Mobile phone frame wave band forging heating equipment with automatic discharging function

By designing a mobile phone frame band forging heating equipment with automatic cutting function and uniform heating technology, the problems of workbench blockage and heating efficiency caused by excessive material tray in existing equipment are solved, and a more efficient heating and production process is achieved.

CN120170024AActive Publication Date: 2025-06-20JIANGSU LANGKE INTELLIGENT IND TECH CO LTD
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Patent Information

Application Number
CN202510548998.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-06-20
Estimated Expiration
2045-04-28

AI Technical Summary

Technical Problem

The existing mobile phone frame band forging heating equipment has problems of excessive staying during the conveying and unloading of the material tray, resulting in blockage of the workbench and reduced heating efficiency.

Method used

A mobile phone frame band forging heating device with automatic cutting function was designed. The intermittent push of the mobile phone frame is achieved through the tilt design of the cutting assembly and the gravity effect. Combined with the coordinated work of the driving assembly and the heating spiral tube, uniform heating and automatic transportation of the mobile phone frame is achieved.

Benefits of technology

Through automatic cutting function and uniform heating technology, the problems of workbench blockage and heating efficiency caused by excessive material tray staying are solved, and the heating efficiency and production efficiency of mobile phone frames are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of mobile phone frames, and discloses mobile phone frame wave band forging heating equipment with an automatic discharging function, which comprises a discharging assembly arranged at a top port of a shell and used for discharging a mobile phone frame, the discharging assembly is obliquely arranged along the port of the shell, and an arc-shaped plate is mounted on the top port of the shell; a gap for a mobile phone frame to pass through is reserved between the arc-shaped plate and the discharging assembly; through the arrangement of the discharging assembly, when freely sliding on the slope, the mobile phone frames can only slide to the end opening of the moving groove and need to be pushed by the arc-shaped block, so that the discharging speed and rhythm of the mobile phone frames are controlled, one-by-one ordered discharging is achieved, and the situation that in the discharging process, due to the fact that the mobile phone frames are too many, the mobile phone frames are damaged is avoided. And the working efficiency is influenced by long-time staying.
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Description

Technical Field

[0001] The present invention relates to the technical field of mobile phone frames, and specifically to a mobile phone frame wave forging heating device with an automatic blanking function. Background Technique

[0002] The mobile phone frame is an important part of the mobile phone design. It is located around the mobile phone screen and is closely connected to the body, playing a role in protecting the screen and providing a holding feel. In addition to protecting the screen and providing a holding feel, the mobile phone frame also has certain functionality. To improve the holding feel, during the production process of the mobile phone frame, a wave forging heating device can be used to produce and process the mobile phone frame.

[0003] Chinese Patent Application with the application number CN202410763448.2 discloses a mobile phone frame wave forging heating device, including a feeding machine, a heating furnace, and a transfer table after heating. The feeding machine includes a cabinet assembly. The top of the cabinet assembly is provided with a hood assembly. The top of the outer surface of the hood assembly is fixedly installed with a three-color lamp. One side of the outer surface of the hood assembly is fixedly installed with a touch screen. One side of the outer surface of the hood assembly and at the bottom of the touch screen is fixedly installed with a button board. Through the coordinated use of the feeding machine, the heating furnace, the transfer table after heating, the six-jaw robot, and the hydraulic press, the wave heating forging of the mobile phone frame can be realized. The entire forging process is smooth and safe, improving the heating forging efficiency of the mobile phone frame. And a bottom transfer assembly is arranged on the cabinet assembly to convey the trays. Workers only need to remove the empty trays and stack the full trays on other trays. The operation is simple, the requirements for workers are low, and it is more convenient to use; Although such a setting is simple to operate, has low requirements for workers, and is more convenient to use, this setting conveys the trays and stacks the full trays on other trays. In this way, it is necessary to successively pick up and transport the mobile phone frames on the trays and then heat them. In this case, the subsequent trays and the mobile phone frames on the trays need to wait and stay. When there are too many trays staying, it may cause blockage of the workbench and at the same time affect the heating efficiency of the mobile phone frames. Summary of the Invention

[0004] The purpose of the present invention is to provide a mobile phone frame wave forging heating device with an automatic blanking function to solve the problems raised in the above background technique.

[0005] To solve the above technical problems, the present invention is realized through the following technical solutions: The present invention is a mobile phone frame wave forging heating device with an automatic blanking function, including a support frame. The top of the support frame is installed with a housing, and the top of the support frame extends into the interior of the housing; A rack is installed at the top of the support frame. The rack is inside the housing and is inclined at the top of the support frame. The inner walls of the top and bottom of the housing are parallel to the rack respectively. A blanking component for blanking the mobile phone frame is arranged at the top port of the housing. The blanking component is inclined along the port of the housing. An arc plate is installed at the top port of the housing. There is a gap for the mobile phone frame to pass through between the arc plate and the blanking component. Two guide rails are installed on the inner wall of the housing. One end of the two guide rails is arc-shaped and is on both sides inside the housing respectively. A driving component for conveying the mobile phone frame is arranged between the two guide rails. Two storage components for placing the mobile phone frame are installed on the driving component. A gear is connected between the two storage components and meshes with the rack. Universal joints are arranged between the two ends of the storage component and the gear and the driving component respectively. Two mounting frames are installed on the inner wall of the housing. The two mounting frames are at the top and bottom of the housing respectively. A number of heating spiral tubes are installed on the mounting frames. The number of heating spiral tubes is evenly distributed along the moving path of the mobile phone frame. A collection box for collecting the mobile phone frame is arranged at the bottom of the support frame.

[0006] The purpose of the above settings is that the mobile phone frame enters the inside of the storage component along the inclination of the housing port through the blanking component. The inclined design of the blanking component utilizes the gravity effect and cooperates with the blanking component to intermittently push the mobile phone frame, so that the mobile phone frame can smoothly slide into the inside of the storage component. The gap between the arc plate and the blanking component ensures that the mobile phone frames can pass through one by one. At the same time, the gap is small to reduce excessive heat loss inside the housing. By running the driving component, the storage component is driven to move along the guide rail. The storage component is used to place the mobile phone frame to ensure stability during the conveying process. The meshing effect of the gear and the rack enables the storage component to move smoothly on the inclined rack. The setting of the universal joint allows the storage component to adapt to different angle changes during the movement. When the mobile phone frame is conveyed to the heating area, the heating spiral tubes on the mounting frame start to work. The heating spiral tubes are evenly distributed along the moving path of the mobile phone frame, so that the mobile phone frame can be evenly heated. The heating spiral tubes adopt band heating technology and can heat the mobile phone frame to the required forging temperature in a short time. The heated mobile phone frame continues to be conveyed until it reaches the bottom of the housing. At the bottom of the support frame, a collection box is used to collect the mobile phone frames that have completed heating. The design of the collection box can accommodate multiple mobile phone frames. At the same time, during the storage process, the collection box is located at the bottom of the housing and is connected. Part of the heat inside the housing flows into the collection box, so that a certain heat preservation effect is achieved inside the collection box, preventing the mobile phone frame from cooling down too quickly when it is conveyed to the collection box, which may affect the quality of the mobile phone frame due to a rapid temperature drop.

[0007] Furthermore, the blanking component includes a carrier plate, which is installed on the outer wall of the port of the housing. A cylinder is installed at the bottom of the carrier plate, and a U-shaped frame is installed at the output end of the cylinder. At both ends of the top of the U-shaped frame, sliding grooves are respectively provided. At the bottom of the sliding grooves, movable blocks are slidably connected. Inside the sliding grooves, first springs for resetting the movable blocks are respectively installed. A connecting shaft is connected between the two movable blocks, and rollers are respectively installed at both ends of the connecting shaft. Arc-shaped convex blocks for cooperating with the rollers are respectively installed at both ends of the carrier plate.

[0008] The purpose of the above setting is that when the output end of the cylinder contracts and pulls the U-shaped frame, the rollers and the arc-shaped convex blocks are in a cooperating state, and the rollers move along the surface path of the arc-shaped convex blocks. During this process, the movable blocks slide in the sliding grooves and compress the first springs.

[0009] Furthermore, arc-shaped blocks are respectively installed on the outer wall of the connecting shaft, and two moving grooves are provided on the upper surface of the carrier plate. The arc-shaped blocks are located above the moving grooves.

[0010] The purpose of the above setting is that the arc-shaped blocks move above the moving grooves as the connecting shaft moves. Then, when the output end of the cylinder extends to push the U-shaped frame to move, the arc-shaped blocks move below the moving grooves as the connecting shaft moves. One end of the arc-shaped block is inclined downward, so as to push the inner wall of one end of the mobile phone frame. Cooperating with the inclined carrier plate, the inclination slope of the carrier plate is relatively small. When the mobile phone frame slides freely on this slope, it can only slide to the port of the moving groove and needs to be pushed by the arc-shaped block, so as to control the blanking speed and rhythm of the mobile phone frame, realize sequential blanking one by one, and thus avoid the problem that the work efficiency is affected due to too many mobile phone frames and long-term stay during the blanking process.

[0011] Furthermore, the driving component includes a motor and a screw rod. The motor is installed on the outer wall of the housing, the output shaft of the motor extends into the interior of the housing, the two ends of the screw rod are respectively rotatably connected to the two ends of the housing, and the output shaft of the motor is connected to one end of the screw rod.

[0012] The purpose of the above setting is that by starting the motor, the output shaft of the motor drives the screw rod to rotate. The screw rod passes through the moving frame and is threadedly connected to it. When the screw rod rotates, the moving frame will move along the axial direction of the screw rod.

[0013] Further, the driving component further includes wheels and a moving frame. The screw penetrates through the moving frame and is threadedly connected thereto. Connecting rods are respectively slidably connected to both ends of the moving frame, and two wheels are respectively rotatably connected to the bottoms of the connecting rods. The moving frame moves on the guide rail.

[0014] The purpose of the above setting is that the connecting rods are slidably connected to both ends of the moving frame, and the wheels rotatably connected to the bottoms of the connecting rods play an auxiliary supporting and guiding role during the movement.

[0015] Further, one end of a universal joint is rotatably connected to the wheel, and the storage component includes a storage rack. The other end of the universal joint is rotatably connected to the storage rack.

[0016] The purpose of the above setting is that the wheel is connected to the storage rack through the universal joint to transmit power to the storage component, enabling the storage component to move along the guide rail.

[0017] Further, one end of another universal joint is rotatably connected to the gear, and the other end of the universal joint is rotatably connected to the storage rack.

[0018] The purpose of the above setting is the meshing effect between the gear and the rack. During this process, when the storage component and the mobile phone frame can move along the guide rail, they can be continuously flipped, so that during the continuous flipping of the mobile phone frame, in cooperation with the heating spiral tubes distributed up and down inside the housing, the mobile phone frame can be evenly heated.

[0019] Further, a rotating plate is rotatably connected to one end port of the storage rack. The rotating plate inclines towards the inside of the storage rack. A stop strip is installed on the inner wall of the port of the storage rack to prevent the rotating plate from flipping outwards of the storage rack.

[0020] The purpose of the above setting is that the mobile phone frame is placed inside the storage rack by the arc-shaped block. The rotating plate inclines towards the inside of the storage rack, and the stop strip prevents the rotating plate from flipping outwards, so as to ensure that the mobile phone frame will not fall during the rotation along with the storage rack.

[0021] Further, through holes for the passage of heat flow are provided on the outer wall of the storage rack.

[0022] The purpose of the above setting is that the heat flow passes through the through holes provided on the outer wall of the storage rack, so that the heat can circulate from all directions of the storage rack, reducing the existing heating dead angles.

[0023] Further, a bottom plate is rotatably connected to the bottom of the storage rack. The bottom plate is also provided with a number of through holes for the passage of heat flow. A second spring is connected between one end of the bottom plate and the inner wall of the storage rack. When the storage component moves to the arc end of the guide rail, the storage component inclines, and the mobile phone frame moves to the end of the bottom plate close to the spring, pressing down the bottom plate to open it.

[0024] The purpose of the above settings is that the heat flow passes through the through holes provided on the outer wall of the storage rack and the bottom plate at the bottom, so that heat can circulate from all directions of the storage rack and the bottom plate, thereby further reducing the existing heating dead corners. When the storage component moves to the arc end of the guide rail, the storage component will tilt. At this time, due to the action of gravity and the pressure of the mobile phone frame, the setting of the universal joint allows the storage component to adapt to different tilt angle changes during the movement. One end of the bottom plate close to the second spring is pressed down and opened, and the bottom plate pulls the second spring. At this time, an opening is formed between the bottom plate and the storage rack, and the mobile phone frame can smoothly move into the interior of the collection box through this opening for collection.

[0025] The present invention has the following beneficial effects: (1) Through the setting of the blanking component in the present invention, when blanking is required, when the output end of the cylinder contracts and pulls the U-shaped frame, the roller and the arc-shaped convex block are in a matching state, and the roller moves along the surface path of the arc-shaped convex block. During this process, the movable block slides in the chute and compresses the first spring. The arc-shaped block moves above the moving groove as the connecting shaft moves, and then the output end of the cylinder extends to push the U-shaped frame to move. The arc-shaped block moves below the moving groove as the connecting shaft moves, and one end of the arc-shaped block inclines downward, thereby pushing the inner wall of one end of the mobile phone frame. Cooperating with the inclined carrier plate, the inclination slope of the carrier plate is small. When the mobile phone frame freely slides on this slope, it can only slide to the port of the moving groove and needs to be pushed by the arc-shaped block, thereby controlling the blanking speed and rhythm of the mobile phone frame, realizing sequential blanking one by one, and thus avoiding the problem that the work efficiency is affected due to too many mobile phone frames and long-term stay during the blanking process. Furthermore, it solves the problem that when there are too many stays on the material tray in the prior art, it may cause blockage of the workbench and at the same time affect the heating efficiency of the mobile phone frame.

[0026] Of course, it is not necessary for any product implementing the present invention to achieve all the above advantages simultaneously. Description of the Drawings

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for describing the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0028] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the blanking component of the present invention; Figure 3 It is a schematic diagram of the internal structure of the present invention Figure 1 ; Figure 4Schematic diagram of the storage component and gear of the present invention; Figure 5 Schematic diagram of the storage component of the present invention; Figure 6 Schematic diagram of the bottom of the storage component of the present invention; Figure 7 Schematic diagram of the internal structure of the present invention Figure 2 ; Figure 8 Schematic diagram of the driving component of the present invention; Figure 9 Schematic diagram of the rack and gear structure of the present invention.

[0029] In the attached drawings, the list of components represented by each reference numeral is as follows: In the figure: 1, support frame; 2, housing; 3, blanking component; 301, carrier plate; 302, cylinder; 303, U-shaped frame; 304, moving groove; 305, arc-shaped convex block; 306, first spring; 307, movable block; 308, connecting shaft; 309, roller; 310, arc-shaped block; 4, arc-shaped plate; 5, rack; 6, gear; 7, storage component; 701, storage rack; 702, rotating plate; 703, stop bar; 704, bottom plate; 705, second spring; 8, driving component; 801, wheel; 802, moving frame; 803, connecting rod; 804, motor; 805, screw; 9, mounting frame; 10, heating spiral tube; 11, collection box; 12, universal joint; 13, guide rail. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] The present invention is a mobile phone frame wave forging heating device with an automatic blanking function, as Figure 1 - Figure 9 shown, including a support frame 1, the top of the support frame 1 is installed with a housing 2, and the top of the support frame 1 extends into the interior of the housing 2; The top of the support frame 1 is installed with a rack 5, the rack 5 is inside the housing 2 and is inclined on the top of the support frame 1, and the top and bottom inner walls of the housing 2 are parallel to the rack 5 respectively; The top port of the housing 2 is provided with a blanking component 3 for blanking the mobile phone frame, and the blanking component 3 is inclined along the port of the housing 2; An arc-shaped plate 4 is installed on the top port of the housing 2, and there is a gap for the mobile phone frame to pass between the arc-shaped plate 4 and the blanking assembly 3; Two guide rails 13 are installed on the inner wall of the housing 2. One end of the two guide rails 13 is arc-shaped and is located on both sides inside the housing 2 respectively; A driving assembly 8 for conveying the mobile phone frame is arranged between the two guide rails 13. Two storage assemblies 7 for placing the mobile phone frame are installed on the driving assembly 8. A gear 6 is connected between the two storage assemblies 7, and the gear 6 meshes with a rack 5; Universal joints 12 are arranged between the two ends of the storage assembly 7 and the gear 6 and the driving assembly 8 respectively; Two mounting brackets 9 are installed on the inner wall of the housing 2. The two mounting brackets 9 are respectively at the top and bottom of the housing 2. The mounting brackets 9 are provided with a plurality of heating spiral tubes 10, and the plurality of heating spiral tubes 10 are evenly distributed along the moving path of the mobile phone frame; A collection box 11 for collecting the mobile phone frame is arranged at the bottom of the support frame 1.

[0032] In this embodiment, the purpose of the above settings is that the mobile phone frame enters the inside of the storage assembly 7 along the inclined setting of the port of the housing 2 through the blanking assembly 3. The inclined design of the blanking assembly 3 utilizes the gravity effect and cooperates with the blanking assembly 3 to intermittently push the mobile phone frame, so that the mobile phone frame can slide smoothly into the inside of the storage assembly 7. The gap between the arc-shaped plate 4 and the blanking assembly 3 ensures that the mobile phone frames can pass through one by one, and at the same time, this gap is relatively small to reduce excessive heat loss inside the housing 2; By operating the driving assembly 8, the storage assembly 7 is driven to move along the guide rail 13. The storage assembly 7 is used to place the mobile phone frame to ensure stability during the conveying process. The meshing effect of the gear 6 and the rack 5 enables the storage assembly 7 to move smoothly on the inclined rack 5. The setting of the universal joint 12 allows the storage assembly 7 to adapt to different angle changes during the movement process; When the mobile phone frame is conveyed to the heating area, the heating spiral tubes 10 on the mounting brackets 9 start to work. The heating spiral tubes 10 are evenly distributed along the moving path of the mobile phone frame, so that the mobile phone frame can be evenly heated. The heating spiral tubes 10 adopt band heating technology and can heat the mobile phone frame to the required forging temperature in a short time; The heated mobile phone frame is continuously conveyed until it reaches the bottom of the housing 2. At the bottom of the support frame 1, a collection box 11 is used to collect the mobile phone frames that have completed heating. The design of the collection box 11 can accommodate multiple mobile phone frames. At the same time, during the storage process, the collection box 11 is located at the bottom of the housing 2 and is connected. Part of the heat inside the housing 2 flows into the collection box 11, so that a certain heat preservation effect is achieved inside the collection box 11, preventing the mobile phone frame from cooling down too quickly when it is conveyed to the collection box 11, which may affect the quality of the mobile phone frame due to a rapid temperature drop.

[0033] As an implementation manner, as Figure 2 shown, further: The blanking component 3 includes a carrier plate 301, which is installed on the outer wall of the port of the housing 2. A cylinder 302 is installed at the bottom of the carrier plate 301. The output end of the cylinder 302 is installed with a U-shaped frame 303. At both ends of the top of the U-shaped frame 303, sliding grooves are respectively provided. The bottom of the sliding groove is slidably connected with a movable block 307. Inside the sliding groove, first springs 306 for resetting the movable block 307 are respectively installed. A connecting shaft 308 is connected between the two movable blocks 307. At both ends of the connecting shaft 308, rollers 309 are respectively installed. At both ends of the carrier plate 301, arc-shaped protrusions 305 for cooperating with the rollers 309 are respectively installed.

[0034] In this embodiment, the purpose of the above setting is that when the output end of the cylinder 302 contracts and pulls the U-shaped frame 303, the roller 309 and the arc-shaped protrusion 305 are in a cooperating state, and the roller 309 moves along the surface path of the arc-shaped protrusion 305. During this process, the movable block 307 slides in the sliding groove and compresses the first spring 306.

[0035] As an implementation manner, as Figure 2 shown, further: Arc-shaped blocks 310 are respectively installed on the outer wall of the connecting shaft 308. Two moving grooves 304 are provided on the upper surface of the carrier plate 301. The arc-shaped blocks 310 are located above the moving grooves 304.

[0036] In this embodiment, the purpose of the above setting is that as the connecting shaft 308 moves, the arc-shaped block 310 moves above the moving groove 304, and then the output end of the cylinder 302 extends to push the U-shaped frame 303 to move. As the connecting shaft 308 moves, the arc-shaped block 310 moves below the moving groove 304. One end of the arc-shaped block 310 is inclined downward, so as to push the inner wall of one end of the mobile phone frame. Cooperating with the inclined carrier plate 301, the inclined slope of the carrier plate 301 is small. When the mobile phone frame slides freely on this slope, it can only slide to the port of the moving groove 304 and needs to be pushed by the arc-shaped block 310, so as to control the feeding speed and rhythm of the mobile phone frame, realize sequential feeding one by one, and avoid the problem that the work efficiency is affected due to too many mobile phone frames and long-term stay during the feeding process.

[0037] As an implementation manner, as Figure 7 shown, furthermore: The driving component 8 includes a motor 804 and a screw 805. The motor 804 is installed on the outer wall of the housing 2. The output shaft of the motor 804 extends into the interior of the housing 2. The two ends of the screw 805 are respectively rotatably connected to the two ends of the housing 2, and the output shaft of the motor 804 is connected to one end of the screw 805.

[0038] In this embodiment, the purpose of the above setting is that by starting the motor 804, the output shaft of the motor 804 drives the screw 805 to rotate. The screw 805 passes through the moving frame 802 and is threadedly connected thereto. When the screw 805 rotates, the moving frame 802 will move along the axial direction of the screw 805.

[0039] As an implementation manner, as Figure 7 shown, furthermore: The driving component 8 further includes wheels 801 and a moving frame 802. The screw 805 passes through the moving frame 802 and is threadedly connected. The two ends of the moving frame 802 are respectively slidably connected with connecting rods 803, and the two wheels 801 are respectively rotatably connected to the bottoms of the connecting rods 803. The moving frame 802 moves on the guide rail 13.

[0040] In this embodiment, the purpose of the above setting is that the two ends of the moving frame 802 are slidably connected with the connecting rods 803, and the wheels 801 rotatably connected to the bottoms of the connecting rods 803 play a role of auxiliary support and guiding during the movement.

[0041] As an implementation manner, as Figure 4 shown, furthermore: One end of one of the universal joints 12 is rotatably connected to the wheel 801, and the storage component 7 includes a storage rack 701. The other end of the universal joint 12 is rotatably connected to the storage rack 701.

[0042] In this embodiment, the purpose of the above setting is that the wheel 801 is connected to the storage rack 701 through the universal joint 12 to transmit power to the storage component 7, enabling the storage component 7 to move along the guide rail 13.

[0043] As an implementation method, as Figure 4 shown, furthermore: One end of another universal joint 12 is rotatably connected to the gear 6, and the other end of the universal joint 12 is rotatably connected to the storage rack 701.

[0044] In this embodiment, the purpose of the above setting is the meshing effect between the gear 6 and the rack 5. During this process, when the storage component 7 and the mobile phone frame can move along the guide rail 13, they can be continuously flipped, so that during the continuous flipping of the mobile phone frame, in cooperation with the heating spiral tubes 10 distributed up and down inside the housing 2, the mobile phone frame can be evenly heated.

[0045] As an implementation method, as Figure 6 shown, furthermore: A rotating plate 702 is rotatably connected to one port of the storage rack 701. The rotating plate 702 inclines towards the inside of the storage rack 701. A stop strip 703 is installed on the inner wall of the port of the storage rack 701 to prevent the rotating plate 702 from flipping outwards of the storage rack 701.

[0046] In this embodiment, the purpose of the above setting is that the mobile phone frame is placed inside the storage rack 701 by the arc-shaped block 310. The rotating plate 702 inclines towards the inside of the storage rack 701, and the stop strip 703 prevents the rotating plate 702 from flipping outwards, so as to ensure that the mobile phone frame will not fall off during the rotation along with the storage rack 701.

[0047] As an implementation method, as Figure 5 shown, furthermore: Through holes for the passage of heat flow are provided on the outer wall of the storage rack 701.

[0048] In this embodiment, the purpose of the above setting is that the heat flow passes through the through holes provided on the outer wall of the storage rack 701, so that heat can circulate from all directions of the storage rack 701, reducing the existing heating dead angles.

[0049] As an implementation method, as Figure 6 shown, furthermore: The bottom of the storage rack 701 is rotatably connected to a bottom plate 704. The bottom plate 704 is also provided with a number of through holes for the passage of heat flow. A second spring 705 is connected between one end of the bottom plate 704 and the inner wall of the storage rack 701. When the storage component 7 moves to the arc end of the guide rail 13, the storage component 7 tilts, and the mobile phone frame moves to one end of the bottom plate 704 close to the spring 306, pressing down the bottom plate 704 to open it.

[0050] In this embodiment, the purpose of the above setting is that the heat flow passes through the through holes provided on the outer wall of the storage rack 701 and the bottom plate 704 at the bottom, so that heat can circulate from all directions of the storage rack 701 and the bottom plate 704, further reducing the existing heating dead corners. When the storage component 7 moves to the arc end of the guide rail 13, the storage component 7 will tilt. At this time, due to the action of gravity and the pressure of the mobile phone frame, the setting of the universal joint 12 allows the storage component 7 to adapt to different tilt angle changes during the movement. One end of the bottom plate 704 close to the second spring 705 is pressed down and opened, and the bottom plate 704 stretches the second spring 705. At this time, an opening is formed between the bottom plate 704 and the storage rack 701, and the mobile phone frame can smoothly move into the interior of the collection box 11 through this opening for collection.

[0051] During use, in the initial state, the U-shaped frame 303 is at the bottom position of the arc-shaped convex block 305 under the action of the cylinder 302. The first spring 306 makes the movable block 307 in the initial position, and the arc-shaped block 310 is in the initial position above the moving groove 304. When blanking is required, when the output end of the cylinder 302 contracts to pull the U-shaped frame 303, the roller 309 and the arc-shaped convex block 305 are in a matching state, and the roller 309 moves along the surface path of the arc-shaped convex block 305. During this process, the movable block 307 slides in the chute and compresses the first spring 306. The arc-shaped block 310 moves above the moving groove 304 as the connecting shaft 308 moves. Then the output end of the cylinder 302 extends to push the U-shaped frame 303 to move, and the arc-shaped block 310 moves below the moving groove 304 as the connecting shaft 308 moves. One end of the arc-shaped block 310 is inclined downward, so as to push the inner wall of one end of the mobile phone frame, cooperating with the inclined carrier plate 301. The inclination slope of the carrier plate 301 is small. When the mobile phone frame freely slides on this slope, it can only slide to the port of the moving groove 304 and needs to be pushed by the arc-shaped block 310, so as to control the blanking speed and rhythm of the mobile phone frame, realize sequential blanking one by one, and avoid the problem of affecting work efficiency due to too many mobile phone frames and long-term stay during the blanking process. By starting the motor 804, the output shaft of the motor 804 drives the screw 805 to rotate. The screw 805 passes through the moving frame 802 and is threadedly connected thereto. When the screw 805 rotates, the moving frame 802 moves along the axial direction of the screw 805. Both ends of the moving frame 802 are slidably connected to the connecting rod 803. The wheels 801 rotatably connected to the bottom of the connecting rod 803 play a role in auxiliary support and guiding during the movement. At the same time, the wheels 801 are connected to the storage rack 701 through the universal joint 12, transmitting power to the storage assembly 7, enabling the storage assembly 7 to move along the guide rail 13. At the same time, due to the meshing of the gear 6 and the rack 5, during this process, when the storage assembly 7 and the mobile phone frame can move along the guide rail 13, they can be continuously flipped, so that during the continuous flipping of the mobile phone frame, in cooperation with the heating spiral tubes 10 distributed up and down inside the housing 2, the mobile phone frame can be uniformly heated; The mobile phone frame is placed inside the storage rack 701 by the arc-shaped block 310. The rotating plate 702 inclines towards the inside of the storage rack 701, and the blocking strip 703 prevents the rotating plate 702 from flipping outwards, which can ensure that the mobile phone frame will not fall during the rotation along with the storage rack 701. The heat flow passes through the through holes provided on the outer wall of the storage rack 701 and the bottom plate 704, so that the heat can circulate from all directions of the storage rack 701 and the bottom plate 704, reducing the existing heating dead angles; When the storage assembly 7 moves to the arc end of the guide rail 13, the storage assembly 7 will incline. At this time, due to the action of gravity and the pressure of the mobile phone frame, the setting of the universal joint 12 allows the storage assembly 7 to adapt to different inclination angle changes during the movement. One end of the bottom plate 704 close to the second spring 705 is pressed down and opened, and the bottom plate 704 stretches the second spring 705. At this time, an opening is formed between the bottom plate 704 and the storage rack 701, and the mobile phone frame can smoothly move into the collection box 11 through this opening for collection.

[0052] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor limit the invention to only the specific implementation manners. Obviously, according to the content of this specification, many modifications and changes can be made. This specification selects and specifically describes these embodiments to better explain the principle and practical application of the present invention, so that those skilled in the relevant technical field can well understand and utilize the present invention. The present invention is only limited by the claims and their full scope and equivalents.

Claims

1. A mobile phone frame band forging and heating device with automatic material unloading function, comprising a support frame (1), characterized in that: A shell (2) is installed on the top of the support frame (1), and the top of the support frame (1) extends to the inside of the shell (2); A rack (5) is installed on the top of the support frame (1), the rack (5) is located inside the shell (2) and is tilted on the top of the support frame (1), and the top and bottom inner walls of the shell (2) are respectively parallel to the rack (5); A blanking assembly (3) for blanking a mobile phone frame is provided at the top port of the housing (2); the blanking assembly (3) is arranged obliquely along the port of the housing (2); An arc-shaped plate (4) is installed on the top port of the housing (2), and a gap is left between the arc-shaped plate (4) and the blanking assembly (3) for the mobile phone frame to pass through; Two guide rails (13) are installed on the inner wall of the shell (2), and one end of the two guide rails (13) is arranged in an arc shape, respectively on two sides of the inside of the shell (2); A driving assembly (8) for conveying the mobile phone frame is arranged between the two guide rails (13); two storage assemblies (7) for placing the mobile phone frame are installed on the driving assembly (8); a gear (6) is connected between the two storage assemblies (7); the gear (6) is meshed with the rack (5); Universal joints (12) are provided between the two ends of the storage assembly (7) and the gear (6) and the drive assembly (8); Two mounting frames (9) are mounted on the inner wall of the housing (2), the two mounting frames (9) being respectively located at the top and the bottom of the housing (2), the mounting frames (9) being mounted with a plurality of heating spiral tubes (10), the plurality of heating spiral tubes (10) being evenly distributed along the moving path of the mobile phone frame; A collection box (11) for collecting mobile phone frames is provided at the bottom of the support frame (1).

2. According to claim 1, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: The blanking assembly (3) comprises a carrier plate (301), the carrier plate (301) being mounted on the outer wall of the port of the housing (2), a cylinder (302) being mounted on the bottom of the carrier plate (301), a U-shaped frame (303) being mounted on the output end of the cylinder (302), a slide groove being arranged at both ends of the top of the U-shaped frame (303), a movable block (307) being slidably connected to the bottom of the slide groove, a first spring (306) being mounted inside the slide groove for resetting the movable block (307), a connecting shaft (308) being connected between the two movable blocks (307), rollers (309) being mounted at both ends of the connecting shaft (308), and arc-shaped protrusions (305) for cooperating with the rollers (309) being mounted at both ends of the carrier plate (301).

3. According to claim 2, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: Arc blocks (310) are respectively installed on the outer walls of the connecting shafts (308); two movable grooves (304) are provided on the upper surface of the carrier plate (301); and the arc blocks (310) are located above the movable grooves (304).

4. According to claim 3, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: The driving assembly (8) comprises a motor (804) and a screw (805); the motor (804) is mounted on the outer wall of the housing (2); an output shaft of the motor (804) extends into the interior of the housing (2); two ends of the screw (805) are rotatably connected to two ends of the housing (2) respectively; and the output shaft of the motor (804) is connected to one end of the screw (805).

5. According to claim 4, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: The driving assembly (8) further comprises a wheel (801) and a movable frame (802), the screw rod (805) passing through the movable frame (802) and being threadedly connected, the two ends of the movable frame (802) are respectively slidably connected to connecting rods (803), the two wheels (801) are respectively rotatably connected to the bottom of the connecting rod (803), and the movable frame (802) moves on the guide rail (13).

6. According to claim 5, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: One end of one of the universal joints (12) is rotatably connected to a wheel (801), and the storage assembly (7) comprises a storage rack (701), and the other end of the universal joint (12) is rotatably connected to the storage rack (701).

7. According to claim 6, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: One end of the other universal joint (12) is rotatably connected to the gear (6), and the other end of the universal joint (12) is rotatably connected to the storage rack (701).

8. According to claim 7, a mobile phone frame band forging and heating device with automatic blanking function is characterized in that: A rotating plate (702) is rotatably connected to one end of the storage rack (701), the rotating plate (702) being inclined toward the inside of the storage rack (701), and a blocking plate (703) is installed on the inner wall of the end of the storage rack (701) to prevent the rotating plate (702) from turning toward the outside of the storage rack (701).

9. The mobile phone frame band forging and heating device with automatic blanking function according to claim 8 is characterized in that: The outer wall of the storage rack (701) is provided with through holes for heat flow to pass through.

10. The mobile phone frame band forging and heating device with automatic blanking function according to claim 9 is characterized in that: The bottom of the storage rack (701) is rotatably connected to a bottom plate (704), and the bottom plate (704) is also provided with a plurality of through holes for heat flow to pass through. A second spring (705) is connected between one end of the bottom plate (704) and the inner wall of the storage rack (701), and is used for tilting the storage assembly (7) when the storage assembly (7) moves to the arc-shaped end of the guide rail (13), and the mobile phone frame moves to one end of the bottom plate (704) close to the spring (306), so as to press down and open the bottom plate (704).

Citation Information

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