Airing box for detecting color fastness sample

By introducing sample positioning components and hollow grooves in the drying box, the problem of samples squeezing and contacting each other is solved, the accuracy and consistency of color fastness testing are achieved, and full contact between samples and the natural environment and light simulation are ensured, which improves the convenience and practicality of testing.

CN223413173UActive Publication Date: 2025-10-03青海省产品质量检验检测院(青海省食品检验检测院) +1
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Patent Information

Application Number
CN202422794873.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-16
Publication Date
2025-10-03
Estimated Expiration
2034-11-16

AI Technical Summary

Technical Problem

In the prior art, when testing color fastness samples, the samples are squeezed against each other and cannot fully contact the natural environment, resulting in inaccurate and inconsistent test results.

Method used

A drying box was designed, which included a sample positioning component, a hollow slot and a simulation component. The sample positioning component was used to fix and separate samples one by one, the hollow slot ensured that the samples were in contact with the natural environment, and the simulation component was used to simulate sunlight exposure to ensure the accuracy and consistency of the testing conditions.

Benefits of technology

By separating samples and simulating the natural environment, the accuracy and reliability of the test results are improved, ensuring that each sample is fully exposed to the natural environment, and achieving convenience and practicality of the test.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of airing boxes, in particular to an airing box for detecting a color fastness sample. The drying box aims at solving the technical problems that in the prior art, samples are squeezed mutually and cannot make full contact with the natural environment, and meanwhile detection is difficult to carry out due to the fact that no proper natural environment exists in the detection process. The utility model discloses an airing box for detecting a color fastness sample. The airing box comprises an airing box body and a sample positioning assembly, color fastness samples are fixed one by one through the liftable sample positioning assembly, the distance between the partition assemblies is adjusted according to the sizes of the samples, and after the samples are driven to enter the airing box body, the samples are prevented from making contact with or getting close to each other in the testing process, so that the consistency of testing results is guaranteed, a plurality of hollowed-out grooves are formed in the outer side of the airing box body, and the testing efficiency is improved. The gap of the hollow groove enables a color fastness sample to be in full contact with the external natural environment, sunlight irradiation is simulated through the simulation assembly, and when the natural environment cannot meet the detection requirement, it is ensured that the color fastness test can be accurately and effectively carried out.
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Description

Technical Field

[0001] The utility model relates to the field of drying boxes, in particular to a drying box used for color fastness sample testing. Background Art

[0002] Color fastness testing assesses the colorfastness of a material or fabric under varying conditions. This test is commonly used in the textile and dye industries to ensure that the product's color will not fade or change due to natural environmental conditions during use. The drying cabinet is a crucial piece of equipment used in color fastness testing to simulate exposure of the fabric or material to the natural environment.

[0003] For drying tests that involve color fading or changes caused by exposure to light or other environmental conditions, laboratories often stack samples for ease of placement. This causes samples to squeeze each other and prevent them from fully contacting the natural environment. In addition, the samples will affect each other, resulting in mixed samples and inability to obtain corresponding accurate test results. At the same time, color fastness sample testing is difficult to conduct without encountering an appropriate natural environment. Utility Model Content

[0004] In response to the shortcomings of the existing technology, the purpose of this utility model is to provide a drying box for color fastness sample testing. The drying box is intended to solve the technical problems in the existing technology that samples are squeezed against each other and cannot fully contact the natural environment, and at the same time, it is difficult to carry out the test without encountering an appropriate natural environment.

[0005] The technical solution of the utility model is: a drying box for color fastness sample testing, comprising a drying box body, a sample positioning component, a hollow groove, a partition component, and a simulation component; a sample positioning component is installed on the inside of the drying box body for facilitating the placement of color fastness samples and the raising and lowering of color fastness samples; a hollow groove is opened on the outside of the drying box body for allowing the color fastness samples to fully contact the natural environment; a partition component is installed on the inside of the hollow groove for separating each color fastness sample; a simulation component is installed on the inside of the drying box body for simulating sunlight exposure during testing.

[0006] Preferably, in the first step, the test personnel fix the color fastness samples one by one on the sample positioning assembly, and adjust the spacing of the partition assembly according to the sample size. The sample positioning assembly drives the color fastness samples into the drying box body. This design separates each color fastness sample to avoid contact or proximity during the test, ensuring the accuracy and reliability of the test results, and at the same time allowing each sample to be fully exposed, thereby ensuring the consistency of the test results; the second step, a plurality of hollow grooves are opened on the outside of the drying box body, and the gaps in the hollow grooves allow the color fastness samples to fully contact the external natural environment; the third step, if the natural environment does not meet the test requirements, a simulation assembly can be installed on the inside of the drying box body to simulate sunlight exposure. Common light source lamp options include ultraviolet lamps, incandescent lamps, xenon lamps, etc., to ensure that the color fastness test can be carried out accurately and effectively, and improve the convenience and practicality of the drying box test.

[0007] Preferably, the sample positioning assembly includes a handle, a drive synchronizing member, a linear drive mechanism, a cover plate, a positioning slot, a sample holder, and a transparent viewing plate. The drive synchronizing member is mounted on the inner top of the handle; a bilaterally symmetrical linear drive mechanism is mounted below the output shaft of the drive synchronizing member. When the drive synchronizing member mounted on the top of the handle is activated, a drive motor drives the toothed timing belt and timing pulley within the drive synchronizing member to transmit power, controlling the rotation of a threaded rod in the linear drive mechanism at the lower end.

[0008] Preferably, a cover plate is fixedly connected to the outer side of the threaded sleeve of the linear drive mechanism; a positioning groove is provided at the upper end of the cover plate; a transparent visual plate is engaged with the inner side of the positioning groove; sample clamps for stably clamping the sample are hung at equal intervals at the lower end of the transparent visual plate; the linear drive mechanism links the cover plate to rise, the tester places the color fastness sample into the sample clamp, and then the transparent visual plate and the sample are placed together in the positioning groove for stable positioning.

[0009] Preferably, the partition assembly includes a horizontal plate, a limiting slide and a partition; the outer side of the horizontal plate is fixedly connected to an equidistant internal limiting slide; the limiting slide and the inner side of another limiting slide are slidably connected to a partition for separating each sample; the partition adopts a "T"-shaped structure; the spacing between the partition assemblies is adjusted according to the sample size, the partition is inserted into the corresponding limiting slide, and the space inside the horizontal plate is reasonably planned.

[0010] Preferably, the simulation component includes a side wall cavity, an avoidance hole, an insert plate and a light source lamp; a side wall cavity is opened at the upper end of the drying box body; an avoidance hole is opened on the inner side of the side wall cavity; if the natural environment does not meet the detection requirements, a insert plate of the simulation component can be installed on the inner side of the side wall cavity of the drying box body, and the light source lamp passes through the avoidance hole to simulate sunlight irradiation on the sample.

[0011] Preferably, a "mouth"-shaped plug board is slidably connected to the inner side of the side wall cavity; a light source lamp is installed on the inner side of the plug board mounting groove; to ensure that the color fastness test can be carried out accurately and effectively, and to improve the convenience and practicality of the drying box test.

[0012] Beneficial effects of the utility model:

[0013] The utility model fixes each color fastness sample one by one through a liftable sample positioning component, and adjusts the spacing of the partition components according to the sample size. After the samples are driven into the drying box body, each color fastness sample is separated from each other to avoid contact or proximity during the test, thereby ensuring the accuracy and reliability of the test results, and also allowing each sample to be fully exposed, thereby ensuring the consistency of the test results. A plurality of hollow grooves are opened on the outside of the drying box body, and the gaps in the hollow grooves allow the color fastness samples to fully contact the external natural environment. The simulation component is used to simulate sunlight exposure, so that when the natural environment does not meet the detection requirements, it is ensured that the color fastness test can be carried out accurately and effectively. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 Shown is a schematic diagram of the three-dimensional structure of the drying box of the present invention;

[0015] Figure 2 Shown is another three-dimensional structural schematic diagram of the drying box of the present invention;

[0016] Figure 3 Shown is a schematic diagram of the cross-sectional structure of the drying box of the present invention;

[0017] Figure 4 What is shown is a schematic diagram of the three-dimensional structure of the simulated components of the drying box of the present invention.

[0018] Explanation of the accompanying reference numerals: 1. Drying box body; 2. Sample positioning assembly; 201. Handle; 202. Drive synchronization member; 203. Linear drive mechanism; 204. Cover plate; 205. Positioning groove; 206. Sample clamp; 207. Transparent visual panel; 3. Hollow groove; 4. Partition assembly; 401. Horizontal plate; 402. Limiting slide; 403. Partition; 5. Simulation assembly; 501. Side wall cavity; 502. Avoidance hole; 503. Insert plate; 504. Light source lamp. DETAILED DESCRIPTION

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] See also Figure 1The utility model provides an embodiment: a drying box for color fastness sample testing, comprising a drying box body 1, a sample positioning component 2, a hollow groove 3, a partition component 4, and a simulation component 5; the inside of the drying box body 1 is installed with a sample positioning component 2 for placing color fastness samples and raising and lowering color fastness samples; the outside of the drying box body 1 is provided with a hollow groove 3 for allowing the color fastness samples to fully contact the natural environment; the inside of the hollow groove 3 is installed with a partition component 4 for separating each color fastness sample; the inside of the drying box body 1 is installed with a simulation component 5 for simulating sunlight exposure during testing.

[0021] See also Figure 2 In this embodiment, the sample positioning assembly 2 includes a handle 201, a drive synchronizer 202, a linear drive mechanism 203, a cover 204, a positioning groove 205, a sample clamp 206 and a transparent viewing plate 207; the drive synchronizer 202 is installed on the top inner side of the handle 201; the linear drive mechanism 203 is installed at the lower end of the output shaft of the drive synchronizer 202 with a left-right symmetrical linear drive mechanism 203. The driving synchronizer 202 installed on the top of the starting handle 201 is driven by a driving motor that drives the toothed synchronous belt and synchronous wheel in the driving synchronizer 202 to transmit power, thereby controlling the rotation of the threaded rod in the linear drive mechanism 203 at the lower end. The outer side of the threaded sleeve of the linear drive mechanism 203 is fixedly connected to a cover plate 204; a positioning groove 205 is provided at the upper end of the cover plate 204; a transparent visual panel 207 is engaged with the inner side of the positioning groove 205; sample clamps 206 for stably clamping the sample are equidistantly suspended at the lower end of the transparent visual panel 207; the linear drive mechanism 203 is linked to the cover plate 204 to rise, and the tester places the color fastness sample into the sample clamp 206, and then the transparent visual panel 207 and the sample are placed together in the positioning groove 205 for stable positioning.

[0022] See also Figure 3 In this embodiment, the partition assembly 4 includes a horizontal plate 401, a limiting slide 402 and a partition 403; the outer side of the horizontal plate 401 is fixedly connected to an equidistant internal limiting slide 402; the limiting slide 402 and the inner side of another limiting slide 402 are slidably connected to a partition 403 for separating each sample; the partition 403 adopts a "T"-shaped structure; the spacing of the partition assembly 4 is adjusted according to the sample size, the partition 403 is inserted into the corresponding limiting slide 402, and the space inside the horizontal plate 401 is reasonably planned.

[0023] See also Figure 4In this embodiment, the simulation component 5 includes a side wall cavity 501, an avoidance hole 502, an insertion plate 503 and a light source lamp 504; a side wall cavity 501 is opened at the upper end of the drying box body 1; an avoidance hole 502 is opened on the inner side of the side wall cavity 501; if the natural environment does not meet the detection requirements, the insertion plate 503 of the simulation component 5 can be installed inside the side wall cavity 501 of the drying box body 1, and the light source lamp 504 passes through the avoidance hole 502 to simulate the sunlight on the sample, and a "mouth"-shaped insertion plate 503 is slidably connected to the inside of the side wall cavity 501; a light source lamp 504 is installed inside the installation groove of the insertion plate 503; to ensure that the color fastness test can be carried out accurately and effectively, and to improve the convenience and practicality of the drying box test.

[0024] During operation, first, the sample positioning assembly 2 is driven upward, and the driving synchronizer 202 installed on the top of the handle 201 is started. The driving motor drives the synchronous belt and synchronous wheel with a toothed structure in the driving synchronizer 202 to transmit power, and controls the threaded rod in the linear drive mechanism 203 at the lower end to rotate. The linear drive mechanism 203 is linked to the cover plate 204 to rise. The tester puts the color fastness sample into the sample clamp 206. Then, the transparent visual plate 207 together with the sample is put into the positioning groove 205 for stable positioning.

[0025] At the same time, the spacing between the partition components 4 is adjusted according to the sample size, the partitions 403 are inserted into the corresponding limiting slides 402, and the space inside the horizontal plate 401 is reasonably planned.

[0026] The sample positioning component 2 drives the color fastness sample into the drying box body 1. This design separates each color fastness sample to avoid contact or proximity during the test, ensuring the accuracy and reliability of the test results. At the same time, each sample is fully exposed to ensure the consistency of the test results.

[0027] When testing in a natural environment, a plurality of hollow grooves 3 are provided on the outside of the drying box body 1, and the gaps between the hollow grooves 3 allow the color fastness sample to fully contact the external natural environment.

[0028] If the natural environment does not meet the detection requirements, a plug-in board 503 of the simulation component 5 can be installed inside the side wall cavity 501 of the drying box body 1, and the light source lamp 504 passes through the avoidance hole 502 to simulate sunlight irradiation on the sample.

[0029] Through the above steps, each color fastness sample is fixed one by one through the liftable sample positioning component 2, and the spacing of the partition component 4 is adjusted according to the sample size. After the sample is driven into the drying box body 1, each color fastness sample is separated from each other to avoid contact or proximity during the test, ensuring the accuracy and reliability of the test results, and also allowing each sample to be fully exposed, thereby ensuring the consistency of the test results. A plurality of hollow grooves 3 are opened on the outside of the drying box body 1, and the gaps in the hollow grooves 3 allow the color fastness samples to fully contact the external natural environment. The simulation component 5 is used to simulate sunlight exposure, so that when the natural environment does not meet the detection requirements, it is ensured that the color fastness test can be carried out accurately and effectively.

[0030] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A drying box for color fastness sample testing, comprising a drying box body (1); characterized in that: The drying box body (1) further comprises a sample positioning component (2), a hollow groove (3), a partition component (4), and a simulation component (5); a sample positioning component (2) is installed on the inner side of the drying box body (1) for facilitating the placement of color fastness samples and for raising and lowering the color fastness samples; a hollow groove (3) is opened on the outer side of the drying box body (1) for allowing the color fastness samples to fully contact the natural environment; a partition component (4) is installed on the inner side of the hollow groove (3) for separating each color fastness sample; and a simulation component (5) is installed on the inner side of the drying box body (1) for simulating sunlight exposure during testing.

2. The drying box for color fastness sample testing according to claim 1, characterized in that: The sample positioning assembly (2) comprises a handle (201), a drive synchronizing member (202), a linear drive mechanism (203), a cover plate (204), a positioning groove (205), a sample clamp (206) and a transparent viewing plate (207); the drive synchronizing member (202) is mounted on the top inner side of the handle (201); and the linear drive mechanism (203) is mounted on the lower end of the output shaft of the drive synchronizing member (202) in a bilaterally symmetrical manner.

3. The drying box for color fastness sample testing according to claim 2, characterized in that: A cover plate (204) is fixedly connected to the outer side of the threaded sleeve of the linear drive mechanism (203); a positioning groove (205) is provided at the upper end of the cover plate (204); a transparent visual plate (207) is engaged with the inner side of the positioning groove (205); and sample clamps (206) for stably clamping the sample are hung at the lower end of the transparent visual plate (207) and are distributed at equal intervals.

4. The drying box for color fastness sample testing according to claim 1, characterized in that: The partition assembly (4) includes a transverse plate (401), a limiting slideway (402) and a partition (403); the outer side of the transverse plate (401) is fixedly connected to an equidistant internal limiting slideway (402); the limiting slideway (402) and the inner side of another limiting slideway (402) are slidably connected to a partition (403) for separating each sample; the partition (403) adopts a "T"-shaped structure.

5. The drying box for color fastness sample testing according to claim 1, characterized in that: The simulation component (5) comprises a side wall cavity (501), an avoidance hole (502), an inserting plate (503) and a light source lamp (504); the side wall cavity (501) is provided at the upper end of the drying box body (1); and the avoidance hole (502) is provided on the inner side of the side wall cavity (501).

6. The drying box for color fastness sample testing according to claim 5, characterized in that: A "mouth"-shaped plug-in plate (503) is slidably connected to the inner side of the side wall cavity (501); a light source lamp (504) is installed inside the mounting groove of the plug-in plate (503).