Quick-dry school uniform and production method thereof
By designing foldable school badge and three-dimensional school badge coating on quick-drying school uniforms, and using specific printing equipment to perform multiple painting and drying treatments, the problems of school badge breakage during washing, low printing process and environmental pollution during environmental pollution are solved, and the long-term durability of school badges and efficient and environmental protection of the printing process are achieved.
Patent Information
- Application Number
- CN202510172580.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-23
AI Technical Summary
The school badges of existing quick-drying school uniforms are prone to damage when washed, and the printing process of three-dimensional school badges is inefficient and has serious environmental pollution.
A quick-drying school uniform was designed, with the school emblem adopting a foldable design, and the ink on the top of the film was printed with three-dimensional school emblem coating, and it was painted and dried multiple times through specific printing equipment to improve drying efficiency and reduce pollution of the ink evaporated gas.
The foldable design prevents the school badge from being damaged during washing. The three-dimensional school badge coating enhances the ornamentality and has luminous and waterproof effects. The printing equipment improves drying efficiency and reduces environmental pollution.
Smart Images

Figure CN120021817A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a quick-drying school uniform and a production method thereof, belonging to the technical field of school uniform production. Background Art
[0002] The quick-drying school uniform is a sports school uniform set, and the school badge on the general school uniform is directly printed on the front chest of the school uniform, and is embodied by three-dimensional printing, which makes the school badge more beautiful and stylish, and more ornamental. However, since the school badge is directly printed, it is impossible to remove the school badge when washing the school uniform, so the school badge is easily damaged after long-term repeated washing. In addition, the existing typesetting and printing of three-dimensional school badges are all carried out on a printing line. Because the three-dimensional school badge needs to be covered with ink for multiple times to have a three-dimensional effect, and there is no drying device on the printing line, natural air drying is adopted, and the efficiency is very low. In addition, the smell of the volatile ink during natural air drying will drift into the entire working environment, causing environmental pollution. In view of the above shortcomings, the present invention proposes a quick-drying school uniform and a production method thereof. Summary of the invention
[0003] In view of the deficiencies in the prior art, the object of the present invention is to provide a quick-drying school uniform and a production method thereof to solve the existing problems.
[0004] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical scheme: a quick-drying school uniform, whose structure includes a school uniform, and a school badge is fastened with a mother-and-child button at the chest of the school uniform, an exhaust mesh is sewn at the chest of the school uniform, and a plurality of bottom buttons are pressed in a circular array around the edges of the exhaust mesh, the school badge includes a base film, and a three-dimensional school badge coating is printed with ink on the top surface of the base film, and a plurality of surface buttons are pressed around the base film, and the school uniform is made of polyester fiber.
[0005] A further improvement is that the three-dimensional school emblem coating includes an adhesive bottom layer, and the top surface of the adhesive bottom layer is coated and covered multiple times to form a three-dimensional middle layer, and the top surface of the three-dimensional middle layer is coated and covered with a reflective layer, and the top surface of the reflective layer is coated and covered with a waterproof top layer, and the three-dimensional middle layer 222 has a thickness of 0.7-0.9mm.
[0006] A method for producing quick-drying school uniforms, further comprising a printing device for repeatedly painting a school badge to produce the three-dimensional school badge coating, the printing device comprising a frame, a box body is arranged on the top surface of the frame, a flap mechanism is arranged in the middle of the top surface of the box body, and a drying mechanism is arranged below the flap mechanism; The flap mechanism includes a flap seat, and a first rotating shaft and a second rotating shaft are longitudinally arranged in the middle of the front and rear ends of the flap seat, and the second rotating shaft is transmission-connected to a motor, and the top surface of the flap seat is movably clamped with a first discharge plate, and the bottom surface of the flap seat is movably clamped with a second discharge plate; The drying mechanism includes a drying box group, and a heating lamp is arranged in the upper cavity of the drying box group, and an air extractor is arranged in the right communicating cavity of the upper end of the drying box group, and the exhaust end of the air extractor is connected to an air filter through a hose; When the drying box group rises, the top peripheral edge of the drying box group and the bottom peripheral edge of the flap mechanism movably abut against each other to perform drying and sealing and to support the side force of the flap seat during printing.
[0007] A further improvement is that the box body includes a box body, and a flap opening is opened in the middle of the top surface of the box body, and mesh plate temporary storage grooves are opened on the left and right sides of the top surface of the box body, and the top surface of each mesh plate temporary storage groove is movable covered with a groove cover, and a box door is hinged on the front side of the box body.
[0008] A further improvement is that the flap seat includes a flap body, and a first clamping plate groove is opened in the middle of the top surface of the flap body, and a second clamping plate groove is opened in the middle of the bottom surface of the flap body, and the left and right grooves of the first clamping plate groove are threadedly connected with a plurality of first screw clamps for movably clamping and fixing the first discharge plate, and the left and right grooves of the second clamping plate groove are threadedly connected with a plurality of second screw clamps for movably clamping and fixing the second discharge plate.
[0009] A further improvement is that the motor rotates through the second rotating shaft to drive the flap body to flip by an angle of degrees each time, and a reciprocating flipping method is adopted.
[0010] A further improvement is that the first discharge plate includes a discharge plate body, and a discharge groove is provided in the middle of the top surface of the discharge plate body, and two clamping grooves are longitudinally provided on the left and right sides of the plate body, and a code adjustment seat is laterally arranged at the front end of the top surface of the discharge plate body, and a plurality of coders are movably sleeved on the code adjustment seat, and the first discharge plate has the same structure as the second discharge plate.
[0011] A further improvement is that the inner bottom surface of the discharge trough is coated with a self-adhesive coating for positioning and bonding the negative film plate.
[0012] A further improvement is that the drying box group includes a lifter, and a push plate is provided on the top surface of the lifter, and a plurality of telescopic slide rods are vertically provided on the side of the top surface of the push plate, a buffer oven is movably sleeved between the rod bodies of each telescopic slide rod, two springs are sleeved on the upper and lower ends of the rod body of each telescopic slide rod, and a telescopic plate is fixedly connected to the top surface between the rod bodies of each telescopic slide rod.
[0013] As a further improvement, an exhaust port for an exhaust fan set is provided on the right side of the upper end of the buffer oven cavity, and a sealing strip is provided on the top edge of the buffer oven, and the sealing strip is made of rubber.
[0014] As a further improvement, the vacuum pump and air filter are both existing technologies, and their structures are not described in detail here.
[0015] A further improvement is that each of the stencil temporary storage slots is provided with a printing stencil.
[0016] A further improvement is that the thickness of the three-dimensional middle layer is 0.1-0.13 mm each time it is printed, and six superimposed printings are required to obtain the required thickness of 0.7-0.9 mm.
[0017] The beneficial effects of the present invention are: The present invention provides a quick-drying school uniform and a production method thereof. The school badge on the school uniform is detachably designed, wherein the exhaust mesh cloth has an isolation effect on the base film, reduces the reverse osmosis of sweat, and the school badge can be prevented from being damaged by washing when the school uniform is washed. In addition, the three-dimensional printing design of the three-dimensional school badge coating composed of a bonding bottom layer, a three-dimensional middle layer, a reflective layer, and a waterproof top layer makes the three-dimensional school badge coating more three-dimensional, and has luminous and waterproof effects, and is more ornamental.
[0018] In addition, the present invention also proposes a processing equipment for producing and printing three-dimensional school emblem coatings. The equipment is composed of a frame, a box, a flip mechanism, and a drying mechanism. The flip mechanism can flip the coated film to the bottom surface by flipping it back and forth at an angle of 180 degrees, and dry it through the rising seal of the drying mechanism to improve the drying efficiency. In addition, the evaporated gas of the ink generated during drying can also be correspondingly extracted, filtered and then discharged to avoid the gas from floating around and polluting the environment. It can also achieve the effect of people not waiting for the machine during the drying operation, so that the printing process is smooth and efficient. In addition, the present invention also carries out a sealed temporary storage design for the printing screen to slow down the evaporation and air drying of the ink on the printing screen when not in use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the structure of a quick-drying school uniform of the present invention; Figure 2 It is a schematic diagram of the structure of the school uniform part of the present invention; Figure 3 It is a schematic diagram of the school emblem structure of the present invention; Figure 4 It is a schematic diagram of the internal structure of the printing device of the present invention; Figure 5 It is a schematic diagram of the top surface structure of the printing device of the present invention; Figure 6 It is a schematic diagram of the box structure of the present invention; Figure 7 This is a schematic diagram of the structure of the flap seat and the first discharge plate of the present invention; Figure 8 This is a schematic diagram of the structure of the flap mechanism of the present invention; Fig. 9 It is a schematic diagram of the drying mechanism structure of the present invention. DETAILED DESCRIPTION
[0020] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.
[0021] See also Figure 1-Figure 9 , the present invention provides a quick-drying school uniform and a production method thereof: Its structure includes a school uniform 1, and a school badge 2 is fastened with a mother-and-child button at the chest of the school uniform 1, a ventilation mesh 11 is sewn at the chest of the school uniform 1, and a plurality of bottom buttons 12 are pressed in a circular array around the edges of the ventilation mesh 11, the school badge 2 includes a bottom film 21, and a three-dimensional school badge coating 22 is printed with ink on the top surface of the bottom film 21, and a plurality of surface buttons 23 are pressed around the bottom film 21, and the school uniform 1 is made of polyester fiber.
[0022] The three-dimensional school emblem coating 22 includes an adhesive bottom layer 221, and the top surface of the adhesive bottom layer 221 is coated and covered multiple times to form a three-dimensional middle layer 222, and the top surface of the three-dimensional middle layer 222 is coated and covered with a reflective layer 223, and the top surface of the reflective layer 223 is coated and covered with a waterproof top layer 224, and the thickness of the three-dimensional middle layer 222 is 0.7-0.9mm.
[0023] Because the material of the school uniform 1 is polyester fiber, it is easier to dry quickly after students sweat and wet the school uniform 1 during exercise. Also, because the bottom surface of the school badge 2 is separated by a ventilation mesh 11, sweat is not easy to penetrate into the bottom film 21 of the school badge 2, causing the three-dimensional school badge coating 22 to delaminate due to long-term exposure to sweat. When the school uniform is washed, the school badge 2 can be separated by detaching the sub-buttons of each bottom button 12 and each surface button 23, so that the three-dimensional school badge coating 22 can be prevented from being washed together and damaged.
[0024] The adhesive bottom layer 221 is used as a primer for painting, and its main purpose is to enhance the bonding strength between the three-dimensional school emblem coating 22 and the bottom film 21, so as to prevent the three-dimensional middle layer 222 from being directly painted due to insufficient bonding strength and delamination.
[0025] The reflective layer 223 covers the top surface of the three-dimensional middle layer 222 , so that the three-dimensional middle layer 222 has a luminous effect when used at night, and the waterproof top layer 224 is a waterproof transparent layer to protect the reflective layer 223 .
[0026] It also includes a printing device 3 for repeatedly brushing the school emblem 2 to produce the three-dimensional school emblem coating 22, the printing device 3 includes a frame 31, and a box 32 is arranged on the top surface of the frame 31, and a flap mechanism 33 is arranged in the middle of the top surface of the box 32, and a drying mechanism 34 is arranged below the flap mechanism 33, the flap mechanism 33 includes a flap seat 331, and a first rotating shaft 332 and a second rotating shaft 333 are longitudinally arranged in the middle of the front and rear ends of the flap seat 331, and the second rotating shaft 333 is transmission-connected to a motor 334, and the top surface of the flap seat 331 is movably clamped with a first discharge material Plate 335, the bottom surface of the flap seat 331 is movably clamped with a second discharge plate 336, the drying mechanism 34 includes a drying box group 341, and a heating lamp 342 is arranged in the upper cavity of the drying box group 341, and an exhaust fan 343 is arranged in the connecting cavity on the right side of the upper end of the drying box group 341, and the exhaust end of the exhaust fan 343 is connected to an air filter 344 through a hose. When the drying box group 341 rises, the top peripheral edge of the drying box group 341 and the bottom peripheral edge of the flap mechanism 33 are movably abutted against each other to perform drying and sealing and to support the side of the flap seat 331 during printing.
[0027] The box body 32 includes a box body 321, and a flap opening 322 is opened in the middle of the top surface of the box body 321, and mesh plate temporary storage grooves 323 are opened on the left and right sides of the top surface of the box body 321. The top surface of each mesh plate temporary storage groove 323 is movably covered with a groove cover 324, and a box door 325 is hinged on the front side of the box body 321.
[0028] The flap seat 331 includes a flap body 3311, and a first clamping plate groove 3312 is opened in the middle of the top surface of the flap body 3311, and a second clamping plate groove 3312 is opened in the middle of the bottom surface of the flap body 3311, and the left and right grooves of the first clamping plate groove 3312 are threadedly connected with a plurality of first screw clamps 3314 for movably clamping and fixing the first discharge plate 335, and the left and right grooves of the second clamping plate groove 3312 are threadedly connected with a plurality of second screw clamps 3314 for movably clamping and fixing the second discharge plate 336.
[0029] The motor 334 rotates through the second rotating shaft 333 to drive the flap body 3311 to flip by 180 degrees each time, and adopts a reciprocating flipping method.
[0030] The first discharge plate 335 includes a discharge plate body 3351, and a discharge groove 3352 is provided in the middle of the top surface of the discharge plate body 3351, and two clamping grooves 3353 are longitudinally provided on the left and right sides of the plate body 3351, and a code adjustment seat 3354 is horizontally arranged at the front end of the top surface of the discharge plate body 3351, and a plurality of coders 3354 are movably sleeved on the code adjustment seat 3354. The first discharge plate 335 has the same structure as the second discharge plate 336.
[0031] The inner bottom surface of the discharge groove 3352 is coated with a self-adhesive coating for positioning and bonding the bottom film 21.
[0032] The drying box group 341 includes a lifter 3411, and a push plate 3412 is arranged on the top surface of the lifter 3411, and a plurality of telescopic slide rods 3413 are vertically arranged on the side of the top surface of the push plate 3412, and a buffer oven 3414 is movably sleeved between the rod bodies of each of the telescopic slide rods 3413, and two springs 3415 are sleeved on the upper and lower ends of the rod body of each of the telescopic slide rods 3413, and a telescopic plate 3416 is fixedly connected to the top surface between the rod bodies of each of the telescopic slide rods 3413.
[0033] An exhaust port 3417 for the exhaust fan 3413 is provided on the right side of the upper end of the buffer oven 3414 cavity, and a sealing strip 3418 is provided on the top edge of the buffer oven 3414, and the sealing strip 3418 is made of rubber.
[0034] Working principle: First, when printing, it is necessary to glue multiple negative films 21 at intervals on the self-adhesive coating in the discharge groove 3352 of the first discharge plate 335 and the second discharge plate 336, and then use the printing screen to clamp the multiple negative films 21 at the code 3354. The adhesive bottom layer 221 only needs to be painted once. The next key is to dry the coating. The motor 334 rotates through the second rotating shaft 333 to drive the flap body 3311 to flip 180 degrees, so that the newly painted negative film 21 is turned to the bottom surface, and then it rises through the lifter 3411 on the drying box group 341 to make the buffer The sealing strip 3418 on the top surface of the drying oven 3414 rises and buffers under the action of each spring 3415 to press against the peripheral edge of the bottom surface of the flap body 3311 for drying and sealing, and to support the side of the flap seat 331 during printing. During the buffering and resisting process of the drying box group 341, the heating lamp 342 will have an upward movement in the cavity of the buffer oven 3414, so that the distance between the heating lamp 342 and the film 21 is reduced, thereby improving the drying efficiency. During drying, the user can also paint the second discharge plate 336 without the need for people to wait for the machine, and the painting connection is smooth and efficient.
[0035] During drying, evaporated ink gas is generated at the upper end of the cavity of the buffer oven 3414. The evaporated ink gas is extracted by the vacuum pump 343 into the air filter 344 for filtration and then discharged.
[0036] In addition, the painting operations of the three-dimensional middle layer 222, the reflective layer 223, and the waterproof top layer 224 are the same as the above-mentioned method. The three-dimensional middle layer 222 needs to be repeatedly covered and painted 6 times to obtain the three-dimensional effect required by the three-dimensional middle layer 222. The reflective layer 223 and the waterproof top layer 224 only need to be painted once. When the printing screens of different inks are not in use, they are placed in the screen temporary storage slot 323 and covered with the slot cover 324, which effectively slows down the drying of the ink and the dispersion of the evaporation gas of the ink.
[0037] It should be noted that when the negative film 21 is turned over to the bottom surface of the flap body 3311, it will not fall off due to the adhesion of the adhesive, which is a conventional method used in printing.
[0038] In addition, the ink does not need to be completely dried each time a coating is applied, which can enhance the bonding strength between layers and prevent delamination. The heating time of the heating lamp 342 can be adjusted according to the characteristics of the ink. This is a conventional technology, and the adjustment switch of the heating lamp 342 will not be further explained here.
[0039] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the attached claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention. Any figure mark in the claims should not be regarded as limiting the claims involved.
[0040] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A quick-drying school uniform, characterized in that: The structure comprises a school uniform (1), wherein a school badge (2) is fastened with a mother-and-child button at the chest of the school uniform (1), an exhaust mesh (11) is sewn at the chest of the school uniform (1), and a plurality of bottom buttons (12) are pressed in a circular array around the periphery of the exhaust mesh (11), the school badge (2) comprises a bottom film (21), and a three-dimensional school badge coating (22) is printed with ink on the top surface of the bottom film (21), and a plurality of surface buttons (23) are pressed around the periphery of the bottom film (21), and the school uniform (1) is made of polyester fiber.
2. A quick-drying school uniform according to claim 1, characterized in that: The three-dimensional school emblem coating (22) comprises an adhesive bottom layer (221), the top surface of the adhesive bottom layer (221) is coated multiple times to form a three-dimensional middle layer (222), the top surface of the three-dimensional middle layer (222) is coated with a reflective layer (223), the top surface of the reflective layer (223) is coated with a waterproof top layer (224), and the thickness of the three-dimensional middle layer (222) is 0.7-0.9 mm.
3. A method for producing quick-drying school uniforms, characterized in that: The method comprises implementing a method for producing the quick-drying school uniform according to any one of claims 1 to 2, and further comprises a printing device (3) for producing the three-dimensional school badge coating (22) by brushing the school badge (2) multiple times, the printing device (3) comprising a frame (31), a box (32) being arranged on the top surface of the frame (31), and a flap mechanism (33) being arranged in the middle of the top surface of the box (32), and a drying mechanism (34) being arranged below the flap mechanism (33); The flap mechanism (33) comprises a flap seat (331), and a first rotating shaft (332) and a second rotating shaft (333) are longitudinally arranged in the middle of the front and rear ends of the flap seat (331), and the second rotating shaft (333) is drivingly connected to a motor (334), and a first discharge plate (335) is movably clamped on the top surface of the flap seat (331), and a second discharge plate (336) is movably clamped on the bottom surface of the flap seat (331); The drying mechanism (34) comprises a drying box group (341), wherein a heating lamp tube (342) is arranged in the upper cavity of the drying box group (341), and an air extractor (343) is arranged in the right communication cavity at the upper end of the drying box group (341), and the exhaust end of the air extractor (343) is connected to an air filter (344) via a hose; When the drying box group (341) rises, the top peripheral edge of the drying box group (341) and the bottom peripheral edge of the flap mechanism (33) move against each other to perform drying and sealing, and to support the side of the flap seat (331) during printing.
4. The method for producing quick-drying school uniforms according to claim 3, characterized in that: The box body (32) comprises a box body (321), wherein a flap opening (322) is provided in the middle of the top surface of the box body (321), and screen temporary storage slots (323) are provided on the left and right sides of the top surface of the box body (321), and the top surface of each screen temporary storage slot (323) is movably covered with a slot cover (324), and a box door (325) is hingedly connected to the front side surface of the box body (321).
5. The method for producing quick-drying school uniforms according to claim 4, characterized in that: The flap seat (331) comprises a flap body (3311), a first clamping plate groove (3312) is provided in the middle of the top surface of the flap body (3311), and a second clamping plate groove (3312) is provided in the middle of the bottom surface of the flap body (3311), the left and right grooves of the first clamping plate groove (3312) are threadedly connected to a plurality of first screw clamps (3314) for movably clamping and fixing the first discharge plate (335), and the left and right grooves of the second clamping plate groove (3312) are threadedly connected to a plurality of second screw clamps (3314) for movably clamping and fixing the second discharge plate (336).
6. The method for producing quick-drying school uniforms according to claim 5, characterized in that: The motor (334) rotates through the second rotating shaft (333) to drive the flap body (3311) to flip by 180 degrees each time, and adopts a reciprocating flipping method.
7. The method for producing quick-drying school uniforms according to claim 6, characterized in that: The first discharge plate (335) comprises a discharge plate body (3351), a discharge groove (3352) is provided in the middle of the top surface of the discharge plate body (3351), and two clamping grooves (3353) are longitudinally provided on the left and right sides of the material plate body (3351), a yard adjustment seat (3354) is transversely arranged at the front end of the top surface of the discharge plate body (3351), and a plurality of yards (3354) are movably sleeved on the yard adjustment seat (3354), and the first discharge plate (335) has the same structure as the second discharge plate (336).
8. The method for producing quick-drying school uniforms according to claim 7, characterized in that: The inner bottom surface of the discharge groove (3352) is coated with a self-adhesive coating for positioning and bonding the negative film (21) to the discharge plate.
9. The method for producing quick-drying school uniforms according to claim 8, characterized in that: The drying box group (341) includes a lifter (3411), and a push plate (3412) is arranged on the top surface of the lifter (3411), and a plurality of telescopic slide rods (3413) are vertically arranged on the side of the top surface of the push plate (3412), and a buffer oven (3414) is movably sleeved between the rod bodies of each of the telescopic slide rods (3413), and two springs (3415) are sleeved at the upper and lower ends of the rod body of each of the telescopic slide rods (3413), and a telescopic plate (3416) is fixedly connected to the top surface between the rod bodies of each of the telescopic slide rods (3413).
10. The method for producing quick-drying school uniforms according to claim 9, characterized in that: An exhaust port (3417) for the exhaust fan (3413) is provided on the right side of the upper end of the cavity of the buffer oven (3414), and a sealing strip (3418) is provided on the top edge of the buffer oven (3414), and the sealing strip (3418) is made of rubber.