Double-layer disposable glove producing and processing device

By designing a roll film support, film material feeding control, high-temperature hand mold forming, and double-layer film adjustment mechanism, the problem of low automation in existing technologies has been solved, and efficient production and segmentation of double-layer gloves have been achieved.

CN224060274UActive Publication Date: 2026-03-31王海里
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing technologies lack film material feeding control, high-temperature hand mold forming, and double-layer film adjustment mechanisms in disposable glove production, resulting in low automation and an inability to effectively produce double-layer gloves.

Method used

A double-layer disposable glove production and processing device was designed, which includes a film roll support mechanism, a film material feeding control mechanism, a high-temperature hand mold forming mechanism, a double-layer film adjustment mechanism, and a cutter discharge mechanism. The electrical control of each mechanism is realized through an electrical control box to ensure smooth film feeding, hot pressing and forming, and alignment and pressing of the double-layer film.

Benefits of technology

This improved the automation level of glove production, enabling efficient feeding, hot pressing, and segmentation of double-layer films, thus enhancing the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a double-layer disposable glove producing and processing device which comprises a film rolling supporting mechanism, a film feeding control mechanism, a high-temperature hand mold forming mechanism, a double-layer film adjusting mechanism, a cutter discharging mechanism and an electric cabinet. A high-temperature hand mold forming mechanism is arranged on the other side of the film feeding control mechanism, a double-layer film adjusting mechanism is arranged on the other side of the high-temperature hand mold forming mechanism, and a cutter discharging mechanism is arranged on the other side of the double-layer film adjusting mechanism. According to the double-layer disposable glove producing and processing device, two sets of single-roll films are supported and conveyed on the roll film supporting mechanism, the film feeding control mechanism has a guiding function, the films can be well fed into the high-temperature hand mold forming mechanism to be subjected to high-temperature hot press forming, and the production efficiency is improved. And finally, the two layers of mold materials are adjusted, aligned, pressed and discharged through a cutter, the automation degree is obviously improved, and the mold has the practicability.
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Description

Technical Field

[0001] This utility model relates to the field of glove processing technology, specifically to a double-layer disposable glove production and processing device. Background Technology

[0002] Disposable gloves are a type of glove made of thin sheets or films of rubber.

[0003] Chinese Patent No. CN221968995U discloses a molding and pressing device for disposable glove production, including a base. A first support seat is fixedly connected to the upper end of the base. An upper pressing mold is disposed at the center of the lower end of the first support seat. A second support seat is fixedly connected to the upper end of the base away from the first support seat. A first electric telescopic rod is fixedly connected to both sides of the lower end of the second support seat. A cutting blade is fixedly connected to the output end of the first electric telescopic rod. Drive rollers are rotatably connected to the interior of both sides of the upper end of the base. The second electric telescopic rod is fixedly connected to the front and rear ends of one side of the base. The electric telescopic rods drive the flattening rollers to rise or fall, flattening the film material for glove production. The drive rollers move the film material, pressing it under the first support seat and then moving it to the second support seat for cutting, resulting in a higher degree of automation.

[0004] Because gloves are produced with a double-layer structure, the aforementioned device has the following drawbacks in practical use: First, there is no material feeding control mechanism during the transfer of the double-layer film, which cannot effectively feed the film in. Second, during the transfer and pressing process, since the film is the initial material, there is no high-temperature mold forming mechanism, and the forming process cannot be achieved simply by pressing, lacking the corresponding function. Finally, the glove forming process cannot be achieved through the aforementioned device, as there is no double-layer film adjustment mechanism, which cannot effectively manage the double-layer film, significantly reducing the degree of automation and rendering it impractical. Utility Model Content

[0005] The purpose of this invention is to provide a double-layer disposable glove production and processing device to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a double-layer disposable glove production and processing device, comprising a film roll support mechanism, a film material feeding control mechanism, a high-temperature hand mold forming mechanism, a double-layer film adjustment mechanism, a cutter discharge mechanism, and an electrical control box. The film roll support mechanism is located on one side of the film material feeding control mechanism, and the high-temperature hand mold forming mechanism is located on the other side of the film material feeding control mechanism. The double-layer film adjustment mechanism is located on the other side of the high-temperature hand mold forming mechanism, and the cutter discharge mechanism is located on the other side of the double-layer film adjustment mechanism. The high-temperature hand mold forming mechanism, the double-layer film adjustment mechanism, and the cutter discharge mechanism are all mounted on a work box, and all of these mechanisms are electrically connected and controlled by the electrical control box, which is located on one side of the work box.

[0007] Preferably, the film support mechanism includes an upper film feed roll, a lower film feed roll, a damping counterweight, a film guide film, a feed roller wrench, and a wet cloth curtain. The upper film feed roll and the lower film feed roll are respectively supported and connected by a bracket one and a bracket two. The upper film feed roll is located above the lower film feed roll. Both bracket one and bracket two are fixedly installed on the frame. A connecting shaft one is installed on the frame via a bracket three. A flexible belt is fixedly connected to the connecting shaft one. The flexible belt is fitted onto the surface of the upper film feed roll, and a damping counterweight is fixedly connected to the other end of the flexible belt. The frame also includes a film guide roller, a feed roller wrench, and a connecting shaft two. A wet cloth curtain is installed on the connecting shaft two, and film guide films are symmetrically installed on the film guide roller.

[0008] Preferably, the film material feeding control mechanism includes a feeding roller, a feeding curtain, a feeding sensor, film material guide rollers, and an ionizing air bar. Two sets of feeding rollers are provided. The feeding rollers, feeding curtain, and film material guide rollers are all mounted on the frame. The feeding curtain is located in front of the feeding sensor. The feeding sensor is fixedly mounted on a bracket seven. The bracket seven is fixedly mounted on the frame, and an ionizing air bar is mounted on the frame. Multiple film material guide rollers are provided and arranged in a staggered manner, all located on the side of the feeding rollers.

[0009] Preferably, the high-temperature hand mold forming mechanism includes a spring pressure line, a flattening material, a mold base pad, a glove hot mold, hand mold fixing bolts, a hand mold hot pressing power shaft, and a connecting plate fixedly arranged between the high-temperature hand mold forming mechanism and the frame. The connecting plate is provided with a spring pressure line and a flattening material. The mold base pad is provided on the other side of the connecting plate. The mold base pad is fixedly installed on a flat plate. The flat plate is fixedly supported and installed above the work box by the hand mold hot pressing power shaft. A top plate is also fixedly supported and installed above the flat plate by the hand mold hot pressing power shaft. The glove hot mold is installed on the bottom surface of the top plate by the hand mold fixing bolts. A film guide roller is installed on the rear side of the high-temperature hand mold forming mechanism by a bracket.

[0010] Preferably, the double-layer film adjustment mechanism includes an upper and lower film alignment guide roller 1, an upper and lower film alignment guide roller 2, an upper and lower film alignment guide roller adjustment knob 1, and an upper and lower film alignment guide roller adjustment knob 2. The upper and lower film alignment guide roller 1 is installed between the adjustment blocks 1. The adjustment blocks 1 are all slidably installed on the bracket 5, and a threaded rod 1 is threadedly connected to the adjustment block 1. The top of the threaded rod 1 is fixedly connected to the upper and lower film alignment guide roller adjustment knob 1. The upper and lower film alignment guide roller adjustment knob 1 is set on the cross frame 1, and the cross frame 1 is fixedly installed on the bracket 5.

[0011] Preferably, the second upper and lower film alignment guide roller is located to the lower left of the first upper and lower film alignment guide roller. The second upper and lower film alignment guide roller is installed between the second adjusting blocks. The second adjusting blocks are all slidably installed on the sixth bracket, and the second adjusting blocks are threadedly connected with threaded rods. The top of the threaded rods is fixedly connected to the second upper and lower film alignment guide roller adjustment knob. The second upper and lower film alignment guide roller adjustment knob is located on the second horizontal frame. The second horizontal frame is fixedly installed on the sixth bracket. The sixth bracket and the fifth bracket are both fixedly installed on the surface of the work box.

[0012] Preferably, the cutting and discharging mechanism includes a discharging guide roller, a discharging guide rubber roller, a discharging guide rubber roller loosening wrench, a discharging guide roller clamping adjustment knob, a discharging guide height adjustment knob, a cutter, and a discharging ion air bar. The discharging guide roller is installed on one side of the discharging guide rubber roller. The discharging guide rubber roller is installed between the discharging side frames and is configured as upper and lower sets. The discharging side frames are equipped with the discharging guide rubber roller loosening wrench, the discharging guide roller clamping adjustment knob, the discharging guide height adjustment knob, the cutter, and the discharging ion air bar. The discharging guide roller clamping adjustment knob is connected to the discharging guide rubber roller. The cutter is located on the rear side of the discharging guide rubber roller, and the discharging ion air bar is located on the rear side of the cutter.

[0013] The beneficial effects of this utility model are as follows: This double-layer disposable glove production and processing device, through the setting of a film roll support mechanism, a film material feeding control mechanism, a high-temperature hand mold forming mechanism, a double-layer film adjustment mechanism, and a cutting and discharging mechanism, firstly, two sets of single roll films are supported and transported by the film roll support mechanism, while the film material feeding control mechanism has a guiding function, which can better feed the film into the high-temperature hand mold forming mechanism for high-temperature hot pressing and forming. Finally, the double-layer film adjustment mechanism adjusts, aligns, and presses the two layers of mold material, and then the cutting and discharging mechanism divides and transports them to the subsequent edge-tearing equipment. The degree of automation is significantly improved, making it practical. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model;

[0015] Figure 2 This is a structural rendering of the present invention;

[0016] Figure 3 This is a structural diagram of the present utility model.

[0017] Figure 4 This is a schematic diagram of the film material feeding control mechanism of this utility model;

[0018] Figure 5 This is an enlarged view of structure A of this utility model;

[0019] Figure 6 This is an enlarged view of structure B of this utility model.

[0020] In the picture:

[0021] 1. Film support mechanism, 101 upper film feed roll, 102 lower film feed roll, 103 damping counterweight, 104 film material guide sheet, 105 feed roller, 106 hand wet cloth curtain, 107 bracket one, 108 bracket two, 109 frame, 110 bracket three, 111 connecting shaft one, 112 flexible belt, 113 connecting shaft two;

[0022] 2. Membrane material feeding control mechanism, 201 feeding roller, 202 feeding curtain, 203 feeding sensor, 204 membrane material guide roller, 205 ion air bar, 206 bracket seven;

[0023] 3 High-temperature hand mold forming mechanism, 301 Spring pressure line, 302 Flattening soft material, 303 Mold base pad, 304 Glove hot mold, 305 Hand mold fixing bolt, 306 Hand mold hot pressing power shaft, 307 Connecting plate, 308 Flat plate, 309 Top plate, 310 Support four;

[0024] 4. Double-layer film adjustment mechanism; 401 Upper and lower film alignment guide roller one; 402 Upper and lower film alignment guide roller two; 403 Upper and lower film alignment guide roller adjustment knob one; 404 Upper and lower film alignment guide roller adjustment knob two; 405 Adjustment block one; 406 Bracket five; 407 Threaded rod one; 408 Horizontal frame one; 409 Adjustment block two; 410 Bracket six; 411 Threaded rod two; 412 Horizontal frame two;

[0025] 5. Cutting and discharge mechanism, 501 discharge guide roller, 502 discharge guide rubber roller, 503 discharge guide rubber roller loosening wrench, 504 discharge guide roller clamping adjustment knob, 505 discharge guide height adjustment knob, 506 cutter, 507 discharge ion air bar, 508 discharge side frame; 6. Electrical control box, 7. Working box. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-6 This utility model provides a technical solution: a double-layer disposable glove production and processing device, including a film roll support mechanism 1, a film material feeding control mechanism 2, a high-temperature hand mold forming mechanism 3, a double-layer film adjustment mechanism 4, a cutter discharge mechanism 5, and an electrical control box 6. The film roll support mechanism 1 is located on one side of the film material feeding control mechanism 2, and the high-temperature hand mold forming mechanism 3 is located on the other side of the film material feeding control mechanism 2. The double-layer film adjustment mechanism 4 is located on the other side of the high-temperature hand mold forming mechanism 3, and the cutter discharge mechanism 5 is located on the other side of the double-layer film adjustment mechanism 4. The high-temperature hand mold forming mechanism 3, the double-layer film adjustment mechanism 4, and the cutter discharge mechanism 5 are all installed on the work box 7, and all of these mechanisms are electrically connected and controlled by the electrical control box 6, which is located on one side of the work box 7.

[0028] As a preferred embodiment, the two sets of single rolls of film material are supported and transported in the film support mechanism 1. A servo motor (not shown in the figure) is installed on this mechanism to provide power. The film material feeding control mechanism 2 has a guiding function, which can effectively feed the film into the high-temperature hand mold forming mechanism 3 for high-temperature hot pressing. Finally, the double-layer film adjustment mechanism 4 adjusts, aligns and presses the two layers of mold material. The film is then divided and transported to the subsequent edge-tearing equipment (not shown in the figure) through the cutting and discharging mechanism 5.

[0029] Specifically, the film support mechanism 1 includes an upper film feed roll 101, a lower film feed roll 102, a damping counterweight 103, a film guide sheet 104, a feed roller wrench 105, and a wet cloth curtain 106. The upper film feed roll 101 and the lower film feed roll 102 are supported and connected by a first bracket 107 and a second bracket 108, respectively. The upper film feed roll 101 and the lower film feed roll 102 are used as two sets of single-layer raw materials for the initial processing of gloves. The upper film feed roll 101 is positioned above the lower film feed roll 102. The first bracket... Both 107 and bracket 108 are fixedly installed on the frame 109. A connecting shaft 111 is installed on the frame 109 via bracket 3 110. A flexible belt 112 is fixedly connected to the connecting shaft 111. The flexible belt 112 is attached to the surface of the upper film feed roll 101, and a damping counterweight 103 is fixedly connected to the other end of the flexible belt 112. It should be noted that a set of damping counterweights 103 is set in each of the upper and lower film rolls. The purpose is to prevent the film roll from reversing due to rotational inertia when the equipment stops after normal production. The frame 109 is also equipped with a film material guide roller 204, a feed roller wrench 105, and a connecting shaft 113. A wet cloth curtain 106 is installed on the connecting shaft 113. The wet cloth curtain 106 is used to effectively reduce the static electricity generated during the film blowing process. Film material guide films 104 are symmetrically installed on the film material guide roller 204. The film material guide roller 204 is used to adhere the film material to the surface to realize the transmission process. The film film guide film 104 can adjust the feed position of the film material appropriately. The film material guide roller 204 is the second roller before the film material enters the feed roller.

[0030] Specifically, the film material feeding control mechanism 2 includes a feeding roller 201, a feeding curtain 202, a feeding sensor 203, a film material guide roller 204, and an ion air bar 205. There are two sets of feeding rollers 201, which serve as the power source for feeding. The film material is fed in through the two rollers. The feeding rollers 201, the feeding curtain 202, and the film material guide roller 204 are all mounted on the frame 109. The feeding curtain 202 is located in front of the feeding sensor 203. Since the film material is thin, the feeding curtain is needed to cooperate with the sensor to confirm the front end of the material. When the front end of the material is discharged, the film material is lifted, which drives the feeding curtain to rise. When the sensor senses a lack of material, the feeding roller 201 feeds the material. The feed sensor 203 is fixedly mounted on the bracket 206, which is fixedly mounted on the frame 109. An ion bar 205 is mounted on the frame 109. The function of the ion bar 205 is to reduce static electricity in the film. Multiple film guide rollers 204 are provided and arranged in a staggered manner, all located on the side of the feed roller 201. It should be noted that the upper and lower films have the same structure and film insertion method. The film sheets on both sides play a guiding role. Multiple rollers make the film flat and reduce wrinkles in glove forming. The film is fed into the next process through the last two rollers.

[0031] Specifically, the high-temperature hand mold forming mechanism 3 includes a spring pressure line 301, a flattened soft material 302, a mold base pad 303, a glove hot mold 304, a hand mold fixing bolt 305, and a hand mold hot pressing power shaft 306. A connecting plate 307 is fixedly installed between the high-temperature hand mold forming mechanism 3 and the frame 109. The connecting plate 307 is equipped with the spring pressure line 301 and the flattened soft material 302. Two spring pressure lines 301 are provided, and their function is to pass the film through from the bottom. The flattened soft material 302 is used to effectively reduce the shaking of the film material during discharge. A mold base pad 303 is provided on the other side of the connecting plate 307. The mold base pad 303 is fixedly installed on a flat plate 308. The flat plate 308 is connected to the hand mold hot pressing power shaft. The 306 fixed support is installed above the work box 7. The top plate 309 is also fixedly installed above the plate 308 via the hand mold hot pressing power shaft 306. The glove hot mold 304 is installed on the bottom surface of the top plate 309 via the hand mold fixing bolts 305. The mold bottom pad 303 and the glove hot mold 304 are used for the hot pressing of the film to customize the glove and make the film uniform in terms of stress and temperature. The four hand mold fixing bolts 305 can adjust the flatness and hot cutting pressure of the hand mold. The four hand mold hot pressing power shafts 306 drive the upper and lower hand molds to simultaneously hot press the upper and lower film layers. This mechanism is connected to the main motor of the equipment. The film material guide roller 204 is installed on the rear side of the high temperature hand mold forming mechanism 3 via the bracket 310.

[0032] Specifically, the double-layer film adjustment mechanism 4 includes an upper and lower film alignment guide roller 401, an upper and lower film alignment guide roller 402, an upper and lower film alignment guide roller adjustment knob 403, and an upper and lower film alignment guide roller adjustment knob 404. The upper and lower film alignment guide roller 401 is installed between the adjustment blocks 405. The adjustment blocks 405 are all slidably installed on the bracket 406, and a threaded rod 407 is threadedly connected to the adjustment block 405. The top of the threaded rod 407 is fixed to the upper and lower film alignment guide roller adjustment knob 403. The upper and lower film alignment guide roller adjustment knob 403 is set on the crossbeam 408, which is fixedly installed on the bracket 406. The upper and lower film alignment guide rollers 401 and 402 are used for exporting the two layers of film after hot cutting. The upper and lower film alignment guide roller adjustment knob 403, by rotating, causes its threaded rod 407 to drive the adjustment block 405 on the bracket 406 to adjust the height, thereby adjusting the position of the upper and lower film alignment guide rollers 401. This structure is used for adjusting the upper film material.

[0033] Specifically, the upper and lower film alignment guide roller 2 402 is located to the lower left of the upper and lower film alignment guide roller 1 401. The upper and lower film alignment guide roller 2 402 is installed between the adjusting blocks 2 409. The adjusting blocks 2 409 are all slidably installed on the bracket 6 410, and the adjusting blocks 2 409 are threadedly connected to the threaded rod 2 411. The top of the threaded rod 2 411 is fixedly connected to the upper and lower film alignment guide roller adjusting knob 2 404. The upper and lower film alignment guide roller adjusting knob 2 404 is located on the cross frame 2 412. The cross frame 2 412 is fixedly installed on the bracket 6 410. The bracket 6 410 and the bracket 5 406 are both fixedly installed on the surface of the working box 7. This structure is used for adjusting the lower film material, and the adjustment principle is the same as that of the upper film material.

[0034] Specifically, the cutter discharge mechanism 5 includes a discharge guide roller 501, a discharge guide rubber roller 502, a discharge guide rubber roller loosening wrench 503, a discharge guide roller clamping adjustment knob 504, a discharge guide height adjustment knob 505, a cutter 506, and a discharge ion air bar 507. The discharge guide roller 501 is installed on one side of the discharge guide rubber roller 502. The discharge guide rubber roller 502 is installed between the discharge side frames 508 and is configured as two sets, upper and lower. The discharge side frames 508 are equipped with discharge guide rubber rollers. Loosen the wrench 503, the discharge guide roller clamping adjustment knob 504, the discharge guide height adjustment knob 505, the cutter 506, and the discharge ion air bar 507. The discharge guide roller clamping adjustment knob 504 is connected to the discharge guide rubber roller 502. The cutter 506 is located on the rear side of the discharge guide rubber roller 502, and the discharge ion air bar 507 is located on the rear side of the cutter 506. The cutter moves up and down to complete the die cutting of the gloves, while the discharge ion air bar 507 performs static elimination again when the gloves are stacked after being discharged.

[0035] In specific implementation of this utility model: First, two sets of single-roll films are supported by a film support mechanism, and the films are respectively attached to rollers and transferred to the film material feeding control mechanism. The feeding roller and guide roller in the film material feeding control mechanism also perform film threading operation, and static electricity is removed by an ion air bar. The film on the roller has a guiding function, which can effectively feed the film into the high-temperature hand mold forming mechanism. The high-temperature hand mold forming mechanism first passes through the bottom of the spring pressure line, and then places and flattens the soft material on its surface. Subsequently, it is hot-pressed by a glove hot mold and a mold base pad at high temperature. This is the pressing of each layer. Next, it is transferred to the double-layer film adjustment mechanism to adjust, align and press the two layers of mold material. Finally, it is divided and transferred by a cutting and discharging mechanism to the subsequent tearing edge device (not shown in the figure).

[0036] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A double-layer disposable glove production and processing device, comprising a roll film supporting mechanism (1), a film material feeding control mechanism (2), a high-temperature hand mold forming mechanism (3), a double-layer film adjusting mechanism (4), a cutter discharging mechanism (5), and an electric control box (6), characterized in that: The roll film supporting mechanism (1) is arranged on one side of the film feeding control mechanism (2), the other side of the film feeding control mechanism (2) is provided with a high-temperature hand molding mechanism (3), the other side of the high-temperature hand molding mechanism (3) is provided with a double-layer film adjusting mechanism (4), the other side of the double-layer film adjusting mechanism (4) is provided with a cutter discharging mechanism (5), the high-temperature hand molding mechanism (3), the double-layer film adjusting mechanism (4) and the cutter discharging mechanism (5) are all installed on the working box (7), and the multiple mechanisms are all electrically connected through the electric control box (6), and the electric control box (6) is arranged on one side of the working box (7).

2. The device for processing double-layered disposable gloves according to claim 1, wherein: The roll film supporting mechanism (1) includes an upper film feeding roll (101), a lower film feeding roll (102), a damping counterweight (103), a film guide rubber sheet (104), a feeding rubber roller wrench (105) and a wet cloth curtain (106), the upper film feeding roll (101) and the lower film feeding roll (102) are respectively supported and connected through the arranged support one (107) and support two (108), the upper film feeding roll (101) is arranged above the lower film feeding roll (102), the support one (107) and the support two (108) are all fixedly installed on the rack (109), the rack (109) is provided with a connecting shaft one (111) through a support three (110), a flexible belt (112) is fixedly connected and arranged on the connecting shaft one (111), the flexible belt (112) is attached to the surface of the upper film feeding roll (101), and a damping counterweight (103) is fixedly connected and arranged at the other end of the flexible belt (112), the rack (109) is further provided with a film guide roller (204), a feeding rubber roller wrench (105) and a connecting shaft two (113), the connecting shaft two (113) is provided with a wet cloth curtain (106), and the film guide rubber sheet (104) is symmetrically installed on the film guide roller (204).

3. The dual layer disposable glove production and processing device of claim 1, wherein: The film feeding control mechanism (2) includes a feeding rubber roller (201), a feeding curtain (202), a feeding sensor (203), a film guide roller (204) and an ion wind rod (205), the feeding rubber roller (201) is provided with two groups, the feeding rubber roller (201), the feeding curtain (202) and the film guide roller (204) are all installed on the rack (109), the feeding curtain (202) is arranged on the front side of the feeding sensor (203), the feeding sensor (203) is fixedly installed on the support seven (206), the support seven (206) is fixedly installed on the rack (109), and the ion wind rod (205) is installed on the rack (109), the film guide roller (204) is provided with multiple, and is arranged in a complex manner, and is all arranged on the side of the feeding rubber roller (201).

4. The dual layer disposable glove production and processing device of claim 1, wherein: The high-temperature hand mold forming mechanism (3) comprises a spring line (301), a flat soft material (302), a mold bottom pad (303), a glove hot mold (304), a hand mold fixing bolt (305), a hand mold hot pressing power shaft (306), a link plate (307) is fixedly arranged between the high-temperature hand mold forming mechanism (3) and the rack (109), the spring line (301) and the flat soft material (302) are arranged on the link plate (307), the other side of the link plate (307) is provided with the mold bottom pad (303), the mold bottom pad (303) is fixedly installed on the flat plate (308), the flat plate (308) is fixedly supported and installed above the working box (7) through the hand mold hot pressing power shaft (306), the top plate (309) is also fixedly supported and installed above the flat plate (308) through the hand mold hot pressing power shaft (306), the glove hot mold (304) is installed and arranged on the bottom surface of the top plate (309) through the hand mold fixing bolt (305), and the rear side of the high-temperature hand mold forming mechanism (3) is installed and arranged with the film material guide roller (204) through the support four (310).

5. The dual layer disposable glove production and processing device of claim 1, wherein: The double-layer film adjusting mechanism (4) comprises upper and lower film alignment guide rollers one (401), upper and lower film alignment guide rollers two (402), upper and lower film alignment guide roller adjusting knobs one (403) and upper and lower film alignment guide roller adjusting knobs two (404), the upper and lower film alignment guide rollers one (401) are installed and arranged between the adjusting blocks one (405), the adjusting blocks one (405) are slidably installed on the support five (406), and the adjusting blocks one (405) are threadedly connected with the threaded rods one (407), the top of the threaded rods one (407) is fixedly connected with the upper and lower film alignment guide roller adjusting knobs one (403), the upper and lower film alignment guide roller adjusting knobs one (403) are arranged on the cross frame one (408), and the cross frame one (408) is fixedly installed on the support five (406).

6. The dual layer disposable glove manufacturing and processing device of claim 5, wherein: The upper and lower film alignment guide rollers two (402) are arranged below the left side of the upper and lower film alignment guide rollers one (401), the upper and lower film alignment guide rollers two (402) are installed and arranged between the adjusting blocks two (409), the adjusting blocks two (409) are slidably installed on the support six (410), and the adjusting blocks two (409) are threadedly connected with the threaded rods two (411), the top of the threaded rods two (411) is fixedly connected with the upper and lower film alignment guide roller adjusting knobs two (404), the upper and lower film alignment guide roller adjusting knobs two (404) are arranged on the cross frame two (412), and the cross frame two (412) is fixedly installed on the support six (410), and the support six (410) and the support five (406) are fixedly installed on the surface of the working box (7).

7. The dual layer disposable glove production and processing device of claim 1, wherein: The cutter discharging mechanism (5) comprises a discharging guide roller (501), a discharging guide rubber roller (502), a discharging guide rubber roller loosening wrench (503), a discharging guide roller pressing adjusting knob (504), a discharging guide height adjusting knob (505), a cutter (506) and a discharging ion wind rod (507), the discharging guide roller (501) is installed on one side of the discharging guide rubber roller (502), the discharging guide rubber roller (502) is installed between discharging side frames (508) and is arranged as two groups of upper and lower groups, the discharging side frames (508) are provided with the discharging guide rubber roller loosening wrench (503), the discharging guide roller pressing adjusting knob (504), the discharging guide height adjusting knob (505), the cutter (506) and the discharging ion wind rod (507), the discharging guide roller pressing adjusting knob (504) is connected with the discharging guide rubber roller (502), the cutter (506) is arranged on the rear side of the discharging guide rubber roller (502), and the discharging ion wind rod (507) is arranged on the rear side of the cutter (506).

Citation Information

Patent Citations

  • Forming and pressing equipment for disposable glove production

    CN221968995U