Novel integrated processing equipment for processing industrial socket

By designing a new integrated processing equipment that integrates multiple processing functions, the problem of complex and low efficiency of industrial socket processing processes in the existing technology is solved, and precise processing and efficient production of sockets of multiple specifications is achieved.

CN119927628APending Publication Date: 2025-05-06温州登高自动化有限公司
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Patent Information

Application Number
CN202510064614.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

In the prior art, the processing process of industrial sockets requires multiple processes and equipment, resulting in high production costs and long cycles, and the inability to flexibly adjust the turning and milling grooves, affecting production efficiency and product quality.

Method used

A new integrated processing equipment was designed to integrate multiple processing functions, including an adjustable turning mechanism, a machining turntable and multiple processing stations. The adjustable turning mechanism can be adjusted according to different workpiece sizes through longitudinal and horizontal adjustment units, ensuring machining accuracy and stability.

Benefits of technology

It realizes precise processing of industrial sockets of various specifications, improves production efficiency and product quality, simplifies operating procedures, and reduces labor intensity and safety risks.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

According to the novel integrated machining equipment for machining the industrial socket, a longitudinal adjusting unit and a horizontal adjusting unit in an adjustable turning mechanism can adjust the height and the horizontal position of a turning unit, and after the height of the turning unit is adjusted, the turning unit can adapt to workpieces of different sizes; therefore, the precision and the stability in the machining process are ensured. Due to the moving function of the horizontal adjusting unit, the turning unit can be finely adjusted in the horizontal direction (towards the direction of a machined workpiece), adjustment can be conducted according to the requirements of different turning distances, and the accuracy of the turning process is ensured. And the machining turntable of the equipment can rotate, so that a plurality of machining stations can enter a machining area in sequence, and batch efficient production is realized. And through the integrated design, the equipment is easy and convenient to operate, and the machining efficiency and the product quality are greatly improved. The whole structure is compact, the occupied area is small, and the device is suitable for various industrial production environments.
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Description

Technical Field

[0001] The invention relates to the technical field of machine tools, and in particular to a novel integrated processing device for processing industrial sockets. Background Art

[0002] In the prior art, industrial sockets need to go through multiple processes during the production and processing, such as cutting, drilling, grooving, etc. Each process usually requires separate equipment and operators, which not only increases production costs, but also prolongs the production cycle. Among them, when turning and milling grooves, it is impossible to flexibly adjust according to the needs of industrial sockets of different sizes, resulting in difficulty in improving production efficiency and product quality. In addition, the operation of multiple devices also increases the labor intensity and safety risks of operators, which is not conducive to the stable operation of the production line. Therefore, there is an urgent need for a new type of integrated processing equipment that can integrate multiple processing functions and improve production efficiency and product quality to solve the above problems. Summary of the invention

[0003] In view of this, the present invention provides a new integrated processing equipment for processing industrial sockets.

[0004] To achieve the above object, the present invention provides the following technical solutions: A new type of integrated processing equipment for processing industrial sockets includes a processing seat and a spindle box, the spindle box is arranged on the processing seat, a processing turntable is arranged on the spindle box, a processing station is arranged on the processing turntable, an adjustable turning mechanism is arranged on the processing seat, the adjustable turning structure includes a turning base plate, a longitudinal adjustment unit, a horizontal adjustment unit and a turning unit, the horizontal adjustment unit is movably arranged on the turning base plate, the longitudinal adjustment unit is arranged on the horizontal adjustment unit, the turning unit is liftably arranged on the longitudinal adjustment unit, a workpiece to be processed is placed on the processing station, and the turning unit turns the workpiece to be processed.

[0005] Preferably, the horizontal adjustment unit includes a horizontal slide and a horizontal power source, the longitudinal adjustment unit is arranged at the top of the horizontal slide, a horizontal guide rail is arranged on the turning base plate, a horizontal slide groove is provided on the horizontal slide corresponding to the horizontal guide rail, the horizontal guide rail extends into the horizontal slide groove and is slidably connected with the horizontal slide, the horizontal power source is arranged on one side of the turning base plate, the horizontal power source has a transmission end, the transmission end is against the horizontal slide and drives the horizontal slide to move on the horizontal guide rail.

[0006] Preferably, the longitudinal adjustment unit includes a longitudinal positioning frame and limit plates arranged on both sides of the longitudinal positioning frame, the longitudinal positioning frame is arranged at the top end of the horizontal adjustment unit, a positioning groove is formed between the limit plate and the longitudinal positioning frame, one end of the turning unit can be movably extended into the positioning groove and connected to the longitudinal positioning frame, a longitudinal adjustment groove is provided on the longitudinal positioning frame, a longitudinal positioning hole corresponding to the longitudinal adjustment groove is provided on the turning unit, a longitudinal positioning piece is arranged between the longitudinal positioning hole and the longitudinal positioning groove, and the longitudinal positioning piece fixes the height position of the turning unit in the positioning groove.

[0007] Preferably, the turning unit includes a turning bracket, a cutter head mounting block, a turning power source and a power transmission shaft, the turning bracket has a power mounting portion and a cutter head mounting portion, the cutter head mounting block and the turning power source are respectively arranged on the cutter head mounting portion and the power mounting portion, the turning power source has a turning power output shaft, one end of the power transmission shaft is connected to the turning power output shaft, the other end of the power transmission shaft passes through the cutter head mounting portion and is connected to the cutter head mounting block, the turning power source drives the cutter head mounting block to rotate on the cutter head mounting portion through the power transmission shaft, and a blade is arranged on the cutter head mounting portion.

[0008] Preferably, the processing seat is also provided with a feed shearing mechanism, a first drilling mechanism, a chamfering mechanism, a tapping and punching mechanism, a first grooving mechanism, a second tapping mechanism and a second grooving mechanism, which are arranged in sequence corresponding to the clockwise rotation direction of the processing turntable; the adjustable turning mechanism is arranged at a position where the processing seat is located between the first drilling mechanism and the tapping and punching mechanism; the feed shearing mechanism is placed with raw materials to be processed; the feed shearing mechanism shears the raw materials to be processed to form a workpiece to be processed; the workpiece to be processed has a first processing end and a second processing end, and transports the workpiece to be processed to the first drilling mechanism; the first drilling mechanism drills a hole in the first processing end of the workpiece to be processed to form a first socket; the chamfering mechanism chamfers the first socket of the workpiece to be processed; the tapping and punching mechanism taps the first socket of the workpiece to be processed, and drills a hole in the second processing end of the workpiece to be processed to form a second socket; the first grooving mechanism performs a first grooving on the first processing end of the workpiece to be processed; the second tapping mechanism taps the second socket of the workpiece to be processed; and the second grooving mechanism performs a secondary grooving on the workpiece to be processed.

[0009] Preferably, the feed shearing mechanism includes a feed bracket and a cutting unit, the feed bracket is arranged on one side of the processing seat, a feed trough is provided on the feed bracket, the raw material to be processed is placed in the feed trough and passes through the feed trough, the cutting unit includes a cutting device and a cutting slide, the cutting slide is movably arranged on the processing seat, the cutting device is arranged on the cutting slide, a slide cylinder is arranged on one side of the cutting slide, the slide cylinder drives the cutting slide to move on the processing seat toward the direction of the raw material to be processed, and the cutting device cuts the raw material to be processed.

[0010] Preferably, the first drilling mechanism includes a first drilling cylinder, a first drilling motor and a first drill bit, a first drilling bracket is arranged on the processing seat, a drilling slide is arranged on the first drilling bracket, the first drilling cylinder is arranged on the first drilling bracket, the first drilling cylinder drives the drilling slide to slide on the first drilling bracket, the drilling motor and the first drill bit are both arranged on the drilling slide, and the drilling motor drives the first drill bit to rotate.

[0011] Preferably, the first grooving mechanism and the second grooving mechanism have the same structure, and both of them are composed of a grooving bracket, a grooving slide, a grooving cylinder, a grooving motor and a cutting blade, the grooving bracket is fixed on the processing seat, the grooving slide is movably arranged on the grooving bracket, the grooving cylinder is arranged on the grooving bracket and drives the grooving slide to move on the grooving bracket, the grooving motor is arranged on the grooving slide, and the cutting blade is arranged on the grooving motor.

[0012] The beneficial effect of the present invention is that by setting an adjustable turning mechanism that can be adjusted according to different needs and different workpiece processing sizes on the integrated processing equipment, it is possible to achieve precise processing of industrial sockets of various specifications. The longitudinal adjustment unit and the horizontal adjustment unit in the adjustable turning mechanism can adjust the height and horizontal position of the turning unit. When the height of the turning unit is adjusted, the turning unit can adapt to workpieces of different sizes, thereby ensuring the accuracy and stability during the processing process. The moving function of the horizontal adjustment unit enables the turning unit to be fine-tuned in the horizontal direction (towards the direction of the processed workpiece), so that it can be adjusted according to the needs of different turning distances to ensure the accuracy of the turning process. And the processing turntable of the equipment can rotate, so that multiple processing stations can enter the processing area in turn, thereby realizing batch and efficient production. Through the integrated design, the equipment is easy to operate, and the processing efficiency and product quality are greatly improved. The overall structure is compact, the footprint is small, and it is suitable for various industrial production environments. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. 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 paying creative work.

[0014] Attached Figure 1 It is a schematic diagram of the structure of the present invention; Attached Figure 2 This is a schematic diagram of a processing turntable of the present invention; Attached Figure 3 It is a schematic diagram of the adjustable turning structure of the present invention; Attached Figure 4 It is a cross-sectional view of the adjustable turning structure of the present invention; Attached Figure 5 This is a schematic diagram of another angle structure of the adjustable turning of the present invention; Attached Figure 6 It is a schematic diagram of the feed shearing mechanism; Attached Figure 7 It is a schematic diagram of the feed shearing mechanism from another angle; Attached Figure 8 is a schematic diagram of a first grooving mechanism; Attached Fig. 9 Schematic diagram of the workpiece. DETAILED DESCRIPTION

[0015] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0016] The present invention will be further described below in conjunction with the accompanying drawings.

[0017] The present invention provides the following technical solutions: As attached Figure 1-9 As shown, the present invention discloses a new integrated processing equipment for processing industrial sockets, including a processing seat 1 and a spindle box 2, the spindle box 2 is arranged on the processing seat 1, a processing turntable 3 is arranged on the spindle box 2, a processing station 4 is arranged on the processing turntable 3, and an adjustable turning mechanism 5 is arranged on the processing seat 1. Figure 3-5As shown, the adjustable turning structure includes a turning base plate 6, a longitudinal adjustment unit 7, a horizontal adjustment unit 8 and a turning unit 9, wherein the horizontal adjustment unit 8 is movably arranged on the turning base plate 6, the longitudinal adjustment unit 7 is arranged on the horizontal adjustment unit 8, and the turning unit 9 is arranged on the longitudinal adjustment unit 7 in a liftable manner. A workpiece 10 to be processed is placed on the processing station 4, and the turning unit 9 turns the workpiece 10 to be processed. Specifically, in this design, by arranging an adjustable turning mechanism 5 that can be adjusted according to different requirements and different workpiece processing sizes on the integrated processing equipment, precise processing of industrial sockets of various specifications can be achieved. The longitudinal adjustment unit 7 and the horizontal adjustment unit 8 in the adjustable turning mechanism 5 can adjust the height and horizontal position of the turning unit 9. When the height of the turning unit 9 is adjusted, the turning unit 9 can adapt to workpieces of different sizes, thereby ensuring accuracy and stability during the processing process. The moving function of the horizontal adjustment unit 8 enables the turning unit 9 to be fine-tuned in the horizontal direction (towards the direction of the workpiece being processed), so that it can be adjusted according to the requirements of different turning distances to ensure the accuracy of the turning process. In addition, the processing turntable 3 of the equipment can rotate, so that multiple processing stations 4 can enter the processing area in turn, thereby realizing batch and efficient production. Through the integrated design, the equipment is easy to operate, which greatly improves the processing efficiency and product quality. The overall structure is compact and occupies a small area, which is suitable for various industrial production environments.

[0018] For further information, see Attachment Figure 3-4 As shown, the horizontal adjustment unit 8 includes a horizontal slide 11 and a horizontal power source 12, the longitudinal adjustment unit 7 is arranged at the top of the horizontal slide 11, the horizontal guide rail 13 is arranged on the turning base plate 6, a horizontal slide groove 14 is provided on the horizontal slide 11 corresponding to the horizontal guide rail 13, the horizontal guide rail 13 extends into the horizontal slide groove 14 and is slidably connected with the horizontal slide 11, and the horizontal power source 12 is arranged on one side of the turning base plate 6, and the horizontal power source 12 has a transmission end 15, the transmission end 15 abuts against the horizontal slide 11 and drives the horizontal slide 11 to move on the horizontal guide rail 13. Specifically, in this embodiment, the horizontal power source 12 is a cylinder, and the cylinder drives the transmission end 15 through compressed air to realize the smooth movement of the horizontal slide 11 on the horizontal guide rail 13. The design of the horizontal slide groove 14 ensures the stability and accuracy of the horizontal slide 11 during the movement process, and avoids positioning deviation caused by friction or vibration. The longitudinal adjustment unit 7 is arranged at the top of the horizontal slide 11, so that the turning unit 9 can be precisely adjusted in the vertical direction, further improving the flexibility and adaptability of the processing.

[0019] For further information, see Attachment Figure 4-5As shown, the longitudinal adjustment unit 7 includes a longitudinal positioning frame 16 and a limiting plate 17 arranged on both sides of the longitudinal positioning frame 16, the longitudinal positioning frame 16 is arranged at the top of the horizontal adjustment unit 8, a positioning groove 18 is formed between the limiting plate 17 and the longitudinal positioning frame 16, one end of the turning unit 9 can be movably extended into the positioning groove 18 and connected with the longitudinal positioning frame 16, a longitudinal adjustment groove 19 is provided on the longitudinal positioning frame 16, a longitudinal positioning hole (not shown) corresponding to the longitudinal adjustment groove 19 is provided on the turning unit 9, a longitudinal positioning member (not shown) is arranged between the longitudinal positioning hole and the longitudinal positioning groove 18, and the longitudinal positioning member fixes the height position of the turning unit 9 in the positioning groove 18. Specifically, in this embodiment, the longitudinal positioning member is made of high-strength stainless steel material to ensure that it will not deform during long-term use, thereby maintaining the height stability of the turning unit 9. The function of the limiting plate 17 is to limit the lateral movement of the turning unit 9 and ensure its precise adjustment in the vertical direction. The matching design of the longitudinal adjustment slot 19 and the longitudinal positioning hole makes the height adjustment of the turning unit 9 easy and accurate, and can be quickly completed with simple tools. In addition, the longitudinal positioning piece is a screw, which is not only easy to lock and loosen, but also maintains good fastening performance after repeated use. Overall, the design of this longitudinal adjustment unit 7 not only improves the convenience of equipment operation, but also significantly improves the processing accuracy and stability, providing a strong guarantee for the precise processing of complex workpieces.

[0020] For further information, see Attachment Figure 3-5As shown, the turning unit 9 includes a turning support 22, a cutter head mounting block 23, a turning power source 24 and a power transmission shaft 25. The turning support 22 has a power mounting portion 26 and a cutter head mounting portion 27. The cutter head mounting block 23 and the turning power source 24 are respectively arranged on the cutter head mounting portion 27 and the power mounting portion 26. The turning power source 24 has a turning power output shaft (not shown). One end of the power transmission shaft 25 is connected to the turning power output shaft, and the other end of the power transmission shaft 25 passes through the cutter head mounting portion 27 and is connected to the cutter head mounting block 23. The turning power source 24 drives the cutter head mounting block 23 to rotate on the cutter head mounting portion 27 through the power transmission shaft 25. The cutter head mounting portion 27 is provided with a blade 28. Specifically, in this embodiment, the turning support 22 is made of high-strength alloy material to ensure stability and rigidity during high-speed operation. The cutter head mounting block 23 is designed as a structure that can be quickly replaced, which is convenient for quickly replacing blades under different processing requirements and improving production efficiency. The turning power source 24 uses a high-efficiency motor with a large torque output characteristic, which can cope with the processing of materials of various hardness. The power transmission shaft 25 is supported by a high-precision bearing to ensure the stability of the transmission process and low-noise operation. A cutter head slot 29 is provided on the cutter head mounting block 23, and a cutter head block 30 is inserted into the cutter head slot 29. The cutter head block 30 is connected to the cutter head slot 29 by plugging, which can achieve fast and firm fixation, ensuring that the cutter head will not loosen during high-speed turning. The end of the cutter head block 30 away from the cutter head mounting block 23 protrudes to form at least two blade positioning ends 31, and a blade positioning groove 32 is formed between the blade positioning ends 31. The blade is set in the blade positioning groove 32, and the blade 28 is fixed to the blade positioning end 31 by screws or other fasteners. Such a structure can ensure that the blade 28 remains stable during high-speed rotation, effectively improving the processing accuracy and surface finish. The design of the blade positioning groove 32 makes the blade installation more convenient and reduces the error caused by improper installation. The blade 28 is arranged in a parallelogram structure and has two cutting ends 33 .

[0021] Furthermore, the processing seat 1 is also provided with a feed shearing mechanism 34, a first drilling mechanism 35, a chamfering mechanism (not shown), a tapping and punching mechanism (not shown), a first grooving mechanism 38, a second tapping mechanism 39 and a second grooving mechanism 40, which are arranged in sequence corresponding to the clockwise rotation direction of the processing turntable 3. The adjustable turning mechanism is arranged at a position of the processing seat 1 between the first drilling mechanism 35 and the tapping and punching mechanism. A raw material to be processed (not shown) is placed on the feed shearing mechanism 34. The raw material to be processed is in the shape of a long strip. The feed shearing mechanism 34 shears the raw material to be processed to form a workpiece 10 to be processed. The workpiece 10 to be processed has a first processing end 41 and a second processing end 4 2, and transport the workpiece 10 to be processed to the first drilling mechanism 35, the first drilling mechanism 35 drills the first processing end 41 of the workpiece 10 to be processed to form a first plug hole 43, the chamfering mechanism chamfers the first plug hole 43 of the workpiece 10 to be processed, the tapping and drilling mechanism taps the first plug hole 43 of the workpiece 10 to be processed, and drills the second processing end 42 of the workpiece 10 to be processed to form a second plug hole (not shown), the first grooving mechanism 38 performs the first grooving on the first processing end 41 of the workpiece 10 to be processed, the second tapping mechanism 39 taps the second plug hole of the workpiece 10 to be processed, and the second grooving mechanism 40 performs the second grooving on the workpiece 10 to be processed. Specifically, in this embodiment, the design of the processing seat 1 ensures the coordinated operation between the various mechanisms, making the entire processing process efficient and accurate. The setting of the feed shearing mechanism 34 ensures that the size of the workpiece 10 to be processed after shearing is consistent. The first drilling mechanism 35 is equipped with a numerical control system, which can accurately control the position and depth of the drilling to ensure the quality of the first plug hole 43. The chamfering mechanism can uniformly chamfer the first socket 43 of the workpiece 10 to be processed through automatic adjustment, thereby improving the convenience of subsequent assembly. The tapping and punching mechanism integrates the functions of tapping and punching, which reduces the transfer time of the workpiece and improves the processing efficiency. The first grooving mechanism 38 and the second grooving mechanism 40 are both modularly designed, which is convenient for rapid replacement and adjustment according to the processing requirements of different workpieces. The second tapping mechanism 39 uses a high-strength tap to ensure the thread quality of the second socket.

[0022] For further information, see Attachment Figure 6-7As shown, the feed shearing mechanism 34 includes a feed bracket 45 and a cutting unit 46. The feed bracket 45 is arranged on one side of the processing seat 1. A feed slot 47 is provided on the feed bracket 45. The raw material to be processed is placed in the feed slot 47 and is arranged through the feed slot 47. The cutting unit 46 includes a cutting device 48 and a cutting slide 49. The cutting slide 49 is movably arranged on the processing seat 1. The cutting device 48 is arranged on the cutting slide 49. A slide cylinder 50 is arranged on one side of the cutting slide 49. The slide cylinder 50 drives the cutting slide 49 to move on the processing seat 1 toward the raw material to be processed, and the cutting device 48 cuts the raw material to be processed. Specifically, in this embodiment, the feed bracket 45 is made of high-strength steel to ensure stability and durability during long-term use. The cutting device 48 is a cutting machine in the prior art, equipped with a high-precision cutting blade, which can achieve accurate cutting of raw materials at high speed and reduce the generation of burrs and waste. The moving track of the cutting slide 49 is controlled by a precise guide rail system to ensure the stability and consistency of the cutting process. After cutting, a manipulator or other transport tool can be used to transport the workpiece 10 to the processing turntable 3.

[0023] For further information, see Attachment Figure 6-7 As shown, the first drilling mechanism 35 includes a first drilling cylinder 51, a first drilling motor 52 and a first drill bit 53. The processing seat 1 is provided with a first drilling bracket 54, and a drilling slide 55 is provided on the first drilling bracket 54. The first drilling cylinder 51 is provided on the first drilling bracket 54, and the first drilling cylinder 51 drives the drilling slide 55 to slide on the first drilling bracket 54. The drilling motor and the first drill bit 53 are both provided on the drilling slide 55, and the drilling motor drives the first drill bit 53 to rotate. Specifically, in this embodiment, the drilling slide 55 of the first drilling mechanism 35 is provided with a precise guide device, which can be a combination of a guide rail and a guide groove to ensure its stability during the sliding process, thereby improving the accuracy of drilling.

[0024] Reference Figure 8As shown, further, the first grooving mechanism 38 and the second grooving mechanism 40 have the same structure, and the first grooving mechanism 38 and the second grooving mechanism 40 are both composed of a grooving bracket 56, a grooving slide 57, a grooving cylinder 58, a grooving motor 59 and a cutting blade 60. The grooving bracket 56 is fixed on the processing seat 1, and the grooving slide 57 is movably arranged on the grooving bracket 56. The grooving cylinder 58 is arranged on the grooving bracket 56 and drives the grooving slide 57 to move on the grooving bracket 56. The grooving motor 59 is arranged on the grooving slide 57, and the cutting blade 60 is arranged on the grooving motor 59. Specifically, in this embodiment, the grooving motor 59 drives the cutting blade 60 to rotate at a high speed through the output shaft to achieve accurate grooving of the workpiece 10 to be processed. The moving trajectory of the grooving slide 57 is accurately controlled by the grooving cylinder 58 to ensure the accuracy and consistency of the grooving position. In addition, the design of the grooving bracket 56 fully considers the structural stability and the convenience of operation, which is convenient for the operator to quickly install and adjust. During the specific operation, the operator can adjust the stroke of the grooving cylinder 58 and the speed of the grooving motor 59 through the control system to meet different processing requirements. The cutting blade 60 is made of highly wear-resistant material to ensure good cutting performance after long-term use. The design of the entire grooving mechanism is aimed at improving processing efficiency and grooving quality, reducing manual intervention, and improving the level of automation.

[0025] In the present design, the chamfering mechanism, the tapping and punching mechanism and the second tapping mechanism 39 are all chamfering tools and tapping and punching tools in the prior art, so they will not be described in detail here.

[0026] A clamp 61 is provided on each processing station 4 on the processing turntable 3 for clamping the workpiece 10 to be processed. The clamp is a side-shift clamp in the prior art, so it will not be described in detail here.

[0027] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A new integrated processing equipment for processing industrial sockets, comprising a processing seat and a spindle box, wherein the spindle box is arranged on the processing seat, a processing turntable is arranged on the spindle box, and a processing station is arranged on the processing turntable, characterized in that: An adjustable turning mechanism is arranged on the processing seat, and the adjustable turning structure includes a turning base plate, a longitudinal adjustment unit, a horizontal adjustment unit and a turning unit. The horizontal adjustment unit is movably arranged on the turning base plate, the longitudinal adjustment unit is arranged on the horizontal adjustment unit, and the turning unit is liftably arranged on the longitudinal adjustment unit. A workpiece to be processed is placed on the processing station, and the turning unit turns the workpiece to be processed.

2. The new integrated processing equipment for processing industrial sockets according to claim 1 is characterized in that: The horizontal adjustment unit includes a horizontal slide and a horizontal power source. The longitudinal adjustment unit is arranged on the top of the horizontal slide. A horizontal guide rail is arranged on the turning base plate. A horizontal slide groove is provided on the horizontal slide corresponding to the horizontal guide rail. The horizontal guide rail extends into the horizontal slide groove and is slidably connected to the horizontal slide. The horizontal power source is arranged on one side of the turning base plate. The horizontal power source has a transmission end, which resists the horizontal slide and drives the horizontal slide to move on the horizontal guide rail.

3. The new integrated processing equipment for processing industrial sockets according to claim 1 is characterized in that: The longitudinal adjustment unit includes a longitudinal positioning frame and limit plates arranged on both sides of the longitudinal positioning frame. The longitudinal positioning frame is arranged at the top of the horizontal adjustment unit. A positioning groove is formed between the limit plate and the longitudinal positioning frame. One end of the turning unit can be movably extended into the positioning groove and connected to the longitudinal positioning frame. A longitudinal adjustment groove is provided on the longitudinal positioning frame. A longitudinal positioning hole corresponding to the longitudinal adjustment groove is provided on the turning unit. A longitudinal positioning piece is arranged between the longitudinal positioning hole and the longitudinal positioning groove. The longitudinal positioning piece fixes the height position of the turning unit in the positioning groove.

4. The new integrated processing equipment for processing industrial sockets according to claim 3 is characterized in that: The turning unit includes a turning bracket, a cutter head mounting block, a turning power source and a power transmission shaft. The turning bracket has a power mounting portion and a cutter head mounting portion. The cutter head mounting block and the turning power source are respectively arranged on the cutter head mounting portion and the power mounting portion. The turning power source has a turning power output shaft. One end of the power transmission shaft is connected to the turning power output shaft, and the other end of the power transmission shaft passes through the cutter head mounting portion and is connected to the cutter head mounting block. The turning power source drives the cutter head mounting block to rotate on the cutter head mounting portion through the power transmission shaft, and a blade is arranged on the cutter head mounting portion.

5. The new integrated processing equipment for processing industrial sockets according to claim 1 is characterized in that: The processing seat is also provided with a feed shearing mechanism, a first drilling mechanism, a chamfering mechanism, a tapping and punching mechanism, a first grooving mechanism, a second tapping mechanism and a second grooving mechanism, which are arranged in sequence corresponding to the clockwise rotation direction of the processing turntable. The adjustable turning mechanism is arranged at a position where the processing seat is located between the first drilling mechanism and the tapping and punching mechanism. The feed shearing mechanism is placed with raw materials to be processed. The feed shearing mechanism shears the raw materials to be processed to form a workpiece to be processed. The workpiece to be processed has a first processing end and a second processing end, and transports the workpiece to be processed to the first drilling mechanism. The first drilling mechanism drills a hole in the first processing end of the workpiece to be processed to form a first socket. The chamfering mechanism chamfers the first socket of the workpiece to be processed. The tapping and punching mechanism taps the first socket of the workpiece to be processed, and drills a hole in the second processing end of the workpiece to be processed to form a second socket. The first grooving mechanism performs a first grooving on the first processing end of the workpiece to be processed, the second tapping mechanism taps the second socket of the workpiece to be processed, and the second grooving mechanism performs a secondary grooving on the workpiece to be processed.

6. The new integrated processing equipment for processing industrial sockets according to claim 5 is characterized in that: The feed shearing mechanism includes a feed bracket and a cutting unit. The feed bracket is arranged on one side of the processing seat. A feed trough is provided on the feed bracket. The raw material to be processed is placed in the feed trough and passes through the feed trough. The cutting unit includes a cutting device and a cutting slide. The cutting slide is movably arranged on the processing seat. The cutting device is arranged on the cutting slide. A slide cylinder is arranged on one side of the cutting slide. The slide cylinder drives the cutting slide to move on the processing seat toward the direction of the raw material to be processed, and the cutting device cuts the raw material to be processed.

7. The new integrated processing equipment for processing industrial sockets according to claim 5 is characterized in that: The first drilling mechanism includes a first drilling cylinder, a first drilling motor and a first drill bit. A first drilling bracket is arranged on the processing seat. A drilling slide is arranged on the first drilling bracket. The first drilling cylinder is arranged on the first drilling bracket. The first drilling cylinder drives the drilling slide to slide on the first drilling bracket. The first drilling motor and the first drill bit are both arranged on the drilling slide. The drilling motor drives the first drill bit to rotate.

8. The new integrated processing equipment for processing industrial sockets according to claim 5 is characterized in that: The first grooving mechanism and the second grooving mechanism have the same structure, and both of them are composed of a grooving bracket, a grooving slide, a grooving cylinder, a grooving motor and a cutting blade. The grooving bracket is fixed on the processing seat, the grooving slide is movably arranged on the grooving bracket, the grooving cylinder is arranged on the grooving bracket and drives the grooving slide to move on the grooving bracket, the grooving motor is arranged on the grooving slide, and the cutting blade is arranged on the grooving motor.