Gum dipping glove production device and use method
By designing a glue-impregnated glove production device with a closed shell structure, the high temperature and humidity in the drying process are collected by using a condenser tube to reduce environmental pollution, and the airflow-driven mold release and automated filter plate cleaning are solved, and the environmental pollution in the drying process, the high cost of mold release process and labor-intensive cleaning of filter plates in the prior art are solved, and the production efficiency and environmental protection are improved.
Patent Information
- Application Number
- CN202510169800.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing production process of glue-impregnated gloves, the emission of high-temperature and high-humidity air during the drying process is harmful to the environment, and the mold release process relies on mechanical equipment, which increases production costs and may damage the gloves. The filter plate is prone to clogging and needs to be cleaned frequently, which affects the production continuity.
A glue-impregnated glove production device is designed, which uses a closed shell structure for drying, and uses an exhaust pump and a condenser tube to condense the high-temperature and humidity to collect it to reduce the impact on the environment. At the same time, airflow-driven mold release is achieved through electric push rods and air injection cylinders, reducing mechanical transmission structures and reducing costs. The cleaning of the filter plate is automatically completed by the electric push rod to drive the cleaning scraper to reduce labor.
It effectively reduces the emission of high-temperature and high-humidity air during the drying process and reduces environmental pollution; mold release through airflow drive reduces glove damage and mechanical transmission costs; automated filter plate cleaning reduces human labor and equipment downtime, and improves production efficiency and environmental protection.
Smart Images

Figure CN119974342A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of dipped gloves production equipment, and in particular to a dipped gloves production device and a use method. Background Art
[0002] Dipped gloves, also known as latex gloves, are a type of gloves. They are different from ordinary gloves and are made of latex. They can be used in household, industrial, medical, beauty and other industries, and are essential hand protection products. Dipped gloves are made of natural latex and other fine additives. The product has undergone special surface treatment and is comfortable to wear. It is widely used in industrial and agricultural production, medical treatment, and daily life.
[0003] When dipped gloves are produced and processed using a production line, the first step is to put the gloves on the hand mold; the second step is to dip the gloves in glue; the third step is to dry the gloves; and the fourth step is to demould the gloves. The position of the hand mold fixing seat is moved by a conveying device to be used for the processing of different steps of the dipped gloves, thereby realizing continuous processing of the gloves. The conveying device is used for the horizontal position of the hand mold fixing seat to be driven by a double-chain conveyor, and drying is often required during the production process of dipped gloves.
[0004] However, in the current production process of dipped gloves, there are several prominent problems, which seriously affect the production efficiency, product quality, and the convenience and environmental protection of the production process.
[0005] First of all, in the drying process of dipped gloves, hot air drying is currently widely used. In the actual operation of this drying method, it is necessary to continuously discharge the air in the drying room. Since the exhausted air is in a high temperature and high humidity state, if it is directly discharged into the external environment without effective treatment, it will have an adverse effect on the surrounding environment. For example, in areas with high humidity, the discharge of these high temperature and high humidity air will further increase the environmental humidity, and the excessively high environmental humidity will in turn affect the dryness of the air blown into the drying room during drying, which will reduce the drying efficiency and increase the energy consumption, thus affecting the entire production progress.
[0006] Secondly, there are also problems with the demoulding process of the dipped gloves after drying. Currently, demoulding of gloves mostly relies on mechanical equipment. The gloves are first clamped by a mechanical clamp, and then the gloves are removed from the hand mold by moving the clamp. In this process, on the one hand, the additional purchase and maintenance of mechanical demoulding equipment undoubtedly increases the production cost, including the purchase cost of the equipment, the subsequent repair and maintenance costs, and the energy consumption cost required for equipment operation. On the other hand, the mechanical clamping method is easy to cause damage to the gloves during operation. In the process of being clamped, the gloves may be stretched and deformed, and the surface may be scratched due to uneven force. This not only affects the appearance quality of the dipped gloves, but may also reduce the performance of the gloves, resulting in an increase in the defective rate.
[0007] Furthermore, when the existing hot air drying device is in operation, it is necessary to filter the drying gas sucked from the outside to ensure the purity of the drying gas and prevent impurities from contaminating the dipped gloves. However, the filter plate used in the existing drying device is easily clogged by dust and impurities, and the operator needs to manually clean or replace it frequently. This process not only consumes manpower and increases the labor burden of the operator, but also the drying equipment needs to be shut down when cleaning or replacing the filter plate, affecting the continuity of production. In addition, after the production of the dipped gloves is completed, the collection box for collecting the gloves is mostly taken out by manual pushing and pulling, which consumes physical strength, brings many inconveniences to actual production use, and reduces production efficiency. Summary of the invention
[0008] The object of the present invention is to provide a production device for dipped gloves and a method for using the same, comprising a fixed frame, wherein a through hole 1 and a through hole 2 are provided on the top of the fixed frame, a support guide seat is arranged on the top of the fixed frame, a support plate is connected to the outer wall of the support guide seat on one side, a photoelectric sensor is arranged on the top of the support plate, a support frame is arranged on the top of a plurality of the support guide seats, an electric push rod 1 is arranged on the top of the support frame, a lifting rod is connected to the output end of the electric push rod 1, a support foot seat, a fixed box and a collection frame are arranged on the bottom of the fixed frame, an air inlet is provided on the front and rear outer walls of the fixed box, a water storage tank is arranged on the front outer wall of the fixed box, a drainage tank is arranged on the rear outer wall of the fixed box, and a fixed box is arranged on the side wall of the fixed box. A fixed cover plate, the outer wall of the fixed cover plate is provided with a through square hole, the inner wall of the fixed box is provided with a connecting baffle, the bottom of the inner cavity of the fixed box is provided with a placement box, the side wall of the placement box is provided with a mounting shell, the top of the mounting shell is provided with a hot air ejection outlet, the top of the mounting shell is also provided with a connecting shell, an electric push rod 2 is fixedly installed inside the connecting shell, the output end of the electric push rod 2 is connected to a cleaning scraper, a plurality of the support guide seats are guided and slid with a transmission chain on the inner wall, a plurality of the transmission chains are connected with a glove placement assembly, the glove placement assembly includes a support rod, a closed shell is provided on the top of the fixed frame, a connecting cover and a mounting box are provided on the top of the closed shell, and a condenser is provided inside the mounting box.
[0009] Preferably, an air pipe is provided on the outer wall of the lifting rod, the end of the air pipe is connected to the top of the water tank, an air injection cylinder is provided at the bottom of the lifting rod, a plurality of the air injection cylinders are interconnected with the interior of the lifting rod, and the interior of the lifting rod is hollow.
[0010] Preferably, a filter plate is fixedly connected to the top of the placement box, an inclined seat is provided on the outer wall of the placement box, a drying pump is provided at the bottom of the inner cavity of the placement box, multiple air inlet ends of the drying pumps are connected to air guide covers, and an electric heating network is provided on the inner wall of the placement box.
[0011] Preferably, the cleaning scraper is in contact with the top surface of the filter plate, a connecting rod is provided on the outer wall of the cleaning scraper, the connecting rod passes through the through square hole and the rear end of the collecting rack is connected with a material resistance plate, and a collecting box is slidably connected inside the collecting rack.
[0012] Preferably, the tops of the plurality of support rods are provided with air inlet cylinders, and the plurality of air injection cylinders are adapted to the inner diameters of the plurality of air inlet cylinders.
[0013] Preferably, the interior of the plurality of support rods is hollow, the outer walls of the plurality of support rods are provided with mounting tubes, the circumferential outer wall of the mounting tubes is integrally formed with a connecting ring, the circumferential outer wall of the connecting ring is provided with an air outlet hole 1, the circumferential outer wall of the connecting ring is also movably clamped with a ball, and the front outer wall of the connecting ring is also provided with an air outlet hole 2.
[0014] Preferably, a hand mold is provided on the front outer wall of the plurality of mounting tubes, the interior of the plurality of hand molds is hollow, and air outlet holes three are provided at the fingertips of the plurality of hand molds.
[0015] Preferably, an exhaust pump is provided on the top of the connecting cover, and the exhaust pump suction end extends to the inside of the connecting cover. The connecting cover is the same as the closed shell. The exhaust end of the exhaust pump is connected to an exhaust pipe, and the end of the exhaust pipe is connected to the end of the condenser.
[0016] Preferably, the end of the condenser is connected to a discharge pipe, the end of the discharge pipe extends into the water tank and is fixed to the top of the water tank, a cover plate is provided on the top of the installation box, a cooling fan is provided on the top of the cover plate, an observation window and a drain valve are provided on the outside of the water tank, and an electromagnetic valve and a water level sensor are provided on the inner wall of the water tank.
[0017] The use method of the dipped gloves production device is as follows:
[0018] S1: Preparation: When in use, multiple gloves can be respectively put on multiple hand molds, and then the gloves can be dipped in glue using an external dipping device. After the dipping process, multiple transmission chains can be driven by an external sprocket to drive the multiple glove placement components to move. During the movement, the multiple glove placement components will pass through the interior of the closed shell in turn.
[0019] S2: Drying process: In the process of passing through the closed shell in sequence, the external air can be sucked through multiple drying pumps, and then the impurities in the air are filtered through the filter plate, and then the gas blown into the closed shell is heated by the electric heating network, so as to better dry the gloves.
[0020] S3: Moisture discharge: During the drying process, in order to avoid moisture accumulation inside the closed shell, an exhaust pump is used to discharge the moisture inside the closed shell. Then the high-temperature moisture is transferred to the condenser tube for condensation through the exhaust pump. The cooling fan can cool the condenser tube by air, thereby ensuring the condensation effect of the condenser tube. After the high-temperature and high-humidity air is condensed, the condensed water and air will be transported to the water tank for collection.
[0021] S4: Condensate discharge: When the condensate reaches a certain water level and is monitored by the water level sensor, the solenoid valve will open, and the condensate will pass through the solenoid valve on the inner wall of the water storage tank and enter the top of the tilt seat. At this time, the condensate will flow into the drainage tank due to gravity for collection and discharge.
[0022] S5: Gas recycling: After the gas discharged during condensation and drying is collected in the water storage tank, the excess gas will enter the lifting rod through the gas pipe and be discharged through multiple gas injection cylinders. After the gloves are dried, the multiple glove placement components will pass under the photoelectric sensor in turn. Every time they pass, the external drive sprocket will stop moving, thereby ensuring that the glove placement component can stop moving. Then, the electric push rod 1 drives the multiple gas injection cylinders to be inserted into the air inlet cylinder, and then gas is injected into the multiple connecting rings and hand molds. During the gas injection process, the wrist of the glove will expand due to the gas outlet of the multiple air outlet holes 1, and the air outlet holes 2 will also generate airflow to inflate the space between the glove and the hand mold to reduce the friction between the glove and the hand mold during demolding. On this basis, the multiple balls and the air jets at the fingertips of the hand mold can be better cooperated to smoothly demold the gloves and drop them into the collection box for collection, reducing the mechanical transmission structure required for additional demolding and reducing its use cost.
[0023] S6: Filter plate cleaning: When the collection box has collected enough gloves, the electric push rod 2 can be started to drive the cleaning scraper to move to clean the impurities on the top of the filter plate. During the process of cleaning the filter plate, the connecting rod on the side wall of the cleaning scraper will drive the material resistance plate to move, and then push the collection box, so as to push the collection box out, making it easier for personnel to collect and take the gloves. In this process, the filter plate will push the impurities to the top of the inclined seat, and when the condensed water enters the top of the inclined seat through the electromagnetic valve on the inner wall of the water storage tank, the flow of water will drive the impurities and condensed water to flow into the drainage box for discharge, so that the filter plate can be cleaned in the process of collecting gloves. The condensed water can also better drive the discharge of impurities, reducing the trouble caused by frequent replacement and manual cleaning of the filter plate.
[0024] Compared with the prior art, the beneficial effects of the present invention are as follows: in the drying process, in order to avoid moisture accumulation inside the closed shell, an exhaust pump is used to discharge the moisture inside the closed shell, and then the high-temperature moisture is transmitted to the inside of the condenser tube for condensation through the action of the exhaust pump, and the heat dissipation fan can perform air cooling and heat dissipation on the condenser tube, thereby ensuring the condensation effect of the condenser tube, and after the high-temperature and high-humidity air is condensed, the condensed water and air are transported together to the inside of the water storage tank for collection, thereby reducing the impact of directly discharging the high-humidity air on the environment;
[0025] After the condensed water and the gas discharged during drying are collected in the water storage tank, the excess gas will enter the lifting rod through the gas pipe and be discharged through multiple gas injection cylinders. After the gloves are dried, the multiple glove placement components will pass under the photoelectric sensor in turn. Whenever passing, the external drive sprocket will stop moving, thereby ensuring that the glove placement component can stop moving. Then, the electric push rod 1 drives the multiple gas injection cylinders to be inserted into the air inlet cylinder, and then gas is injected into the multiple connecting rings and hand molds. During the gas injection process, the wrist of the glove will expand due to the gas outlet of the multiple air outlet holes 1, and the air outlet holes 2 will also generate airflow to inflate the space between the glove and the hand mold to reduce the friction between the glove and the hand mold during demolding. On this basis, the gloves can be better demolded and dropped into the collection box for collection in cooperation with the jets at the fingertips of the multiple balls and the hand mold, thereby reducing the mechanical transmission structure required for additional demolding and reducing its use cost. In addition, this method of demolding by airflow can better reduce the appearance impact caused by demolding by clamping the gloves and avoid damage to the dipped gloves.
[0026] When the collection box has collected enough gloves, the electric push rod 2 can be started to drive the cleaning scraper to move to clean the impurities on the top of the filter plate. In the process of cleaning the filter plate, the connecting rod on the side wall of the cleaning scraper will drive the material resistance plate to move, and then push the collection box, so that the collection box is pushed out, making it easier for personnel to collect and take the gloves. In this process, the filter plate will push the impurities to the top of the inclined seat, and the condensed water can be sensed by the water level sensor after reaching a certain water level. At this time, the electromagnetic valve will be opened. At this time, the condensed water can enter the top of the inclined seat through the electromagnetic valve on the inner wall of the water storage tank. The flow of water will drive the impurities and condensed water to flow into the drainage box for discharge, so that the filter plate can be cleaned in the process of collecting gloves. The condensed water can also better drive the impurities to be discharged, reducing the troubles caused by frequent replacement and manual cleaning of the filter plate by personnel. This method of using the discharge to drive the cleaning scraper to push and collect the impurities on the top of the filter plate, and using the inclined flow of condensed water, can better reduce the frequency of personnel replacement and cleaning of the filter plate, and reduce the labor burden of personnel. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0028] Figure 2 It is a schematic diagram of the structure of the fixing frame of the present invention;
[0029] Figure 3 It is a schematic diagram of the hand touch position structure of the present invention;
[0030] Figure 4 It is a schematic diagram of the hand-touch structure of the present invention;
[0031] Figure 5 This is a schematic diagram of the disassembled structure of the fixed box of the present invention;
[0032] Figure 6 It is a schematic diagram of the internal structure of the placement box of the present invention;
[0033] Figure 7 It is a schematic diagram of the closed shell structure of the present invention;
[0034] Explanation of the reference numerals in the figure: 100, fixing frame; 101, through-hole 1; 102, through-hole 2; 103, support guide seat; 104, support frame; 105, electric push rod 1; 106, lifting rod; 107, gas injection cylinder; 108, support plate; 109, photoelectric sensor; 110, support foot seat; 120, fixing box; 121, mounting shell; 122, hot air outlet; 123, connecting shell; 124, electric push rod 2; 125, cleaning scraper; 126, connecting rod; 127, material resistance plate; 130, placement box; 131, drying pump; 132, air guide cover; 133, electric heating network; 134, tilting seat; 140, connecting baffle; 150, fixing cover Plate; 160, air inlet; 170, water storage tank; 171, observation window; 172, drain valve; 174, air pipe; 175, solenoid valve; 176, water level sensor; 180, collection rack; 181, collection box; 190, drain box; 200, transmission chain; 210, support rod; 220, air inlet cylinder; 230, installation cylinder; 231, connecting ring; 232, ball bearing; 233, air outlet one; 234, air outlet two; 235, hand model; 236, air outlet three; 300, closed shell; 310, connecting cover; 320, exhaust pump; 330, installation box; 331, condenser; 332, cover plate; 333, cooling fan; 334, discharge pipe. DETAILED DESCRIPTION
[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0036] See also Figure 1-7 , the present invention provides a technical solution:
[0037] The dipped gloves production device and use method include a fixing frame 100, a through hole 101 and a through hole 102 are opened on the top of the fixing frame 100, a support guide seat 103 is arranged on the top of the fixing frame 100, a support plate 108 is connected to the outer wall of the support guide seat 103 on one side, and a photoelectric sensor 109 is arranged on the top of the support plate 108;
[0038] In some embodiments, the photoelectric sensor 109 is a conventional technology, and its model can be selected from common models on the market.
[0039] A support frame 104 is arranged on the top of the plurality of support guide seats 103, an electric push rod 105 is arranged on the top of the support frame 104, and a lifting rod 106 is connected to the output end of the electric push rod 105, a support foot 110, a fixed box 120 and a collection frame 180 are arranged at the bottom of the fixed frame 100, an air inlet 160 is opened on the front and rear outer walls of the fixed box 120, a water storage tank 170 is arranged on the front outer wall of the fixed box 120, a drainage tank 190 is arranged on the rear outer wall of the fixed box 120, and a side wall of the fixed box 120 is arranged A fixed cover plate 150 is provided, a through square hole is provided on the outer wall of the fixed cover plate 150, a connecting baffle 140 is provided on the inner wall of the fixed box 120, a placement box 130 is provided at the bottom of the inner cavity of the fixed box 120, a mounting shell 121 is provided on the side wall of the placement box 130, a hot air ejection port 122 is provided on the top of the mounting shell 121, a connecting shell 123 is also provided on the top of the mounting shell 121, an electric push rod 124 is fixedly installed inside the connecting shell 123, and a cleaning scraper 125 is connected to the output end of the electric push rod 124;
[0040] In some embodiments: a rubber scraper may be provided at the bottom of the cleaning scraper 125 to facilitate scraping and cleaning of dust and impurities accumulated on the top of the filter plate, so that the impurities and dust can be pushed to the top of the inclined seat 134.
[0041] A plurality of conveyor chains 200 are guided and slidably arranged on the inner walls of the supporting guide seats 103, and a glove placement assembly is connected between the plurality of conveyor chains 200. The glove placement assembly includes a support rod 210, and a closed shell 300 is arranged on the top of the fixed frame 100. A connecting cover 310 and an installation box 330 are arranged on the top of the closed shell 300, and a condenser 331 is arranged inside the installation box 330.
[0042] In some embodiments, the condenser 331 is made of copper to better condense the discharged high-temperature and high-humidity air.
[0043] In some embodiments: multiple conveyor chains 200 are driven by external sprockets and drive motors, which belongs to the existing conventional technology and need not be elaborated.
[0044] Specifically, an air pipe 174 is provided on the outer wall of the lifting rod 106, and the end of the air pipe 174 is connected to the top of the water tank 170. An air injection cylinder 107 is provided at the bottom of the lifting rod 106. Multiple air injection cylinders 107 are interconnected with the interior of the lifting rod 106, and the interior of the lifting rod 106 is hollow.
[0045] Furthermore, a filter plate 135 is fixedly connected to the top of the placement box 130, an inclined seat 134 is provided on the outer wall of the placement box 130, a drying pump 131 is provided at the bottom of the inner cavity of the placement box 130, multiple drying pumps 131 are connected to the air inlet ends with air guide covers 132, and an electric heating network 133 is provided on the inner wall of the placement box 130.
[0046] In some embodiments, the electric heating network 133 is a prior art and need not be elaborated, and is convenient for heating the air blown into the closed shell 300 .
[0047] Furthermore, the cleaning scraper 125 is in contact with the top surface of the filter plate 135, and a connecting rod 126 is provided on the outer wall of the cleaning scraper 125. The connecting rod 126 passes through the square hole and the collecting rack 180, and the end is connected to a material resistance plate 127. The collecting rack 180 is internally slidably connected with a collecting box 181, which is convenient for pressing and pushing the collecting box 181, so as to facilitate the unified collection of gloves at a later time.
[0048] Furthermore, a gas inlet cylinder 220 is disposed on the top of the plurality of support rods 210 , and the plurality of gas injection cylinders 107 are adapted to the inner diameter of the plurality of gas inlet cylinders 220 , so that the gas can be directly injected into the interior of the lifting rod 106 .
[0049] It is worth mentioning that the interior of the multiple support rods 210 is hollow, and the outer wall of the multiple support rods 210 is provided with a mounting tube 230. The circumferential outer wall of the mounting tube 230 is integrally formed with a connecting ring 231. The circumferential outer wall of the connecting ring 231 is provided with an air outlet hole 1 233. The circumferential outer wall of the connecting ring 231 is also movably clamped with a ball 232, and the front outer wall of the connecting ring 231 is also provided with an air outlet hole 234.
[0050] It is worth noting that the front outer walls of the multiple installation tubes 230 are provided with hand molds 235, the interiors of the multiple hand molds 235 are hollow, and the fingertips of the multiple hand molds 235 are provided with air outlet holes 236, so as to facilitate the placement of gloves using the hand molds 235.
[0051] In addition, an exhaust pump 320 is arranged on the top of the connecting cover 310, and the exhaust end of the exhaust pump 320 extends to the inside of the connecting cover 310. The connecting cover 310 is the same as the closed shell 300. The exhaust end of the exhaust pump 320 is connected to an exhaust pipe, and the end of the exhaust pipe is connected to the end of the condenser 331.
[0052] In addition, the end of the condenser 331 is connected to a drain pipe 334, and the end of the drain pipe 334 extends into the water tank 170 and is fixed to the top of the water tank 170. A cover plate 332 is arranged on the top of the installation box 330, and a plurality of air inlet holes are opened on the side wall of the installation box 330 to facilitate the heat dissipation of the condenser 331. A cooling fan 333 is arranged on the top of the cover plate 332, an observation window 171 and a drain valve 172 are arranged on the outside of the water tank 170, and an electromagnetic valve 175 and a water level sensor 176 are arranged on the inner wall of the water tank 170.
[0053] In some embodiments: the electromagnetic valve 175 and the water level sensor 176 are both existing technologies and common models on the market can be used.
[0054] In some embodiments: the device can be powered by an external conventional power supply, and the device can be controlled by an external PLC control box, all of which belong to the prior art.
[0055] The use method of the dipped gloves production device is as follows:
[0056] S1: Preparation: When in use, multiple gloves can be respectively put on multiple hand molds 235, and then the gloves can be dipped in glue using an external dipping device. After the dipping process, multiple conveying chains 200 can be driven by external sprockets to drive the multiple glove placement components to move. During the movement, the multiple glove placement components will pass through the interior of the closed shell 300 in turn.
[0057] S2: Drying process: In the process of passing through the interior of the closed shell 300 in sequence, the external air can be sucked through multiple drying pumps 131, and then the impurities in the air are filtered through the filter plate 135, and then the gas blown into the closed shell 300 is heated by the electric heating network 133, so as to better dry the gloves.
[0058] S3: Moisture discharge: During the drying process, in order to avoid moisture accumulation inside the closed shell 300, the exhaust pump 320 is used to discharge the moisture inside the closed shell 300, and then the high-temperature moisture is transferred to the condenser 331 for condensation through the exhaust pump 320, and the cooling fan 333 can perform air cooling on the condenser 331 to ensure the condensation effect of the condenser 331. After the high-temperature and high-humidity air is condensed, the condensed water and air will be transported to the water storage tank 170 for collection.
[0059] S4: Condensate discharge: After the condensate reaches a certain water level and is monitored by the water level sensor 176, the solenoid valve 175 will open, and the condensate will pass through the solenoid valve 175 on the inner wall of the water storage tank 170 and enter the top of the tilting seat 134. At this time, the condensate will flow into the drainage tank 190 due to gravity for collection and discharge.
[0060] S5: Gas recycling: After the condensed water and the gas discharged during drying are collected in the water storage tank 170, the excess gas will enter the lifting rod 106 through the gas pipe 174 and be discharged through the multiple gas injection cylinders 107. After the gloves are dried, the multiple glove placement components will pass under the photoelectric sensor 109 in turn. Every time they pass, the external drive sprocket will stop moving, thereby ensuring that the glove placement components can stop moving. Then, the multiple gas injection cylinders 107 are driven by the electric push rod 105 to insert into the air inlet cylinder 220. The glove 231 and the hand mold 235 are then gas-injected. During the gas-injection process, the wrist of the glove will expand due to the gas outlet of the multiple gas outlet holes 1 233, and the gas outlet holes 234 will also generate airflow to inflate the space between the glove and the hand mold 235 to reduce the friction between the glove and the hand mold 235 during demoulding. On this basis, the glove can be better demoulded with the multiple balls and the air jets at the fingertips of the hand mold 235 to smoothly drop the glove into the collection box 181 for collection, thereby reducing the mechanical transmission structure required for additional demoulding and reducing its use cost.
[0061] S6: Filter plate cleaning: When the collection box 181 has collected enough gloves, the electric push rod 124 can be started to drive the cleaning scraper 125 to move to clean the impurities on the top of the filter plate 135. In the process of cleaning the filter plate 135, the connecting rod 126 on the side wall of the cleaning scraper 125 will drive the material resistance plate 127 to move, and then push the collection box 181, so as to push the collection box 181 out, making it easier for personnel to collect and take gloves. In this process, the filter plate 135 will push the impurities to the top of the inclined seat 134, and when the condensed water enters the top of the inclined seat 134 through the electromagnetic valve 175 on the inner wall of the water storage tank 170, the flow of water will drive the impurities and condensed water to flow into the drainage box 190 for discharge, so that the filter plate 135 can be cleaned in the process of collecting gloves. The condensed water can also better drive the impurities to be discharged, reducing the trouble caused by frequent replacement and manual cleaning of the filter plate 135 by personnel.
[0062] Working principle of the present invention: when in use, a plurality of gloves can be respectively sleeved on a plurality of hand molds 235, and then the gloves can be dipped in glue using an external dipping device. After the dipping process, the plurality of conveyor chains 200 can be driven by an external sprocket to transmit, thereby prompting the plurality of glove placement components to move. During the movement, the plurality of glove placement components will pass through the interior of the closed shell 300 in sequence. In the process of passing through the interior of the closed shell 300 in sequence, the external air can be sucked by a plurality of drying pumps 131, and then the impurities in the air can be filtered through the filter plate 135, and then the gas to be blown into the closed shell 300 can be heated by the heating effect of the electric heating network 133, so as to better dry the gloves. During the drying process, in order to avoid moisture accumulation inside the closed shell 300, the exhaust pump 320 is used to discharge the moisture inside the closed shell 300, and then the high-temperature moisture is transmitted to the inside of the condenser 331 for condensation through the action of the exhaust pump 320, and the heat dissipation fan 333 can perform air cooling and heat dissipation on the condenser 331, thereby ensuring the condensation effect of the condenser 331. After the high-temperature and high-humidity air is condensed, the condensed water and air will be transported to the inside of the water storage tank 170 for collection. After the condensed water reaches a certain water level and is monitored by the water level sensor 176, the electromagnetic valve 175 will open, and the condensed water will pass through the electromagnetic valve 175 on the inner wall of the water storage tank 170 and enter the top of the tilting seat 134. At this time, the condensed water will be due to gravity. After the gloves are dried, the multiple glove placement components will pass under the photoelectric sensor 109 in turn. Whenever the glove placement components pass through the photoelectric sensor 109, the driving sprocket on the outside will stop moving, thereby ensuring that the glove placement components can stop moving. After that, the multiple gas injection cylinders 107 will be driven by the electric push rod 105 to insert into the air inlet cylinder 220, and then the multiple connecting rings 231 and the hand mold 235 will be injected with gas. During the gas injection process, the wrist of the glove will be filled with gas due to the multiple air outlet holes 231. 3, and the second air outlet 234 will also generate airflow to inflate the space between the glove and the hand mold 235 to reduce the friction between the glove and the hand mold 235 during demoulding. On this basis, the glove can be demoulded smoothly and dropped into the collection box 181 for collection by better coordinating with the jets at the fingertips of the multiple balls and the hand mold 235, thereby reducing the mechanical transmission structure required for additional demoulding and reducing its use cost. When the collection box 181 collects enough gloves, the second electric push rod 124 can be started to drive the cleaning scraper 125 to move to clean the impurities on the top of the filter plate 135. In the process of cleaning the filter plate 135, the connecting rod 126 on the side wall of the cleaning scraper 125 will drive the material-blocking plate 127 to move, thereby pushing the collection box 181.Thus, the collection box 181 is pushed out, making it easier for the personnel to collect and take the gloves. In this process, the filter plate 135 pushes the impurities to the top of the inclined seat 134. When the condensed water enters the top of the inclined seat 134 through the electromagnetic valve 175 on the inner wall of the water storage tank 170, the flow of water will drive the impurities and condensed water to flow into the drainage box 190 for discharge, so that the filter plate 135 can be cleaned in the process of collecting gloves. The condensed water can also better drive the impurities to be discharged, reducing the trouble caused by frequent replacement and manual cleaning of the filter plate 135.
[0063] The above content is a further detailed description of the present invention in combination with specific implementation methods. It cannot be determined that the specific implementation of the present invention is limited to these descriptions. For ordinary technicians in the technical field to which the present invention belongs, several simple deductions or substitutions can be made without departing from the concept of the present invention, which should be regarded as belonging to the scope of protection determined by the claims submitted for the present invention.
Claims
1. A device for producing dipped gloves and a method for using the same, comprising a fixing frame (100), characterized in that: The top of the fixing frame (100) is provided with a through opening 1 (101) and a through opening 2 (102); the top of the fixing frame (100) is provided with a support guide seat (103); the outer wall of one side of the support guide seat (103) is connected with a support plate (108); the top of the support plate (108) is provided with a photoelectric sensor (109); the tops of the plurality of support guide seats (103) are provided with a support frame (104); the top of the support frame (104) is provided with an electric push rod 1 (105); the electric push rod An output end (105) is connected to a lifting rod (106); a supporting foot (110), a fixing box (120) and a collecting frame (180) are arranged at the bottom of the fixing frame (100); an air inlet (160) is provided on the front and rear outer walls of the fixing box (120); a water storage tank (170) is provided on the front outer wall of the fixing box (120); a drainage box (190) is provided on the rear outer wall of the fixing box (120); a fixing cover plate (150) is provided on the side wall of the fixing box (120); and the fixing cover plate (150) is provided on the side wall of the fixing box (120). The outer wall of the fixed box (120) is provided with a through square hole, the inner wall of the fixed box (120) is provided with a connecting baffle (140), the bottom of the inner cavity of the fixed box (120) is provided with a placement box (130), the side wall of the placement box (130) is provided with a mounting shell (121), the top of the mounting shell (121) is provided with a hot air outlet (122), the top of the mounting shell (121) is also provided with a connecting shell (123), the inside of the connecting shell (123) is fixedly installed with an electric push rod 2 (124), the electric push rod 2 ( 124) The output end is connected to a cleaning scraper (125), a plurality of conveyor chains (200) are guided and slidably provided on the inner wall of the support guide seat (103), a glove placement assembly is connected between the plurality of conveyor chains (200), the glove placement assembly comprises a support rod (210), a closed shell (300) is arranged on the top of the fixed frame (100), a connecting cover (310) and an installation box (330) are arranged on the top of the closed shell (300), and a condenser (331) is arranged inside the installation box (330).
2. The device for producing dipped gloves according to claim 1, characterized in that: An air pipe (174) is arranged on the outer wall of the lifting rod (106), the end of the air pipe (174) is connected to the top of the water storage tank (170), and an air injection cylinder (107) is arranged at the bottom of the lifting rod (106). A plurality of air injection cylinders (107) are interconnected with the interior of the lifting rod (106), and the interior of the lifting rod (106) is hollow.
3. The dipped gloves production device according to claim 1, characterized in that: A filter plate (135) is fixedly connected to the top of the placement box (130), an inclined seat (134) is arranged on the outer wall of the placement box (130), a drying pump (131) is arranged at the bottom of the inner cavity of the placement box (130), a plurality of air inlet ends of the drying pumps (131) are connected to air guide covers (132), and an electric heating network (133) is arranged on the inner wall of the placement box (130).
4. The device for producing dipped gloves according to claim 1, characterized in that: The cleaning scraper (125) is in contact with the top surface of the filter plate (135), and a connecting rod (126) is provided on the outer wall of the cleaning scraper (125). The connecting rod (126) passes through the through square hole and the collecting rack (180), and the rear end is connected to a material stop plate (127). The collecting rack (180) is slidably connected to a collecting box (181) inside.
5. The device for producing dipped gloves according to claim 1, characterized in that: An air inlet cylinder (220) is arranged on the top of the plurality of support rods (210), and the plurality of air injection cylinders (107) are adapted to the inner diameters of the plurality of air inlet cylinders (220).
6. The device for producing dipped gloves according to claim 5, characterized in that: The interior of the plurality of support rods (210) is hollow, and the outer wall of the plurality of support rods (210) is provided with a mounting tube (230), and the circumferential outer wall of the mounting tube (230) is integrally formed with a connecting ring (231), and the circumferential outer wall of the connecting ring (231) is provided with an air outlet hole 1 (233), and the circumferential outer wall of the connecting ring (231) is also movably engaged with a ball bearing (232), and the front outer wall of the connecting ring (231) is also provided with an air outlet hole 2 (234).
7. The device for producing dipped gloves according to claim 1, characterized in that: The front outer walls of the plurality of mounting tubes (230) are provided with hand molds (235), the interiors of the plurality of hand molds (235) are hollow, and the fingertips of the plurality of hand molds (235) are all provided with three air outlet holes (236).
8. The device for producing dipped gloves according to claim 1, characterized in that: An exhaust pump (320) is arranged on the top of the connection cover (310), and the exhaust end of the exhaust pump (320) extends into the interior of the connection cover (310). The connection cover (310) is the same as the closed shell (300). The exhaust end of the exhaust pump (320) is connected to an exhaust pipe, and the end of the exhaust pipe is connected to the end of the condenser (331).
9. The device for producing dipped gloves according to claim 1, characterized in that: The end of the condensing pipe (331) is connected to a drain pipe (334), the end of the drain pipe (334) extends into the interior of the water storage tank (170) and is fixed to the top of the water storage tank (170), a cover plate (332) is arranged on the top of the installation box (330), a cooling fan (333) is arranged on the top of the cover plate (332), an observation window (171) and a drain valve (172) are arranged outside the water storage tank (170), and an electromagnetic valve (175) and a water level sensor (176) are arranged on the inner wall of the water storage tank (170).
10. A method for using a dipped glove production device, according to any one of claims 1 to 9, wherein the specific method for using the dipped glove production device is as follows: : S1: Preparation: When in use, a plurality of gloves can be respectively mounted on a plurality of hand molds (235), and then the gloves can be dipped in glue using an external dipping device. After the dipping process, the plurality of conveying chains (200) can be driven by an external sprocket to drive the plurality of glove placement components to move. During the movement, the plurality of glove placement components will pass through the interior of the closed shell (300) in sequence. S2: Drying process: In the process of passing through the interior of the closed shell (300) in sequence, the external air can be sucked by multiple drying pumps (131), and then the impurities in the air are filtered through the filter plate (135), and then the gas blown into the closed shell (300) is heated by the electric heating network (133), so as to better dry the gloves. S3: Moisture discharge: During the drying process, in order to avoid moisture accumulation inside the closed shell (300), an exhaust pump (320) is used to discharge the moisture inside the closed shell (300). Then, the high-temperature moisture is transferred to the inside of the condenser (331) by the exhaust pump (320) for condensation. The heat dissipation fan (333) can cool the condenser (331) by air, thereby ensuring the condensation effect of the condenser (331). After the high-temperature and high-humidity air is condensed, the condensed water and air are transported together to the inside of the water storage tank (170) for collection. S4: Condensate discharge: When the condensate reaches a certain water level and is monitored by the water level sensor (176), the electromagnetic valve (175) will open, and the condensate will pass through the electromagnetic valve (175) on the inner wall of the water storage tank (170) and enter the top of the tilting seat (134). At this time, the condensate will flow into the drainage tank (190) due to gravity to be collected and discharged. S5: Gas recycling: After the gas discharged during condensation and drying is collected in the water storage tank (170), the excess gas will enter the lifting rod (106) through the gas pipe (174) and be discharged through multiple gas injection cylinders (107). After the gloves are dried, the multiple glove placement components will pass under the photoelectric sensor (109) in sequence. Every time they pass, the external drive sprocket will stop moving, thereby ensuring that the glove placement components can stop moving. Then, the multiple gas injection cylinders (107) are driven by the electric push rod (105) to be inserted into the air intake cylinder (220). The glove (231) and the hand mold (235) are then gas-injected. During the gas-injection process, the wrist of the glove will expand due to the gas outlet of the plurality of gas outlet holes (233), and the gas outlet holes (234) will also generate airflow to inflate the space between the glove and the hand mold (235) to reduce the friction between the glove and the hand mold (235) during demoulding. On this basis, the glove can be better demoulded with the gas jets at the fingertips of the plurality of balls and the hand mold (235) to be smoothly demoulded and dropped into the collection box (181) for collection, thereby reducing the mechanical transmission structure required for additional demoulding and reducing its use cost. S6: Cleaning the filter plate: When the collection box (181) has collected enough gloves, the electric push rod 2 (124) can be activated to drive the cleaning scraper (125) to move to clean the impurities on the top of the filter plate (135). During the cleaning process of the filter plate (135), the connecting rod (126) on the side wall of the cleaning scraper (125) drives the material stopper (127) to move, thereby pushing the collection box (181), thereby pushing the collection box (181) out, so that the personnel can collect and take the gloves easily, and the filter plate (135) is cleaned. 5) During this process, impurities are pushed to the top of the inclined seat (134), and when the condensed water enters the top of the inclined seat (134) through the electromagnetic valve (175) on the inner wall of the water storage tank (170), the flow of water drives the impurities and condensed water to flow into the drainage box (190) for discharge, so that the filter plate (135) can be cleaned in the process of collecting gloves. The condensed water can also better drive the impurities to be discharged, reducing the trouble caused by frequent replacement and manual cleaning of the filter plate (135).