A cooling device for plastic product processing
By coordinating the drive mechanism and the spin-drying mechanism, efficient spin-drying and uniform cooling of plastic products are achieved, solving the problems of poor cooling effect and low moisture spin-drying efficiency in the existing technology, thereby improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202410196920.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-22
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2044-02-22
AI Technical Summary
Existing plastic cooling equipment has long transmission channels, poor cooling effect, high cost, and low efficiency in drying water after washing, which affects production efficiency.
The system employs a drive mechanism in conjunction with a spin-drying mechanism. A servo motor drives the drive gear and transmission gear to rotate, thereby rotating the placement frame. Combined with side fans and top fans, it provides uniform cooling to the plastic products. Simultaneously, a collection mechanism collects the spin-dried liquid and reduces the cavity temperature, resulting in a multi-directional cooling effect.
It improves the cooling efficiency of plastic products, shortens drying time, reduces costs, and increases production efficiency.
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Figure CN117901315B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cooling device, in particular to a cooling device for plastic product processing. BACKGROUND
[0002] The main component of plastic is resin. Resin refers to a high molecular compound that has not been mixed with various additives. The term resin is originally derived from the lipids secreted by animals and plants, such as rosin and shellac. Resin accounts for about 40% to 100% of the total weight of plastic. The basic properties of plastic are mainly determined by the nature of the resin, but additives also play an important role. Some plastics are basically composed of synthetic resins and contain no or few additives, such as organic glass. Plastic raw materials are defined as a kind of synthetic or natural high polymer that can be arbitrarily kneaded into various shapes and finally can keep the shape unchanged or a plastic material product.
[0003] The existing plastic cooling equipment has a long transmission channel, needs to place a large area of cooling machine, has large cost expenditure, and the equipment places the plastic in a large space, has poor cooling effect, and the moisture of the plastic after external cleaning is not dried, and it also needs a long time for drying. SUMMARY
[0004] The present application relates to the technical field of cooling device, in particular to a cooling device for plastic product processing.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a cooling device for plastic product processing, comprising a device main body, a cavity is formed in the device main body, a driving mechanism is arranged on the device main body, a spin-drying mechanism connected with the driving mechanism is arranged at the top of the cavity, a cooling mechanism is arranged at the bottom of the driving mechanism and around the spin-drying mechanism, a collecting mechanism is arranged at the bottom of the cavity, and an air filtering mechanism is arranged above the inner wall of one side of the cavity.
[0006] The driving mechanism comprises a servo motor installed on the top of the device main body and an annular block installed on the inner wall at the top of the cavity, a driving gear is installed at one end of the action output shaft of the servo motor extending into the cavity through the device main body, an annular tooth groove is formed at the position of the annular block on the same horizontal line as the driving gear, and a transmission gear is engaged between the annular tooth groove and the driving gear.
[0007] The spin-drying mechanism comprises a connecting column installed at the bottom of the driving gear, a fixed frame is installed at the bottom of the connecting column, a placing frame is slidingly installed in the fixed frame, and sponge strips are arranged at four corners in the placing frame.
[0008] Preferably, an annular guide groove is formed in the annular block, a pulley is rotatably installed at the top of the transmission gear, and the pulley is slidingly arranged in the annular guide groove.
[0009] Preferably, the opening edge of the fixed frame is rotatably provided with a locking clamping strip, and the other side of the opening edge is provided with a clamping block, the locking clamping strip can be clamped on the clamping block, and the fixed frame is provided with a locking clamping groove matched with the locking clamping strip.
[0010] Preferably, the collecting mechanism comprises four mounting rods mounted at the bottom of the cavity, a water collecting bowl is mounted at the top of the four mounting rods, a water leakage opening is arranged at the center of the water collecting bowl, a water receiving disc is slidably arranged on the inner wall of the bottom of the cavity, the water receiving disc is arranged directly below the water leakage opening, a guide groove is formed at one end of each of the four mounting rods, and the distance between the two symmetrical guide grooves is matched with the size of the water receiving disc.
[0011] Preferably, a sealing door is hingedly arranged at the opening edge of the cavity.
[0012] Preferably, four support columns distributed in a matrix are arranged at the bottom of the device body, and an anti-skid rubber pad is mounted at the bottom of the support column.
[0013] Preferably, the air filtering mechanism comprises a heat dissipation opening formed on the inner wall of one side of the cavity and a filtering frame mounted on one side of the device body, the filtering frame is covered on the heat dissipation opening, a filter screen is inserted on the filtering frame, a cover body is mounted on the top of the filter screen and covers the opening of the filtering frame, a first connecting block is mounted on the cover body, a second connecting block is mounted on the filtering frame, a limiting plug is arranged on the second connecting block, a limiting slot matched with the limiting plug is formed on the first connecting block, and the limiting plug is fixed in the limiting slot through a locking bolt.
[0014] Preferably, the cooling mechanism comprises an L-shaped mounting bracket rotatably mounted on the transmission gear, two side fans are arranged on the L-shaped mounting bracket in a vertical direction, two top fans are arranged on the upper end of the L-shaped mounting bracket and are inclined to each other, the top fans are arranged above the sides of the fixed frame, a limiting guide ring is arranged at the bottom of the annular block, and the bottom edge of the limiting guide ring is embedded on the outer side of the L-shaped mounting bracket.
[0015] The beneficial effects of the present application are:
[0016] The application is characterized in that the driving mechanism and the spin-drying mechanism are matched with each other, so that the plastic products can be placed in the placing frame after being cleaned, and then the placing frame is slid into the fixed frame, the driving mechanism drives the driving gear to rotate, and then the fixed frame rotates with the driving gear, so that the liquid on the surface of the plastic products in the placing frame is spin-dried, at the same time, the transmission gear in the driving mechanism rotates along the annular tooth groove on the annular block, so that the transmission gear rotates around the driving gear, and the L-shaped mounting frame rotates around the spin-drying mechanism through the limiting of the limiting guide ring, and the plastic products in the placing frame are uniformly cooled by the side fan and the top fan, so that the liquid on the surface of the plastic products is spin-dried, and the plastic products are uniformly cooled by the side fan and the top fan.
[0017] The collecting mechanism is arranged, so that the liquid spun by the spin-drying mechanism can be collected by the water collecting bowl, and then discharged to the water collecting disc through the water leakage opening, the water collecting disc collects the liquid, and the temperature in the cavity is slightly reduced after the liquid is cooled and evaporated in the water collecting disc, and the airflow blown by the top fan is guided by the arc-shaped water collecting bowl, so that the upward airflow is formed, the bottom of the plastic products in the placing frame is also cooled, so that the plastic products are cooled in multiple directions, the cooling effect of the plastic products is further improved, the cooling speed is accelerated, and the working efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 A main body structure schematic view of the cooling device for plastic product processing is provided in the application;
[0019] Figure 2 A side view cross-sectional structure schematic view of the cooling device for plastic product processing is provided in the application;
[0020] Figure 3 A main body structure schematic view of the cooling device for plastic product processing is provided in the application; Figure 2 An enlarged schematic view of structure A in the application;
[0021] Figure 4 A top view cross-sectional structure schematic view of the driving gear and the transmission gear of the cooling device for plastic product processing is provided in the application;
[0022] Figure 5 A cross-sectional structure schematic view of the cooling mechanism of the cooling device for plastic product processing is provided in the application;
[0023] Figure 6 A connection schematic view of the driving mechanism and the spin-drying mechanism of the cooling device for plastic product processing is provided in the application;
[0024] Figure 7 A connection diagram of the driving mechanism and the spin-drying mechanism of the cooling device for plastic product processing.
[0025] In the figure:
[0026] 1, device main body; 11, support column; 12, sealing door; 13, cavity;
[0027] 2, driving mechanism; 21, servo motor; 22, driving gear; 23, ring block; 24, ring gear slot; 25, ring guide slot; 26, connecting column; 27, transmission gear; 28, pulley; 29, limiting guide ring
[0028] 3, spin-drying mechanism; 31, fixed frame; 32, placement frame; 33, sponge strip; 34, locking slot; 35, locking clamping strip; 36, lapping block;
[0029] 4, collection mechanism; 41, mounting rod; 42, water leakage opening; 43, water receiving tray; 44, guide groove; 45, water collecting bowl;
[0030] 5, air filtering mechanism; 51, heat dissipation opening; 52, filter screen; 53, limiting plug; 54, limiting slot; 55, locking bolt; 56, first connecting block; 57, filter frame; 58, cover; 59, second connecting block;
[0031] 6, cooling mechanism; 61, L-shaped mounting bracket; 62, side fan; 63, top fan. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.
[0033] Referring to Figures 1-7 A cooling device for plastic product processing, comprising a device main body 1, a cavity 13 is formed in the device main body 1, a driving mechanism 2 is arranged on the device main body 1, a spin-drying mechanism 3 is arranged on the top of the cavity 13 and connected with the driving mechanism 2, a cooling mechanism 6 is arranged at the bottom of the driving mechanism 2 and spaced around the circumference of the spin-drying mechanism 3, a collection mechanism 4 is arranged at the bottom of the cavity 13, and an air filtering mechanism 5 is arranged above the inner wall of one side of the cavity 13;
[0034] The driving mechanism 2 comprises a servo motor 21 mounted on the top of the device body 1 and an annular block 23 mounted on the inner wall of the top of the cavity 13, the action output shaft of the servo motor 21 extends through the device body 1 to the end in the cavity 13 and is provided with a driving gear 22, the annular block 23 is provided with an annular gear slot 24 at the position on the same horizontal line of the driving gear 22, and the transmission gear 27 is engaged between the annular gear slot 24 and the driving gear 22;
[0035] The cooling mechanism 6 comprises an L-shaped mounting bracket 61 rotatably mounted on the transmission gear 27, two side fans 62 are arranged in the vertical direction on the L-shaped mounting bracket 61, two top fans 63 inclined to each other are arranged on the upper end of the L-shaped mounting bracket 61, the top fans 63 are arranged above the sides of the fixed frame 31, the bottom of the annular block 23 is provided with a limiting guide ring 29, and the bottom edge of the limiting guide ring 29 is embedded on the outer side of the L-shaped mounting bracket 61;
[0036] The spin-drying mechanism 3 comprises a connecting column 26 mounted on the bottom of the driving gear 22, the bottom of the connecting column 26 is provided with a fixed frame 31 with an open side, the surface of the fixed frame 31 is provided with multiple hollows, the fixed frame 31 is slidably mounted with a placing frame 32 with multiple hollows arranged on the surface, the opening of the placing frame 32 faces upward, and sponge strips 33 are arranged at four corners in the placing frame 32, so that the plastic products can be prevented from being damaged by impact in the placing frame 32 during the rotation of the placing frame 32 with the driving gear 22, and the liquid attached to the surface of the plastic products can be absorbed through the sponge strips 33;
[0037] Through the cooperation of the driving mechanism 2 and the spin-drying mechanism 3, the plastic products can be placed in the placing frame 32 after being washed, and then the placing frame 32 is slid into the fixed frame 31, the servo motor 21 in the driving mechanism 2 drives the driving gear 22 to rotate, so that the fixed frame 31 rotates with the driving gear 22, the liquid on the surface of the plastic products in the placing frame 32 is spin-dried, at the same time, the transmission gear 27 in the driving mechanism 2 rotates along the annular gear slot 24 on the annular block 23 driven by the driving gear 22, so that the transmission gear 27 rotates around the driving gear 22, the L-shaped mounting bracket 61 is limited by the limiting guide ring 29, and the L-shaped mounting bracket 61 is rotatably connected to the transmission gear 27, so that the L-shaped mounting bracket 61 rotates around the spin-drying mechanism 3 when the transmission gear 27 rotates, and the plastic products in the placing frame 32 are uniformly cooled by the side fans 62 and the top fans 63 on the L-shaped mounting bracket 61, so that the liquid on the surface of the plastic products is spin-dried, and the plastic products are uniformly cooled by the side fans 62 and the top fans 63.
[0038] Specifically, in the embodiment, the annular block 23 is provided with an annular guide groove 25, and a pulley 28 is rotatably installed on the top of the transmission gear 27 and is slidably arranged in the annular guide groove 25.
[0039] Through the arrangement of the pulley 28 and the annular guide groove 25, the moving direction of the transmission gear 27 can be guided, and the frictional force suffered by the transmission gear 27 during movement is reduced, so that the movement of the transmission gear 27 is more smooth.
[0040] Specifically, in the embodiment, a locking clamping strip 35 is rotatably installed on one side of the opening edge of the fixed frame 31, and a lap block 36 is arranged on the other side of the opening edge, the locking clamping strip 35 can be lapped on the lap block 36, and the fixed frame 31 is provided with a locking clamping groove 34 matched with the locking clamping strip 35.
[0041] Through the cooperation of the lap block 36, the locking clamping strip 35 and the locking clamping groove, after the placing frame 32 is placed into the fixed frame 31, the locking clamping strip 35 is lapped in the lap block 36 and the locking clamping groove at the same time, the limiting and fixing of the placing frame 32 are realized, and the placing frame 32 is prevented from being separated from the fixed frame 31 during the spin-drying process.
[0042] Specifically, in the embodiment, the collecting mechanism 4 includes four installation rods 41 installed at the bottom of the cavity 13, a water collecting bowl 45 is installed at the top of the four installation rods 41, a water leakage opening 42 is arranged at the center position of the water collecting bowl 45, a water receiving tray 43 is slidably arranged on the inner wall of the bottom of the cavity 13, the water receiving tray 43 is arranged directly below the water leakage opening 42, and a guide groove 44 is formed at one end of each of the four installation rods 41 close to each other, and the distance between the two symmetrically arranged guide grooves 44 is matched with the size of the water receiving tray 43.
[0043] Through the arrangement of the collecting mechanism 4, the liquid spun out by the spin-drying mechanism 3 can be collected by the water collecting bowl, and the liquid can be discharged into the water receiving tray 43 through the water leakage opening 42. The water receiving tray 43 collects the liquid, and the liquid cools and evaporates in the water receiving tray 43, which can slightly reduce the temperature in the cavity 13. The water collecting bowl collects the liquid spun out by the spin-drying mechanism 3, and the airflow blown by the top fan 63 passes through the guide of the arc-shaped water collecting bowl, so that the upward airflow is formed, which can also cool and lower the temperature of the bottom of the plastic product in the placing frame 32, thereby realizing multi-directional cooling of the plastic product, further improving the cooling effect and accelerating the cooling speed of the plastic product, improving the work efficiency. Through the arrangement of the guide groove 44, the position of the water receiving tray 43 can be limited, and the water receiving tray 43 can be inserted along the guide groove 44 when the water receiving tray 43 is placed, so that the placement process of the water receiving tray 43 is guided and limited, and the position of the water receiving tray 43 is kept constant.
[0044] Specifically, in this embodiment, the opening edge of the cavity 13 is hinged with the sealing door 12.
[0045] Specifically, in this embodiment, the bottom of the device body 1 is arranged with four support columns 11 distributed in a matrix, and the bottom of the support column 11 is installed with an anti-skid rubber pad.
[0046] Specifically, in this embodiment, the air filtering mechanism 5 includes a heat dissipation opening 51 opened on the inner wall of one side of the cavity 13 and a filtering frame 57 installed on one side of the device body 1, the filtering frame 57 is covered on the heat dissipation opening 51, a filter screen 52 is inserted on the filtering frame 57, a cover body 58 is installed on the top of the filter screen 52 and covers the opening of the filtering frame 57, a first connecting block 56 is installed on the cover body 58, a second connecting block 59 is installed on the filtering frame 57, a limiting plug 53 is arranged on the second connecting block 59, a limiting slot 54 matched with the limiting plug 53 is opened on the first connecting block 56, and the limiting plug 53 is fixed in the limiting slot 54 through a locking bolt 55.
[0047] Through the cooperation of the heat dissipation opening 51 and the filter screen 52, the air circulation in the cavity 13 can be guaranteed, and the particulate matters and dust in the air can be filtered through the filter screen 52, so as to avoid a large amount of dust particles from adhering to the plastic products during the cooling process of the plastic products. Through the setting of the cover body 58, the filter screen 52 can be conveniently disassembled and assembled, and through the cooperation of the limiting plug 53 and the limiting slot 54, the limiting plug 53 can be inserted into the limiting slot 54 when the cover body 58 covers the opening of the filtering frame 57, so as to limit the position of the cover body 58, and the position between the limiting plug 53 and the limiting slot 54 can be locked through the locking bolt 55, so as to achieve the purpose of locking the cover body 58 and avoid the reduction of the replacement period of the filter screen 52 due to the loss of the cover body 58.
[0048] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A cooling device for processing plastic products, comprising a main body, characterized in that: The device body has a cavity, a drive mechanism is arranged on the device body, a spin-drying mechanism connected to the drive mechanism is arranged at the top of the cavity, a cooling mechanism is arranged at intervals around the bottom of the drive mechanism around the spin-drying mechanism, a collection mechanism is arranged at the bottom of the cavity, and an air filtration mechanism is arranged on one inner wall of the cavity. The air filtration mechanism includes a heat dissipation vent on one side of the inner wall of the cavity and a filter frame installed on one side of the main body of the device. The filter frame covers the heat dissipation vent, and a filter screen is inserted into the filter frame. A cover is installed on the top of the filter screen and fits over the opening of the filter frame. A first connecting block is installed on the cover, and a second connecting block is installed on the filter frame. A limit plug is arranged on the second connecting block, and a limit slot adapted to the limit plug is opened on the first connecting block. The limit plug is fixed in the limit slot by a locking bolt. The drive mechanism includes a servo motor mounted on the top of the device body and an annular block mounted on the inner wall of the top of the cavity. The output shaft of the servo motor extends through the device body and into the cavity, where a drive gear is installed. The annular block has an annular tooth groove at the same horizontal line as the drive gear, and a transmission gear meshes between the annular tooth groove and the drive gear. The spin-drying mechanism includes a connecting column installed at the bottom of the drive gear, a fixed frame installed at the bottom of the connecting column, a placement frame slidably installed inside the fixed frame, and sponge strips arranged at the four corners of the placement frame. The cooling mechanism includes an L-shaped mounting bracket rotatably mounted on a transmission gear. Two side fans are arranged at intervals along the vertical direction on the L-shaped mounting bracket. Two mutually inclined top fans are arranged at the upper end of the L-shaped mounting bracket. The top fans are arranged on the upper side of the fixed frame. A limiting guide ring is arranged at the bottom of the annular block. The bottom edge of the limiting guide ring is fitted into the outside of the L-shaped mounting bracket.
2. The cooling device for processing plastic products according to claim 1, characterized in that: The annular block has an annular guide groove, and a pulley is rotatably mounted on the top of the transmission gear, with the pulley slidably arranged in the annular guide groove.
3. The cooling device for processing plastic products according to claim 1, characterized in that: A locking strip is rotatably installed on one side of the opening edge of the fixed frame, and an overlapping block is arranged on the other side of the edge opening. The locking strip can overlap on the overlapping block, and a locking groove adapted to the locking strip is arranged on the fixed frame.
4. A cooling device for processing plastic products according to claim 1, characterized in that: The collection mechanism includes four mounting rods installed at the bottom of the cavity. A water collection bowl is installed on the top of the four mounting rods. A water outlet is arranged at the center of the water collection bowl. A water receiving tray is slidably arranged on the bottom inner wall of the cavity. The water receiving tray is arranged directly below the water outlet. A guide groove is opened at the end of the four mounting rods that are close to each other. The distance between two symmetrical guide grooves is adapted to the size of the water receiving tray.
5. A cooling device for processing plastic products according to claim 1, characterized in that: A sealing door is hinged at the opening edge of the cavity.
6. A cooling device for processing plastic products according to claim 1, characterized in that: The bottom of the main body of the device is provided with four support columns arranged in a matrix, and the bottom of the support columns is equipped with anti-slip rubber pads.
Citation Information
Patent Citations
Cooling device for plastic product processing
CN213860279U
Stable forming device for plastic product processing
CN216442902U