A cut-resistant glove coating curing apparatus
The anti-cut glove coating curing device uses UV curing lamps and heat drying components to cure the rubber liquid on the glove surface, solving the problem of rubber liquid dripping and being unable to be recycled, and achieving efficient curing and resource reuse.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XINYA SAFETY TECH(HUAIAN) CO LTD
- Filing Date
- 2025-07-17
- Publication Date
- 2026-07-24
AI Technical Summary
In the current production process of cut-resistant gloves, the dripping of rubber liquid cannot be recovered, resulting in waste and low curing efficiency.
A cut-resistant glove coating curing device is used, which uses a UV curing lamp and a heat drying component to cure the rubber liquid on the surface of the glove. The dripping rubber liquid is recovered through a filter plate and cured using ultraviolet light and hot air. The heating temperature and light intensity are controlled by a temperature controller.
This enables the recycling of rubber liquid, improves curing efficiency, reduces waste, and increases production efficiency.
Smart Images

Figure CN224542183U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glove processing technology, specifically to a device for curing a coating on cut-resistant gloves. Background Technology
[0002] Gloves are a type of hand protection or work-related item, and can also be used for decoration. They can be classified according to their manufacturing methods, such as sewn, knitted, and dipped. There are many types of gloves, and depending on their purpose and material, they can be divided into: PVC gloves, latex gloves, insulating gloves, gauze gloves, etc.
[0003] Cut-resistant gloves are protective gear designed to protect hands from cuts. They effectively prevent cuts from sharp objects such as knives and glass shards. During the production process, rubber material is coated onto the fingers and palms, forming a protective film upon cooling, providing insulation and anti-slip properties. In existing technologies, after the cut-resistant gloves are immersed in the rubber liquid, they are removed and moved a considerable distance, causing the unadhesive rubber liquid to drip off and cool and solidify in cold water. This dripping rubber liquid cannot be recycled, resulting in waste. Therefore, a cut-resistant glove coating curing device is proposed. After immersion, the cut-resistant gloves move on a base and are cured by LED curing lamps and a heat-drying component. The dripping rubber liquid falls through a filter screen into the base for recycling and reuse. Utility Model Content
[0004] To address the problems in the existing technology, this utility model provides a cutting-resistant glove coating curing device. The cutting-resistant glove, after being dipped in the coating, moves on a base and is cured by an LED curing lamp and a heat drying component. The dripping rubber liquid falls into the base through a filter screen and can be recycled for reuse.
[0005] The technical solution adopted by this utility model to solve its technical problem is a coating curing device for anti-cut gloves, including a base and an electric heating wire. Heating components are equidistantly arranged at the bottom of the base. A filter screen plate is fixed to the top of the base by bolts. Side plates are welded to both ends of the top of the base. A UV curing lamp is fixed to the inner side of the side plate by bolts. A heat drying component is fixed through one side of the side plate by bolts. The heat-drying assembly includes a ventilation box that is bolted through and fixed to both sides of the side plate. Inside the ventilation box, fans are installed at equal intervals by mounting brackets. Inside the ventilation box on the side of the fans, electric heating tubes are fixed at equal intervals by bolts.
[0006] By adopting the above technical solution, when the cut-resistant glove moves on the base, the dripping rubber liquid falls into the base through the filter screen. The UV curing lamp works to irradiate ultraviolet light, and the fan works to blow out the hot air heated by the electric heating tube, which cures the rubber liquid on the surface of the cut-resistant glove.
[0007] Specifically, the heating assembly includes a stainless steel plate that is fixed at equal intervals to the bottom of the base by bolts, an electric heating wire that is fixed at equal intervals inside the stainless steel plate by bolts, and magnesium oxide powder that is filled inside the stainless steel plate outside the electric heating wire.
[0008] Specifically, a first thermostat is mounted on one end of the base via a mounting bracket. The detection end of the first thermostat is located inside the base, and the current output end of the first thermostat is electrically connected to the current input end of the heating wire via a power cord.
[0009] Specifically, a second thermostat is mounted on the top of the ventilation box via a mounting bracket. The detection end of the second thermostat is located inside the ventilation box, and the current output end of the second thermostat is electrically connected to the current input end of the electric heating tube via a power cord.
[0010] Specifically, the ventilation box has through holes equidistantly opened on one side, and a dustproof net is fixed inside the ventilation box on the fan side by bolts.
[0011] Specifically, one end of the base is connected to a drain valve via a pipe.
[0012] The beneficial effects of this utility model are: (1) The anti-cut glove coating curing device of the present invention moves the dipped material between the side plates at the top of the base. When moving between the side plates, the rubber liquid material dripping from the anti-cut glove falls into the base through the filter screen plate, so as to achieve the purpose of recycling it. The filter screen plate can prevent debris from falling into the base.
[0013] (2) The anti-cut glove coating curing device of this utility model, when the anti-cut glove after being dipped moves between the side plates, the UV curing lamp works to irradiate ultraviolet light, and the rubber liquid material on the anti-cut glove is fixed by the ultraviolet light source. The electric heating tube is heated by the second temperature controller, and the fan works to blow out the hot air heated by the electric heating tube. The rubber liquid material on the surface of the anti-cut glove is cured by the hot air. The rubber liquid material on the surface of the anti-cut glove is cured by light and heat, and the curing efficiency is high. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a cross-sectional view of the base of this utility model; Figure 3 This is a schematic diagram of the structure of the hot drying component of this utility model; In the diagram: 1. Base; 2. Side panel; 3. LED curing lamp; 4. Heat drying assembly; 401. Ventilation box; 402. Fan; 403. Electric heating element; 404. Dustproof net; 405. Through hole; 5. First temperature controller; 6. Second temperature controller; 7. Filter plate; 8. Heating assembly; 801. Stainless steel plate; 802. Electric heating wire; 803. Magnesium oxide powder; 9. Drain valve. Detailed Implementation
[0016] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0017] After being dipped in the rubber, the cut-resistant gloves move on the base and are cured by LED curing lights and a heat-drying component. Any dripping rubber liquid falls through a filter screen into the base for recycling and reuse. Figure 1-3 As shown, the present invention provides a coating curing device for anti-cut gloves, including a base 1 and an electric heating wire 802. Heating components 8 are equidistantly arranged at the bottom of the base 1. A filter screen 7 is fixed to the top of the base 1 by bolts. Side plates 2 are welded to both ends of the top of the base 1. A UV curing lamp 3 is fixed to the inner side of the side plate 2 by bolts. A heat drying component 4 is fixed through one side of the side plate 2 by bolts. The heat drying assembly 4 includes a ventilation box 401 that is bolted through and fixed to both sides of the side plate 2. Inside the ventilation box 401, fans 402 are installed at equal intervals by mounting brackets. Inside the ventilation box 401 on one side of the fans 402, electric heating tubes 403 are fixed at equal intervals by bolts.
[0018] When in use, as the cut-resistant glove moves on the base 1, the dripping rubber liquid falls into the base 1 through the filter screen 7. The UV curing lamp 3 works to irradiate ultraviolet light, and the fan 402 works to blow out the hot air heated by the electric heating tube 403, which cures the rubber liquid on the surface of the cut-resistant glove.
[0019] For example, such as Figure 2 As shown, the present invention also includes a heating component 8 comprising a stainless steel plate 801 fixed at equal intervals to the bottom of the base 1 by bolts, an electric heating wire 802 fixed at equal intervals inside the stainless steel plate 801 by bolts, and magnesium oxide powder 803 filling the interior of the stainless steel plate 801 outside the electric heating wire 802.
[0020] When in use, magnesium oxide powder 803 acts as insulation and heat conduction, which can transfer the temperature of the electric heating wire 802 to the stainless steel plate 801.
[0021] For example, such as Figure 1 , Figure 2 As shown, the present invention also includes a first thermostat 5 mounted on one end of the base 1 via a mounting bracket. The detection end of the first thermostat 5 is located inside the base 1, and the current output end of the first thermostat 5 is electrically connected to the current input end of the electric heating wire 802 via a power cord.
[0022] In use, the first thermostat 5 is used to control the heating of the electric heating wire 802 and its heating temperature.
[0023] For example, such as Figure 1 , Figure 3 As shown, the present invention also includes a second thermostat 6 mounted on the top of the ventilation box 401 via a mounting base. The detection end of the second thermostat 6 is located inside the ventilation box 401, and the current output end of the second thermostat 6 is electrically connected to the current input end of the electric heating tube 403 via a power cord.
[0024] During use, the heating of the electric heating element 403 and its heating temperature can be controlled by the second thermostat 6.
[0025] For example, such as Figure 3 As shown, the present invention also includes through holes 405 equidistantly opened on one side of the ventilation box 401, and a dustproof net 404 is fixed inside the ventilation box 401 on the side of the fan 402 by bolts.
[0026] When in use, the through hole 405 facilitates the expulsion of hot air from the ventilation box 401, and the dustproof net 404 prevents dust and other contaminants from entering the ventilation box 401.
[0027] For example, such as Figure 1 As shown, the present invention also includes a drain valve 9 connected to one end of the base 1 via a pipe.
[0028] When in use, opening the drain valve 9 will discharge the recycled rubber liquid material in the base 1.
[0029] When using this utility model, the device is installed on the anti-cut glove production line and connected to an external power source using a power cord. After being soaked, the material is moved between the side plates 2 at the top of the base 1. As it moves between the side plates 2, the rubber liquid that drips from the cut-resistant glove falls into the base 1 through the filter screen 7, thus achieving the purpose of recycling it. The filter screen 7 can prevent debris from falling into the base 1. The personnel set the set value of the first temperature controller 5 to control the heating of the electric heating wire 802. The magnesium oxide powder 803 absorbs the temperature after the electric heating wire 802 is heated and conducts it to the stainless steel plate 801, which can heat the rubber liquid material in the base 1 and prevent it from cooling down and solidifying. When the cut-resistant gloves, after being dipped in the material, move between the side plates 2, the UV curing lamp 3 is turned on to irradiate ultraviolet light. The ultraviolet light source fixes the rubber liquid on the cut-resistant gloves. The electric heating tube 403 is heated by the second temperature controller 6. The fan 402 is turned on to blow out the hot air heated by the electric heating tube 403. The hot air cures the rubber liquid on the surface of the cut-resistant gloves. The rubber liquid on the surface of the cut-resistant gloves is cured by light and heat, resulting in high curing efficiency.
[0030] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A device for curing a coating on cut-resistant gloves, characterized in that, Includes a base (1) and an electric heating wire (802). Heating components (8) are equidistantly arranged at the bottom of the base (1). A filter screen (7) is fixed to the top of the base (1) by bolts. Side plates (2) are welded to both ends of the top of the base (1). A UV curing lamp (3) is fixed to the inside of the side plate (2) by bolts. A heat drying component (4) is fixed through one side of the side plate (2) by bolts. The heat-drying assembly (4) includes a ventilation box (401) that is fixed to both sides of the side plate (2) by bolts. Inside the ventilation box (401), a fan (402) is installed at equal intervals by a mounting bracket. Inside the ventilation box (401) on one side of the fan (402), an electric heating tube (403) is fixed at equal intervals by bolts.
2. The anti-cut glove coating curing device according to claim 1, characterized in that, The heating assembly (8) includes a stainless steel plate (801) that is fixed at equal intervals to the bottom of the base (1) by bolts. An electric heating wire (802) is fixed at equal intervals inside the stainless steel plate (801) by bolts. The stainless steel plate (801) located outside the electric heating wire (802) is filled with magnesium oxide powder (803).
3. The anti-cut glove coating curing device according to claim 1, characterized in that, The base (1) has a first thermostat (5) mounted on one end via a mounting bracket. The detection end of the first thermostat (5) is located inside the base (1). The current output end of the first thermostat (5) is electrically connected to the current input end of the electric heating wire (802) via a power cord.
4. The anti-cut glove coating curing device according to claim 1, characterized in that, The ventilation box (401) is equipped with a second thermostat (6) on the top via a mounting base. The detection end of the second thermostat (6) is located inside the ventilation box (401). The current output end of the second thermostat (6) is electrically connected to the current input end of the electric heating tube (403) via a power cord.
5. The anti-cut glove coating curing device according to claim 1, characterized in that, The ventilation box (401) has through holes (405) equidistantly opened on one side, and a dustproof net (404) is fixed inside the ventilation box (401) on the side of the fan (402) by bolts.
6. The anti-cut glove coating curing device according to claim 1, characterized in that, One end of the base (1) is connected to a drain valve (9) via a pipe.