Aluminum shell carrying device
By designing an aluminum shell handling device, automatic loading, unloading, and forming of aluminum shells were achieved, solving the problems of low processing efficiency and safety hazards, improving the processing efficiency and safety of aluminum shells, and making it suitable for mass production.
Patent Information
- Application Number
- CN202423301445.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing technologies for forming aluminum shells have low efficiency, large precision errors, and the debris and dust generated during cutting can cause harm to workers.
An aluminum shell handling device was designed, including a conveyor plate mechanism, a feeding track, a discharging track, and a feeding mechanism, to realize automatic loading and unloading and forming of aluminum shells. The aluminum shells are transported by the conveyor plate, the feeding track, and the discharging track, and pushed by the feeding mechanism.
It improves the processing efficiency of aluminum shells, realizes automated production of aluminum shells, reduces manual operation, avoids injury to personnel from slag and dust, and is suitable for mass production.
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Figure CN223722024U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to aluminum shell processing technical field relates to a kind of aluminum shell handling device. BACKGROUND
[0002] Capacitor plays an important role in tuning, bypass, coupling, filtering and other circuits. With the rapid development of electronic information technology, the replacement speed of digital electronic products is getting faster and faster. The production and sales of consumer electronics products, mainly flat-panel televisions, notebook computers, digital cameras and other products, have continued to grow, driving the growth of the capacitor industry. After the aluminum shell is punched, it needs to be cut to meet the size requirements. In the prior art, workers usually perform forming processing by frequently feeding and discharging, which has low processing efficiency, large precision error, and the debris and dust generated during cutting can cause harm to workers. SUMMARY
[0003] The technical problem to be solved by the utility model is to provide an aluminum shell handling device that realizes automatic feeding and discharging and forming processing of aluminum shells, improves work efficiency and is conducive to mass production of aluminum shells.
[0004] To solve the above technical problems, the utility model adopts the following technical scheme:
[0005] An aluminum shell handling device includes:
[0006] A chuck mechanism includes a bracket, a conveying chuck is arranged on the bracket, a conveying groove matched with the aluminum shell is arranged on the conveying chuck, a chuck cover is arranged on the conveying chuck, and the conveying chuck is used to drive the aluminum shell in the conveying groove to transmit along the chuck cover.
[0007] An upper feeding track is connected to the feeding end of the conveying chuck, and the upper feeding track is arranged obliquely on the feeding end of the conveying chuck. The upper feeding track is used to transmit the aluminum shell to the conveying groove of the conveying chuck.
[0008] A lower discharging track is connected to the discharging end of the conveying chuck, and the lower discharging track is used to discharge and transmit the aluminum shell on the conveying chuck.
[0009] An upper feeding mechanism is arranged opposite to the chuck mechanism, a pushing opening is arranged on the chuck cover, the pushing opening is arranged opposite to the conveying groove, and the upper feeding mechanism is used to push the aluminum shell located in the pushing opening.
[0010] In an embodiment of the utility model, the upper feeding mechanism includes drive frame, be provided with slide rail on the drive frame, the slide rail is equipped with the upper feeding frame on the slide, be provided with the pusher on the upper feeding frame, the pusher with pusher mouth opposite setting, the upper feeding frame with upper feeding cylinder drive connection, the upper feeding cylinder drives the pusher on the upper feeding frame to push the aluminum shell on the conveying disc and carry out the pusher processing.
[0011] In an embodiment of the utility model, the upper feeding frame includes upper feeding plate, be provided with bearing seat on the upper feeding plate, the pusher is worn on the bearing seat, the pusher rotates on the bearing seat.
[0012] In an embodiment of the utility model, the free end of the pusher is provided with a pusher block, the diameter of the pusher block is less than or equal to the diameter of the pusher mouth, and the pusher block is made of rubber material.
[0013] In an embodiment of the utility model, the upper feeding track includes track frame, the both sides of the track frame are provided with guide plates, the two guide plates form a conveying channel, a pressing baffle is arranged above the conveying channel, and a discharging component is formed in the track frame.
[0014] In an embodiment of the utility model, the discharging component includes a discharging plate, a discharging opening is arranged on the track frame, one end of the discharging plate is hinged to the edge of the discharging opening, a discharging pipe is arranged on the track frame, the discharging pipe is arranged opposite to the discharging plate, and the discharging plate is used to discharge the aluminum shell on the upper feeding track through the discharging opening.
[0015] In an embodiment of the utility model, the bottom of the track frame is provided with a hinge seat, the hinge seat is hinged to a cylinder seat, a discharging cylinder is arranged on the cylinder seat, the piston rod end of the discharging cylinder is hinged to the discharging plate, and the discharging cylinder drives the discharging plate to move opposite to the discharging opening to open and close the discharging opening.
[0016] In an embodiment of the utility model, the lower feeding track includes a bottom plate, a fixed plate and a movable plate are arranged on the both sides of the bottom plate respectively, the fixed plate and the movable plate form a transmission channel for transmitting the aluminum shell, the movable plate is in an L-shaped structure, a waist-shaped groove is arranged on the movable plate, and the movable plate is connected with the bottom plate through screws.
[0017] In an embodiment of the utility model, a guide component is arranged above the transmission channel, the guide component includes a guide frame, the guide frame is arranged on the fixed plate, an upper pressing plate is arranged on the guide frame, an adjusting groove is arranged on the upper pressing plate, the adjusting groove is connected with the guide frame through bolts, an upper guide plate is arranged on the upper pressing plate, and the upper guide plate is arranged opposite to the transmission channel.
[0018] In one embodiment of the utility model, bottom plate below be provided with fixed seat and support rod, be provided with hinged hole on fixed seat, be provided with bolt on hinged hole, support rod with fixed seat pass through bolt connection.
[0019] The utility model discloses the beneficial effects of:
[0020] The feeding track of the utility model conveys the aluminum shell to the conveying groove of the conveying chuck, and the conveying chuck is used to drive the aluminum shell in the conveying groove to be conveyed to the pushing opening along the chuck cover, the feeding mechanism pushes the aluminum shell at the pushing opening after processing, and the discharging track discharges and conveys the processed aluminum shell, realizes the automatic feeding and discharging of the aluminum shell, forming processing, improves work efficiency, and is favorable for mass production of aluminum shell. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is an aluminum shell carrying device schematic view of the utility model.
[0022] Figure 2 It is a feeding mechanism schematic view of the utility model.
[0023] Figure 3 It is a discharging track schematic view of the utility model.
[0024] Figure 4 It is a feeding track schematic view of the utility model.
[0025] Mark number explanation in drawing: 2, discharging track;21, bottom plate;22, fixed plate;23, moving plate;24, transmission channel;25, waist type groove;26, guide frame;27, upper pressing plate;28, adjusting groove;29, upper guide plate;3, support;31, chuck cover;32, conveying chuck;33, conveying groove;34, pushing opening;4, feeding mechanism;41, drive frame;42, slide rail;43, feeding plate;44, bearing seat;45, pushing rod;46, pushing block;5, feeding track;51, track frame;52, guide plate;53, pressing baffle;6, discharging component;61, discharging plate;62, discharging pipe;63, hinged seat;64, discharging cylinder;65, discharging opening;7, fixed seat;71, support rod. DETAILED DESCRIPTION
[0026] The utility model is further described below in combination with the drawings and specific embodiment, so that the person skilled in the art can better understand the utility model and can be implemented, but the embodiment is not as the limitation of the utility model.
[0027] Referring to Figures 1-4 As shown in the figure, an aluminum shell carrying device comprises:
[0028] The utility model discloses a flower disc mechanism, including support 3, the conveyance flower disc 32 is set up on the support 3, the conveyance groove 33 that is set up with the aluminium shell is matched is arranged on the conveyance flower disc 32, the flower disc cover 31 is covered on the conveyance flower disc 32, and the conveyance flower disc 32 is used to drive the aluminium shell in the conveyance groove 33 along the conveyance of flower disc cover 31 is transmitted,
[0029] The upper feeding track 5 is arranged on the upper feeding end of the conveyance flower disc 32 in an inclined mode, and is used to transmit the aluminium shell to the conveyance groove 33 of the conveyance flower disc 32.
[0030] The lower feeding track 2 is connected with the lower feeding end of the conveyance flower disc 32, and is used to feed the aluminium shell on the conveyance flower disc 32.
[0031] The upper feeding mechanism 4 is arranged opposite to the flower disc mechanism, the push opening 34 is arranged on the flower disc cover 31, the push opening 34 is arranged opposite to the conveyance groove 33, and the upper feeding mechanism 4 is used to push the aluminium shell at the push opening 34.
[0032] The upper feeding track 5 of the utility model transmits the aluminium shell to the conveyance groove 33 of the conveyance flower disc 32, the conveyance flower disc 32 is used to drive the aluminium shell in the conveyance groove 33 along the conveyance of flower disc cover 31 to the push opening 34, the upper feeding mechanism 4 pushes the aluminium shell at the push opening 34 after forming processing, and the lower feeding track 2 feeds the processed aluminium shell, realizes the automatic feeding and discharging of the aluminium shell, improves work efficiency, and is favorable for mass production of the aluminium shell.
[0033] In an embodiment of the utility model, the upper feeding mechanism 4 includes the drive frame 41, the slide rail 42 is arranged on the drive frame 41, the feeding frame is slid on the slide rail 42, the push rod 45 is arranged on the feeding frame, the push rod 45 is arranged opposite to the push opening 34, the feeding frame is driven and is connected with the upper feeding cylinder, and the upper feeding cylinder drives the push rod 45 on the feeding frame to push the aluminium shell on the conveyance flower disc 32.
[0034] Specifically, the upper feeding cylinder drives the push rod 45 on the feeding frame to push the aluminium shell at the push opening 34 to form processing, can process and form the aluminium shell on line, and the processing efficiency is high.
[0035] In an embodiment of the utility model, the feeding frame includes the upper feeding plate 43, the bearing seat 44 is arranged on the upper feeding plate 43, the push rod 45 is arranged on the bearing seat 44, the push rod 45 rotates on the bearing seat 44, the push rod 45 can rotate on the bearing seat 44, the rotation of the aluminium shell in the forming process is facilitated, and the scratch on the bottom of the aluminium shell is avoided.
[0036] In one embodiment of the utility model, the free end of the pushing rod 45 is provided with a pushing block 46, the diameter of the pushing block 46 is less than or equal to the diameter of the pushing port 34, and the pushing block 46 is made of rubber material.
[0037] In one embodiment of the utility model, the feeding track 5 comprises a track frame 51, both sides of the track frame 51 are provided with guide plates 52, the two guide plates 52 form a conveying channel, a pressing baffle 53 is arranged above the conveying channel, and a discharging component 6 is arranged on the track frame 51.
[0038] Specifically, the feeding track 5 is connected with the upstream aluminum shell forming equipment, the conveying channel formed by the two guide plates 52 is used to output the aluminum shell, and the aluminum shell is transmitted to the conveying groove 33 of the conveying chuck 32; when the feeding track 5 accumulates too many aluminum shells, the discharging component 6 can temporarily store the discharged aluminum shells, so that the upstream and downstream aluminum shells do not accumulate and affect normal production.
[0039] In one embodiment of the utility model, the discharging component 6 comprises a discharging plate 61, a discharging opening 65 is arranged on the track frame 51, one end of the discharging plate 61 is hingedly connected with the edge of the discharging opening 65, a discharging pipe 62 is arranged on the track frame 51, the discharging pipe 62 is arranged opposite to the discharging plate 61, and the discharging plate 61 is used to discharge the aluminum shells on the feeding track 5 through the discharging opening 65, so that the aluminum shells are prevented from mixing or accumulating on the feeding track 5, and the feeding smoothness is ensured.
[0040] In one embodiment of the utility model, the bottom of the track frame 51 is provided with a hinged seat 63, the hinged seat 63 is hingedly connected with a cylinder seat, a discharging cylinder 64 is arranged on the cylinder seat, the piston rod end of the discharging cylinder 64 is hingedly connected with the discharging plate 61, the discharging cylinder 64 drives the discharging plate 61 to move relative to the discharging opening 65 to open and close the discharging opening 65, the discharging cylinder 64 is used to discharge the unqualified or excessive aluminum shells by opening and closing the discharging opening 65, so that the aluminum shells are prevented from mixing or accumulating on the feeding track 5, and the feeding smoothness is ensured.
[0041] In one embodiment of the utility model, the discharging track 2 comprises a bottom plate 21, fixed plates 22 and movable plates 23 are arranged on both sides of the bottom plate 21 respectively, the fixed plates 22 and the movable plates 23 form a transmission channel 24 used for transmitting the aluminum shells, the movable plates 23 are in L-shaped structure, waist-shaped grooves 25 are arranged on the movable plates 23, and the movable plates 23 are connected with the bottom plate 21 through screws.
[0042] Specific, fixed plate 22 and moving plate 23 form transmission channel 24 for transmission of aluminum shell and blanking end conveying groove 33 are oppositely arranged, blanking track 2 is discharged to the aluminum shell on the conveying disc 32, the transmission efficiency is high, the moving plate 23 is provided with the waist type groove 25, the moving plate 23 is connected with the bottom plate 21 through screw, the distance of transmission channel 24 can be changed through the setting of waist type groove 25, so that it can be transmitted to various models of aluminum shell.
[0043] In an embodiment of the utility model, the transmission channel 24 is provided with a guide component, the guide component includes a guide frame 26, the guide frame 26 is arranged on the fixed plate 22, the guide frame 26 is provided with an upper pressing plate 27, the upper pressing plate 27 is provided with an adjusting groove 28, the adjusting groove 28 is connected with the guide frame 26 through bolt, the upper pressing plate 27 is provided with an upper guide plate 29, the upper guide plate 29 is oppositely arranged with the transmission channel 24.
[0044] Specific, the upper guide plate 29 is oppositely arranged with the transmission channel 24, the aluminum shell can be vertically limited through the upper guide plate 29, avoids the accumulation of aluminum shell to cause the aluminum shell to separate from blanking track 2, guarantees the stability of transmission, the upper pressing plate 27 is provided with adjusting groove 28, the adjusting groove 28 is connected with the guide frame 26 through bolt, can change the position of upper guide plate 29, is suitable for the transmission of aluminum shell of various specifications.
[0045] In an embodiment of the utility model, the bottom plate 21 is provided with a fixing seat 7 and a supporting rod 71 below, the fixing seat 7 is provided with a hinged hole, the hinged hole is provided with a bolt, the supporting rod 71 is connected with the fixing seat 7 through bolt.
[0046] Specific, the supporting rod 71 is connected with the fixing seat 7 through bolt, the relative position of supporting rod 71 and fixing seat 7 can be adjusted through loosening bolt, the position of blanking track 2 is quickly adjusted, the subsequent processing track is conveniently docked, and the aluminum shell can be quickly discharged, and the efficiency is high.
[0047] Use process
[0048] The feeding track 5 is connected with the upstream aluminum shell forming device, and the aluminum shell is output through the conveying channel formed by the two guide plates 52 and is transmitted to the conveying groove 33 of the conveying disc 32. The conveying disc 32 rotates to guide the aluminum shell in the conveying groove 33 at the feeding end to move along the inner side wall of the disc cover 31, so that the aluminum shell is rotated to the pushing opening 34. The feeding cylinder drives the pushing rod 45 on the feeding frame to push the aluminum shell at the pushing opening 34 out. After the aluminum shell is machined by cutting and end face forming, the conveying disc 32 continues to rotate to guide the aluminum shell in the conveying groove 33 at the pushing opening 34 to move along the inner side wall of the disc cover 31 to the discharging end. The fixed plate 22 and the moving plate 23 are arranged opposite to the conveying groove 33 at the discharging end to form a transmission channel 24 for transmitting the aluminum shell. The discharging track 2 discharges and transmits the aluminum shell on the conveying disc 32.
[0049] The above-described embodiments are only preferred embodiments for fully illustrating the present application, and the protection scope of the present application is not limited thereto. Any equivalent replacement or transformation of the present application made by those skilled in the art based on the present application is within the protection scope of the present application. The protection scope of the present application is subject to the claims.
Claims
1. An aluminum shell handling device, characterized in that, include: The flower plate mechanism includes a support, on which a conveying flower plate is rotated. The conveying flower plate is provided with a conveying groove that matches the aluminum shell. A flower plate cover is projected onto the conveying flower plate. The conveying flower plate is used to drive the aluminum shell in the conveying groove to be transported along the flower plate cover. The feeding track is connected to the feeding end of the conveying disc. The feeding track is inclined on the feeding end of the conveying disc and is used to transfer the aluminum shell to the conveying groove of the conveying disc. The feeding track is connected to the feeding end of the conveying disc, and the feeding track is used to feed and transport the aluminum shell on the conveying disc. The feeding mechanism is arranged opposite to the flower plate mechanism. The flower plate cover has a push port, which is arranged opposite to the conveying groove. The feeding mechanism is used to push the aluminum shell located at the push port for processing.
2. The aluminum shell handling device as described in claim 1, characterized in that, The feeding mechanism includes a drive frame, on which a slide rail is provided, and a feeding frame slides on the slide rail. A push rod is provided on the feeding frame, and the push rod is positioned opposite to the push port. The feeding frame is driven by a feeding cylinder, and the feeding cylinder drives the push rod on the feeding frame to push the aluminum shell on the conveyor disc for processing.
3. The aluminum shell handling device as described in claim 2, characterized in that, The feeding rack includes a feeding plate, on which a bearing seat is provided, and the push rod passes through the bearing seat and rotates on the bearing seat.
4. The aluminum shell handling device as described in claim 2, characterized in that, A pusher block is provided on the free end of the pusher rod. The diameter of the pusher block is less than or equal to the diameter of the pusher opening. The pusher block is made of rubber material.
5. The aluminum shell handling device as described in claim 1, characterized in that, The feeding track includes a track frame, with guide plates on both sides of the track frame forming a conveying channel. A pressing baffle is provided above the conveying channel, and a discharge component is provided on the track frame.
6. The aluminum shell handling device as described in claim 5, characterized in that, The discharge component includes a discharge plate, a discharge opening is provided on the track frame, one end of the discharge plate is hinged to the edge of the discharge opening, a discharge pipe is provided on the track frame, the discharge pipe is arranged opposite to the discharge plate, and the discharge plate is used to discharge the aluminum shell on the feeding track through the discharge opening.
7. The aluminum shell handling device as described in claim 6, characterized in that, The bottom of the track frame is provided with a hinge seat, which is hinged to a cylinder seat. A discharge cylinder is provided on the cylinder seat. The piston rod end of the discharge cylinder is hinged to the discharge plate. The discharge cylinder drives the discharge plate to move relative to the discharge opening to open and close the discharge opening.
8. The aluminum shell handling device as described in claim 1, characterized in that, The unloading track includes a base plate, on both sides of which are respectively provided a fixed plate and a movable plate. The fixed plate and the movable plate form a transmission channel for transporting aluminum shells. The movable plate has an L-shaped structure and is provided with a waist-shaped groove. The movable plate is connected to the base plate by screws.
9. The aluminum shell handling device as described in claim 8, characterized in that, A guide component is provided above the transmission channel. The guide component includes a guide frame, which is mounted on the fixed plate. An upper pressure plate is provided on the guide frame, and an adjustment groove is provided on the upper pressure plate. The adjustment groove is connected to the guide frame by bolts. An upper guide plate is provided on the upper pressure plate, and the upper guide plate is positioned opposite to the transmission channel.
10. The aluminum shell handling device as described in claim 8, characterized in that, A fixed base and a support rod are provided below the base plate. The fixed base is provided with a hinge hole and a bolt is provided in the hinge hole. The support rod is connected to the fixed base by bolts.