High-efficiency test box for testing yellowing resistance of shoe sole
By setting up light-transmitting grooves and concave lenses inside the test chamber, and installing columns and reflective foil, the problem of low efficiency in existing test chambers has been solved, enabling efficient testing of the yellowing resistance of multiple shoe soles.
Patent Information
- Application Number
- CN202520045149.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing shoe sole yellowing resistance testing chambers are inefficient in batch testing, unable to process multiple shoe soles simultaneously, resulting in excessively long testing times.
A placement plate is set inside the test chamber, and light-transmitting grooves and concave lenses are opened on the placement plate to increase the number of shoe soles placed. An installation column and reflective foil are set inside the chamber to improve the efficiency of ultraviolet irradiation. Magnets are used to connect the placement plate for easy disassembly and installation.
It increases the number of shoe soles that can be placed in a single test, enhances the intensity of ultraviolet radiation, simplifies the process of placing shoe soles, and improves testing efficiency.
Smart Images

Figure CN223730831U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of shoe sole production and testing equipment, and in particular to a high-efficiency test chamber for testing the yellowing resistance of shoe soles. Background Technology
[0002] After the soles are manufactured, a series of performance tests are required, including the yellowing resistance test. During the test, the intensity and duration of ultraviolet irradiation must be controlled. The soles are placed in a test chamber for irradiation. Due to the limitations of the internal structure, the existing test chambers can only test a limited number of soles at the same time, which makes batch testing time-consuming and inefficient. This needs to be improved. Utility Model Content
[0003] To address the shortcomings of the aforementioned technologies, this utility model provides a high-efficiency test chamber for testing the yellowing resistance of shoe soles. The chamber includes a body, a door, a pair of ultraviolet lamps, and a timing control device. The door is rotatably connected to the body. The pair of ultraviolet lamps are located on the top of the inner wall of the chamber. The timing control device is located on the body and connected to the pair of ultraviolet lamps. The chamber contains a placement plate for placing the shoe sole during testing. The placement plate has several light-transmitting grooves, each containing a concave lens. Several light-transmitting holes are also formed on the surface of the placement plate between adjacent light-transmitting grooves.
[0004] By adopting the above technical solution, a placement plate is set inside the chamber, and several light-transmitting slots are opened on the placement plate. Concave lenses are set in the light-transmitting slots, so that the soles to be tested can be placed on both the bottom surface of the chamber and the placement plate. This increases the number of soles that can be placed in a single test. At the same time, through the setting of light-transmitting slots and concave lenses, the soles placed on the bottom surface of the chamber can also be illuminated by the ultraviolet light emitted by the ultraviolet lamp tube at the top, avoiding being blocked by the soles on the placement plate, thus improving the efficiency of the test.
[0005] Further features of this invention: Several mounting columns are provided at the four corners of the box, and the light-transmitting plate is provided on the mounting columns. The mounting columns form light-transmitting areas on both side walls of the box, and reflective foil is provided on the side walls of the light-transmitting areas inside the box.
[0006] By adopting the above technical solution, since several mounting columns are provided at the four corners of the box, and the light-transmitting plate is set on several mounting columns, the several mounting columns form light-transmitting areas at the two side walls of the box, and reflective foil is provided on the side walls of the light-transmitting areas of the box, the light transmittance can be further improved, thereby increasing the amount of ultraviolet radiation received by the sole of the shoe at the bottom of the box.
[0007] A further feature of this invention is that a reflective foil is also provided on the bottom surface of the box.
[0008] By adopting the above technical solution, since reflective foil is also provided on the bottom surface of the box, the amount of ultraviolet radiation can be further increased.
[0009] A further feature of this invention is that each of the plurality of mounting columns is fixedly provided with a mounting plate, and the placement plate is detachably connected to the mounting plate.
[0010] By adopting the above technical solution, since each of the several mounting columns is fixedly equipped with a mounting plate, and the placement plate is detachably connected to the mounting plate, the placement plate can be taken out before the test, the shoe soles can be placed in batches, and then the placement plate can be put into the box, avoiding the problem of inconvenient placement of shoe soles due to the small internal space of the box.
[0011] A further feature of this invention is that each of the mounting plates is provided with a magnet, and the placement plate is also provided with a magnet at a position corresponding to the mounting plate.
[0012] By adopting the above technical solution, since magnets are provided on the mounting plate and magnets are also provided on the placement plate at the corresponding positions, the stability of the placement plate is improved while the placement plate can be easily disassembled. Attached Figure Description
[0013] Appendix Figure 1 This is a schematic diagram of the structure of a high-efficiency shoe sole yellowing resistance test chamber according to a specific embodiment of the present invention.
[0014] Appendix Figure 2 This is a partial structural diagram of a test chamber for testing the yellowing resistance of shoe soles, according to a specific embodiment of this utility model.
[0015] Appendix Figure 3 This is a partial structural diagram of a test chamber for testing the yellowing resistance of shoe soles, according to a specific embodiment of this utility model.
[0016] 1-Box body, 2-Box door, 3-UV lamp tube, 4-Timer control device, 5-Placement plate, 6-Light transmission groove, 7-Concave lens, 8-Light transmission hole, 9-Mounting column, 10-Light transmission area, 11-Reflective foil, 12-Mounting plate, 13-Magnet. Detailed Implementation
[0017] like Figure 1-3As shown, a high-efficiency shoe sole yellowing resistance test chamber includes a chamber body 1, a chamber door 2, a pair of ultraviolet lamps 3, and a timing control device 4. The chamber door is rotatably connected to the chamber body. The pair of ultraviolet lamps are located on the top of the inner wall of the chamber. The timing control device is located on the chamber body and connected to the pair of ultraviolet lamps. The chamber body is provided with a placement plate 5 for placing the shoe sole during testing. The placement plate has several light-transmitting grooves 6, and each of the light-transmitting grooves is provided with a concave lens 7. Several light-transmitting holes 8 are opened on the plate surface between adjacent light-transmitting grooves.
[0018] By setting a placement plate inside the chamber and creating several light-transmitting slots on the plate, and placing concave lenses within these slots, the soles to be tested can be placed on both the bottom surface of the chamber and the placement plate. This increases the number of soles that can be placed in a single test. Furthermore, the light-transmitting slots and concave lenses ensure that soles placed on the bottom surface of the chamber are also illuminated by the ultraviolet light emitted from the top ultraviolet lamp, preventing them from being blocked by the soles on the placement plate and improving testing efficiency.
[0019] The box is equipped with several mounting columns 9 at the four corners. The light-transmitting plate is set on the mounting columns. The mounting columns form light-transmitting areas 10 on both side walls of the box. The side walls of the light-transmitting areas are equipped with reflective foils 11.
[0020] Because the box is equipped with several mounting columns at the four corners, and the light-transmitting plate is set on several mounting columns, the mounting columns form light-transmitting areas on both side walls of the box. The side walls of the light-transmitting areas in the box are equipped with reflective foil, which can further increase the light transmittance and increase the amount of ultraviolet radiation received by the soles of the shoes at the bottom of the box.
[0021] Reflective foil is also provided on the bottom surface of the box.
[0022] Since reflective foil is also provided on the bottom surface of the box, the amount of ultraviolet radiation can be further increased.
[0023] Each of the plurality of mounting columns is fixedly provided with a mounting plate 12, and the placement plate is detachably connected to the mounting plate.
[0024] Since mounting plates are fixed on each of the mounting columns, and the placement plate is detachably connected to the mounting plate, the placement plate can be taken out before testing, the shoe soles can be placed in batches, and then the placement plate can be put into the box, avoiding the problem of inconvenient placement of shoe soles due to the small internal space of the box.
[0025] Each mounting plate is provided with a magnet 13, and the placement plate is also provided with a magnet at the position corresponding to the mounting plate.
[0026] Since magnets are provided on the mounting plates, and magnets are also provided on the placement plates at positions corresponding to the mounting plates, the stability of the placement plates is improved while also facilitating their disassembly.
Claims
1. A high-efficiency test box for testing the yellowing resistance of shoe soles, comprising a box body, a box door, a pair of ultraviolet lamp tubes and a timing control device, the box door is rotatably connected with the box body, the pair of ultraviolet lamp tubes are arranged on the top of the inner wall of the box body, and the timing control device is arranged on the box body and connected with the pair of ultraviolet lamp tubes, characterized in that: The box is internally provided with a placing plate for placing shoe sole during testing, a plurality of light transmission grooves are formed on the placing plate, and a concave lens is arranged in each light transmission groove. 2. The high efficiency shoe sole yellowing resistance performance test test chamber according to claim 1, characterized in that: A plurality of mounting columns are arranged at the positions of four corners in the box, the placing plate is arranged on the mounting columns, the mounting columns form light transmission zones at the positions of the two side walls in the box, and a reflective foil is arranged on the side walls of the light transmission zones in the box.
3. The high efficiency shoe sole yellowing resistance test test chamber according to claim 2, characterized in that: A reflective foil is also arranged on the bottom surface in the box.
4. The high efficiency shoe sole yellowing resistance test test chamber according to claim 2, characterized in that: Mounting plates are fixedly arranged on the mounting columns, and the placing plate is detachably connected with the mounting plates.
5. The high efficiency shoe sole yellowing resistance test test chamber according to claim 4, characterized in that: Magnets are arranged on the mounting plates, and magnets are also arranged at positions corresponding to the mounting plates on the placing plate.