Processing equipment suitable for plastic glove forming

By integrating technologies such as moving, flipping, cleaning, spraying, and drying, the problems of uneven thickness and demolding damage in plastic glove molding equipment have been solved, achieving efficient and stable production of plastic gloves.

CN121132984AInactive Publication Date: 2025-12-16NANTONG HONGSHENG GLOVES CO LTD
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Patent Information

Application Number
CN202511686444.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-18
Publication Date
2025-12-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing plastic glove molding and processing equipment has a complex process, low efficiency, and is prone to producing defective products. Furthermore, the glove thickness is uneven, and bubbles or defects may occur during the molding process, affecting quality and performance.

Method used

The equipment employs a comprehensive system including a moving mechanism, a mold flipping mechanism, a cleaning mechanism, a spraying mechanism, a coating mechanism, and a drying mechanism. Through steps such as mold flipping, cleaning, spraying release agent, coating, and drying, it ensures the consistency of glove thickness and shape and improves demolding efficiency.

Benefits of technology

It improved the molding quality of plastic gloves, reduced the probability of uneven thickness and demolding damage, and improved production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses processing equipment suitable for plastic glove forming, and belongs to the technical field of plastic glove processing.The processing equipment comprises a supporting bottom plate, a moving mechanism is installed on one side of the supporting bottom plate, a mold overturning mechanism is installed on the surface of the moving mechanism, and a cleaning pool is installed on the upper surface of the supporting bottom plate; and a cleaning mechanism is installed on the inner side of the cleaning pool, a spraying mechanism is installed on one side of the cleaning pool, a plastic coating mechanism is installed on one side of the spraying mechanism, and a drying mechanism matched with the moving mechanism is installed on one side of the plastic coating mechanism. On the basis that plastic gloves are formed, the probability that the thicknesses of the plastic gloves are not uniform can be reduced, and the plastic gloves can be conveniently demoulded.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of plastic glove processing, more specifically, to a processing equipment suitable for plastic glove forming. BACKGROUND

[0002] Plastic is widely used and is an indispensable component in home appliances, automobiles, mobile phones, PCs, medical devices, and lighting appliances. Plastic gloves are a widely used personal protective equipment, mainly used to prevent direct contact of hands with harmful substances and provide hygiene and safety protection.

[0003] In the production and processing process of plastic gloves, hand molds are mainly used for forming. The hand molds are continuously moved on the conveying equipment, so that the plastic gloves continuously pass through each production process, thereby achieving the purpose of plastic glove production. The surface of the hand mold is filled with plastic, heated at high temperature, and then dried to form the glove.

[0004] The existing processing equipment has a complex production process, low efficiency, and is prone to produce defective products. In addition, it may cause uneven thickness, bubbles or defects in the forming process, affecting the quality and performance of the gloves. SUMMARY

[0005] 1. Technical problem to be solved

[0006] In view of the problems in the prior art, the purpose of the present application is to provide a processing equipment suitable for plastic glove forming. The present application can reduce the probability of uneven thickness of plastic gloves and facilitate demolding of plastic gloves on the basis of realizing plastic glove forming.

[0007] 2. Technical scheme

[0008] To solve the above problems, the present application adopts the following technical scheme:

[0009] The utility model provides a kind of processing equipment suitable for plastic glove forming, including: support base plate, one side of the support base plate is equipped with moving mechanism, the surface of the moving mechanism is equipped with mould overturning mechanism, the upper surface of the support base plate is equipped with cleaning pool, the inner side of the cleaning pool is equipped with cleaning mechanism, one side of the cleaning pool is equipped with spraying mechanism, one side of the spraying mechanism is equipped with plastic coating mechanism, one side of the plastic coating mechanism is equipped with drying mechanism compatible with moving mechanism.As a preferred scheme of the utility model, the moving mechanism includes moving base installed on one side of support base plate, the surface of both sides of the moving base is equipped with protection box, the inner side of both the protection box is equipped with first mount, the surface of the first mount is equipped with first belt pulley, and the first belt pulley is rotatably connected by first transmission belt, the surface of the moving base is equipped with support bracket for supporting first transmission belt, the surface of the first transmission belt is equipped with moving seat, the surface of one side of the moving base is equipped with first servo motor, and the output shaft of first servo motor is fixedly connected with one first belt pulley.

[0010] As a preferred scheme of the utility model, the upper surface of the moving base and located on one side of support bracket is equipped with limiting slide rail, the surface of the moving seat is equipped with reinforcing seat, the surface of the reinforcing seat is rotatably connected with rolling wheel, and rolling wheel is in contact with the surface of limiting slide rail, the surface of both sides of the moving base is equipped with shock absorber, the surface of the moving base and located on the inner side of shock absorber is equipped with displacement sensor.

[0011] As a preferred scheme of the utility model, the mould overturning mechanism includes two third mounts installed on the surface of moving seat, the inner side of the third mount is rotatably connected with rotating seat, the surface of the rotating seat is rotatably connected with three glove moulds, the surface of the glove mould is equipped with first gear, the surface of the third mount and located on the inner side of three first gears is rotatably connected with second gear, and two second gears are rotatably connected with the inner side of three first gears respectively, the surface of one side of the third mount is equipped with second servo motor, the surface of the output shaft of second servo motor is fixedly connected with first transmission worm, the surface of one end of the rotating seat is fixedly connected with first transmission worm gear meshing with first transmission worm.

[0012] As a preferred scheme of the utility model, the surface of the other side of the third mount is rotatably connected with rotating disc, and rotating disc is fixedly connected with the other end of rotating seat, the surface of the other side of the third mount is equipped with arc slot, the surface of the arc slot is slidably connected with transmission rod, and transmission rod is rotatably connected with the surface of rotating disc and rotating seat, the surface of the rotating disc is equipped with third servo motor, the surface of the output shaft of third servo motor and the surface of transmission rod are both fixedly connected with second belt pulley, and two second belt pulleys are rotatably connected by second transmission belt.

[0013] As a preferred scheme of the present application, the cleaning mechanism comprises a cleaning seat installed on the inner wall of the cleaning pool, the surface of the cleaning seat is rotationally connected with two cleaning rollers, the surface of the cleaning roller is fixedly connected with a cleaning brush, the surface of the cleaning seat below the cleaning roller is rotationally connected with two connecting shafts, one side of the cleaning roller and the two ends of the connecting shaft are fixedly connected with a third belt pulley, and the two third belt pulleys are rotationally connected through a third transmission belt, the surface of one side of the cleaning seat is installed with a first bidirectional motor, the surface of the two end output shafts of the first bidirectional motor is fixedly connected with a first bevel gear, and the surface of one end of the connecting shaft is fixedly connected with a second bevel gear meshing with the first bevel gear.

[0014] As a preferred scheme of the present application, the spraying mechanism comprises a water storage tank installed on the upper surface of the supporting bottom plate, a second mounting seat is installed on the upper surface of the water storage tank, a first booster water pump is installed on the back of the water storage tank, the water inlet end of the first booster water pump is communicated with the water storage tank, the water outlet end of the first booster water pump is fixedly connected with a water delivery pipe, a water delivery plate is installed on the surface of the second mounting seat, the water delivery pipe is communicated with the water delivery plate, a rotating block is rotationally connected on the surface of the second mounting seat, and a plurality of spray heads are installed on the bottom of the rotating block and communicated with the water delivery plate.

[0015] As a preferred scheme of the present application, the surface of the second mounting seat is rotationally connected with two reciprocating screw rods, the inner wall of the water storage tank is slidingly connected with an inner threaded block threadedly connected with the reciprocating screw rod, the surface of the inner threaded block is fixedly connected with a transmission gear plate, the surface of the rotating block is installed with a transmission gear, and the transmission gear is meshed with the transmission gear plate, a second bidirectional motor is installed on the surface of the second mounting seat, and the output shafts at both ends of the second bidirectional motor are fixedly connected with the reciprocating screw rods.

[0016] As a preferred scheme of the present application, the plastic coating mechanism comprises a plastic coating box installed on the surface of the supporting bottom plate, an agitating rod is rotationally connected in the plastic coating box, the surface of the agitating rod is fixedly connected with an agitating paddle, a fourth servo motor is installed on the surface of one side of the plastic coating box, and the output shaft of the fourth servo motor is fixedly connected with one end of the agitating rod, a plurality of hot air generators are equidistantly installed in the plastic coating box, a dryness control plate is installed on the surface of one side of the plastic coating box and communicated with the plastic coating box, a fourth mounting seat is installed on the upper surface of the plastic coating box, a plurality of plastic coating pipes are equidistantly installed on the surface of the fourth mounting seat, a plurality of plastic coating heads are fixedly connected on the surface of the plastic coating pipe, a second booster water pump is installed on the back of the plastic coating box, the water inlet end of the second booster water pump is communicated with the plastic coating box, and the water outlet end of the second booster water pump is communicated with the plurality of plastic coating pipes.

[0017] As a preferred scheme of the present application, the drying mechanism comprises a drying rack installed on the upper surface of the supporting bottom plate, a drying box adapted to the moving base is installed on the surface of the drying rack, an air inlet cover is installed on the surface of the drying rack, a filter is installed on one side of the air inlet cover, a blower is installed on one side of the filter, a heater is installed at the air outlet end of the blower, an air outlet cover is installed on the top of the drying box, the air inlet cover and the filter are communicated through a first air guide pipe, the filter and the blower are communicated through a second air guide pipe, and the heater and the air outlet cover are communicated through a third air guide pipe.

[0018] 3. Beneficial effects

[0019] Compared with the prior art, the present application has the following advantages:

[0020] (1) The mold overturning mechanism can be moved by the moving mechanism, and the mold can be angle-adjusted and overturned, so that the excess attachments on the surface of the mold are shaken off, thereby ensuring the consistency of the thickness, size and shape of the glove. Through the cooperation of the cleaning pool and the cleaning mechanism, the surface of the mold can be in contact with the soapy water inside the cleaning pool, and the gaps of the mold can be cleaned under the action of the cleaning mechanism, thereby reducing the probability of attachment residues on the surface of the mold and improving the product quality.

[0021] (2) The mold surface can be sprayed with a release agent through the setting of the spraying mechanism, thereby facilitating the demolding of the processed plastic gloves and reducing the damage of the gloves caused by demolding. The mold surface can be coated by the coating mechanism, and the plastic on the surface of the mold can be flattened under the action of the mold overturning mechanism, and the excess plastic can be shaken off. Then, the gloves are dried by the drying mechanism, and the gloves are desulfurized and formed. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a schematic view of a processing equipment suitable for plastic glove forming of the present application;

[0023] Figure 2 It is a first perspective view of a moving mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0024] Figure 3 It is a second perspective view of a moving mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0025] Figure 4 It is a first perspective view of a mold overturning mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0026] Figure 5A second view angle schematic view of a mold overturning mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0027] Figure 6 A third view angle schematic view of a mold overturning mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0028] Figure 7 A schematic view of a cleaning mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0029] Figure 8 A first view angle schematic view of a spraying mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0030] Figure 9 A second view angle schematic view of a spraying mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0031] Figure 10 A sectional view of a plastic coating mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0032] Figure 11 A first view angle schematic view of a drying mechanism in a processing equipment suitable for plastic glove forming of the present application;

[0033] Figure 12 A second view angle schematic view of a drying mechanism in a processing equipment suitable for plastic glove forming of the present application.

[0034] Explanation of reference numerals in the drawings:

[0035] 1, support base plate; 2, moving mechanism; 201, moving base; 202, protection box; 203, first mounting seat; 204, first pulley; 205, first transmission belt; 206, first servo motor; 207, moving seat; 208, limit slide rail; 209, reinforcing seat; 210, rolling wheel; 211, shock absorber; 212, displacement sensor; 213, support plate; 3, mold overturning mechanism; 301, third mounting seat; 302, rotating seat; 303, glove mold; 304, first gear; 305, second gear; 306, second servo motor; 307, first transmission worm; 308, first transmission worm gear; 309, rotating disc; 310, arc-shaped groove; 311, transmission rod; 312, third servo motor; 313, second pulley; 314, second transmission belt; 315, second transmission worm; 316, second transmission worm gear; 4, cleaning pool; 5, cleaning mechanism; 501, cleaning seat; 502, cleaning roller; 503, cleaning brush; 504, connecting shaft; 505, third pulley; 506, third transmission belt; 507, first bidirectional motor; 508, first bevel gear; 509, second bevel gear; 6, spraying mechanism; 601, water storage tank; 602, second mounting seat; 603, water delivery pipe; 604, water delivery plate; 605, rotating block; 606, spraying head; 607, reciprocating screw rod; 608, internally threaded block; 609, transmission toothed plate; 610, transmission gear; 611, second bidirectional motor; 7, plastic coating mechanism; 701, plastic coating box; 702, stirring rod; 703, stirring paddle; 704, fourth servo motor; 705, hot air generator; 706, drying control plate; 707, fourth mounting seat; 708, plastic coating pipe; 709, plastic coating head; 710, second booster water pump; 8, drying mechanism; 801, drying rack; 802, drying box; 803, air inlet cover; 804, filter; 805, air blower; 806, heater; 807, air outlet cover; 808, first air guide pipe; 809, second air guide pipe; 810, third air guide pipe. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described 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, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0037] Embodiment:

[0038] Please refer to Figures 1-12The utility model relates to a kind of processing equipment suitable for plastic glove forming, comprising: support base plate 1, one side of support base plate 1 is equipped with moving mechanism 2, the surface of moving mechanism 2 is equipped with mould overturning mechanism 3, the upper surface of support base plate 1 is equipped with cleaning pool 4, the inner side of cleaning pool 4 is equipped with cleaning mechanism 5, one side of cleaning pool 4 is equipped with spraying mechanism 6, one side of spraying mechanism 6 is equipped with plastic coating mechanism 7, one side of plastic coating mechanism 7 is equipped with drying mechanism 8 compatible with moving mechanism 2.

[0039] In the embodiment of the application, the mould overturning mechanism 3 can be moved by the moving mechanism 2, and the mould can be adjusted in angle and overturned, so that the excess attachments on the surface of the mould are shaken off, thereby ensuring the consistency of the thickness, size and shape of the glove, the surface of the mould can be contacted with the soapy water in the cleaning pool 4 by the cooperation of the cleaning pool 4 and the cleaning mechanism 5, and the gaps of the mould can be cleaned under the action of the cleaning mechanism 5, thereby reducing the probability of attachment residues on the surface of the mould, and improving the product quality, the surface of the mould can be sprayed with demoulding agent by the spraying mechanism 6, thereby facilitating the demoulding of the plastic glove after processing, and reducing the damage of the glove caused by demoulding, the surface of the mould can be coated by the plastic coating mechanism 7, and the plastic on the surface of the mould can be leveled and the excess plastic can be shaken off under the action of the mould overturning mechanism 3, and then the glove is dried by the drying mechanism 8, and the glove is formed by desulfurization.

[0040] Specifically, the moving mechanism 2 comprises a moving base 201 mounted on one side of the support base plate 1, protection boxes 202 mounted on the surfaces of the two sides of the moving base 201, first mounting seats 203 mounted in the inner sides of the two protection boxes 202, first belt pulleys 204 mounted on the surfaces of the first mounting seats 203, two first belt pulleys 204 rotationally connected by a first transmission belt 205, a support bracket 213 mounted on the surface of the moving base 201 for supporting the first transmission belt 205, a moving seat 207 mounted on the surface of the first transmission belt 205, a first servo motor 206 mounted on one side of the moving base 201, with the output shaft of the first servo motor 206 fixedly connected with one first belt pulley 204, a limiting slide rail 208 mounted on one side of the support bracket 213 on the upper surface of the moving base 201, a reinforcing seat 209 mounted on the surface of the moving seat 207, rolling wheels 210 rotationally connected with the surface of the reinforcing seat 209, with the rolling wheels 210 in contact with the surface of the limiting slide rail 208, shock absorbers 211 mounted on the surfaces of the two sides of the moving base 201, and a displacement sensor 212 mounted on the surface of the moving base 201 and inside the shock absorbers 211.

[0041] In the specific embodiment of the present application, the first servo motor 206 is started to drive the first pulley 204 on one side to rotate, at this time, the first transmission belt 205 drives the first pulley 204 on the other side to rotate, thereby driving the moving base 207 to move, the moving base 207 drives the reinforcing base 209 and the rolling wheel 210 to move, and the rolling wheel 210 moves on the surface of the limiting slide rail 208, and the shock absorber 211 can limit the reinforcing base 209 when it moves to the two ends of the moving base 201.

[0042] Specifically, the mold overturning mechanism 3 comprises two third mounting seats 301 mounted on the surface of the moving base 207, the inner side of the third mounting seat 301 is rotationally connected with a rotating seat 302, the surface of the rotating seat 302 is rotationally connected with three glove molds 303, the surface of the glove mold 303 is mounted with a first gear 304, the surface of the third mounting seat 301 and located at the inner side of the three first gears 304 is rotationally connected with a second gear 305, and the inner side of the three first gears 304 is rotationally connected with the two second gears 305 respectively, the surface of one side of the third mounting seat 301 is mounted with a second servo motor 306, the surface of the output shaft of the second servo motor 306 is fixedly connected with a first transmission worm 307, the surface of one end of the rotating seat 302 is fixedly connected with a first transmission worm wheel 308 meshing with the first transmission worm 307, the surface of the other side of the third mounting seat 301 is rotationally connected with a rotating disc 309, and the other end of the rotating seat 302 is fixedly connected with the rotating disc 309, the surface of the other side of the third mounting seat 301 is provided with an arc-shaped groove 310, the surface of the arc-shaped groove 310 is slidably connected with a transmission rod 311, and the surface of the rotating disc 309 and the rotating seat 302 is rotationally connected with the transmission rod 311, the surface of the rotating disc 309 is mounted with a third servo motor 312, the surface of the output shaft of the third servo motor 312 and the surface of the transmission rod 311 are fixedly connected with a second pulley 313 respectively, and the two second pulleys 313 are rotationally connected through a second transmission belt 314.

[0043] In the specific embodiment of the present application, when the third servo motor 312 is started, the output shaft of the third servo motor 312 drives the transmission rod 311 to rotate under the action of the second pulley 313 and the second transmission belt 314, the transmission rod 311 drives the second transmission worm 315 to rotate, at this time, the second transmission worm wheel 316 drives the middle glove mold 303 to rotate, at this time, the first gear 304 and the second gear 305 drive the plurality of glove molds 303 to rotate, when the second servo motor 306 is started, the output shaft of the second servo motor 306 drives the rotating seat 302 to rotate under the action of the first transmission worm 307 and the first transmission worm wheel 308, the rotating seat 302 drives the rotating disc 309 to adjust the angle at the same time, and drives the transmission rod 311 to slide on the surface of the arc-shaped groove 310.

[0044] Specifically, the cleaning mechanism 5 comprises a cleaning seat 501 installed on the inner wall of the cleaning pool 4, the surface of the cleaning seat 501 is rotatably connected with two cleaning rollers 502, the surface of the cleaning roller 502 is fixedly connected with a cleaning brush 503, the surface of the cleaning seat 501 and below the cleaning roller 502 is rotatably connected with two connecting shafts 504, one side of the cleaning roller 502 and the two ends of the connecting shaft 504 are fixedly connected with a third belt pulley 505, and the two third belt pulleys 505 are rotatably connected through a third transmission belt 506, the surface of one side of the cleaning seat 501 is installed with a first bidirectional motor 507, the surface of the two end output shafts of the first bidirectional motor 507 is fixedly connected with a first bevel gear 508, the surface of one end of the connecting shaft 504 is fixedly connected with a second bevel gear 509 meshed with the first bevel gear 508.

[0045] In the specific embodiment of the present application, when the first bevel gear 508 is started, the two end output shafts of the first bevel gear 508 drive the first bevel gear 508 to rotate, at this time, the connecting shaft 504 is driven to rotate under the action of the second bevel gear 509, at this time, the cleaning roller 502 is driven to rotate under the action of the third belt pulley 505 and the third transmission belt 506, the cleaning roller 502 drives the cleaning brush 503 to rotate, thereby cleaning the surface of the glove mold 303.

[0046] Specifically, the spraying mechanism 6 comprises a water storage tank 601 installed on the upper surface of the support bottom plate 1, a second mounting seat 602 is installed on the upper surface of the water storage tank 601, a first booster water pump is installed on the back of the water storage tank 601, the water inlet end of the first booster water pump is communicated with the water storage tank 601, the water outlet end of the first booster water pump is fixedly connected with a water delivery pipe 603, a water delivery plate 604 is installed on the surface of the second mounting seat 602, and the water delivery pipe 603 is communicated with the water delivery plate 604, a rotating block 605 is rotatably connected with the surface of the second mounting seat 602, a plurality of spray heads 606 are installed on the bottom of the rotating block 605, and the plurality of spray heads 606 are communicated with the water delivery plate 604, two reciprocating screw rods 607 are rotatably connected with the surface of the second mounting seat 602, an internal threaded block 608 is slidably connected with the inner wall of the water storage tank 601 and is screwed with the reciprocating screw rod 607, a transmission tooth plate 609 is fixedly connected with the surface of the internal threaded block 608, a transmission gear 610 is installed on the surface of the rotating block 605 and is meshed with the transmission tooth plate 609, a second bidirectional motor 611 is installed on the surface of the second mounting seat 602, and the output shafts at both ends of the second bidirectional motor 611 are fixedly connected with the reciprocating screw rods 607.

[0047] In the specific embodiment of the present application, when the first booster water pump is started, the degreasing agent inside the water storage tank 601 is delivered to the water delivery pipe 603, and then the degreasing agent is delivered to the spray head 606 through the water delivery pipe 603 and the water delivery plate 604, at this time the spray head 606 sprays the degreasing agent on the surface of the glove mold 303, and at the same time the second bidirectional motor 611 is started, and the output shaft drives the reciprocating screw rod 607 to rotate, at this time the inner threaded block 608 moves reciprocally under the action of the reciprocating screw rod 607, the reciprocating screw rod 607 drives the transmission gear plate 609 to move, at this time the rotating block 605 is adjusted in angle under the action of the transmission gear 610, so that the glove mold 303 is sprayed at multiple places.

[0048] Specifically, the plastic coating mechanism 7 includes a plastic coating box 701 mounted on the surface of the support bottom plate 1, an agitation rod 702 rotatably connected inside the plastic coating box 701, agitation paddles 703 fixedly connected to the surface of the agitation rod 702, a fourth servo motor 704 mounted on one side of the surface of the plastic coating box 701, and the output shaft of the fourth servo motor 704 is fixedly connected to one end of the agitation rod 702, a plurality of hot air generators 705 are installed at equal intervals inside the plastic coating box 701, a dry control plate 706 is mounted on one side of the surface of the plastic coating box 701, and the dry control plate 706 is in communication with the plastic coating box 701, a fourth mounting seat 707 is mounted on the upper surface of the plastic coating box 701, a plurality of plastic coating pipes 708 are mounted at equal intervals on the surface of the fourth mounting seat 707, a plurality of plastic coating heads 709 are fixedly connected to the surface of the plastic coating pipes 708, and a second booster water pump 710 is mounted on the back of the plastic coating box 701, the water inlet end of the second booster water pump 710 is in communication with the plastic coating box 701, and the water outlet end of the second booster water pump 710 is in communication with the plurality of plastic coating pipes 708.

[0049] In the specific embodiment of the present application, the plastic inside the plastic coating box 701 is continuously heated under the action of the hot air generators 705, then the fourth servo motor 704 is started, and the output shaft drives the agitation rod 702 and the agitation paddles 703 to stir the plastic, thereby increasing the heating effect of the plastic, then the second booster water pump 710 delivers the plastic fluid of the second booster water pump 710 to the plastic coating pipes 708, at this time the glove mold 303 is sprayed through the plurality of plastic coating heads 709, thereby making the plastic adhere to the surface of the glove mold 303, since the glove mold 303 is continuously rotating, the thickness of the plastic adhered to the surface of the glove mold 303 is the same, and the excess plastic is thrown out, then the dry control plate 706 continues to collect and recycle the excess plastic.

[0050] Specifically, the drying mechanism 8 comprises a drying rack 801 installed on the upper surface of the support bottom plate 1, the surface of the drying rack 801 is provided with a drying box 802 matched with the moving base 201, the surface of the drying rack 801 is provided with an air inlet cover 803, one side of the air inlet cover 803 is provided with a filter 804, one side of the filter 804 is provided with a blower 805, the air outlet end of the blower 805 is provided with a heater 806, the top of the drying box 802 is provided with an air outlet cover 807, the air inlet cover 803 and the filter 804 are communicated through a first air guide pipe 808, the filter 804 and the blower 805 are communicated through a second air guide pipe 809, and the heater 806 and the air outlet cover 807 are communicated through a third air guide pipe 810.

[0051] In the specific embodiment of the present application, the blower 805 is started, at this time, air enters from the air inlet cover 803, the air enters the filter 804 under the action of the first air guide pipe 808, and the filter 804 filters the air, the gas after the process is moved to the inside of the blower 805 through the second air guide pipe 809, and then is transported to the inside of the heater 806 by the blower 805, at this time, the heater 806 heats the air, and the heated gas moves to the inside of the air outlet cover 807 through the third air guide pipe 810, and then the air outlet cover 807 heats and forms the glove on the surface of the glove mold 303.

[0052] A use method of a processing equipment suitable for plastic glove forming, comprising the following steps:

[0053] The first servo motor 206 is started, and the output shaft drives one side of the first pulley 204 to rotate. At this time, the first transmission belt 205 drives the other side of the first pulley 204 to rotate, thereby driving the moving seat 207 to move. The moving seat 207 drives the reinforcing seat 209 and the rolling wheel 210 to move, and makes the rolling wheel 210 move on the surface of the limiting slide rail 208. The shock absorber 211 can limit the movement of the reinforcing seat 209 when it moves to both ends of the moving base 201. The moving mechanism 2 can drive the mold turnover mechanism 3 to move. When the third servo motor 312 is started, the output shaft drives the transmission rod 311 to rotate under the action of the second pulley 313 and the second transmission belt 314. The transmission rod 311 drives the second transmission worm 315 to rotate. At this time, the second transmission worm wheel 316 drives the middle glove mold 303 to rotate. At this time, the first gear 304 and the second gear 305 make the plurality of glove molds 303 rotate. When the second servo motor 306 is started, the output shaft drives the rotating seat 302 to rotate under the action of the first transmission worm 307 and the first transmission worm wheel 308. The rotating seat 302 rotates at the same time, drives the rotating disc 309 to adjust the angle, and drives the transmission rod 311 to slide on the surface of the arc-shaped groove 310, thereby throwing away the excess attachments on the surface of the mold, and ensuring the consistency of the thickness, size and shape of the glove.

[0054] The glove mold 303 is in contact with the soapy water in the cleaning tank 4. At the same time, when the first bevel gear 508 is started, the output shafts at both ends drive the first bevel gear 508 to rotate. At this time, the second bevel gear 509 drives the connecting shaft 504 to rotate. At this time, the third pulley 505 and the third transmission belt 506 drive the cleaning roller 502 to rotate. The cleaning roller 502 drives the cleaning brush 503 to rotate, thereby cleaning the surface of the glove mold 303, thereby reducing the probability of attachment residues on the surface of the mold, and thereby improving the product quality.

[0055] When the first booster pump is started, the degreasing agent in the water storage tank 601 is delivered to the water delivery pipe 603. At this time, the degreasing agent is delivered to the spray head 606 through the water delivery plate 604 through the water delivery pipe 603. At this time, the spray head 606 sprays the degreasing agent on the surface of the glove mold 303. At the same time, the second bidirectional motor 611 is started, and the output shaft drives the reciprocating screw rod 607 to rotate. At this time, the inner threaded block 608 moves reciprocally under the action of the reciprocating screw rod 607. The reciprocating screw rod 607 drives the transmission tooth plate 609 to move. At this time, the transmission gear 610 makes the rotating block 605 reciprocate and adjust the angle, thereby spraying the glove mold 303 in multiple places, thereby facilitating the demolding of the finished plastic gloves, and reducing the damage of the gloves caused by demolding.

[0056] At the same time, the plastic inside the plastic coating box 701 will continue to be heated under the action of the hot air generator 705. Then the fourth servo motor 704 starts its output shaft to drive the stirring rod 702 and the stirring paddle 703 to stir the plastic, thereby increasing the heating effect of the plastic. Then the second booster water pump 710 delivers the plastic fluid of the second booster water pump 710 to the plastic coating pipe 708. At this time, the glove mold 303 is sprayed by multiple plastic coating heads 709, so that the plastic is adhered to the surface of the glove mold 303. Since the glove mold 303 is continuously rotating, the thickness of the plastic adhered to the surface of the glove mold 303 is the same, and the excess plastic is thrown out. Then the dry control plate 706 will continue to collect and recycle the excess plastic.

[0057] The air enters the air inlet cover 803, and under the action of the first air guide pipe 808, the air enters the filter 804 and is filtered by the filter 804. The gas after the process moves to the inside of the air blower 805 through the second air guide pipe 809, and is then delivered to the inside of the heater 806 by the air blower 805. At this time, the heater 806 heats the air. The heated gas moves to the inside of the exhaust cover 807 through the third air guide pipe 810, and then heats the gloves on the surface of the glove mold 303 through the exhaust cover 807, so that the gloves are desulfurized and formed.

[0058] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacement or change according to the technical solution and the improvement concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A processing equipment suitable for molding plastic gloves, characterized in that, include: A supporting base plate (1) is provided. A moving mechanism (2) is installed on one side of the supporting base plate (1). A mold flipping mechanism (3) is installed on the surface of the moving mechanism (2). A cleaning tank (4) is installed on the upper surface of the supporting base plate (1). A cleaning mechanism (5) is installed on the inner side of the cleaning tank (4). A spraying mechanism (6) is installed on one side of the cleaning tank (4). A coating mechanism (7) is installed on one side of the spraying mechanism (6). A drying mechanism (8) adapted to the moving mechanism (2) is installed on one side of the coating mechanism (7).

2. The processing equipment for molding plastic gloves according to claim 1, characterized in that, The moving mechanism (2) includes a movable base (201) installed on one side of the support base plate (1). Protective boxes (202) are installed on both sides of the movable base (201). A first mounting seat (203) is installed on the inner side of each of the two protective boxes (202). A first pulley (204) is installed on the surface of the first mounting seat (203), and the two first pulleys (204) are rotatably connected by a first transmission belt (205). A support plate (213) for supporting the first transmission belt (205) is installed on the surface of the movable base (201). A movable seat (207) is installed on the surface of the first transmission belt (205). A first servo motor (206) is installed on one side of the movable base (201), and the output shaft of the first servo motor (206) is fixedly connected to a first pulley (204).

3. The processing equipment for molding plastic gloves according to claim 2, characterized in that, A limiting slide rail (208) is installed on the upper surface of the movable base (201) and on one side of the support plate (213). A reinforcing seat (209) is installed on the surface of the movable base (207). A rolling wheel (210) is rotatably connected to the surface of the reinforcing seat (209), and the rolling wheel (210) is in contact with the surface of the limiting slide rail (208). Shock absorbers (211) are installed on both sides of the movable base (201). A displacement sensor (212) is installed on the surface of the movable base (201) and inside the shock absorber (211).

4. The processing equipment for molding plastic gloves according to claim 3, characterized in that, The mold flipping mechanism (3) includes two third mounting seats (301) mounted on the surface of the movable seat (207). A rotating seat (302) is rotatably connected to the inner side of the third mounting seat (301). Three glove molds (303) are rotatably connected to the surface of the rotating seat (302). A first gear (304) is mounted on the surface of each glove mold (303). A second gear (305) is rotatably connected to the surface of the third mounting seat (301) and to the inner side of each of the three first gears (304). Two second gears (305) are rotatably connected to the inner side of each of the three first gears (304). A second servo motor (306) is mounted on the surface of one side of the third mounting seat (301). A first transmission worm (307) is fixedly connected to the surface of the output shaft of the second servo motor (306). A first transmission worm wheel (308) meshing with the first transmission worm (307) is fixedly connected to the surface of one end of the rotating seat (302).

5. The processing equipment for molding plastic gloves according to claim 4, characterized in that, A rotating disk (309) is rotatably connected to the surface of the third mounting base (301) on the other side, and the rotating disk (309) is fixedly connected to the other end of the rotating seat (302). An arc groove (310) is opened on the surface of the third mounting base (301) on the other side. A transmission rod (311) is slidably connected to the surface of the arc groove (310), and the transmission rod (311) is rotatably connected to the surface of the rotating disk (309) and the rotating seat (302). A third servo motor (312) is installed on the surface of the rotating disk (309). A second pulley (313) is fixedly connected to the surface of the output shaft of the third servo motor (312) and the surface of the transmission rod (311), and the two second pulleys (313) are rotatably connected through a second transmission belt (314).

6. The processing equipment for molding plastic gloves according to claim 5, characterized in that, The cleaning mechanism (5) includes a cleaning seat (501) installed on the inner wall of the cleaning tank (4). Two cleaning rollers (502) are rotatably connected to the surface of the cleaning seat (501). A cleaning brush (503) is fixedly connected to the surface of the cleaning rollers (502). Two connecting shafts (504) are rotatably connected to the surface of the cleaning seat (501) and below the cleaning rollers (502). A third pulley (505) is fixedly connected to both ends of the cleaning rollers (502) and the connecting shafts (504) on one side. The two third pulleys (505) are rotatably connected through a third transmission belt (506). A first bidirectional motor (507) is installed on one side of the cleaning seat (501). A first bevel gear (508) is fixedly connected to the surface of the output shafts at both ends of the first bidirectional motor (507). A second bevel gear (509) that meshes with the first bevel gear (508) is fixedly connected to the surface of one end of the connecting shaft (504).

7. The processing equipment for molding plastic gloves according to claim 6, characterized in that, The spraying mechanism (6) includes a water tank (601) installed on the upper surface of the support base plate (1). A second mounting base (602) is installed on the upper surface of the water tank (601). A first booster pump is installed on the back of the water tank (601). The inlet end of the first booster pump is connected to the water tank (601). A water supply pipe (603) is fixedly connected to the outlet end of the first booster pump. A water supply plate (604) is installed on the surface of the second mounting base (602). The water supply pipe (603) is connected to the water supply plate (604). A rotating block (605) is rotatably connected to the surface of the second mounting base (602). A plurality of spray heads (606) are installed at the bottom of the rotating block (605). All of the spray heads (606) are connected to the water supply plate (604).

8. The processing equipment for molding plastic gloves according to claim 7, characterized in that, The surface of the second mounting base (602) is rotatably connected to two reciprocating screws (607). The inner wall of the water tank (601) is slidably connected to an internal thread block (608) that is threadedly connected to the reciprocating screws (607). The surface of the internal thread block (608) is fixedly connected to a transmission gear plate (609). The surface of the rotating block (605) is equipped with a transmission gear (610), and the transmission gear (610) meshes with the transmission gear plate (609). The surface of the second mounting base (602) is equipped with a second bidirectional motor (611), and the output shafts at both ends of the second bidirectional motor (611) are fixedly connected to the reciprocating screws (607).

9. A processing equipment suitable for molding plastic gloves according to claim 8, characterized in that, The coating mechanism (7) includes a coating box (701) mounted on the surface of the supporting base plate (1). A stirring rod (702) is rotatably connected inside the coating box (701). A stirring blade (703) is fixedly connected to the surface of the stirring rod (702). A fourth servo motor (704) is mounted on one side of the coating box (701), and the output shaft of the fourth servo motor (704) is fixedly connected to one end of the stirring rod (702). Multiple hot air blowers (705) are equidistantly installed inside the coating box (701). A drying control plate is mounted on one side of the coating box (701). (706), and the drying control plate (706) is connected to the coating box (701). A fourth mounting base (707) is installed on the upper surface of the coating box (701). Multiple coating pipes (708) are installed at equal intervals on the surface of the fourth mounting base (707). Multiple coating heads (709) are fixedly connected to the surface of the coating pipes (708). A second booster water pump (710) is installed on the back of the coating box (701). The inlet end of the second booster water pump (710) is connected to the coating box (701), and the outlet end of the second booster water pump (710) is connected to the multiple coating pipes (708).

10. A processing equipment suitable for molding plastic gloves according to claim 9, characterized in that, The drying mechanism (8) includes a drying rack (801) mounted on the upper surface of the support base plate (1). A drying box (802) adapted to the movable base (201) is mounted on the surface of the drying rack (801). An air inlet hood (803) is mounted on the surface of the drying rack (801). A filter (804) is mounted on one side of the air inlet hood (803). A blower (805) is mounted on one side of the filter (804). A heater (806) is mounted on the air outlet end of the blower (805). An exhaust hood (807) is mounted on the top of the drying box (802). The air inlet hood (803) and the filter (804) are connected through a first air guide pipe (808). The filter (804) and the blower (805) are connected through a second air guide pipe (809). The heater (806) and the exhaust hood (807) are connected through a third air guide pipe (810).