An integrated connecting rod cracking processing rotary table based on online cross-section identification

Through integrated design and automated processing, the problem of large number of equipment and workers in cracking connecting rod production was solved, and efficient and automated connecting rod processing was achieved, which reduced costs and improved quality and environmental cleanliness.

CN119282419BActive Publication Date: 2025-09-30KUNMING UNIV OF SCI & TECH
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Patent Information

Application Number
CN202411468114.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-09-30
Estimated Expiration
2044-10-21

AI Technical Summary

Technical Problem

Cracking connecting rod manufacturers usually carry out processing in steps and workstations, which leads to a large number of equipment and workers, complicated processes, serious waste of resources, and quality depends on the workers' experience.

Method used

An integrated connecting rod cracking processing rotary table based on online cross-section identification is designed. It integrates laser cutting machine, connecting rod cracking machine, cross-section detection machine and other equipment. The turntable is driven by a motor for integrated processing. It is also equipped with a blanking mechanism and a track mechanism to realize automatic unloading and debris processing.

Benefits of technology

It reduces the number of processing equipment and workers, improves production efficiency and processing quality, reduces production costs, and ensures the cleanliness of the working environment and the degree of automation of processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of mechanical processing and discloses an integrated connecting rod cracking processing rotary table based on online cross-section identification, comprising a workbench, a motor fixedly connected to the top of the workbench, an integrated processing mechanism provided on the top of the workbench, the integrated processing mechanism mounting multiple sets of connecting rod cracking processing equipment on the top of the workbench, and performing integrated processing in accordance with the order of process and equipment arrangement by rotating; a blanking mechanism provided on the workbench, the blanking mechanism automatically discharges the connecting rod at the end of the integrated processing, and a storage shell is provided to collect debris generated during the processing. By providing an integrated processing mechanism and driving the turntable to rotate by a motor, the present invention enables the connecting rod to be integratedly processed in accordance with the order of process and equipment arrangement, thereby greatly reducing the number of processing equipment and the space occupied, reducing production costs, while also reducing the number of workers and labor intensity, and improving production efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of mechanical processing, and in particular to an integrated connecting rod cracking processing rotary table based on online cross-section identification. Background Art

[0002] In recent years, the rapid development of the manufacturing industry has fueled the growth of high-tech, high-value-added industries. High-precision, highly automated equipment plays a crucial role in the rapid development of high-end manufacturing. Splitting connecting rods are widely used due to their advantages, such as requiring fewer processing steps and saving on finishing equipment. However, since splitting connecting rod manufacturers typically perform this process in a step-by-step, separate workstation, this requires a large number of processing equipment and workers, resulting in a cumbersome process and a waste of resources. Furthermore, the quality of the splitting connecting rods is often based on worker experience. Summary of the Invention

[0003] In response to the shortcomings of the existing technology, the present invention provides an integrated connecting rod cracking processing rotary table based on online cross-section identification, which solves the problem that cracking connecting rod manufacturers usually carry out cracking connecting rod processing in steps and workstations, resulting in a large number of processing equipment and workers required, resulting in cumbersome procedures and waste of resources.

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: an integrated connecting rod cracking processing rotary table based on online cross-section identification, comprising a workbench, a motor fixedly connected to the top of the workbench, an integrated processing mechanism provided on the top of the workbench, the integrated processing mechanism mounting multiple sets of connecting rod cracking processing equipment on the top of the workbench, and performing integrated processing in accordance with the order of process steps and equipment arrangement by means of rotation;

[0005] The workbench is provided with a blanking mechanism, which automatically blanks the connecting rod at the end of the integrated processing. At the same time, a storage shell is provided to collect the debris generated during the processing and automatically discharge it at the end of the integrated processing.

[0006] The workbench is provided with a track mechanism, and the track mechanism is used to cooperate with the blanking mechanism to change the angle at which the plate is placed in the blanking mechanism.

[0007] Preferably, the integrated processing mechanism includes a laser cutting machine, a laser cutting machine is installed on the top of the workbench, a connecting rod cracking machine is fixedly installed on the top of the workbench, a cross-section detection machine is fixedly installed on the top of the workbench, a bolt feeder is fixedly installed on the top of the workbench, a bolt tightening machine is fixedly installed on the top of the workbench, a deformation detector is fixedly installed on the top of the workbench, a bushing press is fixedly installed on the top of the workbench, a control console is fixedly connected to one side of the outer wall of the workbench, and a collecting cylinder is fixedly installed on the top of the workbench.

[0008] Preferably, the unloading mechanism includes a turntable, the top of the turntable is hinged with a placement plate, the bottom of the placement plate is fixedly connected to a storage shell, the inner wall of the placement plate is slidably connected to a splint A, the bottom of the placement plate is provided with a hollow groove, the outer wall of the placement plate is slidably connected to an L-plate, the bottom of the L-plate is fixedly connected to a splint B, the bottom of the splint B is fixedly connected to a baffle, the bottom of the storage shell is fixedly connected to a sliding track, the inner wall of the sliding track is slidably connected to a hinged slider, the bottom inner wall of the hinged slider is hinged to a sliding rod, and the bottom of the sliding rod is fixedly connected to a hemisphere.

[0009] Preferably, the top of the inner wall of the turntable is fixedly connected to the output shaft of the motor, the outer wall of the clamping plate A is fixedly connected to one end of the spring A, and the other end of the spring A is fixedly connected to the inner wall of the placement plate.

[0010] Preferably, the top of the L-plate is fixedly connected to one end of the spring B, the inner wall of the placement plate is fixedly connected to the other end of the spring B, and the outer wall of the sliding rod is slidably connected to the outer wall of the turntable.

[0011] Preferably, an outer wall of the hinged slider is fixedly connected to an inclined panel A, and a bottom of the baffle is fixedly connected to an inclined panel B.

[0012] Preferably, the outer wall of the inclined panel A contacts the outer wall of the inclined panel B.

[0013] Preferably, the top of the hemisphere is fixedly connected to one end of a spring C, and the other end of the spring C is fixedly connected to the outer wall of the turntable.

[0014] Preferably, the track mechanism includes an annular track, the outer wall of the annular track is fixedly connected to the top of the workbench, and the inner wall of the annular track is fixedly connected with annular blocks A, B, C and D.

[0015] Preferably, a groove is provided on the top of the annular block B, and several groups of grooves are provided, and the several groups of grooves are evenly distributed on the top of the annular block B. A notch A is provided on the top of the annular block C, and a notch B is provided on the top of the annular block D. The depth of the notch B is greater than that of the notch A, and the outer wall of the hemisphere is slidably connected to the inner wall of the annular track.

[0016] Working principle: The connecting rod to be processed is placed on the top of the inner wall of the placement plate, and the spring A drives the clamping plate A to move outward to cooperate with the clamping plate B to clamp the outer wall of the connecting rod, thereby ensuring the stability of the connecting rod during subsequent processing.

[0017] Then, by starting the motor, the motor drives the turntable to rotate, and the turntable drives the top placement plate to move to the bottom of the laser cutting machine first, and the laser cutting machine is used to cut the connecting rod fixed on the placement plate. After the cutting is completed, the cut connecting rod needs to be inspected by the cross-section detection machine, and the motor is continued to start to drive the turntable to rotate. At this time, the turntable drives the placement plate to rotate and move toward the cross-section detection machine, and is affected by the bottom annular block B, so that the top of the annular block B is uneven, and the sliding rod moves vertically along the uneven top, so that the sliding rod drives the storage plate to produce a certain shaking effect. Through the shaking force, the debris generated in the laser cutting process falls downward, and the hollow groove is opened on the inner wall of the placement plate, so that the debris falls into the inner wall of the storage shell for storage, thereby realizing the effect of automatic debris cleaning during the movement of the processing flow, further improving the processing efficiency.

[0018] Then, by rotating, the connecting rod to be processed is moved in turn to the bottom of the bolt feeder, bolt tightening machine, deformation detector, and bushing press for processing. When it continues to rotate after processing is completed, it is affected by the top notch A of the bottom ring block C. Due to the depth of the notch A, the sliding rod moves downward for a distance, so that the sliding rod drives the top placement plate to flip downward along the top of the turntable, and the slider moves outward along the inner wall of the sliding track. In the process of the slider moving outward, the inclined plate A is driven to squeeze the outer wall of the inclined plate B, so that the inclined plate B moves downward under the squeezing effect, and the inclined plate drives the baffle and the splint B to move downward, so that the splint B is separated from the top of the placement plate, thereby automatically releasing the clamping and fixing effect of the connecting rod, and in conjunction with the inclined state of the placement plate at this time, the connecting rod slides outward along the inner wall of the placement plate, thereby achieving the purpose of automatic unloading.

[0019] The motor continues to drive the turntable to rotate, so that the turntable drives the placement plate to move to the top of the annular block D. At this time, affected by the notch B opened on the annular block D, the sliding rod moves downward a greater distance, so that the slider and the inclined plate A continue to squeeze the inclined plate B outward, so that the inclined plate B drives the baffle and the splint B downward for a second time, and the splint B moves to the bottom of the storage shell. Cooperating with the tilted state of the storage shell at this time, the debris collected and stored in the inner wall of the storage shell is discharged outward, and a collection cylinder is provided on the top of the workbench to collect and store the poured debris, thereby achieving the effect of automatic debris processing, which not only ensures the cleanliness and hygiene of the working environment, but also makes the device more convenient and humane to use during the processing.

[0020] The present invention provides an integrated connecting rod cracking processing rotary table based on online cross-section identification. It has the following beneficial effects:

[0021] 1. The present invention sets up an integrated processing mechanism, integrates multiple groups of equipment used for connecting rod cracking processing, such as laser cutting machine, connecting rod cracking machine, cross-section detection machine, bolt feeder, bolt tightening machine, deformation detector and bushing press, and installs them on the top of the workbench. The turntable is driven by a motor to rotate, so that the connecting rod is processed in an integrated manner according to the process and equipment arrangement sequence, which greatly reduces the number of processing equipment and the occupied space, reduces production costs, and also reduces the number of workers and labor intensity, thereby improving production efficiency.

[0022] 2. The present invention provides a blanking mechanism, which can automatically perform blanking when the integrated processing of the connecting rod is completed, thereby realizing automatic blanking and debris processing of the connecting rod processing, improving processing efficiency and the cleanliness of the working environment. The placement plate in the blanking mechanism clamps and fixes the connecting rod through the clamping plate A and the clamping plate B, ensuring the stability of the connecting rod during the processing. After the processing is completed, the annular block C and the annular block D move the sliding rod downward, driving the clamping plate B to separate from the placement plate, realizing automatic blanking, and at the same time tilting the storage shell to discharge the debris, realizing automatic processing of the debris.

[0023] 3. The present invention is provided with a slide rail mechanism, so that when the connecting rod is clamped by the placement plate, the annular block B at the bottom of the placement plate causes the sliding rod to move up and down, driving the storage plate to shake, so that the chip cleaning function is automatically realized during the movement, which improves the processing efficiency and makes the deformation detector more accurate when detecting the connecting rod after cutting. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 A perspective view of the present invention;

[0025] Figure 2 Schematic diagram of the motor structure of the present invention;

[0026] Figure 3 This is a schematic diagram of the bottom structure of the workbench of the present invention;

[0027] Figure 4 Schematic diagram of the annular slide rail structure of the present invention;

[0028] Figure 5 It is a schematic diagram of the turntable structure of the present invention;

[0029] Figure 6 Schematic diagram of the blanking mechanism of the present invention;

[0030] Figure 7 It is a schematic diagram of the sliding rod structure of the present invention;

[0031] Figure 8 Schematic diagram of the cross-sectional structure of the storage shell of the present invention;

[0032] Figure 9This is a schematic diagram of the structure of the splint B and the baffle of the present invention;

[0033] Figure 10 This is a schematic cross-sectional structural diagram of the inclined panel A of the present invention;

[0034] Figure 11 This is a schematic structural diagram of the inclined panel C and the inclined panel D of the present invention;

[0035] Figure 12 This is a schematic diagram of the output end structure of the connecting rod cracking machine of the present invention;

[0036] Figure 13 This is a flow chart of cross-section detection of the present invention.

[0037] Among them, 1. Workbench; 2. Bushing press; 3. Deformation detector; 4. Bolt tightening machine; 5. Bolt feeder; 6. Connecting rod cracking machine; 7. Section detection machine; 8. Laser cutting machine; 9. Track mechanism; 901. Annular track; 902. Annular block A; 903. Annular block B; 904. Annular block D; 905. Annular block C; 10. Unloading mechanism; 101. Turntable; 102. Placement plate; 1 03. Storage shell; 104. Clamp A; 105. Spring A; 106. Hollow groove; 107. Clamp B; 108. Baffle; 109. Sliding track; 110. Articulated slider; 111. Sliding rod; 112. Spring C; 113. Hemisphere; 114. Inclined panel A; 115. Inclined panel B; 116. L-plate; 117. Spring B; 11. Motor; 12. Control console; 13. Collection tube. DETAILED DESCRIPTION

[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0039] Example:

[0040] Please see the attached Figure 1 - Attachment Figure 13An embodiment of the present invention provides an integrated connecting rod cracking processing rotary table based on online cross-section identification, including a workbench 1. A motor 11 is fixedly connected to the top of the workbench 1, so that the workbench 1 provides a supporting and fixing effect for the motor 11. The output shaft of the motor 11 drives the turntable 101 to rotate along the top of the workbench 1. A laser cutting machine 8 is installed on the top of the workbench 1, so that the workbench 1 provides a supporting and fixing effect for the laser cutting machine 8. The laser cutting machine 8 performs laser cutting processing on the connecting rod. A connecting rod cracking machine 6 is fixedly installed on the top of the workbench 1, and the connecting rod moved to the bottom is cracked by the connecting rod cracking machine 6.

[0041] The connecting rod cracker 6 is composed of two fitted stepped partially hollowed semi-cylinders. The two lowermost semi-cylinders have the same diameter as the connecting rod big end, and the upper part is connected to the electric servo hydraulic press, thereby providing the force required for the connecting rod to break. At the same time, at the contact position between the cracking rod and the connecting rod big end, at 1 / 3 and 2 / 3 of the height of the connecting rod big end, there are four air holes in the directions of 60°, 120°, 240° and 300° of the circumference. At the same time, the air holes are connected to the pressure air pipe from the inside of the cracking rod and are connected to the pneumatic detection device. The wear of the cracking rod is detected by the leakage volume, which is used to detect and improve the quality of the connecting rod cracking.

[0042] A cross-section inspection machine 7 is fixedly installed on the top of the workbench 1. The specific inspection process of the cross-section inspection machine 7 is as follows:

[0043] 1. Real-time camera acquisition of fracture surface images: Two obliquely opposed industrial cameras are used to acquire images of the fracture surface of the connecting rod;

[0044] 2. Fracture surface image preprocessing: Use Gaussian filtering to remove noise from the image, use histogram equalization to enhance the image contrast, and use perspective transformation and radial distortion correction to correct the image;

[0045] 3. Fracture surface feature shape extraction: Use the Sobel algorithm to detect edges in the image, use the Gabor filter to extract texture features, and finally calculate the cross-sectional shape features, such as defect length and defect area;

[0046] 4. Fracture surface characteristic defect detection: A convolutional neural network algorithm is used to identify, classify, and determine whether defects on the fracture surface are qualified. Fracture surface defects are mainly divided into two types: step defects and slag defects. Step defects determine whether the connecting rod cracking is qualified by the defect length. When the defect length caused by the step defect is greater than 1mm, the defect is considered to be serious and the connecting rod is judged to be unqualified. Slag defects determine whether the connecting rod cracking is qualified by the defect area. When a slag defect exists on the fracture surface, a noticeable pit will appear. The area enclosed by the pit is the defect area caused by the slag defect. When the defect area is greater than 4mm2, the defect is considered to be serious and the connecting rod is judged to be unqualified.

[0047] 5. Product quality judgment: When the product processing quality is judged to be qualified, the product enters the next processing station; when the product processing quality is judged to be unqualified, the connecting rod stops the subsequent processing process and outputs a visual inspection report. At the same time, when the product processing quality qualification rate is lower than 98%, the alarm sounds, and the operator should investigate and eliminate the warning and the causes of the quality defects.

[0048] A bolt feeder 5 is fixedly installed on the top of the workbench 1. A bolt tightening machine 4 is fixedly installed on the top of the workbench 1. The bolts are installed on the connecting rod through the bolt feeder 5 and the bolt tightening machine 4. A deformation detector 3 is fixedly installed on the top of the workbench 1 to detect whether the quality of the connecting rod meets the standards. A bushing press 2 is fixedly installed on the top of the workbench 1. A control console 12 is fixedly connected to one side of the outer wall of the workbench 1. A collecting cylinder 13 is fixedly installed on the top of the workbench 1 for collecting and storing debris.

[0049] The workbench 1 is provided with a blanking mechanism 10, which includes a turntable 101. The top of the inner wall of the turntable 101 is fixedly connected to the output shaft of the motor 11, so that the turntable 101 rotates along the output shaft of the motor 11. The top of the turntable 101 is hinged with a placement plate 102, so that the placement plate 102 rotates along the top of the turntable 101, thereby changing the angle of the placement plate 102. During normal processing, the placement plate 102 is in a horizontal state. When unloading is required, the placement plate 102 is tilted. The connecting rod on the placing plate 102 is used for cutting. The bottom of the placing plate 102 is fixedly connected to the storage shell 103, so that the storage shell 103 rotates with the placing plate 102. The inner wall of the placing plate 102 is slidably connected to the clamping plate A104, so that the clamping plate A104 moves laterally along the inner wall of the placing plate 102, thereby cooperating with the clamping plate B107 to clamp the connecting rod to ensure stability during the processing. The outer wall of the clamping plate A104 is fixedly connected to one end of the spring A105, and the other end of the spring A105 is fixed to the placing plate 102. The inner wall of the placement plate 102 is fixedly connected, and the force of the spring A105 drives the splint A104 to move outward, so that the splint A104 maintains the clamping and fixing effect on the connecting rod. The bottom of the placement plate 102 is provided with a hollow groove 106, so that the debris on the placement plate 102 will fall into the inner wall of the storage shell 103 along the hollow groove 106 during the shaking process. The outer wall of the placement plate 102 is slidably connected to the L plate 116, and the bottom of the L plate 116 is fixedly connected to the splint B107. The design of the L plate 116 keeps the splint B107 along the placement plate The outer wall of 102 moves vertically, and the bottom of the splint B107 is fixedly connected with the baffle 108, so that the splint B107 drives the baffle 108 to move vertically at the same time, maintaining the stability of the baffle 108 when moving. The top of the L plate 116 is fixedly connected to one end of the spring B117, and the inner wall of the placement plate 102 is fixedly connected to the other end of the spring B117. The force of the spring B117 drives the L plate 116 and the splint B107 to move upward, maintaining the clamping and fixing effect of the splint B107 and the splint A104 on the connecting rod.

[0050] The bottom of the storage shell 103 is fixedly connected to a sliding track 109, and the inner wall of the sliding track 109 is slidably connected to a hinged slider 110, so that the vertical movement of the sliding rod 111 will drive the hinged slider 110 to move laterally along the inner wall of the sliding track 109, and the bottom inner wall of the hinged slider 110 is hinged to a sliding rod 111, and the outer wall of the sliding rod 111 is slidably connected to the outer wall of the turntable 101 to maintain the stability of the sliding rod 111 during the vertical movement. The bottom of the sliding rod 111 is fixedly connected to a hemisphere 113, and the top of the hemisphere 113 is fixedly connected to one end of the spring C112, and the other end of the spring C112 is fixedly connected to the outer wall of the turntable 101, and the force of the spring C112 drives the hemisphere 113 to always remain in contact with the top of the inner wall of the track mechanism 9.

[0051] The outer wall of the articulated slider 110 is fixedly connected to the inclined panel A114, so that the articulated slider 110 drives the inclined panel A114 to move laterally at the same time during its lateral movement. The bottom of the baffle 108 is fixedly connected to the inclined panel B115. The outer wall of the inclined panel A114 contacts the outer wall of the inclined panel B115, so that the inclined panel A114 actively moves to squeeze the inclined surface of the inclined panel B115, so that the inclined panel B115 drives the splint B107 and the baffle 108 to move vertically.

[0052] A track mechanism 9 is provided on the workbench 1, and the track mechanism 9 includes a circular track 901. The outer wall of the circular track 901 is fixedly connected to the top of the workbench 1, so that the workbench 1 provides a supporting and fixing effect for the circular track 901. The inner wall of the circular track 901 is fixedly connected with an annular block A902, annular block B903, annular block C905 and annular block D904, and the annular block A902 is used to ensure the horizontal lateral movement of the placement plate 102, the annular block B903 causes the placement plate 102 to produce a shaking effect during the movement, the annular block C905 causes the placement plate 102 to tilt 30 degrees, and the annular block D904 causes the placement plate 102 to tilt 60 degrees.

[0053] A groove is provided on the top of the annular block B903, and there are several groups of grooves. The grooves are evenly distributed on the top of the annular block B903, so that when the placement plate 102 passes through the groove, the sliding rod 111 at the bottom moves back and forth up and down, causing the top placement plate 102 to produce a shaking effect. A notch A is provided on the top of the annular block C905, and a notch B is provided on the top of the annular block D904. The depth of notch B is greater than that of notch A. The outer wall of the hemisphere 113 is slidably connected to the inner wall of the annular track 901.

[0054] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An integrated connecting rod cracking processing rotary table based on online cross section identification, comprising a workbench (1), characterized in that: The top of the workbench (1) is fixedly connected to a motor (11), and an integrated processing mechanism is provided on the top of the workbench (1). The integrated processing mechanism installs multiple sets of connecting rod cracking processing equipment on the top of the workbench (1) and performs integrated processing in accordance with the process and equipment arrangement sequence by means of rotation; The workbench (1) is provided with a blanking mechanism (10), which enables the connecting rod to be automatically blanked at the end of the integrated processing. At the same time, a storage shell (103) is provided to collect debris generated during the processing and automatically discharge it at the end of the integrated processing. The workbench (1) is provided with a track mechanism (9), and the track mechanism (9) is used to cooperate with the blanking mechanism (10) to perform linkage and change the angle of the placement plate (102) in the blanking mechanism (10); The integrated processing mechanism includes a laser cutting machine (8), a laser cutting machine (8) is installed on the top of the workbench (1), a connecting rod cracking machine (6) is fixedly installed on the top of the workbench (1), a cross-section detection machine (7) is fixedly installed on the top of the workbench (1), a bolt feeder (5) is fixedly installed on the top of the workbench (1), a bolt tightening machine (4) is fixedly installed on the top of the workbench (1), a deformation detector (3) is fixedly installed on the top of the workbench (1), a bushing press (2) is fixedly installed on the top of the workbench (1), a control console (12) is fixedly connected to one side of the outer wall of the workbench (1), and a collecting cylinder (13) is fixedly installed on the top of the workbench (1); The unloading mechanism (10) comprises a turntable (101), a placement plate (102) is hingedly connected to the top of the turntable (101), a storage shell (103) is fixedly connected to the bottom of the placement plate (102), a clamping plate A (104) is slidably connected to the inner wall of the placement plate (102), a hollow groove (106) is provided at the bottom of the placement plate (102), an L-plate (116) is slidably connected to the outer wall of the placement plate (102), and the L-plate (11 6) is fixedly connected to a clamping plate B (107) at the bottom, the clamping plate B (107) is fixedly connected to a baffle (108) at the bottom, the storage shell (103) is fixedly connected to a sliding track (109), the inner wall of the sliding track (109) is slidably connected to a hinged slider (110), the inner wall of the bottom of the hinged slider (110) is hinged to a sliding rod (111), and the bottom of the sliding rod (111) is fixedly connected to a hemisphere (113); The top of the hemisphere (113) is fixedly connected to one end of a spring C (112), and the other end of the spring C (112) is fixedly connected to the outer wall of the turntable (101); The track mechanism (9) comprises an annular track (901), the outer wall of the annular track (901) is fixedly connected to the top of the workbench (1), and the inner wall of the annular track (901) is fixedly connected to an annular block A (902), an annular block B (903), an annular block C (905) and an annular block D (904).

2. The integrated connecting rod cracking processing rotary table based on online cross section identification according to claim 1 is characterized in that: The top of the inner wall of the turntable (101) is fixedly connected to the output shaft of the motor (11), the outer wall of the clamping plate A (104) is fixedly connected to one end of the spring A (105), and the other end of the spring A (105) is fixedly connected to the inner wall of the placement plate (102).

3. The integrated connecting rod cracking processing rotary table based on online cross section identification according to claim 1 is characterized in that: The top of the L-plate (116) is fixedly connected to one end of the spring B (117), the inner wall of the placement plate (102) is fixedly connected to the other end of the spring B (117), and the outer wall of the sliding rod (111) is slidably connected to the outer wall of the turntable (101).

4. The integrated connecting rod cracking processing rotary table based on online cross section identification according to claim 1 is characterized in that: The outer wall of the hinged slider (110) is fixedly connected to an inclined panel A (114), and the bottom of the baffle (108) is fixedly connected to an inclined panel B (115).

5. The integrated connecting rod cracking processing rotary table based on online cross section identification according to claim 4 is characterized in that: The outer wall of the inclined panel A (114) contacts the outer wall of the inclined panel B (115).

6. The integrated connecting rod cracking processing rotary table based on online cross section identification according to claim 1 is characterized in that: The top of the annular block B (903) is provided with a groove, and the groove is provided in several groups. The grooves are evenly distributed on the top of the annular block B (903). The top of the annular block C (905) is provided with a notch A. The top of the annular block D (904) is provided with a notch B. The depth of the notch B is greater than that of the notch A. The outer wall of the hemisphere (113) is slidably connected to the inner wall of the annular track (901).

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