Glove anti-skid pattern printing device

By using the groove bottom edge in the glove anti-slip pattern printing device to expand the contact area of ​​the glue, the scraper assembly to accelerate the infiltration, and the cold pressing device in the drying box to enhance the adhesion, the problem of low efficiency of glove anti-slip pattern printing is solved, and efficient bonding of the anti-slip pattern and the gloves is achieved.

CN223443102UActive Publication Date: 2025-10-17HUNAN HUACHENG SPORTS PROTECTIVE EQUIP CO LTD
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Patent Information

Application Number
CN202422756367.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-17
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

In the prior art, the printing efficiency of anti-slip patterns on gloves is low, and the glue and gloves are slowly infiltrated, resulting in low adhesion of the anti-slip patterns and easy falling off.

Method used

A glove anti-slip pattern printing device is used, including a printing base, a groove bottom edge, a scraper assembly, a glue pressing assembly and a drying box. The groove bottom edge expands the contact area between the glue and the glove, the scraper assembly accelerates the glue infiltration, the cold pressing device in the drying box enhances the bonding strength, and the cold air box is used to reduce the temperature of the anti-slip pattern to promote curing.

Benefits of technology

The bonding strength between the anti-slip pattern and the gloves is improved, the curling of the edges of the anti-slip pattern is reduced, and the quality of the anti-slip gloves is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glove anti-skid pattern printing device which comprises a box base, a rotating disc, a plurality of hand molds, a printing assembly and a drying box, the rotating disc is rotationally connected to the box base, the edge of the rotating disc is connected with the hand molds, and the hand molds are sleeved with gloves; the printing assembly comprises a beam frame, a suspension device, a printing plate, a scraper assembly, a glue pressing assembly and a scraper transmission device. According to the glove anti-skid pattern printing device, the groove bottom surrounding edge surrounding the periphery of the anti-skid pattern groove is arranged on the bottom face of the printing bottom plate, a glue solution forms a skirt edge in a cavity defined by the groove bottom surrounding edge to be connected to the periphery of the anti-skid patterns, and the skirt edge is thin and can be basically and completely soaked and bonded with gloves, so that the anti-skid patterns are not prone to falling off. Therefore, the contact area of the anti-skid grains and the glove can be effectively enlarged, the bonding strength of the edges of the anti-skid grains and the glove is improved, the situation that the edges of the anti-skid grains tilt is reduced, and the effect of improving the bonding strength of the anti-skid grains and the glove and the quality of the anti-skid glove is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glove anti -skid line manufacturing technical field, specifically is a glove anti -skid line printing device. BACKGROUND

[0002] The existing gloves are printed anti -skid lines, and the printing plate is made by opening anti -skid line hole groove on a plane board, and the inner wall of anti -skid line hole groove is generally vertical. When printing, the printing plate is pressed on the surface of the glove, and the glue is laid on the printing plate, the glue enters the anti -skid line hole groove and is bonded with the glove, and then the excess glue on the printing plate is scraped, and the anti -skid line with the same shape and height as the anti -skid line hole groove is formed on the glove.

[0003] In the prior art, the glue and the glove are only through the weight of the glue in the anti -skid line hole groove as pressure to promote the glue and the glove to infiltrate and bond in the process of infiltration and bonding, and the bonding speed of the glue and the glove is slow, which leads to the overall reduction of the printing efficiency of the glove anti -skid line. Especially when the anti -skid line with high height needs to be printed, due to the slow infiltration of the anti -skid glue, the bonding degree of the bottom anti -skid glue and the glove is low, which leads to the anti -skid line falling off from the glove. UTILITY MODEL CONTENT

[0004] The application provides a glove anti -skid line printing device, which has the advantages of improving the infiltration speed of the glue and the glove, and solves the problems of anti -skid line falling off or low printing efficiency of the glove anti -skid line in the prior art.

[0005] To achieve the above purpose, the application adopts the following technical scheme: a glove anti -skid line printing device, comprising a box seat, a rotating disc, a hand mold, a printing assembly and a drying box, the rotating disc is rotatably connected to the box seat, the edge of the rotating disc is connected with a plurality of hand molds, and the gloves are sleeved on the hand molds;The printing assembly comprises a beam frame, a suspension device, a printing plate, a scraper assembly, a glue pressing assembly and a scraper transmission device, the crossbeam of the beam frame is horizontally arranged above the rotating disc, the suspension device is connected to the beam frame, the printing plate is connected to the suspension device, the scraper transmission device is arranged on the beam frame, the scraper transmission device is connected to the scraper assembly, the glue pressing assembly is connected to the scraper assembly, the first bottom support device is installed on the beam frame, the first bottom support device corresponds to the position of the printing plate and is located below the hand mold, and the drying box is provided with a cold pressing device.

[0006] Further, the printing plate comprises a printing base plate, the outer periphery of the printing base plate is connected with a printing frame, the printing base plate is provided with anti-skid grooves, the bottom surface of the printing base plate is connected with groove bottom surrounding edges located at the outer periphery of the anti-skid grooves, the overall shape of the groove bottom surrounding edges is the same as that of the anti-skid grooves, the inner diameter of the top surface of the groove bottom surrounding edges is smaller than that of the corresponding position of the bottom surface of the groove bottom surrounding edges, the groove bottom surrounding edges are connected in a ring shape, the top surface of the groove bottom surrounding edges is connected to the bottom surface of the printing base plate, and the bottom surface of the groove bottom surrounding edges is a plane.

[0007] Further, the suspension device comprises ear plates, vertical rods, horizontal plates and suspension telescopic rods, the number of the ear plates is four, the top end of each ear plate is connected with a vertical rod, two vertical rods are connected to the two ends of a horizontal plate, the middle part of two horizontal plates is connected with the driving end of a suspension telescopic rod respectively, and the fixed end of two suspension telescopic rods is connected to the crossbeam of the beam frame.

[0008] The first bottom support device comprises a first bottom support plate and a first bottom support telescopic rod, the fixed end of the first bottom support telescopic rod is installed on the bottom horizontal plate of the beam frame, the driving end of the first bottom support telescopic rod is connected to the bottom surface of the first bottom support plate, and the first bottom support plate is parallel to the printing base plate.

[0009] Further, the scraper transmission device comprises a horizontal guide rail, the horizontal guide rail is connected to the beam frame and is parallel to the crossbeam of the beam frame, the side surface of the horizontal guide rail is provided with a guide groove, the two ends of the guide groove are rotatably connected with rotating rollers, two rotating rollers are surrounded with a transmission chain belt, the side surface of the transmission chain belt is connected with a horizontal moving mounting block, a motor is installed on the horizontal guide rail, and the rotating shaft of the motor is connected with one of the rotating rollers; the scraper assembly comprises a knife group telescopic rod, the fixed end of the knife group telescopic rod is sleeved in the middle part of the horizontal moving mounting block, the driving end of the knife group telescopic rod is connected with a knife group mounting block, the knife group mounting block is installed with a first scraper telescopic rod and a second scraper telescopic rod, the distribution direction of the first scraper telescopic rod and the second scraper telescopic rod is the same as the direction along the horizontal guide rail, and the driving end of the first scraper telescopic rod and the second scraper telescopic rod is respectively connected with a first scraper and a second scraper.

[0010] Further, the glue pressing assembly comprises a pressing plate telescopic rod, a supporting rod and a pressing plate body, the fixed end of the pressing plate telescopic rod is installed on the knife group mounting block, the driving end of the pressing plate telescopic rod is connected with the supporting rod, and the end of the supporting rod away from the pressing plate telescopic rod is connected to the top surface of the pressing plate body.

[0011] The printing plate further comprises a baffle and a fixed scraper, the number of the baffles is two, the two baffles are respectively connected to the printing frames on the same end of the printing base plate, the fixed scraper is connected to the printing frame and located between the two baffles, and the blade of the fixed scraper is inclined towards the center of the printing base plate.

[0012] Furthermore, a heating pipe is laid on the inner wall of the drying box, the heating pipe is connected to a heater, the heater is installed on a bracket at the bottom of the drying box, and a cold pressing device is provided near the outlet of the drying box;

[0013] The cold pressing device includes a pressing box body, which is located in the inner cavity of the drying box and above the hand mold. A pressing groove is provided on the bottom wall of the pressing box body, and a groove bottom pressing edge located at the pressing groove is connected to the bottom surface of the pressing box body. The inner diameter of the pressing groove is slightly larger than the inner diameter of the anti-slip groove, and the height of the groove bottom pressing edge is slightly smaller than the height of the groove bottom surrounding edge. The side inclination angle of the groove bottom pressing edge is the same as the side inclination angle of the groove bottom surrounding edge. The driving end of the pressing box telescopic rod is installed on the top surface of the pressing box body, and the driving end of the pressing box telescopic rod passes through the top surface of the drying box. The fixed end of the pressing box telescopic rod is installed on the drying box, and the inner wall of the drying box is connected to a second bottom support mounting plate located below the hand mold, and the fixed end of the second bottom support telescopic rod is installed on the second bottom support mounting plate. The driving end of the second bottom support telescopic rod is connected to the second bottom support plate, and the second bottom support plate is located below the hand mold, and the pressing box body and the second bottom support plate are facing each other.

[0014] Furthermore, the pressure box body is a hollow box body, and an air outlet is provided on the surface of the pressure box body facing the outlet end of the drying box. The inner cavity of the pressure box body is connected to an air inlet pipe, and the air inlet pipe passes through the top surface of the drying box and extends to the outside of the drying box. An air-conditioning box is installed on the top surface of the drying box, and the air outlet end of the air-conditioning box is connected to the air inlet pipe.

[0015] The utility model has the following beneficial effects:

[0016] 1. The present application provides a device for printing anti-slip grooves on gloves. The device comprises a bottom edge formed on the bottom surface of a printing base plate, enclosing the outer periphery of the anti-slip grooves. Glue forms a skirt within the cavity enclosed by the bottom edge, connecting to the outer periphery of the anti-slip grooves. Because the skirt is thin and can essentially completely soak into and adhere to the gloves, it effectively expands the contact area between the anti-slip grooves and the gloves, improves the bonding strength between the edges of the anti-slip grooves and the gloves, and reduces warping of the edges of the anti-slip grooves, thereby improving the bonding strength between the anti-slip grooves and the gloves and enhancing the quality of the anti-slip gloves.

[0017] 2. The present application provides a glove anti-slip pattern printing device, which drives the left and right movement of the pressure plate telescopic rod by the left and right movement of the knife group mounting block, thereby driving the left and right movement of the pressure plate body. When the pressure plate body moves above the printing base plate, it is pushed by the pressure plate telescopic rod to squeeze the pressure plate body above the anti-slip groove, exerting pressure on the glue above the anti-slip groove, accelerating the infiltration speed of the glue and the gloves, improving the efficiency of the adhesion of the glue and the gloves, and at the same time improving the firmness of the anti-slip pattern on the gloves.

[0018] 3. The glove anti-skid line printing device provided by the application, by setting a cold pressing device at the outlet end of the drying box, using the pressing groove and groove bottom pressing edge set on the pressing box body, and through the cooperation of the pressing box telescopic rod and the second bottom support telescopic rod, the sidewall of the groove bottom pressing edge extrudes the anti-skid glue line on the glove, enhances the adhesion strength of the anti-skid glue line and the glove, in addition, the cold air box and the air inlet pipe fill warm air into the inner cavity of the pressing box body, reduce the temperature of the anti-skid line, promote the solidification of the anti-skid glue liquid, and reduce the temperature difference after the glove moves out of the drying box, reduce the damage of the anti-skid line, and further increase the adhesion between the anti-skid line and the glove. BRIEF DESCRIPTION OF DRAWINGS

[0019] The accompanying drawings, which constitute a part of this specification, illustrate embodiments of the present disclosure and serve to explain the principles of the present disclosure.

[0020] The present disclosure can be understood more readily by reference to the following detailed description, taken in connection with the accompanying drawings, and wherein:

[0021] Figure 1 is a structural perspective view of the present application;

[0022] Figure 2 is a structural perspective view of the printing assembly of the present application;

[0023] Figure 3 is a structural perspective view of the hanging device and the printing plate of the present application;

[0024] Figure 4 is a schematic view of the groove bottom surrounding edge structure of the present application;

[0025] Figure 5 is a schematic view of the scraper assembly, glue pressing assembly, and scraper transmission device structure of the present application;

[0026] Figure 6 is a partial sectional view of the drying box of the present application;

[0027] Figure 7 is a schematic view of the structure of the cold pressing device of the present application;

[0028] Figure 8 is a sectional view of the pressing box body of the present application;

[0029] Figure 9 is a side view of the cold pressing device of the present application;

[0030] Figure 10 is an enlarged view of A of Figure 9

[0031] ​In the figure: 1, box seat; 2, rotary disc; 3, hand mold; 4, beam frame; 5, suspension device; 501, ear plate; 502, vertical rod; 503, cross plate; 504, suspension telescopic rod; 6, printing plate; 601, printing base plate; 602, anti-skid groove; 603, printing frame; 604, groove bottom edge; 611, baffle; 612, fixed scraper; 7, scraper assembly; 701, knife group telescopic rod; 702, knife group mounting block; 703, first scraper telescopic rod; 704, second scraper telescopic rod; 705, first scraper; 706, second scraper; 8, glue pressing assembly; 801, pressing plate telescopic rod; 802, supporting rod; 803, pressing plate body; 9, scraper transmission device; 901, transverse guide rail; 902, guide groove; 903, rotating roller; 904, transmission chain belt; 905, motor; 906, transverse movement mounting block; 10, first bottom support device; 1001, first bottom support plate; 1002, first bottom support telescopic rod; 11, drying box; 12, heating pipe; 1201, heater; 13, cold pressing device; 131, pressing box body; 132, pressing groove; 133, groove bottom pressing edge; 134, pressing box telescopic rod; 135, air inlet pipe; 136, cold air box; 137, second bottom support plate; 138, second bottom support telescopic rod; 139, second bottom support mounting plate. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without any creative work fall within the scope of protection of the present application.

[0033] Embodiment one

[0034] Please refer to Figure 1 , attached Figure 2As shown in the glove anti-skid printing device, including box seat 1, rotating disc 2, hand mold 3, printing assembly and drying box 11, rotating disc 2 is rotatably connected on the box seat 1, the edge of rotating disc 2 is connected with several hand molds 3, the gloves are sleeved on the hand molds 3, in the prior art, rotating disc 2 rotates along the outer periphery of box seat 1, the mechanism for driving rotating disc 2 to rotate also adopts the prior art, therefore, the present application will not be repeated; the printing assembly comprises beam frame 4, suspension device 5, printing plate 6, scraper assembly 7, glue pressing assembly 8 and scraper transmission device 9, the crossbeam of beam frame 4 is horizontally arranged above rotating disc 2, suspension device 5 is connected on beam frame 4, printing plate 6 is connected on suspension device 5, scraper transmission device 9 is arranged on beam frame 4, scraper transmission device 9 is connected with scraper assembly 7, glue pressing assembly 8 is connected on scraper assembly 7, first bottom support device 10 is installed on beam frame 4, first bottom support device 10 corresponds to the position of printing plate 6 and is located below hand mold 3, cold pressing device 13 is arranged in drying box 11.

[0035] Please refer to Figure 1 The two ends of the crossbeam of beam frame 4 are connected with a vertical beam, one of the vertical beams is connected on the top surface of box seat 1, and the other vertical beam is connected on the ground, the two vertical beams support the crossbeam and make the crossbeam horizontally cross above hand mold 3, and the lower end of the vertical beam is further connected with a bottom horizontal plate.

[0036] Please refer to the accompanying Figure 1 , the accompanying Figure 2 , the accompanying Figure 3 As shown in the glove anti-skid printing device, including box seat 1, rotating disc 2, hand mold 3, printing assembly and drying box 11, rotating disc 2 is rotatably connected on the box seat 1, the edge of rotating disc 2 is connected with several hand molds 3, the gloves are sleeved on the hand molds 3, in the prior art, rotating disc 2 rotates along the outer periphery of box seat 1, the mechanism for driving rotating disc 2 to rotate also adopts the prior art, therefore, the present application will not be repeated; the printing assembly comprises beam frame 4, suspension device 5, printing plate 6, scraper assembly 7, glue pressing assembly 8 and scraper transmission device 9, the crossbeam of beam frame 4 is horizontally arranged above rotating disc 2, suspension device 5 is connected on beam frame 4, printing plate 6 is connected on suspension device 5, scraper transmission device 9 is arranged on beam frame 4, scraper transmission device 9 is connected with scraper assembly 7, glue pressing assembly 8 is connected on scraper assembly 7, first bottom support device 10 is installed on beam frame 4, first bottom support device 10 corresponds to the position of printing plate 6 and is located below hand mold 3, cold pressing device 13 is arranged in drying box 11.

[0037] Please refer to the accompanying Figure 1 , the accompanying Figure 2 , the accompanying Figure 3 , the accompanying Figure 4As shown, the printing plate 6 comprises a printing base plate 601, the outer periphery of the printing base plate 601 is connected with a printing frame 603, four ear plates 501 are respectively connected at four corners of the printing frame 603, the printing base plate 601 is provided with anti-skid grooves 602, and the bottom surface of the printing base plate 601 is connected with a groove bottom surrounding edge 604 located at the outer periphery of the anti-skid grooves 602. The height value of the printing frame 603 is greater than the thickness value of the printing base plate 601, and the edge of the printing base plate 601 is enclosed by the printing frame 603, so that the glue liquid on the printing base plate 601 can be prevented from spilling. The overall shape of the groove bottom surrounding edge 604 is the same as that of the anti-skid grooves 602, the inner diameter of the top surface of the groove bottom surrounding edge 604 is less than that of the corresponding position of the bottom surface of the groove bottom surrounding edge 604, so that the side surface of the groove bottom surrounding edge 604 is inclined in a direction away from the center of the anti-skid grooves 602 along the edge where the groove bottom surrounding edge 604 and the anti-skid grooves 602 are connected, the groove bottom surrounding edge 604 is connected in a ring shape, the top surface of the groove bottom surrounding edge 604 is connected to the bottom surface of the printing base plate 601, the bottom surface of the groove bottom surrounding edge 604 is a plane, the inclination angle of the side surface of the groove bottom surrounding edge 604 is 45° to 60°, the height of the groove bottom surrounding edge 604 is greater than or equal to one half of the diameter of the anti-skid grooves 602 and less than or equal to two thirds of the diameter of the anti-skid grooves 602, and the cavity enclosed by the groove bottom surrounding edge 604 is trumpet-shaped as a whole. For example, when the anti-skid grooves 602 are circular, the inner diameter of the anti-skid grooves 602 is 1mm, the diameter is 2mm, the inclination angle of the side surface of the groove bottom surrounding edge 604 is 45°, and the height of the groove bottom surrounding edge 604 is one half of the diameter of the anti-skid grooves 602, then the height of the groove bottom surrounding edge 604 is 1mm, the groove bottom surrounding edge 604 is circular as a whole, the inner diameter of the top surface of the groove bottom surrounding edge 604 is 1mm, the inner diameter of the bottom surface of the groove bottom surrounding edge 604 is 2mm, the groove bottom surrounding edge 604 is hollow circular truncated cone as a whole, and the thickness of the groove bottom surrounding edge 604 is based on the distance between adjacent anti-skid grooves 602 to ensure that adjacent groove bottom surrounding edges 604 do not hinder each other.

[0038] Referring to the accompanying drawings Figure 1 , the accompanying drawings Figure 2 , the accompanying drawings Figure 3 As shown, the printing plate 6 further comprises a baffle 611 and a fixed scraper 612, the number of baffles 611 is two, the two baffles 611 are respectively connected to the printing frames 603 on the same side of the printing base plate 601, and the fixed scraper 612 is connected to the printing frame 603 and located between the two baffles 611. The blade of the fixed scraper 612 is inclined towards the center of the printing base plate 601.

[0039] In use, the bottom surface of the groove bottom surrounding edge 604 is clamped on the glove surface of the glove mold 3, the glue enters the inner cavity surrounded by the groove bottom surrounding edge 604 through the anti-skid groove 602 and is adhered to the glove surface, and finally the shape of the anti-skid pattern adhered to the glove is the shape formed by the anti-skid groove 602 and the inner cavity of the groove bottom surrounding edge 604. Because the side surface of the groove bottom surrounding edge 604 is inclined, the edge of the anti-skid pattern is formed with a skirt, the thickness of the skirt is thinner away from the center of the groove bottom surrounding edge 604, and the thinner skirt has a better soaking and adhering effect on the glove than the thicker anti-skid pattern, so that the skirt is easier to fully soak and adhere to the glove, and the adhesion area of the anti-skid pattern to the glove is increased by the skirt, so that the adhesion of the edge of the anti-skid pattern to the glove is improved.

[0040] Referring to Figs. 1 to 3, Figure 1 , Figs. 4 to 6, Figure 2 , Figs. 7 to 9, Figure 5 , Figs. 10 to 12, the scraper transmission device 9 comprises a transverse guide rail 901 connected to the beam frame 4 and parallel to the transverse beam of the beam frame 4, a guide groove 902 is formed in the side surface of the transverse guide rail 901, two ends of the guide groove 902 are rotatably connected to two rotating rollers 903, a transmission chain belt 904 is wound around the two rotating rollers 903, a lateral moving mounting block 906 is connected to the side surface of the transmission chain belt 904, a motor 905 is installed on the transverse guide rail 901, and the rotating shaft of the motor 905 is connected to one of the rotating rollers 903.

[0041] Referring to Figs. 1 to 3, Figure 1 , Figs. 4 to 6, Figure 2 , Figs. 7 to 9, Figure 5 , Figs. 10 to 12, the scraper assembly 7 comprises a scraper group telescopic rod 701, the fixed end of the scraper group telescopic rod 701 is sleeved on the middle part of the lateral moving mounting block 906, a scraper group mounting block 702 is connected to the driving end of the scraper group telescopic rod 701, a first scraper telescopic rod 703 and a second scraper telescopic rod 704 are installed on the scraper group mounting block 702, and the distribution directions of the first scraper telescopic rod 703 and the second scraper telescopic rod 704 are the same as the direction along which the transverse guide rail 901 extends. Figure 5 , Figs. 10 to 12, the distribution directions of the first scraper telescopic rod 703 and the second scraper telescopic rod 704 are left-right directions, and a first scraper 705 and a second scraper 706 are respectively connected to the driving ends of the first scraper telescopic rod 703 and the second scraper telescopic rod 704.

[0042] Referring to Figs. 1 to 3, Figure 1 , Figs. 4 to 6, Figure 2 , Figs. 7 to 9, Figure 5As shown, the glue laminating assembly 8 includes a platen telescopic rod 801, a support rod 802, and a platen body 803. The fixed end of the platen telescopic rod 801 is mounted on the blade assembly mounting block 702. The driving end of the platen telescopic rod 801 is connected to the support rod 802. The end of the support rod 802 away from the platen telescopic rod 801 is connected to the top surface of the platen body 803. The area of ​​the platen body 803 is sufficient to cover all the anti-slip grooves 602 on the printing base plate 601.

[0043] Participate in the Figure 1 , Attachment Figure 2 As shown, the first bottom support device 10 includes a first bottom support plate 1001 and a first bottom support telescopic rod 1002. The fixed end of the first bottom support telescopic rod 1002 is installed on the bottom horizontal plate of the beam frame 4, and the driving end of the first bottom support telescopic rod 1002 is connected to the bottom surface of the first bottom support plate 1001. The first bottom support plate 1001 is parallel to the printing base plate 601.

[0044] During use, the driving end of the first bottom support telescopic rod 1002 extends, pushing the first bottom support plate 1001 upward, so that it fits snugly over the handform 3 and onto the bottom surface of the glove. The driving ends of the two suspension telescopic rods 504 extend, pushing the horizontal plate 503, vertical rod 502, and lug plate 501 toward each other, thereby moving the printing plate 6 downward, so that the bottom surface of the groove bottom edge 604 fits snugly against the surface of the glove fitted over the handform 3. The driving end of the blade assembly telescopic rod 701 extends, pushing the first and second scrapers 705, 706 toward the printing plate 601 and causing them to hover above it. Pipes are used to deliver anti-slip adhesive to the printing plate 601. After the motor 905 is started, the shaft rotates forward and drives the roller 903 to rotate, which in turn drives the transmission chain 904 to move, and the transmission chain 904 drives the transverse mounting block 906 to move. Since the knife group telescopic rod 701 is connected to the transverse mounting block 906, the motor 905 can drive the knife group telescopic rod 701 to move along the extension direction of the guide groove 902, that is, to move left and right after it is started.

[0045] See attached Figure 2 and attached Figure 5As shown, in the first glue distribution stage, the driving end of the first scraper telescopic rod 703 moves upward so that the bottom end of the first scraper 705 hovers above the glue on the surface of the printing base plate 601, the driving end of the second scraper telescopic rod 704 moves downward so that the bottom end of the second scraper 706 is slightly higher than the surface of the printing base plate 601, the glue pile is located to the left of the second scraper 706, the rotating shaft of the motor 905 rotates counterclockwise, the transmission chain belt 904 transmits from right to left, the cross-moving mounting block 906 drives the scraper assembly 7 to move from left to right, the second scraper 706 distributes the glue from left to right on the surface of the printing base plate 601, and the glue enters the anti-skid groove 602 and the groove bottom surrounding edge 604 when passing through the anti-skid groove 602. When the knife group telescopic rod 701 moves to the leftmost side, the pressing plate body 803 hovers above the anti-skid groove 602, the driving end of the pressing plate telescopic rod 801 extends downward to push the pressing plate body 803 downward to press on the distributed glue layer, the glue in the inner cavity of the anti-skid groove 602 and the groove bottom surrounding edge 604 is adhered to the surface of the glove by extrusion of the pressing plate body 803, the adhesion between the anti-skid groove and the glove is improved, and the pressing plate body 803 extrudes for a certain period of time, the driving end of the pressing plate telescopic rod 801 moves upward to move the pressing plate body 803 upward to the bottom surface of the pressing plate body 803 consistent with the height of the top surface of the fixed scraper 612, so as to scrape the glue on the bottom surface of the pressing plate body 803.

[0046] Then, the driving end of the second scraper telescopic rod 704 moves upward so that the second scraper 706 does not contact the glue pile; and the motor 905 is started, the rotating shaft of the motor 905 rotates clockwise, the knife group telescopic rod 701 continues to move a little to the left through the cross-moving mounting block 906 so that the cross-moving mounting block 906 moves to the left side of the glue pile, then the driving end of the second scraper telescopic rod 704 moves downward so that the second scraper 706 descends again so that the bottom end of the second scraper 706 is slightly higher than the surface of the printing base plate 601, preparing for the second glue distribution; and the driving end of the first scraper telescopic rod 703 extends downward so that the bottom end of the first scraper 705 closely adheres to the surface of the printing base plate 601, preparing to scrape the glue on the surface of the printing base plate 601.

[0047] Then, the motor 905 starts, the rotating shaft of the motor 905 reverses, the transmission chain 904 drives from left to right, the horizontal moving mounting block 906 moves from left to right, and then the first scraper 705, the second scraper 706 and the pressing plate body 803 move from left to right. During the moving process, the second scraper 706 pushes the glue liquid pile to move rightward to complete the secondary glue spreading to compensate for the possible local unevenness of the anti-skid pattern groove 602 caused by the glue liquid flowing after the glue layer is extruded by the pressing plate body 803; the first scraper 705 pushes all the glue liquid on the printing base plate 601 to the right side, and the fixed scraper 612 scrapes the glue liquid on the bottom surface of the pressing plate body 803. Since the blade of the fixed scraper 612 faces the printing base plate 601, the glue liquid slides along the surface of the fixed scraper 612 and falls onto the printing base plate 601.

[0048] Finally, the driving end of the knife group telescopic rod 701 is retracted to drive the first scraper 705, the second scraper 706 and the pressing plate body 803 to move upward and away from the printing base plate 601, and the driving end of the two suspension telescopic rods 504 is retracted to drive the printing base plate 601 to move upward and away from the gloves of the hand mold 3 set, and the glue liquid in the anti-skid pattern groove 602 and the groove bottom surrounding edge 604 forms an anti-skid pattern and is adhered to the surface of the gloves.

[0049] Example Two

[0050] Please refer to Figure 1 , the accompanying Figure 6 , the accompanying Figure 7 , the accompanying Figure 8 , the accompanying Figure 9 and the accompanying Figure 10 , after printing, the glue liquid is preliminarily adhered to the surface of the gloves, and as the rotating disc 2 rotates, the hand mold 3 enters the drying box 11 to be dried to improve the adhesion between the anti-skid glue and the gloves.

[0051] The inner wall of the drying box 11 is paved with a heating pipe 12, the heating pipe 12 is connected with a heater 1201, and the heater 1201 is installed on the bracket at the bottom of the drying box 11. A cold pressing device 13 is arranged near the outlet of the drying box 11.

[0052] The cold pressing device 13 comprises a pressing box body 131 located in the inner cavity of the drying box 11 and above the hand mold 3, the pressing box body 131 is a hollow box body, the surface of the pressing box body 131 towards the outlet end of the drying box 11 is provided with an air outlet hole, the bottom wall of the pressing box body 131 is provided with a pressing groove 132, and the bottom surface of the pressing box body 131 is connected with a groove bottom pressing edge 133 located at the pressing groove 132. The inner diameter of the pressing groove 132 is slightly larger than the inner diameter of the anti-skid groove 602, the height of the groove bottom pressing edge 133 is slightly smaller than the height of the groove bottom surrounding edge 604, and the side surface inclination angle of the groove bottom pressing edge 133 is the same as that of the groove bottom surrounding edge 604, so that when the groove bottom pressing edge 133 is clamped on the anti-skid lines on the gloves, the inner edge of the pressing groove 132 does not contact the outer edge of the anti-skid lines, avoiding deformation of the main anti-skid lines, and the inner side surface of the groove bottom pressing edge 133 can be extruded above the skirt edge of the anti-skid lines, playing a extrusion function on the skirt edge of the anti-skid lines, further promoting the adhesion of the skirt edge of the anti-skid lines and the gloves. The top surface of the pressing box body 131 is installed with the driving end of a pressing box telescopic rod 134, the driving end of the pressing box telescopic rod 134 penetrates the top surface of the drying box 11, and the fixed end of the pressing box telescopic rod 134 is installed on the drying box 11. The inner cavity of the pressing box body 131 is communicated with an air inlet pipe 135, the air inlet pipe 135 penetrates the top surface of the drying box 11 and extends to the outside of the drying box 11, and a cold air box 136 is installed on the top surface of the drying box 11, and the air outlet end of the cold air box 136 is communicated with the air inlet pipe 135. The inner wall of the drying box 11 is connected with a second bottom support installation plate 139 located below the hand mold 3, the fixed end of a second bottom support telescopic rod 138 is installed on the second bottom support installation plate 139, the driving end of the second bottom support telescopic rod 138 is connected with a second bottom support plate 137, the second bottom support plate 137 is located below the hand mold 3, and the pressing box body 131 and the second bottom support plate 137 are opposite.

[0053] When in use, the heater 1201 plays a role of heating the heating pipe 12, and the heat dissipation of the heating pipe 12 makes the temperature in the drying box 11 rise, so as to heat and dry the anti-skid glue liquid on the gloves in the drying box 11, accelerate the evaporation of the water in the glue liquid, and thus realize the drying function of the glue liquid. When the hand mold 3 with gloves is moved to the position directly below the pressing box body 131, the rotating disc 2 stops rotating, the driving end of the pressing box telescopic rod 134 is extended downward to push the pressing box body 131 to move close to the hand mold 3 until the groove bottom pressing edge 133 is clamped on the anti-skid lines on the surface of the gloves. Since the height of the groove bottom pressing edge 133 is slightly lower than the height of the groove bottom surrounding edge 604, the inner wall of the groove bottom pressing edge 133 can extrude the skirt edge of the anti-skid lines, further promote the adhesion of the anti-skid lines and the gloves, improve the adhesion of the skirt edge of the anti-skid lines and the gloves, and reduce the situation that the edge of the anti-skid lines is raised. In addition, the cold air box 136 sends warm air with a temperature lower than the temperature in the drying box 11 but higher than the room temperature into the pressing box body 131 through the air inlet pipe 135. The temperature of the warm air can be the intermediate value between the temperature in the drying box 11 and the room temperature, and the warm air is used to cool and solidify the anti-skid lines in the inner cavity of the pressing box body 131 and the groove bottom pressing edge 133. First, the warm air is used to change the temperature of the anti-skid lines, so as to prevent the temperature of the anti-skid lines from suddenly decreasing after the gloves are moved out of the drying box 11 due to the large temperature difference between the temperature in the drying box 11 and the room temperature, and thus prevent the material of the anti-skid lines from being damaged. At the same time, although the hot air in the drying box 11 has good drying effect, high temperature can delay the solidification of the glue liquid, and thus reduce the adhesion of the glue liquid and the gloves. Therefore, the warm air is sent into the pressing box body 131 to reduce the temperature of the anti-skid lines, so as to achieve the effect of cooling and solidification, and accelerate the shaping of the anti-skid lines.

Claims

1. A glove anti-slip pattern printing device, characterized in that: The invention comprises a box seat (1), a turntable (2), a hand mold (3), a printing assembly and a drying box (11), wherein the turntable (2) is rotatably connected to the box seat (1), a plurality of hand molds (3) are connected to the edge of the turntable (2), and gloves are sleeved on the hand molds (3); the printing assembly comprises a beam frame (4), a suspension device (5), a printing plate (6), a scraper assembly (7), a glue pressing assembly (8) and a scraper transmission device (9), wherein the crossbeam of the beam frame (4) is horizontally placed above the turntable (2), and the suspension device (5) is provided on the printing plate (6), wherein the crossbeam of the crossbeam (4) is horizontally placed above the turntable (2), and the crossbeam of the crossbeam ... ) is connected to the beam (4), the printing plate (6) is connected to the suspension device (5), the scraper transmission device (9) is arranged on the beam (4), the scraper transmission device (9) is connected to the scraper assembly (7), the scraper assembly (7) is connected to the glue pressing assembly (8), a first bottom support device (10) is installed on the beam (4), the first bottom support device (10) corresponds to the position of the printing plate (6) and is located below the hand mold (3), and a cold pressing device (13) is arranged in the drying box (11).

2. The anti-slip pattern printing device for gloves according to claim 1, characterized in that: The printing plate (6) comprises a printing base plate (601), the outer periphery of the printing base plate (601) is connected to a printing frame (603), the printing base plate (601) is provided with an anti-skid groove (602), the bottom surface of the printing base plate (601) is connected to a groove bottom rim (604) located at the outer periphery of the anti-skid groove (602), the overall shape of the groove bottom rim (604) is the same as the shape of the anti-skid groove (602), the inner diameter of the top surface of the groove bottom rim (604) is smaller than the inner diameter of the corresponding position of the bottom surface of the groove bottom rim (604), the groove bottom rim (604) is connected end to end to form a ring, the top surface of the groove bottom rim (604) is connected to the bottom surface of the printing base plate (601), and the bottom surface of the groove bottom rim (604) is a plane.

3. The anti-slip pattern printing device for gloves according to claim 2, characterized in that: The suspension device (5) comprises an ear plate (501), a vertical rod (502), a horizontal plate (503) and a suspension telescopic rod (504), wherein the number of the ear plates (501) is four, the top end of each ear plate (501) is connected to a vertical rod (502), wherein two vertical rods (502) are connected to the two ends of a horizontal plate (503), the middle parts of the two horizontal plates (503) are respectively connected to the driving end of a suspension telescopic rod (504), and the fixed ends of the two suspension telescopic rods (504) are connected to the horizontal beam of the beam frame (4); The first bottom support device (10) comprises a first bottom support plate (1001) and a first bottom support telescopic rod (1002), wherein the fixed end of the first bottom support telescopic rod (1002) is mounted on the bottom transverse plate of the beam frame (4), and the driving end of the first bottom support telescopic rod (1002) is connected to the bottom surface of the first bottom support plate (1001), and the first bottom support plate (1001) is parallel to the printing base plate (601).

4. The anti-slip pattern printing device for gloves according to claim 2, characterized in that: The scraper transmission device (9) comprises a transverse guide rail (901), the transverse guide rail (901) is connected to the beam frame (4) and is parallel to the crossbeam of the beam frame (4), a guide groove (902) is provided on the side of the transverse guide rail (901), both ends of the guide groove (902) are rotatably connected to rollers (903), a transmission chain belt (904) is wrapped around the two rollers (903), and a transverse mounting block (906) is connected to the side of the transmission chain belt (904), a motor (905) is installed on the transverse guide rail (901), and the rotating shaft of the motor (905) is connected to one of the rollers (903); the scraper assembly (7) comprises a knife group A telescopic rod (701), the fixed end of the knife group telescopic rod (701) is sleeved on the middle part of the transverse mounting block (906), the driving end of the knife group telescopic rod (701) is connected to the knife group mounting block (702), and a first scraper telescopic rod (703) and a second scraper telescopic rod (704) are installed on the knife group mounting block (702), the distribution direction of the first scraper telescopic rod (703) and the second scraper telescopic rod (704) are the same as the direction extending along the transverse guide rail (901), and the driving ends of the first scraper telescopic rod (703) and the second scraper telescopic rod (704) are respectively connected to a first scraper (705) and a second scraper (706).

5. The anti-slip pattern printing device for gloves according to claim 4, characterized in that: The glue pressing assembly (8) comprises a pressing plate telescopic rod (801), a support rod (802) and a pressing plate body (803); the fixed end of the pressing plate telescopic rod (801) is mounted on the knife assembly mounting block (702); the driving end of the pressing plate telescopic rod (801) is connected to the support rod (802); and the end of the support rod (802) away from the pressing plate telescopic rod (801) is connected to the top surface of the pressing plate body (803); The printing plate (6) further comprises a baffle (611) and a fixed scraper (612). There are two baffles (611), and the two baffles (611) are respectively connected to the printing frame (603) on both sides of the same end of the printing base plate (601). The fixed scraper (612) is connected to the printing frame (603) and is located between the two baffles (611). The blade of the fixed scraper (612) is inclined toward the center of the printing base plate (601).

6. The anti-slip pattern printing device for gloves according to claim 2, characterized in that: A heating pipe (12) is laid on the inner wall of the drying box (11), the heating pipe (12) is connected to a heater (1201), and the heater (1201) is installed on a bracket at the bottom of the drying box (11). A cold pressing device (13) is provided near the outlet of the drying box (11); The cold pressing device (13) includes a pressing box body (131), the pressing box body (131) is located in the inner cavity of the drying box (11) and above the hand mold (3), a pressing groove (132) is provided on the bottom wall of the pressing box body (131), a groove bottom pressing edge (133) located at the pressing groove (132) is connected to the bottom surface of the pressing box body (131), the inner diameter of the pressing groove (132) is slightly larger than the inner diameter of the anti-slip groove (602), the height of the groove bottom pressing edge (133) is slightly smaller than the height of the groove bottom surrounding edge (604), the side inclination angle of the groove bottom pressing edge (133) is the same as the side inclination angle of the groove bottom surrounding edge (604), and the top of the pressing box body (131) is slightly larger than the inner diameter of the anti-slip groove (602). The driving end of the press box telescopic rod (134) is installed on the surface, and the driving end of the press box telescopic rod (134) passes through the top surface of the drying box (11). The fixed end of the press box telescopic rod (134) is installed on the drying box (11). The inner wall of the drying box (11) is connected to a second bottom support mounting plate (139) located below the hand mold (3). The fixed end of the second bottom support telescopic rod (138) is installed on the second bottom support mounting plate (139). The driving end of the second bottom support telescopic rod (138) is connected to a second bottom support plate (137). The second bottom support plate (137) is located below the hand mold (3). The press box body (131) and the second bottom support plate (137) are directly opposite.

7. The anti-slip pattern printing device for gloves according to claim 6, characterized in that: The pressure box body (131) is a hollow box body. An air outlet is provided on the surface of the pressure box body (131) facing the outlet end of the drying box (11). The inner cavity of the pressure box body (131) is connected to an air inlet pipe (135). The air inlet pipe (135) passes through the top surface of the drying box (11) and extends to the outside of the drying box (11). A cold air box (136) is installed on the top surface of the drying box (11), and the air outlet end of the cold air box (136) is connected to the air inlet pipe (135).