PVC glove production device facilitating glove demolding
The PVC hand glove production device addresses uneven heat distribution by integrating internal and external cooling systems, ensuring uniform temperature regulation and enhancing the demolding process to improve glove quality and production efficiency.
Patent Information
- Application Number
- CN202510775390.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2025-07-15
AI Technical Summary
During the demolding process of existing PVC glove production equipment, uneven temperatures inside and outside of the glove lead to problems of tearing and high defect rate.
The mold assembly is embedded with a hot water chamber and a cold water chamber combined with an air-cooling mechanism, which cools down simultaneously through the inner and outer sides, and the rollers are rotated by meshing gears and teeth to drive the rollers to rotate for uniform cooling. The position of the air-cooling mechanism is automatically adjusted through the inclined design of the inclined frame, and the combination of water-cooling and air-cooling is used to efficiently cool down.
The temperature uniformity of the gloves inside and outside is improved, and the viscosity of PVC gloves and mold components is reduced, and the yield and mold release quality are improved.
Smart Images

Figure CN120307535A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of PVC glove processing and production equipment, and in particular to a PVC glove production device which is convenient for glove demoulding. Background Art
[0002] PVC gloves are made of polyvinyl chloride as the main raw material, with anti-static properties, clean room treatment, high-purity water and ultrasonic cleaning. The gloves are flat, no color difference, no impurities, no smell, uniform color and uniform quality.
[0003] During the production process of PVC gloves, PVC dipping and drying processes are generally required, and then the gloves are demoulded.
[0004] The patent with the publication number CN116653189A discloses a PVC glove production device that is convenient for glove demoulding, comprising a box body and a conveyor belt arranged on the top of the box body, the outer wall of the conveyor belt is evenly spaced with multiple glove mold assemblies for placing gloves, a demoulding assembly for glove demoulding is arranged on the right side of the box body, a material guide plate is arranged on the right side of the demoulding assembly, and a cooling mechanism for cooling the gloves is arranged on both sides of the box body; by starting the fan, the air cooled from the outside is drawn into the air outlet pipe through the air inlet pipe, the air that has not been cooled is transported to the air outlet duct by the air outlet pipe, and the air cooled air is transported into the box body by the air outlet duct, so as to achieve the purpose of cooling the gloves. Through the demoulding assembly, the adjustment plate, the rotating plate and the demoulding clamp are driven from the closed state to separate the gloves from the glove mold under the elastic force of the spring, and gradually open, so that the gloves are pulled out and separated from the glove mold, and the gloves can be quickly taken out from the glove mold, so as to facilitate the demoulding of the gloves.
[0005] The above technical solution uses the air outlet to transport the cooled air into the box, so as to achieve the purpose of cooling the gloves. However, the air is only blown to cool the outside of the gloves, and the PVC gloves are wrapped outside the glove mold, and the temperature of the inside is slow to drop, which easily leads to uneven heat dissipation inside and outside the PVC gloves. Then, the PVC gloves are directly pulled out by the demoulding component, which is likely to cause tearing due to incomplete cooling of the inside of the PVC gloves, thereby resulting in the output of defective products. Therefore, a PVC glove production device that is convenient for demoulding is urgently needed to solve the above problems. Summary of the invention
[0006] The object of the present invention is to provide a PVC glove production device which is convenient for glove demoulding, so as to solve the problems raised in the above background technology.
[0007] To achieve the above object, the present invention provides the following technical solutions: A PVC glove production device facilitating glove demoulding, including a die assembly, the die assembly including a palm mechanism, the palm mechanism including a palm, and a bracket assembly being installed on the upper side of the palm; A base mechanism for demoulding is provided on the lower side of the die assembly; A top cover mechanism for cooling is provided on the upper side of the die assembly; Finger grooves adapted to the finger positions are formed on the side of the palm, and a first electric rail is vertically embedded in the inner wall of each finger groove, and a rail ring slidably inserted into the first electric rail is provided inside each finger groove; The die assembly further includes a finger mechanism and a water cooling mechanism; The finger mechanism includes finger molds corresponding to the finger grooves, one end of each finger mold being correspondingly inserted into the finger groove and fixedly sleeved with the rail ring, and a first inner bladder is filled inside each finger mold, a second inner bladder is filled inside the first inner bladder, and the port of the second inner bladder penetrates and is fixedly connected to the first inner bladder; A hot water bin with a built-in heater is embedded in the middle of the palm, a first water pipe embedded in the palm is communicated with the side of the hot water bin, and a first hose is fixedly connected between the port of the first water pipe and the port of the second inner bladder; The water cooling mechanism includes two cold water bins, the two cold water bins being respectively embedded and fixedly connected to the two side surfaces of the palm, a vertical pipe penetrating the palm is fixedly communicated with the upper side of each cold water bin, a second water pipe embedded in the palm is communicated with the side of the cold water bin, and a second hose is fixedly connected between the second water pipe and the first inner bladder.
[0008] As a preferred technical solution of the present invention, the bracket assembly includes a sliding rod, the lower end of the sliding rod being fixedly connected to the palm, and vertical columns being fixedly connected at equal intervals and uniformly on one side of the upper surface of the sliding rod; A finger sleeve adapted to be sleeved with the finger mold is fixedly connected to the outside of the port of the finger groove.
[0009] A first positioning cylinder is fixedly sleeved on the outside of the upper end of the vertical pipe.
[0010] As a preferred technical solution of the present invention, the base mechanism includes a bottom plate, and net plates are fixedly connected to both sides of the upper surface of the bottom plate; A bottom clamping assembly is arranged in the middle of the upper surface of the bottom plate, the bottom clamping assembly including V-shaped bottom clamps arranged on both sides, a first cylinder for adjusting the height being fixedly connected between the bottom clamp and the bottom plate, a rotator being fixedly connected to each end of each bottom clamp, and a clamping rod being movably installed between the opposite rotators on both sides; A pusher for extrusion is symmetrically arranged on both sides of each bottom clamp, and the pusher is fixedly installed on the bottom plate; In the middle of the surface of the screen plate, a second air cylinder is inclined and fixedly embedded, and an electric clamp corresponding to the thumb position of the mold assembly is installed at the output end of the second air cylinder.
[0011] As a preferred technical solution of the present invention, the top cover mechanism includes a top cover. On both sides of the lower surface of the top cover, second electric rails are symmetrically and fixedly connected. The second electric rails are correspondingly lapped on the screen plate, and both ends of the sliding rod are respectively slidably inserted into the second electric rails. On both sides of the upper surface of the top cover, water storage tanks are fixedly connected. The lower part of the water storage tank is fixedly communicated with a storage pipe penetrating the top cover. On both sides of the upper surface of the top cover, third air cylinders are respectively penetrated and fixedly connected. The third air cylinders are located outside the two water storage tanks. The output end of the third air cylinder is fixedly connected with a connecting plate. The end of the connecting plate far from the third air cylinder is penetrated and fixedly connected with a second positioning cylinder corresponding to being inserted into the first positioning cylinder. The lower end of the storage pipe penetrates and is fixedly connected with the second positioning cylinder, and the lower end of the storage pipe is correspondingly inserted and communicated with a vertical pipe.
[0012] As a preferred technical solution of the present invention, an inclined rail mechanism is arranged on the lower side of the top cover. The inclined rail mechanism includes a connecting plate fixedly connected to the top cover. The lower end surface of the connecting plate is inclined. On both lower ends of the connecting plate, inclined inclined frames are respectively embedded and fixedly connected. On the upper inner wall of the inclined frame, teeth are fixedly connected at equal intervals and evenly. In the middle of the lower inner wall of the inclined frame, a wheel groove is opened. Inside each inclined frame, a gear is arranged. The lower side of the gear is adaptively inserted into the wheel groove, and the upper side of the gear meshes with the teeth. In the middle of the opposite sides of the two gears, leather rollers are respectively fixedly connected. In the middle of the opposite sides of the two gears, a dial rod is commonly fixedly connected.
[0013] On both ends of the dial rod, air-cooling mechanisms for cooling the outside are symmetrically hung. The two air-cooling mechanisms are respectively located on both sides of the screen plate. Each air-cooling mechanism includes a connecting column. The upper end of the connecting column is movably sleeved with the dial rod through a bearing, the lower end of the connecting column is movably sleeved with a fan rod through a bearing. Between the fan rod and the leather roller on the same side, a belt is commonly sleeved, and a rotating fan is fixedly sleeved in the middle of the fan rod.
[0014] Compared with the prior art, the beneficial effects of the present invention are: A PVC glove production device convenient for glove demoulding. Through the meshing of the teeth and the gear, the gear rotates. Through the sleeving of the leather roller and the belt, the rotating fan rotates while following the movement of the mold assembly to blow air and cool it. And through the inclined setting of the inclined frame, the rotating fan blows air on the mold assembly from bottom to top, improving the uniformity and regularity of cooling.
[0015] A PVC glove production device facilitating glove demoulding. Due to the inclined setting of the inclined frame, as the mould assembly moves, the height difference between the dial rod and the vertical column gradually increases. Then, when the mould assembly moves to the second half of the journey, the vertical column and the dial rod separate. Under the inclination of the inclined frame, the dial rod drives the air-cooling mechanism to automatically return along the inclined frame under the action of gravity, and the position of the air-cooling mechanism is automatically reset, improving production automation.
[0016] A PVC glove production device facilitating glove demoulding. Start the third cylinder to extend, so that the connecting plate drives the second positioning cylinder to be inserted into the first positioning cylinder, assisting the auxiliary storage pipe and the vertical pipe to be inserted and connected in alignment. Pour water into the cold water tank from the water tank on one side and output it from the water tank on the other side, so as to pour the condensed water into the first inner bag through the second water pipe and the second hose, cooling the finger mould from the inside, and cooperating with the rotating fan to cool the mould assembly from the outside, improving the cooling efficiency.
[0017] A PVC glove production device facilitating glove demoulding. Use the condensed water to fill the first inner bag to squeeze the hot water inside the second inner bag back into the hot water tank, thereby cooling the mould assembly, solving the problem of uneven temperature inside and outside the mould assembly, reducing the adhesiveness between the PVC glove and the mould assembly, and improving the yield rate of the PVC glove.
[0018] A PVC glove production device facilitating glove demoulding. Through the fixed connection of the rail ring and the finger mould, the finger mould retracts into the finger groove. After the bottom clamping assembly and the electric clamp clamp the fingertip part of the PVC glove, the demoulding of the fingers of the PVC glove can be completed first. Then start the rotator to make the clamping rods on both sides roll, and pull the glove off the mould assembly completely from the four fingers, using the hand shape of the mould assembly to demould the fingers and the palm separately, improving the demoulding quality. Description of the Drawings
[0019] Figure 1 It is a schematic structural diagram of the present invention; Figure 2 It is a schematic diagram of the mould assembly of the present invention; Figure 3 It is a schematic diagram of the inside of the mould assembly of the present invention; Figure 4 It is a schematic diagram of the palm mould mechanism of the present invention; Figure 5 It is a schematic diagram of the inside of the palm mould of the present invention; Figure 6 It is a schematic diagram of the finger mechanism of the present invention; Figure 7 of the present invention Figure 6 Enlarged schematic diagram at A; Figure 8 It is a schematic diagram of the water-cooling mechanism of the present invention; Figure 9Schematic diagram of the second water pipe of the present invention; Figure 10 Schematic diagram of the second hose of the present invention; Figure 11 Schematic diagram of the base mechanism of the present invention; Figure 12 Schematic diagram of the bottom clip assembly of the present invention; Figure 13 Schematic diagram of the top cover mechanism of the present invention; Figure 14 Bottom view schematic diagram of the top cover mechanism of the present invention; Figure 15 Connection schematic diagram of the top cover mechanism of the present invention; Figure 16 Schematic diagram of the inclined rail mechanism of the present invention; Figure 17 Gear connection schematic diagram of the present invention; Figure 18 Schematic diagram of the air-cooling mechanism of the present invention; Figure 19 Schematic diagram of the position of the vertical column of the present invention.
[0020] In the figure: 1. Mold palm mechanism; 101. Mold palm; 102. Slide bar; 103. Vertical column; 104. Finger groove; 105. Finger sleeve; 106. First electric rail; 107. Rail ring; 2. Finger mechanism; 201. Finger mold; 202. First inner bladder; 203. Second inner bladder; 204. Hot water storage; 205. First water pipe; 206. First hose; 3. Water-cooling mechanism; 301. Cold water storage; 302. Vertical pipe; 303. First positioning cylinder; 304. Second water pipe; 305. Second hose; 4. Base mechanism; 401. Base plate; 402. Mesh plate; 403. First cylinder; 404. Bottom clip; 405. Rotator; 406. Clamping rod; 407. Pusher; 408. Second cylinder; 409. Electric clamp; 5. Top cover mechanism; 501. Top cover; 502. Second electric rail; 503. Water storage; 504. Storage pipe; 505. Third cylinder; 506. Connecting plate; 507. Second positioning cylinder; 6. Inclined rail mechanism; 601. Inclined frame; 602. Connecting plate; 603. Teeth; 604. Wheel groove; 605. Gear; 606. Pushing rod; 607. Leather roller; 7. Air-cooling mechanism; 701. Connecting column; 702. Fan rod; 703. Belt; 704. Rotating fan. Detailed implementation manners
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0022] Embodiment: Please refer to Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , a PVC glove production device facilitating glove demolding, including a mold assembly. The mold assembly includes a palm mechanism 1, and the palm mechanism 1 includes a palm 101. A bracket assembly is installed on the upper side of the palm 101; A base mechanism 4 for demolding is arranged on the lower side of the mold assembly; A top cover mechanism 5 for cooling is arranged on the upper side of the mold assembly; Finger grooves 104 adapted to the finger positions are formed on the side of the palm 101. A first electric rail 106 is vertically embedded in the inner wall of each finger groove 104, and a rail ring 107 slidably inserted into the first electric rail 106 is arranged in each finger groove 104; The mold assembly further includes a finger mechanism 2 and a water cooling mechanism 3; The finger mechanism 2 includes finger molds 201 corresponding to the finger grooves 104. One end of each finger mold 201 is correspondingly inserted into the finger groove 104 and fixedly sleeved with the rail ring 107. A first inner bladder 202 is filled and arranged in each finger mold 201, a second inner bladder 203 is filled and arranged in the first inner bladder 202, and the port of the second inner bladder 203 penetrates and is fixedly connected to the first inner bladder 202; A hot water bin 204 with a built-in heater is embedded in the middle of the palm 101. A first water pipe 205 embedded in the palm 101 is communicated with the side of the hot water bin 204, and a first hose 206 is fixedly communicated between the port of the first water pipe 205 and the port of the second inner bladder 203; The water cooling mechanism 3 includes two cold water bins 301 which are respectively embedded and fixedly connected to the two side surfaces of the palm 101. A vertical pipe 302 penetrating the palm 101 is fixedly communicated with the upper side of each cold water bin 301. A second water pipe 304 embedded in the palm 101 is communicated with the side of the cold water bin 301, and a second hose 305 is fixedly communicated between the second water pipe 304 and the first inner bladder 202.
[0023] Please refer to Figure 4 , Figure 5 , Figure 8 , the bracket assembly includes a sliding rod 102. The lower end of the sliding rod 102 is fixedly connected to the palm 101, and vertical columns 103 are fixedly connected to one side of the upper surface of the sliding rod 102 at equal intervals and uniformly; A finger sleeve 105 which is adaptively sleeved with the finger mold 201 is fixedly connected to the outer side of the port of the finger groove 104.
[0024] A first positioning cylinder 303 is fixedly sleeved on the outer side of the upper end of the vertical pipe 302.
[0025] Please refer to Figure 11 and Figure 12 , the base mechanism 4 includes a bottom plate 401, and mesh plates 402 are fixedly connected to both sides of the upper surface of the bottom plate 401; A bottom clamping assembly is arranged in the middle of the upper surface of the bottom plate 401. The bottom clamping assembly includes V-shaped bottom clamps 404 arranged on both sides. A first cylinder 403 for adjusting the height is fixedly connected between the bottom clamps 404 and the bottom plate 401. Rotators 405 are fixedly connected to both ends of each bottom clamp 404. A clamping rod 406 is movably installed between the opposite rotators 405 on both sides. When the mold assembly moves to the middle position, the four fingers of the mold are inserted between the two clamping rods 406; Pusher 407 for extrusion is symmetrically arranged on both sides of each bottom clamp 404, and the pusher 407 is fixedly installed on the bottom plate 401; A second cylinder 408 is obliquely embedded and fixedly connected to the middle of the surface of the mesh plate 402, and an electric clamp 409 corresponding to the position of the thumb of the mold assembly is installed at the output end of the second cylinder 408.
[0026] Please refer to Figure 1 and Figure 13 and Figure 14 and Figure 15 , the top cover mechanism 5 includes a top cover 501. Second electric rails 502 are symmetrically and fixedly connected to both sides of the lower surface of the top cover 501. The second electric rails 502 are correspondingly lapped on the mesh plates 402, and both ends of the sliding rod 102 are respectively slidably inserted into the second electric rails 502; Water storage tanks 503 are fixedly connected to both sides of the upper surface of the top cover 501, and a storage pipe 504 is fixedly communicated with the lower part of the water storage tanks 503 and penetrates through the top cover 501; Third cylinders 505 are respectively and fixedly penetrated through both sides of the upper surface of the top cover 501. The third cylinders 505 are located outside the two water storage tanks 503. A connecting plate 506 is fixedly connected to the output end of the third cylinder 505. A second positioning cylinder 507 corresponding to be inserted into the first positioning cylinder 303 is fixedly penetrated through the end of the connecting plate 506 far away from the third cylinder 505. The lower end of the storage pipe 504 penetrates through and is fixedly connected to the second positioning cylinder 507, and the lower end of the storage pipe 504 is correspondingly inserted and communicated with the vertical pipe 302.
[0027] Please refer to Figure 1 and Figure 16 and Figure 17 and Figure 18 and Figure 19, a rail mechanism 6 is provided on the lower side of the top cover 501. The rail mechanism 6 includes a connecting plate 602 fixedly connected to the top cover 501. The lower end surface of the connecting plate 602 is inclined. The lower ends of both sides of the connecting plate 602 are respectively embedded and fixedly connected with inclined frame 601. The upper inner walls of the inclined frame 601 are fixedly connected with teeth 603 at equal intervals and uniformly. A wheel groove 604 is opened in the middle of the lower inner wall of the inclined frame 601. A gear 605 is provided inside each inclined frame 601. The lower side of the gear 605 is adaptively inserted into the wheel groove 604, and the upper side of the gear 605 meshes with the teeth 603; In the middle of the opposite sides of the two gears 605, a leather roller 607 is fixedly connected; In the middle of the opposite sides of the two gears 605, a lever 606 is fixedly connected together. During the movement of the mold assembly, the vertical column 103 is always in contact with the lever 606 during the middle and front sections of the stroke.
[0028] On both ends of the lever 606, air-cooling mechanisms 7 for cooling the outside are symmetrically hung. The two air-cooling mechanisms 7 are respectively on both sides of the mesh plate 402; Each air-cooling mechanism 7 includes a connecting column 701. The upper end of the connecting column 701 is movably sleeved on the lever 606 through a bearing. The lower end of the connecting column 701 is movably sleeved with a fan rod 702 through a bearing. A belt 703 is jointly sleeved between the fan rod 702 and the leather roller 607 on the same side. A rotating fan 704 is fixedly sleeved in the middle of the fan rod 702.
[0029] The working principle of the present invention is as follows: A PVC glove is formed on the outside of the mold assembly. The mold assembly moves by sliding the sliding rod 102 of the mold assembly into the second electric rail 502. Due to the inclined setting of the inclined frame 601, during the middle and front sections of the stroke of the mold assembly, the vertical column 103 and the lever 606 are in contact with each other. During the movement of the mold assembly, by pushing the lever 606, the air-cooling mechanism 7 is further driven to move. And through the meshing of the teeth 603 and the gear 605, the gear 605 rotates. Through the sleeving of the leather roller 607 and the belt 703, the rotating fan 704 rotates while following the mold assembly to blow air for cooling. And due to the inclined setting of the inclined frame 601, the rotating fan 704 blows air on the mold assembly from bottom to top, improving the uniformity and regularity of cooling.
[0030] Due to the inclined setting of the inclined frame 601, as the mold assembly moves, the height difference between the lever 606 and the vertical column 103 gradually increases. Then, when the mold assembly moves to the second half of the stroke, the vertical column 103 and the lever 606 are separated. Under the action of the inclination of the inclined frame 601, the lever 606 drives the air-cooling mechanism 7 to automatically return along the inclined frame 601 under the action of gravity, and the position of the air-cooling mechanism 7 is automatically reset, improving the production automation.
[0031] After the mold assembly moves along the second electric rail 502 to the middle position, at this time, the finger molds 201 on the mold assembly correspond to the bottom clamping assembly and the electric clamp 409 respectively, and the vertical pipe 302 moves to the position aligned with the bin pipe 504. Then, the third air cylinder 505 is activated to extend, so that the connecting plate 506 drives the second positioning cylinder 507 to insert into the first positioning cylinder 303, assisting the bin pipe 504 and the vertical pipe 302 to be aligned and inserted and connected. Water is poured into the cold water bin 301 from the water bin 503 on one side and output from the water bin 503 on the other side, so as to pour the condensed water into the first inner bladder 202 through the second water pipe 304 and the second hose 305, cooling the finger molds 201 from the inside, and cooperating with the rotating fan 704 to cool the mold assembly from the outside, improving the cooling efficiency.
[0032] The condensed water in the water bin 503 is poured into or removed from the first inner bladder 202 through the water cooling mechanism 3. When performing PVC impregnation, the condensed water in the first inner bladder 202 is forced out. At this time, the hot water in the hot water bin 204 is poured into the second inner bladder 203 through the first water pipe 205 and the first hose 206, and the second inner bladder 203 expands and contacts the finger mold 201, so that the mold assembly can be preheated when the PVC glove is formed. When the PVC glove is demolded, the condensed water can be used to fill the first inner bladder 202 to squeeze the hot water inside the second inner bladder 203 back into the hot water bin 204, thereby cooling the mold assembly, solving the problem of uneven internal and external temperatures of the mold assembly, reducing the adhesiveness between the PVC glove and the mold assembly, and improving the yield of the PVC glove.
[0033] When the mold assembly is in the middle position and is cooled inside and outside uniformly by water cooling and air cooling, the rail ring 107 is slid along the finger groove 104. Due to the fixed connection between the rail ring 107 and the finger mold 201, the finger mold 201 retracts into the finger groove 104. After the bottom clamping assembly and the electric clamp 409 clamp the fingertip part of the PVC glove, the demolding of the fingers of the PVC glove can be completed first. Then, the rotator 405 is activated to make the clamping rods 406 on both sides roll, and the glove is completely pulled off from the mold assembly from the four fingers, using the hand shape of the mold assembly for the distributed demolding of the fingers and the palm, improving the demolding quality.
[0034] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A PVC glove production device facilitating glove demoulding, comprising a mould assembly. The mould assembly includes a palm mechanism (1), and the palm mechanism (1) includes a palm (101). A bracket assembly is installed on the upper side of the palm (101). A base mechanism (4) for demoulding is arranged on the lower side of the mould assembly; A top cover mechanism (5) for cooling is arranged on the upper side of the mould assembly; It is characterized in that: Finger grooves (104) adapted to the finger positions are formed on the side of the palm (101). A first electric rail (106) is vertically embedded in the inner wall of each finger groove (104), and a rail ring (107) slidably inserted into the first electric rail (106) is arranged inside each finger groove (104); The mould assembly further includes a finger mechanism (2) and a water cooling mechanism (3); The finger mechanism (2) includes finger moulds (201) corresponding to the finger grooves (104). One end of each finger mould (201) is correspondingly inserted into the finger groove (104) and fixedly sleeved with the rail ring (107). A first inner bladder (202) is filled and arranged inside each finger mould (201), a second inner bladder (203) is filled and arranged inside the first inner bladder (202), and the port of the second inner bladder (203) penetrates and is fixedly connected to the first inner bladder (202); A hot water tank (204) with a built-in heater is embedded and installed in the middle of the palm (101). A first water pipe (205) embedded and installed on the palm (101) is communicated with the side of the hot water tank (204). A first hose (206) is fixedly communicated between the port of the first water pipe (205) and the port of the second inner bladder (203); The water cooling mechanism (3) includes two cold water tanks (301). The two cold water tanks (301) are respectively embedded and fixedly connected to the two side surfaces of the palm (101). A vertical pipe (302) penetrating the palm (101) is fixedly communicated with the upper side of each cold water tank (301). A second water pipe (304) embedded and installed on the palm (101) is communicated with the side of the cold water tank (301). A second hose (305) is fixedly communicated between the second water pipe (304) and the first inner bladder (202).
2. The PVC glove production device facilitating glove demoulding according to claim 1, wherein: The bracket assembly includes a sliding rod (102). The lower end of the sliding rod (102) is fixedly connected to the palm (101), and vertical columns (103) are fixedly connected to one side of the upper surface of the sliding rod (102) at equal intervals and evenly; A finger sleeve (105) adapted to be sleeved with the finger mould (201) is fixedly connected to the outer side of the port of the finger groove (104).
3. The PVC glove production device for facilitating glove demoulding according to claim 1, wherein: A first positioning cylinder (303) is fixedly sleeved on the outer side of the upper end of the vertical pipe (302).
4. The PVC glove production device facilitating glove demoulding according to claim 2, wherein: The base mechanism (4) includes a bottom plate (401), and net plates (402) are fixedly connected to both sides of the upper surface of the bottom plate (401); In the middle of the upper surface of the bottom plate (401), a bottom clamping assembly is provided. The bottom clamping assembly includes V-shaped bottom clamps (404) arranged on both sides. A first cylinder (403) for adjusting the height is fixedly connected between the bottom clamp (404) and the bottom plate (401). At both ends of each bottom clamp (404), a rotator (405) is fixedly connected. A clamping rod (406) is movably installed between the opposite rotators (405) on both sides; On both sides of each bottom clamp (404), a pusher (407) for extrusion is symmetrically arranged. The pusher (407) is fixedly installed on the bottom plate (401); In the middle of the surface of the mesh plate (402), a second cylinder (408) is obliquely embedded and fixedly connected. The output end of the second cylinder (408) is provided with an electric clamp (409) corresponding to the position of the thumb of the mold assembly.
5. The PVC glove production device facilitating glove demoulding according to claim 4, wherein: The top cover mechanism (5) includes a top cover (501). On both sides of the lower surface of the top cover (501), second electric rails (502) are symmetrically fixedly connected. The second electric rails (502) are correspondingly lapped on the mesh plate (402). The two ends of the sliding rod (102) are respectively slidably inserted into the second electric rails (502); On both sides of the upper surface of the top cover (501), a water storage tank (503) is fixedly connected. The lower part of the water storage tank (503) is fixedly communicated with a storage pipe (504) penetrating through the top cover (501); On both sides of the upper surface of the top cover (501), third cylinders (505) are respectively penetrated and fixedly connected. The third cylinders (505) are located outside the two water storage tanks (503). The output end of the third cylinder (505) is fixedly connected with a connecting plate (506). The end of the connecting plate (506) away from the third cylinder (505) is penetrated and fixedly connected with a second positioning cylinder (507) correspondingly inserted into the first positioning cylinder (303). The lower end of the storage pipe (504) is penetrated and fixedly connected with the second positioning cylinder (507). The lower end of the storage pipe (504) is correspondingly inserted and communicated with the vertical pipe (302).
6. The PVC glove production device facilitating glove demoulding according to claim 5, wherein: On the lower side of the top cover (501), an inclined rail mechanism (6) is provided. The inclined rail mechanism (6) includes a connecting plate (602) fixedly connected to the top cover (501). The lower end surface of the connecting plate (602) is inclined. On both sides of the lower end of the connecting plate (602), inclined inclined frames (601) are respectively embedded and fixedly connected. On the upper inner wall of the inclined frame (601), teeth (603) are fixedly connected at equal intervals and evenly. In the middle of the lower inner wall of the inclined frame (601), a wheel groove (604) is opened. Inside each inclined frame (601), a gear (605) is arranged. The lower side of the gear (605) is adaptively inserted into the wheel groove (604). The upper side of the gear (605) meshes with the teeth (603); In the middle of the opposite sides of the two gears (605), a leather roller (607) is fixedly connected; In the middle of the opposite sides of the two gears (605), a lever (606) is jointly fixedly connected; 7. The PVC glove production device facilitating glove demoulding according to claim 6, wherein: At both ends of the lever (606), an air cooling mechanism (7) for cooling the outside is hung symmetrically. The two air cooling mechanisms (7) are respectively located on both sides of the mesh plate (402); Each of the air-cooling mechanisms (7) includes a connecting column (701). The upper end of the connecting column (701) is movably sleeved with a lever (606) through a bearing. The lower end of the connecting column (701) is movably sleeved with a fan rod (702) through a bearing. A belt (703) is jointly sleeved between the fan rod (702) and the leather roller (607) on the same side. A rotating fan (704) is fixedly sleeved in the middle of the fan rod (702).
Citation Information
Patent Citations
PVC glove production device facilitating glove demolding
CN116653189A