Physical color card digital color matching device for textile pattern design

By designing and coordinating components such as auxiliary rods, brackets, and adjustment devices, stable support and angle adjustment of the display screen are achieved, solving the problem that the display screen cannot be adjusted in the existing technology, and improving the color matching accuracy and work efficiency of textile pattern design.

CN121497934APending Publication Date: 2026-02-10ZHEJIANG SCI-TECH UNIV
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Patent Information

Application Number
CN202511768714.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

In textile pattern design, existing digital color matching devices using physical color cards have an inability to adjust the angle of the display screen, leading to inconvenience in operation and affecting the accuracy and efficiency of color matching.

Method used

A device comprising an auxiliary rod, a bracket, a split screen, an adjustment device, a support device, and a clamping component is designed. Through the cooperation of these components, the parallel connection and angle adjustment of the display screen are realized, ensuring stable support and convenient operation of the display screen.

Benefits of technology

It improves the stability and ease of operation of the display screen, reduces eye fatigue for operators, and enhances color accuracy and work efficiency.

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Abstract

The invention discloses an entity color card digital color matching device for textile pattern design, and the structure of the entity color card digital color matching device comprises an auxiliary rod, a bracket, a first split screen, an adjusting device, a supporting device, a main screen and a second split screen. The first split screen, the main screen and the second split screen are effectively connected to the same straight line in parallel, the first split screen, the second split screen and the main screen are supported through the auxiliary rod and the support, and the phenomenon that the first split screen, the second split screen and the main screen fall down due to gravity is effectively prevented; the supporting device is installed on the rear sides of the first split screen, the second split screen and the main screen in parallel, the supporting effect is effectively achieved, and the first split screen, the second split screen and the main screen can be used at the same time.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of textile dyeing, in particular to a kind of entity color card digital color matching device for textile pattern design. BACKGROUND

[0002] With the vigorous development of color industry and the increasing refinement of market demand, accurate digital color matching technology has become the core competitiveness in this field. The rapid progress of color industry not only requires product color to be rich and varied, accurate, but also emphasizes the efficiency and cost control of production process. Under this background, color matching software emerges as the times require, which can automatically retrieve similar formulas in the database or predict new formulas based on algorithms by inputting target color data, greatly improving the work efficiency of color matching technicians and the accuracy of color matching. When using the entity color card digital color matching device, the following improvements are needed: When using the entity color card digital color matching device, the system database is established to calculate the automatic dyeing formula and formula dosage data of target color data by using intelligent recognition and matching algorithm, thereby improving the efficiency of textile color measurement and dyeing. Compared with manual color recognition and manual color matching operation, the overall work efficiency of the system is improved. When using the digital color matching device for card color matching, the single display screen is used for viewing and processing, which causes eye fatigue during textile pattern design, affecting the color matching result and reducing the color matching accuracy. In addition, when using multiple display screens, they are directly arranged in parallel on the same plane and cannot be adjusted in terms of display screen placement angle, so they are in a flat state. Therefore, the user needs to move left and right frequently during operation to check, which makes the equipment inconvenient to use and reduces the user's work efficiency in pattern design. SUMMARY

[0003] To overcome the shortcomings of the prior art, the present application is realized by the following technical solution: a kind of entity color card digital color matching device for textile pattern design, its structure includes auxiliary rod, support, first split screen, adjusting device, support device, main screen, second split screen, the auxiliary rod is provided with two and two auxiliary rods are respectively set up in the middle position of first split screen and second split screen, first split screen and second split screen are set up on the left and right sides of main screen by adjusting device, and the lower end of main screen is provided with support connected therewith, the upper end of support is connected with the bottom of support device, and support device is installed in parallel at the rear end of first split screen, main screen and second split screen, and is fixedly connected with auxiliary rod.

[0004] As a further optimization of the invention, the support device is provided with a clamping component, a linkage component, a fixed shaft, a locking component, and a sliding component. There are three clamping components, which are arranged in parallel on the same plane. The lower end of each of the three clamping components is fixedly connected to a locking component. The middle position of the rear end of each of the three clamping components is fixedly connected to a fixed shaft, and the three fixed shafts are connected together in series through a linkage component. A sliding component is provided at the middle position of two linkage components for movable connection.

[0005] As a further optimization of the invention, the clamping assembly includes a connector, a connecting rod, a fastening plate, a moving component, and a stabilizing connector. There are two connectors, and a connecting rod is connected through the two connectors. The two connectors are installed parallel to each other on the left and right sides of the stabilizing connector, and the moving component is connected through the left and right ends of the stabilizing connector. A fastening plate is provided in the middle of the stabilizing connector, and the fastening plate is in the shape of a "U" and is vertically connected to the middle of the stabilizing connector to form a "+" shape structure.

[0006] As a further optimization of the invention, the first and second split screens are respectively set on the left and right sides of the main screen through adjustment devices, and the first and second split screens and the main screen are supported by auxiliary rods and brackets, effectively preventing the first and second split screens and the main screen from falling due to gravity. The clamping components on the support device are installed in parallel on the rear side of the first and second split screens and the main screen, and the clamping components are fixedly connected with the auxiliary rods and brackets to effectively provide support. The distance between the first and second split screens and the main screen is adjusted by the cooperation of linkage components and sliding components. Then, the height between the first and second split screens and the main screen is adjusted by the moving components on the clamping components in cooperation with the fastening plates and stabilizing connectors.

[0007] As a further optimization of the invention, the two adjustment devices are positioned between the first split screen, the main screen, and the second split screen, thereby effectively connecting the first split screen, the main screen, and the second split screen in parallel on the same straight line, and adjusting the three to the same height through the cooperation of the auxiliary rod and the bracket.

[0008] As a further optimization of the invention, the three card-holding components are connected one-to-one to the first split screen, the main screen, and the second split screen. The linkage component moves through the sliding component to adjust the position between the three components under the action of the fixed axis.

[0009] As a further optimization of the invention, the stabilizing connector is fixedly connected to the first sub-screen, the main screen, and the second sub-screen via a joint. A vertical fastening plate is provided in the middle of the stabilizing connector. The fastening plate and the two joints form a cross-shaped structure on the back of the first sub-screen, the main screen, and the second sub-screen, effectively ensuring the support stability of the first sub-screen, the main screen, and the second sub-screen.

[0010] As a further optimization of the invention, the moving component includes a limiting block, an extension rod, a frame, an elastic element, a positioning port, and a body. There are six limiting blocks, which are symmetrically arranged on the left and right sides of the frame. Three elastic elements are provided on each side of the inner wall of the frame, and the end of the elastic element away from the frame is fixedly connected to the end of the limiting block. The outer end of the limiting block extends through into the positioning ports on both sides of the inner wall of the body. There are multiple positioning ports, which are symmetrically arranged on both sides of the inner wall of the body. The upper end of the body extends through into the extension rod, which is located inside the body for movement and adjustment.

[0011] As a further optimization of the invention, the main body is installed on the left and right sides of the stabilizing connector, and the extension rod moves and adjusts inside the main body. The limiting blocks on both sides of the extension rod will connect with the positioning port under the action of the elastic element. The extension rod is limited to the adjusted position by the cooperation between the positioning port and the limiting blocks.

[0012] As a further optimization of the invention, the adjusting device includes a tensioning component, a mounting plate, a guide assembly, a plug-in block, and a tensioning strip. The tensioning component is positioned between two mounting plates, and three tensioning strips inside the tensioning component are connected in parallel between the two mounting plates. The ends of the two mounting plates away from the tensioning component are fixedly connected to the plug-in block, and the guide assembly is installed in parallel on the top of the two mounting plates.

[0013] As a further optimization of the invention, the mounting plate is fixedly connected to the first split screen, the main screen, and the second split screen via a plug-in block. The first and second split screens can move inward and adjust under the action of the tensioning member. The tensioning member is corrugated in shape. When one end is subjected to force, it will retract inward, while the other end will extend outward, effectively cooperating with the first and second split screens to adjust to a bracket state on both sides of the main screen.

[0014] As a further optimization of the invention, the guide assembly includes a pull assembly, a mounting plate, a connecting guide rod, a rotating member, and movable heads. The pull assembly is located at the lower end of the rotating member, and the rotating member and the left and right sides of the pull assembly are connected to two movable heads to form a triangular structure. The ends of the two movable heads away from the connecting guide rod are fixedly connected to the mounting plate.

[0015] As a further optimization of the invention, the connecting guide rod and the rotating component are connected to form a curved structure between the two mounting plates. When the rotating component rotates, it can pull the connecting guide rod inward or outward, and the mounting plates on both sides will be pulled and adjusted accordingly.

[0016] As a further optimization of the invention, the pull assembly includes a tensioning composite, a spring rod, a pull rod, an elastic support plate, and movable seats. The tensioning composite has four parallel movable seats inside, and a spring rod is inserted into each of the four movable seats. The top of the tensioning composite is fitted with an elastic support plate, and pull rods are connected through the left and right sides of the tensioning composite.

[0017] As a further optimization of the invention, the tensioning composite is connected between two movable heads by two pull rods. The tensioning composite is adjusted by bending through the cooperation of its internal spring rod and movable seat, and the elastic support plate provided above it will play an auxiliary role in supporting the tensioning composite. Beneficial effects

[0018] This invention provides a digital color matching device for physical color cards used in textile pattern design, which has the following beneficial effects: This invention connects the first and second split screens to the left and right sides of the main screen via an adjustment device, effectively aligning the first, main, and second split screens in a straight line. Auxiliary rods and brackets further support the first and second split screens and the main screen, preventing them from sagging due to gravity. The support device is mounted parallel to the rear of the first, second, and main screens, providing effective support and allowing all three displays to be used simultaneously.

[0019] This invention involves mounting a first split screen, a second split screen, and a main screen onto three corresponding mounting components. Each of the three mounting components has a fixed shaft at the center of its back, and two linkage components connect the three fixed shafts. These two linkage components move left and right under the action of a sliding component to adjust the spacing between the three mounting components. This allows the first split screen, the second split screen, and the main screen to be equidistantly connected together under the action of the three mounting components. Furthermore, the moving components on the mounting components, under the action of the locking components, drive the stabilizing connectors to adjust the height between the first split screen, the second split screen, and the main screen to correspond to the user's position. This allows the operator to clearly view the color matching of the textile pattern design. The three displays can simultaneously show the required pages, thereby improving the accuracy of the color matching in the design.

[0020] This invention uses an adjusting device with mounting plates fixedly connected to a first split screen, a main screen, and a second split screen via plug-in blocks. Under the action of the plug-in blocks, one mounting plate connects to one side of the main screen, and the other connects to one side of the first and second split screens. The first and second split screens can move inwards to the left and right sides of the main screen under the action of a tensioning component. The tensioning component is corrugated; when one end is stressed, it retracts inwards, while the other end extends. The tensioning component has three internal tension strips that work together to restrain the mounting plates, effectively coordinating the inward adjustment of the first and second split screens to a bracket-like shape on both sides of the main screen. This facilitates the operator's viewing of the first, main, and second split screens, improving the ease of use of the device and the user's work efficiency in graphic design. Attached Figure Description

[0021] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 A schematic diagram of a digital color matching device for physical color cards used in textile pattern design; Figure 2 This is a schematic diagram of a three-dimensional structure of an improved support device.

[0022] Figure 3 This is a schematic diagram of a three-dimensional structure of an improved card-holding component.

[0023] Figure 4 This is a schematic diagram of a cross-sectional structure of an improved mobile component.

[0024] Figure 5 This is a top-view structural diagram of an improved adjustment device.

[0025] Figure 6 This is a schematic diagram of the internal structure of an improved guide component.

[0026] Figure 7 This is a schematic diagram of the internal structure of an improved pull-pull assembly.

[0027] In the diagram: Auxiliary rod-1, bracket-2, first split screen-3, adjustment device-4, support device-5, main screen-6, second split screen-7; 51. Holding component; 52. Linkage component; 53. Fixed shaft; 54. Positioning component; 55. Sliding component; Connector-511, Link-512, Fastening Plate-513, Moving Component-514, Stabilizing Connector-515; Limiting block-5141, extension rod-5142, card frame-5143, elastic element-5144, positioning port-5145, body-5146; Tensioner-41, Mounting plate-42, Guide assembly-43, Insertion block-44, Tie bar-45; Pull-up assembly-431, mounting plate-432, connecting guide rod-433, rotating component-434, movable head-435; Tension-and-joint composite parts-4311, spring rod-4312, pull rod-4313, elastic support plate-4314, movable seat-4315. Detailed Implementation

[0028] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments. Example

[0029] Please see Figures 1-4 , This invention provides a digital color matching device for physical color cards used in textile pattern design. A digital color matching device for physical color cards used in textile pattern design includes an auxiliary rod 1, a bracket 2, a first split screen 3, an adjustment device 4, a support device 5, a main screen 6, and a second split screen 7. Two auxiliary rods 1 are provided, each positioned between the first split screen 3 and the second split screen 7. The first split screen 3 and the second split screen 7 are positioned on the left and right sides of the main screen 6 via the adjustment device 4, and the lower end of the main screen 6 is connected to the bracket 2. The upper end of the bracket 2 is connected to the bottom of the support device 5, and the support device 5 is installed parallel to the rear ends of the first split screen 3, the main screen 6, and the second split screen 7, and is fixedly connected to the auxiliary rod 1.

[0030] The support device 5 is provided with a clamping component 51, a linkage component 52, a fixed shaft 53, a locking component 54, and a sliding component 55. There are three clamping components 51, and the three clamping components 51 are arranged in parallel on the same plane. The lower end of each of the three clamping components is fixedly connected to a locking component 54. The middle position of the rear end of each of the three clamping components 51 is fixedly connected to a fixed shaft 53, and the three fixed shafts 53 are connected together in series through the linkage component 52. A sliding component 55 is provided in the middle position of two linkage components 52 for movable connection.

[0031] The holding assembly 51 includes a connector 511, a connecting rod 512, a fastening plate 513, a moving assembly 514, and a stabilizing connector 515. There are two connectors 511, and the connecting rod 512 is connected through the two connectors 511. The two connectors 511 are installed in parallel on the left and right sides of the stabilizing connector 515, and the moving assembly 514 is connected through the left and right ends of the stabilizing connector 515. The fastening plate 513 is provided in the middle position of the stabilizing connector 515 and is in the shape of a "U" and is vertically connected to the middle position of the stabilizing connector 515 to form a "+" shaped structure.

[0032] The first split screen 3 and the second split screen 7 are respectively set on the left and right sides of the main screen 6 by the adjustment device 4, and the first split screen 3, the second split screen 7 and the main screen 6 are supported by the auxiliary rod 1 and the bracket 2, which effectively prevents the first split screen 3, the second split screen 7 and the main screen 6 from falling due to gravity. The clamping components 51 on the support device 5 are installed in parallel on the rear side of the first split screen 3, the second split screen 7 and the main screen 6, and the locking component 54 is fixedly connected to the auxiliary rod 1 and the bracket 2 to effectively provide support. The first split screen 3, the second split screen 7 and the main screen 6 are adjusted by the linkage component 52 and the sliding component 55. Then, the height between the first split screen 3, the second split screen 7 and the main screen 6 is adjusted by the moving component 514 on the clamping component 51 in conjunction with the fastening plate 513 and the stabilizing connector 515.

[0033] The two adjustment devices 4 are set between the first split screen 3, the main screen 6, and the second split screen 7, so that the first split screen 3, the main screen 6, and the second split screen 7 can be effectively connected in parallel on the same straight line, and the three can be adjusted to the same height by the cooperation of the auxiliary rod 1 and the bracket 2.

[0034] The three card-holding components 51 are connected one-to-one to the first split screen 3, the main screen 6, and the second split screen 7. The linkage component 52, under the action of the fixed axis 53, moves through the sliding component 55 to adjust the position between the three.

[0035] The stabilizing connector 515 is fixedly connected to the first split screen 3, the main screen 6, and the second split screen 7 via the connector 511. A vertical fastening plate 513 is provided in the middle of the stabilizing connector 515. The fastening plate 513 and the two connectors 511 form a cross-shaped structure on the rear side of the first split screen 3, the main screen 6, and the second split screen 7, effectively ensuring the support stability of the first split screen 3, the main screen 6, and the second split screen 7.

[0036] The moving component 514 includes a limiting block 5141, an extension rod 5142, a frame 5143, an elastic element 5144, a positioning port 5145, and a body 5146. There are six limiting blocks 5141, which are symmetrically arranged on the left and right sides of the frame 5143. There are three elastic elements 5144 connected to the inner sides of the frame 5143, and the end of the elastic element 5144 away from the frame 5143 is fixedly connected to the end of the limiting block 5141. The outer end of the limiting block 5141 extends through into the positioning ports 5145 on both sides of the inner wall of the body 5146. There are multiple positioning ports 5145, which are symmetrically arranged on both sides of the inner wall of the body 5146. The upper end of the body 5146 extends through the extension rod 5142, which is located inside the body 5146 for movement and adjustment.

[0037] The main body 5146 is installed on the left and right sides of the stabilizing connector 515. The extension rod 5142 moves and adjusts inside the main body 5146. The limiting blocks 5141 on both sides of the extension rod 5142 will connect with the positioning port 5145 under the action of the elastic member 5144. The extension rod 5142 is limited to the adjusted position by the cooperation between the positioning port 5145 and the limiting block 5141.

[0038] The working principle of the above technical solution is explained below: In use, the first split screen 3 and the second split screen 7 are respectively connected and installed on the left and right sides of the main screen 6 via the adjustment device 4, effectively connecting the first split screen 3, the main screen 6, and the second split screen 7 in parallel on the same straight line. The first split screen 3, the second split screen 7, and the main screen 6 are supported by the auxiliary rod 1 and the bracket 2, effectively preventing the first split screen 3, the second split screen 7, and the main screen 6 from sagging due to gravity. The clamping components 51 on the support device 5 are installed parallel to each other on the rear side of the first split screen 3, the second split screen 7, and the main screen 6. The locking components 54 are fixedly connected to the auxiliary rod 1 and the bracket 2, effectively providing support. The first split screen 3, the second split screen 7, and the main screen 6 are connected by the linkage component 52 and the sliding component. 55. Adjust the spacing between the three components, then fix the clamping component 51 to the first split screen 3, the second split screen 7, and the main screen 6. The stabilizing connector 515 on the clamping component 51 is fixedly connected to the first split screen 3, the main screen 6, and the second split screen 7 through the connector 511. A vertical fastening plate 513 is provided in the middle of the stabilizing connector 515. The fastening plate 513 and the two connectors 511 form a cross-shaped structure on the rear side of the first split screen 3, the main screen 6, and the second split screen 7, effectively ensuring the support stability of the first split screen 3, the main screen 6, and the second split screen 7. This allows the first split screen 3, the main screen 6, and the second split screen 7 to be connected on the same plane through the stabilizing connector 515 and the linkage component 52, and then connected by the clamping component. The movable component 514 on the 51 works with the fastening plate 513 and the stabilizing connector 515 to adjust the height between the first split screen 3, the second split screen 7, and the main screen 6. The main body 5146 on the movable component 514 is installed on the left and right sides of the stabilizing connector 515. The extension rod 5142 moves up and down inside the main body 5146. After moving to a certain position, the elastic element 5144 inside the clip frame 5143 at the lower end of the extension rod 5142 will generate a rebound force, pushing the limiting block 5141 outward. This causes the limiting blocks 5141 on both sides of the extension rod 5142 to connect with the positioning port 5145 under the action of the elastic element 5144. The positioning port 5145 and the limiting block 5141 cooperate with each other to limit the extension rod 5142 in the adjusted position. The first split screen 3, the second split screen 7, and the main screen 6 are positioned in their adjusted positions by the stabilizing connector 515. This allows all three displays to be used simultaneously, eliminating the need for the operator to frequently switch between screens for color testing and matching. The three displays can simultaneously show the required pages, presenting the target color, the material range and dye range of the dyed product, and the color matching combination required for the target color on three separate planes. This allows for the construction and processing of the matching, enabling the operator to clearly see the color matching requirements for the textile pattern design. This reduces eye strain and improves the accuracy of color matching in the design. Example

[0039] Please see Figures 5-7 , This invention provides a digital color matching device for physical color cards used in textile pattern design. The adjusting device 4 includes a tensioning component 41, a mounting plate 42, a guide assembly 43, a plug-in block 44, and a tension bar 45. The tensioning component 41 is positioned between two mounting plates 42, and the three tension bars 45 inside the tensioning component 41 are connected in parallel between the two mounting plates 42. The ends of the two mounting plates 42 away from the tensioning component 41 are fixedly connected to the plug-in block 44. The guide assembly 43 is installed in parallel on the top of the two mounting plates 42.

[0040] The mounting plate 42 is fixedly connected to the first split screen 3, the main screen 6, and the second split screen 7 via the plug-in block 44. The first split screen 3 and the second split screen 7 can move inward and adjust under the action of the tensioning member 41. The tensioning member 41 is corrugated. When one end is subjected to force, it will retract inward, while the other end will extend outward, effectively cooperating with the first split screen 3 and the second split screen 7 to adjust to a bracket state on both sides of the main screen 6.

[0041] The guide assembly 43 includes a pull assembly 431, a mounting plate 432, a connecting guide rod 433, a rotating member 434, and a movable head 435. The pull assembly 431 is located at the lower end of the rotating member 434, and the left and right sides of the rotating member 434 and the pull assembly 431 are connected to two movable heads 435 to form a triangular structure. The ends of the two movable heads 435 away from the connecting guide rod 433 are fixedly connected to the mounting plate 432.

[0042] The connecting guide rod 433 and the rotating component 434 are connected to form an arc-shaped structure between the two mounting plates 432. When the rotating component 434 rotates, it can pull the connecting guide rod 433 inward or outward, and the mounting plates 432 on both sides will be pulled and adjusted accordingly.

[0043] The pull assembly 431 includes a tensioning composite 4311, a spring rod 4312, a pull rod 4313, an elastic support plate 4314, and movable seats 4315. The tensioning composite 4311 has four parallel movable seats 4315 inside, and each of the four movable seats 4315 is inserted with a spring rod 4312. The top of the tensioning composite 4311 is fitted with an elastic support plate 4314, and pull rods 4313 are connected through the left and right sides of the tensioning composite 4311.

[0044] The tensioning composite 4311 is connected between two movable heads 435 by two pull rods 4313. The tensioning composite 4311 is adjusted by bending through the cooperation of its internal spring rod 4312 and movable seat 4315. The elastic support plate 4314 above it will play an auxiliary role in supporting the tensioning composite 4311.

[0045] The working principle of the above technical solution is explained below: In use, the mounting plate 42 on the adjusting device 4 is fixedly connected to the first split screen 3, the main screen 6, and the second split screen 7 via the plug-in block 44. Under the action of the plug-in block 44, one mounting plate 42 is connected to one side of the main screen 6, and the other is connected to one side of the first split screen 3 and the second split screen 7. The first split screen 3 and the second split screen 7 can move inwards to the left and right sides of the main screen 6 under the action of the tensioning member 41. The tensioning member 41 is corrugated; when one end is stressed, it retracts inwards, while the other end extends. Furthermore, the tensioning member 41 has three tensioning strips 45 inside, which work together with the tensioning member 41 to restrain the mounting plate 42, effectively coordinating... The first split screen 3 and the second split screen 7 are adjusted inwards on both sides of the main screen 6 to form a bracket shape. When the first split screen 3 and the second split screen 7 are adjusted, a guide component 43 is installed between the two mounting plates 42. The mounting plate 432 on the guide component 43 is fixedly connected to the mounting plate 42. When the first split screen 3 and the second split screen 7 are adjusted inwards, the corresponding mounting plate 432 will be moved by the movable head 435. The two connecting guide rods 433 connected to the two movable heads 435 are connected to the rotating part 434 to form an arc-shaped structure. It is set between the two mounting plates 432 through the movable head 435. The rotation of the rotating part 434 can pull the connecting guide rods 433 inwards or outwards. When the rotating component 434 is controlled, the mounting plates 432 on both sides will be moved and adjusted accordingly. The pull assembly 431 at the lower end of the rotating component 434 will deform and bend under the action of the mounting plates 432. The tensioning compound 4311 on the pull assembly 431 is located directly below the rotating component 434. The pull rods 4313 on both sides will be inserted into the two movable heads 435. The two movable heads 435 are pulled inward under the action of the connecting guide rod 433 and the rotating component 434. The pull rods 4313 will press the tensioning compound 4311 under the action of the movable heads. After being subjected to force, the tensioning compound 4311 will press the movable seat 4315. The spring rod 4312 inside and the movable seat 4315 cooperate with each other to open and close. The copy 4311 is adjusted by opening and closing, and the elastic support plate 4314 above it will play an auxiliary role in supporting the opening and closing copy 4311. When subjected to force, the opening and closing copy 4311 will deform and form a curved structure to cooperate with the two mounting plates 432 for adjustment. With the cooperation of the mounting plates 432, the mounting plate 42 can move and become tilted to move the first split screen 3 and the second split screen 7 inward. This will cause the first split screen 3, the main screen 6, and the second split screen 7 to form a bracket shape, instead of being directly at eye level. This will help the operator to view the first split screen 3, the main screen 6, and the second split screen 7, improve the ease of use of the equipment, and increase the user's work efficiency in pattern design.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0047] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider 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.

Claims

1. A digital color matching device for physical color cards used in textile pattern design, comprising an auxiliary rod (1), a bracket (2), a first split screen (3), an adjustment device (4), a support device (5), a main screen (6), and a second split screen (7). The auxiliary rod (1) consists of two rods, each positioned between the first split screen (3) and the second split screen (7). The first split screen (3) and the second split screen (7) are positioned on the left and right sides of the main screen (6) via the adjustment device (4), and the lower end of the main screen (6) is connected to the bracket (2). The upper end of the bracket (2) is connected to the bottom of the support device (5), and the support device (5) is installed parallel to the rear ends of the first split screen (3), the main screen (6), and the second split screen (7), and is fixedly connected to the auxiliary rod (1). The device is characterized by: The support device (5) is provided with a clamping component (51), a linkage component (52), a fixed shaft (53), a locking component (54), and a sliding component (55). There are three clamping components (51), and the three clamping components (51) are arranged in parallel on the same plane. The lower end of each of the three clamping components is fixedly connected to a locking component (54). The middle position of the rear end of each of the three clamping components (51) is fixedly connected to a fixed shaft (53), and the three fixed shafts (53) are connected together in series through the linkage component (52). The middle position of the two linkage components (52) is provided with a sliding component (55) for movable connection. The holding assembly (51) is provided with a connector (511), a connecting rod (512), a fastening plate (513), a moving assembly (514), and a stabilizing connector (515). There are two connectors (511) and a connecting rod (512) is connected through the two connectors (511). The two connectors (511) are installed in parallel on the left and right sides of the stabilizing connector (515) and the moving assembly (514) is connected through the left and right ends of the stabilizing connector (515). A fastening plate (513) is provided in the middle position of the stabilizing connector (515) and is connected to it. The fastening plate (513) is in the shape of a "U" and is vertically connected to the middle position of the stabilizing connector (515) to form a "+" shape. The first split screen (3) and the second split screen (7) are respectively set on the left and right sides of the main screen (6) by the adjustment device (4), and the first split screen (3), the second split screen (7), and the main screen (6) are supported by the auxiliary rod (1) and the bracket (2), which effectively prevents the first split screen (3), the second split screen (7), and the main screen (6) from falling due to gravity. The clamping components (51) on the support device (5) are installed in parallel on the first split screen (3), the second split screen (7), and the main screen (6). 6) On the rear side, the locking component (54) will be fixedly connected with the auxiliary rod (1) and the bracket (2) to effectively provide support. The first split screen (3), the second split screen (7), and the main screen (6) are adjusted by the linkage component (52) and the sliding component (55). Then, the height between the first split screen (3), the second split screen (7), and the main screen (6) is adjusted by the moving component (514) on the locking component (51) in conjunction with the fastening plate (513) and the stabilizing connector (515).

2. The digital color matching device for physical color cards used in textile pattern design according to claim 1, characterized in that: The two adjustment devices (4) are set between the first split screen (3), the main screen (6), and the second split screen (7), so that the first split screen (3), the main screen (6), and the second split screen (7) can be effectively connected in parallel on the same straight line, and the three can be adjusted to the same height by the cooperation of the auxiliary rod (1) and the bracket (2).

3. The digital color matching device for physical color cards used in textile pattern design according to claim 1, characterized in that: The three card-holding components (51) are connected one by one to the first split screen (3), the main screen (6), and the second split screen (7). The linkage component (52) moves through the sliding component (55) under the action of the fixed axis (53) to adjust the position between the three.

4. The digital color matching device for physical color cards used in textile pattern design according to claim 1, characterized in that: The stabilizing connector (515) is fixedly connected to the first sub-screen (3), the main screen (6), and the second sub-screen (7) through the connector (511). A vertical fastening plate (513) is provided in the middle of the stabilizing connector (515). The fastening plate (513) and the two connectors (511) form a cross-shaped structure on the back side of the first sub-screen (3), the main screen (6), and the second sub-screen (7), effectively ensuring the support stability of the first sub-screen (3), the main screen (6), and the second sub-screen (7).

5. A digital color matching device for physical color cards used in textile pattern design according to claim 1, characterized in that: The movable component (514) includes a limiting block (5141), an extension rod (5142), a frame (5143), an elastic element (5144), a positioning port (5145), and a body (5146). There are six limiting blocks (5141), symmetrically arranged on the left and right sides of the frame (5143). Three elastic elements (5144) are connected to each other on both sides of the inner side of the frame (5143), and the elastic elements (5144) are located away from the frame (5146). One end of 43) will be fixedly connected to the end of the limiting block (5141). The outer end of the limiting block (5141) will penetrate into the positioning ports (5145) on both sides of the inner wall of the body (5146). There are multiple positioning ports (5145) and multiple positioning ports (5145) are symmetrically arranged on both sides of the inner wall of the body (5146). The upper end of the body (5146) will penetrate into the extension rod (5142) and the extension rod (5142) will be located inside the body (5146) for movement and adjustment. The main body (5146) is installed on the left and right sides of the stabilizing connector (515). The extension rod (5142) moves and adjusts inside the main body (5146). The limiting blocks (5141) on both sides of the extension rod (5142) will connect with the positioning port (5145) under the action of the elastic element (5144). The extension rod (5142) is limited to the adjusted position by the cooperation between the positioning port (5145) and the limiting block (5141).

6. The digital color matching device for physical color cards used in textile pattern design according to claim 1, characterized in that: The adjusting device (4) is provided with a tensioning component (41), a mounting plate (42), a guide component (43), a plug-in block (44), and a tensioning strip (45). The tensioning component (41) is located between two mounting plates (42), and the three tensioning strips (45) inside the tensioning component (41) are connected in parallel between the two mounting plates (42). The end of the two mounting plates (42) away from the tensioning component (41) is fixedly connected to the plug-in block (44). The guide component (43) is installed in parallel on the top of the two mounting plates (42). The mounting plate (42) is fixedly connected to the first sub-screen (3), the main screen (6), and the second sub-screen (7) through the plug-in block (44). The first sub-screen (3) and the second sub-screen (7) can move inward and adjust under the action of the tensioning member (41). The tensioning member (41) is corrugated. When one end is subjected to force, it will retract inward, while the other end will extend outward. It effectively cooperates with the first sub-screen (3) and the second sub-screen (7) to adjust to the bracket state on both sides of the main screen (6).

7. A digital color matching device for physical color cards used in textile pattern design according to claim 6, characterized in that: The guide assembly (43) is provided with a pull assembly (431), a mounting plate (432), a connecting guide rod (433), a rotating part (434), and a movable head (435). The pull assembly (431) is located at the lower end of the rotating part (434), and the left and right sides of the rotating part (434) and the pull assembly (431) are connected to the two movable heads (435) to form a triangular structure. The ends of the two movable heads (435) away from the connecting guide rod (433) are fixedly connected to the mounting plate (432). The connecting guide rod (433) and the rotating member (434) are connected to form a curved structure between the two mounting plates (432). When the rotating member (434) rotates, it can pull the connecting guide rod (433) inward or outward, and the mounting plates (432) on both sides will be pulled and adjusted accordingly.

8. A digital color matching device for physical color cards used in textile pattern design according to claim 7, characterized in that: The pull assembly (431) is provided with a tensioning composite (4311), a spring rod (4312), a pull rod (4313), an elastic support plate (4314), and a movable seat (4315). The tensioning composite (4311) has four parallel movable seats (4315) inside, and each of the four movable seats (4315) is inserted with a spring rod (4312). The top of the tensioning composite (4311) is fitted with an elastic support plate (4314), and the left and right sides of the tensioning composite (4311) are connected with pull rods (4313). The tensioning composite (4311) is connected between two movable heads (435) by two pull rods (4313). The tensioning composite (4311) is adjusted by bending through the cooperation of its internal spring rod (4312) and movable seat (4315). The elastic support plate (4314) above it will play an auxiliary role in supporting the tensioning composite (4311).