Cooling storage machine

By designing a cooling storage machine, the automated cooling and storage of inductor products is achieved through air cooling and conveying mechanisms, solving the problem of low automation in existing equipment and improving production efficiency and continuity.

CN224262026UActive Publication Date: 2026-05-19SUMIDA ELECTRIC GUANGXI CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUMIDA ELECTRIC GUANGXI CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing inductor production cooling equipment lacks automation, resulting in low work efficiency. Furthermore, it cannot effectively cool products when the rosin-igniting equipment malfunctions, thus affecting production efficiency.

Method used

A cooling and storage machine was designed, comprising a feeding device, a first cooling device, a first feeding device, a second feeding device, and a storage device. It achieves automated cooling and storage of products through an air-cooling mechanism and a conveying mechanism, ensuring normal cooling even in the event of equipment failure.

Benefits of technology

It enables automated cooling and storage of products, improves work efficiency, ensures production continuity and profitability, and prevents products from being damaged due to prolonged storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling storage machine which comprises a machine box, a feeding device, a first cooling device, a first material stirring device and a second material stirring device. The feeding device and the first material stirring device are arranged on the rear side of the top face of the machine box. The two first cooling devices are arranged on the top face of the machine box in a left-right spaced mode and located in front of the feeding device, and each first cooling device comprises a conveying mechanism and an air cooling mechanism. The air cooling mechanism is arranged on the top surface of the case; the conveying mechanism is arranged on the top surface of the air cooling mechanism; and the second material stirring device is arranged on the first cooling device on the right side. The cooling device can realize integration of feeding, primary cooling, secondary cooling and discharging of products, is high in automation degree, time-saving and labor-saving, is high in working efficiency, and can realize continuous cooling work.
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Description

Technical Field

[0001] This utility model belongs to the field of inductor manufacturing and processing technology, and in particular relates to a cooling storage machine. Background Technology

[0002] An inductor is a component that converts electrical energy into magnetic energy and stores it. During inductor manufacturing, after the inductor is cured in an oven, rosin needs to be applied to the leads. However, the temperature of the cured product is high, requiring cooling before proceeding to the next process. The traditional cooling method involves removing the product and allowing it to cool naturally in the air for a period of time before manually transferring it to the next processing equipment. This method is time-consuming, labor-intensive, inefficient, and cannot achieve continuous operation. While some cooling equipment exists in existing technology, it suffers from insufficient automation and low efficiency.

[0003] Furthermore, when the rosin-dispensing equipment malfunctions, it is necessary to stop feeding the rosin into the equipment. Although the curing furnace can be shut down at this time, the products processed in the furnace still need to be discharged and cooled. Otherwise, if the products stay in the furnace for too long, the residual heat will cause damage to the products. However, the existing equipment cannot cool the products under such circumstances, resulting in a decrease in production efficiency. Utility Model Content

[0004] The purpose of this invention is to provide a cooling storage machine to solve the technical problems mentioned in the background section.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A cooling storage machine includes a chassis, a feeding device, a first cooling device, a first feeding device, and a second feeding device. The chassis is vertically arranged. The feeding device and the first feeding device are located on the rear side of the top surface of the chassis. The first cooling device is located on the top surface of the chassis, with two devices spaced apart on the left and right sides, in front of the feeding device. The first cooling device includes a conveying mechanism and an air-cooling mechanism. The air-cooling mechanism is located on the top surface of the chassis. The conveying mechanism is located on the top surface of the air-cooling mechanism. The second feeding device is located on the right side of the first cooling device.

[0007] Furthermore, the feeding device includes a feeding support, a feeding moving module, a base, a feeding lifting cylinder, a mounting base, a connecting base, a feeding connecting plate, a feeding finger cylinder, and a feeding clamp; the feeding support is vertically arranged; the feeding moving module is horizontally arranged left and right, and its rear side is fixedly connected to the upper part of the front side of the feeding support; the base has an L-shaped structure, with its vertical rear side connected to the feeding moving module, and its horizontal side located on the upper part of the front side of the vertical side; the feeding lifting cylinder is vertically arranged on the top surface of the horizontal side of the base, and its piston rod passes downward through the top surface of the base; the... The mounting base has an L-shaped structure, with its vertical rear side slidably connected to the vertical front side of the base, and its horizontal side located below the vertical front side. The top surface of the mounting base is fixedly connected to the piston rod of the loading lifting cylinder. The connecting seat is located on the bottom surface of the horizontal side of the mounting base. The loading connecting plate is horizontally located at the bottom of the connecting seat, with its two ends extending to the left and right. There are two loading finger cylinders, located on the left and right sides of the bottom surface of the loading connecting plate, with their fingers pointing downwards. There are two loading clamps corresponding to each loading finger cylinder, located on the fingers of each loading finger cylinder.

[0008] Furthermore, the first cooling device includes an air-cooling mechanism, a conveying mechanism, and a positioning plate; the air-cooling mechanism includes support legs, a platform, and a first fan; the support legs are vertically arranged on the top surface of the chassis, and four are rectangularly distributed; the platform is horizontally arranged on the top surface of the support legs, and multiple openings are provided on the top surface of the platform; the first fan is located in the openings of the platform; the conveying mechanism includes a support plate, a belt conveyor, and a conveyor transmission assembly; there are two support plates, which are spaced apart on the top surface of the platform; there are two belt conveyors, which are horizontally arranged on opposite sides of the two support plates; the conveyor transmission assembly is connected to the conveyor belts; the positioning plates are horizontally arranged on the left and right, and two are spaced apart on the front and back, with the left and right sides of the bottom surface of the two positioning plates respectively connected to the top surfaces of the two support plates.

[0009] Furthermore, the first feeding device includes a first feeding support, a first feeding moving module, a first fixed base, and a first actuating component; the first feeding support is vertically arranged on the right side of the feeding support, and two are spaced apart on the left and right; the first feeding moving module is horizontally arranged on the left and right, and its rear side is connected to the upper part of the front side of the two first feeding supports; the first fixed base is connected to the front side of the first feeding moving module; and the first actuating component is connected to the front side of the first fixed base.

[0010] Furthermore, the second material feeding device includes a second material feeding support, a second material feeding moving module, a second fixed base, and a second actuating component; the second material feeding support is vertically arranged, with two spaced apart on the left and right, and the lower part of the opposite side of the two material feeding supports is respectively connected to the support plate of the first cooling device on the right; the second material feeding moving module is horizontally arranged, and its rear side is connected to the upper part of the front side of the two second material feeding supports; the second fixed base is connected to the front side of the second material feeding moving module; the second actuating component is connected to the front side of the second fixed base.

[0011] Furthermore, it also includes a conveying device, a storage device, and a third material feeding device; the conveying device is located on the top surface of the chassis and in front of the two first cooling devices respectively; two storage devices are arranged at intervals on the left and right, and the storage devices are located between the first cooling devices and the conveying device; the top surface of the chassis has a through channel corresponding to the storage device, the lower part of the storage device is located inside the chassis, and the upper part passes through the top surface of the chassis through the channel; the third material feeding device is located inside the chassis and behind the two storage devices.

[0012] Furthermore, the conveying device includes a conveying support plate, a conveying front and rear slide cylinder, a conveying lifting slide cylinder, a conveying connecting plate, a conveying finger cylinder, and a conveying clamp; the conveying support plate is vertically arranged, with its lower rear side connected to the front side of the machine housing, and its upper part extending upward beyond the top surface of the machine housing; the conveying front and rear slide cylinders are horizontally arranged on the top surface of the conveying support plate; the conveying lifting slide cylinder is vertically arranged on the rear side of the slide of the conveying front and rear slide cylinders; the conveying connecting plate is horizontally arranged on the bottom surface of the slide of the conveying lifting slide cylinder, with its two ends extending to the left and right; there are two conveying finger cylinders, respectively arranged on the left and right sides of the bottom surface of the conveying connecting plate, with their fingers pointing downwards; there are two conveying clamps corresponding to each conveying finger cylinder, respectively arranged on the fingers of each conveying finger cylinder.

[0013] Furthermore, the storage device includes a storage mechanism and a storage transmission mechanism; the storage mechanism includes a storage mounting plate, a storage drive shaft, a storage driven shaft, a drive sprocket, a driven sprocket, a chain, a support component, and a storage component; the storage mounting plate is vertically arranged, with two plates spaced apart on the left and right, the rear sides of the two storage mounting plates are fixedly connected to the front side of the machine housing, and the upper part passes upward through a channel through the top surface of the machine housing; the storage drive shaft is rotatably mounted on the lower part of the opposite side of the two storage mounting plates through bearings, and one end of it passes through the side of the storage mounting plate; the storage driven shaft is horizontally mounted on the left and right sides. The material storage unit is horizontally mounted on the upper part of one side of the two material storage mounting plates; the driving sprocket is fixedly sleeved on the material storage driving shaft, and two are spaced apart on the left and right; the driven sprocket is fixedly sleeved on the material storage driven shaft, and two are spaced apart on the left and right; there are two chains, which are respectively wound around the corresponding driving sprocket and driven sprocket; the support member is horizontally positioned between the two chains, and multiple are spaced apart along the chains; the storage unit is horizontally fixed on the support member; the material storage transmission mechanism is located on the bottom surface of the machine box and is connected to the material storage driving shaft for transmission.

[0014] Furthermore, the third feeding device includes a third feeding support, a third feeding moving module, a third fixed base, and a third actuating component; the third feeding support is vertically connected to the bottom surface of the machine housing and located behind the storage device; the third feeding moving module is horizontally arranged on the top surface of the third feeding support; the third fixed base is connected to the front side of the third feeding moving module; and the third actuating component is connected to the front side of the third fixed base.

[0015] Furthermore, it also includes a third cooling device; the third cooling device includes a mounting platform and a third fan; two mounting platforms are spaced apart on the left and right, the lower part of which is connected to the rear side of the third material feeding moving module, and the upper part extends upward, with multiple openings on the mounting platform; the third fan is located in the opening of the mounting platform.

[0016] The advantages of this utility model compared to the prior art are as follows:

[0017] This invention integrates a feeding device, a first air-cooling device, a first material-feeding device, and a second material-feeding device. The feeding device moves the fixture to the left first cooling device for initial cooling, then the first material-feeding device moves the fixture to the right first cooling device for a second cooling, and finally the second material-feeding device ejects the fixture for unloading. This achieves integrated feeding, initial cooling, secondary cooling, and unloading of the product, resulting in a high degree of automation, saving time and labor, and increasing work efficiency, enabling continuous cooling operations. In the feeding device of this invention, the feeding moving module and feeding lifting cylinder can drive the feeding finger cylinder and feeding clamp to move horizontally and vertically. The feeding finger cylinder and feeding clamp can then remove the fixture carrying the product from the outlet of the curing oven, achieving automated feeding and improving the level of automation. Simultaneously, by setting up a push cylinder, in conjunction with gears and racks, the posture of the feeding finger cylinder can be changed, thus adapting to fixtures with different postures and expanding its applicability. In the first cooling device of this invention, by setting up a conveying mechanism and an air-cooling mechanism, the conveying mechanism transports the fixture while the air-cooling mechanism cools the products on the fixture, achieving synchronous conveying and cooling, thus improving production efficiency. This invention, by setting up a handling device and a storage device, can normally remove products from the curing oven when the equipment in the next process malfunctions, and then transport them to the storage device for storage, preventing damage from prolonged stay in the curing oven and ensuring production efficiency. Simultaneously, after the equipment in the next process is back to normal operation, products can be removed from the storage device for normal unloading, further improving the level of automation. This invention, by setting up two storage devices and cooperating with a third feeding device, can transfer products from the left storage device to the right storage device, increasing storage capacity and ensuring that all products in the curing oven are unloaded and cooled. This invention, by setting up a second cooling device, can normally cool products during storage, ensuring that products are cooled sufficiently during storage. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the connection structure of each device of this utility model on the top surface of the chassis;

[0020] Figure 3 This is a schematic diagram of the feeding device of this utility model;

[0021] Figure 4 This is a schematic diagram of the connection structure between the first cooling device and the first feeding device on the left side of this utility model;

[0022] Figure 5 This is a schematic diagram of the connection structure of the conveying transmission mechanism of this utility model;

[0023] Figure 6 This is a schematic diagram of the connection structure between the first cooling device and the second feeding device on the right side of this utility model;

[0024] Figure 7 This is a schematic diagram of the connection structure of the handling device and storage device of this utility model on the chassis;

[0025] Figure 8 This is a schematic diagram of the connection structure of the handling device and storage device of this utility model on the chassis from another perspective;

[0026] Figure 9 This is a schematic diagram of the connection structure of the handling device and storage device of this utility model inside the chassis;

[0027] Figure 10 This is a schematic diagram of the structure of the handling device of this utility model;

[0028] Figure 11 This is a schematic diagram of the structure of the storage device of this utility model;

[0029] Figure 12 This is a schematic diagram of the connection structure between the support component and the storage component of this utility model;

[0030] Figure 13 This is a schematic diagram of the connection structure between the third feeding device and the second cooling device of this utility model;

[0031] In the attached diagram, 1 - chassis;

[0032] 2-Feeding device; 201-Feeding support; 202-Feeding moving module; 203-Base; 204-Feeding lifting cylinder; 205-Mounting seat; 206-Connecting seat; 207-Feeding connecting plate; 208-Feeding finger cylinder; 209-Feeding clamp; 210-Pushing cylinder; 211-Pushing component; 212-Pushing seat; 213-Rack; 214-Gear; 215-Rotating shaft;

[0033] 3-First cooling device;

[0034] 31-Air-cooling mechanism; 311-Support leg; 312-Tablet; 313-First fan;

[0035] 32-Conveying mechanism; 321-Support plate; 322-Belt conveyor; 3221-Conveying drive shaft; 3222-Conveying driven shaft; 3223-Conveying belt;

[0036] 323-Conveyor drive assembly; 3231-Bearing housing; 3232-Drive shaft; 3233-Conveyor motor; 3234-Conveyor drive pulley; 3235-Conveyor driven pulley; 3236-Conveyor synchronous belt; 3237-Drive pulley; 3238-Shaft pulley; 3239-Drive synchronous belt;

[0037] 33-Positioning plate;

[0038] 4-First feeding device; 41-First feeding support; 42-First feeding moving module; 43-First fixed base; 44-First actuating component;

[0039] 5-Second feeding device; 51-Second feeding support; 52-Second feeding moving module; 53-Second fixed seat; 54-Second actuating component.

[0040] 6-Transferring device; 61-Transferring support plate; 62-Transferring front and rear slide cylinder; 63-Transferring lifting slide cylinder; 64-Transferring connecting plate; 65-Transferring finger cylinder; 66-Transferring fixture;

[0041] 7-Storage device;

[0042] 71-Material storage mechanism; 711-Material storage mounting plate; 712-Material storage drive shaft; 713-Material storage driven shaft; 714-Drive sprocket; 715-Driven sprocket; 716-Chain; 717-Support component; 718-Storage component;

[0043] 72-Material storage drive mechanism; 721-Material storage drive pulley; 722-Material storage driven pulley; 723-Material storage motor; 724-Material storage synchronous belt;

[0044] 8-Third feeding device; 81-Third feeding support; 82-Third feeding moving module; 83-Third fixed base; 84-Third actuating component;

[0045] 9-Second cooling device; 91-Mounting platform; 92-Second fan. Detailed Implementation

[0046] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided with reference to the accompanying drawings and preferred embodiments. However, it should be noted that many details listed in the specification are merely to provide the reader with a thorough understanding of one or more aspects of this utility model, and these aspects can be achieved even without these specific details.

[0047] Example 1

[0048] like Figure 1-6As shown, a cooling storage machine includes a chassis 1, a feeding device 2, a first cooling device 3, a first feeding device 4, and a second feeding device 5. The chassis 1 is vertically arranged. The feeding device 2 and the first feeding device 4 are located on the rear side of the top surface of the chassis 1. The first cooling device 3 is located on the top surface of the chassis 1, with two devices spaced apart on the left and right sides, in front of the feeding device 2. The first cooling device 3 includes a conveying mechanism 32 and an air-cooling mechanism 31. The air-cooling mechanism 31 is located on the top surface of the chassis 1. The conveying mechanism 32 is located on the top surface of the air-cooling mechanism 31. The second feeding device 5 is located on the right side of the first cooling device 3. After the fixture carrying the product is discharged from the drying equipment of the previous process, the feeding device 2 moves the fixture to the conveying mechanism 32 of the first cooling device 3 on the left. The conveying mechanism 32 drives the fixture to move backward. During the movement of the fixture, it is cooled for the first time by the air cooling mechanism 31. Then, the first feeding device 4 moves the fixture to the conveying mechanism 32 of the first cooling device 3 on the right. The conveying mechanism 32 of the first cooling device 3 on the right drives the fixture to move forward. During the movement of the fixture, it is cooled for the second time by the air cooling mechanism 31 of the first cooling device 3 on the right. Finally, the second feeding device 5 sends the fixture out for unloading.

[0049] like Figure 3As shown, the feeding device 2 includes a feeding support 201, a feeding moving module 202, a base 203, a feeding lifting cylinder 204, a mounting base 205, a connecting base 206, a feeding connecting plate 207, a feeding finger cylinder 208, and a feeding clamp 209. The feeding support 201 is vertically arranged. The feeding moving module 202 is horizontally arranged, with its rear side fixedly connected to the upper part of the front side of the feeding support 201. The base 203 has an L-shaped structure, with its vertical rear side connected to the feeding moving module 202 and its horizontal side located on the upper part of the front side of the vertical side. The feeding lifting cylinder 204 is vertically arranged on the top surface of the horizontal side of the base 203, and its piston rod passes downward through the base 203. The top surface; the mounting base 205 has an L-shaped structure, with its vertical rear side slidably connected to the vertical front side of the base 203, and its horizontal side located below the vertical front side. The top surface of the mounting base 205 is fixedly connected to the piston rod of the loading lifting cylinder 204; the connecting seat 206 is located on the bottom surface of the horizontal side of the mounting base 205; the loading connecting plate 207 is horizontally located at the bottom of the connecting seat 206, with its two ends extending to the left and right; there are two loading finger cylinders 208, respectively located on the left and right sides of the bottom surface of the loading connecting plate 207, with their fingers pointing downwards; there are two loading clamps 209 corresponding to each loading finger cylinder 208, respectively located on the fingers of each loading finger cylinder 208. When the fixture carrying the product is unloaded from the drying equipment, the loading moving module 202 drives the loading lifting cylinder 204 and the loading finger cylinder 208 to move to the left. Then, the piston rod of the loading lifting cylinder 204 extends, driving the loading finger cylinder 208 to descend. After reaching the position, the loading finger cylinder 208 is activated, causing its two fingers to move relative to each other, thereby causing the loading clamp 209 to clamp the fixture. After that, the loading lifting cylinder 204 and the loading moving module 202 are reset, causing the loading finger cylinder 208 and the fixture to move above the left first cooling device 3. The piston rod of the loading lifting cylinder 204 extends, driving the loading finger cylinder 208 to descend. Finally, the fingers of the loading finger cylinder 208 open, loading the fixture onto the conveying mechanism 32 of the left first cooling device 3.

[0050] like Figure 3As shown, in a further embodiment, the feeding device 2 further includes a push cylinder 210, a pusher 211, a push seat 212, a rack 213, a gear 214, and a rotating shaft 215; the push cylinder 210 is horizontally disposed on the front side of the vertical edge of the mounting base 205, with its piston rod facing to the left; the pusher 211 is vertically disposed on the piston rod of the push cylinder 210, with its lower part extending downward; the push seat 212 is fixedly disposed on the lower part of the right side of the pusher 211, and its rear side is slidably connected to the front side of the vertical edge of the mounting base 205 through a slide table and a slide rail; the rack 213 is horizontally disposed on the bottom surface of the push seat 212; the rotating shaft 215 is vertically disposed, with its lower part passing downward through the horizontal edge of the mounting base 205, and is rotatably connected to the mounting base 205 through a bearing; the gear 214 is fixedly sleeved on the upper end of the rotating shaft 215 and meshes with the rack 213; the top surface of the connecting seat 206 is fixedly connected to the bottom of the rotating shaft 215. Since the discharge posture of the fixture is different in different types of drying equipment, when used in a drying equipment where the fixture discharges material in a forward and backward orientation, the piston rod of the push cylinder 210 is extended, which drives the pusher 211 to move to the left, causing the pusher seat 212 to drive the rack 213 to move to the left, causing the gear 214 to rotate, thereby causing the connecting seat 206 to rotate 90° to adapt to the fixture posture; after the feeding finger cylinder 208 and the feeding clamp 209 clamp the fixture from the drying equipment, the push cylinder 210 is reset, causing the connecting seat 206 to reset, thereby ensuring that the fixture can be fed into the first cooling device 3, thus improving the applicability of this cooling storage machine.

[0051] like Figure 4 As shown, the first cooling device 3 includes an air-cooling mechanism 31, a conveying mechanism 32, and a positioning plate 33. The air-cooling mechanism 31 includes support legs 311, a platform 312, and a first fan 313. The support legs 311 are vertically arranged on the top surface of the chassis 1, and four are rectangularly distributed. The platform 312 is horizontally arranged on the top surface of the support legs 311, and multiple openings are provided on the top surface of the platform 312. The first fan 313 is located in the openings of the platform 312. The conveying mechanism 32 includes a support plate 321, a belt conveyor 322, and a conveying transmission assembly 323. There are two support plates 321, which are spaced apart on the top surface of the platform 312. There are two belt conveyors 322, which are horizontally arranged on opposite sides of the two support plates 321. The conveying transmission assembly 323 is connected to the conveying belt conveyor 322. The positioning plates 33 are horizontally arranged on the left and right, and two are spaced apart on the front and back. The left and right sides of the bottom surface of the two positioning plates 33 are connected to the top surfaces of the two support plates 321, respectively. The fixture is fed into the conveying mechanism 32 of the first cooling device 3 on the left. The two belt conveyors 322 of the conveying mechanism 32 move the fixture backward and through the air cooling mechanism 31. The first fan 313 of the air cooling mechanism 31 can perform preliminary cooling on the product on the fixture.

[0052] like Figure 5 As shown, in a further embodiment, the belt conveyor 322 includes a conveying drive shaft 3221, a conveying driven shaft 3222, and a conveying belt 3223; the conveying drive shaft 3221 is rotatably mounted on the front part of the support plate 321 facing the center of the platform 312 via bearings, and one end passes through the support plate 321; the conveying driven shaft 3222 is rotatably mounted on the rear part of the support plate 321 facing the center of the platform 312 via bearings; the conveying belt 3223 is wound around the conveying drive shaft 3221 and the conveying driven shaft 3222.

[0053] like Figure 5 As shown, in a further embodiment, the conveying transmission assembly 323 includes a bearing housing 3231, a transmission shaft 3232, a conveying motor 3233, a conveying drive pulley 3234, a conveying driven pulley 3235, a conveying synchronous belt 3236, a transmission pulley 3237, a shaft pulley 3238, and a transmission synchronous belt 3239; the conveying motor 3233 is horizontally mounted on the bottom surface of the platform, with its output shaft extending to the right side of the platform; the conveying drive pulley 3234 is fixedly sleeved on the output shaft of the conveying motor 3233; the bearing housing 3231 is fixedly mounted on the front side of the bottom surface of the platform, with two bearing housings spaced apart on the left and right; the transmission shaft 3232 is horizontally mounted on two shafts. Inside the bearing 3231, its two ends extend to the left and right sides of the platform; the driven conveyor pulley 3235 is fixedly sleeved on the right end of the drive shaft 3232 and connected to the drive conveyor pulley 3234 through the synchronous conveyor belt 3236; the drive pulley 3237 is fixedly sleeved on the left and right sides of the drive shaft 3232, wherein the right drive pulley 3237 is located between the driven conveyor pulley 3235 and the right bearing seat 3231; the shaft pulleys 3238 are respectively fixedly sleeved on the drive conveyor shafts 3221 of the two belt conveyors 322, and each shaft pulley 3238 is connected to its corresponding drive pulley 3237 above and below it through the synchronous conveyor belt 3239. The output shaft of the conveyor motor 3233 rotates, which in turn drives the driven pulley 3235 to rotate via the conveyor drive pulley 3234 and the conveyor timing belt 3236. The driven pulley 3235 drives the transmission shaft 3232 to rotate, which in turn drives the transmission pulleys 3237 on both sides of the transmission shaft 3232 to rotate. The transmission pulleys 3237 drive the conveyor drive shaft of the belt conveyor to rotate via the transmission timing belt 3239, thereby causing the conveyor belt 3223 to rotate on the conveyor drive shaft 3221 and the conveyor driven shaft 3222, thus conveying the fixture.

[0054] like Figure 4As shown, the first feeding device 4 includes a first feeding support 41, a first feeding moving module 42, a first fixed base 43, and a first actuating member 44. The first feeding support 41 is vertically arranged on the right side of the feeding support 201, and two are spaced apart on the left and right. The first feeding moving module 42 is horizontally arranged, and its rear side is connected to the upper part of the front side of the two first feeding supports 41. The first fixed base 43 is connected to the front side of the first feeding moving module 42. The first actuating member 44 is connected to the front side of the first fixed base 43. When the fixture is conveyed to the rear positioning plate 33 in the conveying mechanism 32 of the left first cooling device 3, the first feeding moving module 42 is activated, driving the first actuating member 44 to move to the right, so that the first actuating member 44 contacts the left end of the fixture, and pushes the fixture onto the conveying mechanism 32 of the right first cooling device 3.

[0055] like Figure 6 As shown, the second feeding device 5 includes a second feeding support 51, a second feeding moving module 52, a second fixed base 53, and a second actuating member 54. The second feeding support 51 is vertically arranged, with two of them spaced apart on the left and right. The lower part of the opposite side of the two feeding supports is connected to the support plate 321 of the right-side first cooling device 3, respectively. The second feeding moving module 52 is horizontally arranged, and its rear side is connected to the upper part of the front side of the two second feeding supports 51. The second fixed base 53 is connected to the front side of the second feeding moving module 52. The second actuating member 54 is connected to the front side of the second fixed base 53. After the fixture moves to the first cooling device 3 on the right, the conveying mechanism 32 of the first cooling device 3 on the right drives the fixture forward. After passing through the air cooling mechanism 31 of the first cooling device 3 on the right, the first fan 313 of the air cooling mechanism 31 can perform secondary cooling on the product on the fixture. When the fixture moves to the position of the front positioning plate 33 in the first cooling device 3 on the right, the second feeding device 5 is activated. The second feeding moving module 52 drives the second actuating member 54 to move to the right, so that the second actuating member 54 contacts the left end of the fixture and pushes the fixture to the right to complete the unloading.

[0056] Each device in this invention is connected to a PLC control system, which controls the start and stop of each device.

[0057] The working principle of this embodiment is as follows:

[0058] After the fixture carrying the product is discharged from the drying equipment of the previous process, the loading moving module 202 drives the loading lifting cylinder 204 and the loading finger cylinder 208 to move to the left. Then, the piston rod of the loading lifting cylinder 204 extends, driving the loading finger cylinder 208 to descend. After it reaches the position, the loading finger cylinder 208 starts, causing its two fingers to move relative to each other, so that the loading clamp 209 clamps the fixture. After that, the loading lifting cylinder 204 and the loading moving module 202 reset, causing the loading finger cylinder 208 and the fixture to move above the left first cooling device 3. The piston rod of the loading lifting cylinder 204 extends, driving the loading finger cylinder 208 to descend. Finally, the fingers of the loading finger cylinder 208 open, loading the fixture onto the conveying mechanism 32 of the left first cooling device 3.

[0059] The fixture is fed onto the two belt conveyors 322 in the conveying mechanism 32 of the left first cooling device 3. The two belt conveyors 322 move the fixture backward, passing through the air-cooling mechanism 31. The first fan 313 of the air-cooling mechanism 31 provides initial cooling to the product on the fixture. When the fixture is conveyed to the rear positioning plate 33 in the conveying mechanism 32 of the left first cooling device 3, the first material feeding module 42 is activated, driving the first actuating component 44 to move to the right, pushing the fixture onto the conveying mechanism 32 of the right first cooling device 3. The conveying mechanism 32 of the right first cooling device 3 moves the fixture forward, passing through the air-cooling mechanism 31 of the right first cooling device 3 for secondary cooling. When the fixture is conveyed to the front positioning plate 33 of the right first cooling device 3, the second material feeding device 5 is activated. The second material feeding module 52 drives the second actuating component 54 to move to the right, pushing the fixture to the right, completing the unloading.

[0060] The feeding device 2 continuously feeds the jig from the drying equipment to achieve product cooling.

[0061] Example 2

[0062] like Figure 7-13As shown, this embodiment is basically the same as embodiment 1, except that this embodiment also includes a conveying device 6, a storage device 7, and a third material feeding device 8; the conveying device 6 is located on the top surface of the chassis 1 and is located in front of the two first cooling devices 3 respectively; two storage devices 7 are arranged at intervals on the left and right, and the storage devices 7 are located between the first cooling devices 3 and the conveying device 6; the top surface of the chassis 1 has a through channel corresponding to the storage devices 7, the lower part of the storage devices 7 is located inside the chassis 1, and the upper part passes through the channel through the top surface of the chassis 1; the third material feeding device 8 is located inside the chassis 1 and is located behind the two storage devices 7. After the fixture is fed to the left first cooling device 3 by the feeding device 2, the conveying mechanism 32 of the left first cooling device 3 moves the fixture forward to the position of the front positioning plate 33. The left transport device 6 transports the fixture to the left storage device 7. The left storage device 7 moves the fixture downward into the machine box 1. Then, the third material feeding device 8 moves the fixture from the left storage device 7 to the right storage device 7, thereby storing the fixture in the machine box 1. When it is necessary to unload, the right transport device 6 takes out the fixture from the right storage device 7 and transports it to the right first cooling device 3. Finally, the second material feeding device 5 pushes the fixture to the right to unload it.

[0063] like Figure 9-10As shown, the conveying device 6 includes a conveying support plate 61, a conveying front and rear slide cylinder 62, a conveying lifting slide cylinder 63, a conveying connecting plate 64, a conveying finger cylinder 65, and a conveying clamp 66. The conveying support plate 61 is vertically arranged, with its lower rear side connected to the inner front side of the housing 1, and its upper part extending upward beyond the top surface of the housing 1. The conveying front and rear slide cylinder 62 is horizontally arranged on the top surface of the conveying support plate 61. The conveying lifting slide cylinder 63 is vertically arranged on the rear side of the slide of the conveying front and rear slide cylinder 62. The conveying connecting plate 64 is horizontally arranged on the bottom surface of the slide of the conveying lifting slide cylinder 63, with its two ends extending to the left and right. There are two conveying finger cylinders 65, respectively located on the left and right sides of the bottom surface of the conveying connecting plate 64, with their fingers pointing downwards. There are two conveying clamps 66 corresponding to each conveying finger cylinder 65, respectively located on the fingers of each conveying finger cylinder 65. When the fixture is conveyed forward to the positioning plate 33 via the conveying mechanism 32 of the first cooling device 3 on the left, the transport front and rear slide cylinder 62 is activated, driving the transport lifting slide cylinder 63 and the transport finger cylinder 65 to move forward, so that the transport finger cylinder 65 moves above the fixture. Then, the slide of the transport lifting slide cylinder 63 moves downward, driving the transport finger cylinder 65 to descend. After it reaches its position, the transport finger cylinder 65 is activated, causing its two fingers to move relative to each other, so that the transport clamp 66 clamps the fixture. After that, the transport lifting slide cylinder 63 and the transport front and rear slide cylinder 62 are reset, so that the loading finger cylinder 208 and the fixture move above the storage device 7. The slide of the transport lifting slide cylinder 63 moves downward, driving the transport finger cylinder 65 to descend. Finally, the fingers of the transport finger cylinder 65 open, transporting the fixture into the left storage device 7.

[0064] like Figure 11-12As shown, the storage device 7 includes a storage mechanism 71 and a storage transmission mechanism 72. The storage mechanism 71 includes a storage mounting plate 711, a storage drive shaft 712, a storage driven shaft 713, a drive sprocket 714, a driven sprocket 715, a chain 716, a support member 717, and a storage member 718. The storage mounting plate 711 is vertically arranged, with two plates spaced apart on the left and right. The rear sides of the two storage mounting plates 711 are fixedly connected to the front side of the inner casing 1, and the upper part passes through the top surface of the casing 1 through a channel. The storage drive shaft 712 is rotatably mounted on the lower part of the opposite side of the two storage mounting plates 711 through a bearing, and one end of it passes through the side of the storage mounting plate 711. The storage driven shaft 713 is located on the left side of the storage mounting plate 711. The right-hand horizontal rotating part is located on the upper part of the opposite side of the two material storage mounting plates 711; the driving sprocket 714 is fixedly sleeved on the material storage driving shaft 712, and two are arranged at intervals on the left and right; the driven sprocket 715 is fixedly sleeved on the material storage driven shaft 713, and two are arranged at intervals on the left and right; there are two chains 716, which are respectively wound around the corresponding driving sprocket 714 and driven sprocket 715; the support member 717 is horizontally arranged between the two chains 716, and multiple are arranged at intervals along the chains 716; the storage member 718 is horizontally fixed on the support member 717; the material storage transmission mechanism 72 is located on the bottom surface of the inner casing 1 and is connected to the transmission material storage driving shaft 712. The transport device 6 transports the fixture to the storage component 718 of the left storage device 7. The storage transmission mechanism 72 drives the storage drive shaft 712 to rotate, causing the chain 716 to move downward, which in turn moves the storage component 718 downward, thus completing the storage of one fixture. Afterward, the transport device 6 continuously transports the fixture to the left storage device, so that multiple fixtures are placed into the left storage device 7 for storage.

[0065] like Figure 11 As shown, in a further embodiment, the material storage transmission mechanism 72 includes a material storage drive pulley 721, a material storage driven pulley 722, a material storage motor 723, and a material storage synchronous belt 724; the material storage drive pulley 721 is fixedly sleeved on one end of the material storage drive shaft 712 that passes through the material storage mounting plate 711; the material storage motor 723 is located on the bottom surface inside the housing 1; the material storage driven pulley 722 is fixedly sleeved on the output shaft of the material storage motor 723 and is connected to the material storage drive pulley 721 through the material storage synchronous belt 724.

[0066] like Figure 13As shown, the third feeding device 8 includes a third feeding support 81, a third feeding moving module 82, a third fixed base 83, and a third actuating component 84; the third feeding support 81 is vertically connected to the bottom surface of the inner casing 1 and is located behind the storage device 7; the third feeding moving module 82 is horizontally arranged on the top surface of the third feeding support 81; the third fixed base 83 is connected to the front side of the third feeding moving module 82; and the third actuating component 84 is connected to the front side of the third fixed base 83. When the jig stored in the left storage device 7 moves to the corresponding position of the third feeding device 8 via the chain 716, the third feeding device 8 is activated. The third feeding moving module 82 drives the third actuating member 84 to move to the right, so that the third actuating member 84 contacts the left end of the jig and pushes the jig to the right, so that the jig moves to the storage member 718 below the right storage device 7. Then the chain 716 of the right storage device 7 moves upward, moving the jig upward. In this way, both storage devices 7 are filled.

[0067] like Figure 13 As shown, it also includes a third cooling device 9; the third cooling device 9 includes a mounting platform 91 and a third fan 92; two mounting platforms 91 are spaced apart on the left and right, their lower parts are connected to the rear side of the third material feeding moving module 82, and their upper parts extend upwards, with multiple openings on the mounting platforms 91; the third fan 92 is located in the openings of the mounting platform 91. The third cooling device 9 cools the products located in the storage device 7.

[0068] Each device in this invention is connected to a PLC control system, which controls the start and stop of each device.

[0069] The working principle of this embodiment is as follows:

[0070] This embodiment is for situations where the equipment in the next process malfunctions and cannot operate normally. In this case, the drying equipment stops feeding materials, but the products already in the drying equipment continue to be discharged normally.

[0071] After the feeding device 2 feeds the jig from the drying equipment into the left first cooling device 3, the belt conveyor 322 of the left first cooling device 3 moves the jig forward to the position of the front positioning plate 33. The transport front and rear slide cylinder 62 is activated, driving the transport lifting slide cylinder 63 and the transport finger cylinder 65 to move forward, so that the transport finger cylinder 65 moves above the jig. Then the slide of the transport lifting slide cylinder 63 moves downward, driving the transport finger cylinder 65 to descend. After it is in position, the transport finger cylinder 65 is activated, so that its two fingers move relative to each other, thereby causing the transport clamp 66 to clamp the jig. After that, the transport lifting slide cylinder 63 and the transport front and rear slide cylinder 62 are reset, so that the feeding finger cylinder 208 and the jig move above the storage device 7. The slide of the transport lifting slide cylinder 63 moves downward, driving the transport finger cylinder 65 to descend. Finally, the fingers of the transport finger cylinder 65 open, transporting the jig to the storage part 718 of the left storage device 7.

[0072] After the first fixture is placed into the storage container 718, the storage transmission mechanism 72 drives the storage drive shaft 712 to rotate, causing the chain 716 to move downwards, which in turn moves the storage container 718 downwards. Simultaneously, the vacated storage container 718 moves to the receiving position, ready for the storage of the next fixture. As the left-side conveying device 6 continuously transports fixtures onto the storage container 718, the first stored fixture moves downwards via the chain 716. When it reaches the corresponding position of the third feeding device 8, the third feeding device 8 is activated. The third feeding moving module 82 drives the third feeding member 84 to move to the right, pushing the fixture to the right and moving it into the storage container 718 below the right-side storage device 7. Subsequently, the chain 716 of the right-side storage device 7 moves upwards, moving the fixture upwards. In this manner, all fixtures discharged from the drying equipment are stored. During fixture storage, the second cooling device 9 cools the products.

[0073] Once the equipment for the next process is operational, the right-side conveying device 6 removes the products from the right-side storage device 7 and transfers them to the right-side cooling device. Then, the second feeding device 5 is activated, pushing out the jigs for unloading. As the jigs in the right-side storage device 7 are removed, the third feeding device 8 also sends the jigs from the left-side storage device 7 into the right-side storage device 7, thereby removing all the jigs from both storage devices 7 for unloading.

[0074] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A cooling storage machine, comprising a chassis, a feeding device, a first cooling device, a first feeding device, and a second feeding device, characterized in that: The chassis is vertically arranged; the feeding device and the first feeding device are located on the rear side of the top surface of the chassis; the first cooling device is located on the top surface of the chassis, with two devices spaced apart on the left and right, located in front of the feeding device. The first cooling device includes a conveying mechanism and an air-cooling mechanism; the air-cooling mechanism is located on the top surface of the chassis; the conveying mechanism is located on the top surface of the air-cooling mechanism; and the second feeding device is located on the right side of the first cooling device.

2. The cooling storage machine according to claim 1, characterized in that: The feeding device includes a feeding support, a feeding moving module, a base, a feeding lifting cylinder, a mounting base, a connecting base, a feeding connecting plate, a feeding finger cylinder, and a feeding clamp; the feeding support is vertically arranged; the feeding moving module is horizontally arranged left and right, and its rear side is fixedly connected to the upper part of the front side of the feeding support; the base has an L-shaped structure, with its vertical rear side connected to the feeding moving module, and its horizontal side located on the upper part of the front side of the vertical side; the feeding lifting cylinder is vertically arranged on the top surface of the horizontal side of the base, and its piston rod passes downward through the top surface of the base; the mounting base... The base has an L-shaped structure, with its vertical rear side slidably connected to the vertical front side of the base, and its horizontal side located below the vertical front side. The top surface of the mounting base is fixedly connected to the piston rod of the loading lifting cylinder. The connecting seat is located on the bottom surface of the horizontal side of the mounting base. The loading connecting plate is horizontally located at the bottom of the connecting seat, with its two ends extending to the left and right. There are two loading finger cylinders, located on the left and right sides of the bottom surface of the loading connecting plate, with their fingers pointing downwards. There are two loading clamps corresponding to each loading finger cylinder, located on the fingers of each loading finger cylinder.

3. A cooling storage machine according to claim 2, characterized in that: The first cooling device includes an air-cooling mechanism, a conveying mechanism, and positioning plates. The air-cooling mechanism includes support legs, a platform, and a first fan. The support legs are vertically arranged on the top surface of the chassis, and four are rectangularly distributed. The platform is horizontally arranged on the top surface of the support legs, and multiple openings are provided on the top surface of the platform. The first fan is located within the openings of the platform. The conveying mechanism includes support plates, belt conveyors, and a conveyor transmission assembly. There are two support plates, spaced apart on the top surface of the platform. There are two belt conveyors, horizontally arranged on opposite sides of the two support plates. The conveyor transmission assembly is connected to the conveyor belts. The positioning plates are horizontally arranged on the left and right sides, and two are spaced apart on the front and back. The bottom surfaces of the two positioning plates are connected to the top surfaces of the two support plates on their respective left and right sides.

4. A cooling storage machine according to claim 3, characterized in that: The first feeding device includes a first feeding support, a first feeding moving module, a first fixed base, and a first actuating component; the first feeding support is vertically arranged on the right side of the feeding support, and two are spaced apart on the left and right; the first feeding moving module is horizontally arranged on the left and right, and its rear side is connected to the upper part of the front side of the two first feeding supports; the first fixed base is connected to the front side of the first feeding moving module; the first actuating component is connected to the front side of the first fixed base.

5. A cooling storage machine according to claim 4, characterized in that: The second material feeding device includes a second material feeding support, a second material feeding moving module, a second fixed base, and a second actuating component. The second material feeding support is vertically arranged, with two supports spaced apart on the left and right sides. The lower part of the opposite side of the two material feeding supports is connected to the support plate of the first cooling device on the right side. The second material feeding moving module is horizontally arranged, with its rear side connected to the upper part of the front side of the two second material feeding supports. The second fixed base is connected to the front side of the second material feeding moving module. The second actuating component is connected to the front side of the second fixed base.

6. A cooling storage machine according to claim 1, characterized in that: It also includes a conveying device, a storage device, and a third material feeding device; the conveying device is located on the top surface of the chassis and in front of the two first cooling devices respectively; two storage devices are arranged on the left and right at intervals, and the storage devices are located between the first cooling devices and the conveying device; the top surface of the chassis has a through channel corresponding to the storage device, the lower part of the storage device is located inside the chassis, and the upper part passes through the channel through the top surface of the chassis. The third feeding device is located inside the machine casing, behind the two storage devices.

7. A cooling storage machine according to claim 6, characterized in that: The transport device includes a transport support plate, a transport front and rear slide cylinder, a transport lifting slide cylinder, a transport connecting plate, a transport finger cylinder, and a transport clamp. The transport support plate is vertically arranged, with its lower rear side connected to the front side of the machine housing and its upper part extending upwards out of the top surface of the machine housing. The transport front and rear slide cylinders are horizontally arranged on the top surface of the transport support plate. The transport lifting slide cylinder is vertically arranged on the rear side of the slide of the transport front and rear slide cylinders. The transport connecting plate is horizontally arranged on the bottom surface of the slide of the transport lifting slide cylinder, with its two ends extending to the left and right. There are two transport finger cylinders, respectively located on the left and right sides of the bottom surface of the transport connecting plate, with their fingers pointing downwards. There are two transport clamps corresponding to each transport finger cylinder, respectively located on the fingers of each transport finger cylinder.

8. A cooling storage machine according to claim 7, characterized in that: The storage device includes a storage mechanism and a storage transmission mechanism. The storage mechanism includes a storage mounting plate, a storage drive shaft, a storage driven shaft, a drive sprocket, a driven sprocket, a chain, a support component, and a storage component. The storage mounting plates are vertically arranged, with two plates spaced apart on the left and right. The rear sides of the two storage mounting plates are fixedly connected to the front side of the machine housing, and their upper parts pass through a channel to the top surface of the machine housing. The storage drive shaft is rotatably mounted on the lower part of the opposite side of the two storage mounting plates via bearings, with one end passing through the side of the storage mounting plate. The storage driven shaft rotates horizontally left and right. The storage unit is mounted on the upper part of one side of the two storage mounting plates; the driving sprocket is fixedly sleeved on the storage driving shaft, and two are spaced apart on the left and right; the driven sprocket is fixedly sleeved on the storage driven shaft, and two are spaced apart on the left and right; there are two chains, which are respectively wound around the corresponding driving and driven sprockets; the support member is horizontally positioned between the two chains, and multiple are spaced apart along the chains; the storage unit is horizontally fixed on the support member; the storage transmission mechanism is located on the bottom surface of the machine housing and is connected to the transmission storage driving shaft.

9. A cooling storage machine according to claim 8, characterized in that: The third feeding device includes a third feeding support, a third feeding moving module, a third fixed base, and a third actuating component; the third feeding support is vertically connected to the bottom surface of the machine housing and located behind the storage device; the third feeding moving module is horizontally arranged on the top surface of the third feeding support; the third fixed base is connected to the front side of the third feeding moving module; and the third actuating component is connected to the front side of the third fixed base.

10. A cooling storage machine according to claim 9, characterized in that: It also includes a third cooling device; the third cooling device includes a mounting platform and a third fan; two mounting platforms are spaced apart on the left and right, the lower part of which is connected to the rear side of the third material feeding moving module, and the upper part extends upward, and multiple openings are opened on the mounting platform; the third fan is located in the opening of the mounting platform.