Slot wedge arc machine

Through the joint work of multiple mechanisms of the groove wedge arc machine, the automatic processing and cleaning of groove wedges is achieved, solving the problem that existing equipment cannot adjust the angle and position, and improving the processing efficiency and cleaning effect.

CN120503018APending Publication Date: 2025-08-19YONGJI YOUNAITE INSULATION MATERIALS CO LTD
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Patent Information

Application Number
CN202510611703.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

The existing groove wedge processing equipment is difficult to automatically adjust the angle and position, cannot meet the needs of side arc shape processing, and lacks automatic waste chip cleaning devices, resulting in low processing efficiency.

Method used

A groove wedge arc machine is designed, including a width processing mechanism, a height processing mechanism, an arc processing mechanism, a cutting mechanism and a cleaning mechanism. The machining position and angle are automatically adjusted through the conveyor belt and the driving mechanism, and a cleaning mechanism is equipped to clean the debris.

Benefits of technology

It realizes automatic processing of groove wedges, including precise adjustment of width, height and arc shape, improves processing efficiency, and effectively cleans processing debris, improving the automation level of the equipment.

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Patent Text Reader

Abstract

The invention relates to the technical field of slot wedge machining, in particular to a slot wedge arc machine which comprises a workbench, and the workbench is provided with a groove, a first support, a width machining mechanism, a second support, a height machining mechanism, an arc machining mechanism, a third support and a fixing plate. A height machining mechanism is arranged on the second support, a cutting mechanism is arranged on the third support, a conveying belt is arranged between the two fixing plates, a driving mechanism is arranged on the side face of the conveying belt, a second pressing mechanism is arranged above the conveying belt, and a cleaning mechanism is arranged in the groove. According to the slot wedge arc machine, the positions of the width machining mechanism and the height machining mechanism can be automatically adjusted through mutual cooperation of all the mechanisms, the machining angle of the arc machining mechanism can be automatically adjusted, and meanwhile a machined slot wedge can be cut through the cutting mechanism; and in addition, chippings generated during machining are cleared through the arrangement of the clearing mechanism.
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Description

Technical Field

[0001] The present invention relates to the technical field of slot wedge processing, in particular to a slot wedge circular arc machine. Background Art

[0002] As an important component in the stator and rotor of the motor, the slot wedge needs to be polished to the width and thickness dimensions during processing, and if necessary, the arc shape needs to be processed on its side. However, the current equipment is difficult to meet the processing needs of users, especially when processing the arc shape of the side. It can only be processed vertically and the angle cannot be changed. The processing angle needs to be adjusted manually. At the same time, when polishing the thickness and width dimensions, the position of the processing equipment needs to be manually adjusted, which is inefficient. After the processing is completed, the processed slot wedge needs to be manually cut to the required size. In addition, the existing equipment does not have a special waste chip cleaning device during processing, which may affect subsequent processing work. Summary of the Invention

[0003] The present invention provides a slot wedge circular arc machine to solve the technical problems raised in the above background technology.

[0004] The present invention provides a slot wedge arc machine, which includes a workbench, a groove formed on the workbench, a cleaning mechanism for cleaning processing debris provided in the groove, a first bracket, a width processing mechanism, a height processing mechanism, an arc processing mechanism, and a cutting mechanism provided in sequence on the workbench, and the height processing mechanism is provided on the second bracket;

[0005] Fixed plates, two of the fixed plates are arranged on the workbench, a conveyor belt is arranged between the two fixed plates, and a first working groove and a second working groove are opened on the two fixed plates;

[0006] a cutting mechanism, wherein the cutting mechanism is arranged on the third bracket;

[0007] A driving mechanism, wherein the driving mechanism is arranged on a side of the conveyor belt;

[0008] A first pressing wheel, the first pressing wheel is arranged on the first bracket, a first pressing motor is arranged on the side of the first bracket, and the first pressing wheel is connected to the output end of the first pressing motor;

[0009] The second clamping mechanism, two second clamping mechanisms are arranged above the conveyor belt, one of the second clamping mechanisms is arranged on the side of the second bracket, and the other second clamping mechanism is arranged on the side of the third bracket.

[0010] Optionally, the cleaning mechanism includes: a sliding table, a cleaning drive sprocket chain assembly, a first threaded rod, a first telescopic rod, a cleaning fixed table, a cleaning motor, a cleaning turntable, a cleaning shaft, a cleaning connecting shaft, a first slider, a first slide groove, a first cleaning rod, a second cleaning rod, a cleaning plate and a telescopic fixing mechanism, the sliding table is slidably arranged in the groove, a plurality of the first telescopic rods are arranged below the sliding table, the cleaning drive sprocket chain assembly is arranged at the bottom of the workbench, the first threaded rod is connected to the output end of the cleaning drive sprocket chain assembly, the first threaded rod is threadedly connected to the sliding table, the cleaning fixed table is arranged on the sliding table, and the cleaning motor is arranged on the cleaning fixed table. On one side of the fixed platform, the cleaning turntable is arranged on the other side of the cleaning fixed platform and is connected to the output end of the cleaning motor, the cleaning shaft is arranged at the center position of the cleaning turntable, the first slide groove is arranged on the cleaning connecting shaft, the first slider is connected to the cleaning shaft and arranged in the first slide groove, one end of the cleaning connecting shaft is connected to the cleaning fixed platform, and the other end of the cleaning connecting shaft is connected to the first cleaning rod, the first cleaning rod is slidably arranged at the upper end of the cleaning fixed platform, the second cleaning rod is arranged inside the first cleaning rod, the cleaning plate is arranged at the front end of the second cleaning rod, and the telescopic fixing mechanism is arranged on the outer surface of the first cleaning rod.

[0011] Optionally, a through hole is provided on the surface of the first cleaning rod, and the telescopic fixing mechanism includes: a fixed block, an eccentric wheel, a rotating handle, a pressure block, a pressure plate and a spring, the fixed block is fixedly arranged on the outer surface of the first cleaning rod, a mounting hole is provided on the fixed block, the eccentric wheel is arranged at the mounting hole, the rotating handle is arranged on the eccentric wheel, the pressure plate is fixedly arranged on the inner wall of the first cleaning rod, the second cleaning rod is arranged below the pressure plate, the pressure block is arranged at the center position of the pressure plate, the pressure block is arranged below the eccentric wheel, one end of the spring is connected to the pressure block, and the other end of the spring is connected to the inner wall of the first cleaning rod, a first limiting groove is provided on the lower surface of the pressure block, and a second limiting groove is provided on the upper surface of the second cleaning rod.

[0012] Optionally, the width processing mechanism includes: a width processing motor, a first bevel gear, a second bevel gear shaft, a first worm gear, a first worm, a second worm gear, a first width processing table, a first width cutting motor, a first width processing knife, a second width processing table, a second width cutting motor and a second width processing knife, the width processing motor is arranged at the bottom of the workbench, the first bevel gear is connected to the output end of the width processing motor, the second bevel gear shaft is meshed with the first bevel gear, the first worm gear is arranged on the second bevel gear shaft, the first worm gear is arranged on the left side of the first worm gear, the bottom of the first width processing table is threadedly connected to the first worm gear, the first width cutting motor is arranged on the first width processing table, the first width processing knife is connected to the output end of the first width cutting motor, the second worm gear is arranged on the right side of the first worm gear, the bottom of the second width processing table is threadedly connected to the second worm gear, the second width cutting motor is arranged on the second width processing table, the second width processing knife is connected to the output end of the second width cutting motor, and the first width processing table and the second width processing table are arranged on both sides of the first working groove.

[0013] Optionally, the height processing mechanism includes: a height processing transmission sprocket chain assembly, a first lead screw, a second lead screw, a height processing table, a height cutting motor and a height processing knife. The second bracket is arranged on the left side of the first bracket, the height processing transmission sprocket chain assembly is arranged on the upper inside of the second bracket, the first lead screw is arranged on the left side of the inside of the second bracket, the second lead screw is arranged on the right side of the inside of the second bracket, the height processing table is arranged between the first lead screw and the second lead screw, the height processing table is threadedly connected to the first lead screw and the second lead screw, the height cutting motor is arranged on the height processing table, and the height processing knife is connected to the output end of the height cutting motor.

[0014] Optionally, the two arc processing mechanisms are arranged on the left side of the height processing mechanism, and the arc processing mechanism includes: a second telescopic rod, a lifting platform, a cam, a cylinder, a lifting rod, an arc processing motor, a crank, a connecting rod, a second slider, a second slide, an arc processing table, a second threaded rod, a transmission gear, a gear table, a rack, a matching table, a first driving gear, a second driving gear, a third driving gear, a first driven gear shaft assembly, a second driven gear shaft assembly, a third driven gear shaft assembly, a first driving rotating rod, a first driven rotating rod, a second driving rotating rod, a second driven rotating rod, a third driving rotating rod, a third driven rotating rod, an arc cutting motor and an arc grinding wheel, the lifting platform is arranged above the workbench, and a plurality of the second telescopic rods, a second telescopic rod, a second sliding groove, a second threaded rod, a transmission gear, a gear table, a rack, a matching table, a first driving gear, a second driving gear, a third driving gear, a first driven gear shaft assembly, a second driven gear shaft assembly, a third driven gear shaft assembly, a first driving rotating rod, a first driven rotating rod, a second driving rotating rod, a second driven rotating rod, a third driving rotating rod, a third driven rotating rod, an arc cutting motor and an arc grinding wheel. The retraction rod is arranged at the bottom of the lifting platform, a cam is fixedly arranged under the lifting platform, the cylinder is arranged on the table surface of the workbench, the lifting rod is connected with the output end of the cylinder, the arc processing motor is arranged on the arc processing table, a second slide groove is provided on the arc processing table, the second slider is arranged in the second slide groove, the crank is connected with the output end of the arc processing motor, the second slider connects the crank and the second threaded rod, the matching platform is arranged on the lifting platform, the second threaded rod passes through the matching platform, the transmission gear is threadedly connected to the second threaded rod, the transmission gear is rotatably arranged on the side of the matching platform, the gear platform is slidably arranged on the matching platform, and the gear The first gear is connected to the transmission gear by a toothed plate, and the second gear is connected to the transmission gear by a toothed plate. The first gear is connected to the transmission gear by a toothed plate, and the second gear is connected to the transmission gear by a toothed plate. The first gear is connected to the transmission gear by a toothed plate, and the second gear is connected to the transmission gear by a toothed plate. One end of the active rotating rod is fixedly connected to the second driven gear shaft assembly, the other end of the second active rotating rod is rotatably connected to the second driven rotating rod, the second driven rotating rod is rotatably connected to the arc processing table, the third driven gear shaft assembly is meshed with the third driving gear, the third driven gear shaft assembly is rotatably arranged between the second driven gear shaft assemblies, one end of the third active rotating rod is fixedly connected to the third driven gear shaft assembly, the other end of the third active rotating rod is rotatably connected to the third driven rotating rod, the third driven rotating rod is rotatably connected to the arc processing table, the arc processing table is arranged above the gear table, and the arc processing table is arranged on the side of the second working groove.

[0015] Optionally, the cutting mechanism includes: a cutting motor, a cutting workbench, a cutting turntable, a cutting tool holder and a cutting knife, the third bracket is arranged on the left side of the arc processing mechanism, the cutting workbench is arranged on the third bracket, the cutting motor is arranged on the cutting workbench, the cutting turntable is connected to the output end of the cutting motor, the cutting tool holder is connected to the cutting turntable, and the cutting knife is arranged on the cutting tool holder.

[0016] Optionally, the driving mechanism includes: a driving sprocket chain assembly, a transmission sprocket and a driven sprocket chain assembly, the driving sprocket chain assembly is arranged on a side of the fixed plate, the transmission sprocket is meshed and connected with the driving sprocket chain assembly, the driven sprocket chain assembly is meshed and connected with the transmission sprocket, and the output ends of the driving sprocket chain assembly and the driven sprocket chain assembly are connected to the conveyor belt.

[0017] Optionally, the second pressing mechanism includes: a pressing platform, a pressing vertical plate, a pressing sprocket chain assembly, a pressing motor, a pressing gear, a pressing worm, a rack rack and a second pressing wheel, the rack rack is arranged on the workbench, the pressing platform is slidably arranged on the rack rack, the pressing motor is arranged below the pressing platform, the pressing worm is connected to the output end of the pressing motor, the pressing gear is arranged below the pressing worm, the pressing worm and the pressing gear are meshed and connected, the pressing gear and the rack rack are meshed and connected, and multiple second pressing wheels are connected to the output end of the pressing sprocket chain assembly.

[0018] Beneficial effects

[0019] The slot wedge arc machine includes: a workbench, on which a slot, a first bracket, a width processing mechanism, a second bracket, a height processing mechanism, an arc processing mechanism, a third bracket and a fixed plate are provided, the first bracket is provided with a first pressure wheel, the second bracket is provided with a height processing mechanism, the third bracket is provided with a cutting mechanism, a conveyor belt is provided between the two fixed plates, a driving mechanism is provided on the side of the conveyor belt, a second clamping mechanism is provided above the conveyor belt, and a cleaning mechanism is provided in the slot. The slot wedge arc machine of the present invention can automatically adjust the positions of the width processing mechanism and the height processing mechanism through the mutual cooperation of various mechanisms, and can also automatically adjust the processing angle of the arc processing mechanism. At the same time, the processed slot wedge can be cut by providing a cutting mechanism, and the debris generated during processing can be cleaned by providing a cleaning mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0021] Figure 1 This is a schematic structural diagram of a slot wedge arc machine provided by the present invention from a first perspective;

[0022] Figure 2 This is a schematic cross-sectional view of a slot wedge arc machine provided by the present invention from a main viewing angle;

[0023] Figure 3 It is a schematic cross-sectional structure diagram of a slot wedge arc machine provided by the present invention from a rear view perspective;

[0024] Figure 4 It is a structural schematic diagram of a width processing mechanism in a slot wedge circular arc machine provided by the present invention;

[0025] Figure 5 It is a structural schematic diagram of a height processing mechanism and a second pressing mechanism in a slot wedge circular arc machine provided by the present invention;

[0026] Figure 6 It is a cross-sectional schematic diagram of a height processing mechanism in a slot wedge circular arc machine provided by the present invention;

[0027] Figure 7 It is a cross-sectional schematic diagram of a second pressing mechanism in a slot wedge circular arc machine provided by the present invention;

[0028] Figure 8 It is a cross-sectional schematic diagram of an arc processing mechanism in a slot wedge arc machine provided by the present invention;

[0029] Figure 9 This is a structural schematic diagram from a first perspective of an arc processing mechanism in a slot wedge arc machine provided by the present invention;

[0030] Figure 10 This is a schematic structural diagram from a first perspective of a cutting mechanism and a second pressing mechanism in a slot wedge circular arc machine provided by the present invention;

[0031] Figure 11 This is a schematic structural diagram from a first perspective of a cutting mechanism in a slot wedge circular arc machine provided by the present invention;

[0032] Figure 12 This is a schematic structural diagram from a first perspective of a cleaning mechanism in a slot wedge arc machine provided by the present invention;

[0033] Figure 13This is a schematic structural diagram of a cleaning mechanism in a slot wedge arc machine provided by the present invention from a main view perspective;

[0034] Figure 14 This is a schematic structural diagram of a telescopic fixing mechanism in a slot wedge circular arc machine provided by the present invention from a main viewing angle;

[0035] Figure 15 This is a schematic structural diagram from a first perspective of a second cleaning rod in a slot wedge circular arc machine provided by the present invention;

[0036] Figure 16 It is a cross-sectional schematic diagram of a partial structure of an arc processing mechanism in a slot wedge arc machine provided by the present invention;

[0037] Figure 17 yes Figure 9 Enlarged view of point A in the middle;

[0038] Figure 18 yes Figure 9 Schematic diagram of the exploded structure of the local structure;

[0039] Figure 19 It is a structural schematic diagram of part of the structure of the arc processing mechanism in a slot wedge arc machine provided by the present invention.

[0040] Reference numerals:

[0041] 1000, workbench; 1100, groove; 1200, first bracket; 1210, first pressing motor; 1220, first pressing wheel; 1300, second bracket; 1400, third bracket; 1500, fixing plate; 1510, first working groove; 1520, second working groove; 1600, conveyor belt;

[0042] 2000, driving mechanism; 2100, driving sprocket chain assembly; 2200, transmission sprocket; 2300, driven sprocket chain assembly;

[0043] 3000, width processing mechanism; 3100, width processing motor; 3200, first bevel gear; 3300, second bevel gear shaft; 3400, first worm gear; 3500, first worm; 3510, first width processing table; 3520, first width cutting motor; 3530, first width processing blade; 3600, second worm; 3610, second width processing table; 3620, second width cutting motor; 3630, second width processing blade;

[0044] 4000, height processing mechanism; 4100, height processing drive sprocket chain assembly; 4200, first lead screw; 4300, second lead screw; 4400, height processing table; 4500, height cutting motor; 4600, height processing knife;

[0045] 5000, second pressing mechanism; 5100, pressing platform; 5200, pressing vertical plate; 5300, pressing sprocket chain assembly; 5400, pressing motor; 5500, pressing gear; 5600, pressing worm; 5700, rack; 5800, second pressing wheel;

[0046] 6000, arc processing mechanism; 6100, lifting platform; 6110, cam; 6120, second telescopic rod; 6130, second slide; 6200, cylinder; 6210, lifting rod; 6300, arc processing motor; 6310, crank; 6320, connecting rod; 6330, second slider; 6340, second threaded rod; 6350, transmission gear; 6400, matching platform; 6500, gear platform; 6510, rack; 6600, first driving gear; 6610, first slave gear Driven gear shaft assembly; 6620, first driving rotating rod; 6630, first driven rotating rod; 6700, second driving gear; 6710, second driven gear shaft assembly; 6720, second driving rotating rod; 6730, second driven rotating rod; 6800, third driving gear; 6810, third driven gear shaft assembly; 6820, third driving rotating rod; 6830, third driven rotating rod; 6900, circular arc processing table; 6910, circular arc cutting motor; 6920, circular arc grinding wheel;

[0047] 7000, cutting mechanism; 7100, cutting motor; 7200, cutting table; 7300, cutting turntable; 7400, cutting tool holder; 7500, cutting tool;

[0048] 8000, cleaning mechanism; 8100, cleaning drive sprocket chain assembly; 8110, first threaded rod; 8200, sliding table; 8210, first telescopic rod; 8300, cleaning fixed table; 8400, cleaning motor; 8410, cleaning turntable; 8420, cleaning shaft; 8500, cleaning connecting shaft; 8510, first slider; 8520, first slide; 8600, first cleaning rod; 8700, second cleaning rod; 8710, second limiting groove; 8800, cleaning plate;

[0049] 9000, telescopic fixing mechanism; 9100, fixing block; 9200, eccentric wheel; 9300, rotating handle; 9400, pressing block; 9410, first limiting groove; 9500, pressing plate; 9600, spring; DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. It will be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, only parts related to the present invention, not all structures, are shown in the drawings. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work are within the scope of protection of the present invention.

[0051] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present invention. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute a separate or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0052] See also Figures 1 to 19 A slot wedge arc machine of the present invention includes: a workbench 1000, on which a groove 1100, a first bracket 1200, a width processing mechanism 3000, a second bracket 1300, a height processing mechanism 4000, an arc processing mechanism 6000, a third bracket 1400 and a fixed plate 1500 are provided. The first bracket 1200 is provided with a first bracket 1220, the second bracket 1300 is provided with a height processing mechanism 4000, the third bracket 1400 is provided with a cutting mechanism 7000, a conveyor belt 1600 is provided between the two fixed plates 1500, a driving mechanism 2000 is provided on the side of the conveyor belt 1600, a second pressing mechanism 5000 is provided above the conveyor belt 1600, and a cleaning mechanism 8000 is provided in the groove 1100;

[0053] The first bracket 1200 supports the first bracket 1220, the second bracket 1300 supports the height processing mechanism 4000, the third bracket 1400 supports the arc processing mechanism 6000, and the first bracket 1220 and the second pressing mechanism 5000 press the slot wedge to be processed.

[0054] Furthermore, when the user needs to process the slot wedge by a slot wedge arc machine of the present invention, first, the user places the slot wedge to be processed on the conveyor belt 1600, the driving mechanism 2000 drives the conveyor belt 1600 to rotate, and the conveyor belt 1600 drives the slot wedge to move, and at the same time the first clamping wheel 1220 and the second clamping mechanism 5000 clamp the slot wedge to be processed, and then the slot wedge moves to the position of the width processing mechanism 3000, and the width processing mechanism 3000 can automatically adjust to the processing position according to user needs, and perform width processing on the slot wedge, and then the slot wedge moves to the height processing mechanism 4 000, the height processing mechanism 4000 can be automatically adjusted to the processing position according to user needs, and the slot wedge is processed in the height direction. Then the slot wedge continues to move forward to the position of the arc processing mechanism 6000, and the processing angle of the arc processing mechanism 6000 is adjusted according to user needs, and the side of the slot wedge is processed. Then the slot wedge is moved to the bottom of the cutting mechanism 7000, and the cutting mechanism 7000 divides the slot wedge according to the user's size requirements. After the processing is completed, the cleaning mechanism 8000 starts to work to clean the processing debris on the conveyor belt 1600 and the fixed plate 1500.

[0055] In this embodiment, the driving mechanism 2000 includes: a driving sprocket chain assembly 2100, a transmission sprocket 2200, and a driven sprocket chain assembly 2300. The driving sprocket chain assembly 2100 is disposed on a side of the fixing plate 1500. The transmission sprocket 2200 is meshed and connected with the driving sprocket chain assembly 2100. The driven sprocket chain assembly 2300 is meshed and connected with the transmission sprocket 2200. The output ends of the driving sprocket chain assembly 2100 and the driven sprocket chain assembly 2300 are connected to the conveyor belt 1600.

[0056] Among them, the driving sprocket chain assembly 2100 is started, the driving sprocket chain assembly 2100 drives the transmission sprocket 2200 to rotate, the transmission sprocket 2200 drives the driven sprocket chain assembly 2300 to rotate, and the output ends of the driving sprocket chain assembly 2100 and the driven sprocket chain assembly 2300 drive the conveyor belt 1600 to rotate.

[0057] In this embodiment, the first pressing wheel 1220 is disposed on the first bracket 1200 , a first pressing motor 1210 is disposed on the side of the first bracket 1200 , and the first pressing wheel 1220 is connected to the output end of the first pressing motor 1210 ;

[0058] When the slot wedge is placed on the conveyor belt 1600, the first clamping motor 1210 is started, and the first clamping motor 1210 drives the first clamping wheel 1220 to rotate. The rotation of the first clamping wheel 1220 limits the slot wedge and also assists in movement.

[0059] In this embodiment, the width processing mechanism 3000 includes: a width processing motor 3100, a first bevel gear 3200, a second bevel gear shaft 3300, a first worm gear 3400, a first worm 3500, a second worm 3600, a first width processing table 3510, a first width cutting motor 3520, a first width processing knife 3530, a second width processing table 3610, a second width cutting motor 3620 and a second width processing knife 3630, the width processing motor 3100 is arranged at the bottom of the workbench 1000, the first bevel gear 3200 is connected to the output end of the width processing motor 3100, the second bevel gear shaft 3300 is meshed with the first bevel gear 3200, the first worm gear 3400 is arranged on the second bevel gear shaft 3300, and the first worm 3500 is arranged On the left side of the first worm gear 3400, the bottom of the first width processing table 3510 is threadedly connected to the first worm 3500, the first width cutting motor 3520 is disposed on the first width processing table 3510, and the first width processing knife 3530 is connected to the output end of the first width cutting motor 3520. The second worm 3600 is disposed on the right side of the first worm gear 3400, the bottom of the second width processing table 3610 is threadedly connected to the second worm 3600, the second width cutting motor 3620 is disposed on the second width processing table 3610, and the second width processing knife 3630 is connected to the output end of the second width cutting motor 3620. The first width processing table 3510 and the second width processing table 3610 are disposed on both sides of the first working slot 1510.

[0060] Among them, the width processing motor 3100 is started, the width processing motor 3100 drives the first bevel gear 3200 to rotate, the first bevel gear 3200 drives the second bevel gear shaft 3300 to rotate, the second bevel gear shaft 3300 drives the first worm gear 3400 to rotate, the first worm gear 3400 drives the first worm 3500 and the second worm 3600 to rotate, since the first worm 3500 and the second worm 3600 are arranged on both sides of the first worm gear 3400, the rotation directions of the first worm 3500 and the second worm 3600 are opposite, since the first width processing table 3510 and the first worm 3500 are threadedly connected, the second width processing table 3610 and the second worm 3 600 threaded connection, the moving directions of the first width processing table 3510 and the second width processing table 3610 are just opposite. According to the user's processing requirements, the first width processing table 3510 and the second width processing table 3610 are moved to appropriate positions, and the first width cutting motor 3520 and the second width cutting motor 3620 are started to drive the first width processing knife 3530 and the second width processing knife 3630 to rotate. When the slot wedge moves to the width processing mechanism 3000, the first width processing knife 3530 and the second width processing knife 3630 complete the processing work in the width direction of the slot wedge, and the first working slot 1510 provides a position for processing the slot wedge in space.

[0061] In this embodiment, the height processing mechanism 4000 includes: a height processing transmission sprocket chain assembly 4100, a first lead screw 4200, a second lead screw 4300, a height processing table 4400, a height cutting motor 4500 and a height processing knife 4600. The second bracket 1300 is arranged on the left side of the first bracket 1200, the height processing transmission sprocket chain assembly 4100 is arranged on the upper part of the second bracket 1300, the first lead screw 4200 is arranged on the left side of the second bracket 1300, the second lead screw 4300 is arranged on the right side of the second bracket 1300, the height processing table 4400 is arranged between the first lead screw 4200 and the second lead screw 4300, the height processing table 4400 is threadedly connected to the first lead screw 4200 and the second lead screw 4300, the height cutting motor 4500 is arranged on the height processing table 4400, and the height processing knife 4600 is connected to the output end of the height cutting motor 4500.

[0062] Among them, the height processing transmission sprocket chain assembly 4100 is started, and the height processing transmission sprocket chain assembly 4100 drives the first lead screw 4200 and the second lead screw 4300 to rotate. Since the height processing table 4400 is threadedly connected to the first lead screw 4200 and the second lead screw 4300, during the rotation of the first lead screw 4200 and the second lead screw 4300, the height processing table 4400 will move up and down. According to the user's processing requirements, the height processing table 4400 is adjusted to a suitable height position, and the height cutting motor 4500 is started. The height cutting motor 4500 drives the height processing knife 4600 to rotate. When the slot wedge moves to the bottom of the height processing mechanism 4000, the height processing knife 4600 completes the processing work on the height direction of the slot wedge.

[0063] In this embodiment, the second pressing mechanism 5000 includes: a pressing platform 5100, a pressing vertical plate 5200, a pressing sprocket chain assembly 5300, a pressing motor 5400, a pressing gear 5500, a pressing worm 5600, a rack rack 5700 and a second pressing wheel 5800, wherein the rack rack 5700 is arranged on the workbench 1000, the pressing platform 5100 is slidably arranged on the rack rack 5700, and the pressing motor 5400 is arranged The pressing worm 5600 is disposed below the pressing platform 5100, and is connected to the output end of the pressing motor 5400. The pressing gear 5500 is disposed below the pressing worm 5600, and is meshedly connected to the pressing gear 5500. The pressing gear 5500 is meshedly connected to the rack 5700, and a plurality of second pressing wheels 5800 are connected to the output end of the pressing sprocket chain assembly 5300.

[0064] Among them, since the height of the slot wedge changes after passing through the height processing mechanism 4000, the second clamping wheel 5800 is moved to a suitable height position in advance according to the user's processing requirements, and the clamping motor 5400 is started. The clamping motor 5400 drives the clamping worm 5600 to rotate, and the clamping worm 5600 drives the clamping gear 5500 to rotate. Since the clamping gear 5500 is engaged with the rack rack 5700, the clamping gear 5500 will move up and down, and the clamping gear 5500 drives the clamping platform 5100 to move up and down, and moves the clamping platform 5100 to a suitable height position. Then, the clamping sprocket chain assembly 5300 is started, and the output end of the clamping sprocket chain assembly 5300 drives multiple second clamping wheels 5800 to rotate, thereby realizing the clamping effect on the slot wedge after height processing.

[0065] In this embodiment, the arc processing mechanism 6000 includes: a second telescopic rod 6120, a lifting platform 6100, a cam 6110, a cylinder 6200, a lifting rod 6210, an arc processing motor 6300, a crank 6310, a connecting rod 6320, a second slider 6330, a second slide 6130, an arc processing table 6900, a second threaded rod 6340, a transmission gear 6350, a gear table 6500, a rack 6510, a matching table 6400, a first driving gear 6600, a second driving gear 6700, a third driving gear 6800, a first driven gear shaft assembly 6610, a second driven gear shaft assembly 6710, a third driven gear shaft assembly 6810, a first driving rotating rod 6620, The first driven rotating rod 6630, the second active rotating rod 6720, the second driven rotating rod 6730, the third active rotating rod 6820, the third driven rotating rod 6830, the arc cutting motor 6910 and the arc grinding wheel 6920, the lifting platform 6100 is arranged above the workbench 1000, a plurality of second telescopic rods 6120 are arranged at the bottom of the lifting platform 6100, a cam 6110 is fixedly arranged below the lifting platform 6100, the cylinder 6200 is arranged on the table surface of the workbench 1000, the lifting rod 6210 is connected to the output end of the cylinder 6200, the arc processing motor 6300 is arranged on the arc processing table 6900, the arc processing table 690 0 is provided with a second chute 6130, the second slider 6330 is arranged in the second chute 6130, the crank 6310 is connected to the output end of the arc processing motor 6300, the second slider 6330 connects the crank 6310 and the second threaded rod 6340, the matching platform 6400 is provided on the lifting platform 6100, the second threaded rod 6340 passes through the matching platform 6400, the transmission gear 6350 is threadedly connected to the second threaded rod 6340, the transmission gear 6350 is rotatably arranged on the side of the matching platform 6400, the gear platform 6500 is slidably arranged on the matching platform 6400, and a rack 6500 is provided at the lower side of the gear platform 6500. 10. The rack 6510 is meshed with the transmission gear 6350. The first driving gear 6600, the second driving gear 6700, and the third driving gear 6800 are arranged on the gear stage 6500. The first driven gear shaft assembly 6610 is meshed with the first driving gear 6600. One end of the first driving rotating rod 6620 is fixedly connected to the first driven gear shaft assembly 6610. The other end of the first driving rotating rod 6620 is rotatably connected to the first driven rotating rod 6630. The first driven rotating rod 6630 is rotatably connected to the arc processing table 6900. The first driven gear shaft assembly 6610 is rotatably arranged on the gear stage 6500.The second driven gear shaft assembly 6710 is meshed and connected with the second driving gear 6700. The second driven gear shaft assembly 6710 is rotatably arranged between the first driven gear shaft assembly 6610. One end of the second driving rotating rod 6720 is fixedly connected to the second driven gear shaft assembly 6710. The other end of the second driving rotating rod 6720 is rotatably connected to the second driven rotating rod 6730. The second driven rotating rod 6730 is rotatably connected to the arc processing table 6900. The third driven gear shaft assembly 6810 is rotatably connected to the third driving gear 680 0 meshing connection, the third driven gear shaft assembly 6810 is rotatably arranged between the second driven gear shaft assembly 6710, one end of the third active rotating rod 6820 is fixedly connected to the third driven gear shaft assembly 6810, the other end of the third active rotating rod 6820 is rotatably connected to the third driven rotating rod 6830, the third driven rotating rod 6830 is rotatably connected to the arc processing table 6900, the arc processing table 6900 is arranged above the gear table 6500, and the arc processing table 6900 is arranged on the side of the second working slot 1520;

[0066] Among them, the cylinder 6200 works, driving the lifting rod 6210 to move left and right. During the movement of the lifting rod 6210, the lifting cam 6110 is lifted, and the cam 6110 pushes the lifting platform 6100 to move up and down. The second telescopic rod 6120 plays the role of supporting the lifting platform 6100. Then the arc processing motor 6300 is started, and the arc processing motor 6300 drives the crank 6310 to rotate. The crank 6310 drives the connecting rod 6320 to move. The connecting rod 6320 drives the second slider 6330 to slide in the second slide groove 6130. The second slider 6330 drives the second threaded rod 6340 to move left and right. The gear 6350 is threadedly connected to the second threaded rod 6340. When the second threaded rod 6340 moves left and right, the transmission gear 6350 rotates. Since the rack 6510 under the gear table 6500 is meshed with the transmission gear 6350, the gear table 6500 slides on the matching table 6400, and then the first driving gear 6600 is driven by the motor to rotate. The first driving gear 6600 drives the first driven gear shaft assembly 6610 to rotate. The first driven gear shaft assembly 6610 drives the first driving rotating rod 6620 to rotate. The first driving rotating rod 6620 drives the first driven rotating rod 6400 to rotate. 630 rotates, because the first driven rotating rod 6630 is connected to the circular arc processing table 6900 for rotation, and at the same time, due to the limiting effect of the second driven rotating rod 6730 and the third driven rotating rod 6830, the first driven rotating rod 6630 drives the circular arc processing table 6900 to tilt. Similarly, the second driven rotating rod 6730 and the third driven rotating rod 6830 can also drive the circular arc processing table 6900 to tilt. Through the cooperation of the first driven rotating rod 6630, the second driven rotating rod 6730 and the third driven rotating rod 6830, the control of the tilt angle of the circular arc processing table 6900 is realized according to the needs of the user. The arc processing table 6000 is moved to a suitable position through the lifting platform 6100 and the matching platform 6400. The first driven rotating rod 6630, the second driven rotating rod 6730 and the third driven rotating rod 6830 cooperate to tilt the arc processing table 6000 to a suitable processing angle. Then, the arc cutting motor 6910 is started, and the arc cutting motor 6910 drives the arc grinding wheel 6920 to rotate. When the slot wedge moves to the arc processing mechanism 6000, the arc grinding wheel 6920 completes the processing of the arc on the side of the slot wedge. The second working slot 1520 provides a spatial position for processing the slot wedge.

[0067] In this embodiment, the cutting mechanism 7000 includes: a cutting motor 7100, a cutting table 7200, a cutting rotary disk 7300, a cutting tool holder 7400 and a cutting knife 7500. The third bracket 1400 is arranged on the left side of the arc processing mechanism 6000, the cutting table 7200 is arranged on the third bracket 1400, the cutting motor 7100 is arranged on the cutting table 7200, the cutting rotary disk 7300 is connected to the output end of the cutting motor 7100, the cutting tool holder 7400 is connected to the cutting rotary disk 7300, and the cutting knife 7500 is arranged on the cutting tool holder 7400.

[0068] Among them, the cutting motor 7100 is started, and the cutting motor 7100 drives the cutting turntable 7300 to rotate. Due to the limiting effect of the third bracket 1400, when the cutting turntable 7300 rotates, it will drive the cutting tool holder 7400 to move back and forth up and down, and the cutting tool holder 7400 drives the cutting tool 7500 to move back and forth up and down. When the slot wedge moves to the bottom of the cutting mechanism 7000, the slot wedge cutting action is realized during the reciprocating movement of the cutting tool 7500. By controlling the speed of the cutting motor 7100, the speed of the turntable can be controlled, and then the speed of the reciprocating movement of the cutting tool holder 7400 can be controlled, and then the cutting rate can be controlled, so as to meet the user's requirements for the cutting size.

[0069] In this embodiment, the cleaning mechanism 8000 includes: a sliding table 8200, a cleaning drive sprocket chain assembly 8100, a first threaded rod 8110, a first telescopic rod 8210, a cleaning fixed table 8300, a cleaning motor 8400, a cleaning turntable 8410, a cleaning shaft 8420, a cleaning connecting shaft 8500, a first slider 8510, a first slide 8520, a first cleaning rod 8600, a second cleaning rod 8700, a cleaning plate 8800 and a telescopic fixing mechanism 9000, the sliding table 8200 is slidably arranged in the groove 1100, a plurality of the first telescopic rods 8210 are arranged below the sliding table 8200, and the cleaning drive sprocket chain assembly 8100 is arranged on the workbench 10 00, the first threaded rod 8110 is connected to the output end of the cleaning drive sprocket chain assembly 8100, the first threaded rod 8110 is threadedly connected to the sliding table 8200, the cleaning fixed table 8300 is arranged on the sliding table 8200, the cleaning motor 8400 is arranged on one side of the cleaning fixed table 8300, the cleaning turntable 8410 is arranged on the other side of the cleaning fixed table 8300 and connected to the output end of the cleaning motor 8400, the cleaning shaft 8420 is arranged at the center position of the cleaning turntable 8410, the first slide groove 8520 is arranged on the cleaning connecting shaft 8500, and the first slider 8510 is connected to the cleaning shaft 8420 The cleaning rod 8600 is placed in the first sliding groove 8520, one end of the cleaning connecting shaft 8500 is connected to the cleaning fixed platform 8300, and the other end of the cleaning connecting shaft 8500 is connected to the first cleaning rod 8600. The first cleaning rod 8600 is slidably arranged at the upper end of the cleaning fixed platform 8300, the second cleaning rod 8700 is arranged inside the first cleaning rod 8600, and the cleaning plate 8800 is arranged at the front end of the second cleaning rod 8700. The telescopic fixing mechanism 9000 is arranged on the outer surface of the first cleaning rod 8600, and the surface of the first cleaning rod 8600 is provided with a through hole. The telescopic fixing mechanism 9000 includes: a fixed block 9100, an eccentric wheel 9200, and a rotating handle Hand 9300, pressure block 9400, pressure plate 9500 and spring 9600, the fixed block 9100 is fixedly arranged on the outer surface of the first cleaning rod 8600, the fixed block 9100 is provided with a mounting hole, the eccentric wheel 9200 is arranged at the mounting hole, the rotating handle 9300 is arranged on the eccentric wheel 9200, the pressure plate 9500 is fixedly arranged on the inner wall of the first cleaning rod 8600, the second cleaning rod 8700 is arranged below the pressure plate 9500, the pressure block 9400 is arranged at the center position of the pressure plate 9500, the pressure block 9400 is arranged below the eccentric wheel 9200, and one end of the spring 9600 is connected to the pressure block 9400,The other end of the spring 9600 is connected to the inner wall of the first cleaning rod 8600 , a first limiting groove is defined below the pressing block 9400 , and a second limiting groove 8710 is defined above the second cleaning rod 8700 ;

[0070] Among them, when the slot wedge processing is completed, the cleaning transmission sprocket chain assembly 8100 is started, and the cleaning transmission sprocket chain assembly 8100 drives the first threaded rod 8110 to rotate. Since the sliding table 8200 and the first threaded rod 8110 are threadedly connected, the sliding table 8200 will move up and down during the rotation of the first threaded rod 8110, and the first telescopic rod 8210 plays a supporting role. When the sliding table 8200 rises to the surface of the workbench 1000, the rotating handle 9300 is turned, and the eccentric wheel 9200 rotates, driving the eccentric wheel 9200 to rotate to a position where it is not in contact with the pressure block 9400. The pressure block 9400 is lifted under the action of the spring 9600, and the first limiting groove is away from the second limiting groove 8710, thereby canceling the restriction effect on the second cleaning rod 8700, and the second cleaning rod 8700 is pulled out from the inside of the first cleaning rod 8600. After coming out, the rotating handle 9300 is rotated in the opposite direction, and the eccentric wheel 9200 rotates in the opposite direction to press the pressure block 9400 downward. The first limit groove and the second limit groove 8710 return to the matching position, and the second cleaning rod 8700 is locked. Then the cleaning motor 8400 is started, and the cleaning motor 8400 drives the cleaning turntable 8410 to rotate, and the cleaning turntable 8410 drives the cleaning shaft 8420 to rotate. The cleaning shaft 8420 drives the first slider 8510 to move in the first slide groove 8520, and the first slider 8510 drives the cleaning connecting shaft 8500 to swing back and forth left and right. The cleaning connecting shaft 8500 drives the first cleaning rod 8600 to move left and right, and the first cleaning rod 8600 drives the second cleaning rod 8700 to move left and right. The second cleaning rod 8700 drives the cleaning plate 8800 to move left and right, thereby completing the cleaning of the processing debris.

[0071] The slot wedge arc machine includes: a workbench 1000, on which a groove 1100, a first bracket 1200, a width processing mechanism 3000, a second bracket 1300, a height processing mechanism 4000, an arc processing mechanism 6000, a third bracket 1400 and a fixed plate 1500 are provided. The first bracket 1200 is provided with a first bracket 1220, the second bracket 1300 is provided with a height processing mechanism 4000, the third bracket 1400 is provided with a cutting mechanism 7000, and a conveyor belt 1600 is provided between the two fixed plates 1500. A driving mechanism 2000 is provided on the side of the conveyor belt 1600, a second clamping mechanism 5000 is provided above the conveyor belt 1600, and a cleaning mechanism 8000 is provided in the groove 1100. Among them, a slot wedge arc machine of the present invention can automatically adjust the positions of the width processing mechanism 3000 and the height processing mechanism 4000 through the mutual cooperation of various mechanisms, and can also automatically adjust the processing angle of the arc processing mechanism 6000. At the same time, the processed slot wedge can be cut by setting a cutting mechanism 7000. In addition, the debris generated during processing is cleaned by setting a cleaning mechanism 8000.

[0072] The above description is only an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A slot wedge arc machine, characterized in that: include: A workbench, wherein a groove is formed on the workbench, wherein a cleaning mechanism for cleaning processing debris is provided in the groove, and a first bracket, a width processing mechanism, a second bracket, a height processing mechanism, an arc processing mechanism and a third bracket are sequentially provided on the workbench, wherein the height processing mechanism is provided on the second bracket; Fixed plates, two of the fixed plates are arranged on the workbench, a conveyor belt is arranged between the two fixed plates, and a first working groove and a second working groove are opened on the two fixed plates; a cutting mechanism, wherein the cutting mechanism is arranged on the third bracket; A driving mechanism, wherein the driving mechanism is arranged on a side of the conveyor belt; A first pressing wheel, the first pressing wheel is arranged on the first bracket, a first pressing motor is arranged on the side of the first bracket, and the first pressing wheel is connected to the output end of the first pressing motor; The second clamping mechanism, two second clamping mechanisms are arranged above the conveyor belt, one of the second clamping mechanisms is arranged on the side of the second bracket, and the other second clamping mechanism is arranged on the side of the third bracket.

2. A slot wedge arc machine according to claim 1, characterized in that: The cleaning mechanism includes: a sliding table, a cleaning drive sprocket chain assembly, a first threaded rod, a first telescopic rod, a cleaning fixed table, a cleaning motor, a cleaning turntable, a cleaning shaft, a cleaning connecting shaft, a first slider, a first slide groove, a first cleaning rod, a second cleaning rod, a cleaning plate and a telescopic fixing mechanism. The sliding table is slidably arranged in the groove, a plurality of the first telescopic rods are arranged below the sliding table, the cleaning drive sprocket chain assembly is arranged at the bottom of the workbench, the first threaded rod is connected to the output end of the cleaning drive sprocket chain assembly, the first threaded rod is threadedly connected to the sliding table, the cleaning fixed table is arranged on the sliding table, and the cleaning motor is arranged on the cleaning fixed table On one side, the cleaning turntable is arranged on the other side of the cleaning fixed platform and is connected to the output end of the cleaning motor, the cleaning shaft is arranged at the center position of the cleaning turntable, the first slide groove is arranged on the cleaning connecting shaft, the first slider is connected to the cleaning shaft and arranged in the first slide groove, one end of the cleaning connecting shaft is connected to the cleaning fixed platform, the other end of the cleaning connecting shaft is connected to the first cleaning rod, the first cleaning rod is slidably arranged at the upper end of the cleaning fixed platform, the second cleaning rod is arranged inside the first cleaning rod, the cleaning plate is arranged at the front end of the second cleaning rod, and the telescopic fixing mechanism is arranged on the outer surface of the first cleaning rod.

3. The slot wedge arc machine according to claim 2, characterized in that: A through hole is provided on the surface of the first cleaning rod, and the telescopic fixing mechanism includes: a fixed block, an eccentric wheel, a rotating handle, a pressure block, a pressure plate and a spring. The fixed block is fixedly arranged on the outer surface of the first cleaning rod, and a mounting hole is provided on the fixed block. The eccentric wheel is arranged at the mounting hole, and the rotating handle is arranged on the eccentric wheel. The pressure plate is fixedly arranged on the inner wall of the first cleaning rod, and the second cleaning rod is arranged below the pressure plate. The pressure block is arranged at the center position of the pressure plate, and the pressure block is arranged below the eccentric wheel. One end of the spring is connected to the pressure block, and the other end of the spring is connected to the inner wall of the first cleaning rod. A first limiting groove is provided on the lower surface of the pressure block, and a second limiting groove is provided on the upper surface of the second cleaning rod.

4. The slot wedge arc machine according to claim 1, characterized in that: The width processing mechanism includes: a width processing motor, a first bevel gear, a second bevel gear shaft, a first worm gear, a first worm, a second worm gear, a first width processing table, a first width cutting motor, a first width processing knife, a second width processing table, a second width cutting motor and a second width processing knife. The width processing motor is arranged at the bottom of the workbench, the first bevel gear is connected to the output end of the width processing motor, the second bevel gear shaft is meshed with the first bevel gear, the first worm gear is arranged on the second bevel gear shaft, the first worm gear is arranged on the left side of the first worm gear, the bottom of the first width processing table is threadedly connected to the first worm gear, the first width cutting motor is arranged on the first width processing table, the first width processing knife is connected to the output end of the first width cutting motor, the second worm gear is arranged on the right side of the first worm gear, the bottom of the second width processing table is threadedly connected to the second worm gear, the second width cutting motor is arranged on the second width processing table, the second width processing knife is connected to the output end of the second width cutting motor, and the first width processing table and the second width processing table are arranged on both sides of the first working groove.

5. The slot wedge arc machine according to claim 1, characterized in that: The height processing mechanism includes: a height processing transmission sprocket chain assembly, a first lead screw, a second lead screw, a height processing table, a height cutting motor and a height processing knife. The second bracket is arranged on the left side of the first bracket, the height processing transmission sprocket chain assembly is arranged on the upper inside of the second bracket, the first lead screw is arranged on the left side of the inside of the second bracket, the second lead screw is arranged on the right side of the inside of the second bracket, the height processing table is arranged between the first lead screw and the second lead screw, the height processing table is threadedly connected to the first lead screw and the second lead screw, the height cutting motor is arranged on the height processing table, and the height processing knife is connected to the output end of the height cutting motor.

6. The slot wedge arc machine according to claim 1, characterized in that: The two arc processing mechanisms are arranged on the left side of the height processing mechanism, and the arc processing mechanism includes: a second telescopic rod, a lifting platform, a cam, a cylinder, a lifting rod, an arc processing motor, a crank, a connecting rod, a second slider, a second slide, an arc processing table, a second threaded rod, a transmission gear, a gear table, a rack, a matching table, a first driving gear, a second driving gear, a third driving gear, a first driven gear shaft assembly, a second driven gear shaft assembly, a third driven gear shaft assembly, a first driving rotating rod, a first driven rotating rod, a second driving rotating rod, a second driven rotating rod, a third driving rotating rod, a third driven rotating rod, an arc cutting motor and an arc grinding wheel. The lifting platform is arranged above the workbench, and a plurality of the second telescopic rods are arranged The cam is fixedly provided under the lifting platform, the cylinder is provided on the table surface of the workbench, the lifting rod is connected with the output end of the cylinder, the arc processing motor is provided on the arc processing table, a second slide groove is provided on the arc processing table, the second slider is provided in the second slide groove, the crank is connected with the output end of the arc processing motor, the second slider connects the crank and the second threaded rod, the matching table is provided on the lifting table, the second threaded rod passes through the matching table, the transmission gear is threadedly connected with the second threaded rod, the transmission gear is rotatably provided on the side of the matching table, the gear table is slidably provided on the matching table, and the gear table side A rack is provided below the surface, the rack is meshed with the transmission gear, the first driving gear, the second driving gear and the third driving gear are provided on the gear platform, the first driven gear shaft assembly is meshed with the first driving gear, one end of the first driving rotating rod is fixedly connected to the first driven gear shaft assembly, the other end of the first driving rotating rod is rotatably connected to the first driven rotating rod, the first driven rotating rod is rotatably connected to the arc processing table, the first driven gear shaft assembly is rotatably provided on the gear platform, the second driven gear shaft assembly is meshed with the second driving gear, the second driven gear shaft assembly rotates between the first driven gear shaft assembly, and the second driving One end of the rotating rod is fixedly connected to the second driven gear shaft assembly, the other end of the second active rotating rod is rotatably connected to the second driven rotating rod, the second driven rotating rod is rotatably connected to the arc processing table, the third driven gear shaft assembly is meshed with the third driving gear, the third driven gear shaft assembly is rotatably arranged between the second driven gear shaft assemblies, one end of the third active rotating rod is fixedly connected to the third driven gear shaft assembly, the other end of the third active rotating rod is rotatably connected to the third driven rotating rod, the third driven rotating rod is rotatably connected to the arc processing table, the arc processing table is arranged above the gear table, and the arc processing table is arranged on the side of the second working groove.

7. The slot wedge arc machine according to claim 1, characterized in that: The cutting mechanism includes: a cutting motor, a cutting workbench, a cutting turntable, a cutting tool holder and a cutting knife. The third bracket is arranged on the left side of the arc processing mechanism, the cutting workbench is arranged on the third bracket, the cutting motor is arranged on the cutting workbench, the cutting turntable is connected to the output end of the cutting motor, the cutting tool holder is connected to the cutting turntable, and the cutting knife is arranged on the cutting tool holder.

8. The slot wedge arc machine according to claim 1, characterized in that: The driving mechanism includes: a driving sprocket chain assembly, a transmission sprocket and a driven sprocket chain assembly, the driving sprocket chain assembly is arranged on a side of the fixed plate, the transmission sprocket is meshed and connected with the driving sprocket chain assembly, the driven sprocket chain assembly is meshed and connected with the transmission sprocket, and the output ends of the driving sprocket chain assembly and the driven sprocket chain assembly are connected to the conveyor belt.

9. The slot wedge arc machine according to claim 1, characterized in that: The second pressing mechanism includes: a pressing platform, a pressing vertical plate, a pressing sprocket chain assembly, a pressing motor, a pressing gear, a pressing worm, a rack rack and a second pressing wheel. The rack rack is arranged on the workbench, and the pressing platform is slidably arranged on the rack rack. The pressing motor is arranged below the pressing platform, the pressing worm is connected to the output end of the pressing motor, the pressing gear is arranged below the pressing worm, the pressing worm and the pressing gear are meshed and connected, the pressing gear and the rack rack are meshed and connected, and multiple second pressing wheels are connected to the output end of the pressing sprocket chain assembly.