A fiber yarn dyeing solution proportioning degree detection device

By designing a fiber yarn dye liquor ratio detection device, and using a water pumping component and an ultraviolet spectrophotometer for rapid spectral detection, the problem of traditional detection methods being unable to match the speed of the production line was solved, thus achieving rapid detection and improving production efficiency.

CN224399256UActive Publication Date: 2026-06-23GAO YAO SHI JIN YI XIAN WEI YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GAO YAO SHI JIN YI XIAN WEI YOU XIAN GONG SI
Filing Date
2025-07-02
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

Traditional methods for detecting the dye liquor ratio in fiber yarns cannot match the speed of the production line, leading to production line stagnation and increased time costs.

Method used

A device for detecting the dye liquor ratio of fiber yarn is designed. It uses a water pumping component and a detection component, and performs rapid spectral detection using an ultraviolet spectrophotometer to replace the traditional test tube operation, thereby realizing the rapid extraction and detection of the solution.

Benefits of technology

It enables rapid determination of whether the solution ratio meets the standard, reduces testing time, improves production line efficiency, and the device has a compact structure that is easy to operate and carry, and can be adapted to testing multiple ratio liquid tanks.

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Abstract

The utility model discloses a kind of fibre yarn dye liquor proportioning degree detection devices, including main plate, the handle is fixedly connected on the surface of main plate, main plate one end is provided with needle, main plate other end is provided with cover, cover surface is fixedly connected with pull ring, cover one end is fixedly connected with sealing block, sealing block is inserted in main plate, detection bin is opened in main plate, pumping assembly is provided in main plate, detection component is provided on main plate, needle is placed in proportioning tank interior, then pull ring is pulled, under the action of cover and sealing block, drive first pull rod and second pull rod to move, at this time, under the sealing effect of sealing rubber head, solution can be pumped into first glass tube and second glass tube interior by needle, wait for detection, shunt pipe and connecting pipe ensure that needle and first glass tube and second glass tube are interconnected, equipment is provided with first glass tube and second glass tube, can carry out two groups of detection, to reduce error.
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Description

Technical Field

[0001] This utility model relates to the field of dye liquor ratio detection technology, specifically a device for detecting the dye liquor ratio of fiber yarn. Background Technology

[0002] With the development of the textile industry, the dye liquor ratio of fiber yarns has a significant impact on product quality. Traditional dye liquor ratio testing often requires storing and transferring the solution in test tubes to a specific testing device. However, this method is not well-suited to the speed of production lines, requiring significant time for solution transfer and testing, leading to production line downtime and failing to effectively reduce time costs. Therefore, those skilled in the art have provided a fiber yarn dye liquor ratio testing device to address the problems mentioned in the background. Utility Model Content

[0003] The purpose of this invention is to provide a device for detecting the dye liquor ratio of fiber yarns, so as to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A fiber yarn dye liquor ratio detection device includes a main plate, a handle fixedly connected to the surface of the main plate, a needle provided at one end of the main plate, a cap provided at the other end of the main plate, a pull ring fixedly connected to the surface of the cap, a sealing block fixedly connected to one end of the cap, the sealing block being inserted into the main plate, a detection chamber opened inside the main plate, a water pumping component provided inside the main plate, and a detection component provided on the main plate.

[0006] Furthermore, the pumping assembly includes a diversion pipe, a first connecting pipe, a sealing rubber head, a first glass tube, a first pull rod, a second connecting pipe, a second glass tube, and a second pull rod. The diversion pipe is fixedly connected inside the main body plate, and the input end of the diversion pipe is connected to the needle.

[0007] Furthermore, a first connecting pipe is fixedly connected to the output end of the shunt tube, and a first glass tube is fixedly connected to one end of the first connecting pipe, with the first glass tube placed inside the detection chamber.

[0008] Furthermore, a sealing rubber head is slidably connected inside the first glass tube, and a first pull rod is fixedly connected to one end of the sealing rubber head, with one end of the first pull rod fixedly connected to the sealing block.

[0009] Furthermore, a second connecting pipe is fixedly connected to the second output end of the shunt tube, and a second glass tube is fixedly connected to one end of the second connecting pipe. The second glass tube is placed inside the detection chamber, and a second pull rod is slidably connected inside the second glass tube. One end of the second pull rod is fixedly connected to the sealing block.

[0010] Furthermore, the detection component includes a carrier plate, a control panel, an ultraviolet spectrophotometer generator, and an ultraviolet spectrophotometer receiver. The ultraviolet spectrophotometer receiver is fixedly connected to the bottom wall of the main body plate, and the ultraviolet spectrophotometer generator is fixedly connected to the top wall of the main body plate.

[0011] Furthermore, both the first and second glass tubes are located between the ultraviolet spectrophotometer generator and the ultraviolet spectrophotometer receiver.

[0012] By adopting the above technical solution

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. It can replace traditional test tubes for extracting and storing yarn dyeing solution. At the same time, it can be used with detection components to perform preliminary spectral detection of the solution. When the spectrum of a specific solution is determined, it can quickly determine whether the solution preparation is complete, thereby saving detection time and accelerating the efficiency of the production line.

[0015] 2. At the same time, this equipment is reasonably designed and has a compact structure. The main body plate integrates all the components together, making the whole device easy to operate and carry. It can realize the mobile testing of multiple proportioning liquid tanks, thereby speeding up the production progress. Attached Figure Description

[0016] Figure 1 A schematic diagram of the overall structure of a fiber yarn dye liquor ratio detection device;

[0017] Figure 2 A top-view cross-sectional schematic diagram of a fiber yarn dye liquor ratio detection device;

[0018] Figure 3 This is a frontal cross-sectional schematic diagram of a fiber yarn dye liquor ratio detection device;

[0019] Figure 4 In this utility model Figure 2 A magnified view of the structure at point A;

[0020] In the diagram: 1. Needle; 2. Main body plate; 3. Support plate; 4. Control panel; 5. Cap; 6. Pull ring; 7. Handle; 8. Diverter tube; 9. First connecting tube; 10. Sealing rubber head; 11. First glass tube; 12. First pull rod; 13. Detection chamber; 14. Sealing block; 15. Second connecting tube; 16. Second glass tube; 17. Second pull rod; 18. Ultraviolet spectrophotometer; 19. Ultraviolet spectrophotometer receiver. Detailed Implementation

[0021] To make the technical means, creative features, achieved objectives and effects of this utility model easier to understand, the present utility model is further described below in conjunction with specific embodiments. In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0022] Please see Figures 1-4 This utility model provides an embodiment of a fiber yarn dye liquor ratio detection device, including a main plate 2. A handle 7 is fixedly connected to the surface of the main plate 2. A needle 1 is provided at one end of the main plate 2, and a cover 5 is provided at the other end of the main plate 2. A pull ring 6 is fixedly connected to the surface of the cover 5. A sealing block 14 is fixedly connected to one end of the cover 5 and is inserted into the main plate 2. A detection chamber 13 is opened inside the main plate 2. A water pumping component is provided inside the main plate 2. A detection component is provided on the main plate 2. By using the water pumping component, the solution can be pumped into the device, and the detection component can perform spectral detection on the internal solution to effectively determine whether the formula solution meets the standard.

[0023] In this embodiment, the pumping assembly includes a diversion pipe 8, a first connecting pipe 9, a sealing rubber head 10, a first glass tube 11, a first pull rod 12, a second connecting pipe 15, a second glass tube 16, and a second pull rod 17. The diversion pipe 8 is fixedly connected inside the main body plate 2. The input end of the diversion pipe 8 is connected to the needle 1. The output end of the diversion pipe 8 is fixedly connected to the first connecting pipe 9. One end of the first connecting pipe 9 is fixedly connected to the first glass tube 11, and the first glass tube 11 is placed inside the detection chamber 13. The sealing rubber head 10 is slidably connected inside the first glass tube 11. One end of the sealing rubber head 10 is fixedly connected to the first pull rod 12, and one end of the first pull rod 12 is fixedly connected to the sealing block 14. The second output end of the diversion pipe 8 is fixedly connected to the second connecting pipe 15. One end of the connecting tube 15 is fixedly connected to a second glass tube 16, which is placed inside the detection chamber 13. A second pull rod 17 is slidably connected inside the second glass tube 16, and one end of the second pull rod 17 is fixedly connected to the sealing block 14. By placing the needle 1 inside the mixing tank and then pulling the pull ring 6, the first pull rod 12 and the second pull rod 17 can be moved under the action of the cap 5 and the sealing block 14. At this time, under the seal of the sealing rubber head 10, the solution can be drawn into the first glass tube 11 and the second glass tube 16 through the needle 1 for testing. The diversion tube 8 and the connecting tube can ensure that the needle 1 is connected to the first glass tube 11 and the second glass tube 16. The equipment is equipped with the first glass tube 11 and the second glass tube 16, which can perform two sets of tests, thereby reducing errors.

[0024] In this embodiment, the detection component includes a support plate 3, a control panel 4, an ultraviolet spectrophotometer 18, and an ultraviolet spectrophotometer receiver 19. The ultraviolet spectrophotometer receiver 19 is fixedly connected to the bottom wall of the main body plate 2, and the ultraviolet spectrophotometer 18 is fixedly connected to the top wall of the main body plate 2. The first glass tube 11 and the second glass tube 16 are both located between the ultraviolet spectrophotometer 18 and the ultraviolet spectrophotometer receiver 19. The ultraviolet spectrophotometer 18 emits detection wavelengths between 190nm and 900nm, and the ultraviolet spectrophotometer receiver 19 measures the absorbance of the solution at each integer wavelength. This can effectively determine whether the solution ratio meets the standard under a specific formula.

[0025] Place the needle 1 inside the mixing tank, then pull the pull ring 6. Under the action of the cap 5 and the sealing block 14, the first pull rod 12 and the second pull rod 17 will move. At this time, under the sealing action of the sealing rubber head 10, the solution can be drawn into the first glass tube 11 and the second glass tube 16 through the needle 1, waiting for detection. The shunt tube 8 and the connecting tube ensure that the needle 1 is connected to the first glass tube 11 and the second glass tube 16. The equipment is equipped with the first glass tube 11 and the second glass tube 16, which can perform two sets of detections to reduce errors. After the solution is extracted, start the detection component. The ultraviolet spectrophotometer 18 emits detection wavelengths between 190nm and 900nm, and the ultraviolet spectrophotometer receiver 19 measures the absorbance of the solution at each integer wavelength. In this way, it is possible to effectively determine whether the proportioned solution under a specific formula meets the standard.

[0026] This device can replace traditional test tubes for extracting and storing yarn dyeing solutions. It can also be used with detection components to perform preliminary spectral analysis of the solution. When the spectrum of a specific solution is determined, it can quickly determine whether the solution preparation is complete, thus saving detection time and accelerating the efficiency of the production line. At the same time, the device is reasonably designed and has a compact structure. The main body plate 2 integrates all the components, making the entire device easy to operate and carry. It can realize mobile detection of multiple mixing tanks, thereby speeding up the production process.

[0027] This specification describes embodiments, but not every embodiment contains only one independent technical solution. This way of describing the specification is only for clarity. Those skilled in the art should regard the specification as a whole. 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 device for detecting the dye liquor ratio of fiber yarn, comprising a main body plate (2), characterized in that, A handle (7) is fixedly connected to the surface of the main plate (2). A needle (1) is provided at one end of the main plate (2). A cover (5) is provided at the other end of the main plate (2). A pull ring (6) is fixedly connected to the surface of the cover (5). A sealing block (14) is fixedly connected to one end of the cover (5). The sealing block (14) is inserted into the main plate (2). A detection chamber (13) is opened inside the main plate (2). A water pumping component is provided inside the main plate (2). A detection component is provided on the main plate (2).

2. The fiber yarn dye liquor ratio detection device according to claim 1, characterized in that, The pumping assembly includes a diversion pipe (8), a first connecting pipe (9), a sealing rubber head (10), a first glass tube (11), a first pull rod (12), a second connecting pipe (15), a second glass tube (16), and a second pull rod (17). The diversion pipe (8) is fixedly connected inside the main body plate (2), and the input end of the diversion pipe (8) is connected to the needle (1).

3. The fiber yarn dye liquor ratio detection device according to claim 2, characterized in that, The output end of the shunt tube (8) is fixedly connected to a first connecting tube (9), one end of the first connecting tube (9) is fixedly connected to a first glass tube (11), and the first glass tube (11) is placed inside the detection chamber (13).

4. The fiber yarn dye liquor ratio detection device according to claim 3, characterized in that, A sealing rubber head (10) is slidably connected inside the first glass tube (11). One end of the sealing rubber head (10) is fixedly connected to a first pull rod (12), and one end of the first pull rod (12) is fixedly connected to the sealing block (14).

5. The fiber yarn dye liquor ratio detection device according to claim 4, characterized in that, The second output end of the shunt tube (8) is fixedly connected to a second connecting tube (15), and one end of the second connecting tube (15) is fixedly connected to a second glass tube (16). The second glass tube (16) is placed inside the detection chamber (13), and a second pull rod (17) is slidably connected inside the second glass tube (16). One end of the second pull rod (17) is fixedly connected to the sealing block (14).

6. The fiber yarn dye liquor ratio detection device according to claim 5, characterized in that, The detection assembly includes a carrier plate (3), a control panel (4), an ultraviolet spectrophotometer (18), and an ultraviolet spectrophotometer receiver (19). The ultraviolet spectrophotometer receiver (19) is fixedly connected to the bottom wall of the main body plate (2), and the ultraviolet spectrophotometer (18) is fixedly connected to the top wall of the main body plate (2).

7. The fiber yarn dye liquor ratio detection device according to claim 6, characterized in that, The first glass tube (11) and the second glass tube (16) are both located between the ultraviolet spectrophotometer (18) and the ultraviolet spectrophotometer receiver (19).