Gear switch wire pressing and capping forming device
By designing a gear switch pressing and capping forming device, automated transfer and forming are achieved, solving the problem of low forming efficiency in the existing technology and improving the forming efficiency of gear switches.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-03-24
AI Technical Summary
The existing gear switch molding process requires frequent manual material transfer and manual intervention, resulting in low molding efficiency.
A gear switch pressing and capping forming device was designed, including a mounting frame, a first transfer mechanism, a second transfer mechanism, a first feeding mechanism, a second feeding mechanism, a pressing mechanism, and a capping mechanism, to achieve automated transfer and forming, reducing manual intervention.
The automated transfer mechanism and forming device improve the efficiency of wire pressing and capping of gear switches, reduce manual operation, and increase forming efficiency.
Smart Images

Figure CN224026953U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to gear switch forming equipment technical field especially relates to a gear switch line pressing cover mounting forming device. BACKGROUND
[0002] Gear switch is a kind of structure that is controlled by gear rotation, and the inner shell is provided with two groups of parallelly arranged wires, one group is in cut-off state, gear rotation can make two end points generated by cut-off conductive or disconnected, to realize control effect.
[0003] The traditional gear switch forming process includes cutting line, shaping, cover mounting and locking, each process has corresponding processing equipment, manual operation can cut the single side of double-row wire after cutting line machine, and then send to the shaping machine, so that the cut wire is in preset shape, then press the wire on the shell by pressing jig or manual pressing, finally lock the cover on the shell, the whole forming process needs frequent manual material transfer and manual intervention operation, which leads to low forming efficiency, and improvement is needed. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a kind of gear switch line pressing cover mounting forming device, to solve the technical problem that the whole forming process of gear switch in prior art needs frequent manual material transfer and manual intervention operation, which leads to low forming efficiency.
[0005] To achieve the above-mentioned purpose, the utility model embodiment provides a kind of gear switch line pressing cover mounting forming device, including mounting frame, first transfer mechanism, second transfer mechanism, first feeding mechanism, second feeding mechanism, line pressing mechanism and cover locking mechanism, the first transfer mechanism is arranged on the mounting frame and transfers the lower shell of gear switch;The second transfer mechanism is arranged on the mounting frame and located above the first transfer mechanism, and the second transfer mechanism is used to transfer double-row wire after single-side cutting and shaping;The first feeding mechanism is used to convey the lower shell of gear switch to the first transfer mechanism;The second feeding mechanism is used to convey the upper shell of gear switch to the first transfer mechanism;The line pressing mechanism is arranged on the second transfer mechanism and is used to press double-row wire on the lower shell of gear switch;The cover locking mechanism is arranged on the second feeding mechanism and is used to lock and install the upper shell of gear switch on the lower shell of gear switch with double-row wire.
[0006] Optionally, the mounting frame includes top plate and bottom plate, the first transfer mechanism, the first feeding mechanism and the second feeding mechanism are all arranged on the top plate, the second transfer mechanism is arranged on the bottom plate, and the transfer transport direction of the first transfer mechanism and the second transfer mechanism is parallelly arranged.
[0007] Optionally, the first transfer mechanism comprises a first guide rail, a first driving member and a first moving base. The first guide rail is laid on the bottom plate. The first driving member is arranged on the bottom plate. The first moving base is slidingly connected to the first guide rail. The output end of the first driving member is drivingly connected to the first moving base. The first moving base is provided with a first mounting groove for loading the gear switch lower cover.
[0008] Optionally, the second transfer mechanism comprises a second guide rail, a second driving member, a multi-station lifting wire clamp assembly and a second moving base. The second guide rail is laid on the top plate. The second driving member is fixedly arranged on the top plate. The second moving base is slidingly connected to the second guide rail. The output end of the second driving member is drivingly connected to the second moving base. The multi-station lifting wire clamp assembly is arranged on the second moving base. The output end of the multi-station lifting wire clamp assembly can be lifted and moved to clamp the double-row wires. The multi-station lifting wire clamp assembly can stepwise drive the double-row wires to move along the conveying direction of the first transfer mechanism in cooperation with the second driving member.
[0009] Optionally, the second feeding mechanism comprises a fourth driving member, a fourth moving base, a lifting assembly and a material taking unit. The fourth driving member is arranged on the top plate. The fourth moving base is slidingly connected to the second guide rail. The lifting assembly and the cover locking mechanism are arranged on the fourth moving base. The material taking unit is arranged on the output end of the lifting assembly. The material taking unit is provided with a clearance groove for avoiding the locking end of the cover locking mechanism.
[0010] Optionally, the multi-station lifting wire clamp assembly comprises a third driving member, a third moving base and wire clamp fingers. The third driving member is arranged on the second moving base. The third moving base is arranged on the output end of the third driving member. The moving direction of the output end of the third driving member is perpendicular to the second driving member. The number of the wire clamp fingers is multiple. All the wire clamp fingers are uniformly distributed along the length direction of the third moving base. The wire pressing mechanism is arranged on the third moving base.
[0011] Optionally, the number of the wire clamp fingers is six groups. The six groups of wire clamp fingers are symmetrically and uniformly distributed at both ends of the third moving base.
[0012] Optionally, the first feeding mechanism comprises a two-axis moving assembly and a first lower shell clamp finger. The two-axis moving assembly is arranged on the top plate. The first lower shell clamp finger is arranged on the output end of the two-axis moving assembly. The output end of the two-axis moving assembly can drive the first lower shell clamp finger to reciprocally move at the output end of the first transfer mechanism and the external lower shell material bin. The second transfer mechanism is provided with a clearance groove for avoiding the moving stroke of the first lower shell clamp finger.
[0013] Optionally, the wire pressing mechanism comprises a second lower shell clamp finger and a cutting and pressing assembly, the second lower shell clamp finger is arranged on the second transfer mechanism and is driven by the second transfer mechanism, the second lower shell clamp finger is capable of moving towards the first transfer mechanism and is used for clamping the lower shell of the gear switch, the cutting and pressing assembly is arranged at the clamping end of the second lower shell clamp finger, and the output end of the cutting and pressing assembly is capable of cutting the double-row wire at the single-edge cutting position and pressing the cut wire segment on the lower shell of the gear switch conveyed by the first transfer mechanism.
[0014] Optionally, the cutting and pressing assembly comprises a mounting seat, a pressing seat and a wire cutting head, the mounting seat is fixedly arranged at the output end of the second transfer mechanism and is located at the clamping end of the second lower shell clamp finger, the pressing seat is arranged at the end of the mounting seat, the wire cutting head is arranged on the pressing seat, the end of the wire cutting head is capable of extending out of the pressing seat, the mounting seat drives the pressing seat and the wire cutting head to move towards the first transfer mechanism under the driving of the second transfer mechanism, the wire cutting head contacts the double-row wire and cuts the double-row wire at the single-edge cutting position before the pressing seat, and the cut double-row wire is pressed on the lower shell of the gear switch at the preset position on the first transfer mechanism under the driving of the pressing seat.
[0015] The gear switch wire pressing and cover assembling forming device provided by the embodiment of the utility model has at least one of the following technical effects: the double-row wire cut and shaped by manual operation or an external feeding device is input to the second transfer mechanism, meanwhile, the first feeding mechanism conveys the lower shell to the first transfer mechanism; the first transfer mechanism and the second transfer mechanism cooperate to transport the double-row wire and the lower shell, so that the installation position of the double-row wire and the lower shell is aligned; the second transfer mechanism drives the wire pressing mechanism to move above the lower shell, and the wire pressing mechanism presses the double-row wire on the output end of the first transfer mechanism; the second transfer mechanism conveys the double-row wire with the lower shell to the second feeding mechanism, the second feeding mechanism conveys the upper shell to the lower shell, the locking mechanism locks the upper shell on the lower shell, and the second transfer mechanism discharges the gear switch after locking; compared with the prior art, the whole forming process of the gear switch needs frequent manual material transfer and manual intervention, which leads to low forming efficiency, the gear switch wire pressing and cover assembling forming device provided by the embodiment of the utility model cooperates with the first feeding mechanism and the second feeding mechanism to automatically convey the upper shell and the lower shell of the gear switch through the automatic transfer mechanism, meanwhile, the wire pressing mechanism and the locking mechanism arranged on the transfer mechanism automatically press the wire and form the cover, and the whole process does not need manual intervention, so that the wire pressing and cover assembling efficiency of the gear switch is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description only constitute some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor.
[0017] Figure 1 The structural schematic diagram of the gear switch pressing line cover mounting forming device provided by the embodiments of the present application is shown.
[0018] Figure 2 The structural schematic diagram of the gear switch pressing line cover mounting forming device provided by the embodiments of the present application is shown. Figure 1
[0019] Figure 3 The enlarged view of A in the structural schematic diagram of the gear switch pressing line cover mounting forming device provided by the embodiments of the present application is shown. Figure 2
[0020] Figure 4 The structural schematic diagram of the pressing line mechanism provided by the embodiments of the present application is shown.
[0021] In the drawings, various reference signs represent:
[0022] 100 - mounting frame 200 - first transfer mechanism 300 - second transfer mechanism
[0023] 400 - first feeding mechanism 500 - second feeding mechanism 600 - pressing line mechanism
[0024] 700 - cover locking mechanism 110 - top plate 120 - bottom plate
[0025] 210 - first guide rail 220 - first driving member 230 - first moving seat
[0026] 231 - first mounting groove 310 - second guide rail 320 - second driving member
[0027] 340 - second moving seat 330 - multi-station lifting wire clamp assembly 510 - fourth driving member
[0028] 520 - fourth moving seat 530 - lifting assembly 540 - material taking unit
[0029] 541 - accommodation groove 550 - locking seat 331 - third driving member
[0030] 332 - third moving seat 333 - wire clamp finger 410 - two-axis moving assembly
[0031] 420 - first lower shell clamp finger 610 - second lower shell clamp finger 620 - pressing and cutting assembly
[0032] 621 - mounting seat 622 - pressing seat 623 - wire separating cutter head. DETAILED DESCRIPTION
[0033] Embodiments of the present application will be described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The following embodiments will be described by referring to the drawings, which show Figures 1-4 The described embodiments are exemplary, and are intended to be illustrative of embodiments of the present application, and are not understood to be limiting of the present application.
[0034] In the description of the embodiments of the present application, it should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0035] In addition, the terms "first", "second", "third", etc. are used only for descriptive purposes and should not be construed as indicating or implying relative importance or implying the number of the technical features indicated. Therefore, the features defined with "first", "second", etc. can explicitly or implicitly include one or more of the features. In the description of the embodiments of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly specified and limited.
[0036] In the embodiments of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0037] In one embodiment of the present application, as Figures 1-4As shown, a gear switch wire pressing cover forming device is provided, comprising a mounting frame 100, a first transfer mechanism 200, a second transfer mechanism 300, a first feeding mechanism 400, a second feeding mechanism 500, a wire pressing mechanism 600 and a cover locking mechanism 700, the first transfer mechanism 200 is arranged on the mounting frame 100 and transfers the lower shell of the gear switch; the second transfer mechanism 300 is arranged on the mounting frame 100 and above the first transfer mechanism 200, and is used for transferring the double-row wire after single-side cutting and shaping; the first feeding mechanism 400 is used for conveying the lower shell of the gear switch to the first transfer mechanism 200; the second feeding mechanism 500 is used for conveying the upper shell of the gear switch to the first transfer mechanism 200; the wire pressing mechanism 600 is arranged on the second transfer mechanism 300 and is used for pressing the double-row wire on the lower shell of the gear switch; the cover locking mechanism 700 is arranged on the second feeding mechanism 500 and is used for locking the upper shell of the gear switch on the lower shell of the gear switch with the double-row wire pressed.
[0038] In the embodiment, the external shaping device conveys the double-row wire after single-side cutting and shaping to the input end of the second transfer mechanism 300, and the technical scheme and content of the external shaping device are prior art, which will not be described herein.
[0039] Specifically, the double-row wire after single-side cutting and shaping is input to the second transfer mechanism 300 by manual operation or an external feeding device, and at the same time, the first feeding mechanism 400 conveys the lower shell to the first transfer mechanism 200; the first transfer mechanism 200 and the second transfer mechanism 300 cooperate to transport the double-row wire and the lower shell, so that the double-row wire is aligned with the mounting position of the lower shell; the second transfer mechanism 300 drives the wire pressing mechanism 600 to move above the lower shell, and the wire pressing mechanism 600 presses the double-row wire on the lower shell at the output end of the first transfer mechanism 200; the second transfer mechanism 300 conveys the double-row wire with the lower shell pressed to the second feeding mechanism 500, the second feeding mechanism 500 conveys the upper shell to the lower shell, the cover locking mechanism 700 locks the upper shell on the lower shell, and the second transfer mechanism 300 discharges the gear switch after locking; compared with the prior art, the whole forming process of the gear switch needs frequent manual material transfer and manual intervention, which causes the technical problem of low forming efficiency, and the gear switch wire pressing cover forming device provided in the embodiment automatically conveys the upper shell and the lower shell of the gear switch by the automatic transfer mechanism cooperating with the first feeding mechanism 400 and the second feeding mechanism 500, at the same time, the wire pressing mechanism 600 and the cover locking mechanism 700 arranged on the transfer mechanism automatically press the wire and lock the cover to form, and the whole process does not need manual intervention, which effectively improves the wire pressing cover efficiency of the gear switch.
[0040] As Figures 1-4 shown, in another embodiment of the utility model, the installation frame 100 includes top plate 110 and bottom plate 120, first transfer mechanism 200, first feeding mechanism 400 and second feeding mechanism 500 are all arranged on top plate 110, second transfer mechanism 300 is arranged on bottom plate 120, and the transfer transport direction of first transfer mechanism 200 and second transfer mechanism 300 is parallelly arranged. Specifically, the transfer end moving path of first transfer mechanism 200 and second transfer mechanism 300 is at different heights, and second transfer mechanism 300 drives double-row wire step-by-step movement to adapt to the process position of first transfer mechanism 200, wire pressing mechanism 600 and cap locking mechanism 700.
[0041] As Figures 1-4 shown, in another embodiment of the utility model, first transfer mechanism 200 includes first guide rail 210, first driving part 220 and first moving seat 230, first guide rail 210 is laid on bottom plate 120, first driving part 220 is arranged on bottom plate 120, first moving seat 230 is slidably connected on first guide rail 210, the output end of first driving part 220 is drivingly connected with first moving seat 230, and first moving seat 230 is provided with first mounting groove 231 for loading gear switch lower cover. In this embodiment, first driving part 220 is air cylinder, and air cylinder structure is used to realize the accurate reciprocating movement of first moving seat 230 in preset stroke.
[0042] As Figures 1-4 shown, in another embodiment of the utility model, second transfer mechanism 300 includes second guide rail 310, second driving part 320, multi-station lifting wire clamp assembly 330 and second moving seat 340, second guide rail 310 is laid on top plate 110, second driving part 320 is fixedly arranged on top plate 110, second moving seat 340 is slidably connected on second guide rail 310, the output end of second driving part 320 is drivingly connected with second moving seat 340, multi-station lifting wire clamp assembly 330 is arranged on second moving seat 340, the output end of multi-station lifting wire clamp assembly 330 can be lifted and moved and clamp double-row wire, and multi-station lifting wire clamp assembly 330 can step-by-step drive double-row wire to move along the conveying direction of first transfer mechanism 200 in cooperation with second driving part 320. In this embodiment, second driving part 320 is air cylinder, the output end of multi-station lifting wire clamp assembly 330 can clamp double-row wire to lift and move, and two-axis movement is realized in cooperation with second driving part 320, so that second transfer mechanism 300 drives double-row wire step-by-step movement and conveniently takes and places in the movement process.
[0043] As Figures 1-4 shown in another embodiment of the utility model, the second feeding mechanism 500 includes fourth drive piece 510, fourth mobile seat 520, lifting assembly 530 and material taking unit 540, fourth drive piece 510 sets up on the top plate 110, fourth mobile seat 520 is connected in sliding on the second guide rail 310, lifting assembly 530 and lock cover mechanism 700 set up on fourth mobile seat 520, material taking unit 540 sets up in the output of lifting assembly 530, be provided with on material taking unit 540 the accommodation groove 541 for avoiding the lock end of lock cover mechanism 700, fourth drive piece 510 and lifting assembly 530 are all air cylinder, the electric screwdriver of lock cover mechanism 700, the output of lifting assembly 530 is provided with connecting plate, material taking unit 540 is vacuum suction plate, the accommodation groove 541 is shaped in the connecting plate. Among them, the second feeding mechanism still includes lock seat 550, lock seat 550 sets up in one side of first drive piece 220 and is fixedly installed on bottom plate 120, be provided with on lock seat 550 the accommodation groove for accommodating the lower shell of wire rod pressure equipment, second transfer mechanism drive the lower shell of wire rod pressure equipment is accommodated to the accommodation groove, fourth drive piece 510 drive material taking unit 540 that adsorbed upper shell moves to lock seat 550 top, lifting assembly 530 drive material taking unit 540 moves down, material taking unit 540 will upper shell aligning install on lower shell, lock cover mechanism will upper shell and lower shell lock fixed.
[0044] As Figures 1-4As shown in the utility model, in another embodiment of the utility model, the multi-station lifting wire clamp assembly 330 includes a third driving member 331, a third moving seat 332 and wire clamp fingers 333, the third driving member 331 is arranged on the second moving seat 340, the third moving seat 332 is arranged on the output end of the third driving member 331, the moving direction of the output end of the third driving member 331 is perpendicular to the second driving member 320, the number of wire clamp fingers 333 is multiple, all wire clamp fingers 333 are evenly spaced along the length direction of the third moving seat 332, and the wire pressing mechanism 600 is arranged on the third moving seat 332.In this embodiment, the number of wire clamp fingers 333 is six groups, and six groups of wire clamp fingers 333 are symmetrically and evenly distributed at both ends of the third moving seat 332, specifically, six groups of wire clamp fingers 333 are divided into three pairs of spaced distribution, wherein each pair of wire clamp fingers 333 is symmetrically arranged at both ends of the third moving seat 332, the length direction of double-row wires clamped by the same pair of two groups of wire clamp fingers 333 is always perpendicular to the moving direction of the second moving mechanism 300, the distance between adjacent two pairs of wire clamp fingers 333 is equal to the single moving distance of the moving end of the second moving mechanism 300, the wire pressing mechanism 600 is located between the two groups of wire clamp fingers 333 in the middle position, and the wire clamp fingers 333 are pneumatic clamp fingers.
[0045] As Figures 1-4 As shown in the utility model, in another embodiment of the utility model, the first feeding mechanism 400 includes a two-axis moving assembly 410 and a first lower shell clamp finger 420, the two-axis moving assembly 410 is arranged on the top plate 110, the first lower shell clamp finger 420 is arranged on the output end of the two-axis moving assembly 410, the output end of the two-axis moving assembly 410 can drive the first lower shell clamp finger 420 to reciprocate at the external lower shell stock bin and the output end of the first moving mechanism 200, and the second moving mechanism 300 is provided with an emptying groove for avoiding the moving stroke of the first lower shell clamp finger 420. The two-axis moving assembly 410 is a two-axis mechanical hand, and the first lower shell clamp finger 420 is a pneumatic clamp finger.
[0046] In another embodiment of the utility model, the wire pressing mechanism 600 includes a second lower shell clamping finger 610 and a cutting assembly 620, the second lower shell clamping finger 610 is arranged on the second transfer mechanism 300 and is driven by the second transfer mechanism 300, the second lower shell clamping finger 610 can move towards the first transfer mechanism 200 and is used for clamping the lower shell of the gear switch, the cutting assembly 620 is arranged at the clamping end of the second lower shell clamping finger 610, the output end of the cutting assembly 620 can cut the single side cutting position of the double-row wire and press the cut wire segment on the gear switch lower shell conveyed by the first transfer mechanism 200. When the double-row wire is aligned with the lower shell, the wire pressing mechanism 600 is driven by the second transfer mechanism 300 to move towards the lower shell, and the clamping end of the second lower shell clamping finger 610 is fixed with the two end side walls of the lower shell to prevent the lower shell from being excessively deformed to cause product defects.
[0047] As Figures 1-4 shown, in another embodiment of the utility model, the cutting assembly 620 includes a mounting seat 621, a pressing seat 622 and a wire separating cutter head 623, the mounting seat 621 is fixedly arranged at the output end of the second transfer mechanism 300 and located at the clamping end of the second lower shell clamping finger 610, the pressing seat 622 is arranged at the end of the mounting seat 621, the wire separating cutter head 623 is arranged on the pressing seat 622, the end of the wire separating cutter head 623 can extend out of the pressing seat 622, the mounting seat 621 drives the pressing seat 622 and the wire separating cutter head 623 to move towards the first transfer mechanism 200 under the drive of the second transfer mechanism 300, the wire separating cutter head 623 contacts the double-row wire before the pressing seat 622 and cuts the single side cutting part of the double-row wire, and the cut double-row wire is pressed and mounted on the gear switch lower shell preset position on the first transfer mechanism 200 under the drive of the pressing seat 622, and the wire separating cutter head 623 arranged on the pressing seat 622 facilitates wire separation and pressing in the preset groove of the lower shell.
[0048] The above only is the preferred embodiment of the utility model, and does not use to limit the utility model, and any modification, equivalent replacement and improvement etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A gear switch wire pressing and cap forming device, characterized in that, include: Mounting framework; A first transfer mechanism is disposed on the mounting frame and transfers the lower housing of the gear switch; The second transfer mechanism is disposed on the mounting frame and located above the first transfer mechanism. The second transfer mechanism is used to transfer the double-row wires after single-sided cutting and shaping. The first feeding mechanism is used to transport the lower housing of the gear switch to the first transfer mechanism; The second feeding mechanism is used to transport the upper shell of the gear switch to the first transfer mechanism; A wire pressing mechanism is disposed on the second transfer mechanism and is used to press the double-row wires onto the lower housing of the gear switch; A locking mechanism is provided on the second feeding mechanism and is used to lock the upper shell of the gear switch onto the lower shell of the gear switch, which is press-fitted with double rows of wires.
2. The gear switch wire pressing and cap forming device according to claim 1, characterized in that: The mounting frame includes a top plate and a bottom plate. The first transfer mechanism, the first feeding mechanism, and the second feeding mechanism are all mounted on the top plate, and the second transfer mechanism is mounted on the bottom plate. The transfer and transportation directions of the first transfer mechanism and the second transfer mechanism are parallel.
3. The gear switch wire pressing and cap forming device according to claim 2, characterized in that: The first transfer mechanism includes a first guide rail, a first drive member, and a first movable seat. The first guide rail is laid on the base plate, the first drive member is disposed on the base plate, the first movable seat is slidably connected to the first guide rail, the output end of the first drive member is drivenly connected to the first movable seat, and the first movable seat is provided with a first mounting groove for loading the gear switch lower cover.
4. The gear switch wire pressing and cap forming device according to claim 2, characterized in that: The second transfer mechanism includes a second guide rail, a second driving component, a multi-station lifting wire clamp assembly, and a second movable seat. The second guide rail is laid on the top plate, the second driving component is fixedly mounted on the top plate, and the second movable seat is slidably connected to the second guide rail. The output end of the second driving component is drivenly connected to the second movable seat. The multi-station lifting wire clamp assembly is mounted on the second movable seat. The output end of the multi-station lifting wire clamp assembly can move up and down and clamp the double-row wires. The multi-station lifting wire clamp assembly, in conjunction with the second driving component, can drive the double-row wires to move in a step-by-step manner along the conveying direction of the first transfer mechanism.
5. The gear switch wire pressing and cap forming device according to claim 4, characterized in that: The second feeding mechanism includes a fourth driving component, a fourth moving seat, a lifting assembly, and a material picking unit. The fourth driving component is disposed on the top plate. The fourth moving seat is slidably connected to the second guide rail. The lifting assembly and the locking mechanism are disposed on the fourth moving seat. The material picking unit is disposed at the output end of the lifting assembly. The material picking unit is provided with a clearance groove for avoiding the locking end of the locking mechanism.
6. The gear switch wire pressing and cap forming device according to claim 4, characterized in that: The multi-station lifting clamp assembly includes a third driving member, a third movable base, and wire clamp fingers. The third driving member is disposed on the second movable base, and the third movable base is disposed at the output end of the third driving member. The moving direction of the output end of the third driving member is perpendicular to the second driving member. The number of wire clamp fingers is a complex array, and all the wire clamp fingers are evenly distributed at intervals along the length direction of the third movable base. The wire pressing mechanism is disposed on the third movable base.
7. The gear switch wire pressing and cap forming device according to claim 6, characterized in that: The number of wire clips is six sets, and the six sets of wire clips are symmetrically and evenly distributed at both ends of the third movable seat.
8. The gear switch wire pressing and cap forming device according to claim 4, characterized in that: The first feeding mechanism includes a two-axis moving component and a first lower shell clamping finger. The two-axis moving component is disposed on the top plate, and the first lower shell clamping finger is disposed at the output end of the two-axis moving component. The output end of the two-axis moving component can drive the first lower shell clamping finger to reciprocate between the output end of the external lower shell hopper and the output end of the first transfer mechanism. The second transfer mechanism is provided with an anti-airway groove for avoiding the movement stroke of the first lower shell clamping finger.
9. The gear switch wire pressing and cap forming device according to any one of claims 1 to 8, characterized in that: The wire pressing mechanism includes a second lower shell clamping finger and a pressing and cutting assembly. The second lower shell clamping finger is disposed on the second transfer mechanism. Driven by the second transfer mechanism, the second lower shell clamping finger can move towards the first transfer mechanism and is used to clamp the lower shell of the gear switch. The pressing and cutting assembly is disposed at the clamping end of the second lower shell clamping finger. The output end of the pressing and cutting assembly can cut the single-sided cut position of the double-row wire and press the cut wire segment onto the lower shell of the gear switch conveyed by the first transfer mechanism.
10. The gear switch wire pressing and cap forming device according to claim 9, characterized in that: The pressure cutting assembly includes a mounting base, a pressing base, and a wire splitting cutter. The mounting base is fixedly disposed at the output end of the second transfer mechanism and located at the clamping end of the second lower shell clamping finger. The pressing base is disposed at the end of the mounting base, and the wire splitting cutter passes through the pressing base. The end of the wire splitting cutter can extend outside the pressing base. Driven by the second transfer mechanism, the mounting base drives the pressing base and the wire splitting cutter to move towards the first transfer mechanism. The wire splitting cutter contacts the double-row wires before the pressing base and cuts the single-sided cut portion of the double-row wires. The cut double-row wires are then pressed and mounted on a preset position on the gear switch lower shell of the first transfer mechanism by the pressing base.