A capacitor automatic forming machine
By designing a capacitor automatic forming machine, the intelligentization and automation of the capacitor processing process are achieved, the problems of low capacitance processing efficiency and manpower dependence in the existing technology are solved, and the processing speed and consistency of the finished product are improved.
Patent Information
- Application Number
- CN202310186457.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-02
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2043-03-02
AI Technical Summary
The prior art lacks intelligent automated production forming machines that can fully integrate multiple capacitor processing stations, resulting in low capacitance processing efficiency and dependent on manpower operations.
A capacitor automatic forming machine is designed, including feeding, tensioning, separation, operation, load transfer and unloading components, so as to realize automatic separation of capacitors on material strips, foot trimming, unfolding, upturning and rewinding, etc., all of which are completed in the forming machine without manual intervention.
It has realized the integration and intelligence of capacitor processing processes, improved processing speed and finished product consistency, and improved processing efficiency and economic benefits.
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Figure CN116110726B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of capacitor processing, in particular to an automatic capacitor forming machine. Background Art
[0002] Two adjacent conductors, sandwiched between a non-conductive insulating medium, form a capacitor. When a voltage is applied between the two plates of a capacitor, it stores an electric charge. The capacitance of a capacitor is numerically equal to the ratio of the charge on one conductive plate to the voltage across the plates. The basic unit of capacitance is the farad (F). In circuit diagrams, the letter C is often used to represent a capacitor element. Capacitors play an important role in circuits such as tuning, bypassing, coupling, and filtering. They are used in the tuning circuit of transistor radios, as well as in the coupling and bypass circuits of color televisions.
[0003] During the production and processing of capacitors, it is necessary to separate the capacitors on the material strips, and then process and trim the two sets of legs, including unfolding, curling and rewinding. The current market lacks a production forming machine that can fully integrate multiple processing stations and intelligent automated operations without manual operation. Therefore, a capacitor automatic forming machine is proposed to achieve capacitor processing process integration and de-manual intelligent processing effects, thereby improving processing efficiency and economic benefits. Summary of the Invention
[0004] The object of the present invention is to provide a capacitor automatic forming machine to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: a capacitor automatic forming machine, comprising a device body, the device body comprising:
[0006] An operating table is provided on the external fixed surface, and the operating table is provided with:
[0007] A feeding assembly for feeding the material strips, wherein the feeding assembly is arranged on the operating table;
[0008] A tensioning assembly for tensioning the material strip, wherein the tensioning assembly is arranged on an operating table;
[0009] A separation component for separating the material strips and the capacitor, wherein the separation component is arranged on the operating table;
[0010] An operating component for processing a capacitor, wherein the operating component is arranged on an operating table;
[0011] A transfer assembly for pulling the material strips to move, the transfer assembly being arranged on an operating table; and
[0012] A blanking assembly is used for blanking the processed capacitors, and the blanking assembly is arranged on an operating table.
[0013] Furthermore, the feeding assembly includes a feeding base, which is arranged on the left rear side of the top of the operating table. A feeding motor is provided on one side of the top of the feeding base, and a feeding wheel is provided forward at the output end of the feeding motor, and the material strip is wound around the outside of the feeding wheel.
[0014] Furthermore, the tensioning assembly includes a tensioning support, which is arranged on the right side of the feeding base at the top of the operating table, and two groups of guide frames are symmetrically arranged downward and left and right at the top of the tensioning assembly, and a slider is slidably connected to the guide frame, and a spring is provided at the top of the slider, and the spring is sleeved on the outer side of the guide frame, and the top of the spring is fixedly connected to the top of the tensioning support, and the front end of the slider is rotatably connected to the tensioning wheel, and a fixed plate is provided at the middle position of the front end of the tensioning support, and the front end of the fixed plate is rotatably connected to the fixed wheel, and the material strip passes through the bottom end of the tensioning wheel and the top end of the fixed wheel respectively.
[0015] Furthermore, the separation assembly includes a separation seat, which is arranged on the rear side of the top of the operating table, and the separation seat is arranged on the right side of the tensioning support. A separation cylinder is provided at the top of the separation seat, and the output end of the separation cylinder is downward and black to separate the cutters on the left and right. A movable seat is provided in the middle position of the separation seat, and a movable supporting frame is provided at the top of the movable seat.
[0016] Furthermore, the operating component includes a fixed disk, an electric turntable is provided on the outside of the fixed disk, the electric turntable is arranged in the middle position of the top of the operating table, six groups of clamping components are evenly arranged on the electric turntable, and the six groups of clamping components correspond to six groups of operating stations respectively. Two groups of control components are provided on the rear side and right side of the top of the fixed disk, and the two groups of control components correspond to loading processing and unloading transmission respectively.
[0017] Furthermore, the clamping assembly includes a clamping base arranged on the electric turntable, a lower clamping plate is provided at the rear end of the clamping base, a connecting frame is provided at the middle position of the top end of the clamping base, a fixed shaft is provided on the connecting frame, an upper clamping plate is rotatably connected to the fixed shaft, a torsion spring is provided between the fixed shaft and the upper clamping plate, and two groups of left-right symmetrical hems are provided at the front end of the upper clamping plate, and a fixing rod is provided between the two groups of hems.
[0018] Furthermore, the control component includes a connecting seat arranged on the fixed plate, an open cylinder is provided at the top of the connecting seat, an open push rod is provided at the rear of the output end of the open cylinder, and an open push block corresponding to the fixed rod is provided at the rear end of the open push rod.
[0019] Furthermore, a cutting component and a processing component are respectively arranged counterclockwise on the outside of the operating component, the cutting component includes a cutting seat arranged on the operating table, a cutting feed slide is arranged on one side of the top of the cutting seat, a cutting cylinder is arranged forward at the output end of the cutting feed slide, and a cutting knife is cut downward at the output end of the cutting cylinder, a slide is arranged at the left end of the cutting seat, and the cutting component also includes a waste box arranged on the top of the operating table, and the waste box corresponds to the slide.
[0020] Furthermore, the processing component includes an unfolding component, which includes an unfolding seat arranged on the operating table, a unfolding feed cylinder is provided on the unfolding seat, an unfolding feed seat is provided to the left of the output end of the unfolding feed cylinder, an unfolding drive cylinder is provided on the unfolding feed seat, and an unfolding push plate is provided to the left of the output end of the unfolding drive cylinder. The processing component also includes a tilting component, which includes a tilting seat arranged on the operating table, a tilting feed cylinder is provided on the tilting seat, a tilting feed seat is provided to the left of the output end of the tilting feed cylinder, a tilting drive cylinder is provided on the tilting feed seat, and a tilting push plate is provided to the left of the output end of the tilting drive cylinder. The processing component also includes a rewinding component, which includes a rewinding seat arranged on the operating table, a rewinding feed cylinder is provided on the rewinding seat, a rewinding feed seat is provided to the left of the output end of the rewinding feed cylinder, a rewinding drive cylinder is provided on the rewinding feed seat, and a rewinding push plate is provided to the left of the output end of the rewinding drive cylinder.
[0021] Furthermore, the transfer assembly is arranged on the right side of the separation assembly, and a waste collection component is also provided on the right side of the transfer assembly. The input end of the blanking assembly corresponds to the control assembly on the blanking conveying station.
[0022] Compared with the prior art, the present invention has the following beneficial effects:
[0023] By setting up the main body of the equipment, the automatic separation of capacitors on the material strips, automatic trimming, unfolding, curling and rewinding of capacitor legs and other processing operations are realized. The entire process can be completed independently in the forming machine without the need for human intervention, with fast processing speed and high consistency of finished products. It realizes the integration of capacitor processing processes and the de-humanized intelligent processing effect, which can effectively improve processing efficiency and economic benefits. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings without inventive work. In all drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn according to the actual scale.
[0025] Figure 1 This is a schematic diagram of the overall appearance of the present invention;
[0026] Figure 2 This is a schematic structural diagram of the feeding assembly of the present invention;
[0027] Figure 3 This is a schematic structural diagram of the tensioning assembly of the present invention;
[0028] Figure 4 This is a schematic diagram of the separation component structure of the present invention;
[0029] Figure 5 This is a schematic diagram of the operating component structure of the present invention;
[0030] Figure 6 This is a schematic structural diagram of the clamping assembly and the control assembly of the present invention;
[0031] Figure 7 This is a schematic diagram of the cutting assembly structure of the present invention;
[0032] Figure 8 This is a schematic diagram of the component structure of the present invention;
[0033] Figure 9 This is a schematic diagram of the structure of the upturned component of the present invention;
[0034] Figure 10 It is a schematic structural diagram of the rewinding assembly of the present invention.
[0035] In the figure: 1. Equipment body; 2. Operation table; 3. Feeding assembly; 31. Feeding base; 32. Feeding motor; 33. Feeding wheel; 4. Tensioning assembly; 41. Tensioning support; 42. Guide frame; 43. Spring; 44. Slider; 45. Tensioning wheel; 46. Fixed plate; 47. Fixed wheel; 5. Separation assembly; 51. Separation seat; 52. Separation cylinder; 53. Separation cutter; 54. Moving seat; 55. Moving receiving frame; 6. Operating assembly; 61. Fixed plate; 62. Electric turntable; 63. Clamping assembly; 631. Clamping base; 632. Lower clamping plate; 633. Connecting frame; 6331. Fixed shaft; 6332. Torsion spring; 634. Upper clamping plate; 635. Bottom hem; 636. Fixed rod; 64. Control assembly; 641. Connecting seat; 64 2. Opening cylinder; 643. Opening push rod; 644. Opening push block; 7. Cutting assembly; 71. Cutting seat; 72. Cutting feed slide; 73. Cutting cylinder; 74. Cutting knife; 75. Slide; 76. Waste box; 8. Processing assembly; 81. Unfolding assembly; 811. Unfolding seat; 812. Unfolding feed cylinder; 813. Unfolding feed seat; 814. Unfolding drive cylinder; 815. Unfolding push plate; 82. Upward component; 821. Upward seat; 822. Upward feed cylinder; 823. Upward feed seat; 824. Upward drive cylinder; 825. Upward push plate; 83. Rewinding assembly; 831. Rewinding seat; 832. Rewinding feed cylinder; 833. Rewinding feed seat; 834. Rewinding drive cylinder; 835. Rewinding push plate; 9. Transfer assembly; 10. Unloading assembly. DETAILED DESCRIPTION
[0036] In the description of the present invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," "the other end," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0037] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "connected," etc., should be understood in a broad sense. For example, "connected" may refer to a fixed connection, a detachable connection, or an integral connection; it may refer to a mechanical connection or an electrical connection; it may refer to a direct connection or an indirect connection through an intermediate medium; it may refer to internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0039] See also Figure 1-10 The present invention provides a technical solution for an automatic capacitor forming machine: an automatic capacitor forming machine, comprising an equipment main body 1, the equipment main body 1 comprising: an operating table 2 arranged on an external fixed surface, the operating table 2 being provided with: a feeding assembly 3 for feeding a material strip, the feeding assembly 3 being arranged on the operating table 2; a tensioning assembly 4 for tensioning the material strip, the tensioning assembly 4 being arranged on the operating table 2; a separating assembly 5 for separating the material strip and the capacitor, the separating assembly 5 being arranged on the operating table 2; an operating assembly 6 for processing the capacitor, the operating assembly 6 being arranged on the operating table 2; a transferring assembly 9 for pulling the material strip to move, the transferring assembly 9 being arranged on the operating table 2; and a blanking assembly 10 for blanking the processed capacitor, the blanking assembly 10 being arranged on the operating table 2;
[0040] The feeding assembly 3 includes a feeding base 31, which is arranged on the left rear side of the top of the operating table 2. A feeding motor 32 is provided on one side of the top of the feeding base 31. A feeding wheel 33 is provided forward at the output end of the feeding motor 32. The material strip is wound around the outside of the feeding wheel 33. When processing, the feeding motor 32 drives the feeding wheel 33 to operate to achieve the feeding effect of the material strip.
[0041] The tensioning assembly 4 includes a tensioning support 41, which is arranged on the right side of the top feeding base 31 of the operating table 2. Two groups of guide frames 42 are symmetrically arranged downward at the top of the tensioning assembly 4, and a slider 44 is slidably connected to the guide frame 42. The top of the slider 44 is provided with a spring 43, which is sleeved on the outer side of the guide frame 42, and the top of the spring 43 is fixedly connected to the top of the tensioning support 41. The front end of the slider 44 is rotatably connected to the tensioning wheel 45, and a fixing plate 46 is provided at the middle position of the front end of the tensioning support 41. The front end of the fixing plate 46 is rotatably connected to the fixing wheel 47. The material strip passes through the bottom end of the tensioning wheel 45 and the top end of the fixing wheel 47 respectively. When in use, the slider 44 is subjected to the elastic force of the spring 43, and slides downward. During the sliding process, it drives the tensioning wheel 45 to move downward, presses the top end of the material strip downward, and cooperates with the fixed wheel 47 to tension it;
[0042] The separation assembly 5 includes a separation seat 51, which is arranged at the rear side of the top of the operating table 2 and the right side of the tensioning support 41. A separation cylinder 52 is provided at the top of the separation seat 51. The output end of the separation cylinder 52 is downwardly directed to the left and right separation cutters 53. A movable seat 54 is provided in the middle of the separation seat 51. A movable receiving frame 55 is provided at the top of the movable seat 54. When in use, the separation cylinder 52 drives the separation cutter 53 to move downward to cut and separate the capacitor from the material strip.
[0043] The operating component 6 includes a fixed disk 61, an electric turntable 62 is provided on the outside of the fixed disk 61, and the electric turntable 62 is provided at the top middle position of the operating table 2. Six groups of clamping components 63 are evenly provided on the electric turntable 62. The six groups of clamping components 63 correspond to six groups of operating stations respectively. Two groups of control components 64 are provided on the top rear side and the right side of the fixed disk 61. The two groups of control components 64 correspond to loading processing and unloading transmission respectively. The clamping component 63 includes a clamping base 631 provided on the electric turntable 62, a lower clamping plate 632 is provided at the rear end of the clamping base 631, and a connecting frame 63 is provided at the top middle position of the clamping base 631. 3. The connecting frame 633 is provided with a fixed shaft 6331, to which an upper clamping plate 634 is rotatably connected. A torsion spring 6332 is provided between the fixed shaft 6331 and the upper clamping plate 634. The front end of the upper clamping plate 634 is provided with two sets of symmetrical lower hems 635, and a fixed rod 636 is provided between the two sets of lower hems 635. The control assembly 64 includes a connecting seat 641 provided on the fixed plate 61. The top end of the connecting seat 641 is provided with an open cylinder 642. The output end of the open cylinder 642 is provided with an open push rod 643 at the rear. The rear end of the open push rod 643 is provided with an open push block 644 corresponding to the fixed rod 636.
[0044] After the separation assembly 5 separates the capacitor, the movable seat 54 drives the movable receiving frame 55 to move forward, moving the capacitor to the position corresponding to the clamping assembly 63. The opening cylinder 642 in the control assembly 64 operates to drive the opening push rod 643 to move backward, and the opening push block 644 pushes the fixed rod 636, so that the upper clamping plate 634 moves upward to open. After the capacitor is in place, the opening cylinder 642 drives the opening push block 644 to return to its original position. The torsion spring 6332 acts to drive the upper clamping plate 634 to return to its original position, and cooperates with the lower clamping plate 632 to press and fix the capacitor.
[0045] The outside of the operating component 6 is respectively provided with a cutting component 7 and a processing component 8 counterclockwise. The cutting component 7 includes a cutting seat 71 provided on the operating table 2. A cutting feed slide 72 is provided on the top side of the cutting seat 71. A cutting cylinder 73 is provided forward at the output end of the cutting feed slide 72. The output end of the cutting cylinder 73 cuts a cutting knife 74 downward. A slide 75 is provided at the left end of the cutting seat 71. The cutting component 7 also includes a waste box 76 provided on the top of the operating table 2. The waste box 76 corresponds to the slide 75. The capacitor rotates counterclockwise with the electric turntable 62 on the clamping component 63. After moving to the cutting component 7, the cutting feed slide 72 is operated to drive the cutting cylinder 73 into place. The cutting cylinder 73 drives the cutting knife 74 downward to cut off the excess leg part and slide it into the waste box 76 through the slide 75.
[0046] The processing assembly 8 includes an unfolding assembly 81, which includes an unfolding seat 811 provided on the operating table 2. An unfolding feed cylinder 812 is provided on the unfolding seat 811. An unfolding feed seat 813 is provided to the left of the output end of the unfolding feed cylinder 812. An unfolding drive cylinder 814 is provided on the unfolding feed seat 813. An unfolding push plate 815 is provided to the left of the output end of the unfolding drive cylinder 814. The capacitor rotates counterclockwise along with the electric turntable 62 on the clamping assembly 63. After moving to the unfolding assembly 81, the unfolding feed cylinder 812 drives the unfolding feed seat 813 to be in place, and then the unfolding drive cylinder 814 drives the unfolding push plate 815 to move, squeezing and unfolding the two sets of legs.
[0047] The processing assembly 8 also includes an upward tilting assembly 82, which includes an upward tilting seat 821 arranged on the operating table 2, an upward tilting feed cylinder 822 is arranged on the upward tilting seat 821, an upward tilting feed seat 823 is arranged on the output end of the upward tilting feed cylinder 822 to the left, an upward tilting drive cylinder 824 is arranged on the upward tilting feed seat 823, and an upward tilting push plate 825 is arranged on the output end of the upward tilting drive cylinder 824 to the left. The capacitor rotates counterclockwise following the electric turntable 62 on the clamping assembly 63. After moving to the upward tilting assembly 82, the upward tilting feed cylinder 822 drives the upward tilting feed seat 823 to be in place, and the upward tilting drive cylinder 824 drives the upward tilting push plate 825 to move, thereby propping up a set of inner legs;
[0048] The processing assembly 8 also includes a rewinding assembly 83, which includes a rewinding seat 831 arranged on the operating table 2, a rewinding feed cylinder 832 provided on the rewinding seat 831, a rewinding feed seat 833 provided to the left of the output end of the rewinding feed cylinder 832, a rewinding drive cylinder 834 provided on the rewinding feed seat 833, and a rewinding push plate 835 provided to the left of the output end of the rewinding drive cylinder 834. The capacitor rotates counterclockwise along with the electric turntable 62 on the clamping assembly 63, and after moving to the rewinding assembly 83, the rewinding feed cylinder 832 drives the rewinding feed seat 833 to be in place, and then the rewinding drive cylinder 834 drives the rewinding push plate 835 to move, squeezing the two sets of legs to rewind;
[0049] The transfer component 9 is arranged on the right side of the separation component 5. A waste collection component is also provided on the right side of the transfer component 9. The material strip separated from the capacitor is pulled by the transfer component 9 to continue to move to the right and is recovered by the waste collection component. The input end of the unloading component 10 corresponds to the control component 64 on the unloading and conveying station. The capacitor after rewinding continues to rotate counterclockwise on the clamping component 63 following the electric turntable 62. After moving to correspond to another group of control components 64, the opening cylinder 642 in the control component 64 is operated to drive the opening push rod 643 to move backward, and the opening push block 644 pushes the fixed rod 636, so that the upper clamping plate 634 moves upward to open, and the unloading component 10 captures the capacitor and then uses the conveyor belt to transport it to complete the entire processing flow.
[0050] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A capacitor automatic forming machine, comprising a device body (1), characterized in that: The device body (1) comprises: An operating table (2) is provided on the external fixed surface, and the operating table (2) is provided with: A feeding assembly (3) for feeding material strips, wherein the feeding assembly (3) is arranged on the operating table (2); A tensioning assembly (4) for tensioning the material strip, wherein the tensioning assembly (4) is arranged on the operating table (2); A separation component (5) for separating the material strip and the capacitor, wherein the separation component (5) is arranged on the operating table (2); An operating component (6) for processing a capacitor, wherein the operating component (6) is arranged on an operating table (2); a transfer assembly (9) for pulling the material strips to move, wherein the transfer assembly (9) is arranged on the operating table (2); and A blanking assembly (10) for blanking the processed capacitor, wherein the blanking assembly (10) is arranged on the operating table (2); The separation component (5) includes a separation seat (51), the separation seat (51) is arranged at the rear side of the top of the operating table (2), the separation seat (51) is arranged on the right side of the tensioning support (41), the top of the separation seat (51) is provided with a separation cylinder (52), the output end of the separation cylinder (52) is downwardly black and has a left and right separation cutter (53), the middle position of the separation seat (51) is provided with a movable seat (54), the top of the movable seat (54) is provided with a movable receiving frame (55), the operating component (6) includes a fixed disk (61), the outer side of the fixed disk (61) is provided with an electric turntable (62), the electric turntable (62) is arranged at the middle position of the top of the operating table (2), six groups of clamping components (63) are evenly arranged on the electric turntable (62), and the six groups of clamping components (63) correspond to six groups of operating stations respectively. Two groups of control components (64) are provided on the rear side and right side of the top of the fixed disk (61), and the two groups of control components (64) correspond to loading processing and unloading transmission respectively. The clamping component (63) includes a clamping base (631) provided on the electric turntable (62), and a lower clamping plate (632) is provided at the rear end of the clamping base (631). A connecting frame (633) is provided at the middle position of the top of the clamping base (631), and a fixed shaft (6331) is provided on the connecting frame (633), and an upper clamping plate (634) is rotatably connected to the fixed shaft (6331). A torsion spring (6332) is provided between the fixed shaft (6331) and the upper clamping plate (634), and two groups of left-right symmetrical lower hems (635) are provided at the front end of the upper clamping plate (634), and a fixing rod (636) is provided between the two groups of lower hems (635).
2. The capacitor automatic forming machine according to claim 1, characterized in that: The feeding assembly (3) comprises a feeding base (31), the feeding base (31) being arranged at the left rear side of the top end of the operating table (2), a feeding motor (32) being arranged on one side of the top end of the feeding base (31), a feeding wheel (33) being arranged forward of the output end of the feeding motor (32), and the material strip being wound around the outside of the feeding wheel (33).
3. The capacitor automatic forming machine according to claim 2, characterized in that: The tensioning assembly (4) includes a tensioning support (41), which is arranged on the right side of the top feeding base (31) of the operating table (2), and two groups of guide frames (42) are symmetrically arranged downward from the top of the tensioning assembly (4), and a slider (44) is slidably connected to the guide frame (42). The top of the slider (44) is provided with a spring (43), and the spring (43) is sleeved on the outside of the guide frame (42). The top of the spring (43) is fixedly connected to the top of the tensioning support (41), and the front end of the slider (44) is rotatably connected to the tensioning wheel (45). A fixed plate (46) is provided at the middle position of the front end of the tensioning support (41), and the front end of the fixed plate (46) is rotatably connected to the fixed wheel (47), and the material strip passes through the bottom end of the tensioning wheel (45) and the top end of the fixed wheel (47) respectively.
4. The capacitor automatic forming machine according to claim 1, characterized in that: The control assembly (64) includes a connecting seat (641) arranged on the fixed plate (61), an opening cylinder (642) is provided at the top end of the connecting seat (641), an opening push rod (643) is provided at the rear end of the output end of the opening cylinder (642), and an opening push block (644) corresponding to the fixed rod (636) is provided at the rear end of the opening push rod (643).
5. The capacitor automatic forming machine according to claim 4, characterized in that: The outer side of the operating component (6) is provided with a cutting component (7) and a processing component (8) in a counterclockwise direction. The cutting component (7) includes a cutting seat (71) provided on the operating table (2). A cutting feed slide (72) is provided on one side of the top of the cutting seat (71). A cutting cylinder (73) is provided forward at the output end of the cutting feed slide (72). A cutting knife (74) is provided downward at the output end of the cutting cylinder (73). A slideway (75) is provided at the left end of the cutting seat (71). The cutting component (7) also includes a waste box (76) provided on the top of the operating table (2). The waste box (76) corresponds to the slideway (75).
6. The capacitor automatic forming machine according to claim 5, characterized in that: The processing assembly (8) includes an expansion assembly (81), the expansion assembly (81) includes an expansion seat (811) arranged on the operating table (2), an expansion feed cylinder (812) is arranged on the expansion seat (811), an expansion feed seat (813) is arranged to the left of the output end of the expansion feed cylinder (812), an expansion drive cylinder (814) is arranged on the expansion feed seat (813), and an expansion push plate (815) is arranged to the left of the output end of the expansion drive cylinder (814), the processing assembly (8) also includes an upward tilting assembly (82), the upward tilting assembly (82) includes an upward tilting seat (821) arranged on the operating table (2), an upward tilting feed cylinder (822) is arranged on the upward tilting seat (821), and the upward tilting feed cylinder (822) is arranged on the upward tilting feed seat (821). An upward feed seat (823) is provided on the output end of the cylinder (822) to the left, an upward drive cylinder (824) is provided on the upward feed seat (823), and an upward push plate (825) is provided on the output end of the upward drive cylinder (824) to the left. The processing component (8) also includes a rewinding component (83), and the rewinding component (83) includes a rewinding seat (831) provided on the operating table (2), a rewinding feed cylinder (832) is provided on the rewinding seat (831), and a rewinding feed cylinder (832) is provided on the output end of the rewinding feed cylinder (832) to the left, a rewinding feed seat (833) is provided on the rewinding feed seat (833), and a rewinding drive cylinder (834) is provided on the output end of the rewinding drive cylinder (834) to the left.
7. The capacitor automatic forming machine according to claim 6, characterized in that: The transfer assembly (9) is arranged on the right side of the separation assembly (5), and a waste collection component is also arranged on the right side of the transfer assembly (9). The input end of the blanking assembly (10) corresponds to the control assembly (64) on the blanking and conveying station.
Citation Information
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