with a second switch (13) electrically connected to the first motor (15), and the second switch (13) is used to control the first motor (15) to be turned on and off; the first handle (6) is provided with a third switch (62) electrically connected to the cleaning component (61), and the third switch (62) controls the cleaning component (61) to spray water.
10. The fabric cleaning device according to claim 1, characterized in that: The second handle (7) is an air outlet structure, and an anti-scalding grip is provided on the air outlet structure.
11. The fabric cleaning device according to claim 1, characterized in that: The machine body (1) is provided with a base (11), and the base (11) is provided with a first accommodating groove (111) and a second accommodating groove (112) along the circumferential direction, respectively; the first hose (4) is received in the first accommodating groove (111), and the second hose (5) is received in the second accommodating groove (112); the first accommodating groove (111) and the second accommodating groove (112) are distributed up and down.
Citation Information
Patent Citations
Cleaning machine
CN220538194U