Light-emitting devices and clothing processing equipment
By designing a light-emitting device with a fixed plate and base at a preset angle on the garment processing equipment, combined with a cover and movable conductive components, the problem of unsatisfactory irradiation effect of existing devices is solved, realizing wide-area irradiation and safe and reliable ultraviolet light use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO HAIER DRUM WASHING MACHINE CO LTD
- Filing Date
- 2025-08-19
- Publication Date
- 2026-07-17
AI Technical Summary
The existing light-emitting devices, when installed on clothing processing equipment, result in unsatisfactory irradiation effects, especially creating blind spots deep within and on the sides of the clothing processing drum, affecting the lighting effect and the comprehensiveness and effectiveness of ultraviolet sterilization.
Design a light-emitting device in which a fixed plate and a base form a preset angle, a lamp component is mounted on the fixed plate, and a cavity structure is formed by the cover and the base. The lamp component faces the clothing processing drum. Combined with movable conductive components and moving components, it is ensured that the lamp component reliably conducts power in different states and avoids ultraviolet radiation to the user.
It achieves wide-area illumination inside the garment processing drum, reduces blind spots, improves lighting effects, and simplifies the maintenance process by protecting the lamp components with a cover, ensuring that the ultraviolet lamp only turns on when needed, thus avoiding radiation to users.
Smart Images

Figure CN224516639U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of clothing processing equipment, specifically providing a light-emitting device and clothing processing equipment. Background Technology
[0002] In the existing field of clothing processing equipment, washing machines and dryers, as indispensable household appliances in daily life, have always had functionality and user experience as key areas of research and development. To enhance the convenience and hygiene of these machines during operation, many high-end models are equipped with lighting devices, which typically fall into two main categories: internal lighting and ultraviolet (UV) lamps. The internal lighting is designed to provide users with a clear view of the inside of the drum, facilitating observation when clothes are placed in or removed, ensuring accurate operation. The UV lamps, on the other hand, play a crucial role in sterilization and disinfection, effectively destroying the DNA structure of bacteria, viruses, and other microorganisms by emitting specific wavelengths of ultraviolet light, thereby purifying clothes and protecting health.
[0003] However, in practical applications, the more common practice is to install the light inside the sealing gasket between the garment processing drum and the door. This design protects the light-emitting device from water splashes and direct impacts to some extent. Existing light-emitting devices typically have their circuit boards horizontally attached to the base, embedded in a base groove, or parallel to the base. When installing the light-emitting device on garment processing equipment, it is often installed vertically, or simply on the inner wall of the sealing gasket. This results in the light illuminating vertically downwards, leading to poor illumination within the drum. Garments deep inside and on the sides of the drum are more likely to form blind spots, affecting not only the lighting effect but also the comprehensiveness and effectiveness of ultraviolet sterilization.
[0004] In summary, directly installing the existing light-emitting device on clothing processing equipment will result in poor illumination.
[0005] Accordingly, a new technical solution is needed in this field to solve the above problems. Utility Model Content
[0006] The present invention aims to solve the above-mentioned technical problems, namely, to solve the problem that the existing light-emitting device has poor irradiation effect when directly installed on the clothing processing equipment.
[0007] In a first aspect, the present invention provides a light-emitting device, the light-emitting device comprising a connected base and a fixing plate, wherein a lamp component is disposed on the fixing plate, and the fixing plate and the base form a preset angle.
[0008] In the preferred embodiment of the above-mentioned light-emitting device, the fixing plate is a circuit board.
[0009] In the preferred embodiment of the above-mentioned light-emitting device, there are multiple lamp components, and all of the multiple lamp components are disposed on the circuit board.
[0010] In a preferred embodiment of the above-mentioned light-emitting device, the light-emitting device further includes a housing, the housing and the base forming a cavity, and the fixing plate located within the cavity.
[0011] In the preferred embodiment of the above-mentioned light-emitting device, the cover includes a housing and a lampshade, the fixing plate extends from the base to the lampshade area, and the lamp component is located inside the lampshade.
[0012] In the preferred embodiment of the above-mentioned light-emitting device, a fixing component is provided on the housing.
[0013] In a second aspect, the present invention also provides a garment processing device, which includes the light-emitting device described in any one of the preferred technical solutions above.
[0014] In the preferred embodiment of the above-mentioned clothing processing equipment, the clothing processing equipment includes a connected clothing processing drum and a door, a sealing gasket is provided between the clothing processing drum and the door, the light-emitting device partially passes through the sealing gasket, and the light component faces the clothing processing drum.
[0015] In the preferred embodiment of the above-mentioned garment processing equipment, the lamp component includes an ultraviolet lamp, a lighting lamp, and a conductive component. The ultraviolet lamp and the lighting lamp are connected in parallel in the circuit, and the conductive component is movably capable of conducting the ultraviolet lamp and the power supply or the lighting lamp and the power supply.
[0016] In the preferred embodiment of the above-mentioned clothing processing equipment, the clothing processing equipment includes a connected clothing processing cylinder and a door. A first moving member is provided on the door. The conductive member is connected to an elastic member. When the door is closed, the first moving member drives the conductive member to move, causing the elastic member to deform and enabling the conductive member to conduct the ultraviolet lamp and the power supply. When the door is opened, the elastic member causes the conductive member to reset so as to conduct the lighting lamp and the power supply.
[0017] With the above technical solution adopted, the light-emitting device of this utility model includes a connected base and a fixing plate, and a lamp component is provided on the fixing plate. The fixing plate and the base form a preset angle. This utility model sets the lamp bead on the fixing plate, and the fixing plate and the base form a preset angle. Whether the base is installed on the sealing gasket of the clothing processing equipment or passes through the sealing gasket, it can provide illumination over a larger area inside the clothing processing drum, reduce blind spots, and improve the lighting effect.
[0018] Furthermore, the present invention also provides protection for the lamp components and circuit board through the cover, and facilitates the passage of the light-emitting device through the sealing gasket.
[0019] Furthermore, by incorporating a movable conductive component and a first movable component, this invention forcibly disconnects the ultraviolet lamp when the door is opened, thus preventing ultraviolet radiation from reaching the user. Attached Figure Description
[0020] The preferred embodiments of this utility model are described below with reference to the accompanying drawings, in which:
[0021] Figure 1 This is a schematic diagram of the structure of the light-emitting device of this utility model;
[0022] Figure 2 This is a structural schematic diagram of the light-emitting device of this utility model from another perspective;
[0023] Figure 3 yes Figure 2 Sectional view at point AA;
[0024] Figure 4 This is a schematic diagram of the internal structure of the garment processing device according to the first preferred embodiment;
[0025] Figure 5 This is a schematic diagram of the internal structure of the garment processing device according to the second preferred embodiment;
[0026] Figure 6 This is a schematic diagram of a sealing gasket and a light-emitting device according to one embodiment of a garment processing device;
[0027] Figure 7 This is a schematic diagram of the internal structure of the light-emitting device in the first embodiment;
[0028] Figure 8 This is a schematic diagram of the internal structure of the light-emitting device in the second embodiment;
[0029] Figure 9 This is a circuit diagram of a light-emitting device;
[0030] Figure 10 This is a schematic diagram of the linkage structure between the light-emitting device and the door body;
[0031] Figure label:
[0032] 10. Light-emitting device; 101. Base; 102. Cover; 1021. Housing; 1022. Lampshade; 103. Fixing plate; 104. Lamp component; 1041. Lighting lamp; 1042. Ultraviolet lamp; 1043. Blue light lamp; 105. Sealing shell; 106. Wiring harness; 107. Fixing component; 11. Clothing handling tube; 111. Outer tube; 112. Inner tube; 12. Door; 13. Sealing gasket; 14. Control module; 15. Box; 16. First moving component; 17. Conductive component; 18. Elastic component; 19. First plate; 20. Second plate; 21. Third plate; 22. Second moving component; 23. Lever;
[0033] a) Route 1; b) Route 2. Detailed Implementation
[0034] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.
[0035] It should be noted that in the description of this utility model, terms such as "upper," "lower," "left," and "right," indicating directional or positional relationships, are based on the directional or positional relationships shown in the accompanying drawings. These are merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0036] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "connected" should be interpreted broadly. For example, they can refer to a fixed connection or a detachable connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0037] First refer to Figures 1 to 3 The light-emitting device 10 includes a base 101 and a fixing plate 103 connected together. A lamp component 104 is disposed on the fixing plate 103. The fixing plate 103 and the base 101 form a predetermined angle. Preferably, see [reference needed]. Figure 3 ,by Figure 3The direction shown is the reference direction. The base 101 and the fixing plate 103 form a 90° angle. The base 101 is set horizontally to the left and right, and the fixing plate 103 is vertically downward. The lamp component 104 is located on the left side of the fixing plate 103, and the illumination direction is to the left. The left side is the direction inside the cylinder of the clothing processing equipment. When installed on the clothing processing equipment, it can illuminate the inside of the cylinder over a wide area.
[0038] In other embodiments, the included angle between the fixing plate 103 and the reference preset angle is 30°, 60°, or 45°, that is, in Figure 3 Based on this, the fixing plate 103 is rotated to the right by 60°, 30° and 45° respectively. In these embodiments, the lamp component 104 illuminates the inside of the tube in a slightly lower left direction, reducing blind spots, providing uniform illumination and increasing the illumination range. The preset included angle can also be other angles, between 30° and 90°.
[0039] The solution of this utility model, whether the base 101 is installed on the sealing gasket 13 of the clothing processing equipment or the base 101 passes through the sealing gasket 13, can enable a larger area of illumination inside the clothing processing cylinder 11, reduce blind spots, improve lighting effect, and is suitable for direct installation on clothing processing equipment.
[0040] Furthermore, the fixing plate 103 is a circuit board, and there are multiple lamp components 104, all of which are mounted on the circuit board. Each lamp component 104 is a lamp bead, and different lamp beads emit different colors, such as ultraviolet light, white light, and blue light. During production, integrating multiple lamp beads onto a single circuit board allows for shared manufacturing processes such as surface mounting and soldering, reducing equipment changeover time and space requirements, improving production efficiency, and thus lowering the unit cost. Integrated design optimizes material usage and reduces waste. It reduces redundant materials on the circuit board, lowering material costs. Integrating multiple lamp beads onto a single circuit board saves installation space, making the equipment more compact. Traditionally, achieving multiple light colors requires installing multiple lamps or boards of different colors, each requiring individual positioning, fixing, and wiring. A circuit board integrating multiple lamp beads only requires a single installation operation, significantly shortening installation time.
[0041] In other embodiments, the fixing plate 103 is a single plate that serves only to fix the light components. Multiple lamp components 104 are connected to the power supply via different wires, and switching devices are installed on the wires to control the connection and disconnection of the lamp components 104 with the power supply.
[0042] Continue reading Figures 1 to 3 The light-emitting device 10 in this preferred embodiment further includes a housing 102, which and the base 101 form a cavity, and a fixing plate 103 is located within the cavity. Specifically, as Figure 3As shown, the base 101 is located above the cover 102. The area below the base 101 is inside the cover 102, which is a cavity. The fixing plate 103 is vertically located inside the cavity. Of course, it can also be tilted downward from left to right at other preset angles as described above. That is to say, no matter how the fixing plate 103 is tilted, the cover 102 can accommodate it, and the two will not interfere with each other. Based on this, the lamp component 104 and the circuit board or the wires connected to the lamp component 104 are protected, and the light-emitting device 10 can pass through the sealing gasket 13.
[0043] In some other embodiments, the housing 102 may not be included. For example, the fixing plate 103 is not a circuit board. The lamp component 104 is connected to the power supply via a wire. A switching device is provided on the wire to control the connection and disconnection of the lamp component 104 with the power supply. The connection between the lamp component 104 and the wire is sealed with sealant to prevent leakage. In embodiments where the fixing plate 103 is a circuit board, the circuit board may also be sealed with sealant to prevent water splashes from damaging the circuit board.
[0044] Continue reading Figures 1 to 3 ,like Figures 1 to 3 As shown, the housing 102 of this utility model includes a connected housing 1021 and a lampshade 1022. A fixing plate 103 extends from the base 101 to the area of the lampshade 1022, and the lamp component 104 is located inside the lampshade 1022. Specifically, the base 101, housing 1021, and lampshade 1022 are connected in sequence. The base 101 and housing 1021 may not be transparent structures, while the lampshade 1022 is a transparent structure. The fixing plate 103 is connected to the base 101 at the top and then extends downward until a portion of the fixing plate 103 is located inside the lampshade 1022, and the lamp components 104 are all disposed on the portion of the fixing plate 103 located in the lampshade 1022. Therefore, when the lamp bead fails but the circuit board does not, only the lamp cover 1022 needs to be removed. There is no need to replace the circuit board, remove the base 101, or remove the entire light-emitting device 10. Disassembly is simple. In order to improve the sealing, a sealing ring is provided at the connection between the lamp cover 1022 and the housing 1021, and a sealing ring is also provided at the connection between the housing 1021 and the base 101.
[0045] In other embodiments, the cover 102 is an integral structure, that is, the housing 1021 and the lampshade 1022 are integrated and are both transparent.
[0046] Furthermore, such as Figure 3As shown, the light-emitting device 10 also includes a cover 105. The cover 105 and the housing 102 fix the base 101. Specifically, a first annular notch is formed on the lower inner wall of the cover 105, and the first annular notch surrounds the circumference of the cover 105. A second annular notch is formed on the upper inner wall of the housing 102, and the second annular notch surrounds the circumference of the housing 102. After the cover 105 and the housing 102 are connected in place, the base 101 is fixed between the first annular notch and the second annular notch. The base 101 can be fixed entirely between the first annular notch and the second annular notch, or the base 101 can be provided with an annular protrusion in the circumference, and the annular protrusion can be fixed between the first annular notch and the second annular notch. The cover 105 and the housing 102 can be threaded, snap-fit, or fixed by clamps after abutment. Based on this, compared to the solution of sealing the lamp component 104 and circuit board with base 101 and cover 102, the sealing performance is improved, further preventing water from entering the interior of the light-emitting device 10.
[0047] Preferably, the external protective structure consisting of the cover 102, the base 101, and the cover 105 is cylindrical, but it can also be other shapes, such as cuboid. The ends of the lampshade 1022 are spherical or have rounded corners.
[0048] In other embodiments, the external protective structure of the light-emitting device 10 consists only of a sealed base 101 and a cover 102.
[0049] Continue reading Figure 3 ,like Figure 3 As shown, the light-emitting device 10 also includes a wiring harness 106, which passes through the housing 105 and the base 101 and is connected to the circuit board. The wiring harness 106 includes a positive terminal connecting wire, a negative terminal connecting wire, and a control signal line. The positive terminal connecting wire and the negative terminal connecting wire are connected to the circuit board to form a complete power circuit. The control signal line is connected to the circuit board and is responsible for transmitting various control signals to achieve precise control of the light-emitting device 10.
[0050] See next. Figure 4 ,like Figure 4 As shown, the clothing processing device of the first preferred embodiment of this utility model includes the light-emitting device 10 of any of the above embodiments. Taking a drum washing machine as an example, the clothing processing device includes a connected clothing processing drum 11 and a door 12. A sealing gasket 13 is provided between the clothing processing drum 11 and the door 12. The light-emitting device 10 partially passes through the sealing gasket 13, and the lamp component 104 faces the clothing processing drum 11. Specifically, see [reference needed]. Figure 3 and Figure 4A through hole (not labeled in the figure) is provided on the sealing gasket 13 to allow the light-emitting device 10 to pass through. The sealing gasket 13 is an annular sealing gasket 13, with the inner part of the annulus being the interior of the sealing gasket 13 and the outer part being the exterior of the sealing gasket 13. The light-emitting device 10 partially passes through the sealing gasket 13 as follows: when the light-emitting device 10 is installed in place, the lamp cover 1022 is located inside the sealing gasket 13, part of the housing 1021 is located in the through hole, and the base 101 is located outside the sealing gasket 13. Since the lamp cover 1022 is located inside the sealing gasket 13, if the lamp bead fails but the circuit board does not fail, only the lamp cover 1022 needs to be removed. There is no need to replace the circuit board, remove the base 101, or disassemble the entire light-emitting device 10. Disassembly and maintenance are simple.
[0051] Furthermore, the garment processing equipment also includes a control module 14, which is connected to the light-emitting device 10 via a wiring harness 106. The control module 14 is configured to control the operation of the light-emitting device 10.
[0052] In other embodiments, the light-emitting device 10 with an external protective structure consisting only of a base 101 and a housing 102 is used. The base 101 is fixed to the inner wall of the sealing gasket 13. The wiring harness 106 passes through the sealing gasket 13 and the base 101 to connect to the circuit board. The parts of the wiring harness 106 that pass through the base 101 and the parts that pass through the sealing gasket 13 are provided with sealant to improve the sealing performance.
[0053] In other embodiments, the light-emitting device 10 with an external protective structure consists only of a base 101 and a cover 102. When the light-emitting device 10 is installed in place, the base 101 is located inside the through hole of the sealing gasket 13, and the cover 102 is located inside the sealing gasket 13.
[0054] See next. Figure 6 ,like Figure 6 As shown, a fixing member 107 is provided on the housing 1021. The fixing member 107 is preferably a protruding structure, which can be a protruding block or an annular protrusion structure surrounding the housing 1021. When the light-emitting device 10 is installed in place, the protruding block is locked onto the outside of the sealing gasket 13, so that the lampshade 1022 is located inside the sealing gasket 13. To improve the sealing performance of the sealing gasket 13, a sealing ring is provided between the light-emitting device 10 and the through hole of the sealing gasket 13.
[0055] In other embodiments, with Figure 4The direction shown is the reference direction. The axis of the through hole on the sealing gasket 13 where the light-emitting device 10 is installed is tilted to the left from top to bottom. Based on this setting, even if the base 101 and the fixing plate 103 are set vertically, the lamp component 104 on the fixing plate 103 can illuminate the tube over a wider range. Since the through hole is tilted, after the light-emitting device 10 is installed in place, the lamp component 104 is still tilted towards the inside of the tube.
[0056] See next. Figure 7 ,like Figure 7 As shown, the lamp component 104 of the light-emitting device 10 includes an ultraviolet lamp 1042, a lighting lamp 1041 (white light), and a conductive component 17. The ultraviolet lamp 1042 and the lighting lamp 1041 are connected in parallel in the circuit. The conductive component 17 is movably capable of conducting the ultraviolet lamp 1042 to the power supply or the lighting lamp 1041 to the power supply. Specifically, the lighting lamp 1041 is connected to the power supply through the first line a. Figure 7 (Power supply not shown) The ultraviolet lamp 1042 is connected to the power supply through the second line b. Both the first line a and the second line b have breaks. The conductive member 17 can move to the break on the first line a, so that the first line a is connected to the power supply and the lighting lamp 1041 is connected. At this time, the second line b is in the open state. When the conductive member 17 moves to the break on the second line b, the second line b is connected to the power supply and the ultraviolet lamp 1042. At this time, the first line a is in the open state.
[0057] The above embodiments only describe the movement of the conductive member 17 between two positions. In other embodiments, the conductive member 17 can also move to a third position and stay in the third position. In the third position, both the first line a and the second line b are disconnected. This can be a linear motor drive mechanism connected to the conductive member 17. The rotation of the motor will control the conductive member 17 to move to the first position, the second position, and the third position.
[0058] Both circuit a and circuit b include a positive terminal connection and a negative terminal connection to ensure the circuit is complete. Figure 7 Not shown in the middle. Figure 7 The light-emitting device 10 does not lack the necessary factor for the lamp component 104 to light up, merely to illustrate that the movement of the conductive component 17 can selectively conduct one of the first line a and the second line b.
[0059] Continue reading Figure 7An elastic member 18 is provided between the conductive member 17 and the inner wall of the housing 102. The elastic member 18 is preferably a spring, but it can also be a leaf spring or other elastic structure. When the conductive member 17 is subjected to a downward force, the conductive member 17 moves downward and can compress the elastic member 18 until the conductive member 17 moves to the point where the second line b is connected. At this point, the elastic member 18 is compressed to its deepest point. Then the force applied to the conductive member 17 is withdrawn. Under the action of the elastic member 18, the conductive member 17 returns to its original position. When the elastic member 18 returns to its original position, the conductive member 17 connects the first line a.
[0060] In order to make the connection between the conductive component 17 and the circuit more stable, the length of the break on the first circuit a is less than the length of the conductive component 17, and the length of the break on the second circuit b is also less than the length of the conductive component 17.
[0061] Although Figure 7 The elastic member 18 shown in the embodiment is below the conductive member 17. This is not limiting. In other embodiments, the elastic member 18 is disposed above the conductive member 17 and between it and the inner wall of the housing 102.
[0062] See Figure 5 ,like Figure 5 As shown, the garment processing device of the second preferred embodiment of this utility model includes... Figure 7 The light-emitting device 10 in the door 12 has a first moving member 16. When the door 12 is closed, the first moving member 16 moves the conductive member 17, causing the elastic member 18 to deform, thus enabling the conductive member 17 to conduct ultraviolet lamp 1042 and power supply. When the door 12 is open, the elastic member 18 resets the conductive member 17 to conduct lighting lamp 1041 and power supply. For details, see [reference needed]. Figure 5 and Figure 7 When the door 12 is closed, the first moving member 16 applies force to the conductive member 17, causing the conductive member 17 to compress the elastic member 18, and the second line b is connected. When the door 12 is opened, the door 12 will move away from its original position. At this time, the rotation of the door 12 will drive the first moving member 16 to move away as well. The movement of the first moving member 16 causes the force originally applied by the conductive member 17 to disappear, and the elastic member 18 has a tendency to recover its deformation. Its tendency to recover its deformation drives the conductive member 17 to reset, so that the first line a is connected.
[0063] Based on the above structural design, when the door 12 is opened, the ultraviolet lamp 1042 can be forcibly turned off, while the lighting lamp 1041 (which does not emit ultraviolet light) can be lit normally. This prevents the ultraviolet lamp from irradiating the user when the door 12 is open. For example, if sterilization has not yet ended, or if there is a circuit fault in the ultraviolet lamp 1042, the ultraviolet lamp may still be lit when the user opens the door 12, irradiating the user and causing damage to the user's skin. The solution of this utility model can avoid this problem.
[0064] To prevent the UV lamp 1042 from turning on when the door 12 is turned off, and to ensure that it only lights up when the sterilization command is issued, the first line a and the second line b are connected in parallel, and a separate switch (not shown in the figure) is set on the right side of the break point of the second line b. After receiving the signal from the control module 14, the switch can be controlled to open and close, so as to conduct the second line b.
[0065] Further reading Figure 7 ,like Figure 7 As shown, the lamp component 104 also includes a blue light lamp 1043, and the blue light lamp 1043 and the ultraviolet lamp 1042 are arranged in parallel, which can be as follows: Figure 7 The connection circuit of the blue light lamp 1043 is connected to the left side of the second line b break to achieve parallel connection with the ultraviolet lamp 1042, or it can be connected to the power supply separately through the third line, and a switch is set on the third line, which can be controlled by the control module 14.
[0066] The first line a, the second line b, and the third line can be flexible lines or rigid metal conductive components.
[0067] In addition, Figure 7 In the embodiment of the light-emitting device 10, there are three fixing plates 103, namely a first plate 19, a second plate 20, and a third plate 21, and the three plates are distributed in a stepped manner. Based on this, the influence of the second plate 20 and the third plate 21 on the lighting lamp 1041 is reduced, and the influence of the third plate 21 on the ultraviolet lamp 1042 is reduced. Figure 7 In some embodiments, the three plates can be tilted to form a preset angle with the base 101, wherein the base 101 is preferably located at... Figure 7 On the right side of the middle. At this time, all three plates can be connected to the base 101. A clearance structure is reserved on each of the three plates so that the conductive member 17, the elastic member 18 and the first moving member 16 can cooperate normally.
[0068] In other embodiments, the three plates are... Figure 7The three plates are arranged vertically, meaning they are on the same straight line in the vertical direction. In the direction perpendicular to the paper and inward, the three plates have different depths and are staggered to avoid affecting the illumination. The base 101 is preferably in the direction perpendicular to the paper and inward.
[0069] Continue reading Figure 7 ,like Figure 7 As shown, the conductive member 17 is also connected to a second movable member 22, which can pass through the cover 102. The first movable member 16 abuts against the second movable member 22 to apply force to the conductive member 17. When the light-emitting device 10 is installed in place, the second movable member 22 is located outside the sealing gasket 13.
[0070] In some other embodiments, the second moving member 22 is omitted, and the first moving member 16 is able to move into the housing 102 to directly apply force to the conductive member 17.
[0071] The first moving member 16 and the second moving member 22 can be either columnar or sheet-like structures.
[0072] See next. Figure 8 ,and Figure 7 The difference in the embodiment is that the three lamps are arranged in a vertical straight line, and there is only one fixing plate 103 (not shown). All three lamps are mounted on the fixing plate 103. In this case, the direction perpendicular to the paper and outward is the direction in which the lamp shines into the tube, and the direction perpendicular to the paper and inward is the direction away from the tube. If... Figure 8 The embodiment is installed to Figure 5 In the middle, the direction of movement of the second moving member 22 changes to be perpendicular to the plane of the paper. At this time, the left and right movement of the first moving member 16 cannot drive the second moving member 22. To solve this problem, refer to... Figure 10 ,like Figure 10 As shown, the garment handling device also includes a lever 23, the shaft of which can be rotatably connected to the housing 15. (See reference...) Figure 10 and Figure 8 When the door 12 is closed, the first moving component 16 moves to the right, the lever 23 rotates clockwise, driving the second moving component 22 to move, which in turn causes the elastic component 18 to deform. When the door 12 is opened, the first moving component 16 moves to the left, the elastic component 18 drives the second moving component 22 to reset, and the lever 23 rotates counterclockwise.
[0073] See next. Figure 9 ,like Figure 9 As shown, the lighting lamp 1041 and the ultraviolet lamp 1042 are arranged in parallel. The conductive member 17 rotatably connects the lighting lamp 1041 to the power supply, or connects the ultraviolet lamp 1042 to the power supply. The arrangement and working principle of the elastic member 18 and the second movable column are similar to those shown. Figure 7 The same applies here, so I will not repeat it here.
[0074] Furthermore, the garment processing drum 11 of this utility model includes an outer drum 111 and an inner drum 112 fitted inside the outer drum 111, with a sealing gasket 13 provided between the outer drum 111 and the door 12. Of course, this is not limiting; the garment processing drum 11 may also simply include a rotatable drum, and the garment processing device may be a washing machine, a dryer, a washer-dryer combo, or other types of garment processing equipment.
[0075] Since the sealing gasket 13 is usually soft and elastic, the light-emitting device 10 may wobble slightly when the garment processing equipment is working after it is installed on the sealing gasket 13. To avoid this problem, a limiting member is provided on the garment processing tube 11 (outer tube 111). One of the fixing member 107 and the limiting member is a protrusion, and the other is a groove that mates with the protrusion. When the door 12 is closed, the first moving member 16 presses the light-emitting device 10 to tilt, so that the protrusion and the groove mate to limit the movement.
[0076] In other embodiments, the fixing member 107 and the limiting member are snapped together.
[0077] In other embodiments, the fixing member 107 and the limiting member are engaged, and after being engaged, the light-emitting device 10 is tilted.
[0078] In other embodiments, the outer cylinder 111 is provided with a vertical or inclined through hole, which is located between the opening of the inner cylinder 112 and the opening of the outer cylinder 111. The light-emitting device 10 is installed in the vertical or inclined through hole. When installed in place, the lampshade 1022 is located inside the outer cylinder 111, and the light-emitting device 10 illuminates towards the inside of the cylinder.
[0079] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.
Claims
1. A light emitting device, characterized by, The light-emitting device includes a connected base (101) and a fixing plate (103), and a lamp component (104) is provided on the fixing plate (103). The fixing plate (103) and the base (101) form a preset angle.
2. The light emitting device of claim 1, wherein The fixing plate (103) is a circuit board.
3. The light emitting device of claim 2, wherein The number of lamp components (104) is multiple, and all of the lamp components (104) are disposed on the circuit board.
4. The light emitting device of claim 1, wherein The light-emitting device also includes a cover (102), the cover (102) and the base (101) forming a cavity, and the fixing plate (103) located in the cavity.
5. The light emitting device of claim 4, wherein The housing (102) includes a housing (1021) and a lampshade (1022), the fixing plate (103) extends from the base (101) to the area of the lampshade (1022), and the lamp component (104) is located inside the lampshade (1022).
6. The light emitting device of claim 5, wherein A fixing component (107) is provided on the housing (1021). 7.A laundry treating apparatus, characterized by, The garment processing equipment includes the light-emitting device according to any one of claims 1 to 6. 8.The laundry treating apparatus of claim 7, wherein, The garment processing device includes a connected garment processing cylinder (11) and a door (12), with a sealing gasket (13) between the garment processing cylinder (11) and the door (12). The light-emitting device partially passes through the sealing gasket (13), and the lamp component (104) faces the garment processing cylinder (11).
9. The garment processing equipment according to claim 7, characterized in that, The lamp component (104) includes an ultraviolet lamp (1042), a lighting lamp (1041), and a conductive component (17). The ultraviolet lamp (1042) and the lighting lamp (1041) are connected in parallel in the circuit. The conductive component (17) is movably capable of conducting the ultraviolet lamp (1042) to the power source or the lighting lamp (1041) to the power source. 10.The laundry treating apparatus according to claim 9, characterized by, The garment processing device includes a connected garment processing drum (11) and a door (12). A first moving member (16) is provided on the door (12). A conductive member (17) is connected to an elastic member (18). When the door (12) is closed, the first moving member (16) drives the conductive member (17) to move, causing the elastic member (18) to deform, so that the conductive member (17) conducts the ultraviolet lamp (1042) and the power supply. When the door (12) is opened, the elastic member (18) causes the conductive member (17) to reset so as to conduct the lighting lamp (1041) and the power supply.