Electronic commerce cage turning equipment
By adopting multi-point synchronous turning technology of main turning tool and sub turning tool in e-commerce cage truck processing equipment, the problem of bending and deformation of existing equipment when processing softer or smaller diameter parts is solved, achieving more balanced stress and better processing effects.
Patent Information
- Application Number
- CN202510423067.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2025-05-09
AI Technical Summary
When existing e-commerce cage truck processing equipment processes softer or smaller rod-shaped parts, it is easy to cause the parts to be bent and deformed, and the processing effect is poor.
Multi-point synchronous turning technology of the main turning tool and the sub turning tool is adopted to make the parts more balanced during the turning process. The rotation direction of the main turning tool and the sub turning tool are opposite, and the torque is balanced, and the turning position of the tool is controlled through the linkage mechanism to meet the needs of different parts.
It effectively prevents the rod-shaped parts from bending and deforming during turning, improves the processing effect of softer materials or smaller diameter parts, reduces the possibility of twisted bending, and improves machining stability and accuracy.
Smart Images

Figure CN119952090A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of special workpiece turning, and in particular to an e-commerce cage car processing equipment. Background Art
[0002] The existing patent (Announcement No.: CN107020427B) proposes a processing equipment, including an online electric pulse processing device. The online electric pulse processing device is used to perform electric pulse processing on the area to be processed of a workpiece to improve the processing performance of the area to be processed. The online electric pulse processing device includes a pulse power supply and an electrode. The pulse power supply has a positive electrode and a negative electrode, one of which is electrically connected to the workpiece; the electrode can contact the surface of the area to be processed of the workpiece, but this device "the tool holder drives the turning tool to move along the feed direction of the workpiece under the drive of the lathe drive device" When a single tool processes the workpiece, the workpiece is subjected to a single force, and when facing special parts to be processed with a smaller diameter or a softer material or a smaller diameter, it may cause partial deformation of the part. Summary of the invention
[0003] In view of the above-mentioned deficiencies in the prior art, the present invention provides a method of multi-point synchronous turning by a main turning tool or an auxiliary turning tool, so that the rod-shaped parts of e-commerce cage cars are subjected to more balanced force during the turning process, and when faced with softer rod-shaped parts, they are less likely to bend and deform during the turning process. The main turning tool and the auxiliary turning tool rotate in opposite directions during the turning process, thereby balancing the torque exerted on the rod-shaped parts during the turning process. At the same time, the force points of the main turning tool and the auxiliary turning tool during the turning process are close to each other, thereby further reducing the torque exerted on the rod-shaped parts during the turning process, making it less likely for the rod-shaped parts to bend and twist, and when faced with softer rod-shaped parts of e-commerce cage cars, they are less likely to bend and deform during the turning process. An e-commerce cage car processing equipment can still achieve good processing effects on rod-shaped parts with softer materials or smaller diameters.
[0004] The purpose of the present invention is to be achieved through the following technical solutions: An e-commerce cage car processing equipment comprises a main carrier frame, a forward turning mechanism is arranged on one side of the main carrier frame, three groups of main turning tools arranged inside the forward turning mechanism synchronously turn parts, so that the pressure on the parts is balanced and the parts are less likely to bend, a reverse turning mechanism is arranged in the middle of the main carrier frame, three groups of auxiliary turning tools arranged inside the reverse turning mechanism turn parts, the rotation direction of the reverse turning mechanism is opposite to that of the forward turning mechanism, so that the torque on the parts is balanced and the parts are less likely to be torsional deformed during processing, and a linkage mechanism is arranged on the outer side of the reverse turning mechanism, the linkage mechanism controls the forward turning mechanism and the reverse turning mechanism to perform linkage movement, and the linkage mechanism can also control the turning positions of the main turning tool and the auxiliary turning tool to meet the turning requirements of different parts.
[0005] The forward turning mechanism comprises a main turning tool mounting platform, a main turning tool positioning screw, a main turning carrier, a main turning adjustment ring, a driven bevel gear and a main adjusting connecting rod, wherein a main turning carrier is arranged on one side of the general carrier, a main turning carrier surface is provided with a main carrier positioning groove, a main carrier positioning ring is provided on the side of the general carrier facing the main turning carrier, the main carrier positioning ring is adapted to the main carrier positioning groove, the main carrier positioning ring is connected to the main carrier positioning groove, the main carrier positioning groove rotates outside the main carrier positioning ring, a main turning slide is provided on the side of the main turning carrier, three groups of main turning slides are evenly arranged around the main turning carrier, a main turning carrier is provided with a main turning tool mounting platform on the side away from the general carrier, a main turning tool mounting platform is provided with a main turning slide on the side facing the main turning carrier, the main turning slide is adapted to the main turning slide, the main turning slide is connected to the main turning slide, the main turning slide is on the main The turning slide slides inside, and a main turning tool mounting groove is provided inside the main turning tool mounting platform, and the main turning tool mounting groove is adapted to the main turning tool, and the main turning tool mounting groove is connected to the main turning tool, and the main turning tool is inserted into the main turning tool mounting groove, and the surface of the main turning tool mounting groove is provided with a main turning tool positioning platform, and the main turning tool positioning platform is threadedly connected with the main turning tool positioning screw, and the main turning tool positioning screw is pressed on the surface of the main turning tool, and the main turning slide block is provided with an outer main connecting rod mounting platform on the side facing the total bearing frame, and the main turning bearing frame is provided with a main turning adjustment ring on the side close to the total bearing frame, and the surface of the main turning adjustment ring is provided with an inner main connecting rod mounting platform, and three groups of inner main connecting rod mounting platforms are evenly arranged around the main turning adjustment ring, one side of the main adjusting connecting rod is rotatably connected to the outer main connecting rod mounting platform, and the other side of the main adjusting connecting rod is rotatably connected to the inner main connecting rod mounting platform, and the side of the main turning bearing frame away from the main turning tool mounting platform is fixedly connected to the driven bevel gear.
[0006] The reverse turning mechanism comprises a secondary turning carrier, a secondary turning adjustment ring, an active bevel gear, a secondary turning tool, a secondary tool bearing platform, a secondary adjusting connecting rod, and a secondary turning tool positioning screw. A secondary turning carrier is arranged on the side of the main carrier, and a secondary turning carrier is provided on the surface of the secondary turning carrier with a secondary carrier positioning groove. A secondary carrier positioning ring is provided on the side of the main carrier close to the secondary turning carrier, and the secondary carrier positioning groove is adapted to the secondary carrier positioning ring. The secondary carrier positioning groove is connected to the secondary carrier positioning ring, and the secondary carrier positioning groove rotates on the outside of the secondary carrier positioning ring. A side of the secondary turning carrier close to the driven bevel gear is fixedly connected to the active bevel gear. A secondary turning slide is provided on the side of the secondary turning carrier, and three groups of secondary turning slides are evenly arranged around the secondary turning carrier. A tool avoidance groove is provided on the surface of the secondary turning carrier, and the position of the tool avoidance groove corresponds to the position of the secondary turning slide. Three groups of secondary tool bearing platforms are arranged on the side of the secondary turning carrier, and an inner secondary connecting rod mounting platform is provided on the top of the secondary tool bearing platform. A sub-turning tool mounting groove is provided on one side of the mounting platform close to the sub-turning slide, the sub-turning tool mounting groove is adapted to the sub-turning slide, the sub-turning tool mounting groove is connected to the sub-turning slide, the sub-turning tool mounting groove slides inside the sub-turning slide, a sub-turning adjustment ring is provided on the outside of the sub-turning carrier, three groups of outer sub-connecting rod mounting platforms are provided on the surface of the sub-turning adjustment ring, the three groups of outer sub-connecting rod mounting platforms are evenly arranged around the sub-turning adjustment ring, one side of the sub-adjusting connecting rod is rotatably connected to the outer sub-connecting rod mounting platform, and the sub-adjusting connecting rod is provided on the outer side of the sub-turning carrier frame. The other side is rotatably connected to the inner secondary connecting rod mounting platform, and an auxiliary turning tool mounting platform is provided at the bottom of the auxiliary tool bearing platform, and an auxiliary turning tool mounting groove is provided inside the auxiliary turning tool mounting platform. The auxiliary turning tool is adapted to the auxiliary turning tool mounting groove, and the auxiliary turning tool is connected to the auxiliary turning tool mounting groove, and the auxiliary turning tool is inserted into the auxiliary turning tool mounting groove. An auxiliary turning tool positioning platform is provided on the side of the auxiliary turning tool mounting platform, and the auxiliary turning tool positioning platform is threadedly connected to the auxiliary turning tool positioning screw, and the auxiliary turning tool positioning screw is pressed against the surface of the auxiliary turning tool.
[0007] Beneficial effects: 1. It should be noted that during the turning process of the rod-shaped parts of the commercial cage car, the multi-point synchronous turning of the main turning tool or the auxiliary turning tool can make the rod-shaped parts of the e-commerce cage car more evenly stressed during the turning process. When faced with softer rod-shaped parts, they are less likely to bend and deform during the turning process. Good processing effects can still be achieved when faced with rod-shaped parts with softer materials or smaller diameters.
[0008] 2. The present invention also needs to explain that the main turning tool and the auxiliary turning tool rotate in opposite directions during the turning process, so that the torque applied to the rod-shaped parts during the turning process is balanced. At the same time, the contact points of the main turning tool and the auxiliary turning tool during the turning process are close to each other, thereby further reducing the torque applied to the rod-shaped parts during the turning process, making it less likely for the rod-shaped parts of commercial cage cars to twist and bend, and further increasing the processing effect of this device when facing rod-shaped parts with softer materials or smaller diameters.
[0009] 3. During the processing of the commercial cage car of the present invention, the main positioning driven ring slides inside the main positioning drive block, and the auxiliary positioning driven ring slides inside the auxiliary positioning drive block. By driving the main positioning drive block and the auxiliary positioning drive block to move, the positions of the main turning positioning ring and the auxiliary turning positioning ring are controlled, thereby controlling the turning positions of the main turning tool and the auxiliary turning tool, thereby completing turning operations of more complex and special shapes. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 This is a schematic structural diagram of an e-commerce cage car processing equipment described in the present invention.
[0011] Figure 2 This is a top view of an e-commerce cage car processing equipment described in the present invention.
[0012] Figure 3 This is a top cross-sectional view of an e-commerce cage car processing equipment described in the present invention.
[0013] Figure 4 It is a side cross-sectional view of an e-commerce cage car processing equipment described in the present invention.
[0014] Figure 5 This is a partial enlarged view of the forward turning mechanism described in the present invention.
[0015] Figure 6 This is a diagram showing the installation state of the driven bevel gear described in the present invention.
[0016] Figure 7 This is a partial enlarged view of the reverse turning mechanism described in the present invention.
[0017] Figure 8 This is a diagram showing the installation status of the auxiliary turning carrier described in the present invention.
[0018] Fig. 9 It is a schematic diagram of the overall supporting frame structure of the present invention.
[0019] Fig.10 This is a schematic diagram of the main turning carrier structure of the present invention.
[0020] Fig.11 This is a schematic structural diagram of the main turning tool mounting platform described in the present invention.
[0021] Fig.12 This is a schematic diagram of the auxiliary turning carrier structure of the present invention.
[0022] Fig.13 It is a schematic diagram of the structure of the auxiliary tool bearing platform described in the present invention.
[0023] Fig.14 It is a schematic diagram of the structure of the main turning tool described in the present invention.
[0024] In the figure: forward turning mechanism 1; reverse turning mechanism 2; linkage mechanism 3; main turning tool mounting platform 11; main turning tool positioning platform 12; main turning tool positioning screw 13; main turning tool mounting slot 14; main turning tool 15; main turning carrier 16; main turning slide 17; main turning adjustment ring 18; main adjustment driven ring 19; main adjustment drive block 20; main adjustment drive rod 21; auxiliary adjustment drive block 22; auxiliary adjustment drive rod 23; end bearing ring 24; main drive rod 25; driven gear ring 26; hydraulic cylinder mounting platform 27; hydraulic cylinder mounting slot 28; adjustment hydraulic cylinder 29; turning drive motor 30; driving gear 31; auxiliary turning carrier 32; auxiliary turning slide 33; bending avoidance frame 34; auxiliary turning adjustment ring 35; auxiliary adjustment driven ring 36; auxiliary bearing frame positioning groove 37; auxiliary bearing frame positioning ring 38; main bearing frame 39; main bearing frame positioning ring 40; main bearing frame positioning groove 41; driven bevel gear 42; active bevel gear 43; auxiliary turning tool mounting platform 44; auxiliary turning tool 45; auxiliary tool bearing platform 46; change gear mounting shaft 47; change gear 48; change bearing bearing platform 49; inner main connecting rod mounting platform 50; main adjustment connecting rod 51; main turning slide block 52; outer main connecting rod mounting platform 53; auxiliary adjustment connecting rod 54; outer auxiliary connecting rod mounting platform 55; inner auxiliary connecting rod mounting platform 56; auxiliary turning tool positioning platform 58; auxiliary turning tool positioning screw 59; tool avoidance groove 60; auxiliary turning tool mounting groove 61; motor mounting platform 62. DETAILED DESCRIPTION
[0025] The present invention is further described in detail below according to the accompanying drawings and embodiments: Embodiment 1: An e-commerce cage car processing equipment includes a total carrier frame 39, a forward turning mechanism 1 is arranged on one side of the total carrier frame 39, three groups of main turning tools 15 arranged inside the forward turning mechanism 1 synchronously turn parts, so that the pressure on the parts is balanced and it is less likely to bend, a reverse turning mechanism 2 is arranged in the middle of the total carrier frame 39, three groups of auxiliary turning tools 45 arranged inside the reverse turning mechanism 2 turn parts, the reverse turning mechanism 2 rotates in the opposite direction to the forward turning mechanism 1, so that the torque on the parts is balanced, so that the parts are less likely to be torsional deformation during processing, a linkage mechanism 3 is arranged on the outer side of the reverse turning mechanism 2, the linkage mechanism 3 controls the forward turning mechanism 1 and the reverse turning mechanism 2 to perform linkage movement, and the linkage mechanism 3 can also control the turning positions of the main turning tool 15 and the auxiliary turning tool 45 to meet the turning requirements of different parts.
[0026] Embodiment 2: The forward turning mechanism 1 of the present invention comprises a main turning tool mounting platform 11, a main turning tool positioning screw 13, a main turning carrier 16, a main turning adjustment ring 18, a driven bevel gear 42, and a main adjustment connecting rod 51. The main turning carrier 16 is arranged on one side of the main carrier 39, and the main turning carrier 16 has a main carrier positioning groove 41 on its surface. The main carrier 39 has a main carrier positioning ring 40 on one side facing the main turning carrier 16. The main carrier positioning ring 40 is adapted to the main carrier positioning groove 41, and the main carrier positioning ring 40 is connected to the main carrier. The carrier positioning groove 41, the main carrier positioning groove 41 rotates outside the main carrier positioning ring 40, the main turning carrier 16 has a main turning slide 17 on the side, and three groups of main turning slides 17 are evenly arranged around the main turning carrier 16. The main turning carrier 16 has a main turning tool mounting platform 11 on the side away from the main carrier 39, and the main turning tool mounting platform 11 has a main turning slide 52 on the side facing the main turning carrier 16. The main turning slide 52 is adapted to the main turning slide 17, and the main turning slide 52 is connected to the main turning slide 17. 52 slides inside the main turning slide 17, the main turning tool mounting platform 11 has a main turning tool mounting groove 14 inside, the main turning tool mounting groove 14 is adapted to the main turning tool 15, the main turning tool mounting groove 14 is connected to the main turning tool 15, the main turning tool 15 is inserted into the main turning tool mounting groove 14, the main turning tool mounting groove 14 has a main turning tool positioning platform 12 on the surface, the main turning tool positioning platform 12 is threadedly connected with the main turning tool positioning screw 13, the main turning tool positioning screw 13 is pressed on the surface of the main turning tool 15, and the main turning slide 52 faces the main carrier One side of 39 is provided with an outer main connecting rod mounting platform 53, and the side of the main turning carrier 16 close to the main carrier 39 is provided with a main turning adjustment ring 18, and the surface of the main turning adjustment ring 18 is provided with an inner main connecting rod mounting platform 50, and three groups of inner main connecting rod mounting platforms 50 are evenly arranged around the main turning adjustment ring 18, one side of the main adjusting connecting rod 51 is rotatably connected to the outer main connecting rod mounting platform 53, and the other side of the main adjusting connecting rod 51 is rotatably connected to the inner main connecting rod mounting platform 50, and the side of the main turning carrier 16 away from the main turning tool mounting platform 11 is fixedly connected to the driven bevel gear 42.
[0027] Embodiment 3: The reverse turning mechanism 2 of the present invention comprises an auxiliary turning carrier frame 32, an auxiliary turning adjustment ring 35, an active bevel gear 43, an auxiliary turning tool 45, an auxiliary tool bearing platform 46, an auxiliary adjustment connecting rod 54, and an auxiliary turning tool positioning screw 59. The auxiliary turning carrier frame 32 is arranged on the side of the main carrier frame 39, and the surface of the auxiliary turning carrier frame 32 has an auxiliary carrier frame positioning groove 37. The main carrier frame 39 has an auxiliary carrier frame positioning ring 38 on one side close to the auxiliary turning carrier frame 32. The auxiliary carrier frame positioning groove 37 is adapted to the auxiliary carrier frame positioning ring 38, and the auxiliary carrier frame positioning groove 37 is connected to the auxiliary carrier frame positioning ring 38. The auxiliary carrier positioning groove 37 rotates on the outside of the auxiliary carrier positioning ring 38, and the auxiliary turning carrier 32 is fixedly connected to the active bevel gear 43 on one side close to the driven bevel gear 42. The auxiliary turning carrier 32 has an auxiliary turning slide 33 on the side, and three groups of auxiliary turning slides 33 are evenly arranged around the auxiliary turning carrier 32. The surface of the auxiliary turning carrier 32 has a tool avoidance groove 60, and the position of the tool avoidance groove 60 corresponds to the position of the auxiliary turning slide 33. Three groups of auxiliary tool bearing platforms 46 are arranged on the side of the auxiliary turning carrier 32, and the top of the auxiliary tool bearing platform 46 has an inner auxiliary connecting rod mounting platform 56. The inner auxiliary A side of the connecting rod mounting platform 56 close to the auxiliary turning slide 33 is provided with an auxiliary turning tool mounting groove 61, the auxiliary turning tool mounting groove 61 is adapted to the auxiliary turning slide 33, the auxiliary turning tool mounting groove 61 is connected to the auxiliary turning slide 33, the auxiliary turning tool mounting groove 61 slides inside the auxiliary turning slide 33, an auxiliary turning adjustment ring 35 is arranged on the outer side of the auxiliary turning carrier 32, and the surface of the auxiliary turning adjustment ring 35 has three groups of outer auxiliary connecting rod mounting platforms 55, and the three groups of outer auxiliary connecting rod mounting platforms 55 are evenly arranged around the auxiliary turning adjustment ring 35, one side of the auxiliary adjusting connecting rod 54 is rotatably connected to the outer auxiliary connecting rod mounting platform 55, and the auxiliary adjusting connecting rod 54 is connected to the auxiliary adjusting connecting rod 54. The other side of 54 is rotatably connected to the inner secondary connecting rod mounting platform 56, and the bottom of the secondary tool bearing platform 46 is provided with an auxiliary turning tool mounting platform 44, and the auxiliary turning tool mounting platform 44 has an auxiliary turning tool mounting groove 61 inside. The auxiliary turning tool 45 is adapted to the auxiliary turning tool mounting groove 61, and the auxiliary turning tool 45 is connected to the auxiliary turning tool mounting groove 61, and the auxiliary turning tool 45 is inserted into the auxiliary turning tool mounting groove 61. The side of the auxiliary turning tool mounting platform 44 is provided with an auxiliary turning tool positioning platform 58, and the auxiliary turning tool positioning platform 58 is threadedly connected with the auxiliary turning tool positioning screw 59, and the auxiliary turning tool positioning screw 59 is pressed tightly on the surface of the auxiliary turning tool 45.
[0028] Embodiment 4: The linkage mechanism 3 of the present invention includes a main adjustment drive block 20, an auxiliary adjustment drive block 22, a driven gear ring 26, an adjustment hydraulic cylinder 29, a turning drive motor 30, a driving gear 31, and a direction-changing gear 48. The middle part of the total carrier 39 has a direction-changing bearing carrier 49, and both sides of the direction-changing bearing carrier 49 have direction-changing gear mounting shafts 47. The direction-changing gear mounting shafts 47 are rotatably connected with the direction-changing gear 48. The direction-changing gear 48 is meshed with the driven bevel gear 42 and the driving bevel gear 43 at the same time. The two sides of the total carrier 39 have bending avoidance frames 34, and the ends of the bending avoidance frames 34 have end The bearing ring 24, the end bearing ring 24 and the auxiliary tool bearing platform 46 are respectively located on both sides of the main turning slide 17, the auxiliary turning bearing frame 32 is fixedly connected to the driven gear ring 26 on the side facing the end bearing ring 24, and the end bearing ring 24 has a motor mounting platform 62 on both sides, and the motor mounting platform 62 is fixedly connected to the turning drive motor 30 on the side away from the auxiliary turning bearing frame 32. The transmission shaft of the turning drive motor 30 passes through the motor mounting platform 62 and is fixedly connected to the driving gear 31, and the driving gear 31 is meshed with the driven gear ring 26. The main turning adjustment ring 18 is provided with a main adjustment drive block 20 on the top. The main turning positioning ring 18 has a main positioning driven ring 19 on the side, the main positioning driven ring 19 is adapted to the main positioning drive block 20, the main positioning driven ring 19 is connected to the main positioning drive block 20, the main positioning driven ring 19 slides inside the main positioning drive block 20, the main positioning drive block 20 has a main positioning drive rod 21 on the top, the auxiliary turning positioning ring 35 is provided with an auxiliary positioning drive block 22 on the top, the auxiliary turning positioning ring 35 has an auxiliary positioning driven ring 36 on the side, the auxiliary positioning drive block 22 is adapted to the auxiliary positioning driven ring 36, the auxiliary positioning drive block 22 is connected to the auxiliary positioning driven ring 36, the auxiliary positioning The position follower ring 36 slides inside the auxiliary positioning drive block 22. The auxiliary positioning drive block 22 has an auxiliary positioning drive rod 23 on the top, and the end bearing ring 24 has a main drive rod 25 on the top. The main drive rod 25 has a hydraulic cylinder mounting platform 27 in the middle, and the hydraulic cylinder mounting platform 27 has two groups of hydraulic cylinder mounting grooves 28 in the middle. The two groups of positioning hydraulic cylinders 29 are both inserted into the hydraulic cylinder mounting grooves 28 and fixed. The hydraulic rod of the positioning hydraulic cylinder 29 located on the upper side is fixedly connected to the main positioning drive rod 21, and the hydraulic rod of the positioning hydraulic cylinder 29 located on the lower side is fixedly connected to the auxiliary positioning drive rod 23.
[0029] Furthermore, an operation method of an e-commerce cage car processing equipment includes the following steps: in the first step, when processing rod-shaped parts, the turning drive motor 30 drives the driven gear ring 26 to rotate through the driving gear 31, the driven gear ring 26 rotates to drive the auxiliary turning carrier 32 to rotate, and the auxiliary turning carrier 32 drives the auxiliary turning tool 45 to turn the rod-shaped parts; in the second step, synchronously, the auxiliary turning carrier 32 drives the driving bevel gear 43 to rotate, the driving bevel gear 43 rotates to drive the changing gear 48 to rotate, the changing gear 48 drives the driven bevel gear 42 to rotate, and the driven bevel gear 42 drives the main turning carrier 16 to rotate The main turning carrier 16 drives the main turning tool 15 to turn the rod-shaped parts. The main turning tool 15 and the auxiliary turning tool 45 rotate in opposite directions when performing turning operations. During the turning process, the positioning hydraulic cylinder 29 corresponding to the auxiliary positioning drive rod 23 drives the auxiliary positioning drive block 22 to move, thereby controlling the movement of the auxiliary turning positioning ring 35, thereby controlling the distance between each auxiliary turning tool 45. At the same time, the positioning hydraulic cylinder 29 corresponding to the main positioning drive rod 21 drives the main positioning drive block 20 to move, thereby controlling the movement of the main turning positioning ring 18, thereby controlling the distance between each main turning tool 15, thereby performing various shapes of turning operations on the rod-shaped parts.
[0030] It should be noted that during the turning operation of the rod-shaped parts, the main turning tool 15 or the auxiliary turning tool 45 performs multi-point synchronous turning, so that the rod-shaped parts are subjected to more balanced forces during the turning process. When facing softer rod-shaped parts, they are less likely to bend and deform during the turning process. When facing rod-shaped parts with softer materials or smaller diameters, they still have good processing effects. During the processing, the forces are balanced, which prevents the chipping of the cutting edge caused by excessive cutting force and prevents the roughness of the processed surface. It should also be noted that the main turning tool 15 and the auxiliary turning tool 45 rotate in opposite directions during the turning process, so that the torque on the rod-shaped parts during the turning process is balanced. At the same time, the main turning tool 15 and the auxiliary turning tool 45 are close to each other during the turning process, thereby further reducing the torque on the rod-shaped parts during the turning process, making the rod-shaped parts less likely to twist and bend, and further increasing the processing effect of this device when facing rod-shaped parts with soft materials or small diameters. The present invention prevents unstable cutting from causing excessive cutting depth and feed, as well as vibration caused by intermittent cutting, avoids the occurrence of chipping, can reduce pitch errors, avoid sudden increases in cutting depth, and the occurrence of tool piercing or bamboo knots.
[0031] During the machining process, the main positioning driven ring 19 slides inside the main positioning drive block 20, and the auxiliary positioning driven ring 36 slides inside the auxiliary positioning drive block 22. By driving the main positioning drive block 20 and the auxiliary positioning drive block 22 to move, the positions of the main turning positioning ring 18 and the auxiliary turning positioning ring 35 are controlled, thereby controlling the turning positions of the main turning tool 15 and the auxiliary turning tool 45, thereby completing turning operations of more complex shapes.
[0032] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that a person skilled in the art can make several improvements and modifications without departing from the technical principles of the present invention, and these improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. An e-commerce cage car processing equipment, characterized by The invention comprises a main carrier (39), wherein a forward turning mechanism (1) is arranged on one side of the main carrier (39), and three groups of main turning tools (15) are arranged inside the forward turning mechanism (1) to synchronously turn parts; a reverse turning mechanism (2) is arranged in the middle of the main carrier (39), and three groups of auxiliary turning tools (45) are arranged inside the reverse turning mechanism (2) to turn parts; the reverse turning mechanism (2) rotates in the opposite direction to the forward turning mechanism (1); a linkage mechanism (3) is arranged outside the reverse turning mechanism (2), and the linkage mechanism (3) controls the forward turning mechanism (1) and the reverse turning mechanism (2) to perform linkage movement.
2. The electronic commerce cage car processing equipment according to claim 1 is characterized in that The forward turning mechanism (1) comprises a main turning tool mounting platform (11), a main turning tool positioning screw (13), a main turning carrier (16), a main turning adjustment ring (18), a driven bevel gear (42), and a main adjustment connecting rod (51). A main turning carrier (16) is arranged on one side of the general carrier (39). A main turning carrier (16) has a main carrier positioning groove (41) on the surface of the main turning carrier (16). A main carrier positioning ring (40) is arranged on the side of the general carrier (39) facing the main turning carrier (16). The main carrier positioning ring (40) is adapted to the main carrier positioning groove (41). The main carrier positioning ring (40) is connected to the main carrier positioning groove (41). The main carrier positioning groove (41) rotates outside the main carrier positioning ring (40).
3. The electronic commerce cage car processing equipment according to claim 2 is characterized in that The main turning carrier (16) has a main turning chute (17) on its side, and three groups of main turning chute (17) are evenly arranged around the main turning carrier (16). The main turning carrier (16) has a main turning tool mounting platform (11) on the side away from the main carrier (39), and the main turning tool mounting platform (11) has a main turning slide block (52) on the side facing the main turning carrier (16). The main turning slide block (52) is adapted to the main turning chute (17), the main turning slide block (52) is connected to the main turning chute (17), and the main turning slide block (52) slides inside the main turning chute (17).
4. The electronic commerce cage vehicle processing equipment according to claim 3 is characterized in that The main turning tool mounting platform (11) has a main turning tool mounting groove (14) inside, the main turning tool mounting groove (14) is adapted to the main turning tool (15), the main turning tool mounting groove (14) is connected to the main turning tool (15), the main turning tool (15) is inserted into the main turning tool mounting groove (14), the main turning tool mounting groove (14) has a main turning tool positioning platform (12) on the surface, the main turning tool positioning platform (12) is threadedly connected to the main turning tool positioning screw (13), and the main turning tool positioning screw (13) is pressed against the surface of the main turning tool (15).
5. The electronic commerce cage car processing equipment according to claim 4 is characterized in that The main turning slide block (52) has an outer main connecting rod mounting platform (53) on the side facing the main bearing frame (39), and the main turning bearing frame (16) is provided with a main turning adjustment ring (18) on the side close to the main bearing frame (39). The surface of the main turning adjustment ring (18) has an inner main connecting rod mounting platform (50). Three groups of inner main connecting rod mounting platforms (50) are evenly arranged around the main turning adjustment ring (18). One side of the main adjusting connecting rod (51) is rotatably connected to the outer main connecting rod mounting platform (53), and the other side of the main adjusting connecting rod (51) is rotatably connected to the inner main connecting rod mounting platform (50). The side of the main turning bearing frame (16) away from the main turning tool mounting platform (11) is fixedly connected to the driven bevel gear (42).
6. The electronic commerce cage car processing equipment according to claim 1 is characterized in that The reverse turning mechanism (2) comprises an auxiliary turning carrier (32), an auxiliary turning adjustment ring (35), an active bevel gear (43), an auxiliary turning tool (45), an auxiliary tool bearing platform (46), an auxiliary adjustment connecting rod (54), and an auxiliary turning tool positioning screw (59). The auxiliary turning carrier (32) is arranged on the side of the main carrier (39), and the surface of the auxiliary turning carrier (32) has an auxiliary carrier positioning groove (37). The side of the main carrier (39) close to the auxiliary turning carrier (32) has an auxiliary carrier positioning ring (37). 8), the auxiliary carrier frame positioning groove (37) is adapted to the auxiliary carrier frame positioning ring (38), the auxiliary carrier frame positioning groove (37) is connected to the auxiliary carrier frame positioning ring (38), the auxiliary carrier frame positioning groove (37) rotates outside the auxiliary carrier frame positioning ring (38), the auxiliary turning carrier frame (32) is fixedly connected to the driving bevel gear (43) on one side close to the driven bevel gear (42), the auxiliary turning carrier frame (32) has an auxiliary turning slide groove (33) on the side, and three groups of auxiliary turning slide grooves (33) are evenly arranged around the auxiliary turning carrier frame (32).
7. The electronic commerce cage car processing equipment according to claim 6 is characterized by: The auxiliary turning carrier (32) has a tool avoidance groove (60) on its surface, and the position of the tool avoidance groove (60) corresponds to the position of the auxiliary turning slide groove (33). Three sets of auxiliary tool bearing platforms (46) are arranged on the side of the auxiliary turning carrier (32). The top of the auxiliary tool bearing platform (46) has an inner auxiliary connecting rod mounting platform (56). The inner auxiliary connecting rod mounting platform (56) has an auxiliary turning tool mounting groove (61) on the side close to the auxiliary turning slide groove (33). The auxiliary turning tool mounting groove (61) is adapted to the auxiliary turning slide groove (33). The auxiliary turning tool mounting groove (61) is connected to the auxiliary turning slide groove (33). The auxiliary turning tool mounting groove (61) slides inside the auxiliary turning slide groove (33). An auxiliary turning positioning ring (35) is arranged on the outer side of the auxiliary turning carrier (32). The surface of the auxiliary turning positioning ring (35) has three sets of outer auxiliary connecting rod mounting platforms (55). The three sets of outer auxiliary connecting rod mounting platforms The auxiliary turning tool mounting platform (46) is provided with an auxiliary turning tool mounting platform (44) at the bottom, and an auxiliary turning tool mounting groove (61) is provided inside the auxiliary turning tool mounting platform (44). The auxiliary turning tool (45) is adapted to the auxiliary turning tool mounting groove (61), the auxiliary turning tool (45) is connected to the auxiliary turning tool mounting groove (61), and the auxiliary turning tool (45) is inserted into the auxiliary turning tool mounting groove (61). The side of the auxiliary turning tool mounting platform (44) is provided with an auxiliary turning tool positioning platform (58), and the auxiliary turning tool positioning platform (58) is threadedly connected to the auxiliary turning tool positioning screw (59), and the auxiliary turning tool positioning screw (59) is pressed against the surface of the auxiliary turning tool (45).
8. The electronic commerce cage car processing equipment according to claim 1 is characterized by: The linkage mechanism (3) comprises a main adjustment drive block (20), an auxiliary adjustment drive block (22), a driven gear ring (26), an adjustment hydraulic cylinder (29), a turning drive motor (30), a driving gear (31), and a direction-changing gear (48). The middle part of the total carrier frame (39) is provided with a direction-changing bearing carrier (49). Both sides of the direction-changing bearing carrier (49) are provided with direction-changing gear mounting shafts (47). The direction-changing gear mounting shafts (47) are rotationally connected to the direction-changing gear (48). The direction-changing gear (48) is meshed with the driven bevel gear (42) and the driving bevel gear (43) at the same time. Both sides of the total carrier frame (39) are provided with bending avoidance frames (34). The ends of the bending avoidance frames (34) are provided with end bearings. The carrier ring (24), the end carrier ring (24) and the auxiliary tool carrier platform (46) are respectively located on both sides of the main turning slide groove (17); the auxiliary turning carrier frame (32) is fixedly connected to the driven gear ring (26) on one side facing the end carrier ring (24); motor mounting platforms (62) are provided on both sides of the end carrier ring (24); the motor mounting platform (62) is fixedly connected to the turning drive motor (30) on the side away from the auxiliary turning carrier frame (32); the driving shaft of the turning drive motor (30) passes through the motor mounting platform (62) and is fixedly connected to the driving gear (31); the driving gear (31) is meshed with the driven gear ring (26); and a main positioning drive block (20) is provided on the top of the main turning positioning ring (18).
9. The electronic commerce cage car processing equipment according to claim 1 is characterized by: The main turning positioning ring (18) has a main positioning driven ring (19) on its side, the main positioning driven ring (19) is adapted to the main positioning driving block (20), the main positioning driven ring (19) is connected to the main positioning driving block (20), the main positioning driven ring (19) slides inside the main positioning driving block (20), the main positioning driving block (20) has a main positioning driving rod (21) on its top, the auxiliary turning positioning ring (35) is provided with an auxiliary positioning driving block (22) on its top, the auxiliary turning positioning ring (35) has an auxiliary positioning driven ring (36) on its side, the auxiliary positioning driving block (22) is adapted to the auxiliary positioning driven ring (36), the auxiliary positioning driving block (22) is connected to the auxiliary positioning driven ring (36), and the auxiliary positioning driven ring (36) slides inside the auxiliary positioning driving block (22).
10. The electronic commerce cage vehicle processing equipment according to claim 1 is characterized in that The auxiliary positioning drive block (22) has an auxiliary positioning drive rod (23) at the top, the end bearing ring (24) has a main drive rod (25) at the top, the main drive rod (25) has a hydraulic cylinder mounting platform (27) in the middle, the hydraulic cylinder mounting platform (27) has two groups of hydraulic cylinder mounting grooves (28) in the middle, the two groups of positioning hydraulic cylinders (29) are inserted into the hydraulic cylinder mounting grooves (28) and fixed, the hydraulic rod of the positioning hydraulic cylinder (29) located on the upper side is fixedly connected to the main positioning drive rod (21), and the hydraulic rod of the positioning hydraulic cylinder (29) located on the lower side is fixedly connected to the auxiliary positioning drive rod (23).
Citation Information
Patent Citations
Turning equipment
CN107020427B