Electronic device
By using the target body and target layer composed of the first material fragment in the electronic device housing, combined with multiple visual effects, the problem of single style of the existing electronic product housing is solved, and a personalized appearance and environmentally friendly and cost-effective effect is achieved.
Patent Information
- Application Number
- CN202421794092.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The style of existing electronic product shells is too single to meet users' pursuit of personalized appearance.
By using the target body and the target layer composed of the first material fragment, combining different colors, brightness, morphology and optical visual effects, an electronic device shell with multiple visual effects is formed.
It realizes the diversified appearance of electronic equipment shells, meets users' needs for personalized appearance, and at the same time, through the reuse of materials, environmentally friendly and low-cost effects are achieved.
Smart Images

Figure CN222921207U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of electronic devices, and particularly to an electronic device. Background Art
[0002] With the development of the electronic product industry, fiber materials have been put into the development and use of the casings of electronic products such as mobile phones and laptop computers. However, the appearance styles processed from fiber materials are relatively single. Relying on the gloss difference of black fiber sheets or presenting their own texture patterns cannot meet the users' pursuit of personalized product appearance styles. Utility Model Content
[0003] The embodiments of this application provide the following technical solutions:
[0004] An electronic device having a first housing, the first housing including:
[0005] A target body composed of fragments of a first material, the visual effect characterized by the first material being a first effect, and the distribution of the fragments of the first material in the first housing being irregular;
[0006] A target layer including a first sub-layer, the first sub-layer being disposed on part or all of the outer surface of the target body, and / or,
[0007] A second sub-layer for carrying the target body;
[0008] The visual effect characterized by the target layer is a second effect, and the first effect is different from the second effect.
[0009] In some embodiments, the first housing is forged after bonding the fragments of the first material, the first material being from the structural parts of other devices, and the electronic device includes at least one of the following:
[0010] The first effect includes a first color visual effect, the second effect includes a second color visual effect, and the first color visual effect is different from the second color visual effect;
[0011] The first effect includes a first brightness visual effect, the second effect includes a second brightness visual effect, and the first brightness visual effect is different from the second brightness visual effect;
[0012] The first effect further includes a first depth perception visual effect, the second effect further includes a second depth perception visual effect, and the first depth perception visual effect is different from the second depth perception visual effect;
[0013] The first effect further includes a first morphological visual effect, and the second effect further includes a second morphological visual effect, and the first morphological visual effect is different from the second morphological visual effect;
[0014] The first effect further includes a first optical visual effect, and the second effect further includes a second optical visual effect, and the first optical visual effect is different from the second optical visual effect.
[0015] In some embodiments, the electronic device includes at least one of the following:
[0016] Both the first color visual effect and the second color visual effect include multiple color visual effects, and the second color visual effect is completely different from or partially the same as the first color visual effect;
[0017] Both the first brightness visual effect and the second brightness visual effect include multiple brightness visual effects, and the second brightness visual effect is completely different from or partially the same as the first brightness visual effect;
[0018] Both the first depth perception visual effect and the second depth perception visual effect include multiple depth perception visual effects, and the second depth perception visual effect is completely different from or partially the same as the first depth perception visual effect;
[0019] Both the first morphological visual effect and the second morphological visual effect include multiple morphological visual effects, and the second morphological visual effect is completely different from or partially the same as the first morphological visual effect;
[0020] Both the first optical visual effect and the second optical visual effect include multiple optical visual effects, and the second optical visual effect is completely different from or partially the same as the first optical visual effect.
[0021] In some embodiments, the electronic device further includes: a substrate layer for carrying the target body and the target layer;
[0022] After the substrate layer is formed, a third color visual effect is formed on a part of the outer surface of the substrate layer, the first housing and the target layer;
[0023] The target body and the target layer are stacked on the outer surface of the substrate layer;
[0024] The first color visual effect of the first effect is the same as or similar to the third color visual effect; and / or, the second color visual effect of the second effect is the same as or similar to the third color visual effect.
[0025] In some embodiments, the substrate layer includes one or more transverse layers and one or more longitudinal layers, and the transverse layers and the longitudinal layers are stacked;
[0026] The third color visual effect is formed on the transverse layer or the longitudinal layer provided on the top layer of the substrate layer.
[0027] In some embodiments, the first sub-layer is provided on the entire outer surface of the first housing, and the first sub-layer has a first functional layer, and the first functional layer has the second effect. The first functional layer is attached to the outer surface of the first housing to protect the first housing;
[0028] Wherein, the first sub-layer has light transmissivity so that the first effect of the first material can be presented through the first sub-layer.
[0029] In some embodiments, the first functional layer includes three first sub-functional layers, and the three first sub-functional layers are stacked in sequence to improve the durability of the first sub-layer, and at least one of them has the second effect.
[0030] In some embodiments, the first sub-layer is provided on a part of the outer surface of the first housing;
[0031] The first sub-layer has a second functional layer, and the second functional layer has the second effect;
[0032] The second functional layer is composed of fragments of a second material, and the distribution of the fragments of the second material in the target layer is irregular.
[0033] In some embodiments, the second sub-layer is provided on the inner surface of the first housing, and the second sub-layer is used to support the fragments of the first material.
[0034] In some embodiments, it further includes: a first body, the first body includes the first housing, and the first housing is provided on the first body;
[0035] A second body, the second body includes a second housing, the second housing is provided on the second body, and the property of the material forming the second housing is the same as the property of the first material;
[0036] Wherein, the first body and the second body are connected by a rotating device so that the electronic device can switch between a first posture and a second posture;
[0037] In the first posture, the first body faces the second body, and in the second posture, the first body does not face the second body. Description of the Drawings
[0038] By reading the following detailed description with reference to the accompanying drawings, the above and other objects, features, and advantages of the exemplary embodiments of the present application will become readily understood. In the drawings, several embodiments of the present application are shown in an exemplary rather than restrictive manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:
[0039] Figure 1 A schematic structural diagram of the first housing is schematically shown;
[0040] Figure 2 is schematically shown Figure 1 exploded view of;
[0041] Figure 3 A schematic diagram showing the first sub-layer stacked on the target body is schematically shown;
[0042] Figure 4 A schematic diagram showing another first sub-layer stacked on the target body is schematically shown;
[0043] Figure 5 A schematic diagram showing still another first sub-layer stacked on the target body is schematically shown;
[0044] Figure 6 A schematic diagram showing the target body disposed on the second sub-layer is schematically shown;
[0045] Figure 7 A schematic structural diagram of the second sub-layer is schematically shown;
[0046] Figure 8 A schematic structural diagram of another second sub-layer is schematically shown;
[0047] Figure 9 A schematic structural diagram of the electronic device is schematically shown.
[0048] Explanation of the reference numerals in the drawings:
[0049] 00. First housing; 1. Target body; 2. Target layer; 21. First sub-layer; 22. Second sub-layer; 221. Base layer; 222. Overlay layer; 2221. Windowing structure; 3. Substrate layer; 31. Transverse layer; 32. Longitudinal layer; 4. First body; 5. Second body. Detailed implementation manners
[0050] The exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although the exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided so that the present disclosure can be more thoroughly understood and the scope of the present disclosure can be fully conveyed to those skilled in the art.
[0051] It should be noted that, unless otherwise specified, the technical terms or scientific terms used in this application shall have the ordinary meanings understood by those skilled in the art to which this application pertains.
[0052] Specific embodiments of this application will be described hereinafter with reference to the accompanying drawings; however, it should be understood that the described embodiments are merely examples of this application, and it can be implemented in various ways. Well-known and / or repetitive functions and structures are not described in detail to avoid obscuring this application with unnecessary or redundant details. Therefore, the specific structural and functional details claimed herein are not intended to be limiting, but rather are merely used as a basis and representative basis for the claims to teach those skilled in the art to use this application in substantially any suitable detailed structure in a variety of ways.
[0053] This specification may use the phrase "in one embodiment", "in another embodiment", "in yet another embodiment", or "in other embodiments", which may each refer to one or more of the same or different embodiments according to this application.
[0054] The appearance styles of electronic products in the related art are too single and cannot meet the personalized pursuits of users. In view of the above technical problems, this application provides an electronic device, aiming to increase the various visual effects presented by the product, so as to meet the personalized pursuits of users for the appearance styles of the product.
[0055] The embodiments of this application can be applied to electronic devices. This application does not limit the product form of the electronic device, and may include but is not limited to smart phones, tablet computers, personal computers (PCs), desktop computers, servers, televisions, set-top boxes, and even power banks, watches, smart glasses, etc., which can be selected according to application requirements. In addition, the embodiments of this application can also be applied to other non-electronic devices, such as some furniture, decorative items, etc.
[0056] As Figure 8 shown, the electronic device proposed in this application has a first housing 00. As Figure 8 or Figure 1 shown, the first housing 00 may include a target body 1 composed of fragments of a first material. The visual effect characterized by the first material may be a first effect, and the distribution of the fragments of the first material in the first housing 00 may be irregular;
[0057] A target layer 2, which may include a first sub-layer 21. The first sub-layer 21 may be disposed on part or all of the outer surface of the target body 1, and / or a second sub-layer 22. The second sub-layer 22 may be used to carry the target body 1; the visual effect characterized by the target layer 2 may be a second effect, and the first effect is different from the second effect.
[0058] Among them, the product form of this application for the electronic device is not limited, and may include but is not limited to smart phones, tablet computers, personal computers, desktop computers, televisions, set-top boxes, and even power banks, watches, smart glasses, etc., which can be selected according to application requirements.
[0059] For example, the first housing 00 can be the A shell, B shell, C shell or D shell of a laptop computer, the housing of a desktop computer main unit, the housing of a display, the back shell of a smart phone, the back shell of a tablet computer, the housing of a television, set-top box, power bank, the housing of a watch, or the frame of smart glasses. However, this application is not limited thereto, that is, those skilled in the art can adjust or set according to specific requirements, etc.
[0060] Among them, the first material can be a fiber material, and the fiber material can be carbon fiber, glass fiber, aramid fiber, natural fiber, etc.; the first material can also be the aircraft seat, aircraft plate in the aviation field, the carriage plate in the railway field, etc., and can also be structural parts from other devices, such as carriage connection structures, aircraft seat supports, etc. In the case where these materials are replaced or no longer used, the first housing 00 is reprocessed using these discarded materials, achieving the reuse of the first material, which is not only low in cost but also can digest some discarded objects, playing a good environmental protection role.
[0061] The target body 1 can be formed by the scattered arrangement of several fragments of the first material, which can be fragments of carbon fiber, glass fiber, aramid fiber, natural fiber, or fragments of aircraft seats, aircraft plates, carriage plates in the railway field, etc.
[0062] The fragments of the first material in the first housing 00 can be irregularly distributed. For example, they can be distributed in a concentrated manner, gathered in the middle part or corner part of the first housing 00; they can also be evenly dispersed on the end face of the first housing 00; or randomly dispersed on the end face of the first housing 00.
[0063] Among them, the color, brightness, shape, depth perception, and optical effects of the fragments of the first material constituting the target body 1 can be randomly set, and their positions in the target body 1 can also be randomly distributed. The random setting or random distribution can also make the target body 1 unique.
[0064] However, this application is not limited thereto. The color, brightness, shape, depth perception, and optical effects of the fragments of the first material constituting the target body 1 can also be set regularly, and their positions in the target body 1 can also be randomly distributed, that is, those skilled in the art can adjust or set according to specific requirements, etc.
[0065] The target layer 2 can be a layered structure that is used to completely or partially cover the target body 1 and has a different color, brightness, shape, depth perception, and optical effect from the target body 1, or it can be a layered structure that bears the target body 1.
[0066] Among them, the first sub-layer 21 can be used to cover the target body 1, prevent the fragments of the first material from being directly exposed, improve the service durability of the first housing 00, and also enhance the aesthetic appearance.
[0067] The first sub-layer 21 can be a paint layer, and the paint layer can be applied to the upper layer of the target body 1 by spraying, brushing, dipping, etc. The first sub-layer 21 can also be a plating layer, and the plating layer can be applied to the upper layer of the target body 1 by electroplating, hot dip plating, etc.
[0068] The first sub-layer 21 can also be a thermoplastic polymer film sheet, such as a polyimide film sheet, a polyester film sheet, a polyvinylidene fluoride film sheet, etc. The above film sheets have the characteristics of softening when heated and hardening when cooled, and are easy to process and form. Among them, the thermoplastic polymer film sheet can be a whole sheet that completely covers the fragments of the first material that make up the target body 1; the thermoplastic polymer film sheet can also be fragments that partially cover the fragments of the first material that make up the target body 1. However, the present application is not limited to this, that is, those skilled in the art can adjust or set according to specific needs. The above situation is only an exemplary description of the forms in which the first sub-layer 21 in the present application can be applied, but is not limited to the situations described in the above embodiments.
[0069] The second sub-layer 22 can have material characteristics of high strength, rigid heat resistance, and impact resistance, and is applied to the first housing 00 to support the fragments of the first material used to form the target body 1. The material of the second sub-layer 22 can be a polycarbonate carrier film, a polyimide carrier film, a polyether ether ketone film, a polysulfone film, etc. However, the present application is not limited to this, that is, those skilled in the art can adjust or set according to specific needs. The above situation is only an exemplary description of the forms in which the second sub-layer 22 in the present application can be applied, but is not limited to the situations described in the above embodiments.
[0070] Furthermore, in order to improve the uniqueness of the housing and enrich its appearance style, the first sub-layer 21 of the target layer 2 can be disposed on a part of the outer surface of the target body 1 to partially or completely cover the fragments of the first material;
[0071] Among them, as Figure 3 shown, in one embodiment, when the first sub-layer 21 stacks the fragments of the first material in a staggered manner to achieve partial coverage, the first sub-layer 21 can have a certain light transmittance, so that the first effect of the first material fragments can be presented on the first sub-layer 21. At this time, the visual effects represented by the first housing 00 can include the first effect, the second effect, and the overlapping effect of the first effect and the second effect.
[0072] As Figure 4 shown, the first sub-layer 21 may also not have light transmittance, partially covering the first material fragments, so that the visual effect represented by the first housing 00 only includes the first effect and the second effect sequentially arranged from bottom to top.
[0073] In another embodiment, as Figure 5 shown, when the first sub-layer 21 stacks the fragments of the first material to achieve full coverage, the first sub-layer 21 has a certain light transmittance, which can make the first effect of the first material fragments presented on the first sub-layer 21. At this time, the visual effect represented by the first housing 00 can be, from bottom to top, the overlapping effect of the first effect and the second effect.
[0074] Among them, different light transmittances will affect the visual effect represented by the first housing 00. Therefore, the light transmittance of the first sub-layer 21 can be determined based on the appearance requirements of the first housing 00.
[0075] On this basis, as Figures 3 - 5 shown, the target layer 2 may further include a second sub-layer 22, and the target body 1 can be arranged on the second sub-layer 22. At this time, the second effect presented by the second sub-layer 22 can be the same as or different from the second effect presented by the first sub-layer 21.
[0076] Or, in yet another embodiment, as Figure 6 shown, a way different from the above two setting methods is that the target layer 2 only includes the second sub-layer 22, and the target body 1 is arranged on the second sub-layer 22. At this time, the visual effect represented by the first housing 00 can be the second effect and the first effect from bottom to top. The above embodiments can exist alone or in combination.
[0077] It should be noted that the visual effects of the first effect and the second effect can be phenomena that affect visual perception, and can be the perception results and corresponding psychological and physiological reactions generated in the human brain by light passing through the visual system (including the eyes and the brain).
[0078] The visual effects of the first effect and the second effect can include: color (hue, saturation, etc.), light and dark (contrast, brightness, etc.), depth perception (perception of distance and depth, such as stereoscopic vision, etc.), shape and contour, texture and pattern, halo and scattering (visual effects generated when light propagates in an inhomogeneous medium), etc.
[0079] In this application, a housing with various visual effects is formed by matching the target body 1 with different visual effects and the target layer 2, which can make the appearance of the electronic device housing more diversified. Thus, it brings more possible visual experiences to users and meets the users' pursuit of personalization of the product appearance style.
[0080] In some embodiments, the first housing 00 can be forged by bonding fragments of a first material, and the first material can be from the structural components of other devices. The electronic device can include at least one of the following:
[0081] The first effect can include a first color visual effect, the second effect can include a second color visual effect, and the first color visual effect and the second color visual effect can be different; the first effect can include a first brightness visual effect, the second effect can include a second brightness visual effect, and the first brightness visual effect and the second brightness visual effect can be different;
[0082] The first effect can further include a first depth perception visual effect, the second effect can further include a second depth perception visual effect, and the first depth perception visual effect and the second depth perception visual effect can be different;
[0083] The first effect can further include a first form visual effect, the second effect can further include a second form visual effect, and the first form visual effect and the second form visual effect can be different;
[0084] The first effect can further include a first optical visual effect, the second effect can further include a second optical visual effect, and the first optical visual effect and the second optical visual effect can be different. Among them, the first color visual effect and the second color visual effect can be understood as various psychological and physiological reactions of colors to the human visual perception system, which involves how colors are received by the eyes, how the brain interprets these signals, and how these interpretations affect our emotions, behaviors, and cognitions.
[0085] The first color visual effect and the second color visual effect can be color constancy, color contrast, color visibility, temperature effect of color, visual stimulus of color, attention attraction of color, and physiological effect of color.
[0086] For example, if the color constancy of the first color visual effect is shown as grayish black, the color constancy of the second color visual effect can be shown as one or more of the three colors of red, yellow, or blue different from grayish black, which can increase the colorfulness presented by the first housing 00.
[0087] Among them, the first brightness visual effect and the second brightness visual effect can be understood as the influence of brightness change on the human eye perception and visual system, and the effects that brightness may bring to people's psychology and behaviors.
[0088] The first brightness visual effect and the second brightness visual effect can include: subjective brightness, brightness contrast, brightness adaptation, and Mach band effect, etc.
[0089] For example, if the subjective brightness of the first brightness visual effect is higher than that of the second brightness visual effect, then a visual effect with different brightnesses is presented on the first housing 00, which can increase the diversity of the visual effect of the first housing 00.
[0090] Among them, the first depth perception visual effect and the second depth perception visual effect can be understood as the ability of the visual system to process and analyze depth information, enabling the brain to perceive the three-dimensional structure of an image. The first depth perception visual effect and the second depth perception visual effect can include binocular disparity, texture gradient, relative size, and stereoscopic tilt effect. If the density of the texture gradient of the first depth perception visual effect is different from that of the second depth perception visual effect, the presented texture pattern will be denser as the viewing angle and viewing distance change, which can increase the complexity of the visual effect of the first housing 00.
[0091] Among them, the first form visual effect and the second form visual effect can be understood as various perceptual phenomena generated by the visual system when processing shapes, structures, and object contours;
[0092] The first form visual effect and the second form visual effect can include line and direction, shape constancy, figure-ground separation, illusionary figures, circular composition, visual corridor, form illusion, and gradient and repetition, etc.
[0093] For example, if the graphic contour of the first form visual effect is manifested as multiple evenly arranged triangles, the graphic contour of the second form visual effect can be manifested as multiple evenly arranged circles. A visual effect of the superposition of triangles and circles is presented on the first housing 00, which can increase the complexity and diversity of the form visual effect of the first housing 00.
[0094] Among them, the first optical visual effect and the second optical visual effect can be understood as various phenomena caused by the interaction between the behavioral characteristics of light and the human eye visual system;
[0095] The first optical visual effect and the second optical visual effect can include: halos and coronae, glows, interference and diffraction, parallax, and visual illusions, etc.
[0096] For example, if the diameter of the halo presented by the first optical visual effect is larger than the diameter of the halo presented by the second optical visual effect, then a visual effect of the staggered superposition or nesting of halos of different sizes is presented on the first housing 00.
[0097] Specifically, the first housing 00 can be forged by bonding fragments of the first material.
[0098] In one example, the first housing 00 can be a housing made of forged carbon fiber, endowing the first housing 00 with the personalized appearance characteristics of forged carbon fiber. Due to the random distribution of fibers during the manufacturing process of forged carbon fiber, even two pieces of material from the same manufacturing batch may have completely different appearances. The solution of the present application can also break up some discarded structural parts of other objects, and then use an adhesive material to bond the obtained fragments together. After high-temperature forging treatment, a sheet for manufacturing the first housing 00 of the electronic device is obtained. Then, through operations such as cutting and fixing the sheet, the first housing 00 of the electronic device is formed.
[0099] Among them, the adhesive material used to bond the fragments of the first material can be a resin adhesive, such as phenolic resin, epoxy resin; it can also be a natural adhesive, such as starch-based adhesive, natural rubber, etc.; it can also be a synthetic adhesive, such as plastic adhesive, thermosetting adhesive, etc.
[0100] Among them, the ratio of the adhesive to the fragments of the first material will affect the appearance of the first housing 00. For example, if the ratio of the resin to the fragments of the first material is different, the density of the fragments of the first material in the first housing 00 will also be different. Therefore, when preparing the material for the first housing 00, the ratio of the resin material to the fragments of the first material can be determined based on its appearance requirements.
[0101] The above content introduces the process flow for manufacturing the sheet of the first housing 00, which is convenient for technicians in the field to better understand the specific implementation of the solution of the present application.
[0102] In the above content, the first material can be the airplane seats, airplane sheets in the aviation field, the carriage sheets in the railway field, etc., or it can also be the structural parts from other devices, such as carriage connection structures, airplane seat supports, etc. In the case where these materials are replaced or no longer used, the first housing 00 is reprocessed from these discarded materials, realizing the reuse of the first material. This not only has a low cost but also can dispose of some discarded objects, playing a very good environmental protection role.
[0103] For the electronic device of this embodiment, its first outer shell can be processed from the fragments of the first material, and the fragments of the first material can come from the discarded structures of other objects. Therefore, the reuse of the first material is realized, which conforms to the environmental protection concept of recycling.
[0104] Since the first materials applied in fields such as aviation and railway inherently possess characteristics such as light weight and high toughness, the first housing 00 processed from the fragments of these first materials also has the characteristics of light weight and high strength. As the degree of informatization and intelligence in people's lives becomes increasingly high, a large number of users carry one or more electronic devices when going out. Due to the characteristics of light weight and high strength of the first materials, their application in electronic devices also meets the mainstream requirements of portability and impact resistance of electronic devices.
[0105] The first effects can respectively include the first color visual effect, the first brightness visual effect, the first depth perception visual effect, the first form visual effect, and the first optical visual effect.
[0106] The second effects can respectively include the second color visual effect, the second brightness visual effect, the second depth perception visual effect, the second form visual effect, and the second optical visual effect.
[0107] Among them, the first color visual effect and the second color visual effect can include: color constancy, color contrast, color visibility, the temperature effect of color, the visual stimulation of color, the attention attraction of color, and the physiological effect of color.
[0108] The meanings of the above color visual effects are respectively:
[0109] Color constancy: Usually able to maintain the recognition of the inherent color of an object even under different lighting conditions;
[0110] Color contrast: The perceived effect of a color is influenced by the surrounding colors;
[0111] Color visibility: The visibility of different colors on different backgrounds is different, which depends on the brightness, saturation, and contrast of the color;
[0112] The temperature effect of color: Certain colors are considered warm colors (such as red and orange), while other colors are considered cool colors (such as blue and green);
[0113] The visual stimulation of color: High-saturation colors may cause visual fatigue, while soft or low-saturation colors may be more relaxing;
[0114] The attention attraction of color: The wavelength of a color can affect its attractiveness and attention value. For example, due to its longer wavelength, red tends to attract attention more easily than blue and green;
[0115] The physiological effect of color: Certain colors can affect heart rate, blood pressure, and respiratory rate. For example, warm colors may increase heart rate, while cool colors may have a sedative effect.
[0116] Among them, the brightness visual effect can be understood as the impact of brightness changes on the human eye's perception and visual system, as well as the possible effects of brightness on human psychology and behavior.
[0117] The first brightness visual effect and the second brightness visual effect can include: subjective brightness, brightness contrast, brightness adaptation, and Mach band effect.
[0118] Among them, the meanings of the above brightness visual effects are as follows:
[0119] Subjective brightness: This is the human eye's perception of brightness, and it is not always linearly related to the physically measured brightness. Subjective brightness is based on the response of photoreceptors on the retina.
[0120] Brightness contrast: The perceived brightness of an object is related to the brightness of its surrounding environment. For example, the same brightness appears brighter on a dark background than on a light background.
[0121] Brightness adaptation: The human eye can adapt to different brightness levels, from extremely dark to extremely bright. The adaptation process includes dark adaptation to light adaptation and mesopic vision in between.
[0122] Mach band effect: At the boundary of brightness changes, the human eye tends to perceive a stronger brightness difference than the actual one.
[0123] Among them, the depth perception visual effect is the ability of the visual system to process and understand the position and distance of objects in three-dimensional space. The depth visual effect presented on a plane can be achieved through visual techniques, and through visual techniques, an illusion of three-dimensional space can be created on a two-dimensional plane.
[0124] The visual techniques that constitute the first depth perception visual effect and the second depth perception visual effect can include: perspective method, texture gradient, and size change.
[0125] The meanings of the above depth perception visual effects are as follows:
[0126] Perspective method:
[0127] One-point perspective (parallel perspective): All parallel lines converge at a single point in the picture.
[0128] Two-point perspective (angular perspective): The parallel lines in two directions of an object converge to two points on the left and right respectively.
[0129] Texture gradient: The texture density of the surface decreases with the increase of distance, helping to perceive depth;
[0130] Size change: Distant objects appear smaller, and nearby objects appear larger.
[0131] Among them, the morphological visual effect: refers to various perceptual phenomena generated when the visual system processes shapes, structures, and object contours.
[0132] The first morphological visual effect and the second morphological visual effect can include: lines and directions, shape constancy, figure-ground separation, illusory figures, circular composition, visual corridors, morphological illusions, as well as gradients and repetitions.
[0133] The meanings of the above morphological visual effects are as follows:
[0134] Lines and directions: The direction and length of lines can affect our understanding of shapes and spaces. For example, vertical and horizontal lines are generally considered more stable than oblique lines;
[0135] Shape constancy: The basic shape of an object can still be recognized even when the viewing angle of the object changes.
[0136] Figure-ground separation: We can divide a complex visual scene into foreground figures and background;
[0137] Illusory figures: Such as the famous Kanizsa triangle or Poggendorff illusion, where non-existent three-dimensional depths are created through implied lines and shapes;
[0138] Circular composition: Circular or ring-shaped compositions give people a sense of rotation or completeness and can guide people's gazes;
[0139] Visual corridors: Through a series of guiding lines or arranged elements, a sense of depth can be created to guide the viewer's gaze deep into the picture;
[0140] Morphological illusions: Utilize visual illusions to change the perception of space. For example, a sense of space can be created through patterns and colors;
[0141] Gradients and repetitions: Gradual shapes or patterns can create a visual sense of flow, while repeated forms can form rhythm and rhyme.
[0142] Among them, the optical visual effect refers to various phenomena caused by the interaction between the behavioral characteristics of light and the human eye visual system. The first optical visual effect and the second optical visual effect can include: halos and coronae, glows, interference and diffraction, parallax, as well as visual illusions.
[0143] The meanings of the above optical visual effects are as follows:
[0144] Halos and coronae: Colored or white ring-shaped patterns formed around a light source when light passes through ice crystals or water droplets;
[0145] Glows: Circular or oval bright areas that appear around a strong light source;
[0146] Interference and diffraction: complex ripple patterns generated when light rays meet or bypass obstacles;
[0147] Parallax: the change in the perceived position of a fixed object due to the change in the observer's position;
[0148] Visual illusions: such as the Penrose stairs, the Müller-Lyer illusion, etc. These are false perceptions generated when the brain attempts to analyze complex visual information. In some embodiments, in order to improve the aesthetic degree and personalization degree of the first housing 00, the electronic device may include at least one of the following:
[0149] The first color visual effect and the second color visual effect may include a variety of color visual effects, and the second color visual effect may be completely different or partially the same as the first color visual effect;
[0150] Specifically, the color constancy, color contrast, color visibility, color temperature effect, color visual stimulus, color attention attraction, and color physiological effect included in the first color visual effect are all different from the color constancy, color contrast, color visibility, color temperature effect, color visual stimulus, color attention attraction, and color physiological effect included in the second color visual effect, or at least one of the color constancy, color contrast, color visibility, color temperature effect, color visual stimulus, color attention attraction, and color physiological effect included in the first color visual effect and the second color visual effect is the same. For example, they may have the same color constancy.
[0151] The first brightness visual effect and the second brightness visual effect may include a variety of brightness visual effects, and the second brightness visual effect may be completely different or partially the same as the first brightness visual effect;
[0152] Specifically, the first brightness visual effect may include subjective brightness, brightness contrast, brightness adaptation, and the Mach band effect, which are all different from the subjective brightness, brightness contrast, brightness adaptation, and the Mach band effect that the second brightness visual effect may include, or at least one of the subjective brightness, brightness contrast, brightness adaptation, and the Mach band effect included in the first brightness visual effect and the second brightness visual effect is the same. For example, they may have the same brightness contrast.
[0153] The first depth perception visual effect and the second depth perception visual effect include a variety of depth perception visual effects, and the second depth perception visual effect may be completely different or partially the same as the first depth perception visual effect;
[0154] Specifically, the first depth perception effect and the second depth perception visual effect may include perspective, texture gradient, and size change, and different depth visual effects are formed in the plane through the above visual techniques.
[0155] Among them, the above depth perception effects of the first depth perception effect and the second depth perception effect can be completely different or partially the same, such as having different texture gradients, to form new and different types of depth perception effects.
[0156] The first form visual effect and the second form visual effect can include multiple form visual effects, and the second form visual effect and the first form visual effect can be completely different or partially the same;
[0157] Specifically, the first form visual effect and the second form visual effect can include lines and directions, shape constancy, figure-ground separation, illusionary figures, circular composition, visual corridors, form illusions, and gradients and repetitions.
[0158] Among them, the first form visual effect and the second form visual effect can be completely different, or at least one of the lines and directions, shape constancy, figure-ground separation, illusionary figures, circular composition, visual corridors, form illusions, and gradients and repetitions included in the first form visual effect and the second form visual effect is the same. For example, the pattern contours of the first form visual effect and the second form visual effect are different, but the repetition methods are the same.
[0159] The first optical visual effect and the second optical visual effect can include multiple optical visual effects, and the second optical visual effect and the first optical visual effect can be completely different or partially the same.
[0160] Specifically, the first optical visual effect and the second optical visual effect include: halos and aureoles, glows, interference and diffraction, parallax, and visual illusions.
[0161] Among them, for example, the halos and aureoles of the first optical visual effect are different from those of the second optical visual effect to form a complex optical visual effect, thereby enhancing the aesthetic degree and personalization degree of the first housing 00.
[0162] In some embodiments, the electronic device may further include a substrate layer 3, and the substrate layer 3 can be used to carry the target body 1 and the target layer 2;
[0163] After the substrate layer 3 is formed, a third color visual effect may be formed on a part of the outer surface of the substrate layer 3, and the target body 1 and the target layer 2 may be stacked on the outer surface of the substrate layer 3;
[0164] The first color visual effect of the first effect and the third color visual effect may be the same or similar; and / or,
[0165] The second color visual effect of the second effect and the third color visual effect may be the same or similar.
[0166] Specifically, in order to endow the first housing 00 with structural strength and provide support for the target body 1 and the target layer 2, the electronic device may further include a substrate layer 3. The substrate layer 3 can be formed by hot pressing a mixture of a thermosetting resin material and a fiber material. After molding, the outer surface can have a third color visual effect. In the related art, during the hot pressing process of the substrate layer 3 using a thermosetting resin pre-impregnated carbon fiber material, the gas doped in the resin material will emerge from the upper surface of the substrate layer 3 and form many pores. The convergence of multiple pores will form a visible third visual effect. The third visual effect can be a third color visual effect (such as a white speckled visual effect), a third morphological visual effect, a third brightness visual effect, a third depth perception visual effect, or a third optical visual effect.
[0167] Taking the white speckled visual effect as an example, the white speckles affect the quality of the product appearance. Therefore, the target body 1 and the target layer 2 can be laminated on the outer surface of the substrate layer 3 to cover the white speckles.
[0168] Among them, the covering method can be to set the first color visual effect of the target body 1 to be the same as or similar to the color of the white speckles; and, the second color visual effect of the target layer 2 can also be set to be the same as or similar to the color of the white speckles. For example, it can be set to white, off-white, or grayish-white, etc. In this way, the white speckles can be confused with the color visual effects displayed by the target body 1 and the target layer 2, achieving the effect of confusion and covering.
[0169] Among them, for the above target layer 2 and target body 1, either one can be selected and its color visual effect can be set to be the same as or similar to the white speckles. Or both can be set simultaneously so that the color visual effect is the same as or similar to the white speckles.
[0170] When both of them set the color visual effect to be the same as or similar to the white speckles, the effect of confusing and covering the white speckles is the best, improving the appearance quality of the product.
[0171] Taking the third morphological visual effect as an example, the shape contour formed by the convergence of multiple pores can be a circular spot. The circular spot affects the quality of the product appearance. Therefore, the target body 1 and the target layer 2 can be laminated on the outer surface of the substrate layer 3 to confuse the circular spot.
[0172] Among them, the confusing method can be to set the first morphological visual effect of the target body 1 to be the same or similar shape contour as the circular spot; and, the second morphological color visual effect of the target layer 2 can also be set to be the same or similar shape contour as the circular spot. Also, the circular spot is confused with the shape contours displayed by the target body 1 and the target layer 2, achieving the effect of confusion and concealment.
[0173] Taking the third brightness visual effect as an example, multiple pores can converge to form a hole, and when light shines on the hole, it cannot be reflected out. The brightness visual effect will form a dim shadow, which will affect the quality of the product appearance. Therefore, on the outer surface of the base layer 3, a target body 1 with a brightness visual effect similar to the shadow is stacked, and in addition, a target layer 2 with a second brightness visual effect similar to the shadow can also be set to achieve the effect of confusing and covering the shadow.
[0174] Taking the third depth perception visual effect as an example, pores of different sizes can be formed in the base layer 3. The visual effect will feel that the larger pores are closer and the smaller pores are farther away, thus forming the third depth perception visual effect.
[0175] To eliminate and confuse the phenomena appearing on the outer surface of the base layer 3, a first depth perception visual effect identical or similar to the third depth perception visual effect can be set on the target body 1, for example, pores of different sizes are also formed; and in addition, a second depth perception visual effect identical or similar to the third depth perception visual effect can be set in the target layer 2 respectively, and the third depth perception visual effect is confused by means of decoration, thereby improving the quality of the product appearance.
[0176] Taking the third optical visual effect as an example, when light shines on the pores formed on the outer surface of the base layer 3, a ripple pattern will be generated due to the light rays meeting or bypassing the pores, resulting in the optical visual effect of interference and diffraction.
[0177] To eliminate and confuse the phenomena appearing on the outer surface of the base layer 3, a first optical visual effect identical or similar to the third optical visual effect can be set on the target body 1; and in addition, a second optical visual effect identical or similar to the third optical visual effect can be provided in the target layer 2; for example, on the target body 1 and also in the target layer 2, an optical effect of interference and diffraction identical to that of the base layer 3 can be formed. It not only plays the role of decorating the first housing 00 but also can be confused with the third optical visual effect of the base layer 3 to achieve the effect of concealing defects.
[0178] In some embodiments, the base layer 3 can be formed by hot pressing a third material in a fourth material; the third material is arranged horizontally in the fourth material to form a horizontal layer 31; the third material is arranged vertically in the fourth material to form a vertical layer 32;
[0179] The base layer 3 can include one or more horizontal layers 31, and one or more vertical layers 32. In the case where the base layer 3 includes multiple horizontal layers 31 and multiple vertical layers 32, the horizontal layer 31 and the vertical layer 32 can be stacked;
[0180] The third color visual effect can be formed on the transverse layer 31 or the longitudinal layer 32 provided on the top layer of the substrate layer 3.
[0181] Specifically, the substrate layer 3 can be formed by hot pressing a mixture of a third material and a fourth material. The fourth material can serve as the base layer 221, and the third material can serve as the reinforcing layer.
[0182] Among them, the third material is a fiber material, and the fourth material is a resin material. The fiber material is horizontally distributed in the resin material to form the transverse layer 31, and vertically distributed to form the longitudinal layer 32. To improve the structural strength of the substrate layer 3, at least one transverse layer 31 and at least one longitudinal layer 32 can be laminated and then hot pressed to form an integral body. It is also possible to laminate and mold one layer of the transverse layer 31 and multiple layers of the longitudinal layer 32, or to alternately laminate multiple layers of the transverse layer 31 and multiple layers of the longitudinal layer 32 in sequence and then press and mold them. By making the fiber materials cross horizontally and vertically, the overall strength of the substrate layer 3 can be improved.
[0183] Among them, the fourth material serves as the matrix and can be epoxy resin, unsaturated polyester resin, phenolic resin, bismaleimide resin, polyimide resin, or cyanate resin. The third material serves as the reinforcing material and can be carbon fiber, glass fiber, aramid fiber, or natural fiber. The processing process is to pre-impregnate the fiber reinforcing material in the resin material to form a sheet-shaped prepreg, and then form the substrate layer 3 through processes such as lamination, curing, and cutting.
[0184] Compared with other fiber reinforcing materials, carbon fiber has high strength, high stiffness, and the characteristics of light weight, wear resistance, and durability. Using carbon fiber as the reinforcing material can make the electronic product design thin and light with structural strength, not deformed when subjected to external impacts, ensure the safety of internal components, and at the same time improve the service life.
[0185] In some embodiments, the first sub-layer 21 can be provided on the entire outer surface of the first housing 00. The first sub-layer 21 can have a first functional layer. The first functional layer can have a second effect. The first functional layer can be attached to the outer surface of the first housing 00 to protect the first housing 00;
[0186] Among them, the first sub-layer 21 can have light transmittance so that the first effect of the first material can be presented through the first sub-layer 21.
[0187] Specifically, in order to protect the fragments of the first material on the first housing 00, the outer surface of the first housing 00 is completely covered by the first functional layer in the first sub-layer 21. The first functional layer can be a paint layer covered on the outer surface of the first housing 00 by means such as spraying, brushing, dipping, etc., or can also be a coating layer covered on the outer surface of the first housing 00 by means such as electroplating, hot dip plating, etc. The paint layer and the coating layer can play a role in isolating oxygen, moisture and pollutants in the air to prevent corrosion, and can also provide a physical barrier to achieve the effects of anti-wear and anti-scratch, and can resist ultraviolet rays, thereby preventing the ultraviolet rays from irradiating the housing and causing it to change color and degrade, and can extend the appearance life of the notebook.
[0188] Among them, the paint layer can have a certain light transmittance, can reveal the first effect of the target body 1, and the paint layer has all the second effects. The material used for the paint layer can be one of acrylic paint, polyurethane paint, UV curable paint, polyester paint, alkyd paint, fluorocarbon paint, acrylic resin, polyurethane resin, epoxy resin, silicone-based adhesive.
[0189] Among them, the coating layer can have a certain light transmittance, can reveal the first effect of the target body 1, and the coating layer has all the second effects. The material used for the coating layer can be one of aluminum oxide, silicon nitride, silicon dioxide, parylene.
[0190] Taking the paint layer as an example, when the color visual effect of the paint layer is set to be the same as or similar to the white spot, the white spot can be confused.
[0191] In one embodiment, a certain proportion of color masterbatch can be doped in the paint layer coating to make it have the corresponding color, so that the paint layer becomes a semi-transparent layer with color. Corresponding materials can also be doped to make it have a bright, matte or metallic texture, and the texture of the forged carbon fiber of the first housing 00 can also be revealed from the semi-transparent paint layer, thereby enhancing the visual attraction of the electronic product.
[0192] In some embodiments, the first functional layer can include multiple first sub-functional layers, and the multiple first sub-functional layers are sequentially stacked to improve the durability of the first sub-layer 21, and at least one layer has the second effect.
[0193] Specifically, the paint layer as the first functional layer can be three layers, and the three first sub-functional layers can be a primer layer, an intermediate layer, and a topcoat layer, which are sprayed sequentially from bottom to top.
[0194] Among them, the primer layer can improve the adhesion of the coating to the substrate layer 3 and can fill the surface micro-defects;
[0195] The intermediate layer can further improve the flatness and smoothness, and can also provide an additional protective layer.
[0196] The topcoat layer can give the outer shell of electronic products color and texture, which can be matte, glossy, metallic, etc. It can also prevent the outer shell from being corroded by ultraviolet rays, water, chemicals, etc., while increasing the gloss.
[0197] In order to improve the wear resistance and scratch resistance of the paint layer, a finishing paint layer can also be applied on the outer surface of the topcoat layer.
[0198] Among them, any one of the primer layer, the intermediate layer and the topcoat layer can have a second effect. Taking the intermediate layer as an example, the intermediate layer is located on the upper layer of the substrate layer 3, and can have a second color visual effect, a second brightness visual effect, a second depth perception visual effect, a second morphological visual effect and a second optical visual effect. For example, masterbatch can be doped into the paint of the intermediate layer to adjust the color of the second color visual effect.
[0199] In some embodiments, the first sub-layer 21 may be disposed on a portion of the outer surface of the first shell 00;
[0200] The first sublayer 21 may have a second functional layer, and the second functional layer has a second effect;
[0201] The second functional layer may be composed of fragments of the second material, and the distribution of the fragments of the second material in the target layer 2 is irregular.
[0202] Specifically, the first sublayer 21 can be composed of fragments of the second material, and the second material can be a thermoplastic color film, a self-adhesive color film, or an elastic color film. Taking the thermoplastic color film as an example, the shape and size of the thermoplastic color film can be random, and the distribution on the outer surface of the first shell 00 is also random. They are staggered and superimposed on the forged carbon fiber sheets that are fragments of the first material and hot-pressed, which can enhance the appearance.
[0203] In addition, the colored heat-shrinkable film can also cover the white spots of the third color visual effect, thereby improving the appearance quality of the product.
[0204] In some embodiments, the second sub-layer 22 may be disposed on the inner surface of the first shell 00 , and the second sub-layer 22 may be used to support fragments of the first material.
[0205] Specifically, the second sub-layer 22 may be a polycarbonate (PC) carrier film, a polyurethane (PU) carrier film, a polyvinyl chloride (PVC) carrier film, or the like.
[0206] Taking the polycarbonate (PC) carrier film as an example, the polycarbonate (PC) carrier film is arranged between the substrate layer 3 and the target body 1 as a bonding layer between the two to enhance the adhesion between the two layers of material and make the overall structure stable and consistent.
[0207] The polycarbonate (PC) carrier film can be a transparent layer, or color masterbatch can be added to form a colored semi-transparent layer, or a colored opaque layer. Fragments of the first material are also supported on the upper surface of the colored polycarbonate (PC) carrier film, achieving the complexity and personalization of the appearance of the first housing 00, while also being able to block the white spots of the substrate layer 3 and improving the appearance quality of the product.
[0208] In the above embodiment, if the first sub-layer 21 is used to cover the entire outer surface of the first housing 00, the first sub-layer 21 can cover all the fragments of the first material, enabling a clear distinction between the first effect and the second effect. When the first sub-layer 21 is a light-transmitting paint layer sprayed on the outer surface of the fragments of the first material, the texture of the fragments of the first material can be revealed through the paint layer, retaining the texture and pattern presented by the fragments of the first material. At the same time, the paint layer also forms a protective layer on the outer surface of the fragments of the first material, which can increase wear resistance, corrosion resistance, and waterproof effect.
[0209] If the first sub-layer 21 is arranged on a part of the outer surface of the first housing 00, and the fragments of the second material constituting the first sub-layer 21 are randomly distributed on the fragments of the first material. The fragments of the second material have a second effect. After the fragments of the second material are doped with the fragments of the first material, the first effect of the target body 1 and the second effect of the target layer 2 are doped to form a complex and random visual effect to meet the personalized pursuit of users.
[0210] If the second sub-layer 22 is arranged on the inner surface of the first housing 00 to support the fragments of the first material. The second sub-layer 22 is placed between the substrate layer 3 and the fragments of the first material. After the substrate layer 3 is formed, the third visual effect on the outer surface of the substrate layer 3 will affect the appearance quality of the product. By arranging the second sub-layer 22 on the outer surface of the substrate layer 3, the third visual effect can be weakened and blocked, thereby improving the appearance quality of the product.
[0211] It should be noted that the above embodiments can exist independently or in combination.
[0212] In some embodiments, as Figure 9 shown, the electronic device can include a first body 4 and a second body 5;
[0213] The first body 4 can include a first housing 00, and the first housing 00 is arranged on the first body 4;
[0214] The second body 5 can include a second housing, and the second housing is arranged on the second body 5, and the property of the material constituting the second housing is the same as that of the first material;
[0215] Among them, the first body 4 and the second body 5 can be connected by a rotating device, enabling the electronic device to switch between a first posture and a second posture;
[0216] The first posture is that the first body 4 faces the second body 5, and the second posture is that the first body 4 does not face the second body 5.
[0217] It can be understood that the electronic device may include but is not limited to a folding-screen smartphone, a laptop computer, a folding-screen tablet computer, and other devices with similar usage forms.
[0218] Taking a laptop computer as an example, the first body 4 may include an opposite first side and second side. The first side may be the A side of the laptop computer, that is, the shell surface that the user can directly see when the laptop computer is in a closed state; the second side is the B side, that is, the side with the display screen installed.
[0219] In turn, the second body 5 may include an opposite third side and fourth side. The third side is the C side with the keyboard installed, and the fourth side is the bottom surface of the second body 5, that is, the D side.
[0220] Among them, the first posture corresponds to the closed state of the laptop computer, that is, the B side with the display screen on the first body 4 faces the C side with the keyboard on the second body 5.
[0221] The second posture corresponds to the open state of the laptop computer. In this posture, the B side with the display screen on the first body 4 does not face the C side with the keyboard on the second body 5.
[0222] Specifically, the first housing 00 may be disposed on the first side of the first body 4. When the electronic device is in the first posture, the user can directly see the visual effect presented by the first housing 00; the first housing 00 may also be disposed on the part of the second side of the first body 4 outside the display screen, so that when the electronic device is in the second posture, that is, after the lid is opened, the first housing 00 can present a corresponding visual effect on the frame of the display screen.
[0223] The second housing may be disposed on the third side and the fourth side of the second body 5.
[0224] Among them, the material properties of the second housing and the first material properties may meet the same conditions, such as the same components, and may have high strength, flexibility, elasticity, chemical resistance, heat resistance, ultraviolet resistance, abrasion resistance, and lightness of fiber materials. And it may also have characteristics such as light weight and high toughness of the materials applied in fields such as aviation and railway. It may also be that due to different manufacturing processes, the housings formed by the two are also different. For example, the first housing 00 may be a forged carbon fiber housing, and the second housing may be a woven carbon fiber housing. The first material in the forged carbon fiber housing is scattered, so it has a unique visual appearance; the woven carbon fiber is woven based on the second material.
[0225] In some embodiments, such asFigures 7 - 8 As shown, the second sub-layer 22 may include a base layer 221 and a superimposed layer 222. The superimposed layer 222 is disposed on the upper side of the base layer 221, covering all or part of the base layer 221.
[0226] Specifically, the base layer 221 may be made of a material with thermoplasticity and chemical resistance such as corrosion resistance to acids and alkalis, such as polycarbonate (PC), polyurethane (PU), polyvinyl chloride (PVC), etc. It serves to support the superimposed layer 222 and the fragments of the first material, has adhesiveness, and is provided as an adhesive layer on the upper side of the substrate layer 3.
[0227] The superimposed layer 222 may be made of the same material as the base layer 221, such as polycarbonate (PC), polyurethane (PU), polyvinyl chloride (PVC), etc.
[0228] As Figure 7 shown, in one embodiment, if the superimposed layer 222 partially covers the base layer 221, the superimposed layer 222 may be composed of several fragments randomly distributed on the base layer 221. At this time, the size, shape, color, and distribution position of the fragments constituting the superimposed layer 222 can all be random. The sizes may be equal or unequal; the shapes may include but are not limited to the following shapes, such as circular, rectangular, diamond-shaped, triangular, etc. The color can be arbitrarily adjusted by adding color masterbatches of various colors, including but not limited to the following colors, such as red, green, yellow, blue, pink, purple, etc.; the distribution positions may be evenly spaced in the superimposed layer 222, or may be arbitrarily scattered with unequal spacings.
[0229] For example, the base layer 221 and the superimposed layer 222 may be made of polycarbonate (PC) material, and the fragments of the superimposed layer 222 are triangles of equal size and are evenly spaced on the base layer 221.
[0230] If the base layer 221 is a transparent layer, the superimposed layer 222 may be of any color; if the base layer 221 is a semi-transparent layer with a color, the color of the superimposed layer 222 is any color different from the color of the base layer 221.
[0231] In another embodiment, if the superimposed layer 222 completely covers the base layer 221, the superimposed layer 222 may have the same contour size as the base layer 221; the color of the superimposed layer 222 may be any color different from the color of the base layer 221. For example, when the base layer 221 is a transparent layer, at this time, the superimposed layer 222 may be a semi-transparent layer of any color. When the base layer 221 is a semi-transparent layer with a color, at this time, the superimposed layer 222 is a semi-transparent layer with any color different from the color of the base layer 221.
[0232] In some embodiments, as Figure 8As shown, the overlay layer 222 completely covers the base layer 221. The overlay layer 222 can be provided with a plurality of windowing structures 2221, so that the color of the base layer 221 is externally displayed in the overlay layer 222 through the windowing structures 2221.
[0233] Among them, the size, shape, and distribution position of the windowing structures 2221 in the overlay layer 222 can all be random. For example, the sizes can be equal or unequal; the shapes can include but are not limited to the following shapes, such as circular, rectangular, diamond-shaped, triangular, etc.; the distribution positions can be evenly distributed in the overlay layer 222, or can be any scattered distribution with unequal spacings;
[0234] The windowing structures 2221 can be transparent parts provided in the overlay layer 222, and can also be hollowed-out parts provided in the overlay layer 222;
[0235] If the base layer 221 is a semi-transparent layer with a certain color, such as blue; the overlay layer 222 is a semi-transparent layer with a color different from this, such as green; the blue color of the base layer 221 can be revealed from the windowing structures 2221 of the overlay layer 222 and presented in the overlay layer 222. At this time, the outer surface of the overlay layer 222 can include its own color and the color of the base layer 221 revealed by the windowing structures 2221.
[0236] Among them, the colors of the base layer and the overlay layer 222 can be arbitrarily blended by incorporating color masterbatches of various colors, including but not limited to the following colors, such as red, green, yellow, blue, pink, purple, etc.
[0237] It should be noted that the above embodiments can exist alone or in combination. It should be understood that although this application is described according to each embodiment, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0238] The above is only the specific implementation manner of this application, but the protection scope of this application is not limited thereto. Any person skilled in the art within the technical scope disclosed by this application can easily think of changes or substitutions, which should all be covered within the protection scope of this application. Therefore, the protection scope of this application should be subject to the protection scope of the claimed rights.
Claims
1. An electronic device, characterized in that: A first housing is provided, wherein the first housing comprises: a target body composed of fragments of a first material, the visual effect represented by the first material being a first effect, and the fragments of the first material being irregularly distributed in the first shell; a target layer, comprising a first sublayer, wherein the first sublayer is disposed on part or all of the outer surface of the target body, and / or a second sublayer, the second sublayer being used to carry the target object; The visual effect represented by the target layer is a second effect, and the first effect is different from the second effect.
2. The electronic device according to claim 1, characterized in that: The first housing is formed by forging fragments of the first material after bonding, the first material comes from a structural part of other equipment, and the electronic equipment includes at least one of the following: The first effect includes a first color visual effect, the second effect includes a second color visual effect, the first color visual effect is different from the second color visual effect; The first effect includes a first brightness visual effect, the second effect includes a second brightness visual effect, the first brightness visual effect is different from the second brightness visual effect; The first effect further comprises a first depth perception visual effect, the second effect further comprises a second depth perception visual effect, the first depth perception visual effect being different from the second depth perception visual effect; The first effect further includes a first form visual effect, the second effect further includes a second form visual effect, and the first form visual effect is different from the second form visual effect; The first effect further includes a first optical visual effect, and the second effect further includes a second optical visual effect, and the first optical visual effect is different from the second optical visual effect.
3. The electronic device according to claim 2, characterized in that: The electronic device includes at least one of the following: The first color visual effect and the second color visual effect both include a plurality of color visual effects, and the second color visual effect is completely different from or partially identical to the first color visual effect; The first brightness visual effect and the second brightness visual effect both include multiple brightness visual effects, and the second brightness visual effect is completely different from or partially the same as the first brightness visual effect; The first depth perception visual effect and the second depth perception visual effect each include a plurality of depth perception visual effects, and the second depth perception visual effect is completely different from or partially identical to the first depth perception visual effect; The first form visual effect and the second form visual effect both include multiple form visual effects, and the second form visual effect is completely different from or partially the same as the first form visual effect; The first optical visual effect and the second optical visual effect both include multiple optical visual effects, and the second optical visual effect is completely different from or partially identical to the first optical visual effect.
4. The electronic device according to claim 2, characterized in that: Also includes: A substrate layer, the substrate layer is used to support the target body and the target layer; After the substrate layer is formed, a third color visual effect is formed on a portion of the outer surface of the substrate layer, and the target body and the target layer are stacked and arranged on the outer surface of the substrate layer; The first color visual effect of the first effect is the same as or similar to the third color visual effect; and / or, The second color visual effect of the second effect is the same as or similar to the third color visual effect.
5. The electronic device according to claim 4, characterized in that: The substrate layer is formed by placing a third material in a fourth material through hot pressing; The substrate layer includes one or more transverse layers and one or more longitudinal layers, the third material is arranged transversely in the fourth material to form the transverse layer, and the third material is arranged longitudinally in the fourth material to form the longitudinal layer; In the case where the substrate layer includes a plurality of transverse layers and a plurality of longitudinal layers, the transverse layers are stacked with the longitudinal layers; The third color visual effect is formed on the transverse layer or the longitudinal layer disposed on the top layer of the substrate layer.
6. The electronic device according to claim 1, characterized in that: The first sublayer is arranged on the entire outer surface of the first shell, the first sublayer has a first functional layer, the first functional layer has the second effect, and the first functional layer is attached to the outer surface of the first shell to protect the first shell; The first sub-layer is light-transmissive, so that the first effect of the first material can be presented through the first sub-layer.
7. The electronic device according to claim 6, characterized in that: The first functional layer includes a plurality of first sub-functional layers, and the plurality of first sub-functional layers are stacked in sequence to improve the durability of the first sub-layer, and at least one layer thereof has the second effect.
8. The electronic device according to claim 1, characterized in that: The first sub-layer is disposed on a portion of the outer surface of the first shell; The first sublayer has a second functional layer, and the second functional layer has the second effect; The second functional layer is composed of fragments of a second material, and the fragments of the second material are irregularly distributed in the target layer.
9. The electronic device according to claim 1, characterized in that: The second sub-layer is disposed on the inner surface of the first shell, and is used to support the fragments of the first material.
10. The electronic device according to claim 1, characterized in that: Also includes: A first body, the first body comprising the first shell, and the first shell is disposed on the first body; A second body, wherein the second body comprises a second shell, the second shell is disposed on the second body, and the properties of the material constituting the second shell are the same as the properties of the first material; Wherein, the first body and the second body are connected via a rotating device, so that the electronic device can switch between a first posture and a second posture; In the first posture, the first body faces the second body, and in the second posture, the first body does not face the second body.