A hidden door handle for new energy vehicles
By using lightweight, high-strength materials and an intelligent heating control system in the concealed door handles of new energy vehicles, the problems of handle freezing and icing have been solved, achieving rapid heating, energy saving, and waterproofing functions, thus improving the vehicle's performance in winter and rainy/snowy weather.
Patent Information
- Application Number
- CN202311809649.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-26
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-12-26
AI Technical Summary
The hidden door handles of new energy vehicles are prone to freezing or icing in winter, and the heating components continue to heat in non-icing environments, resulting in energy waste and wear and tear on the heating components.
Made of lightweight, high-strength alloy materials and high-temperature resistant engineering plastics, the concealed handle incorporates a temperature rise module, conduction module, heat distribution module, sensing module, and control module. Combined with a hydrophobic mechanism, it controls the opening and closing of the miniature heating element through a humidity sensor, achieving rapid heating and waterproofing.
In winter, the handle's temperature rise rate and de-icing rate are increased, reducing energy waste, extending the life of heating components, and improving the handle's suitability and operational smoothness in rainy and snowy weather.
Smart Images

Figure CN117513888B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of hidden door handle, and particularly relates to a hidden door handle for a new energy vehicle. BACKGROUND
[0002] For a new energy vehicle, in order to ensure the high-end appearance and the performance requirements, the door handle is designed as a hidden structure, that is, the handle is hidden on the surface of the door, and the handle is popped up through a pop-up structure when used. When the new energy vehicle is used in winter, due to the low temperature outside, if the humidity near the door handle is large, the water will adhere to the handle, which will freeze the handle. If the handle is popped up through the pop-up structure at this time, the resistance is large, and even the handle cannot be popped up, and the pop-up structure is damaged. However, since the winter period is long, the handle cannot be heated at all times in the whole winter, and when the humidity near the handle is low, it is not easy to freeze. In the non-freezing environment, continuously heating the handle will cause waste of heat and energy, and increase the wear and tear of the heating component, which is not conducive to the long-term use of the heating component. SUMMARY
[0003] The present application aims to provide a hidden door handle for a new energy vehicle to solve the problems in the background.
[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a hidden door handle for a new energy vehicle, comprising a hidden handle, wherein the main part of the handle is made of a lightweight and high-strength alloy material to ensure a solid and lightweight structure, the shell is made of a high-temperature-resistant and high-strength engineering plastic with excellent impact resistance to protect the pop-up structure from external environment, and the hidden handle is provided with a temperature rising module, a conduction module, a temperature distribution module, a sensing module and a control module. The temperature rising module is arranged in the middle of the hidden handle to generate heat in the middle part of the handle, so that the heat is more effectively applied to the handle. The conduction module is symmetrically connected to the two sides of the temperature rising module, the temperature distribution module is connected to one end of the conduction module away from the temperature rising module, the heat is quickly circulated through the temperature distribution module and the conduction module, so that the heat is quickly applied to the handle, and the sensing module and the control module are arranged on the two sides of the conduction module respectively to control the opening and closing of the micro-heating sheet through the sensing module and the control module. One end of the hidden handle is provided with a blocking assembly, and the sensing module is connected to the blocking assembly to achieve a certain blocking effect, so that foreign matters are not easy to enter the sensing cavity and the humidity sensor is protected.
[0005] The middle section of the outer side of the hidden handle is provided with a drainage mechanism, so that the hidden handle has a certain drainage function, so that water is not easy to accumulate on the top surface and the outer side of the hidden handle and enter the connection part of the hidden handle and the door.
[0006] Preferably, the temperature rising module comprises a temperature rising cavity and a micro heating sheet, the temperature rising cavity is arranged in the middle section of the hidden handle, the micro heating sheet is arranged in the temperature rising cavity, and the micro heating sheet is fixedly connected with the hidden handle.
[0007] Preferably, the middle section of the upper end and the middle section of the lower end of the micro heating sheet are symmetrically provided with a positioning mechanism, and the two groups of positioning mechanisms clamp the micro heating sheet, the positioning mechanism comprises a positioning piece and a heat passage notch, the positioning piece is fixedly connected with the hidden handle, and the heat passage notch is arranged in the middle section of the side opposite to the two positioning pieces on the same side of the micro heating sheet.
[0008] The positioning mechanism has a U-shaped structure, and the positioning piece is made of heat-conducting material, so that the positioning piece can effectively conduct the heat generated by the micro heating sheet out without accumulating the heat at the part where the positioning piece is attached to the micro heating sheet while playing a clamping function.
[0009] Preferably, the conduction module comprises a heat passage pipeline, the heat passage pipeline is symmetrically arranged on both sides of the inside of the hidden handle, and the heat passage pipeline is in communication with the temperature rising cavity, plays a heat conveying role, and can convey heat to the temperature distribution cavity.
[0010] Preferably, the temperature distribution module comprises a temperature distribution cavity, the temperature distribution cavity is symmetrically arranged on both sides of the inside of the hidden handle, and the temperature distribution cavity is in communication with one end of the heat passage pipeline away from the temperature rising cavity.
[0011] The temperature distribution cavity has a V-shaped structure, receives the heat input by the heat passage pipeline, and fully acts the heat on the hidden handle through its own structure, so as to expand the heating range of the hidden handle itself, improve the temperature rising rate of the hidden handle, and realize rapid ice melting.
[0012] The two groups of temperature distribution cavities are symmetrically provided with a reinforcing rod inside and outside, and the upper and lower ends of the reinforcing rod are fixedly connected with the hidden handle, so as to compensate for the decrease in the strength of the hidden handle due to the arrangement of the temperature distribution cavities without affecting the heat flow property in the temperature distribution cavities.
[0013] Preferably, the sensing module comprises an inside-out communication notch, a sensing cavity and a humidity sensor. The inside-out communication notch is arranged at one end of the outside of the hidden handle and is on the same side as the water drainage mechanism and the impact resistance assembly. The sensing cavity is arranged in the hidden handle and is in communication with the inside-out communication notch. The humidity sensor is installed in the sensing cavity and is fixedly connected with the hidden handle. The humidity sensor senses the humidity outside the hidden handle. When the humidity reaches a preset value, the humidity sensor transmits data to the controller.
[0014] Preferably, the blocking assembly is arranged in the inside-out communication notch and is a filter screen fixedly connected with the hidden handle, which has a certain blocking effect, prevents sundries from entering the sensing cavity and protects the humidity sensor, and ensures that the sensing cavity is in communication with the outside through the inside-out communication notch, which is conducive to the sensing of the humidity outside the hidden handle by the humidity sensor.
[0015] Preferably, the control module comprises a terminal cavity and a controller. The terminal cavity is arranged at one end of the inside of the hidden handle and is on the same side as the sensing cavity. The controller is installed in the terminal cavity and is fixedly connected with the hidden handle. The controller receives data transmitted by the humidity sensor and controls the start of the micro heating sheet.
[0016] Preferably, the water drainage mechanism comprises a water liquid constraint groove, a water liquid conveying channel and a water drainage notch. The water liquid constraint groove is arranged at the middle of the back side of the upper end of the hidden handle. The water liquid conveying channel is linearly arranged at the upper end of the hidden handle. The bottom surface of the water liquid conveying channel is in communication with the bottom surface of the water liquid constraint groove and is in a smooth inclined state. The water drainage notch is linearly arranged on the outside of the hidden handle and penetrates the hidden handle from top to bottom. The upper end of the water drainage notch is in communication with the water liquid conveying channel.
[0017] The X-shaped structure of the hydrophobic notch makes the water flow more quickly to the bottom end of the hydrophobic notch, and the water falling on the top end of the hidden handle flows into the water liquid constraint groove, the water liquid conveying channel and the top end of the hydrophobic notch.
[0018] Compared with the prior art, the beneficial effects of the present application are: when the present application is used, i.e. when the new energy vehicle is used in winter, the humidity sensor senses the humidity near the hidden handle through the inner-outer type communication notch, when the humidity is higher than the preset value, the humidity sensor sends data to the controller, the controller receives the data and controls the micro heating sheet to be turned on, the temperature in the temperature rising cavity is raised, and the heat is distributed in the heat pipe and the temperature distribution cavity, so that the heat is fully circulated in the hidden handle and acts on the hidden handle, the heated parts of the hidden handle are increased, the temperature rising speed and the ice melting rate of the hidden handle are improved, and the cooperation of the sensing module and the control module can determine whether the hidden handle will freeze according to the humidity near the hidden handle, so that the temperature rising module will not be triggered in the humidity environment without freezing, the waste of heat and energy is reduced, the wear and tear of the heating component itself is reduced, and the long-term use of the heating component is facilitated; the water falling on the top end of the hidden handle flows into the water liquid constraint groove, the water liquid conveying channel and the top end of the hydrophobic notch, and the flow of the water liquid, due to the communication of the water liquid conveying channel and the water liquid constraint groove and the water liquid conveying channel and the hydrophobic notch, finally flows out of the hidden handle through the lower end of the hydrophobic notch, which increases the hydrophobic function of the hidden handle, so that the water liquid is not easy to accumulate on the top surface and the outside of the hidden handle and enter the connection part of the hidden handle and the door. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic diagram of a hidden door handle for a new energy vehicle.
[0020] Figure 2 It is a sectional view of a hidden door handle for a new energy vehicle.
[0021] Figure 3 It is a schematic view of an induction module of a hidden door handle for a new energy vehicle.
[0022] In the figure: 1, hidden handle;
[0023] 2, temperature rise module; 21, temperature rise cavity; 22, micro heating sheet; 23, position fixing mechanism; 231, position fixing piece; 232, heat passage notch;
[0024] 3, conduction module; 31, heat passage pipeline;
[0025] 4, temperature distribution module; 41, temperature distribution cavity; 42, reinforced rod piece;
[0026] 5, induction module; 51, inner-outer type communication notch; 52, induction cavity; 53, humidity sensor;
[0027] 6, control module; 61, terminal cavity; 62, controller;
[0028] 7, blocking assembly;
[0029] 8, water drainage mechanism; 81, water liquid constraint groove; 82, water liquid conveying passage; 83, water drainage notch;
[0030] 9, impact resistance assembly. DETAILED DESCRIPTION
[0031] Embodiment 1
[0032] Please refer to Figures 1-3 As shown in the figure, a hidden door handle for a new energy vehicle includes a hidden handle 1. For the hidden handle 1, a main body part thereof adopts a lightweight and high-strength alloy material to ensure that the structure is firm and lightweight. A shell thereof adopts an engineering plastic with high temperature resistance and high strength and has excellent impact resistance to protect the ejection structure from the external environment. The hidden handle 1 has a temperature rise module 2, a conduction module 3, a temperature distribution module 4, an induction module 5, and a control module 6 arranged therein. The temperature rise module 2 is arranged in the middle of the hidden handle 1 to generate heat from the middle part of the hidden handle 1, so that the heat is more effectively applied to the hidden handle 1. The conduction module 3 is symmetrically connected to both sides of the temperature rise module 2. The temperature distribution module 4 is connected to one end of the conduction module 3 away from the temperature rise module 2. Through the temperature distribution module 4 and the conduction module 3, the heat is quickly circulated, so that the heat is quickly applied to the hidden handle 1. The induction module 5 and the control module 6 are arranged on both sides of the conduction module 3, respectively. The micro heating sheet 22 is controlled to be turned on and off through the induction module 5 and the control module 6. One end of the hidden handle 1 is provided with a blocking assembly 7, and the induction module 5 is connected to the blocking assembly 7 to achieve a certain blocking effect, so that foreign matters are not easy to enter the induction cavity 52 and the humidity sensor 53 is protected.
[0033] The middle section of the outer side of the hidden handle 1 is provided with a drainage mechanism 8, so that the hidden handle 1 has a certain drainage function, so that water is not easy to accumulate on the top surface and the outer side of the hidden handle 1 and enter the connection part of the hidden handle 1 and the door. The two ends of the outer side of the hidden handle 1 are symmetrically provided with impact resistance components 9. The upper end and the inner bottom surface of the impact resistance components 9 are both arc-shaped curved surfaces. The impact resistance components 9 are made of elastic rubber material, thereby improving the impact resistance performance and durability of the hidden handle 1.
[0034] Referring to Figure 2 As shown, the temperature rise module 2 includes a temperature rise cavity 21 and a micro heating sheet 22. The temperature rise cavity 21 is arranged in the middle section of the inside of the hidden handle 1. The micro heating sheet 22 is arranged in the temperature rise cavity 21 and is fixedly connected with the hidden handle 1. When the micro heating sheet 22 is turned on, the temperature in the temperature rise cavity 21 is raised, and heat is applied to the middle part of the hidden handle 1 through the temperature rise cavity 21.
[0035] Referring to Figure 2 As shown, the middle part of the upper end and the middle part of the lower end of the micro heating sheet 22 are symmetrically provided with a positioning mechanism 23. The upper and lower two groups of positioning mechanisms 23 clamp the micro heating sheet 22. The positioning mechanism 23 includes a positioning piece 231 and a heat transfer slot 232. The positioning piece 231 is fixedly connected with the hidden handle 1. The middle part of the side opposite to the two positioning pieces 231 on the same side of the micro heating sheet 22 is provided with a heat transfer slot 232. The micro heating sheet 22 is clamped and fixed by the positioning mechanism 23 from the upper end and the lower end, thereby improving the stability of the micro heating sheet 22 in the temperature rise cavity 21, preventing the micro heating sheet 22 from shaking, and protecting the micro heating sheet 22 from being damaged due to the bumping of the vehicle.
[0036] The positioning mechanism 23 has a U-shaped structure, and the positioning piece 231 is made of heat-conducting material. Therefore, the positioning piece 231 can effectively conduct the heat generated by the micro heating sheet 22 out, without accumulating heat at the part where the positioning piece 231 and the micro heating sheet 22 are attached.
[0037] Referring to Figure 2 and Figure 3 As shown, the conduction module 3 includes a heat transfer pipeline 31. The heat transfer pipeline 31 is symmetrically arranged on both sides of the inside of the hidden handle 1 and is in communication with the temperature rise cavity 21, thereby playing a role of heat transfer and being able to transfer heat to the temperature distribution cavity 41.
[0038] Referring to Figure 2 As shown, the temperature distribution module 4 includes a temperature distribution cavity 41. The temperature distribution cavity 41 is symmetrically arranged on both sides of the inside of the hidden handle 1 and is in communication with the end of the heat transfer pipeline 31 away from the temperature rise cavity 21.
[0039] The cloth-warming cavity 41 is in a V-shaped structure, receives the heat input by the heat pipe, and fully acts on the hidden handle 1 through its structure, thereby expanding the heat receiving range of the hidden handle 1, improving the temperature rise rate of the hidden handle 1, and achieving rapid ice melting;
[0040] The two cloth-warming cavities 41 are symmetrically provided with reinforcing rod members 42 at the upper and lower ends, and the upper and lower ends of the reinforcing rod members 42 are fixedly connected with the hidden handle 1, which compensates for the decrease in the strength of the hidden handle 1 due to the opening of the cloth-warming cavities 41 without affecting the heat flow in the cloth-warming cavities 41.
[0041] Reference Figure 2 and Figure 3 As shown in the figures, the sensing module 5 includes an inner-outer type communication notch 51, a sensing cavity 52, and a humidity sensor 53. The inner-outer type communication notch 51 is provided at one end of the outer side of the hidden handle 1, and is on the same side as the water-repellent mechanism 8 and the impact-resistant assembly 9. The sensing cavity 52 is provided in the hidden handle 1, and is in communication with the inner-outer type communication notch 51. The humidity sensor 53 is installed in the sensing cavity 52, and is fixedly connected with the hidden handle 1. The humidity sensor 53 senses the humidity outside the hidden handle 1, and sends data to the controller 62 when the humidity reaches a preset value.
[0042] Reference Figure 1 and Figure 3 As shown in the figures, the blocking assembly 7 is provided in the inner-outer type communication notch 51, and is a filter screen fixedly connected with the hidden handle 1, which has a certain blocking effect, prevents foreign matter from entering the sensing cavity 52, and protects the humidity sensor 53, while ensuring that the sensing cavity 52 is in communication with the outside through the inner-outer type communication notch 51, which is conducive to the sensing of the humidity outside the hidden handle 1 by the humidity sensor 53.
[0043] Reference Figure 3 As shown in the figures, the control module 6 includes a terminal cavity 61 and a controller 62. The terminal cavity 61 is provided at one end of the inside of the hidden handle 1, and the terminal cavity 61 and the sensing cavity 52 are respectively on both sides of one group of heat pipes 31. The controller 62 is installed in the terminal cavity 61, and is fixedly connected with the hidden handle 1. The controller 62 receives the data sent by the humidity sensor 53, and controls the start of the micro-heating sheet 22.
[0044] Reference Figure 1 and Figure 2As shown, the hydrophobic mechanism 8 includes a water liquid constraint groove 81, a water liquid conveying channel 82 and a hydrophobic slot 83. The water liquid constraint groove 81 is arranged at the middle position of the rear side of the upper end of the hidden handle 1. The water liquid conveying channel 82 is linearly arranged at the upper end of the hidden handle 1. The bottom surface of the water liquid conveying channel 82 is connected with the bottom surface of the water liquid constraint groove 81 and is in a smooth inclined state. The hydrophobic slot 83 is linearly arranged at the outer side of the hidden handle 1. The hydrophobic slot 83 penetrates the hidden handle 1 from top to bottom, and the upper end of the hydrophobic slot 83 is connected with the water liquid conveying channel 82.
[0045] The hydrophobic slot 83 is in an X-shaped structure. The structure of the hydrophobic slot 83 itself makes the water liquid flow to the bottom end of the hydrophobic slot 83 more quickly. The water liquid falling on the top end of the hidden handle 1 flows into the water liquid constraint groove 81, the water liquid conveying channel 82 and the top end of the hydrophobic slot 83. Due to the connection between the water liquid conveying channel 82 and the water liquid constraint groove 81 and the connection between the water liquid conveying channel 82 and the hydrophobic slot 83, the water liquid finally flows out of the hidden handle 1 through the lower end of the hydrophobic slot 83. The hidden handle 1 is provided with a certain hydrophobic function, so that the water liquid is not easy to accumulate on the top surface and the outer side of the hidden handle 1 and enter the connection part between the hidden handle 1 and the door. Through the good hydrophobic mechanism 8, the influence of the water liquid on the hidden handle 1 in rainy and snowy weather is reduced, the applicability of the hidden handle 1 of the new energy vehicle in rainy and snowy weather is improved, and due to the X-shaped structure of the hydrophobic slot 83 in the hydrophobic mechanism 8, the hidden handle 1 has a certain anti-skid performance, so that when a user holds the hidden handle 1, the friction between the hidden handle 1 and the user's hand is increased, and the operation fluency of the user on the hidden handle 1 is improved.
[0046] Working principle: when the new energy vehicle is used in winter, the humidity sensor 53 senses the humidity near the hidden handle 1 through the inner and outer communication notch 51, when the humidity is higher than the preset value, the humidity sensor 53 sends data to the controller 62, the controller 62 receives data and controls the micro heating sheet 22 to start, raises the temperature in the temperature rising cavity 21, and makes the heat distribute in the heat pipe 31 and the temperature distribution cavity 41, so that the heat fully circulates in the hidden handle 1 and acts on the hidden handle 1, increases the heated part of the hidden handle 1, improves the temperature rising speed and ice melting rate of the hidden handle 1, and the cooperation of the sensing module 5 and the control module 6 can determine whether the hidden handle 1 will freeze according to the humidity near the hidden handle 1, so that the temperature rising module 2 will not be triggered in the humidity environment without freezing, reducing the waste of heat and energy, and reducing the damage of the heating component itself, which is beneficial to the long-term use of the heating component; the water liquid falling on the top end of the hidden handle 1 will flow into the water liquid constraint groove 81, the water liquid conveying channel 82 and the top end of the water drainage notch 83, and the flow of the water liquid will finally flow out of the hidden handle 1 through the lower end of the water drainage notch 83 due to the communication between the water liquid conveying channel 82 and the water liquid constraint groove 81 and the water liquid conveying channel 82 and the water drainage notch 83, so as to increase the water drainage function of the hidden handle 1, so that the water liquid is not easy to accumulate on the top surface and the outside of the hidden handle 1 and enter the connection part of the hidden handle 1 and the door, through the good water drainage mechanism 8, the influence of the water liquid on the hidden handle 1 in rainy and snowy weather is reduced, and the applicability of the hidden handle 1 of the new energy vehicle in rainy and snowy weather is improved.
[0047] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A concealed door handle for new energy vehicles, comprising a concealed handle (1), characterized in that, The hidden handle (1) is internally provided with a temperature rise module (2), a conduction module (3), a cloth temperature distribution module (4), an induction module (5) and a control module (6), the temperature rise module (2) is arranged in the middle of the hidden handle (1), the conduction module (3) is symmetrically connected to the two sides of the temperature rise module (2), the cloth temperature distribution module (4) is communicated to one end of the conduction module (3) away from the temperature rise module (2), the induction module (5) and the control module (6) are respectively located on the two sides of the conduction module (3), one end of the outer side of the hidden handle (1) is provided with a blocking component (7), and the induction module (5) is communicated with the blocking component (7). The outer side of the hidden handle (1) is provided with a drainage mechanism (8), and the outer sides of the two ends of the hidden handle (1) are symmetrically provided with impact resistance components (9), the upper end and the inner bottom surface of the impact resistance component (9) are both arc curved surfaces, and the impact resistance component (9) is made of elastic rubber material. The temperature rise module (2) comprises a temperature rise cavity (21) and a micro heating sheet (22), the temperature rise cavity (21) is arranged in the middle of the inner side of the hidden handle (1), the micro heating sheet (22) is arranged in the temperature rise cavity (21), and the micro heating sheet (22) is fixedly connected with the hidden handle (1); the conduction module (3) comprises a heat transfer pipeline (31), the heat transfer pipeline (31) is symmetrically arranged on the two sides of the inner side of the hidden handle (1), and the heat transfer pipeline (31) is communicated with the temperature rise cavity (21).
2. The hidden door handle for a new energy vehicle according to claim 1, characterized in that: The upper end and the lower end of the micro heating sheet (22) are symmetrically provided with a position fixing mechanism (23), the upper and lower two groups of position fixing mechanisms (23) clamp the micro heating sheet (22), the position fixing mechanism (23) comprises a position fixing piece (231) and a heat transfer notch (232), the position fixing piece (231) is fixedly connected with the hidden handle (1), and the heat transfer notch (232) is arranged in the middle of the side opposite to the two position fixing pieces (231) on the same side of the micro heating sheet (22); the position fixing mechanism (23) is in U-shaped structure, and the position fixing piece (231) is made of heat conductive material.
3. The hidden door handle for a new energy vehicle according to claim 1, characterized in that: The cloth temperature distribution module (4) comprises a cloth temperature distribution cavity (41), the cloth temperature distribution cavity (41) is symmetrically arranged on the two sides of the inner side of the hidden handle (1), and the cloth temperature distribution cavity (41) is communicated with one end of the heat transfer pipeline (31) away from the temperature rise cavity (21).
4. The hidden door handle for a new energy vehicle according to claim 1, characterized in that: The induction module (5) comprises an inner-outer type communication notch (51), an induction cavity (52) and a humidity sensor (53), the inner-outer type communication notch (51) is arranged at one end of the outer side of the hidden handle (1), and the inner-outer type communication notch (51) is located on the same side of the drainage mechanism (8) and the impact resistance component (9), the induction cavity (52) is arranged in the hidden handle (1), and the induction cavity (52) is communicated with the inner-outer type communication notch (51), the humidity sensor (53) is arranged in the induction cavity (52), and the humidity sensor (53) is fixedly connected with the hidden handle (1).
5. The hidden door handle for a new energy vehicle according to claim 4, characterized in that: The blocking component (7) is arranged in the inner-outer type communication notch (51), and the blocking component (7) is a filter screen, and the filter screen is fixedly connected with the hidden handle (1).
6. The hidden door handle for new energy vehicles according to claim 1 or 4, characterized in that: The control module (6) comprises a terminal cavity (61) and a controller (62), the terminal cavity (61) is arranged at one end of the hidden handle (1), the terminal cavity (61) and the induction cavity (52) are respectively arranged at two sides of the heat pipe (31), the controller (62) is arranged in the terminal cavity (61), and the controller (62) is fixedly connected with the hidden handle (1).
7. The hidden door handle for a new energy vehicle of claim 1, wherein: The water drainage mechanism (8) comprises a water liquid constraint groove (81), a water liquid conveying channel (82) and a water drainage notch (83), the water liquid constraint groove (81) is arranged at the middle position of the rear side of the upper end of the hidden handle (1), the water liquid conveying channel (82) is linearly arranged at the upper end of the hidden handle (1), the bottom surface of the water liquid conveying channel (82) is communicated with the bottom surface of the water liquid constraint groove (81) and is in a smooth inclined surface state, the water drainage notch (83) is linearly arranged at the outer side of the hidden handle (1), the water drainage notch (83) penetrates the hidden handle (1) from top to bottom, and the upper end of the water drainage notch (83) is communicated with the water liquid conveying channel (82); the water drainage notch (83) is in an X-shaped structure.
8. The hidden door handle for a new energy vehicle according to claim 3, characterized in that: The cloth temperature cavity (41) is in a V-shaped structure; the two groups of cloth temperature cavities (41) are symmetrically provided with reinforced rod members (42) from top to bottom, and the upper and lower ends of the reinforced rod members (42) are fixedly connected with the hidden handle (1).
Citation Information
Patent Citations
Hidden vehicle door handle
CN115492475A
Hidden anti-freezing device for vehicle door handle
CN115961839A