Clay color configuration method and system based on color system

Through the clay color configuration method based on the color system, the initial clay color is determined and the secondary and derivative colors are modulated to form a scientific color matching system, which solves the problem of insufficiently detailed color classification of ultra-light clay, improves color accuracy and color mixing performance, and meets the needs of users and the industry.

CN120632533APending Publication Date: 2025-09-12SHANGHAI KALEYOU CHILDRENS PROD CO LTD
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Patent Information

Application Number
CN202510789200.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-13
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

The existing ultra-light clay color classification cannot meet the users' detailed professional needs. The classification is not detailed and professional enough, the color accuracy is poor, and it cannot meet the industry's large-scale production needs.

Method used

A clay color configuration method based on a color system is adopted. By determining the initial clay color, the secondary and derived clay colors are modulated according to preset rules. The clay color configuration standard is formed by combining the compilation rules, and color driving information is generated to drive external devices to produce corresponding colors.

Benefits of technology

It achieves detailed classification of ultra-light clay colors, improves color accuracy and purity, improves color mixing performance, and meets the professional needs of users and the requirements of industry-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a clay color configuration method and system based on a color system, and the method comprises the steps: determining an initial clay color, and forming a first color configuration unit by taking the initial clay color as a reference; on the basis of the initial clay color, a secondary clay color is formed through modulation according to a preset first configuration rule, and a second color configuration unit is formed; on the basis of the initial clay color and the secondary clay color, a derivative clay color is formed through modulation according to a preset second configuration rule, and a third color configuration unit is formed; and a clay color configuration standard is formed by combining the first color configuration unit, the second color configuration unit and the third color configuration unit according to a preset compiling rule. By means of the design, the problems that existing ultra-light clay color classification cannot meet more detailed professional requirements, classification is still not detailed and professional enough, color accuracy is poor, and large-scale production requirements of the industry cannot be well met are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of clay coloring, and in particular to a clay color configuration method and system based on a color system. Background Art

[0002] With the development of the artisanal clay industry, ultralight clay is increasingly being used, particularly in the field of craft education for young children and adolescents. The colors of ultralight clay on the market vary widely, with varying standards. These colors are often arbitrarily selected by different manufacturers based on personal preference. Traditional ultralight clay also suffers from limited color options, a lack of a scientific color matching system, and poor color accuracy. As the industry evolves, the existing ultralight clay colors on the market are increasingly unable to simultaneously meet the more refined professional needs of users and the industry's large-scale production requirements. To address this issue, several solutions have emerged on the market.

[0003] For example, the prior art with publication number CN118006134A discloses a DIY clay and a preparation method thereof, wherein the preparation method comprises "adding corresponding color powder according to the color to be processed of the clay for color matching. After the color matching is completed, the clay can be cast into wax blocks of various shapes through molds of different shapes. The color powder includes light yellow, phthalocyanine blue B, bright red, bright red mixed with light yellow, carbon black, titanium dioxide and quartz sand; light yellow is yellow, phthalocyanine blue B is bluish purple, bright red is red, bright red mixed with light yellow is orange, carbon black is grayish black, titanium dioxide is snow-white, and quartz sand is its own color."

[0004] The above-mentioned method in the prior art is to configure a wider range of colors specifically for clay by adjusting the color ratio according to the characteristics of the clay. Although this method can meet the detailed professional needs of some users, it still has defects.

[0005] Specifically, the color series in this solution are still relatively small, with poor color accuracy, which cannot further meet the more detailed professional needs of more users. Moreover, its classification is still not detailed and professional enough, and cannot well meet the industry's large-scale production needs. Summary of the Invention

[0006] Based on this, it is necessary to provide a clay color configuration method and system based on a color system to address the problem that the existing ultra-light clay color classification cannot further meet the more detailed professional needs of more users, and its classification is still not detailed and professional enough, the color accuracy is poor, and it cannot well meet the industry's large-scale production needs.

[0007] The present invention provides a clay color configuration method based on a color system, which comprises: Determine the initial clay color and use it as a basis to form a first color configuration unit; Based on the initial clay color, according to a preset first configuration rule, a secondary clay color is modulated to form a second color configuration unit; Based on the initial clay color and the secondary clay color, a derivative clay color is modulated according to a preset second configuration rule to form a third color configuration unit; The first color configuration unit, the second color configuration unit, and the third color configuration unit are combined to form a clay color configuration standard according to a preset compilation rule.

[0008] Furthermore, the number of colors of the initial clay is N, where N is greater than or equal to 2 and is an integer; The step of determining the initial clay color and using it as a reference to form a first color configuration unit includes: Determine N basic colors from a preset standard color system and define them as the initial clay colors; A first color configuration unit is formed based on the N initial clay colors.

[0009] Furthermore, the preset first configuration rule includes mixing the initial clay colors in pairs according to a preset ratio; The step of modulating the initial clay color as a basis and forming a secondary clay color according to a preset first configuration rule to form a second color configuration unit includes: According to the preset ratio, the N initial clay colors are mixed in pairs for modulation; Modulating to form M kinds of secondary clay colors, and thereby forming a second color configuration unit; Wherein, M is greater than or equal to 1 and is an integer.

[0010] Furthermore, the preset second configuration rule includes at least a preset brightness value and / or hue value; The step of modulating the derived clay color based on the initial clay color and the secondary clay color according to a preset second configuration rule to form a third color configuration unit includes: According to the preset lightness value and / or hue value, based on the initial clay color and the secondary clay color, performing lightness adjustment and / or color mixing; Modulating to form W kinds of derived clay colors, and thereby forming a third color configuration unit; Wherein, W is greater than or equal to 1 and is an integer.

[0011] Furthermore, the preset compilation rules include at least one or more of hue value, lightness value and saturation value; The step of combining the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule includes: The standard for generating clay color classification patterns is based on one or more of hue, lightness, and saturation values ​​as rules. The first color configuration unit, the second color configuration unit, and the third color configuration unit are integrated according to the standard of the clay color classification compilation mode to form a clay color configuration standard.

[0012] Furthermore, the step of integrating the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation model to form a clay color configuration standard includes: Determining a corresponding and unique numerical value or numerical value set for each of the N initial clay colors, the M secondary clay colors, and the W secondary clay colors according to the preset compilation rule; Assigning a unique identifier to each of the unique numerical values ​​or numerical value sets, and a unique location in the clay color classification compilation model; All the unique identifiers and the unique points are collected to form a clay color configuration standard.

[0013] Furthermore, the clay color configuration method based on the color system also includes: Corresponding option information is generated according to the standardized clay color in the clay color configuration standard.

[0014] Furthermore, the clay color configuration method based on the color system also includes: Obtaining the selection result made by the user from the option information; Matching a corresponding standardized clay color from the clay color configuration standard according to the selection result; Color driving information is generated according to the corresponding standardized clay color.

[0015] Furthermore, the step of generating color driving information according to the corresponding standardized clay color includes: parsing color composition information of the corresponding standardized clay color; A color profile is generated according to the color composition information to drive an external device to produce clay of corresponding color.

[0016] Furthermore, the clay color configuration method based on the color system also includes: Based on the material properties of the clay matrix and according to the preset color stabilization configuration rules, a color fixing and anti-fading component is modulated to form a color stabilization configuration unit.

[0017] The present invention also provides a clay color configuration system based on a color system, which includes a clay color configuration standard generation module and a clay color calling module; The clay color configuration standard generation module includes: A first color configuration generating unit is used to determine the initial clay color and use it as a reference to form a first color configuration unit; A second color configuration generating unit is configured to modulate a secondary clay color based on the initial clay color according to a preset first configuration rule, and form the secondary clay color to constitute a second color configuration unit; a third color configuration generating unit, configured to modulate, based on the initial clay color and the secondary clay color, a derived clay color according to a preset second configuration rule, and form a third color configuration unit; The clay color configuration standard generation unit is used to combine the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule. The clay color calling module includes: an option information generating unit, configured to generate corresponding option information according to the standardized clay color in the clay color configuration standard; A selection result obtaining unit, configured to obtain a selection result made by the user from the option information; A clay color matching unit, configured to match a corresponding standardized clay color from the clay color configuration standard according to the selection result; The driving information generating unit is configured to generate color driving information according to the corresponding standardized clay color.

[0018] The above technical solution has the following advantages or beneficial effects: In the present invention, the initial clay color is determined by the first color configuration generation unit, and the first color configuration unit is formed based on it; the second color configuration generation unit is based on the initial clay color and modulated to form a secondary clay color according to a preset first configuration rule, and the second color configuration unit is formed; the third color configuration generation unit is based on the initial clay color and the secondary clay color and modulated to form a derivative clay color according to a preset second configuration rule, and the third color configuration unit is formed; finally, the clay color configuration standard generation unit combines the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the preset compilation rule to form a clay color configuration standard. This effectively solves the problem that the existing ultra-light clay color classification cannot further meet the more detailed professional needs of more users, and its classification is still not detailed and professional enough, the color accuracy is poor, and it cannot well meet the large-scale production needs of the industry. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural block diagram of the clay color configuration system based on the color system of the present invention; Figure 2 Schematic diagram of the execution steps of a method for configuring clay color based on a color system according to an embodiment of the present invention; Figure 3 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 4 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 5 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 6 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 7 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 8 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 9 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 10 Schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention; Figure 11 FIG. 1 is a schematic diagram of the execution steps of the color system-based clay color configuration method in another embodiment of the present invention.

[0020] The following are the descriptions of the reference numerals: 10. First color configuration generation unit; 20. Second color configuration generation unit; 30. Third color configuration generation unit; 40. Clay color configuration standard generation unit; 50. Option information generation unit; 60. Selection result acquisition unit; 70. Clay color matching unit; 80. Drive information generation unit. DETAILED DESCRIPTION

[0021] To make the above-mentioned objects, features, and advantages of the present invention more clearly understood, the following is a clear and complete description of the specific embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the specific details described below are only some embodiments of the present invention, and the present invention can also be implemented in many other embodiments different from those described herein. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0022] In industries involving the use of color, after decades or even longer of development, several industry consensus and widely used internationally mature color systems have been formed, and the Munsell color system is one of them.

[0023] The Munsell color system is based on how humans perceive color and organizes colors into a logical structure that is easy to understand and use. Specifically, the Munsell color system model is a three-dimensional space resembling a sphere, with a band of color at the equator. The sphere's axis is neutral gray in lightness, the North Pole is white, and the South Pole is black. Extending horizontally from the axis are varying levels of saturation, from neutral gray to fully saturated. Using these three factors to determine color, a wide range of colors can be defined.

[0024] The industry-standard color systems mentioned below can be understood as the Munsell color system described above, depending on the needs. Standards for color materials such as professional paints and markers can also be used. Of course, the above systems and standards are for reference only, not the only options, and do not limit the present invention.

[0025] Aiming at the clay industry, the present invention provides a clay color configuration system based on a color system, which includes a clay color configuration standard generation module and a clay color calling module.

[0026] like Figure 1 As shown, the clay color configuration standard generation module includes: The first color configuration generating unit 10 is used to determine the initial clay color and use it as a reference to form a first color configuration unit; The second color configuration generating unit 20 is configured to modulate the initial clay color based on the preset first configuration rule to form a secondary clay color, and to constitute a second color configuration unit; The third color configuration generating unit 30 is configured to modulate the initial clay color and the secondary clay color based on a preset second configuration rule to form a derived clay color, which constitutes a third color configuration unit; The clay color configuration standard generating unit 40 is configured to combine the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule.

[0027] like Figure 1 As shown, the clay color calling module includes: An option information generating unit 50 is configured to generate corresponding option information according to the standardized clay color in the clay color configuration standard; A selection result obtaining unit 60 is used to obtain the selection result made by the user from the option information; The clay color matching unit 70 is used to match the corresponding standardized clay color from the clay color configuration standard according to the selection result; The driving information generating unit 80 is configured to generate color driving information according to the corresponding standardized clay color.

[0028] For ease of understanding and explanation, the clay color configuration method of the present invention is explained and illustrated below in conjunction with the clay color configuration system based on the color system.

[0029] like Figure 2 As shown, when the clay color configuration method of the present invention is executed, the steps are as follows: S100: Determine the initial clay color and use it as a reference to form a first color configuration unit; S200: Based on the initial clay color, according to a preset first configuration rule, a secondary clay color is modulated to form a second color configuration unit; S300: Based on the initial clay color and the secondary clay color, a derivative clay color is modulated according to a preset second configuration rule to form a third color configuration unit; S400: Combining the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule.

[0030] The color system-based clay color configuration method of the present invention can be divided into two major parts. One part contains the process of generating clay color configuration standards, and the other part contains the process of calling clay colors based on the clay color configuration standards. These two processes correspond to the functions of the clay color configuration standard generation module and the clay color calling module in the color system-based clay color configuration system.

[0031] Specifically in the real-time example, when the clay color configuration method based on the color system begins to be implemented, the first color configuration generation unit 10 in the clay color configuration standard generation module will start working and execute step S100, that is, determining the initial clay color and using it as a reference to form a first color configuration unit.

[0032] In this step, the first color configuration generating unit 10 obtains relevant information including color information. After receiving and determining the initial clay color, the first color configuration unit uses the initial clay color as a reference to form a first color configuration unit.

[0033] The color information included in the above-mentioned relevant information may be two or more reference colors from a commonly used industry standard color system, such as the Munsell color system.

[0034] In one embodiment, the number of colors of the initial clay is N, where N is greater than or equal to 2 and is an integer; like Figure 3 As shown, the step S100 of determining the initial clay color and using it as a reference to form a first color configuration unit includes: S110: Determine N basic colors from a preset standard color system and define them as initial clay colors; S120: Constructing a first color configuration unit based on the N initial clay colors.

[0035] The first color profile generating unit 10 may include: An initial clay color determination module is used to determine N basic colors from a preset standard color system and define them as initial clay colors; The first color configuration forming module is used to form a first color configuration unit based on N initial clay colors.

[0036] The initial clay color determination module may further include: Color information acquisition component, used to obtain color information input by the user from outside the system; The initial clay color definition component is used to determine N basic colors from the color information obtained by the color information acquisition component and define them as initial clay colors.

[0037] Likewise, if Figure 4 As shown, step S110 may further include the following steps: S111: Obtaining color information input by the user from outside the system; S112: Determine N basic colors from the color information and define them as initial clay colors.

[0038] The above color information is selected by the user from a preset standard color system.

[0039] Specifically in the embodiment, when the clay color configuration method based on the color system begins to be implemented, the first color configuration generation unit 10 will sequentially execute steps S111 and S112 in step S110, that is, the color information acquisition component obtains the color information input by the user from outside the system, and the initial clay color definition component determines N basic colors from the color information and defines them as initial clay colors.

[0040] Afterwards, the first color configuration generating unit 10 executes step S120 , ie, the first color configuration forming module forms a first color configuration unit based on the N initial clay colors.

[0041] In the above embodiment, N is defined as the number of initial clay colors, and the value of N is greater than or equal to 2 and is an integer. The value of N can be an integer greater than 2, which corresponds to the embodiment that the number of initial clay colors is 2 or more.

[0042] For ease of understanding and explanation, the following explanation is given in conjunction with the specific number of color types and specific color types.

[0043] For example, when N is equal to 2, standard red and purple can be selected from the industry standard color system as basic colors and defined as initial clay colors. Subsequently, the first color configuration unit is constructed based on these two initial clay colors.

[0044] N can also be equal to 3. In this case, the basic colors can be selected from the industry standard color system, namely red, green, and blue, and these three basic colors are defined as the initial clay colors. Then, the first color configuration unit is formed based on these three initial clay colors.

[0045] Of course, N can also be 5. When N is 5, standard red, yellow, green, blue, and purple can be selected from the industry standard color system as basic colors and defined as initial clay colors. These five initial clay colors are then used as a basis to form the first color configuration unit.

[0046] Of course, in addition to the above three values, the value of N can also be other integer values ​​that fall within the range. The above three values ​​are only for illustration and do not constitute a limitation on the scope of protection of the present invention.

[0047] In one embodiment, the preset first configuration rule includes mixing the initial clay colors in pairs according to a preset ratio.

[0048] like Figure 5 As shown, based on the initial clay color, according to the preset first configuration rule, a secondary clay color is modulated to form a second color configuration unit, and step S200 includes: S210: Mixing N initial clay colors in pairs according to a preset ratio for modulation; S220: Modulating to form M secondary clay colors, and using them to form a second color configuration unit; Wherein, M is greater than or equal to 1 and is an integer.

[0049] The second color profile generating unit 20 may include: A secondary clay color modulation module is used to mix N initial clay colors in pairs according to a preset ratio for modulation; The second color configuration module is used to modulate and form M secondary clay colors, thereby forming a second color configuration unit.

[0050] Specifically in the real-time example, after the first color configuration generation unit 10 completes step S100, the second color configuration generation unit 20 starts to execute step 200, that is, based on the initial clay color, according to the preset first configuration rule, modulates to form a secondary clay color and constitutes a second color configuration unit.

[0051] Specifically, the secondary clay color modulation module mixes N initial clay colors in pairs according to a preset ratio for modulation. Then, the second color configuration formation module modulates M secondary clay colors to form the second color configuration unit.

[0052] In the above embodiment, M is defined as the type of secondary clay color. M is greater than or equal to 1 and is an integer. The value of M can be an integer value of 1 or greater, which corresponds to the embodiment that the number of secondary clay colors is 1 or more.

[0053] For ease of understanding and explanation, the following explanation is given in conjunction with the specific number of color types and specific color types.

[0054] When N is 2 and M is 1, the two initial clay colors are mixed and modulated to form a secondary clay color. For example, if the two initial clay colors are standard red and purple, respectively, the secondary clay color formed by mixing and modulating according to a preset ratio is purple-red. This secondary clay color is then used as the basis for forming the second color configuration unit.

[0055] When the value of N is 3, the value of M is also 3. For example, if the three initial clay colors are standard red, yellow, and green, the secondary clay colors formed by mixing two of them according to preset proportions are red-yellow, yellow-green, and red-green, respectively. These three secondary clay colors are then used as the basis to form the second color configuration unit.

[0056] When N is 5, M is also 5, meaning the five primary clay colors are mixed and modulated to form five secondary clay colors. For example, if the five primary clay colors are standard red, yellow, green, blue, and purple, then, according to preset proportions, the secondary clay colors formed by mixing two of them are red-yellow, yellow-green, blue-green, blue-purple, and purple-red, respectively. These five secondary clay colors are then used as the basis to form the second color configuration unit.

[0057] Of course, in addition to the above three values, the value of M can also take other integer values ​​that fall within the range. The above three values ​​are only for illustration and do not constitute a limitation on the scope of protection of the present invention.

[0058] In one embodiment, the preset second configuration rule includes at least a preset lightness value and / or hue value; like Figure 6 As shown, based on the initial clay color and the secondary clay color, according to the preset second configuration rule, a derivative clay color is modulated to form a third color configuration unit, step S300, including: S310: performing brightness adjustment and / or color mixing based on the initial clay color and the secondary clay color according to a preset brightness value and / or hue value; S320: Modulating to form W kinds of derived clay colors, and using them to form a third color configuration unit; Wherein, W is greater than or equal to 1 and is an integer.

[0059] The third color profile generating unit 30 may include: A derived clay color modulation module, configured to perform brightness adjustment and / or color mixing based on the initial clay color and the secondary clay color according to a preset brightness value and / or hue value; The third color configuration module is used to modulate and form W kinds of derived clay colors, thereby forming a third color configuration unit.

[0060] Specifically in the real-time example, after the second color configuration generation unit 20 completes step S200, the third color configuration generation unit 30 will start to execute step 300, that is, based on the initial clay color and the secondary clay color, according to the preset second configuration rule, modulate to form a derived clay color and constitute a third color configuration unit.

[0061] Specifically, the derived clay color modulation module performs brightness adjustment and / or color mixing based on the initial and secondary clay colors according to preset brightness and / or hue values. The third color configuration formation module then modulates W derived clay colors to form the third color configuration unit.

[0062] In the above embodiment, W is defined as the number of colors derived from the clay. W is an integer greater than or equal to 1. The value of W can be an integer greater than 1, which corresponds to the embodiment that the number of colors derived from the clay is 1 or more.

[0063] For ease of understanding and explanation, the following explanation is given in conjunction with the specific number of color types and specific color types.

[0064] In one embodiment, the value of W may be greater than the sum of the values ​​of M and N. For example, when the values ​​of M and N are both 5, based on the five initial clay colors and the five secondary clay colors, brightness adjustment and / or color mixing are performed to change the brightness and hue of the colors, resulting in 36 derived clay colors. An example is provided below to illustrate this.

[0065] Using red as the base color, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0066] (Rose red): [1-3%] (Red): [3-6%] (Orange-red): Red: Medium yellow [1-2:1-2], add [1-1.5%] (Dark pink): Rose red [0.1-0.5%] (Pink): Rose red [0.01~0.1%] (Meat powder): red [0.01~0.04%] (Skin color): Red: Yellow [0.5-1:2.5-5], Add [0.01-0.06%] (Ochre): Red: Yellow: Blue [0.1-0.3:0.1-0.2:0.01-0.02], add [2-3%] (Coffee): Rose red: Medium yellow: Black [1-1.5:0.5-1:0.1-0.5], add [2-3%] Using yellow as the base color, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0067] (Orange): Yellow: Red [1-6:0.6-1], add [1-3%] (Orange): Yellow: Red [3-10:0.1-0.3], add [1-3%] (Medium yellow): Medium yellow [1-3%] (Yellow): [1-3%] (Lemon yellow): green: yellow [0.001-0.002:1-1.998], add [1-2%] (Pear yellow): yellow [0.01~0.1%] (khaki): red: yellow: blue [0.1-0.3: 0.5-1.5: 0.001-0.02], add [1-3%] Taking green as the base color, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0068] (Bud Green): Green + Yellow, add [0.1-0.5%] (Pink green): Green: Yellow [1-3:3-10], add [0.1-0.2%] (Blue): Green: Yellow [1-5:0.2-2], add [0.1-0.5%] (Light green): green: yellow [0.1-0.5:2-4], add [1-3%] (Light green): green: yellow [0.5-1.5:3-10], add [1-3%] (Grass green): Green: Yellow [1:1], add [1-3%] (Green): [1-3%] (Dark green): green: yellow: black [3-6:0.5-1.5:0.05-0.15], add [1-3%] (Turquoise): Lake blue: Green [0.1-0.5:1-1.5], add [0.1-0.2%] Using blue as the base color, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0069] (Sky blue): [0.1~0.5%] blue (Light blue): [0.1-0.5%] Lake blue (Lake Blue): [0.5-1.5%] (Blue): [1-3%] (Mist Blue): Blue: Purple [2-3: 0.1-0.5], add [0.01-0.1%] Using green as the base color, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0070] (Light purple): blue: purple [0.1-0.5:2-3], add [0.01-0.1%] (Blue-purple): Blue: Purple [0.1-0.5:2-3], add [0.1-0.5%] (Purple): [0.1~0.5%] Using black and white as the base colors, the following derivative colors can be generated by adjusting the brightness and / or mixing colors in certain proportions.

[0071] (Black): [1-3%] (Gray): [0.1-0.5%] (White): [0] Among them, the above percentages refer to the color mixing ratio, and are all based on super light clay as the color material matrix.

[0072] Through the above scheme, the present invention can well solve the problems of limited color selection and poor color accuracy of ultra-light clay, and at the same time, it also solves the problem of differences between the ultra-light clay matrix and other color material matrices.

[0073] In one embodiment, the preset compilation rules include at least one or more of hue value, lightness value and saturation value.

[0074] like Figure 7 As shown, step S400 of forming a clay color configuration standard by combining the first color configuration unit, the second color configuration unit, and the third color configuration unit according to a preset compilation rule includes: S410: Generate a standard for a clay color classification model based on one or more of hue value, lightness value, and saturation value as a rule. S420: Integrate the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation model to form a clay color configuration standard.

[0075] The clay color configuration standard generating unit 40 may include: A clay color classification and compilation module is used to generate a standard for a clay color classification and compilation mode based on one or more of hue value, lightness value and saturation value as a rule; The clay color configuration standard forming module is used to integrate the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation mode to form a clay color configuration standard.

[0076] Specifically in the real-time example, after the third color configuration generation unit 30 completes step S300, the clay color configuration standard generation unit 40 begins executing step S400. Specifically, this can be understood as executing steps S410 and S420 described above in a step-by-step manner. That is, the clay color classification compilation module generates a standard for the clay color classification compilation model based on one or more of the hue value, lightness value, and saturation value as rules. Subsequently, the clay color configuration standard formation module integrates the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation model to form a clay color configuration standard.

[0077] By integrating the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standards of the clay color classification compilation model, it is possible to increase the variety of ultra-light clay colors while establishing a scientific color matching system.

[0078] At the same time, by implementing the technical solutions in the above embodiments, the color accuracy and purity of ultra-light clay during the production process can be effectively improved, and its color mixing performance can be significantly improved.

[0079] The first color configuration unit, the second color configuration unit, and the third color configuration unit mentioned above can be understood as a set consisting of N initial clay colors, a set consisting of M secondary clay colors, and a set consisting of W derived clay colors, respectively.

[0080] In one scenario, Figure 8 As shown, the step S420 of integrating the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation mode to form the clay color configuration standard includes: S421: For each of the N initial clay colors, the M secondary clay colors, and the W derived clay colors, a corresponding and unique numerical value or numerical value set is determined according to a preset compilation rule; S422: assigning a unique identifier to each unique numerical value or numerical value set, and a unique point in the clay color classification compilation model; S423: Gather all unique identifiers and unique points to form a clay color configuration standard.

[0081] Specifically in the real-time example, after the clay color configuration standard generation unit 40 completes step S410, the clay color configuration standard generation unit 40 will begin to sequentially execute steps S421, S422, and S423. The corresponding and unique numerical values ​​in steps S421 and S422 can be understood as one of the three values: hue, lightness, and saturation. The corresponding and unique numerical value set in steps S421 and S422 can be understood as a numerical value set consisting of at least two of the three values: hue, lightness, and saturation.

[0082] A unique identifier can be composed of a string of letters and numbers.

[0083] For example, the unique identifier of a color based on red can be composed of the letter string PR or R plus a unique four-digit Arabic numeral.

[0084] The unique identifier of a color based on yellow can be composed of a letter string RY or Y plus a unique four-digit Arabic numeral.

[0085] The unique identifier of a color based on green can be composed of a letter string BG or G plus a unique four-digit Arabic numeral.

[0086] The unique identifier of a color based on blue can be composed of a letter string B plus a unique four-digit Arabic numeral.

[0087] The unique identifier of a color based on purple can be composed of a letter string BP or P plus a unique four-digit Arabic numeral.

[0088] The unique identifier of a color based on black and white can be composed of a letter string L plus a unique two-digit Arabic numeral.

[0089] Each of the above unique identifiers corresponds to a unique point in the clay color configuration standard.

[0090] The above-mentioned four-digit Arabic numerals or two-digit Arabic numerals may be numerical values ​​corresponding to various colors in an industry standard color system.

[0091] like Figure 9 As shown, in one embodiment, the method for configuring clay color based on a color system further includes the following steps: S500: Generate corresponding option information according to the standardized clay color in the clay color configuration standard.

[0092] Specifically in the embodiment, after the clay color configuration standard generation unit 40 in the clay color configuration standard generation module executes step S400, the option information generation unit 50 in the clay color calling module will then execute step S500, that is, generating corresponding option information according to the standardized clay color in the clay color configuration standard.

[0093] The option information may be understood as an option for the user to select.

[0094] like Figure 9 As shown, after the option information generating unit 50 executes step S500, the selection result acquiring unit 60, the clay color matching unit 70, and the driving information generating unit 80 sequentially execute the following steps: S600: Obtaining the selection result made by the user from the option information; S700: Matching a corresponding standardized clay color from the clay color configuration standard according to the selection result; S800: Generate color driving information according to the corresponding standardized clay color.

[0095] Among them, such as Figure 10 As shown, the step S800 of generating color driving information according to the corresponding standardized clay color further includes the following steps: S810: Analyzing color composition information of the corresponding standardized clay color; S820: Generate a color profile based on the color composition information to drive an external device to produce clay of a corresponding color.

[0096] The color composition information can be understood as the color's hue, lightness, and saturation. The corresponding standardized clay color is analyzed to generate the corresponding hue, lightness, and saturation values. These three values ​​together constitute the color profile described above. This color profile is then transmitted to an external device to assist in producing clay of the corresponding color.

[0097] Regarding the steps after the above step S500, specifically in the embodiment, rose red is taken as an example for illustration, assuming that the option information corresponding to rose red is preset to AB.

[0098] When the user selects option AB and completes the input of option information, the system will obtain the selection result of AB selected by the user; then, the system will match the corresponding standardized clay color as rose red from the clay color configuration standard based on option AB; then, the system will generate color driving information for the rose red color.

[0099] In one embodiment, the color system-based clay color configuration method further includes: Based on the material properties of the clay matrix and according to the preset color stabilization configuration rules, a color fixing and anti-fading component is modulated to form a color stabilization configuration unit.

[0100] Correspondingly, the clay color configuration standard generation module in the clay color configuration system based on the color system also includes: The color stabilization configuration generating unit is used to modulate and form a color-fixing and anti-fading component based on the material properties of the clay matrix and according to preset color stabilization configuration rules, and to form a color stabilization configuration unit.

[0101] The above-mentioned preset color stabilization configuration rule includes adding color stabilizer according to a preset ratio.

[0102] like Figure 11 As shown, specifically in the embodiment, when the clay color configuration method of the present invention is executed, the steps further include: S900: Based on the material properties of the clay matrix and according to the preset color stabilization configuration rules, a color-fixing and anti-fading component is modulated to form a color stabilization configuration unit.

[0103] Step S900 should be executed before step S400. After step S900 is executed, the content of step S400 will change as follows: S400: Combining the first color configuration unit, the second color configuration unit, the third color configuration unit, and the color stability configuration unit to form a clay color configuration standard according to a preset compilation rule.

[0104] The color stabilizer is a substance suitable for ultra-light clay materials and can prevent color fading and prevent the color paste and other sensitive components from fading or degradation due to ultraviolet radiation. The substance can be certain sulfides, such as aluminum sulfide.

[0105] At the same time, color stabilizers can also improve color fastness through color retention factors and solve the problem of color fading, especially when in contact with the skin.

[0106] In addition, according to different needs and based on the characteristics of ultra-light clay itself, the addition ratio of color stabilizer can be divided into the first range area and the second range area to cope with different usage scenarios, such as different lighting conditions.

[0107] The addition ratio of the color stabilizer corresponding to the first range can be set between 1% and 3%, and the addition ratio of the color stabilizer corresponding to the second range can be set between 3% and 5%.

[0108] Specifically for specific use cases, the addition ratio within the first range of 1% to 3% provides basic UV protection, effectively reducing the potential impact of UV on the clay system. At this concentration, the additive has no significant effect on the texture and color of the clay, making it suitable for indoor environments with moderate UV protection requirements or short-term outdoor use.

[0109] The first range of additions, between 3% and 5%, further enhances UV protection while providing significant light-blocking and protection. This level is particularly well-suited for clay products exposed to light for extended periods, such as outdoor decorative items or artwork on permanent display. Higher additive levels not only optimize the clay formulation's UV resistance but also improve its overall durability.

[0110] Through the above scheme, the present invention can effectively optimize the anti-ultraviolet effect of the current ultra-light clay formula and ensure the stability and durability of the product in different environments.

[0111] Of course, the addition ratio of the above-mentioned color stabilizer will also change accordingly depending on the type of color stabilizer. That is, if the type of color stabilizer changes, the addition ratio range of the color stabilizer corresponding to the first range area and the addition ratio range of the color stabilizer corresponding to the second range area may also change accordingly.

[0112] Through the technical solutions in the above-mentioned multiple embodiments, the present invention can not only establish a scientific color matching method and system based on ultra-light clay, but also improve the anti-fading ability and anti-ultraviolet decomposition ability of ultra-light clay, thereby effectively improving the color stability of ultra-light clay.

[0113] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used in this specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.

[0114] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned 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] In addition, the above-described embodiments merely represent several implementation methods of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the patent. It should be noted that a person of ordinary skill in the art can make a number of variations, substitutions, and improvements without departing from the concept of the present invention, all of which should be included within the scope of protection of the present invention. Therefore, the scope of protection of the patent of the present invention should be based on the claims.

Claims

1. A clay color configuration method based on a color system, characterized in that: include: Determine the initial clay color and use it as a basis to form a first color configuration unit; Based on the initial clay color, according to a preset first configuration rule, a secondary clay color is modulated to form a second color configuration unit; Based on the initial clay color and the secondary clay color, a derivative clay color is modulated according to a preset second configuration rule to form a third color configuration unit; The first color configuration unit, the second color configuration unit, and the third color configuration unit are combined to form a clay color configuration standard according to a preset compilation rule.

2. The clay color configuration method based on the color system according to claim 1, characterized in that: The number of colors of the initial clay is N, where N is greater than or equal to 2 and is an integer; The step of determining the initial clay color and using it as a reference to form a first color configuration unit includes: Determine N basic colors from a preset standard color system and define them as the initial clay colors; A first color configuration unit is formed based on the N initial clay colors.

3. The clay color configuration method based on the color system according to claim 2, characterized in that: The preset first configuration rule includes mixing the initial clay colors in pairs according to a preset ratio; The step of modulating the initial clay color as a basis and forming a secondary clay color according to a preset first configuration rule to form a second color configuration unit includes: According to the preset ratio, the N initial clay colors are mixed in pairs for modulation; Modulating to form M kinds of secondary clay colors, and thereby forming a second color configuration unit; Wherein, M is greater than or equal to 1 and is an integer.

4. The clay color configuration method based on the color system according to claim 3, characterized in that: The preset second configuration rule at least includes a preset lightness value and / or hue value; The step of modulating the derived clay color based on the initial clay color and the secondary clay color according to a preset second configuration rule to form a third color configuration unit includes: According to the preset lightness value and / or hue value, based on the initial clay color and the secondary clay color, performing lightness adjustment and / or color mixing; Modulating to form W kinds of derived clay colors, and thereby forming a third color configuration unit; Wherein, W is greater than or equal to 1 and is an integer.

5. The clay color configuration method based on the color system according to claim 4, characterized in that: The preset compilation rules include at least one or more of hue value, lightness value and saturation value; The step of combining the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule includes: The standard for generating clay color classification patterns is based on one or more of hue, lightness, and saturation values ​​as rules. The first color configuration unit, the second color configuration unit, and the third color configuration unit are integrated according to the standard of the clay color classification compilation mode to form a clay color configuration standard.

6. The clay color configuration method based on the color system according to claim 5, characterized in that: The step of integrating the first color configuration unit, the second color configuration unit, and the third color configuration unit according to the standard of the clay color classification compilation model to form a clay color configuration standard includes: Determining a corresponding and unique numerical value or numerical value set for each of the N initial clay colors, the M secondary clay colors, and the W secondary clay colors according to the preset compilation rule; Assigning a unique identifier to each of the unique numerical values ​​or numerical value sets, and a unique location in the clay color classification compilation model; All the unique identifiers and the unique points are collected to form a clay color configuration standard.

7. The clay color configuration method based on the color system according to any one of claims 1 to 6, characterized in that: Also includes: Corresponding option information is generated according to the standardized clay color in the clay color configuration standard.

8. The clay color configuration method based on the color system according to claim 7, characterized in that: Also includes: Obtaining the selection result made by the user from the option information; Matching a corresponding standardized clay color from the clay color configuration standard according to the selection result; Color driving information is generated according to the corresponding standardized clay color.

9. The clay color configuration method based on the color system according to claim 8, characterized in that: Also includes: Based on the material properties of the clay matrix and according to the preset color stabilization configuration rules, a color fixing and anti-fading component is modulated to form a color stabilization configuration unit.

10. A clay color configuration system based on a color system, characterized in that: Including clay color configuration standard generation module and clay color calling module; The clay color configuration standard generation module includes: A first color configuration generating unit is used to determine the initial clay color and use it as a reference to form a first color configuration unit; A second color configuration generating unit is configured to modulate a secondary clay color based on the initial clay color according to a preset first configuration rule, and form the secondary clay color to constitute a second color configuration unit; a third color configuration generating unit, configured to modulate, based on the initial clay color and the secondary clay color, a derived clay color according to a preset second configuration rule, and form a third color configuration unit; The clay color configuration standard generation unit is used to combine the first color configuration unit, the second color configuration unit, and the third color configuration unit to form a clay color configuration standard according to a preset compilation rule. The clay color calling module includes: an option information generating unit, configured to generate corresponding option information according to the standardized clay color in the clay color configuration standard; A selection result obtaining unit, configured to obtain a selection result made by the user from the option information; A clay color matching unit, configured to match a corresponding standardized clay color from the clay color configuration standard according to the selection result; The driving information generating unit is configured to generate color driving information according to the corresponding standardized clay color.

Citation Information

Patent Citations

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    CN118006134A