Vehicle-mounted garbage can and vehicle
The vehicle trash can addresses the lack of smart opening mechanisms and hygiene risks by using sensors to automate lid operation, integrating UV disinfection and smart alerts, improving convenience and hygiene.
Patent Information
- Application Number
- CN202510576691.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2025-07-15
AI Technical Summary
The existing car trash cans lack intelligent design in their opening methods, and require manual operation by users to increase driving risks and bacterial transmission risks.
Intelligent sensing sensors are used to detect the human body's approach or distance, and the opening and closing of the trash can lid is automatically controlled through the vehicle control system, and equipped with a humidity sensor, ultraviolet fluorescent lamp and capacitive level sensor to realize intelligent management and disinfection functions.
It improves the convenience of use, reduces the risk of bacterial transmission, realizes intelligent and sanitary management of garbage bins, reduces the dissipation of odors, and extends the service life.
Smart Images

Figure CN120307982A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of vehicle interior parts, and more specifically, to an in-vehicle trash can and a vehicle. Background Art
[0002] Existing in-vehicle trash cans have certain limitations in design and function, especially in terms of intelligence and hygiene. Many in-vehicle trash cans still rely on traditional opening methods, such as the magnetic attraction principle or hard buttons. Although this opening method is simple and intuitive, it lacks intelligent design and cannot meet the user's demand for convenience. For example, when a driver or passenger needs to discard trash during driving, they may need to distract their attention to manually operate the opening button of the trash can, which not only increases the driving risk but also reduces the user experience.
[0003] In addition, the traditional trash can opening method requires users to directly touch the trash can, which increases the risk of bacteria transmission. In daily life, people's hands often carry various bacteria and viruses. When users touch the opening button of the trash can, these bacteria and viruses may remain on the button and then be transmitted to other users through contact. Especially in public places or enclosed vehicle environments, this hygiene problem is particularly prominent. Summary of the Invention
[0004] The present application aims to provide an in-vehicle trash can and a vehicle, aiming to solve the problem that the traditional trash can opening method requires users to directly touch the trash can.
[0005] In a first aspect of the present application, an in-vehicle trash can is provided, including:
[0006] A first box body, including a box body and a box cover;
[0007] The box body and the box cover are installed inside a to-be-installed slot of the vehicle. There is a placement chamber inside the box body. The box cover is arranged at the opening of the box body for closing the placement chamber, and the box cover can move towards or away from the opening;
[0008] A driving member is arranged between the box body and the box cover, and the driving member is used to drive the box cover to move towards or away from the opening;
[0009] A second box body, arranged inside the placement chamber;
[0010] A control interface, including a mutually matching interface base and interface plug, wherein the interface base is arranged on the second box body, and the interface plug is arranged on the first box body;
[0011] The control interface is electrically connected to the driving member and the vehicle control system respectively, so that the vehicle control system can control the driving member to drive the box cover to move towards or away from the opening through the control interface.
[0012] Optionally, an intelligent induction sensor is provided on the box cover;
[0013] The intelligent induction sensor is electrically connected to the control interface and is used to detect whether a human body approaches the box cover;
[0014] When the intelligent induction sensor senses the approach of a human body, the intelligent induction sensor transmits an object approach signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover to move away from the opening;
[0015] When the intelligent induction sensor senses the departure and disappearance of a human body, the intelligent induction sensor transmits an object departure signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover to move towards the opening.
[0016] Optionally, a warm air inlet pipe and an outlet pipe are provided on the box body;
[0017] The warm air inlet pipe and the outlet pipe are respectively connected to the air conditioning system of the vehicle, and the warm air inlet pipe and the outlet pipe are respectively communicated with the placement chamber;
[0018] A humidity sensor is provided inside the placement chamber, and the humidity sensor is electrically connected to the control interface;
[0019] The humidity sensor is used to sense the air humidity in the placement chamber and transmit the air humidity information in the placement chamber to the vehicle control system;
[0020] When the air humidity in the placement chamber received by the vehicle control system is greater than the preset air humidity threshold, the vehicle control system controls the air conditioning system of the vehicle to blow warm air into the placement chamber through the warm air inlet pipe for dehumidification;
[0021] When the air humidity in the placement chamber received by the vehicle control system is less than the preset air humidity threshold, the vehicle control system controls the air conditioning system of the vehicle to stop blowing warm air into the placement chamber.
[0022] Optionally, a capacitive level sensor is provided on the inner wall of the second box body, and the capacitive level sensor is electrically connected to the control interface;
[0023] The capacitive level sensor is used to detect the position height of the object inside the second box body and transmit the position height information to the vehicle control system;
[0024] When the position height information is greater than a preset cleaning threshold and the vehicle is in a non-driving state, the vehicle control system controls the voice module of the vehicle to issue a voice prompt.
[0025] Optionally, the interface base is embedded in the box wall of the second box body.
[0026] Optionally, an ultraviolet fluorescent lamp is provided on one side of the box cover facing the placement chamber.
[0027] Optionally, the box body is provided with an aroma inlet pipe, one end of the aroma inlet pipe is communicated with the placement chamber, and the other end is connected to the chamber of the vehicle for placing aroma.
[0028] In a second aspect of the embodiments of the present application, a vehicle is provided, and the vehicle includes a vehicle control system and the on-vehicle garbage bin provided in the first aspect.
[0029] The vehicle control system is used to control the driving member in the on-vehicle garbage bin to drive the box cover of the on-vehicle garbage bin to move towards or away from the opening of the on-vehicle garbage bin.
[0030] Optionally, the vehicle control system includes:
[0031] A voice control sub-module, connected to the driving member, the voice control sub-module is used to receive voice command information and control the driving member to drive the box cover to move towards or away from the opening according to the voice command information.
[0032] Optionally, the vehicle control system includes:
[0033] A touch screen control sub-module, connected to the driving member, the touch screen control sub-module is used to receive touch screen command information and control the driving member to drive the box cover 12 to move towards or away from the opening according to the touch screen command information.
[0034] Advantageous effects:
[0035] 1. Improve the convenience of use: The intelligent induction sensor automatically senses the approach or departure of the human body to control the opening and closing of the garbage bin cover, eliminating the need for manual operation by the user and greatly simplifying the use process. The vehicle control system also includes a voice control sub-module and a touch screen control sub-module, providing multiple control methods and increasing the convenience of use.
[0036] 2. Reduce the risk of bacteria and virus transmission: It reduces the chance of users directly touching the trash bin, thus reducing the risk of transmission of pathogens such as bacteria and viruses. The setting of ultraviolet fluorescent lamps can also disinfect the inside of the trash bin, further killing microorganisms and maintaining hygiene.
[0037] 3. Intelligent management: The humidity sensor monitors the humidity level inside the trash bin in real time, and the vehicle control system automatically adjusts the operation of the warm air inlet pipe according to the humidity information, realizing intelligent management of the humidity inside the trash bin. The capacitive level sensor detects the height of the garbage inside the trash bin. When the garbage reaches the preset cleaning threshold, the vehicle control system will issue a voice prompt to remind the user to clean it in time. Description of the Drawings
[0038] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings required to be used in the description of the embodiments of the present application. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0039] Figure 1 is a schematic structural diagram of a vehicle-mounted trash bin proposed in an embodiment of the present application;
[0040] Figure 2 is a schematic block diagram of a vehicle-mounted trash bin proposed in an embodiment of the present application;
[0041] Description of the reference numerals: The first box body 1, the box body 11, the warm air inlet pipe 111, the air outlet pipe 112, the fragrance inlet pipe 113, the box cover 12, the second box body 2, the control interface 3, the ultraviolet fluorescent lamp 4. Detailed Embodiments
[0042] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts fall within the scope of protection of the present application.
[0043] As Figure 1 shown, the first aspect of the present application provides a vehicle-mounted trash bin, including:
[0044] A first box body 1, including a box body 11 and a box cover 12;
[0045] The box body 11 and the box cover 12 are installed inside the installation notch of the vehicle. There is a placement chamber inside the box body 11. The box cover 12 is arranged at the opening of the box body 11 for closing the placement chamber, and the box cover 12 can move towards or away from the opening;
[0046] A driving member is provided between the box body 11 and the box cover 12, and the driving member is used to drive the box cover 12 to move towards or away from the opening;
[0047] The second box body 2 is arranged inside the placement chamber;
[0048] The control interface 3 includes a mutually matching interface base and interface plug. The interface base is arranged on the second box body 2, and the interface plug is arranged on the first box body 1;
[0049] The control interface 3 is electrically connected to the driving member and the vehicle control system respectively, so that the vehicle control system can control the driving member to drive the box cover 12 to move towards or away from the opening through the control interface 3.
[0050] The first box body 1 is the external shell of the vehicle-mounted garbage bin. It is directly embedded in the vehicle, that is, inside the installation notch. Specifically, the inside of the installation notch can be arranged at the rear of the center console between the driver's position and the co-driver's position of the vehicle for placing the second box body 2. And the first box body 1 is divided into two parts: the box body 11 and the box cover 12. The second box body 2 is placed inside the placement chamber of the box body 11, and then the opening of the box body 11 can be closed by the box cover 12, so that the second box body 2 is enclosed in the box body 11. The second box body 2 is used to place garbage. When it is necessary to discard garbage, the box cover 12 can be opened to expose the opening on the box body, and then the garbage can be put into the second box body 2 and then the box cover 12 is closed, so that the garbage is hidden inside the first box body 1.
[0051] The driving member is used to realize the automatic opening and closing of the box cover 12. The driving member is electrically connected to the vehicle control system of the vehicle through the control interface 3. The vehicle control system can send a working instruction to the driving member, so that the driving member drives the box cover 12 to move towards or away from the opening of the box body 11, so as to realize the closing or opening of the box cover 12 to the box body 11.
[0052] Specifically, the driving member can be a driving component capable of reciprocating motion, such as a servo motor or a hydraulic pump. Exemplarily, in one embodiment, a servo motor can be used as the driving component, which is connected to the box cover 12 through transmission components such as a speed reducer and a coupling, and the box cover 12 is hinged to the box body 11. When the vehicle control system issues a working instruction, the servo motor can receive the corresponding control signal and start, and drive the box cover to displace through the transmission of the transmission components, so that the box cover 12 moves towards or away from the opening of the box body 11. When the box cover 12 moves towards the opening of the box body 11, the box cover 12 will close the box body 11, that is, the box cover 12 is closed. When the box cover 12 moves away from the opening of the box body 11, the opening of the box body 11 will be opened to expose the second box body 2 inside the box body 11, that is, the box cover 12 is opened.
[0053] The control interface 3 is used to connect the driving member and the vehicle control system. At the same time, the control interface 3 also includes an interface plug that can be respectively arranged on the first box body 1 and an interface base on the second box body 2 to detect whether the second box body 2 is inside the first box body 1. The interface plug and the interface base, as connection components for information transmission or power supply, can be an ICD (In-Vehicle Data Connector) interface.
[0054] The control system of the vehicle can be an existing vehicle intelligent system, such as an in-vehicle infotainment system, a system that can interact with people or control vehicle functions through the system, and a system that can receive information and make corresponding feedback or operations.
[0055] Further, in an alternative embodiment, an intelligent induction sensor is provided on the box cover 12. The intelligent induction sensor is electrically connected to the control interface 3 and is used to detect whether a person is approaching the box cover 12.
[0056] The intelligent induction sensor can specifically adopt, such as an infrared sensor, a microwave radar sensor, an ultrasonic sensor or a capacitive proximity sensor, etc. These sensors can effectively detect the approach and departure of a person or other objects without directly contacting the object.
[0057] Specifically, when the intelligent induction sensor senses that a person is approaching, the intelligent induction sensor transmits an object approaching signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover 12 to move away from the opening, that is, to open the box cover 12 to facilitate the user to put garbage.
[0058] On the contrary, when the intelligent induction sensor senses that a person is moving away and disappearing, the intelligent induction sensor transmits an object moving away signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover 12 to move towards the opening to keep the garbage bin in a closed state.
[0059] In this way, the user does not need to manually open or close the dustbin lid. Just approaching the dustbin will cause the lid 12 to automatically open and close automatically after the garbage is thrown in. This automated operation method greatly simplifies the usage process and improves the convenience of use. At the same time, by reducing the chance of the user directly touching the dustbin, the risk of transmission of pathogens such as bacteria and viruses is reduced. At the same time, the automatically closing lid can also effectively prevent the odor of the garbage from spreading and keep the surrounding environment clean and hygienic. By reducing the damage to the dustbin caused by human operation, the intelligent induction sensor helps to extend the service life of the dustbin. At the same time, automated management can also reduce the failure rate caused by improper operation and lower the maintenance cost.
[0060] Furthermore, in an optional embodiment, the box body 11 is provided with a warm air inlet pipe 111 and an air outlet pipe 112. The warm air inlet pipe 111 and the air outlet pipe 112 are respectively connected to the air-conditioning system of the vehicle, and the warm air inlet pipe 111 and the air outlet pipe 112 are respectively communicated with the placement chamber. A humidity sensor is arranged inside the placement chamber, and the humidity sensor is electrically connected to the control interface 3. The humidity sensor is used to sense the air humidity inside the placement chamber and transmit the air humidity information inside the placement chamber to the vehicle control system.
[0061] The warm air inlet pipe 111 is connected to the air-conditioning system of the vehicle and is used to introduce the warm air of the vehicle air-conditioning system into the placement chamber of the first box body 1. By blowing warm air into the placement chamber, the air humidity inside the placement chamber can be reduced, preventing the garbage from getting damp and moldy and keeping the inside of the dustbin dry and clean. The air outlet pipe 112 is also connected to the air-conditioning system of the vehicle and is used to discharge the air inside the placement chamber to form an air circulation. Cooperating with the warm air inlet pipe 111, the air outlet pipe 112 can accelerate the discharge of the humid air inside the placement chamber, improve the dehumidification efficiency, and further keep the inside of the dustbin dry and clean.
[0062] The main function of the humidity sensor is to real-time monitor the humidity level inside the first box body 1. And transmit the humidity level information to the vehicle control system. At the same time, we can preset an air humidity threshold. When the humidity is greater than the preset air humidity threshold, it means that the air inside the first box body 1 needs to be dried. When the humidity is less than the preset air humidity threshold, drying is not required.
[0063] Specifically, when the air humidity inside the placement chamber received by the vehicle control system is greater than the preset air humidity threshold, the vehicle control system controls the air-conditioning system of the vehicle to blow warm air into the placement chamber through the warm air inlet pipe 111 for dehumidification. When the air humidity inside the placement chamber received by the vehicle control system is less than the preset air humidity threshold, the vehicle control system controls the air-conditioning system of the vehicle to stop blowing warm air into the placement chamber.
[0064] By setting up a humidity sensor, the humidity level inside the trash bin can be monitored in real time. When the humidity is too high, the vehicle control system will automatically activate the warm air inlet pipe 111 to introduce the warm air of the vehicle air conditioning system into the trash bin, thereby reducing the humidity and preventing the garbage from getting damp and moldy. When used in conjunction with the air outlet pipe 112, it can accelerate the discharge of humid air, form an air circulation, further improve the dehumidification efficiency, and ensure that the inside of the trash bin always remains dry and clean. A dry environment helps reduce the growth of microorganisms such as bacteria and mold, and improves the hygiene of the trash bin and its surrounding environment. This system realizes the intelligent management of the humidity inside the trash bin, automatically adjusts the humidity without manual intervention, and improves the intelligent level of the trash bin.
[0065] Further, in an alternative embodiment, a capacitive level sensor is provided on the inner wall of the second box body 2. The capacitive level sensor is electrically connected to the control interface 3. The capacitive level sensor is used to detect the position height of the object inside the second box body 2 and transmit the position height information to the vehicle control system.
[0066] The capacitive level sensor is used to detect the position height of the object inside the second box body 2, that is, to detect the amount of garbage inside the second box body 2. Thus, a predetermined height can be set as a preset cleaning threshold. When the height reaches the preset cleaning threshold, it means that the garbage is almost full and needs to be cleaned.
[0067] Specifically, when the position height information is greater than the preset cleaning threshold and the vehicle is in a non-driving state, that is, when the vehicle stops and the driver gets off, the vehicle control system controls the voice module of the vehicle to issue a voice prompt. Specifically, the voice prompt can be given when the vehicle gear is switched from a non-"P gear" to the "P gear" and the vehicle speed is 0. The voice prompt can specifically be a voice prompt of "There is already a lot of garbage, please clean it in time".
[0068] Through the intelligent reminder function, users do not need to constantly pay attention to the overflow situation of the trash bin, improving the convenience and comfort of use. Timely voice prompts help reduce the situation of the trash bin overflowing due to forgetting or negligence, and keep the inside of the vehicle clean and hygienic. And by cleaning the trash bin in time, problems such as odors and the growth of bacteria caused by garbage accumulation can be avoided, reducing the vehicle maintenance cost.
[0069] Further, in an alternative embodiment, an ultraviolet fluorescent lamp 4 is provided on the side of the box cover 12 facing the placement chamber. The ultraviolet fluorescent lamp 4 is electrically connected to the control interface 3 so that the vehicle control system can control the switch of the ultraviolet fluorescent lamp 4.
[0070] The ultraviolet fluorescent lamp 4 can emit ultraviolet rays, thereby disinfecting the interior of the first box body 1, that is, disinfecting the second box body 2 and the garbage inside it. In the placement chamber of the garbage bin, there may be various bacteria, viruses and other microorganisms. The ultraviolet fluorescent lamp 4 can efficiently kill these microorganisms and maintain the hygiene inside the garbage bin. Through the bactericidal and disinfecting effect of the ultraviolet fluorescent lamp 4, the number of pathogens such as bacteria and viruses inside the garbage bin can be significantly reduced, the risk of disease transmission can be reduced, and the hygiene of the overall environment can be improved. Moreover, the growth of microorganisms such as bacteria and molds is one of the main reasons for the peculiar smell of the garbage bin. By killing these microorganisms, the ultraviolet fluorescent lamp 4 can inhibit their growth, thereby reducing the generation of peculiar smell.
[0071] Further, in an optional embodiment, the interface base is embedded in the box wall of the second box body 2. The second box body 2 is connected to the first box body 1 through the control interface 3, that is, the interface base and the interface plug. After separating the interface base and the interface plug, the second box body 2 can be directly taken out from the interior of the first box body 1 and used as a portable garbage bin that can be taken out of the vehicle. And embedding the interface base in the box wall of the second box body 2 can prevent the interface base from protruding on the second box body 2 and being worn after the second box body 2 is taken out.
[0072] The second box body 2, as the main garbage storage part, can be taken out and used alone, which is convenient for users to use the garbage bin in different scenarios, improving the portability and flexibility of the garbage bin. Since the second box body 2 can be taken out alone, users can more conveniently clean and disinfect it to keep the garbage bin hygienic and tidy. When the second box body 2 is not needed, it can be taken out, and the first box body 1 can be used for other purposes (such as a storage box), improving the versatility of the garbage bin. The modular design enables users to select different modules of sizes, colors or functions for combination according to personal preferences and needs to meet personalized requirements.
[0073] Moreover, because the second box body 2 and the first box body 1 are connected through the interface base and the interface plug, after the second box body 2 is taken out, the disconnection of the interface base and the interface plug can be detected by the vehicle control system. When the vehicle control system detects that the second box body 2 is not inside the first box body 1, that is, there is no garbage stored inside the first box body 1. Then the vehicle control system can turn off the above-mentioned warm air dehumidification function and ultraviolet sterilization function to avoid unnecessary energy waste.
[0074] Further, in an optional embodiment, the box body 11 is provided with a fragrance inlet pipe 113. One end of the fragrance inlet pipe 113 is communicated with the placement chamber, and the other end is connected to the chamber of the vehicle for placing fragrance.
[0075] One end of the fragrance inlet pipe 113 is communicated with the placement chamber, and the other end is connected to the chamber for placing fragrance in the vehicle. When the fragrance system is started, the fragrance will enter the placement chamber through the fragrance inlet pipe 113. The trash bin, as a container for storing vehicle trash, is prone to generating odors. The diffusion of the fragrance can effectively neutralize or cover these odors, keeping the air in the vehicle fresh and pleasant. The fragrance released by the fragrance system can effectively remove the odors generated in the vehicle (such as leather smell, cigarette smell, etc.), creating a more comfortable in-vehicle environment for passengers.
[0076] Based on the same inventive concept, an embodiment of the present application discloses a vehicle, which includes a vehicle control system and the on-vehicle trash bin provided in the first aspect.
[0077] The vehicle control system is used to control the driving member in the on-vehicle trash bin to drive the lid 12 of the on-vehicle trash bin to move towards or away from the opening of the on-vehicle trash bin.
[0078] Further, the vehicle control system includes:
[0079] A voice control sub-module, connected to the driving member, the voice control sub-module is used to receive voice command information and control the driving member to drive the lid 12 to move towards or away from the opening according to the voice command information.
[0080] Specifically, controlling the driving member to drive the lid 12 to move towards or away from the opening through the voice control sub-module includes:
[0081] Inputting voice command information for opening the trash bin to the voice control sub-module, and the vehicle control system controls the driving member to drive the lid 12 to move away from the opening;
[0082] Inputting voice command information for closing the trash bin to the voice control sub-module, and the vehicle control system controls the driving member to drive the lid 12 to move towards the opening.
[0083] The driver or passenger can control the opening and closing of the trash bin lid through simple voice commands, such as "open the trash bin" or "close the trash bin", without manual operation, greatly improving the convenience of use. The voice control method reduces the direct contact between the user and the trash bin, reducing the risk of transmission of pathogens such as bacteria and viruses. At the same time, the automatically closing lid can also effectively prevent the odor of the trash from spreading, enhancing the overall user experience. During driving, the driver does not need to be distracted to manually open or close the trash bin and can complete the operation through voice commands, thus improving driving safety.
[0084] Among them, the user can also set different voice commands according to their own preferences and needs to control the opening and closing of the trash bin to achieve a personalized experience.
[0085] Further, the vehicle control system includes:
[0086] The touch screen control sub-module is connected to the driving member. The touch screen control sub-module is used to receive touch screen instruction information and control the driving member to drive the bin cover 12 to move towards or away from the opening according to the touch screen instruction information.
[0087] Specifically, controlling the driving member to drive the bin cover 12 to move towards or away from the opening by the touch screen control sub-module includes:
[0088] Inputting a signal to open the trash bin to the touch screen control sub-module through the vehicle control screen, and the vehicle control system controls the driving member to drive the bin cover 12 to move away from the opening;
[0089] Inputting a signal to close the trash bin to the touch screen control sub-module through the vehicle control screen, and the vehicle control system controls the driving member to drive the bin cover 12 to move towards the opening.
[0090] The touch screen control sub-module allows users to control the opening and closing of the trash bin cover through operations on the vehicle control screen, increasing the diversity of operations. Through touch screen operations, users can intuitively see the control options for opening and closing the trash bin, which are easy to understand and operate. Compared with voice commands, touch screen operations are usually more accurate because users can directly see and confirm their operations, reducing misoperations caused by voice recognition errors or mishearing. When one control method fails or is inconvenient to use, users can choose another control method, thereby improving the reliability of the entire system. Whether in urban congested sections, highways or parking lots and other scenarios, users can conveniently control the opening and closing of the trash bin through the touch screen control sub-module.
[0091] At the same time, users can freely choose between voice control and touch screen control according to their own habits and preferences, improving the convenience and flexibility of use.
[0092] It should be noted that the various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.
[0093] It should also be noted that in this text, the orientation or positional relationships indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings. This is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present application. In addition, relative terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations, nor can they be construed as indicating or implying relative importance. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or terminal device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or terminal device. Without further limitation, an element defined by the statement "comprising one..." does not exclude the existence of additional identical elements in the process, method, article or terminal device comprising the element.
[0094] The technical solutions provided by the present application have been introduced in detail above. Specific examples are used in this text to elaborate on the principles and implementation manners of the present application. The description of the above embodiments is only for helping to understand the present application, and the content of this specification should not be construed as a limitation to the present application. At the same time, for those of ordinary skill in the art, based on the present application, there will be various forms of changes in the specific implementation manners and application scopes. It is not necessary and impossible to enumerate all the implementation manners here, and the obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. A vehicle-mounted garbage bin, characterized in that, Comprising: A first box body, including a box body and a box cover; The box body and the box cover are installed inside a to-be-installed notch of a vehicle. There is a placement chamber inside the box body. The box cover is arranged at the opening of the box body for closing the placement chamber, and the box cover can move towards or away from the opening; A driving member is provided between the box body and the box cover, and the driving member is used to drive the box cover to move towards or away from the opening; A second box body is arranged inside the placement chamber; A control interface, including a mutually matching interface base and an interface plug, wherein the interface base is arranged on the second box body, and the interface plug is arranged on the first box body; The control interface is electrically connected to the driving member and the vehicle control system respectively, so that the vehicle control system can control the driving member to drive the box cover to move towards or away from the opening through the control interface.
2. The on-vehicle garbage bin according to claim 1, characterized in that, An intelligent induction sensor is provided on the box cover; The intelligent induction sensor is electrically connected to the control interface and is used to detect whether a human body approaches the box cover; When the intelligent induction sensor senses that a human body approaches, the intelligent induction sensor transmits an object approaching signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover to move away from the opening; When the intelligent induction sensor senses that a human body moves away and disappears, the intelligent induction sensor transmits an object moving away signal to the vehicle control system, and the vehicle control system controls the driving member to drive the box cover towards the opening.
3. The vehicle-mounted garbage bin according to claim 1, characterized in that, The box body is provided with a warm air inlet pipe and an outlet pipe; The warm air inlet pipe and the outlet pipe are respectively connected to the air conditioning system of the vehicle, and the warm air inlet pipe and the outlet pipe are respectively communicated with the placement chamber; A humidity sensor is arranged inside the placement chamber, and the humidity sensor is electrically connected to the control interface; The humidity sensor is used to sense the air humidity inside the placement chamber and transmit the air humidity information inside the placement chamber to the vehicle control system; When the air humidity inside the placement chamber received by the vehicle control system is greater than a preset air humidity threshold value, the vehicle control system controls the air conditioning system of the vehicle to blow warm air into the placement chamber through the warm air inlet pipe for dehumidification; When the air humidity inside the placement chamber received by the vehicle control system is less than the preset air humidity threshold value, the vehicle control system controls the air conditioning system of the vehicle to stop blowing warm air into the placement chamber.
4. The on-vehicle garbage bin according to claim 1, characterized in that, A capacitive level sensor is arranged on the inner wall of the second box body, and the capacitive level sensor is electrically connected to the control interface; The capacitive level sensor is used to detect the position height of an object inside the second box body and transmit the position height information to the vehicle control system; When the position height information is greater than a preset cleaning threshold value and the vehicle is in a non-driving state, the vehicle control system controls the voice module of the vehicle to issue a voice prompt.
5. The on-vehicle garbage bin according to claim 1, characterized in that, The interface base is embedded into the box wall of the second box body.
6. The on-vehicle garbage bin according to claim 1, characterized in that, An ultraviolet fluorescent lamp is provided on the side of the box cover facing the placement chamber.
7. The on-vehicle garbage bin according to claim 1, characterized in that, The box body is provided with an aroma inlet pipe, one end of the aroma inlet pipe communicates with the placement chamber, and the other end is connected to the chamber of the vehicle for placing the aroma.
8. A vehicle, characterized in that, The vehicle includes a vehicle control system and the on-vehicle garbage bin according to any one of claims 1-7. The vehicle control system is used to control the driving member in the on-vehicle garbage bin to drive the lid of the on-vehicle garbage bin to move towards or away from the opening of the on-vehicle garbage bin.
9. The vehicle according to claim 8, characterized in that, The vehicle control system includes: A voice control sub-module, connected to the driving member, the voice control sub-module is used to receive voice command information and control the driving member to drive the lid to move towards or away from the opening according to the voice command information.
10. The vehicle according to claim 8, characterized in that, The vehicle control system includes: A touch screen control sub-module, connected to the driving member, the touch screen control sub-module is used to receive touch screen command information and control the driving member to drive the lid to move towards or away from the opening according to the touch screen command information.