A fast-curing nanofiber composite impregnated paper surface coating device

CN224620328UActive Publication Date: 2026-08-11LANGFANG DEBILON NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-10
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种快速固化的纳米纤维复合浸渍纸表面涂覆装置,以解决上述背景技术中提出对于现在的复合浸渍纸在进行处理时,需要对表面涂覆的表层固化操作,传统的就是将其水平放置到紫外光位置进行照射固化操作,使得单面的照射使得固化的效率无法提高,且涂覆层还会让纸张形成湿润的情况,不对其进行干燥处理也会影响到后续使用的问题

Benefits of technology

本实用新型通过将纸体竖直向设置在配合底块的底面位置,让纸顶端水平卡接设置在卡接底槽的内部,对侧边的挤压螺杆转动操作后,使得一端顶接着挤压内板在卡接底槽的内部移动操作,让挤压内板挤压设置在纸体的侧边形成固定夹持操作,在固定住纸体后对控制面板设置操作使得控制着内气缸的输出端收缩运动,让输出端带动着伸缩立杆向下收缩运动后,带动着夹持住的纸体向下通过贯穿通槽的顶开口插入到内部,让纸张可以在贯穿通槽的内部缓慢向下移动处理,而在侧边的紫外线灯点亮后可以对纸张的涂覆层材料进行固化操作,而在向下移动后则可以通过加热管体加热到指导温度,让反热板将热量向中心位置反射操作,使得可以对纸张进行高温烘干处理,如此让纸张在贯穿通槽的内部上下往复式的移动操作后,则可以对纸张形成快速固化干燥处理,在采用了分体可拆卸式控制结构让其使用时更加的便捷,同时在结合了双重的固化干燥结构让其对浸渍纸的涂覆层处理更加的高效全面。

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Abstract

This utility model discloses a rapid-curing nanofiber composite impregnated paper surface coating device, relating to the field of nanofiber composite impregnated paper. It includes a support box with vertically symmetrically connected support rods on its bottom surface. A control panel is fixedly snapped onto one side of the support box. A vertically through-slot is formed on the top surface of the support box, and telescopic rods are vertically symmetrically connected to it. A fixed top rod is horizontally fixedly connected to the sides of the telescopic rods. A mating bottom block is horizontally fixedly connected to the bottom surface of the fixed top rod. A pressing screw is threaded onto one side of the mating bottom block. A bottom screw hole is symmetrically formed on the bottom surface of the support box, and a connecting screw is fixedly inserted into the top of the support rods. The device employs a split, detachable control structure for greater ease of use, and the combination of a dual curing and drying structure makes the coating treatment of the impregnated paper more efficient and comprehensive.
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Description

Technical Field

[0001] This utility model relates to the field of nanofiber composite impregnated paper technology, specifically a rapid curing nanofiber composite impregnated paper surface coating device. Background Technology

[0002] Impregnated paper is made from a mixture of non-woven wood pulp, PE, and plant fibers. It possesses superior absorbency and solvent resistance, and is widely used in cabinets, wardrobes, and composite flooring veneers. Nanofiber composite impregnated paper may be based on traditional impregnated paper, with the addition of nanofiber-related materials to enhance its performance.

[0003] When processing composite impregnated paper, the surface coating needs to be cured. Traditionally, the paper is placed horizontally under ultraviolet light for curing. However, this one-sided irradiation reduces the curing efficiency and also causes the paper to become damp. Failure to dry the paper will affect its subsequent use. Utility Model Content

[0004] The purpose of this invention is to provide a rapidly curing nanofiber composite impregnated paper surface coating device to solve the problem mentioned in the background art that when processing current composite impregnated paper, it is necessary to perform a surface coating curing operation. The traditional method is to place the paper horizontally in an ultraviolet light position for curing. However, this single-sided irradiation cannot improve the curing efficiency, and the coating layer will also make the paper wet. If it is not dried, it will affect the subsequent use.

[0005] To achieve the above objectives, this utility model provides the following technical solution: A rapid-curing nanofiber composite impregnated paper surface coating device includes a support box. Supporting rods are symmetrically vertically connected to the bottom surface of the support box. A control panel is fixedly snapped onto one side of the support box. A through slot is vertically formed on the top surface of the support box. Telescopic rods are symmetrically vertically connected to the top surface of the support box. Fixed top rods are horizontally fixedly connected to the sides of the telescopic rods. A mating bottom block is horizontally fixedly connected to the bottom surface of the fixed top rod. A pressing screw is threaded onto one side of the mating bottom block. Bottom screw holes are symmetrically formed on the bottom surface of the support box. A connecting rod is fixedly inserted into the top of the supporting rod. The screw has a mounting groove symmetrically opened on the top surface of the support box. A hardening box is horizontally and symmetrically fixed to the inner side of the through groove. A drying box is symmetrically fixed to the inner side of the through groove. An ultraviolet lamp is horizontally fixed to the inner side of the hardening box. A heat-reflecting plate is fixedly fixed to the inner side of the drying box. A heating tube is horizontally fixed to the inner side of the drying box. A mounting base block is fixedly installed at the bottom end of the telescopic upright. An inner cylinder is vertically fixed to the inner side of the telescopic upright. A locking groove is horizontally opened on the bottom surface of the mating base block. An extrusion inner plate is horizontally locked to the inner side of the locking groove.

[0006] In a preferred embodiment of this utility model, there are four support poles, which are arranged in parallel with each other. The top of the support poles is connected to the bottom opening of the bottom screw hole, and the through slot is vertically opened at the center of the top surface of the support box.

[0007] In a preferred embodiment of this utility model, there are two telescopic poles, which are arranged in parallel with each other. The bottom ends of the telescopic poles are connected to the top opening of the mounting groove, and the two ends of the fixed top rod are fixedly connected to the top side of the telescopic pole.

[0008] In a preferred embodiment of this utility model: the mating bottom block is horizontally fixed at the center of the bottom surface of the fixed top rod, one end of the extrusion screw extends to the inner side of the snap-fit ​​bottom groove, and the extended end is inserted into the center of the side of the extrusion inner plate. The bottom screw holes are symmetrically opened on the bottom surface of the support box near the four corners, and the top end of the connecting screw is threadedly connected to the inner side of the bottom screw hole.

[0009] In a preferred embodiment of this utility model: the mounting top groove is symmetrically opened at the center line of the top surface of the support box near both ends, the hardening box is horizontally and symmetrically fixed inside the through groove near the top and bottom openings, and the drying box is symmetrically fixed at the center of the two inner side walls of the through groove.

[0010] In a preferred embodiment of this utility model: the heat-reflecting surface of the heat-reflecting plate is located on the side near the heating tube body, and the bottom end of the mounting base is fixedly snapped into the inner side of the mounting top groove. The snap-in bottom groove is opened at the center line of the bottom surface of the mounting base, and both ends of the snap-in bottom groove extend through the side wall of the mounting base to the outside in an open shape.

[0011] Compared with the prior art, the beneficial effects of this utility model are: This invention vertically positions the paper against the bottom of a mating block, with the top of the paper horizontally engaged within a clamping groove. Rotating the side-mounted compression screw causes one end of the inner compression plate to move within the groove, clamping the paper against its side. Once the paper is secured, the control panel activates the output of the inner cylinder, causing it to retract. This retraction of the telescopic rod pulls the clamped paper downwards through the top opening of the through-slot, allowing the paper to pass through the groove. The paper slowly moves downwards for processing. When the ultraviolet lamps on the side are lit, the coating material on the paper is cured. After moving downwards, the heating tube heats the paper to a predetermined temperature, and the heat-reflecting plate reflects the heat towards the center, allowing for high-temperature drying. This reciprocating motion of the paper within the through-groove ensures rapid curing and drying. The separate, detachable control structure makes it more convenient to use, and the combined dual curing and drying structure makes the coating treatment of impregnated paper more efficient and comprehensive. Attached Figure Description

[0012] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 A three-dimensional structural schematic diagram of a rapidly curing nanofiber composite impregnated paper surface coating device; Figure 2 A schematic diagram showing the structural details of the three-dimensional cross-section of the support box of a rapidly curing nanofiber composite impregnated paper surface coating device; Figure 3 A schematic diagram showing the structural details of the three-dimensional cross-section of the hardened box body of a rapidly curing nanofiber composite impregnated paper surface coating device; Figure 4 A schematic diagram showing the structural details of the three-dimensional cross-section of the drying box of a rapid curing nanofiber composite impregnated paper surface coating device; Figure 5 This is a structural schematic diagram showing the connection details of the three-dimensional cross-section of the base block of a rapidly curing nanofiber composite impregnated paper surface coating device.

[0013] In the diagram: 1. Support box; 2. Support pole; 3. Control panel; 4. Through slot; 5. Telescopic pole; 6. Fixed top pole; 7. Matching bottom block; 8. Extrusion screw; 9. Bottom screw hole; 10. Connecting screw; 11. Mounting top slot; 12. Hardening box; 13. Drying box; 14. Ultraviolet lamp; 15. Heat reflector plate; 16. Heating tube; 17. Mounting bottom block; 18. Inner cylinder; 19. Snap-fit ​​bottom slot; 20. Extrusion inner plate. Detailed Implementation

[0014] Please see Figure 1 In this embodiment of the present invention, a rapidly curing nanofiber composite impregnated paper surface coating device includes a support box 1. Supporting rods 2 are vertically and symmetrically connected to the bottom surface of the support box 1. A control panel 3 is fixedly snapped onto one side of the support box 1. A through groove 4 is vertically opened on the top surface of the support box 1. There are four supporting rods 2, arranged parallel to each other. The top ends of the supporting rods 2 are correspondingly connected to the bottom opening of the bottom screw hole 9. The through groove 4 is vertically and through-hole-shaped at the center of the top surface of the support box 1. Telescopic rods 5 are vertically and symmetrically connected to the top surface of the support box 1. A fixed top rod 6 is horizontally fixedly connected to the side of the telescopic uprights 5. There are two telescopic uprights 5, and the two telescopic uprights 5 are arranged in parallel with each other. The bottom end of the telescopic uprights 5 is connected to the top opening end of the mounting top groove 11. The two ends of the fixed top rod 6 are fixedly connected to the top of the side of the telescopic uprights 5. The bottom surface of the fixed top rod 6 is horizontally fixedly connected to a mating bottom block 7. A pressing screw 8 is threadedly connected to one side of the mating bottom block 7. The mating bottom block 7 is horizontally fixedly located at the center of the bottom center line of the fixed top rod 6. One end of the pressing screw 8 extends to the inner side of the snap-fit ​​bottom groove 19, and the extended end is inserted into the center of the side of the pressing inner plate 20. Please see Figure 2-5In this embodiment of the present invention, a rapid curing nanofiber composite impregnated paper surface coating device is provided, wherein the bottom surface of the support box 1 is symmetrically provided with bottom screw holes 9, and the top end of the support rod 2 is fixedly inserted with a connecting screw 10. The bottom screw holes 9 are symmetrically provided on the bottom surface of the support box 1 near the four corners. The top end of the connecting screw 10 is threadedly connected to the inner side of the bottom screw hole 9. The top surface of the support box 1 is symmetrically provided with mounting top grooves 11. The inner side of the through groove 4 is horizontally and symmetrically fixedly fastened with a hardening box 12. The inner side of the through groove 4 is symmetrically fixedly fastened with a drying box 13. The mounting top grooves 11 are symmetrically provided on the top surface of the support box 1 near the two ends of the center line. The hardening boxes 12 are all horizontally and symmetrically fixedly provided on the inner side of the through groove 4 near the top and bottom openings. The drying boxes 13 are symmetrically fixedly provided in the through groove. At the center of the two inner side walls of 4, an ultraviolet lamp 14 is horizontally fixedly installed on the inner side of the hardened box 12, a heat-reflecting plate 15 is fixedly snapped onto the inner side of the drying box 13, a heating tube 16 is horizontally fixedly installed on the inner side of the drying box 13, an installation base block 17 is fixedly installed at the bottom end of the telescopic upright 5, an inner cylinder 18 is vertically fixedly installed on the inner side of the telescopic upright 5, a snap-fit ​​bottom groove 19 is horizontally opened on the bottom surface of the mating base block 7, the heat-reflecting surface of the heat-reflecting plate 15 is located on the side near the heating tube 16, the bottom end of the installation base block 17 is correspondingly fixedly snapped onto the inner side of the installation top groove 11, the snap-fit ​​bottom groove 19 is opened at the center line of the bottom surface of the mating base block 7, and both ends of the snap-fit ​​bottom groove 19 extend through the side wall of the mating base block 7 to the outside in an open shape, and a pressing inner plate 20 is horizontally snapped onto the inner side of the snap-fit ​​bottom groove 19.

[0015] The working principle of this utility model is as follows: The paper is vertically positioned on the bottom of the mating block 7, with the top of the paper horizontally clamped inside the clamping groove 19. After rotating the side-mounted extrusion screw 8, one end of the extrusion inner plate 20 moves inside the clamping groove 19, causing the extrusion inner plate 20 to press and clamp the paper on the side. After fixing the paper, the control panel 3 is operated to control the output end of the inner cylinder 18 to retract, causing the output end to drive the telescopic upright 5 to retract downward, which in turn drives the clamped paper downward through the top opening of the through groove 4 and inserts it into the interior. The paper can slowly move downward inside the through groove 4. When the ultraviolet lamp 14 on the side is lit, the coating material of the paper can be cured. After moving downward, the paper can be heated to the guide temperature by the heating tube 16, and the heat-reflecting plate 15 reflects the heat to the center, allowing the paper to be dried at high temperature. By moving the paper up and down repeatedly inside the through groove 4, the paper can be quickly cured and dried.

[0016] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A rapidly curing nanofiber composite impregnated paper surface coating device, comprising a support box (1), characterized in that, The bottom surface of the support box (1) is vertically symmetrically connected with support rods (2). A control panel (3) is fixedly snapped onto one side of the support box (1). A through slot (4) is vertically opened on the top surface of the support box (1). Telescopic rods (5) are vertically symmetrically connected to the top surface of the support box (1). A fixed top rod (6) is horizontally fixedly connected to the side of the telescopic rods (5). A mating bottom block (7) is horizontally fixedly connected to the bottom surface of the fixed top rod (6). A pressing screw (8) is threaded onto one side of the mating bottom block (7). A bottom screw hole (9) is symmetrically opened on the bottom surface of the support box (1). A connecting screw (10) is fixedly inserted into the top of the support rod (2). A mounting top slot is symmetrically opened on the top surface of the support box (1). (11) A hardened box body (12) is horizontally and symmetrically fixed to the inner side of the through groove (4). A drying box body (13) is symmetrically and fixed to the inner side of the through groove (4). An ultraviolet lamp (14) is horizontally fixed to the inner side of the hardened box body (12). A heat-reflecting plate (15) is fixed to the inner side of the drying box body (13). A heating tube body (16) is horizontally fixed to the inner side of the drying box body (13). An installation base block (17) is fixed to the bottom end of the telescopic pole (5). An inner cylinder (18) is vertically fixed to the inner side of the telescopic pole (5). A snap-fit ​​bottom groove (19) is horizontally opened on the bottom surface of the mating base block (7). An extrusion inner plate (20) is horizontally snap-fitted to the inner side of the snap-fit ​​bottom groove (19).

2. The rapidly curing nanofiber composite impregnated paper surface coating device according to claim 1, characterized in that, The number of the support poles (2) is four, and the four support poles (2) are arranged in parallel with each other. The top of the support poles (2) is connected to the bottom opening of the bottom screw hole (9), and the through groove (4) is vertically opened in the center of the top surface of the support box (1).

3. The rapidly curing nanofiber composite impregnated paper surface coating device according to claim 1, characterized in that, There are two telescopic poles (5), and the two telescopic poles (5) are arranged in parallel to each other. The bottom end of the telescopic pole (5) is connected to the top opening end of the mounting top groove (11), and the two ends of the fixed top rod (6) are fixedly connected to the top side of the telescopic pole (5).

4. The rapidly curing nanofiber composite impregnated paper surface coating device according to claim 1, characterized in that, The mating bottom block (7) is horizontally fixed at the center of the bottom surface of the fixed top rod (6). One end of the extrusion screw (8) extends to the inner side of the snap-fit ​​bottom groove (19), and the extended end is inserted into the center of the side of the extrusion inner plate (20). The bottom screw hole (9) is symmetrically opened on the bottom surface of the support box (1) near the four corners. The top end of the connecting screw (10) is threaded and connected to the inner side of the bottom screw hole (9).

5. The rapidly curing nanofiber composite impregnated paper surface coating device according to claim 1, characterized in that, The mounting groove (11) is symmetrically opened on the top surface of the support box (1) near both ends. The hardening box (12) is horizontally and symmetrically fixed on the inner side of the through groove (4) near the top and bottom openings. The drying box (13) is symmetrically fixed at the center of the two inner side walls of the through groove (4).

6. The rapidly curing nanofiber composite impregnated paper surface coating device according to claim 1, characterized in that, The heat-reflecting surface of the heat-reflecting plate (15) is located on the side near the heating tube body (16). The bottom end of the mounting block (17) is fixedly snapped into the inner side of the mounting top groove (11). The snap-in bottom groove (19) is opened at the center line of the bottom surface of the mating block (7), and the two ends of the snap-in bottom groove (19) extend through the side wall of the mating block (7) to the outside in an open shape.