Antibacterial and deodorant casual shoe production device
By designing a fixing mechanism and atomizing nozzle in combination, the problems of mold sticking and high replacement costs in casual shoe production equipment were solved, realizing convenient mold fixing and efficient demolding, thus improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-04-07
AI Technical Summary
In existing casual shoe production equipment, the soles stick to the lower mold and are difficult to demold, and changing to different sizes of sole molds is costly.
Design an antibacterial and odor-resistant casual shoe production device that includes a fixing mechanism, a swinging mechanism, and an atomizing nozzle. The device uses an electric telescopic rod and a hydraulic cylinder to automatically fix the mold and spray anti-sticking agent, reducing the frequency of mold replacement. It also uses a multi-stage hydraulic cylinder and an atomizing nozzle to improve demolding efficiency.
It enables convenient mold fixing and demolding, reduces the difficulty of manual operation and mold replacement costs, and improves production efficiency.
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Figure CN224089478U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to leisure shoes production technical field, concretely is a kind of antibacterial and deodorization type leisure shoes production device. BACKGROUND
[0002] Leisure shoes are designed for daily leisure and outdoor lightweight sports, while sports shoes are designed and manufactured for outdoor intense sports.
[0003] For example, the announcement number is "CN220409413U" the damping leisure shoes production device, the damping leisure shoes production device, through the buffer device being set, when the lower die is pressed to the pressing template, the lower die drives support rod to move down in sleeve, and spring is extruded, the spring rebounding force and the damping force in sleeve inner cavity are used to reduce the vibration generated, buffering effect is played, better damping effect is played, the structure has better stability. But the above-mentioned device relies on manual demolding of staff to shoe sole, shoe sole is formed by high pressure, and it is easy to be adhered to lower membrane, and staff is more difficult to demold it, and if the shoe sole of other size needs to be processed, the staff needs to replace the entire lower die, and the cost is higher. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the above-mentioned device, relies on manual demolding of staff to shoe sole, shoe sole is formed by high pressure, and it is easy to be adhered to lower membrane, and staff is more difficult to demold it, and if the shoe sole of other size needs to be processed, the staff needs to replace the entire lower die, and the cost is higher, and propose a kind of antibacterial and deodorization type leisure shoes production device.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] Design a kind of antibacterial and deodorization type leisure shoes production device, including bottom plate, the upper end of the bottom plate is sequentially fixed from left to right with bender and first shell, the inside of the first shell is equipped with fixed mechanism, the upper end of the first shell is placed with mould, the outer wall of the bender is fixedly connected with two water tanks, the inner wall of the water tank is all fixedly communicated with the water suction end of water pump by bellows pipe, the water pump is installed on second shell, the inside of the second shell is equipped with swing mechanism.
[0007] Preferably, the left outer wall of the second shell is fixedly connected with the output end of multistage electric telescopic rod, the outer wall of the multistage electric telescopic rod is fixedly connected with bender, the left outer wall of the second shell is fixedly connected with sliding plate.
[0008] Preferably, the fixing mechanism comprises a rocker and a positioning block, the outer wall of the rocker is fixedly connected with a stud, the outer wall of the stud is threadedly connected with two slide rods, the outer wall of the slide rod is slidably connected with the first shell, the outer wall of the slide rod is abuttingly connected with the mold, the outer wall of the positioning block is abuttingly connected with the mold, and the two ends of the stud are rotatably connected with the first shell through bearings.
[0009] Preferably, the outer wall of the slide plate is slidably connected with the bent plate, a plurality of hydraulic cylinders are fixedly connected with the outer wall of the bending part of the bent plate, a pressing plate is installed at the output end of the plurality of hydraulic cylinders, a limiting rod is installed on the outer wall of the pressing plate, the outer wall of the limiting rod is slidably connected with the bent plate, and the outer wall of the pressing plate is slidably connected with the inner wall of the mold.
[0010] Preferably, the swinging mechanism comprises an electric telescopic rod, the output end of the electric telescopic rod is fixedly connected with a rack, the outer walls on the two sides of the rack are meshingly connected with gears, the rotating shafts of the gears are rotatably connected with the second shell through bearings, the outer wall of the rack is fixedly connected with two sliding blocks, the outer wall of the sliding block is slidably connected with the second shell, the rotating shafts of the gears are fixedly connected with rotating rods, and the outer walls of the rotating rods are fixedly connected with the atomizing nozzles.
[0011] Preferably, the atomizing nozzles are fixedly communicated with the water outlet end of the water pump through corrugated rods, and the outer wall of the electric telescopic rod is fixedly connected with the second shell through an L-shaped plate.
[0012] The antibacterial and deodorizing type leisure shoe production device has the beneficial effects that: through the cooperation of the discharging mechanism and the swinging mechanism, the output end of the electric telescopic rod is extended to drive the rack to move to the right, so that the two gears are positively rotated, the rack is limited to move linearly by the sliding block, the sliding block is limited to move linearly by the second shell, the rotation of the two gears drives the rotating rod to rotate, the rotating rod drives the atomizing nozzle to rotate around the rotating center of the gear, the gear is reversely rotated when the electric telescopic rod is retracted, the atomizing nozzle is reversely rotated, and the atomizing nozzle swings along with the extension and retraction of the electric telescopic rod, so that the staff can more conveniently demold the mold by spraying the anti-sticking agent.
[0013] Through the cooperation of the fixing mechanism and the first shell, the staff places the mold between the two positioning blocks, and ensures that the mold is between the two slide rods, then the staff positively rotates the rocker, the rocker drives the stud to rotate, the stud drives the two slide rods to synchronously move inward, the slide rods are limited to move linearly by the first shell, until the two slide rods abut against the mold, then the rocker is stopped, the fixing is completed, when the mold needs to be replaced, the rocker is reversely rotated, the working principle is opposite to the above, and the corresponding pressing plate is simultaneously replaced, the pressing plate is installed through the bolts, the output end of the plurality of hydraulic cylinders and the limiting rod, so that only the mold needs to be replaced, the entire replacement is not needed, the manufacturing material is saved, and the cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structural schematic view of the utility model;
[0015] Figure 2 It is a three-dimensional schematic view of the first shell;
[0016] Figure 3 It is Figure 1 front view section view;
[0017] Figure 4 It is a partial right view of the swing mechanism;
[0018] Figure 5 It is Figure 1 structure schematic view of B part in it.
[0019] In the drawing: 1, bottom plate, 2, first shell, 3, fixed mechanism, 301, rocker, 302, stud, 303, slide bar, 304, positioning block, 4, die 5, pressing plate, 6, multi-stage hydraulic cylinder, 7, bent plate, 8, limit rod, 9, swing mechanism, 901, electric telescopic rod, 902, rack, 903, gear, 904, sliding block, 905, rotating rod, 906, atomizing nozzle, 10, second shell, 11, multi-stage electric telescopic rod, 12, slide plate, 13, water tank, 14, water pump. DETAILED DESCRIPTION
[0020] The utility model will be further described below in combination with the drawings:
[0021] Refer to the attached Figures 1-5 :
[0022] In the embodiment, an antibacterial and deodorizing type casual shoe production device includes a bottom plate 1, the upper end of the bottom plate 1 is sequentially fixedly connected with a bent plate 7 and a first shell 2 from left to right, the first shell 2 is internally provided with a fixed mechanism 2, the upper end of the first shell 2 is placed with a die 4, the outer wall of the bent plate 7 is fixedly connected with two water tanks 13, the inner wall of the water tank 13 is fixedly communicated with the water suction end of a water pump 14 through a corrugated pipe;
[0023] The water pump 14 is installed on a second shell 10, the inside of the second shell 10 is provided with a swing mechanism 9, the left outer wall of the second shell 10 is fixedly connected with the output end of a multi-stage electric telescopic rod 11, the outer wall of the multi-stage electric telescopic rod 11 is fixedly connected with the bent plate 7, the output end of the multi-stage electric telescopic rod 11 is telescoped to drive the second shell 10 to move, the outer wall left side of the second shell 10 is fixedly connected with a slide plate 12, and the second shell 10 is linearly moved by the slide plate 12 limiting;
[0024] The outer wall of the slide plate 12 is slidably connected to the bending plate 7. The slide plate 12 is limited to linear movement by the bending plate 7. A multi-stage hydraulic cylinder 6 is fixedly connected to the outer wall of the bending part of the bending plate 7. A pressure plate 5 is installed at the output end of the multi-stage hydraulic cylinder 6. The extension and retraction of the output end of the multi-stage hydraulic cylinder 6 drives the pressure plate 5 to move vertically. A limit rod 8 is installed at the upper end of the outer wall of the pressure plate 5. The pressure plate 5 is limited to linear movement by the limit rod 8. The outer wall of the limit rod 8 is slidably connected to the bending plate 7. The bending plate 7 limits the linear movement of the limit rod 8. The outer wall of the pressure plate 5 is slidably connected to the inner wall of the mold 4.
[0025] See attached document Figures 1-3 :
[0026] The fixing mechanism 3 includes a rocker arm 301 and a positioning block 304. The outer wall of the rocker arm 301 is fixedly connected to a double-ended stud 302. The outer wall of the double-ended stud 302 is threadedly connected to two sliding rods 303. The rotation of the rocker arm 301 drives the double-ended stud 302 to rotate. The rotation of the double-ended stud 302 drives the sliding rods 303 to move. The outer wall of the sliding rods 303 is slidably connected to the first outer shell 2.
[0027] The slide bar 303 is limited by the first outer shell 2 to move linearly. The outer wall of the slide bar 303 abuts against the mold 4, and the slide bar 303 fixes the mold 4. The outer wall of the positioning block 304 fits against the mold 4, and the positioning block 304 positions the mold 4. Both ends of the double-headed stud 302 are rotatably connected to the first outer shell 2 through bearings.
[0028] See attached document Figure 1 and 3 -4 and 5:
[0029] The swing mechanism 9 includes an electric telescopic rod 901. The output end of the electric telescopic rod 901 is fixedly connected to a rack 902. The extension and retraction of the output end of the electric telescopic rod 901 drives the rack 902 to move. Both outer walls of the rack 902 are meshed with gears 903. The movement of the rack 902 drives the gears 903 to rotate. The rotation shafts of the gears 903 are rotatably connected to the second housing 10 through bearings.
[0030] Two sliders 904 are fixedly connected to the outer wall of the rack 902. The rack 902 moves linearly limited by the sliders 904. The outer wall of the sliders 904 is slidably connected to the second outer shell 10. The rotating shaft of the gear 903 is fixedly connected to the rotating rod 905. The rotation of the gear 903 drives the rotating rod 905 to rotate. The outer wall of the rotating rod 905 is fixedly connected to the atomizing nozzle 906. The rotation of the rotating rod 905 drives the atomizing nozzle 906 to rotate. The atomizing nozzle 906 is fixedly connected to the water outlet of the water pump 14 through a corrugated rod. The outer wall of the electric telescopic rod 901 is fixedly connected to the second outer shell 10 through an L-shaped plate.
[0031] Working principle:
[0032] Antibacterial and odor-resistant casual shoes are produced using a casual shoe production facility.
[0033] Fixed process:
[0034] The worker places mold 4 between the two positioning blocks 304, ensuring that mold 4 is between the two sliding rods 303, and then the worker rotates the rocker arm 301 clockwise (as shown). Figure 2 The rotation of rocker arm 301 drives the double-ended stud 302 to rotate, and the rotation of double-ended stud 302 drives the two sliding rods 303 to move inward synchronously. The movement of the sliding rods 303 is limited by the linear motion of the first outer shell 2 until the two sliding rods 303 press against the mold 4 and then the rocker arm 301 stops, thus completing the fixing. When the mold 4 needs to be replaced, the rocker arm 301 is rotated in the opposite direction. The working principle is the opposite of the above. At the same time, the corresponding pressure plate is replaced. It is installed with bolts to the output end of the multi-stage hydraulic cylinder 6 and the limit rod 8.
[0035] Anti-sticking agent spraying process:
[0036] The worker pours the anti-sticking agent (containing silicone polymers, fluorocarbon compounds, solvents, and additives) into the water tank 13 through the inlet. (The anti-sticking agent forms a uniform insulating film on the surface of the first outer shell, reducing the friction and adhesion between the rubber and the first outer shell, allowing the rubber to be easily demolded.) Then, the worker activates the multi-stage electric telescopic rod 11 (e.g., Figure 1 The output end of the multi-stage electric telescopic rod 11 extends, driving the second housing 10 to move to the right (the second housing 10 is limited by the linear motion of the sliding plate 12), thereby driving the water pump 14 and the swing mechanism 9 to move to the right (the water pump 14 is connected to the water tank 13 through a bellows, which can be extended to avoid breakage). When the atomizing nozzle 906 reaches the middle of the pressure plate 5, the multi-stage electric telescopic rod 11 stops, causing the second housing 10 to hover at that position. Then, the two water pumps 14 are started, and the water pumps 14 extract and pressurize the anti-sticking agent in the water tank 13 and spray it out through the atomizing nozzle 906 (e.g., Figure 5 Two atomizing nozzles 906 spray anti-sticking agent onto the pressure plate 5, the groove 404, and the top plate 401, respectively;
[0037] Simultaneously activate the electric telescopic pole 901 (e.g.) Figure 3When the output end of the electric telescopic rod 901 extends, it drives the rack 902 to move to the right, thereby driving the two gears 903 to rotate. The rack 902 is limited by the slider 904 to move linearly, and the slider 904 is limited by the second housing 10 to move linearly. The rotation of the two gears 903 drives the rotating rod 905 to rotate. The rotation of the rotating rod 905 drives the atomizing nozzle 906 to rotate around the rotation center of the gears 903. When the electric telescopic rod 901 retracts, the two gears 903 rotate in the opposite direction, and the atomizing nozzle 906 rotates in the opposite direction. As the electric telescopic rod 901 extends and retracts, the atomizing nozzle 906 swings. The swinging of the atomizing nozzle 906 can increase the coverage area and reduce dead angles. After completion, the multi-stage electric telescopic rod 11 is controlled to reset.
[0038] Production process;
[0039] Workers pour molten rubber into the groove of mold 4 (inorganic zinc-based antibacterial agents are added to the molten rubber to prevent bacteria from growing on the sole, achieving antibacterial purposes; the rubber material has good breathability and moisture absorption, which can prevent odor). The multi-stage hydraulic cylinder 6 is activated, and its output end extends, driving the pressure plate 5 downwards. The pressure plate 5 is limited by the limiting rod 8, which restricts its linear movement. The pressure plate 5 pressurizes the molten rubber in mold 4, shaping it and allowing it to cool. Workers can use external air guns or water spraying to cool the rubber and speed up the molding process. After molding is complete, the worker controls the output end of the multi-stage hydraulic cylinder 6 to retract (e.g., ...). Figure 3 The output end of the multi-stage hydraulic cylinder 6 retracts, causing the pressure plate 5 to move upward and reset. Since both the mold 4 and the pressure plate 5 are sprayed with anti-sticking agent, the adhesion is reduced, making it easier for workers to demold. The demolded soles are used for subsequent processing of casual shoes.
[0040] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.
Claims
1. An antibacterial and odor-resistant casual shoe production apparatus, comprising a sole plate (1), characterized in that: The upper end of the base plate (1) is fixedly connected to a curved plate (7) and a first outer shell (2) from left to right. The first outer shell (2) is provided with a fixing mechanism (3). A mold (4) is placed on the upper end of the first outer shell (2). Two water tanks (13) are fixedly connected to the outer wall of the curved plate (7). The inner walls of the water tanks (13) are fixedly connected to the suction end of the water pump (14) through corrugated pipes. The water pump (14) is installed on the second outer shell (10). The second outer shell (10) is provided with a swing mechanism (9).
2. The antibacterial and odor-resistant casual shoe production apparatus according to claim 1, characterized in that: The left outer wall of the second outer shell (10) is fixedly connected to the output end of the multi-stage electric telescopic rod (11), the outer wall of the multi-stage electric telescopic rod (11) is fixedly connected to the bending plate (7), and a sliding plate (12) is fixedly connected to the left side of the outer wall of the second outer shell (10).
3. The antibacterial and odor-resistant casual shoe production apparatus according to claim 1, characterized in that: The fixing mechanism (3) includes a rocker arm (301) and a positioning block (304). The outer wall of the rocker arm (301) is fixedly connected to a double-ended stud (302). The outer wall of the double-ended stud (302) is threadedly connected to two sliding rods (303). The outer wall of the sliding rod (303) is slidably connected to the first outer shell (2). The outer wall of the sliding rod (303) abuts against the mold (4). The outer wall of the positioning block (304) is in contact with the mold (4). Both ends of the double-ended stud (302) are rotatably connected to the first outer shell (2) through bearings.
4. The antibacterial and odor-resistant casual shoe production apparatus according to claim 2, characterized in that: The outer wall of the slide plate (12) is slidably connected to the bending plate (7). A multi-stage hydraulic cylinder (6) is fixedly connected to the outer wall of the bending part of the bending plate (7). A pressure plate (5) is installed at the output end of the multi-stage hydraulic cylinder (6). A limit rod (8) is installed on the upper end of the outer wall of the pressure plate (5). The outer wall of the limit rod (8) is slidably connected to the bending plate (7). The outer wall of the pressure plate (5) is slidably connected to the inner wall of the mold (4).
5. The antibacterial and odor-resistant casual shoe production apparatus according to claim 1, characterized in that: The swing mechanism (9) includes an electric telescopic rod (901), the output end of which is fixedly connected to a rack (902). Both outer walls of the rack (902) are meshed with gears (903). The rotation shafts of the gears (903) are rotatably connected to the second housing (10) through bearings. Two sliders (904) are fixedly connected to the outer wall of the rack (902). The outer walls of the sliders (904) are slidably connected to the second housing (10). The rotation shafts of the gears (903) are fixedly connected to rotating rods (905). The outer walls of the rotating rods (905) are fixedly connected to atomizing nozzles (906).
6. The antibacterial and odor-resistant casual shoe production apparatus according to claim 5, characterized in that: The atomizing nozzles (906) are all fixedly connected to the water outlet of the water pump (14) via corrugated rods, and the outer wall of the electric telescopic rod (901) is fixedly connected to the second outer shell (10) via an L-shaped plate.
Citation Information
Patent Citations
Damping casual shoe production device
CN220409413U