Tableware and furniture

By layering a textured decorative layer, a light-emitting layer, and a light-blocking layer on the back of a transparent substrate, the problem of insufficient texture layering in tea table decoration is solved, achieving a more significant texture three-dimensionality and multi-functional integration, thus improving the user experience.

CN224522646UActive Publication Date: 2026-07-21YINGTIAN IND (SHENZHEN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YINGTIAN IND (SHENZHEN) CO LTD
Filing Date
2025-08-06
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing textured decorative layers on tea tables lack sufficient depth and three-dimensionality, making it difficult to effectively improve them through traditional techniques and materials.

Method used

A textured decorative layer, a light-emitting layer, and a light-shielding layer are sequentially stacked on the back of a transparent substrate. The light-emitting layer emits light that is concentrated onto the textured decorative layer, while the light-shielding layer controls the light propagation path to enhance texture contrast and three-dimensionality.

Benefits of technology

It enhances the layering and three-dimensionality of the texture decoration layer, while protecting the texture decoration layer, enhancing the texture decoration effect, and improving the user experience through multi-functional module integration.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224522646U_ABST
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Abstract

The application relates to the technical field of furniture, in particular to a table and furniture. The table board of the table comprises at least a transparent base, a texture decoration layer, a light-emitting layer and a light-shielding layer. The texture decoration layer, the light-emitting layer and the light-shielding layer are sequentially arranged on the back of the transparent base, so that the light-emitting layer can directly emit light to the texture decoration layer, and the light-shielding layer can also make the light emitted by the light-emitting layer more concentratedly radiate to the texture decoration layer. The table can not only improve the level and three-dimensionality of the texture decoration layer, but also can see the color change of the whole texture decoration layer on the front of the transparent base, thereby improving the texture decoration effect of the table. In addition, since the texture decoration layer is arranged on the back of the transparent base, the light emitted by the light-emitting layer can be more concentratedly radiated to the texture decoration layer, and the transparent base can also protect the texture decoration layer, thereby further improving the decoration effect of the texture decoration layer.
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Description

Technical Field

[0001] This application relates to the field of furniture technology, and in particular to tables and furniture. Background Technology

[0002] In the decorative craftsmanship of tea tables, textured decorative layers are a key design element for enhancing the product's aesthetic value and cultural connotation. By simulating the annual rings of natural wood, the veins of stone, or other artistic patterns, they aim to give the tea table a unique visual texture and style. However, the actual presentation of current textured decorative layers often falls short of design expectations, exhibiting problems such as blurred texture layers and insufficient three-dimensionality. Utility Model Content

[0003] Based on this, a table and furniture are provided to make the layers and three-dimensionality of the textured decorative layer more obvious, thereby enhancing the textured decorative effect of the table.

[0004] According to one aspect of this application, an embodiment of this application provides a table, the table comprising:

[0005] The tabletop includes a transparent substrate, a textured decorative layer, a light-emitting layer, and a light-shielding layer; the transparent substrate has a front and a back side that are arranged opposite to each other along the thickness direction of the transparent substrate; the textured decorative layer, the light-emitting layer, and the light-shielding layer are sequentially stacked on the back side along the thickness direction of the transparent substrate.

[0006] In one embodiment, the tabletop has a heating zone, and the table also includes an electromagnetic heater; the electromagnetic heater is located in the heating zone and on the side of the light-shielding layer opposite to the transparent substrate.

[0007] In one embodiment, the tabletop also has a touch button area, and the table also includes a capacitive touch module electrically connected to the electromagnetic heater; the capacitive touch module is located in the touch button area and is situated on the side of the light-shielding layer opposite to the transparent substrate.

[0008] In one embodiment, the table also includes a water supply device, which includes a water supply component and a pump component connected to the water supply component, the water supply component being located on one side of the back of the transparent substrate.

[0009] In one embodiment, the water supply device further includes a water storage container, with one end of the water supply component extending into the water storage container.

[0010] In one embodiment, the front side of the transparent substrate is provided with drainage grooves.

[0011] In one embodiment, the table also includes a collection device, with a drain connected to the interior of the collection device.

[0012] In one embodiment, the tabletop has a touch display area, and an opening in the light-shielding layer is provided in the touch display area. The table also includes a touch display screen, which is at least located in the touch display area and on one side of the back of the transparent substrate. The touch display screen has a touch display surface facing the transparent substrate, and the orthographic projection of the touch display surface onto the transparent substrate and the orthographic projection of the opening onto the transparent substrate overlap. And / or

[0013] The tabletop also features a wireless charging area, and the table itself includes a wireless charging module located in the wireless charging area, on the side of the light-blocking layer opposite to the transparent substrate.

[0014] In one embodiment, the transmittance of the textured decorative layer is 30% to 80%; and / or

[0015] The thickness of the textured decorative layer is 0.1 mm to 0.5 mm; and / or

[0016] Texture patterns for the decorative texture layer include wood grain, brushed metal texture, granite texture, leather texture, or fabric texture; and / or

[0017] The textured decorative layer is formed through a preset process, which includes screen printing, transfer printing, letterpress printing, or gravure printing; and / or

[0018] The light-emitting layer is a Mini LED light-emitting layer or a Micro LED light-emitting layer, and the light-emitting layer is configured to emit light of a preset color, including at least one of red, blue, green, and white; and / or

[0019] The light-emitting layer and the capacitive touch module are electrically connected, and the capacitive touch module is used to control the switching of the color emitted by the light-emitting layer.

[0020] According to another aspect of this application, embodiments of this application provide furniture, which includes the table in any of the above embodiments.

[0021] In the aforementioned tables and furniture, the tabletop includes at least a transparent substrate, a textured decorative layer, a light-emitting layer, and a light-blocking layer. By sequentially stacking the textured decorative layer, the light-emitting layer, and the light-blocking layer on the back of the transparent substrate, the light-emitting layer can directly emit light onto the textured decorative layer, and the light-blocking layer also allows the light emitted by the light-emitting layer to be more concentrated on the textured decorative layer. This not only enhances the layering and three-dimensionality of the textured decorative layer but also allows the color changes of the entire textured decorative layer to be seen from the front of the transparent substrate, thereby improving the textured decorative effect of the table. Furthermore, since the textured decorative layer is located on the back of the transparent substrate, it not only facilitates the more concentrated light emitted by the light-emitting layer on the textured decorative layer but also allows the transparent substrate to protect the textured decorative layer, further enhancing its decorative effect. Attached Figure Description

[0022] Figure 1 This is a top view of the table structure in some embodiments of this application.

[0023] Figure 2 This is a side sectional view of a portion of the structure of a table in some embodiments of this application.

[0024] Figure 3 This is a side view of the table structure in some embodiments of this application.

[0025] Figure 4 for Figure 1 A magnified schematic diagram of the structure at point A in the middle.

[0026] Explanation of reference numerals in the attached figures:

[0027] Tableware 100;

[0028] Tabletop 110, transparent substrate 111, front m1, drainage groove 1111, back m2, textured decorative layer 112, light-emitting layer 113, light-shielding layer 114, opening k;

[0029] Electromagnetic heater 120;

[0030] Capacitive touch module 130;

[0031] Water supply device 140, water supply component 141, pump component 142, water storage container 143;

[0032] Collection device 150;

[0033] The touch screen is 160mm in size, and the touch display surface is m3mm in size.

[0034] Wireless charging module 170;

[0035] Frame 180;

[0036] Heating area 1101, touch button area 1102, touch display area 1103, wireless charging area 1104;

[0037] First direction F1. Detailed Implementation

[0038] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0039] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0040] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0041] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0042] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0043] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.

[0044] Figure 1 A top view of the table 100 in some embodiments of this application is shown; Figure 2 The diagram shows a partial side sectional view of the structure of a table 100 in some embodiments of this application; for ease of explanation, only the content related to the embodiments of this application is shown.

[0045] Please refer to Figure 1 and Figure 2 This application provides a table 100, which includes a tabletop 110. The tabletop 110 includes a transparent substrate 111, a textured decorative layer 112, a light-emitting layer 113, and a light-shielding layer 114. The transparent substrate 111 has a front side m1 and a back side m2 disposed opposite to each other along the thickness direction of the transparent substrate 111. The textured decorative layer 112, the light-emitting layer 113, and the light-shielding layer 114 are sequentially stacked on the back side m2 along the thickness direction of the transparent substrate 111.

[0046] Table 100 is a type of appliance used to support items and provide a working surface, widely used in home, office, and commercial settings. For example, table 100 includes a tabletop 110 and a supporting structure. The supporting structure can be table legs, brackets, etc. For example, table 100 can be a tea table, dining table, desk, conference table, etc. In this embodiment, table 100 is a tea table. It can be understood that, considering the usage scenario of a tea table, the textured decorative layer 112 can enhance the cultural atmosphere and visual experience.

[0047] The tabletop 110 is the core load-bearing component of the table 100, directly reflecting the performance and appearance of the table 100.

[0048] The transparent substrate 111 is a plate-like structure with light transmittance. For example, the transparent substrate 111 can be transparent glass. The transparent substrate 111 is the main structure of the tabletop 110, mainly used to support the textured decorative layer 112, the light-emitting layer 113, and the light-shielding layer 114 of the tabletop 110. The transparent substrate 111 has good light transmittance, flatness, and impact resistance. The thickness direction of the transparent substrate 111 is the first direction F1 shown in the figure. That is, the transparent substrate 111 has a front side m1 and a back side m2 arranged opposite to each other along the first direction F1. The front side m1 of the transparent substrate 111 can be understood as the side surface displayed to the user, while the back side m2 of the transparent substrate 111 is the surface opposite to the front side m1 and not displayed to the user. In the embodiment of this application, the first direction F1 is a vertical direction.

[0049] The textured decorative layer 112 is a decorative layer structure covering the back m2 of the transparent substrate 111. By simulating textures (such as wood grain, stone grain, landscape pattern) or designing artistic patterns, it enhances the visual level and cultural connotation of the table 100.

[0050] The luminescent layer 113 is a functional structure separate from the displacement texture decorative layer 112. Light generated by the light source within the luminescent layer 113 can enhance the visual expressiveness of the texture decorative layer 112 or create a specific atmosphere. Different visual effects can be achieved by controlling the spectral characteristics (such as color temperature and brightness), light uniformity, and matching degree with the decorative layer of the light source in the luminescent layer 113. It can be understood that when the light emitted from the luminescent layer 113 passes through the texture decorative layer 112, it can highlight the differences in depth of the texture of the texture decorative layer 112, strengthening the perception of layering. For example, the light from the luminescent layer 113 can pass through the gaps or weak areas of the texture decorative layer 112, making the texture appear more three-dimensional in the contrast of light and shadow, enhancing the atmosphere of the usage scene.

[0051] The light-shielding layer 114 is a layer structure disposed on the side of the light-emitting layer 113 opposite to the textured decorative layer 112. The light-shielding layer 114 is made of opaque or low-transmittance material, and its main function is to regulate the light propagation path, allowing the light emitted from the emitting layer to be projected more concentratedly onto the textured decorative layer 112, enhancing the contrast between light and dark in the texture and highlighting its layers. Furthermore, the light-shielding layer 114 also reduces the risk of light leaking through the back side of the transparent substrate 111.

[0052] Therefore, by sequentially stacking a textured decorative layer 112, a light-emitting layer 113, and a light-shielding layer 114 on the back side m2 of the transparent substrate 111, the light-emitting layer 113 can directly emit light onto the textured decorative layer 112, and the light-shielding layer 114 can also concentrate the light emitted by the light-emitting layer 113 onto the textured decorative layer 112. This not only enhances the layering and three-dimensionality of the textured decorative layer 112, but also allows the color changes of the entire textured decorative layer 112 to be seen from the front side m1 of the transparent substrate 111, thereby improving the textured decorative effect of the tableware 100. In addition, since the textured decorative layer 112 is located on the back side m2 of the transparent substrate 111, it not only facilitates the more concentrated light emitted by the light-emitting layer 113 onto the textured decorative layer 112, but also protects the textured decorative layer 112 with the help of the transparent substrate 111, thereby further enhancing the decorative effect of the textured decorative layer 112.

[0053] It should be noted that, since the textured decorative layer 112 is mostly formed through printing, pressing, or lamination processes, the contrast in depth, the transition between thick and thin lines, and the color gradient are difficult to control precisely due to limitations in material properties and processing precision. Even when some processes attempt to enhance the layering by increasing the depth of the engraving, the limitations of the textured decorative layer 112 material (such as brittle materials being prone to cracking and flexible materials being prone to deformation) lead to a sharp increase in processing difficulty and problems such as rough edges and harsh transitions, which ultimately disrupt the harmony of the overall decoration. More importantly, there is an inherent contradiction between the layering effect of the textured decorative layer 112 and the optical properties of the material itself. When the textured decorative layer 112 uses a material with poor light transmittance, the contrast between light and dark in the texture is difficult to present naturally through light refraction; while when a highly transparent material is used, excessive light penetration will dilute the texture details, further weakening the perception of layering. Therefore, due to the complexity of texture design and the instability of production, it is difficult to improve the sense of layering and three-dimensionality of the textured decorative layer 112.

[0054] Compared to changing the texture, manufacturing process, or material of the textured decorative layer 112, as mentioned earlier, in this embodiment, a corresponding layer structure is set on the back side m2 of the transparent substrate 111, and the textured decorative layer 112, the light-emitting layer 113, and the light-shielding layer 114 are arranged in that order on the back side m2 of the transparent substrate 111. This allows the textured decorative layer 112 to have a better sense of layering and three-dimensionality through the interaction of the transparent substrate 111, the textured decorative layer 112, the light-emitting layer 113, and the light-shielding layer 114. In addition, it can also protect the textured decorative layer 112 and ensure that the color changes of the entire textured decorative layer 112 are visible on the front side m1 of the transparent substrate 111.

[0055] Figure 3The diagram shows a side view of a table 100 in some embodiments of this application; for ease of explanation, only the content related to the embodiments of this application is shown.

[0056] In some embodiments, please continue to refer to Figure 1 and in conjunction with reference Figure 3 The tabletop 110 has a heating zone 1101, and the table 100 also includes an electromagnetic heater 120. The electromagnetic heater 120 is located in the heating zone 1101 and is located on the side of the light-shielding layer 114 away from the transparent substrate 111.

[0057] The heating zone 1101 refers to a specific area on the table 100 specifically designed for heating. It typically integrates a heating device to provide heat to utensils (such as teapots, cups, and tableware) placed in this area to maintain their temperature or meet heating requirements. Taking a tea table as an example, the heating zone 1101 usually corresponds to the tea-brewing area and is sized to fit common teapot specifications. That is, the heating zone 1101 can be used to support and heat teaware. Of course, the heating zone 1101 can also be used to heat other components that require heating; no specific limitations are made here. For example, the portion of the transparent substrate 111 located in the heating zone 1101 can be recessed.

[0058] The electromagnetic heater 120 is a device that uses the principle of electromagnetic induction to achieve heating. Its core components include an electromagnetic coil, a control circuit, and a panel. Compared with traditional resistance heating, the electromagnetic heater 120 has advantages such as fast heating speed, high thermal efficiency, and precise temperature control. Moreover, because the heat is generated directly in the heated appliance itself, the heating zone 1101 panel is less prone to overheating, resulting in better safety.

[0059] Thus, by setting up an electromagnetic heater 120 corresponding to the heating zone 1101, the user's heating needs can be met.

[0060] It should be noted that in the design of table 100, the electromagnetic heater 120 can be designed to be thin and integrated with the tabletop 110, making it suitable for scenarios requiring rapid heating or constant temperature. Corresponding scenarios could include brewing tea or keeping tea warm at a tea table. Additionally, table 100 can also include a controller electrically connected to the electromagnetic heater 120, enabling functions such as temperature adjustment and timing.

[0061] In some embodiments, please continue to refer to Figure 1 and Figure 3 The tabletop 110 also has a touch button area 1102, and the table 100 also includes a capacitive touch module 130 electrically connected to the electromagnetic heater 120. The capacitive touch module 130 is located in the touch button area 1102 and is located on the side of the light-shielding layer 114 opposite to the transparent substrate 111.

[0062] The touch button area 1102 is an interactive module for users to operate. It realizes the input of function commands through touch sensing technology, replacing traditional mechanical buttons. Exemplarily, referring to Figure 4 , Figure 4 as Figure 1 the partial enlarged structural schematic diagram at position A in Figure 4 , on the area of the transparent substrate 111 where the touch button area 1102 is located, graphics, text or symbol markings can be set to define the operation range, and the user can trigger the preset function by touching the corresponding area. For example, the markings set on the area of the transparent substrate 111 where the touch button area 1102 is located can be a power button, a lighting button, a temperature adjustment button, a mode switching button, a heating button, etc. Taking

[0063] as an example, the lighting button can be a "lighting" text marking, the temperature adjustment button can be a "+" and "-" symbol marking, the mode switching button can be an "auto" text marking, and the heating button can be a "heating" text marking.

[0063] The capacitive touch module 130 is the core component to realize the touch function. It works based on the principle of human body electrostatic induction and mainly consists of induction electrodes, a signal processing circuit and a control chip. When the user's finger touches the touch area, a capacitor is formed between the finger and the induction electrode, causing a change in the electrode charge amount. The signal processing circuit captures this change and converts it into an electrical signal, which is parsed by the control chip to trigger corresponding instructions (such as button response, sliding operation, etc.). The capacitive touch module 130 has the advantages of fast response speed, high sensitivity, supporting multi-touch, etc., and has a thin and light structure, which is beneficial to be integrated on the back m2 of the transparent substrate 111 without affecting the appearance integrity of the tableware 100.

[0064] Exemplarily, the capacitive touch module 130 can be connected to the aforementioned controller to realize the linkage of functional modules such as the electromagnetic heater 120 and the light-emitting layer 113. For example, the electro-control touch module can be used to touch and adjust the heating temperature, control the light brightness, etc. on the area of the transparent substrate 111 where the touch button area 1102 is located.

[0065] In this way, by setting the touch button area 1102 and the capacitive touch module 130, the operation process is simplified, and at the same time, the integrity and aesthetics of the surface of the tableware 100 are maintained, and the problems of protrusions and gaps caused by mechanical buttons are improved. At the same time, since the integrity of the front m1 of the transparent substrate 111 is better, it is more beneficial to improve the effect of the texture decoration layer 112.

[0066] In some embodiments, please continue to refer to Figure 1 and Figure 3 , the tableware 100 further includes a water supply device 140. The water supply device 140 includes a water supply member 141 and a pump member 142 connected to the water supply member 141. The water supply member 141 is provided on one side of the back m2 of the transparent substrate 111.

[0067] The water supply device 140 is a systematic structure integrated inside or in conjunction with the table 100, used to realize the storage, transportation and control of water sources, and to provide convenient water supply support for the usage scenario.

[0068] The water supply component 141 is the core actuator in the water supply device 140, directly responsible for the functions of water delivery, diversion, or outlet. It connects to the water storage component and provides water to the user. The water supply component 141 can be a water outlet pipe, a water nozzle, a diversion pipe, a faucet, etc. Figure 3 For example, water supply component 141 can be a pipe with a certain height and bending angle.

[0069] Pump 142 is the power core of the water supply device 140. It generates a pressure difference through mechanical or electronic drive, enabling the active transport of water from the storage component to the target location, thus solving the problems of low efficiency and limited transport distance of natural gravity water supply. For example, pump 142 can be an electric pump (e.g., a miniature submersible pump, peristaltic pump) or a manual pump. In this embodiment, pump 142 is an electric pump. Pump 142 can be connected to a controller illustrated in some of the foregoing embodiments, which controls the start / stop and flow rate regulation of pump 142.

[0070] Taking a tea table as an example (table 100), the water supply device 140 needs to balance concealment and operability. The water storage component can be built into the underside of the tabletop 110 to save space. The water storage component is connected to the water supply component 141 via a pipe (not shown in the figure), and works with the control components (such as the touch button area 1102 shown above) to achieve one-button water dispensing or quantitative water supply. The water outlet of the water supply component 141 can be constructed with an arc-shaped structure, and the water supply component 141 can be installed on the surface or side of the tabletop 110. For example, referring to the reference... Figure 4 The markings set on the transparent substrate 111 in the area of ​​the touch button area 1102 include a water dispensing button, which can be a "water dispensing" text label.

[0071] Thus, by setting up the water supply device 140, the user's water needs can be met. When the table 100 is a tea set, water can be added to the tea set at any time as needed to meet the continuous tea drinking needs.

[0072] In some embodiments, please continue to refer to Figure 3 The water supply device 140 also includes a water storage container 143, with one end of the water supply component 141 extending into the water storage container 143.

[0073] The water storage container 143 is the water storage component illustrated in some of the foregoing embodiments. The water storage container 143 may be replaceable. The water storage container 143 is a device for storing water and is an important component in the water supply system of the table 100 (such as a tea table). Its main function is to continuously provide water to the water supply device 140. For example, the water stored in the water storage container 143 may be pure water.

[0074] The water storage container 143 can be made of food-grade plastic, stainless steel, ceramic, etc. No specific restrictions are imposed. The water storage container 143 can have various shapes and sizes, and can be designed according to the structure and usage requirements of the table 100, such as cuboid, cylindrical, etc. No specific restrictions are imposed.

[0075] Thus, by setting up the water storage container 143, it is possible to further facilitate users' use of water and improve the convenience of user use.

[0076] In some embodiments, please continue to refer to Figure 1 and Figure 3 The transparent substrate 111 has a drainage groove 1111 on its front side m1.

[0077] The drain trough 1111 is a trough-shaped structure on the table 100 used to collect and drain excess liquid, and the drain trough 1111 is connected to the outside. The shape of the drain trough 1111 can be a linear groove or an annular groove, and there is no specific limitation here. For example, Figure 1 and Figure 3 For example, the drain trough 1111 is roughly a square groove. The inner side of the drain trough 1111 can be made of a smooth material surface (such as ceramic glaze, stainless steel, acrylic, etc.), which can reduce liquid residue and facilitate cleaning.

[0078] Thus, by setting up the drain trough 1111, a function that makes it easy for users to pour water can be provided, further improving the convenience of use.

[0079] In some embodiments, please continue to refer to Figure 3 The table 100 also includes a collection device 150, and a drain trough 1111 is connected to the interior of the collection device 150.

[0080] The collection device 150 is a functional structure in the table 100 used for centralized collection, temporary storage, and convenient disposal of waste. The collection device 150 can be a replaceable component and can be placed under the tabletop 110. The shape and size of the collection device 150 are diverse and can be designed according to the structure and usage requirements of the table 100, such as a cuboid or a cylinder. No specific limitations are made here.

[0081] Thus, by setting up the collection device 150, it is possible to further collect the debris (such as tea leaves and fruit peels) or liquid residue (such as tea water and cleaning wastewater) generated during the user's use. This not only reduces the risk of debris or liquid residue scattering and polluting the desktop or environment, but also further improves the convenience of the user's use.

[0082] In some embodiments, please continue to refer to Figures 1 to 3 The tabletop 110 has a touch display area 1103, and the light-shielding layer 114 has an opening k located in the touch display area 1103. The table 100 also includes a touch display screen 160. The touch display screen 160 is at least located in the touch display area 1103 and is located on one side of the back surface m2 of the transparent substrate 111. The touch display screen 160 has a touch display surface m3 facing the transparent substrate 111, and the orthographic projection of the touch display surface m3 on the transparent substrate 111 and the orthographic projection of the opening k on the transparent substrate 111 have an overlapping portion.

[0083] The touch display area 1103 is a specific area on the surface of the table 100 that possesses both display and touch functions. Combined with the touch screen 160, it achieves the dual functions of image display and user touch interaction. The touch display area 1103 can clearly present images, text, or user interfaces, and accurately respond to touch commands (such as clicks, swipes, and zooms). Taking the table 100 as a tea table as an example, the touch display area 1103 can be used to display information such as tea temperature and brewing time. Of course, depending on the functions of the touch screen 160, both the touch display area 1103 and the touch screen 160 can also provide users with functions such as those of a tablet computer. No specific limitations are made here.

[0084] The touch display screen 160 is the core device for realizing the function of the touch display area 1103. It is integrated with a display module (such as an LCD or OLED screen) and a touch module (such as capacitive or resistive touch components), and can be attached to the underside of the tabletop 110. For example, the touch display screen 160 can be attached to the underside of the tabletop 110 using optical adhesive. The touch display surface m3 of the touch display screen 160 corresponds to the touch display area 1103. The display module is responsible for outputting visual information such as images and text, while the touch module generates electrical signals by sensing user touch actions (such as finger touch or pen strokes), processes them, and converts them into operation commands to achieve a WYSIWYG interactive experience.

[0085] Thus, by setting up the touch display area 1103 and the touch display screen 160, the functionality of the table 100 can be further expanded, thereby further improving the user's ease of use and operation. Meanwhile, in this embodiment, as mentioned above, because the transparent substrate 111, textured decorative layer 112, light-emitting layer 113, and light-shielding layer 114 work together, when the touch display screen 160 is off, the front surface m1 of the transparent substrate 111 has a uniform textured appearance. When the touch display screen 160 is on, the image information displayed on the touch display screen 160 can be seen through the tabletop 110, thus creating a visual effect where the tabletop 110 and the touch display screen 160 are integrated.

[0086] In some embodiments, please continue to refer to Figures 1 to 3 The tabletop 110 also has a wireless charging area 1104, and the table 100 also includes a wireless charging module 170, which is located in the wireless charging area 1104 and on the side of the light-shielding layer 114 away from the transparent substrate 111.

[0087] The wireless charging area 1104 is a specific area on the table 100 that integrates wireless charging functionality. A dedicated area can be designated on the front m1 of the transparent substrate 111, for example, by using icons or different materials. The wireless charging area 1104 can provide contactless charging support for devices that support wireless charging (such as mobile phones, smartwatches, wireless headphones, etc.).

[0088] The wireless charging module 170 is the core component for realizing the wireless charging function. It typically consists of a transmitting coil, a control circuit, a power management unit, and a protection circuit, and is integrated under the tabletop 110, corresponding to the wireless charging area 1104. The transmitting coil of the wireless charging module 170 generates an alternating magnetic field under the action of current. When a device that supports wireless charging (with a built-in receiving coil) approaches, the magnetic field induces a current in the receiving coil, which is then converted to charge the device's battery.

[0089] In this way, by setting up a wireless charging area 1104 and a wireless charging module 170, users can start charging simply by placing the device in the area without plugging or unplugging cables. This not only improves the user's convenience but also helps maintain the cleanliness of the table 100.

[0090] In some embodiments, please continue to refer to Figure 2 The light-emitting layer 113 is a Mini LED light-emitting layer or a Micro LED light-emitting layer, and the light-emitting layer 113 is configured to emit light of a preset color, including at least one of red, blue, green and white; and / or, the light-emitting layer 113 is electrically connected to the capacitive touch module 130, and the capacitive touch module 130 is used to control the switching of the color emitted by the light-emitting layer 113.

[0091] The Mini LED light-emitting layer is a planar light source layer composed of Mini LED chips with a size between 50 and 200 micrometers as light-emitting units. The Micro LED light-emitting layer is an ultra-precision light-emitting layer composed of Micro LED chips with a size of less than 50 micrometers. Both Mini LED and Micro LED light-emitting layers can emit a variety of colors.

[0092] By combining the driving circuit within the light-emitting layer 113 with control components, the light intensity of the RGB chip can be adjusted in real time to achieve color gradation, switching, or automatic adaptation to ambient light. For example, it can switch to warm yellow when brewing tea to create a cozy atmosphere; and switch to low-brightness blue light in night mode to not only reduce glare but also alleviate user eye strain. No specific limitations are specified here.

[0093] Of course, the light-emitting layer 113 can be connected to the aforementioned controller, and the controller can control the light-emitting layer 113. In this process, the controller can also be connected to both the light-emitting layer 113 and the capacitive touch module 130 to achieve the corresponding control process. That is to say, as long as the color emitted by the light-emitting layer 113 can be switched, there are no specific restrictions on the specific control method and the configuration of the related control components.

[0094] In some embodiments, please continue to refer to Figure 2 The transmittance of the textured decorative layer 112 is 30% to 80%; and / or, the thickness of the textured decorative layer 112 is 0.1 mm to 0.5 mm; and / or, the texture pattern of the textured decorative layer 112 includes wood grain, brushed metal texture, granite texture, leather texture or fabric texture; and / or, the textured decorative layer 112 is formed by a preset process, which includes screen printing, transfer printing, letterpress printing or gravure printing.

[0095] The transmittance of the textured decorative layer 112 refers to its ability to allow light to pass through, usually expressed as the percentage of incident light transmitted through it. It is a key parameter affecting the appearance of the texture under the action of the emissive layer 113. For example, the transmittance of the textured decorative layer 112 can be 30%, 40%, 50%, 60%, 70%, 75%, or 80%. Of course, the transmittance of the textured decorative layer 112 can be any other value within the range of 30% to 80%.

[0096] For example, the thickness of the textured decorative layer 112 can be 0.1 mm, 0.2 mm, 0.3 mm, 0.4 mm, 0.45 mm, or 0.5 mm. Of course, the thickness of the textured decorative layer 112 can be any other value in the range of 0.1 mm to 0.5 mm.

[0097] The texture pattern of the textured decorative layer 112 refers to the visual texture design presented on its surface. Besides the texture patterns mentioned above, the texture pattern of the textured decorative layer 112 can also be such as landscape patterns, geometric patterns, etc., without specific limitations. Taking the table 100 as a tea table as an example, when the texture pattern of the textured decorative layer 112 is a wood grain pattern, it can be combined with the warm light emitted by the luminous layer 113 to create a rustic atmosphere. When the texture pattern of the textured decorative layer 112 is a geometric pattern, it can be combined with the cool light emitted by the luminous layer 113 to create a modern feel.

[0098] Thus, by controlling the transmittance and thickness of the textured decorative layer 112, the textured decorative layer 112 can be easily manufactured while possessing a certain textured effect. By controlling the texture pattern of the textured decorative layer 112, the table 100 can present different styles. Combined with the use of the light-emitting layer 113, the effect brought by the texture pattern of the textured decorative layer 112 can be further enhanced. By preparing the textured decorative layer 112 through the above-mentioned preset process, the textured decorative layer 112 can play a decorative and concealing role, which is more conducive to the tabletop 110 presenting a one-piece effect and meeting the user's aesthetic needs.

[0099] The following description, in conjunction with the contents illustrated in some of the above embodiments, provides an exemplary account of the manufacturing process of the table 100 provided in the embodiments of this application, but is not intended to limit the scope of the invention.

[0100] For example, in conjunction with reference Figures 1 to 3 The manufacturing process of a table 100 provided in this application embodiment is as follows:

[0101] Step S1: Provide a transparent glass plate as a transparent substrate 111; wherein the thickness of the transparent substrate 111 is 2mm to 6mm;

[0102] Step S2: A textured decorative layer 112 is fabricated on the back side m2 of the transparent substrate 111 using a screen printing process; wherein the thickness of the textured decorative layer 112 is 0.1 mm to 0.5 mm, and the transmittance of the textured decorative layer 112 is 30% to 80%;

[0103] Step S3: Attach the light-emitting layer 113 to the side of the textured decorative layer 112 that is away from the transparent substrate 111; wherein, the light-emitting layer 113 is a Mini LED light-emitting layer or a Micro LED light-emitting layer that can emit colors such as red, blue, green, and white light;

[0104] Step S4: Print a light-shielding layer 114 on the side of the light-emitting layer 113 opposite to the textured decorative layer 112; wherein, the light-shielding layer 114 is partially hollowed out to form an opening k;

[0105] Step S5: Attach the touch display screen 160 to one side of the back surface m2 of the transparent substrate at the position corresponding to the opening k;

[0106] Step S6: Install the electromagnetic heater 120, capacitive touch module 130 and wireless charging module 170 on the side of the light-shielding layer 114 opposite to the textured decorative layer 112 to form the part to be installed.

[0107] Step S7: Install the component to be installed onto frame 180;

[0108] Step S8: Assemble the water supply device 140 and the collection device 150 to form the table 100.

[0109] It should be noted that the above illustrations represent the main steps. For example, the markings on the touch button area 1102 corresponding to the capacitive touch module 130 can be made before or after step S2; no specific limitation is made here. As another example, in step S3, the pre-prepared light-emitting layer 113 is attached. The step of preparing the light-emitting layer 113 can be before step S1, before step S2, or before step S3; no specific limitation is made here. The manufacturing processes of the remaining components are not described in detail here.

[0110] Therefore, the table 100 provided in this application embodiment can include a tabletop 110, an electromagnetic heater 120, a capacitive touch module 130, a water supply device 140, a collection device 150, a touch display screen 160, a wireless charging module 170, and a frame 180. This allows the table 100 to have functions such as displaying textures of different colors, heating, touch display, water addition, drainage, water recycling, and wireless charging, thus providing users with a multifunctional table 100. Furthermore, combining the advantages shown in some of the above embodiments, the tabletop 110 structure in this application embodiment not only has a more layered and three-dimensional textured pattern, but also allows adjustment of the color displayed on the textured decorative layer 112 by switching the color of the light emitted by the light-emitting layer 113, meeting different user needs. With this tabletop 110 structure, the installed touch display screen 160 can not only present a seamless visual effect with the tabletop 110, achieving a hidden effect, but also makes the table 100 more concise and aesthetically pleasing overall. In addition, the interaction between the transparent substrate 111, the textured decorative layer 112, the light-emitting layer 113 and the light-shielding layer 114 also helps to reduce visual fatigue for users.

[0111] It should be noted that, in Figure 1 For ease of explanation and understanding, the boundary areas of the illustrated tabletop 110 are shown. It is understood that the areas may or may not have clear boundaries; no specific restrictions are imposed here. Figure 3 The table 100 shown in the illustration is partially cut in section to illustrate the various modules installed on the back of the tabletop 110, as well as part of the structure of the water supply device 140 and the collection device 150. It can be understood that... Figure 3 In the illustrated frame 180, the frame 180 can be a closed structure or an open structure, without specific restrictions here.

[0112] Based on the same inventive concept, this application also provides a piece of furniture, which includes the table 100 in any of the above embodiments.

[0113] The advantages of the table 100 mentioned above are also present in this furniture, and no specific limitations are made here.

[0114] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0115] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A table, characterized in that, The table includes: The tabletop includes a transparent substrate, a textured decorative layer, a light-emitting layer, and a light-shielding layer; the transparent substrate has a front side and a back side that are disposed opposite to each other along the thickness direction of the transparent substrate; along the thickness direction of the transparent substrate, the textured decorative layer, the light-emitting layer, and the light-shielding layer are sequentially stacked on the back side of the transparent substrate.

2. The table according to claim 1, characterized in that, The tabletop has a heating zone, and the table also includes an electromagnetic heater; the electromagnetic heater is located in the heating zone and on the side of the light-shielding layer opposite to the transparent substrate.

3. The table according to claim 2, characterized in that, The tabletop also has a touch button area, and the table also includes a capacitive touch module electrically connected to the electromagnetic heater; the capacitive touch module is located in the touch button area and is situated on the side of the light-shielding layer opposite to the transparent substrate.

4. The tableware according to any one of claims 1-3, characterized in that, The table also includes a water supply device, which includes a water supply component and a pump connected to the water supply component. The water supply component is located on one side of the back of the transparent substrate.

5. The table according to claim 4, characterized in that, The water supply device also includes a water storage container, with one end of the water supply component extending into the water storage container.

6. The tableware according to any one of claims 1-3, characterized in that, The transparent substrate has drainage grooves on its front side.

7. The table according to claim 6, characterized in that, The table also includes a collection device, and the drain trough is connected to the interior of the collection device.

8. The tableware according to any one of claims 1-3, characterized in that, The tabletop has a touch display area, and the light-shielding layer has an opening located in the touch display area. The table also includes a touch display screen, which is at least located in the touch display area and on one side of the back of the transparent substrate. The touch display screen has a touch display surface facing the transparent substrate, and the orthographic projection of the touch display surface on the transparent substrate and the orthographic projection of the opening on the transparent substrate overlap. The tabletop also has a wireless charging area, and the table also includes a wireless charging module, which is located in the wireless charging area and on the side of the light-shielding layer opposite to the transparent substrate.

9. The tableware according to any one of claims 1-3, characterized in that, The transmittance of the textured decorative layer is 30% to 80%; and / or The thickness of the textured decorative layer is 0.1 mm to 0.5 mm; and / or The textured decorative layer includes wood grain, brushed metal texture, granite texture, leather texture, or fabric texture; and / or The textured decorative layer is formed by a preset process, which includes screen printing, transfer printing, letterpress printing or gravure printing. and / or The light-emitting layer is a Mini LED light-emitting layer or a Micro LED light-emitting layer, and the light-emitting layer is configured to emit light of a preset color, the preset color including at least one of red, blue, green and white.

10. A type of furniture, characterized in that, The furniture includes the tableware as described in any one of claims 1-9.