Door body of clothes care device and clothes care device
By adopting a three-dimensional curved screen structure on the washing machine door, combined with light guide components, silkscreen silver line layers, and optical films, the problem of the existing washing machine display screen being unintuitive is solved, achieving a three-dimensional display effect and improving user experience and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-03-10
AI Technical Summary
Most existing washing machine displays are 2D in shape, making it difficult to provide an intuitive and interactive user interface, which affects user experience and aesthetics.
The three-dimensional curved screen structure is formed by combining light guide components, silkscreen silver wire layers, optical films and circuit boards to achieve a stereoscopic display effect.
Enhance the user's visual experience by providing a more intuitive and vivid interface, thereby improving the overall aesthetics of the garment care device.
Smart Images

Figure CN223983861U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothes care device technical field, concretely relates to a clothes care device's door body and a clothes care device. BACKGROUND
[0002] With the continuous progress of washing machine technology, users pursue high performance and pay attention to aesthetics, and washing machines have been greatly improved in terms of washing function and appearance. Washing machines often have a display screen that can display information related to clothes processing. In order to limit the size of the display screen, the display screen is provided on the door of the washing machine.
[0003] Most washing machine display screens on the market are 2D display screens such as squares and circles, and 3D display screens such as spheres and domes are less common. 3D display screens can provide a more intuitive and interactive user interface, which is an important improvement for user experience of household appliances such as washing machines. How to combine 3D display screens with washing machines is a problem that needs to be solved.
[0004] Therefore, it is necessary to provide a new way to solve the above technical problems. UTILITY MODEL CONTENT
[0005] In view of the deficiencies of the prior art, the purpose of the utility model is to provide a door body of a clothes care device, which realizes a three-dimensional display effect through a three-dimensional curved surface screen structure, effectively enhances user visual experience, and enables users to feel a more intuitive and vivid interface when viewing the control panel of the clothes care device, and improves the overall aesthetics of the clothes care device.
[0006] The utility model embodiment discloses:
[0007] The first purpose of the utility model is to provide a door body of a clothes care device, which comprises:
[0008] A door frame, a door panel, and a display module, wherein the display module comprises:
[0009] A light guide component mounted with the door frame;
[0010] A silk screen silver line layer and an optical film attached to the light guide component;
[0011] A circuit board located on the lower side of the light guide component;
[0012] The door panel is a three-dimensional curved surface panel, and the surface of the light guide component is a three-dimensional curved surface structure that matches the curvature of the door panel;
[0013] When the door panel and the door frame are mounted, the door panel is attached to the optical film to form a three-dimensional curved surface screen structure.
[0014] Preferably, the door frame is formed with an inclined fixing seat, which is inclined upward relative to a horizontal plane, and the display module is installed on the fixing seat.
[0015] Preferably, the fixing seat has an inclination angle of 45°-75°.
[0016] Preferably, the light guide component comprises a light guide plate and a black foam layer; the light guide plate is fixedly installed on the door frame, and the black foam layer is arranged on the upper surface of the light guide plate to provide an installation elastic force of the door panel and the display module and form an anti-light leakage structure between different windows of the light guide component and the optical film.
[0017] Preferably, the optical film comprises printed graphics on the surface of the optical film which is attached to the door panel.
[0018] Preferably, the optical film is a PET film.
[0019] Preferably, the screen-printed silver line layer comprises a silver line circuit, which is located between the screen-printed silver line layer and the optical film.
[0020] Preferably, the screen-printed silver line layer and the optical film are attached to each other by gluing.
[0021] Preferably, the circuit board is provided with a plurality of lamp beads, and the positions of the lamp beads correspond to the printed graphics.
[0022] Preferably, the light guide component is formed with a hollow structure, and the hollow structure corresponds to the positions of the lamp beads when the circuit board is installed on the light guide component.
[0023] Preferably, the door frame is formed with a mounting seat, and the light guide component is fixed on the mounting seat.
[0024] The second object of the utility model is to provide a door body of a clothes care device, which comprises:
[0025] a door frame, a door panel, and a display module, wherein the display module comprises:
[0026] a light guide component, which is installed on the door frame;
[0027] a screen-printed silver line layer and an optical film, which are located on the upper side of the light guide component;
[0028] a circuit board, which is located on the lower side of the light guide component;
[0029] Preferably, the door panel is a three-dimensional curved panel, and the surface of the light guide component is a three-dimensional curved structure which is adapted to the curvature of the door panel.
[0030] The optical film piece, the silk-screen silver line layer and the door plate are integrally injection molded;
[0031] When the door plate is installed with the door frame, the silk-screen silver line layer is attached to the light guide component to form a three-dimensional curved screen structure.
[0032] The third object of the utility model is to provide a preparation method of a door body of a clothes care device, which is used to prepare the door body of the clothes care device as described above, and the preparation method comprises the following steps:
[0033] After the optical film piece and the silk-screen silver line layer are glued, the optical film piece and the silk-screen silver line layer are embedded into a door plate mold cavity;
[0034] The door plate mold is controlled to perform an injection molding process so that the optical film piece, the silk-screen silver line layer and the door plate are combined;
[0035] The door plate is installed with the door frame so that the silk-screen silver line layer is attached to the light guide component installed on the door frame.
[0036] The fourth object of the utility model is to provide a preparation method of a door body of a clothes care device, which is used to prepare the door body of the clothes care device as described above, and the preparation method comprises the following steps:
[0037] The optical film piece is embedded into a front mold of a door plate mold;
[0038] The silk-screen silver line layer is embedded into a rear mold of the door plate mold;
[0039] The door plate mold is controlled to perform an injection molding process so that the optical film piece, the silk-screen silver line layer and the door plate are combined; wherein the optical film piece is located on an outer surface of the door plate, and the silk-screen silver line layer is located on an inner surface of the door plate;
[0040] The door plate is installed with the door frame so that the silk-screen silver line layer is attached to the light guide component installed on the door frame.
[0041] The fifth object of the utility model is to provide a clothes care device, which comprises the door body of the clothes care device as described above.
[0042] Compared with the prior art, the utility model embodiment has the beneficial effects that:
[0043] The utility model provides a door body of clothes care device, through setting up three-dimensional curved screen structure of the light guide component surface with the curvature of the door plate is adapted to, with the door body can be pasted together to form three-dimensional curved screen structure with display module, through three-dimensional curved screen structure realizes stereoscopic display effect, effectively strengthens user visual experience, when the user is viewing the control panel of clothes care device, can feel more intuitive and vivid interface, and promotes the overall aesthetic degree of clothes care device.
[0044] The above description is only a summary of the technical scheme of the present application, in order to more clearly understand the technical means of the present application, and can be implemented according to the content of the specification, the following is the preferred embodiment of the present application and the accompanying drawings are described as follows. The specific embodiment of the present application is given in detail by the following examples and their accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0045] The accompanying drawings described herein are used to provide further understanding of the present application, and form a part of the present application, the schematic embodiments of the present application and the description thereof are used to explain the present application, and do not constitute undue limitation on the present application. In the drawings:
[0046] Figure 1 It is the overall structure diagram of the clothes care device in the embodiment of the present application;
[0047] Figure 2 It is the sectional view of the door body of the clothes care device in the embodiment of the present application;
[0048] Figure 3 It is the explosion view of the door body of the clothes care device in the embodiment of the present application;
[0049] Figure 4 It is the assembly relationship diagram of the door plate and the display module in the embodiment of the present application;
[0050] Figure 5 It is the A place of the clothes care device in the embodiment of the present application; Figure 4
[0051] Figure 6 It is the explosion structure diagram of the display module in the embodiment of the present application;
[0052] Figure 7 It is the hot pressing process diagram of the optical film and the silk screen silver line layer in the embodiment of the present application;
[0053] Figure 8 It is the preparation method flow chart of the door body of the clothes care device in the embodiment 3 of the present application;
[0054] Figure 9 It is the preparation method flow chart of the door body of the clothes care device in the embodiment 4 of the present application.
[0055] In the drawings: 1, clothes care device;
[0056] 10, door body; 11, door frame; 1101, frame body; 1102, frame; 111, fixed seat; 112, fixed column; 12, door panel; 13, display module; 131, light guide component; 1311, light guide plate; 13111, fixed part; 1312, black foam layer; 1313, hollow grid; 132, silk screen silver line layer; 1321, output port; 133, optical film; 134, circuit board; 1341, lamp bead. DETAILED DESCRIPTION
[0057] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0058] In the drawings, for the sake of clarity, the shapes and sizes can be exaggerated, and the same reference numerals will be used to indicate the same or similar components in all the drawings.
[0059] In the following description, words such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, etc. are defined with respect to the configuration shown in the drawings, and in particular, "height" corresponds to the size from top to bottom, "width" corresponds to the size from left to right, and "depth" corresponds to the size from front to back, which are relative concepts, so it is possible that they will change accordingly depending on the different positions and different use states, so these or other orientations should not be used to explain as restrictive terms.
[0060] Terms related to attachment, coupling, etc. (for example, "connected" and "attached") refer to the relationship in which the structures are fixed or attached to each other directly or indirectly through intermediate structures, as well as movable or rigid attachment or relationship, unless otherwise explicitly stated.
[0061] Example 1
[0062] The embodiment of the present application provides a door body 10 of a clothes care device 1, which is combined with Figures 1-7 as shown, comprising:
[0063] a door frame 11; a door panel 12; a display module 13, the display module 13 comprising:
[0064] a light guide component 131, the light guide component 131 being installed with the door frame 11; the light guide component 131 is used to form the support and fixed basis of the display module 13, to ensure the stability and brightness distribution of the display module 13;
[0065] A silkscreened silver line layer 132 and an optical film 133 are sequentially attached to the upper side of the light guide component 131. The silkscreened silver line layer 132 provides identification and positioning of components. Through clear identification and layout, the silkscreened silver line layer 132 helps improve the readability and maintainability of the circuit board 134, reducing repair costs and time. The optical film 133 is used to form a display module 13 with specific patterns and light display effects.
[0066] The circuit board 134 located below the light guide component 131 serves as a substrate and provides circuit connection functionality for the display module 13; in some preferred embodiments, the circuit board 134 is a PCB driver board.
[0067] The door panel 12 is a three-dimensional curved panel, and the surface of the light guide component 131 is a three-dimensional curved surface structure adapted to the curvature of the door panel 12; wherein, the curvature is used to describe the degree of bending of the surface of the display module 13 and the surface of the door panel 12.
[0068] When the door panel 12 is installed with the door frame 11, the door panel 12 is attached to the optical film 133 to form a three-dimensional curved screen structure.
[0069] Among them, three-dimensional curved surfaces include a variety of shapes, such as spheres, ellipses, hyperboloids, etc. These shapes are not only aesthetically pleasing, but also enhance the user's visual experience and interactive feel; different shapes of three-dimensional curved surfaces can be selected according to different design or display requirements.
[0070] In this embodiment, the surface of the light guide component 131 is set as a three-dimensional curved surface structure that matches the curvature of the door panel 12, so that the display module 13 can fit with the door body 10 to form a three-dimensional curved screen structure. The three-dimensional curved screen structure achieves a stereoscopic display effect, effectively enhancing the user's visual experience. When the user views the control panel of the garment care device 1, they can feel a more intuitive and vivid interface, and the overall aesthetics of the garment care device 1 are improved.
[0071] Furthermore, the light guide component 131 can form a support structure for the display module 13, that is, to support the three-dimensional curved screen. This setting simplifies the structure while effectively ensuring the stability of the display module 13 and optimizing the display effect.
[0072] In some embodiments, the door frame 11 has an inclined mounting base 111, which is inclined upward at a certain angle relative to the horizontal plane, and the display module 13 is mounted on the mounting base 111. Further, as... Figure 2As shown, the tilt angle α of the fixing base 111 is 45°-75°; in some preferred embodiments, the tilt angle α of the fixing base is 55°, and when the display module 13 is installed with the fixing base 111 at this tilt angle, it can fit better with the door panel 12.
[0073] Furthermore, the light guide component 131 includes a light guide plate 1311 and a black foam layer 1312; wherein, the light guide plate 1311 is fixedly installed with the door frame 11, and the black foam layer 1312 is disposed on the upper surface of the light guide plate 1311 for bonding with the silkscreen silver line layer 132; specifically, a fixing part 13111 is formed at the edge of the light guide plate 1311, and a fixing seat 111 and a fixing post 112 are formed at corresponding positions on the door frame 11. When the fixing part 13111 and the fixing post 112 are assembled, the light guide plate 1311 is installed with the fixing seat 111; the detachable installation design of the light guide plate 1311 also takes into account the convenience of installation and disassembly, facilitating later maintenance or replacement.
[0074] Furthermore, the elasticity and cushioning properties of the black foam layer 1312 can be used to provide the door panel 12 with the display module 13 during installation.
[0075] In this embodiment, the display module 13 has a symmetrical curvature in the horizontal direction and an asymmetrical curvature in the vertical direction to match the curvature of the door panel 12; specifically, referring to... Figure 3 The X-axis direction is shown, and the lateral direction is the width extension direction of the door panel 12, for reference. Figure 3 The Z-axis direction is shown, and the longitudinal direction is the height extension direction of the door panel 12.
[0076] When the door panel 12 is assembled with the display module 13, the inclined fixing seat 111 provides the display module 13 with a supporting force that adheres to the door panel 12 from the bottom up. At this time, the black foam layer 1312 can provide installation rebound force to improve the fit between the display module 13 and the door panel 12, thereby providing a better visual experience. The installation method in this embodiment can also better match the user's operating angle and fully meet the user's requirements for operating comfort and visual comfort.
[0077] The optical film 133 includes printed graphics. In some embodiments, the printed graphics are located on the back of the optical film 133, that is, between the optical film 133 and the silkscreen silver wire layer 132. In some preferred embodiments, the printed graphics are located on the surface of the optical film 133 that is attached to the door panel 12. Specifically, this embodiment adopts a scheme of printing on the front of the optical film 133. After baking or other curing processes, the ink of the printed graphics adheres tightly to the optical film 133. Through this process, the colors of the printed graphics can be richer, and during human-computer interaction, the printed graphics can present a certain three-dimensional effect under the projection of light, producing a unique visual effect and enhancing the human-computer interaction experience. In some embodiments, the printed graphics are black and white; to further enhance the display effect, in some other preferred embodiments, the printed graphics are in color.
[0078] Furthermore, the optical film 133 is a PET film. The PET film possesses high tensile strength and tear resistance, is not easily damaged during manufacturing, and can withstand significant external forces. This allows the PET film to better adhere to the three-dimensional curved surface structure of the light guide component 131, exhibiting good durability and stability. Simultaneously, the PET film has high transparency and gloss, providing a clear visual effect. In addition, the PET film has good heat resistance, maintaining stable performance under different temperature environments; for example, it can maintain stable performance under the high-temperature washing environment of the garment care device 1.
[0079] In some embodiments, the silkscreen silver line layer 132 includes silver line circuits located between the silkscreen silver line layer 132 and the optical film 133. Specifically, the silkscreen silver line layer 132 includes a silkscreen layer and silver line circuits. The silkscreen layer provides visual identification information for the circuit board 134, including drawing the outline, markings, and parameter information of components, helping engineers to quickly and accurately identify and locate components, thereby facilitating circuit installation, maintenance, and debugging. The silver line circuits are formed by conductive silver paste, i.e., the conductive silver paste is printed on the silkscreen layer to form fine conductive lines. The conductive lines include multiple touch circuits, which are connected to the circuit board 134 through the output port 1321 to accurately transmit touch signals to the processor. In this embodiment, the high conductivity of the silver line circuits ensures fast and accurate signal transmission, improving the response speed and sensitivity of the display module 13. Furthermore, different program names or icons are printed on the PET film printed with color film, and the names or icons correspond to the positions of the touch circuits; when the user presses the name or icon on the PET film, the touch circuit at the corresponding position is triggered, and the signal is transmitted to the circuit board 134 through the silver wire circuit.
[0080] Furthermore, combined Figure 7 As shown in (a), the screen-printed silver wire layer 132 and the optical film 133 are bonded together by adhesive bonding, which simplifies the production process and provides a stable assembly structure. This enables the screen-printed silver wire layer 132 and the optical film 133 to be tightly bonded, enhancing the impact resistance of the display module 13 and improving the overall quality of the display module 13. Furthermore, the silver wire is located between the screen-printed layer and the optical film 133, which can prevent wear of the silver wire.
[0081] Furthermore, combined Figure 7 As shown in (b), after the screen-printed silver wire layer 132 is glued and fixed to the optical film 133, it is placed in a hot-press molding mold. The mold follows the curvature of the three-dimensional curved surface design structure of the display module 13 so that the screen-printed silver wire layer 132 and the optical film 133 can be attached to the surface of the light guide component 131. It should be noted that the curvature of the curvature change should not be too large to avoid breaking the silver wires of the silver wire line during the molding process.
[0082] In some embodiments, combined with Figure 5 and Figure 6 As shown, the circuit board 134 has a plurality of LED beads 1341 distributed thereon. The positions of the LED beads 1341 correspond to the printed graphics and text, and are used to illuminate the printed graphics and text to achieve a backlight effect, thereby enhancing the three-dimensionality of the printed graphics and text, optimizing the display effect and human-computer interaction experience.
[0083] Furthermore, the lamp bead 1341 is an LED lamp bead; by controlling the brightness and color of the LED lamp bead, functions such as brightness adjustment and color adjustment of the display screen can be realized, achieving rich and colorful visual effects, and the LED lamp bead has a stable and reliable light emission effect.
[0084] Furthermore, a hollow structure is formed on the light guide component 131, and when the circuit board 134 is installed with the light guide component 131, the hollow structure corresponds to the position of the lamp bead 1341. Specifically, the lamp bead 1341 is embedded in the hollow structure of the light guide component 131 according to the display requirements to guide the light in a specific direction.
[0085] Furthermore, the light guide plate 1311 has perforated spaces 1313, and the black foam layer 1312 has perforated spaces 1313 similar to those on the light guide plate 1311. When the light guide plate 1311 and the black foam layer 1312 are installed, several perforated spaces 1313 form different windows, and the windows correspond to the positions of different program names or icons on the PET film. Specifically, the circuit board 134 is disposed within the fixing base 111, and the black foam layer 1312 is sandwiched between the silkscreen silver wire layer 132 and the light guide plate 1311. On the one hand, the black foam layer 1312 has good light absorption characteristics. When the light from the LED bead 1341 shines on its surface, most of the light is absorbed, and only a small portion of the light is reflected. This characteristic makes the black foam layer 1312... 2. This effectively reduces unnecessary reflections and glare, thereby improving the directional light guiding performance of the light guide component 131. Light can pass through the multiple windows and the silkscreen silver line layer 132 to illuminate different program names or icons on the PET film, improving the visual effect of the display module 13. On the other hand, the elasticity and cushioning properties of the black foam layer 1312 can support the silkscreen silver line layer 132 and the optical film 133, allowing the silkscreen silver line layer 132 and the optical film 133 to better fit onto the three-dimensional curved surface structure of the light guide component 131, while increasing the fit between the door panel 12 and the display module 13, thereby improving the display effect. In addition, the shock absorption properties of the black foam layer 1312 help reduce the impact of washing vibrations on the display module 13, improving the stability and durability of the entire display module 13.
[0086] Furthermore, combined Figure 2 and Figure 3 As shown, the door frame 11 includes a frame body 1101 and a frame 1102 assembled with the frame body 1101. The frame body 1101 is used to fix the display module 13, and the frame 1102 is used to fix the door panel 12. Specifically, the fixing seat 111 and the fixing post 112 are formed in the frame body 1101 and protrude from the surface of the frame 1102. When the door panel 12 is installed with the frame 1102, the door panel 12 can fit against the surface of the display module 13.
[0087] Example 2
[0088] This utility model embodiment provides a door 10 of a garment care device 1, including:
[0089] Door frame 11; door panel 12; display module 13, wherein the display module 13 includes:
[0090] Light guide component 131, which is installed on the door frame 11;
[0091] The screen-printed silver wire layer 132 and the optical film 133 are located on the upper side of the light guide component 131;
[0092] Circuit board 134 located on the lower side of the light guide component 131;
[0093] The door panel 12 is a three-dimensional curved panel, and the surface of the light guide component 131 is a three-dimensional curved surface structure adapted to the curvature of the door panel 12.
[0094] The optical film 133, the screen-printed silver wire layer 132, and the door panel 12 are integrally injection molded;
[0095] When the door panel 12 is installed with the door frame 11, the silkscreen silver line layer 132 is attached to the light guide component 131 to form a three-dimensional curved screen structure.
[0096] In this embodiment, by integrally injection molding the optical film 133, the silkscreen silver wire layer 132, and the door body 10, the assembly process can be effectively reduced, and the assembly efficiency and effect can be improved.
[0097] In this embodiment, by setting the surface of the light guide component 131 to a three-dimensional curved surface structure that matches the curvature of the door panel 12, the light guide component 131 can be bonded to the optical film 133 and the silkscreen silver wire layer 132 to form a three-dimensional curved screen structure. The three-dimensional curved screen structure achieves a stereoscopic display effect, effectively enhancing the user's visual experience. When the user views the control panel of the garment care device 1, they can feel a more intuitive and vivid interface, and the overall aesthetics of the garment care device 1 are improved.
[0098] Example 3
[0099] This utility model embodiment also provides a method for preparing the door body 10 of the garment care device 1, for preparing the door body 10 of the garment care device 1 as described in Embodiment 2, in combination with Figure 8 As shown, the steps include:
[0100] S31. After bonding the optical film 133 to the screen-printed silver wire layer 132, embed it into the cavity of the door panel mold.
[0101] S32. Control the door panel mold to close and perform the injection molding process so that the optical film 133 and the silk screen silver line layer 132 are combined with the door panel 12;
[0102] S33. Install the door panel 12 and the door frame 11 so that the silkscreen silver line layer 132 is attached to the light guide component 131 installed on the door frame 11.
[0103] The appropriate adhesive can be selected based on the material and performance of the optical film 133 and the screen-printed silver wire layer 132, as well as the usage environment. The adhesive should have good flowability, wetting properties, and curing performance to ensure bonding effectiveness, while maintaining the transparency of the optical film 133 and the conductivity of the screen-printed silver wire layer 132. In some embodiments, the optical film 133 coated with adhesive and the screen-printed silver wire layer 132 are bonded together, and appropriate pressure is applied to ensure a tight bond. Then, the bonded optical film 133 can be placed in an oven for curing treatment to allow the adhesive to fully cure and form a good adhesive layer.
[0104] In some embodiments, the door panel mold has a cavity for forming a door panel 12 of a specific shape and size; the glued optical film 133 and the screen-printed silver wire layer 132 are accurately positioned in a predetermined position in the mold cavity. On the one hand, it is necessary to ensure that the decorative pattern or circuit pattern is in the correct position on the door panel 12, and on the other hand, it is necessary to ensure that the material can flow evenly and fill all parts of the mold cavity during the injection molding process.
[0105] Furthermore, during the injection molding process, molten plastic material is injected into the mold cavity. The plastic material solidifies around the optical film 133 and the silkscreen silver line layer 132 to form the final door panel 12 structure. After injection molding, the door panel 12 needs to be cooled and solidified in the mold. During this process, the plastic material changes from a molten state to a solid state, thereby combining the optical film 133, the silkscreen silver line layer 132, and the door panel 12.
[0106] In this embodiment, the optical film 133, the silkscreen silver line layer 132, and the door panel 12 can be firmly bonded together by insert injection molding to form a strong bonding layer, and can ensure that the optical film 133 and the silkscreen silver line layer 132 maintain a stable bonding state during long-term use. At the same time, the insert injection molding process allows the addition of inserts of various shapes, sizes, and materials during the injection molding process, which also provides more design flexibility to manufacture a unique and aesthetically pleasing door panel 12 structure, that is, to manufacture the three-dimensional curved surface structure of the door panel 12 in this embodiment with high quality.
[0107] Furthermore, the light guide component 131 includes a light guide plate 1311 and a black foam layer 1312; wherein, the light guide plate 1311 is fixedly installed with the door frame 11, and the black foam layer 1312 is disposed on the upper surface of the light guide plate 1311 for bonding with the silkscreened silver line layer 132; wherein, the placement of the black foam layer 1312 enables the light guide component 131 to better bond with the silkscreened silver line layer 132 on the door panel 12.
[0108] Furthermore, during the installation of the door panel 12 and the door frame 11, communication can be achieved simply by inserting the output port 1321 of the silkscreen silver line layer 132 into the terminal of the circuit board 134, which is simple and quick.
[0109] Example 4
[0110] This utility model embodiment also provides a method for preparing the door body 10 of the garment care device 1, for preparing the door body 10 of the garment care device 1 as described in Embodiment 2, in combination with Figure 9 As shown, the steps include:
[0111] S41. Embed the optical film 133 into the front mold of the door panel mold;
[0112] S42. Embed the silkscreen silver line layer 132 into the rear mold of the door panel mold;
[0113] S43. Control the door panel mold to close and perform the injection molding process so that the optical film 133 and the silk screen silver line layer 132 are combined with the door panel 12; wherein, the optical film 133 is located on the outer surface of the door panel 12 and the silk screen silver line layer 132 is located on the inner surface of the door panel 12.
[0114] S44. Install the door panel 12 and the door frame 11 so that the silkscreen silver line layer 132 is attached to the light guide component 131 installed on the door frame 11.
[0115] Specifically, the door panel mold includes a front mold and a rear mold. The front mold includes a front mold core, and the rear mold includes a rear mold core. The front mold core and the rear mold core together form a cavity. The optical film 133 is placed in the front mold core, and the silkscreen silver line layer 132 is placed in the rear mold core. When the front mold and the rear mold of the door panel mold are closed, the optical film 133 can be tightly fitted with the silkscreen silver line layer 132. After the molten plastic is injected into the cavity through the injection port of the door panel mold, the molten plastic will solidify around the optical film 133 and the silkscreen silver line layer 132, thereby firmly bonding the optical film 133, the silkscreen silver line layer 132, and the door panel 12 together.
[0116] In this embodiment, the optical film 133, the silkscreen silver line layer 132, and the door panel 12 can be firmly bonded together by insert injection molding to form a strong bonding layer, and can ensure that the optical film 133 and the silkscreen silver line layer 132 maintain a stable bonding state during long-term use. At the same time, the insert injection molding process allows the addition of inserts of various shapes, sizes, and materials during the injection molding process, which also provides more design flexibility to manufacture a unique and aesthetically pleasing door panel 12 structure, that is, to manufacture the three-dimensional curved surface structure of the door panel 12 in this embodiment with high quality.
[0117] Furthermore, the light guide component 131 includes a light guide plate 1311 and a black foam layer 1312; wherein, the light guide plate 1311 is fixedly installed with the door frame 11, and the black foam layer 1312 is disposed on the upper surface of the light guide plate 1311 for bonding with the silkscreened silver line layer 132; wherein, the placement of the black foam layer 1312 enables the light guide component 131 to better bond with the silkscreened silver line layer 132 on the door panel 12.
[0118] Furthermore, during the installation of the door panel 12 and the door frame 11, communication can be achieved simply by inserting the output port 1321 of the silkscreen silver line layer 132 into the terminal of the circuit board 134, which is simple and quick.
[0119] Example 5
[0120] This utility model embodiment also provides a garment care device 11, including a door 10 as described in Embodiment 1 or Embodiment 2. In some embodiments, the garment care device 11 can be used as a washer-dryer combo, and in other embodiments, it can be used as a dryer.
[0121] In this embodiment, the surface of the light guide component 131 is set as a three-dimensional curved surface structure that matches the curvature of the door panel 12, so that the display module 13 can fit with the door body 10 to form a three-dimensional curved screen structure. The three-dimensional curved screen structure achieves a stereoscopic display effect, effectively enhancing the user's visual experience. When the user views the control panel of the garment care device 1, they can feel a more intuitive and vivid interface, and the overall aesthetics of the garment care device 1 are improved.
[0122] Although the embodiments of this utility model have been disclosed above, they are not limited to the applications listed in the specification and embodiments. They can be applied to various fields suitable for this utility model. For those skilled in the art, other modifications can be easily made. Therefore, without departing from the general concept defined by the claims and their equivalents, this utility model is not limited to the specific details and the illustrations shown and described herein.
Claims
1. A door body of a laundry care device, characterized in that, The door body comprises: a door frame; a door panel; a display module, which comprises: a light guide component mounted with the door frame; a silk-screen silver line layer and an optical film sheet attached to the light guide component; a circuit board located at the lower side of the light guide component; wherein the door panel is a three-dimensional curved panel, and the surface of the light guide component is a three-dimensional curved structure matching the curvature of the door panel; when the door panel is mounted with the door frame, the door panel is attached to the optical film sheet to form a three-dimensional curved screen structure.
2. The door of a clothes care device according to claim 1, characterized in that: The door frame is formed with an inclined fixing seat, which is inclined upward relative to the horizontal plane, and the display module is mounted on the fixing seat.
3. The door of a clothes care device according to claim 2, characterized in that: The inclination angle of the fixing seat is 45°-75°.
4. The door of a laundry treatment device according to any one of the preceding claims, characterized in that: The light guide component comprises a light guide plate and a black foam layer; wherein the light guide plate is fixedly mounted with the door frame; and the black foam layer is arranged on the upper surface of the light guide plate to provide a mounting rebound force for the door panel and the display module and form an anti-light leakage structure between different windows of the light guide component and the optical film sheet.
5. The door of a clothes care device according to claim 1, characterized in that: The optical film sheet comprises printed graphics located on the surface attached to the door panel.
6. The door of the clothes care device of claim 5, wherein: The optical film sheet is a PET film sheet.
7. The door of a clothes care device according to claim 1, characterized in that: The silk-screen silver line layer comprises a silver line circuit located between the silk-screen silver line layer and the optical film sheet.
8. The door of a clothes care device according to claim 7, characterized in that: The silk-screen silver line layer and the optical film sheet are attached to each other by gluing.
9. The door of the clothes care device of claim 5, wherein: The circuit board is distributed with a plurality of lamp beads, and the positions of the lamp beads correspond to the printed graphics.
10. The door of a clothes care device according to claim 9, characterized in that: The light guide component is formed with a hollow structure, and the hollow structure corresponds to the positions of the lamp beads when the circuit board is mounted with the light guide component.
11. The door of a clothes care device as defined in claim 1, wherein: The door frame is formed with a mounting seat, and the light guide component is fixed with the mounting seat.
12. A door body of a laundry care device, characterized in that, The door body comprises: a door frame; a door panel; a display module, which comprises: a light guide component mounted with the door frame; a silk-screen silver line layer and an optical film sheet located at the upper side of the light guide component; a circuit board located at the lower side of the light guide component; wherein the door panel is a three-dimensional curved panel, and the surface of the light guide component is a three-dimensional curved structure matching the curvature of the door panel; the optical film sheet and the silk-screen silver line layer are integrally injection molded with the door panel; when the door panel is mounted with the door frame, the silk-screen silver line layer is attached to the light guide component to form a three-dimensional curved screen structure.
13. A garment care device characterized by, The door body comprises: a door frame; a door panel; a display module, which comprises: a light guide component mounted with the door frame; a silk-screen silver line layer and an optical film sheet located at the upper side of the light guide component; a circuit board located at the lower side of the light guide component; wherein the door panel is a three-dimensional curved panel, and the surface of the light guide component is a three-dimensional curved structure matching the curvature of the door panel; the optical film sheet and the silk-screen silver line layer are integrally injection molded with the door panel; when the door panel is mounted with the door frame, the silk-screen silver line layer is attached to the light guide component to form a three-dimensional curved screen structure. The door body comprises: a door frame; a door panel; a display module, which comprises: a light guide component mounted with the door frame; a silk-screen silver line layer and an optical film sheet located at the upper side of the light guide component; a circuit board located at the lower side of the light guide component; wherein the door panel is a three-dimensional curved panel, and the surface of the light guide component is a three-dimensional curved structure matching the curvature of the door panel; the optical film sheet and the silk-screen silver line layer are integrally injection molded with the door panel; when the door panel is mounted with the door frame, the silk-screen silver line layer is attached to the light guide component to form a three-dimensional curved screen structure.