Automatic locking screw tightening device with tail breakage and adhesion prevention function
By designing an automatic lock screw tightening device including loading, tail breaking, detection and tightening mechanism, the problem of dimensional deviation and specifications in the material transmission process in the prior art is solved, and an efficient and accurate material processing and tightening process is achieved, which improves the yield rate and the degree of automation of the production line.
Patent Information
- Application Number
- CN202510662519.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2045-05-22
AI Technical Summary
The existing tightening devices lack a flexible material adjustment system, which leads to prone to dimensional deviations or specifications that do not meet the requirements during material transfer, and lack of tail-breaking and sticky components, resulting in a decrease in yield and an increase in unqualified products.
An automatic locking screw tightening device including a feeding mechanism, a tail breaking mechanism, a detection mechanism, a tightening mechanism and a feeding conveyor belt is designed. The feeding mechanism ensures that the material size and specifications meet the requirements through the screening machine and spacing components. The tail breaking mechanism achieves accurate cutting by pushing the electric cylinder, the tail breaking motor and the blade. The detection mechanism ensures that the material meets the standards through the probe and pressure sensor. The tightening mechanism achieves high-precision tightening through the hydraulic cylinder and the electromagnetic tightening head.
It realizes efficient automated workflow, ensures the accuracy and specification compliance of materials during the transmission process, reduces the generation of unqualified products, and improves the yield rate and the degree of automation of the production line.
Smart Images

Figure CN120170461A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of tightening devices, and specifically relates to an automatic screw-locking tightening device with a function of preventing broken tail adhesion. Background Art
[0002] With the continuous development of industrial automation technology, tightening devices are widely used in automated production lines, mainly achieving tightening operations through robotic arms, pneumatic devices, or simple electric drive systems.
[0003] In the prior art, tightening is directly performed through mechanical devices. However, due to the lack of end-breaking treatment, the strength of the raw materials may be insufficient, resulting in cracking of the raw materials.
[0004] Most of the existing tightening devices lack a flexible material adjustment system. During the material transmission process, problems such as size deviation or non-compliance with requirements are likely to occur. The lack of end-breaking treatment leads to a decrease in the finished product rate, and the lack of components for detecting adhesion causes the broken tail part of the screw to adhere and flow into the finished product area, thus increasing the generation of unqualified products. Therefore, those skilled in the art have provided an automatic screw-locking tightening device with a function of preventing broken tail adhesion to solve the problems raised in the above background. Summary of the Invention
[0005] The purpose of the present invention is to provide an automatic screw-locking tightening device with a function of preventing broken tail adhesion to solve the problems raised in the prior art.
[0006] To achieve the above purpose, the present invention provides the following technical solutions: The tightening device includes a feeding mechanism, an end-breaking mechanism, a detection mechanism, a tightening mechanism, and a discharging conveyor belt. The feeding mechanism and the tightening mechanism are firmly connected, the end-breaking mechanism and the tightening mechanism are firmly connected, the detection mechanism and the tightening mechanism are firmly connected, the discharging conveyor belt and the tightening mechanism are firmly connected. The end-breaking mechanism is located below the feeding mechanism, and the detection mechanism is located below the end-breaking mechanism.
[0007] By adopting the above technical solution, the tightening device realizes an efficient automated workflow through the precise coordination of various modules. In the specific implementation, the feeding mechanism is tightly connected with the tightening mechanism to ensure that the material can be transmitted to the tightening system during the feeding process. The tight connection between the tail cutting mechanism and the tightening mechanism ensures that the material can be accurately cut and enter the subsequent tightening link during the tail cutting process. The detection mechanism is tightly connected to the tightening mechanism to ensure that each material is tested before tightening, ensuring the accuracy and high-quality output of the tightening process. The tight connection between the unloading conveyor belt and the tightening mechanism ensures that the material can be smoothly and stably delivered after tightening, avoiding omissions or failures in operation. In addition, during the on-site processing process, a wire thread sleeve can be added to the screw through a thread sleeve machine, thereby further preventing the possibility of cracking of the raw material and enhancing the rigidity after connection.
[0008] Furthermore, the feeding mechanism includes a screening machine, a spacing component and a lifting hydraulic cylinder, the screening machine is connected to the spacing component, the lifting hydraulic cylinder is transmission-connected to the spacing component, and the lifting hydraulic cylinder is fastened to the tightening mechanism.
[0009] By adopting the above technical solution, the feeding mechanism includes a screening machine, a spacing component and a lifting hydraulic cylinder. The screening machine is connected to the spacing component, and the feeding material is preliminarily screened by the screening machine to ensure that the size and specifications of the material meet the requirements. The spacing component is connected to the tightening mechanism through the lifting hydraulic cylinder, and the lifting hydraulic cylinder adjusts the height of the material by driving the spacing component to ensure accurate positioning and transportation of the material. The connection between the lifting hydraulic cylinder and the tightening mechanism ensures that the material can be accurately fed into the tightening link, improving the stability and accuracy of the entire workflow.
[0010] Furthermore, the spacing assembly includes a first electromagnetic block, a first magnetic block, a slide rail and a first elastic member. The first electromagnetic block and the first magnetic block are magnetically attracted to each other for transmission. The first elastic member and the first magnetic block are tightly connected. The first elastic member and the first electromagnetic block are tightly connected. The first electromagnetic block and the slide rail are tightly connected. The first magnetic block and the slide rail are slidably connected.
[0011] By adopting the above technical solution, the magnetic poles of the first electromagnetic block and the first magnetic block attract each other, generating a driving force to control the stable movement of the material. The first electromagnetic block is tightly connected to the slide rail to ensure that the electromagnetic block can slide smoothly, and the sliding connection of the first magnetic block on the slide rail ensures the precise adjustment of the material. The tight connection between the first elastic member and the first electromagnetic block and the first magnetic block provides the necessary elastic support to ensure the stability and reliability of the system operation. Through the cooperation of these components, the spacing assembly can efficiently and accurately adjust the material spacing, thereby ensuring the smooth progress of subsequent operations.
[0012] Further, the tail-cutting mechanism includes a pushing electric cylinder, a pushing block, a first tail-cutting motor, a first tail-cutting blade, a second tail-cutting motor, a second tail-cutting blade, a reciprocating assembly, and a sorting assembly. The pushing electric cylinder is fixedly connected to the tightening mechanism. The first tail-cutting motor is fixedly connected to the reciprocating assembly. The second tail-cutting motor is fixedly connected to the reciprocating assembly. The first tail-cutting motor is drivingly connected to the first tail-cutting blade. The second tail-cutting motor is drivingly connected to the second tail-cutting blade. The reciprocating assembly is fixedly connected to the tightening mechanism. The sorting assembly is fixedly connected to the tightening mechanism. The pushing electric cylinder is drivingly connected to the pushing block. The first tail-cutting blade is vertically placed, and the second tail-cutting blade is horizontally placed.
[0013] By adopting the above technical solutions, the pushing electric cylinder is fixedly connected to the tightening mechanism, and the pushing block is drivingly connected to the pushing electric cylinder. The movement of the pushing electric cylinder can push the material to a specified position. The first tail-cutting motor is connected to the first tail-cutting blade, and the blade cuts the material driven by the motor. The second tail-cutting motor cooperates with the second tail-cutting blade to perform the tail-cutting operation on the second section of the material. The reciprocating assembly includes a reciprocating motor, a crank rod, a reciprocating rod, a reciprocating frame, and a reciprocating track. The reciprocating motor drives the crank rod to perform reciprocating motion. The reciprocating rod is hinged to the reciprocating frame, and the reciprocating frame slides on the reciprocating track to realize the reciprocating cutting action of the blade. The sorting assembly sorts the materials through the cooperation of the sorting motor and the sorting disk, ensuring that various materials enter the next process as required. Through these designs, the tail-cutting mechanism can efficiently and accurately complete the cutting and sorting of materials, improving the efficiency of the production line.
[0014] Further, the sorting assembly includes a sorting disk, a clamping disk, a clamping motor, a sorting motor, a fastening block, and a fastening electric cylinder. The sorting motor is drivingly connected to the sorting disk. The sorting motor is fixedly connected to the tightening mechanism. The fastening electric cylinder is drivingly connected to the fastening block. The fastening electric cylinder is fixedly connected to the tightening mechanism. The clamping motor is fixedly connected to the sorting disk. The clamping motor is drivingly connected to the clamping disk.
[0015] By adopting the above technical solutions, the connection between the sorting motor and the tightening mechanism ensures that the material sorting process can be efficiently and accurately executed. The clamping motor is fixedly connected to the clamping disk, driving the clamping disk to perform the clamping operation to ensure the stability of the material during the sorting process. The fastening electric cylinder is drivingly connected to the fastening block, and the fastening electric cylinder drives the fastening block to clamp and fix the material, so as to ensure that the material can smoothly enter the subsequent process. Through the cooperation of the sorting assembly, the material sorting and processing can be efficiently and accurately completed, improving the automation level of the production line.
[0016] Further, the reciprocating assembly includes a reciprocating motor, a crank rod, a reciprocating rod, a reciprocating frame, and a reciprocating track. The reciprocating motor is fixedly connected to the tightening mechanism. The reciprocating motor is drivingly connected to the crank rod. The crank rod is drivingly connected to the reciprocating rod. The reciprocating rod is hinged to the reciprocating frame. The reciprocating frame is slidably connected to the reciprocating track. Both the first tail-cutting motor and the second tail-cutting motor are fixedly connected to the reciprocating frame.
[0017] By adopting the above technical solution, the reciprocating motor drives the reciprocating rod to reciprocate through the crank rod, the reciprocating rod is hinged to the reciprocating frame, and the reciprocating frame slides on the reciprocating track to complete the precise reciprocating motion of the material. The sliding connection between the reciprocating frame and the track enables the reciprocating assembly to move accurately on a stable track. The first tail cutting motor and the second tail cutting motor are connected to the reciprocating frame to ensure that the tail cutting blades can work synchronously. Through the cooperation of these components, the reciprocating assembly realizes a stable and efficient material processing process, ensures the smooth progress of operations such as tail cutting and sorting, and reduces material errors and operational errors.
[0018] Furthermore, the detection mechanism includes a probe, a pressure sensor and a lifting electric cylinder, the lifting electric cylinder and the tightening mechanism are fastened together, the lifting electric cylinder and the probe are transmission-connected, and the probe and the pressure sensor are fastened together.
[0019] By adopting the above technical solution, the lifting cylinder can adjust the height of the probe as needed by connecting it to the probe, so as to perform accurate material detection. The probe is tightly connected to the pressure sensor to monitor the status of the material in real time, ensure that the material is fully tested before tightening, detect the pressure changes of the material, ensure that the material meets the standards, and avoid operational problems caused by material defects. Through the high-precision detection of the detection mechanism, the entire production process can ensure the quality of the material and the reliability of each process.
[0020] Furthermore, the tightening mechanism includes a tightening frame, a transverse electric wire rail, a longitudinal electric wire rail, a clamp, a tightening hydraulic cylinder, a tightening motor and an electromagnetic tightening head. The longitudinal electric wire rail, the clamp, the tightening hydraulic cylinder, the tightening motor and the electromagnetic tightening head are each provided with two, the unloading conveyor belt and the tightening frame are fastened and connected, the lifting hydraulic cylinder and the tightening frame are fastened and connected, the pushing electric cylinder and the tightening frame are fastened and connected, the snap-on electric cylinder and the tightening frame are fastened and connected, the reciprocating motor and the tightening frame are fastened and connected, the lifting electric cylinder and the tightening frame are fastened and connected, the sorting motor and the tightening frame are fastened and connected, the clamp and the longitudinal electric wire rail are slidably connected, the tightening hydraulic cylinder and the transverse electric wire rail are slidably connected, the tightening hydraulic cylinder and the tightening motor are transmission connected, and the tightening motor and the electromagnetic tightening head are transmission connected.
[0021] By adopting the above technical solutions, the tightening frame is firmly connected to the system through the blanking conveyor belt to ensure the stable transportation of materials during the tightening process. The lifting hydraulic cylinder is firmly connected to the tightening frame to adjust the height of the materials and ensure that the materials can be correctly fed into the tightening position. The pushing electric cylinder and the fastening electric cylinder are connected to the tightening frame to ensure that the materials can be stably clamped and pushed to the correct position for tightening operations. The reciprocating motor drives the tightening frame to achieve reciprocating motion through the crank rod, ensuring the accuracy and stability during the tightening process. The connection between the sorting motor and the tightening frame ensures that the materials have been correctly sorted and are ready for tightening before tightening. The sliding connection between the tightening hydraulic cylinder and the transverse electric rail, and the transmission connection between the tightening motor and the electromagnetic tightening head ensure that the materials can receive uniform and accurate tightening force during the tightening process, ultimately achieving a high-quality tightening effect. Through the cooperation of these components, the tightening mechanism can efficiently and stably complete the tightening task of the materials, improving the automation level and working efficiency of the entire production line.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows: In the feeding mechanism, the screening machine and the spacing component precisely adjust the material spacing through the lifting hydraulic cylinder to ensure that the materials accurately enter the tightening mechanism during transmission, avoiding material errors and the entry of defective products. In particular, the cooperation between the first electromagnetic block and the first magnetic block utilizes the magnetic pole attraction effect, enabling the spacing component to stably transport materials without interfering with the materials, improving the overall feeding accuracy; the tail-breaking mechanism realizes the accurate cutting and sorting of materials through the precise cooperation of the pushing electric cylinder, the pushing block, the tail-breaking motor, and the tail-breaking blade. In the reciprocating component, the reciprocating motor drives the reciprocating rod through the crank rod, enabling the tail-breaking blade to achieve high-precision reciprocating motion and ensuring the precise positioning of the materials during cutting. The cooperation between the sorting motor and the sorting disk, and the clamping motor and the clamping disk in the sorting component further improves the efficiency during the sorting process of the materials, enabling the materials to be accurately distributed to the subsequent processes as required; this efficient cutting and sorting system enables precise control of each step in the production process, reducing material waste caused by errors. In the detection mechanism, the probe and the pressure sensor adjust the height of the probe through the lifting electric cylinder, enabling precise detection of the materials before tightening to ensure that the materials meet the quality standards. The pressure sensor real-time monitors the state of the materials and feeds back accurate pressure data, enabling the tightening mechanism to adjust the tightening force according to the real-time detection results. In the tightening mechanism, the sliding connection between the longitudinal electric rail and the fixture ensures that the materials do not displace during the tightening process, guaranteeing the uniformity and stability of the tightening force. The transmission connection between the electromagnetic tightening head and the tightening motor makes the tightening process more flexible and efficient, greatly improving the tightening accuracy and the automation level of the production line. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the spacing component structure of the present invention; Figure 3 This is a schematic diagram of the tail cutting mechanism structure of the present invention; Figure 4 This is a schematic diagram of the structure of the selected components of the present invention; Figure 5 It is a schematic diagram of the structure of the reciprocating assembly of the present invention; Figure 6 It is a schematic diagram of the structure of the detection mechanism of the present invention; Figure 7 It is a structural schematic diagram of the tightening mechanism of the present invention; Figure 8 It is a schematic structural diagram of the threaded socket of the product of the present invention.
[0024] In the figure: 1, feeding mechanism; 11, screening machine; 12, spacing assembly; 121, first electromagnetic block; 122, first magnetic block; 123, slide rail; 124, first elastic member; 13, lifting hydraulic cylinder; 2, tail cutting mechanism; 21, push electric cylinder; 22, push block; 23, first tail cutting motor; 24, first tail cutting blade; 25, second tail cutting motor; 26, reciprocating assembly; 261, reciprocating motor; 262, crank rod; 263, reciprocating rod; 264, reciprocating frame; 265, reciprocating track; 27. Sorting assembly; 271. Sorting disk; 272. Clamping disk; 273. Clamping motor; 274. Sorting motor; 275. Snap-fit block; 276. Snap-fit electric cylinder; 28. Second tail-breaking blade; 3. Detection mechanism; 31. Probe; 32. Pressure sensor; 33. Lifting electric cylinder; 4. Tightening mechanism; 41. Tightening frame; 42. Horizontal electric wire rail; 43. Longitudinal electric wire rail; 44. Clamp; 45. Tightening hydraulic cylinder; 46. Tightening motor; 47. Electromagnetic tightening head; 5. Unloading conveyor belt. DETAILED DESCRIPTION
[0025] 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.
[0026] See also Figure 1 - Figure 8 As shown, the present invention provides a technical solution for an automatic screw-locking and tightening device with a function of preventing tail breakage and adhesion: The tightening device includes a feeding mechanism 1, a tail-breaking mechanism 2, a detection mechanism 3, a tightening mechanism 4, and a discharging conveyor belt 5. The feeding mechanism 1 and the tightening mechanism 4 are firmly connected. The tail-breaking mechanism 2 and the tightening mechanism 4 are firmly connected. The detection mechanism 3 and the tightening mechanism 4 are firmly connected. The discharging conveyor belt 5 and the tightening mechanism 4 are firmly connected. The tail-breaking mechanism 2 is located below the feeding mechanism 1, and the detection mechanism 3 is located below the tail-breaking mechanism 2.
[0027] By adopting the above technical solution, the tightening device realizes an efficient automated workflow through the cooperation of precise modules. In specific implementation, the feeding mechanism 1 ensures that the material can be transported to the tightening system during the feeding process through its firm connection with the tightening mechanism 4. The firm connection between the tail-breaking mechanism 2 and the tightening mechanism 4 guarantees that the material can be accurately cut and enter the subsequent tightening link during the tail-breaking process. The firm connection between the detection mechanism 3 and the tightening mechanism 4 ensures that each material is inspected before tightening, guaranteeing the accuracy and high-quality output of the tightening process. The firm connection between the discharging conveyor belt 5 and the tightening mechanism 4 ensures that the material after tightening can be smoothly and stably sent out, avoiding omissions or failures in the operation.
[0028] Furthermore, the feeding mechanism 1 includes a screening machine 11, a spacing component 12, and a lifting hydraulic cylinder 13. The screening machine 11 and the spacing component 12 are connected in communication. The lifting hydraulic cylinder 13 is in transmission connection with the spacing component 12, and the lifting hydraulic cylinder 13 is firmly connected to the tightening mechanism 4.
[0029] By adopting the above technical solution, the feeding mechanism 1 includes a screening machine 11, a spacing component 12, and a lifting hydraulic cylinder 13. The screening machine 11 is connected in communication with the spacing component 12. The feeding material is preliminarily screened by the screening machine 11 to ensure that the size and specifications of the material meet the requirements. The spacing component 12 is connected to the tightening mechanism 4 through the lifting hydraulic cylinder 13. The lifting hydraulic cylinder 13 drives the spacing component 12 to adjust the height of the material, ensuring the accurate positioning and transportation of the material. The connection between the lifting hydraulic cylinder 13 and the tightening mechanism 4 ensures that the material can be accurately fed into the tightening link, improving the stability and accuracy of the entire workflow.
[0030] Furthermore, the spacing component 12 includes a first electromagnetic block 121, a first magnetic block 122, a slide rail 123, and a first elastic member 124. The first electromagnetic block 121 and the first magnetic block 122 are driven by magnetic attraction of opposite poles. The first elastic member 124 is firmly connected to the first magnetic block 122. The first elastic member 124 is firmly connected to the first electromagnetic block 121. The first electromagnetic block 121 is firmly connected to the slide rail 123. The first magnetic block 122 is slidably connected to the slide rail 123.
[0031] By adopting the above technical solution, the first electromagnetic block 121 and the first magnetic block 122 attract each other with opposite magnetic poles, generating a driving force to control the stable movement of the material. The first electromagnetic block 121 is fixedly connected to the slide rail 123 to ensure that the electromagnetic block can slide smoothly, while the sliding connection of the first magnetic block 122 on the slide rail 123 ensures the precise adjustment of the material. The fastening connection of the first elastic member 124 with the first electromagnetic block 121 and the first magnetic block 122 provides necessary elastic support to ensure the smoothness and reliability of the system operation. Through the cooperation of these components, the spacing assembly 12 can efficiently and precisely adjust the material spacing, thus ensuring the smooth progress of subsequent operations.
[0032] Further, the tail - cutting mechanism 2 includes a pushing electric cylinder 21, a pushing block 22, a first tail - cutting motor 23, a first tail - cutting blade 24, a second tail - cutting motor 25, a second tail - cutting blade 28, a reciprocating assembly 26 and a sorting assembly 27. The pushing electric cylinder 21 is fixedly connected to the tightening mechanism 4. The first tail - cutting motor 23 is fixedly connected to the reciprocating assembly 26. The second tail - cutting motor 25 is fixedly connected to the reciprocating assembly 26. The first tail - cutting motor 23 is in transmission connection with the first tail - cutting blade 24. The second tail - cutting motor 25 is in transmission connection with the second tail - cutting blade 28. The reciprocating assembly 26 is fixedly connected to the tightening mechanism 4. The sorting assembly 27 is fixedly connected to the tightening mechanism 4. The pushing electric cylinder 21 is in transmission connection with the pushing block 22. The first tail - cutting blade 24 is placed vertically, and the second tail - cutting blade 28 is placed horizontally.
[0033] By adopting the above technical solution, the pushing electric cylinder 21, through its fixed connection with the tightening mechanism 4 and the transmission connection between the pushing block 22 and the pushing electric cylinder 21, can push the material to a designated position. The first tail - cutting motor 23 is connected to the first tail - cutting blade 24, and the motor drives the blade to cut the material. The second tail - cutting motor 25 cooperates with the second tail - cutting blade 28 to perform the tail - cutting operation on the second section of the material. The reciprocating assembly 26 includes a reciprocating motor 261, a crank rod 262, a reciprocating rod 263, a reciprocating frame 264 and a reciprocating track 265. The reciprocating motor 261 drives the crank rod 262 to perform reciprocating motion. The reciprocating rod 263 is hinged to the reciprocating frame 264, and the reciprocating frame 264 slides on the reciprocating track 265 to realize the reciprocating cutting action of the blade. The sorting assembly 27 sorts the materials through the cooperation of the sorting motor 274 and the sorting disk 271 to ensure that various materials enter the next process as required. Through these designs, the tail - cutting mechanism 2 can efficiently and precisely complete the cutting and sorting of the materials, improving the efficiency of the production line.
[0034] Further, the sorting component 27 includes a sorting disk 271, a clamping disk 272, a clamping motor 273, a sorting motor 274, a fastening block 275, and a fastening electric cylinder 276. The sorting motor 274 is in transmission connection with the sorting disk 271, and the sorting motor 274 is fixedly connected to the tightening mechanism 4. The fastening electric cylinder 276 is in transmission connection with the fastening block 275, and the fastening electric cylinder 276 is fixedly connected to the tightening mechanism 4. The clamping motor 273 is fixedly connected to the sorting disk 271, and the clamping motor 273 is in transmission connection with the clamping disk 272.
[0035] By adopting the above technical solution, the connection between the sorting motor 274 and the tightening mechanism 4 ensures that the sorting process of the material can be executed efficiently and accurately. The clamping motor 273 is fixedly connected to the clamping disk 272, driving the clamping disk 272 to perform the clamping operation, ensuring the stability of the material during the sorting process. The fastening electric cylinder 276 is in transmission connection with the fastening block 275, and the fastening electric cylinder 276 drives the fastening block 275 to clamp and fix the material, thereby ensuring that the material can smoothly enter the subsequent process. Through the cooperation of the sorting component 27, the sorting and processing of the material can be completed efficiently and accurately, improving the automation level of the production line.
[0036] Further, the reciprocating component 26 includes a reciprocating motor 261, a crank rod 262, a reciprocating rod 263, a reciprocating frame 264, and a reciprocating track 265. The reciprocating motor 261 is fixedly connected to the tightening mechanism 4, the reciprocating motor 261 is in transmission connection with the crank rod 262, the crank rod 262 is in transmission connection with the reciprocating rod 263, the reciprocating rod 263 is hinged to the reciprocating frame 264, the reciprocating frame 264 is slidably connected to the reciprocating track 265, and both the first tail-cutting motor 23 and the second tail-cutting motor 25 are fixedly connected to the reciprocating frame 264.
[0037] By adopting the above technical solution, the reciprocating motor 261 drives the reciprocating rod 263 to perform reciprocating motion through the crank rod 262. The reciprocating rod 263 is hinged to the reciprocating frame 264, and the reciprocating frame 264 slides on the reciprocating track 265 to complete the precise reciprocating motion of the material. The sliding connection between the reciprocating frame 264 and the track enables the reciprocating component 26 to move precisely on a stable track. The first tail-cutting motor 23 and the second tail-cutting motor 25 are connected to the reciprocating frame 264 to ensure that the tail-cutting blades can work synchronously. Through the cooperation of these components, the reciprocating component 26 realizes a stable and efficient material processing process, ensuring the smooth progress of operations such as tail-cutting and sorting, and reducing material errors and operation mistakes.
[0038] Further, the detection mechanism 3 includes a probe 31, a pressure sensor 32, and a lifting electric cylinder 33. The lifting electric cylinder 33 is fixedly connected to the tightening mechanism 4, the lifting electric cylinder 33 is in transmission connection with the probe 31, and the probe 31 is fixedly connected to the pressure sensor 32.
[0039] By adopting the above technical solution, the lifting cylinder 33 is connected to the probe 31, and the height of the probe 31 can be adjusted as needed, so as to perform accurate material detection. The probe 31 is tightly connected to the pressure sensor 32 to monitor the state of the material in real time, ensure that the material is fully tested before tightening, detect the pressure change of the material, ensure that the material meets the standard, and avoid operational problems caused by material defects. Through the high-precision detection of the detection mechanism 3, the entire production process can ensure the quality of the material and the reliability of each process.
[0040] Furthermore, the tightening mechanism 4 includes a tightening frame 41, a transverse electric wire rail 42, a longitudinal electric wire rail 43, a clamp 44, a tightening hydraulic cylinder 45, a tightening motor 46 and an electromagnetic tightening head 47, and the longitudinal electric wire rail 43, the clamp 44, the tightening hydraulic cylinder 45, the tightening motor 46 and the electromagnetic tightening head 47 are each provided with two, the unloading conveyor belt 5 and the tightening frame 41 are fastened and connected, the lifting hydraulic cylinder 13 and the tightening frame 41 are fastened and connected, and the pushing electric cylinder 21 and the tightening frame 41 are fastened and connected. Tightening connection, the snap-on electric cylinder 276 and the tightening frame 41 are tightly connected, the reciprocating motor 261 and the tightening frame 41 are tightly connected, the lifting electric cylinder 33 and the tightening frame 41 are tightly connected, the sorting motor 274 and the tightening frame 41 are tightly connected, the clamp 44 and the longitudinal electric wire rail 43 are slidingly connected, the tightening hydraulic cylinder 45 and the transverse electric wire rail 42 are slidingly connected, the tightening hydraulic cylinder 45 and the tightening motor 46 are transmission connected, and the tightening motor 46 and the electromagnetic tightening head 47 are transmission connected.
[0041] By adopting the above technical solution, the tightening frame 41 is tightly connected to the system through the unloading conveyor belt 5 to ensure the smooth transportation of materials during the tightening process. The lifting hydraulic cylinder 13 is tightly connected to the tightening frame 41 to adjust the height of the material and ensure that the material can be correctly delivered to the tightening position. The pushing electric cylinder 21 and the snap-on electric cylinder 276 are connected to the tightening frame 41 to ensure that the material can be stably clamped and pushed to the correct position for tightening operation. The reciprocating motor 261 drives the tightening frame 41 to achieve reciprocating motion through the crank rod 262 to ensure the accuracy and stability during the tightening process. The connection between the sorting motor 274 and the tightening frame 41 ensures that the material has been correctly sorted and ready for tightening before tightening. The sliding connection between the tightening hydraulic cylinder 45 and the transverse electric wire rail 42, and the transmission connection between the tightening motor 46 and the electromagnetic tightening head 47, ensure that the material can obtain uniform and accurate tightening force during the tightening process, and finally achieve a high-quality tightening effect. Through the cooperation of these components, the tightening mechanism 4 can efficiently and stably complete the task of tightening the material, thereby improving the automation level and work efficiency of the entire production line.
[0042] Working principle of the present invention: In the feeding mechanism 1, the screening machine 11 and the spacing component 12 precisely adjust the material spacing through the lifting hydraulic cylinder 13, ensuring that the materials accurately enter the tightening mechanism 4 during the transmission process, avoiding material errors and the entry of unqualified products. In particular, the cooperation between the first electromagnetic block 121 and the first magnetic block 122 utilizes the attraction of magnetic poles, enabling the spacing component 12 to stably transport materials without interfering with the materials, improving the overall feeding accuracy; The tail-breaking mechanism 2 realizes the accurate cutting and sorting of materials through the precise cooperation of the pushing electric cylinder 21, the pushing block 22, the tail-breaking motor, and the tail-breaking blade. In the reciprocating component 26, the reciprocating motor 261 drives the reciprocating rod 263 through the crank rod 262, enabling the tail-breaking blade to perform high-precision reciprocating motion and ensuring the precise positioning of materials during cutting. The cooperation between the sorting motor 274 and the sorting disk 271, and the clamping motor 273 and the clamping disk 272 in the sorting component 27 further improves the efficiency during the sorting process of materials, enabling the materials to be accurately distributed to the subsequent processes as required; This efficient cutting and sorting system enables precise control of every step in the production process, reducing material waste caused by errors. In the detection mechanism 3, the probe 31 and the pressure sensor 32 adjust the height of the probe 31 through the lifting electric cylinder 33, enabling precise detection of materials before tightening to ensure that the materials meet the quality standards. The pressure sensor 32 monitors the state of the materials in real time and feeds back accurate pressure data, enabling the tightening mechanism 4 to adjust the tightening force according to the real-time detection results. In the tightening mechanism 4, the sliding connection between the longitudinal electric rail 43 and the fixture 44 ensures that the materials do not displace during the tightening process, guaranteeing the uniformity and stability of the tightening force. The transmission connection between the electromagnetic tightening head 47 and the tightening motor 46 makes the tightening process more flexible and efficient, greatly improving the tightening accuracy and the automation level of the production line.
[0043] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. The reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. An automatic screw locking and tightening device with a function of preventing broken tail adhesion, characterized in that: The tightening device includes a feeding mechanism (1), a tail-breaking mechanism (2), a detection mechanism (3), a tightening mechanism (4), and a discharging conveyor belt (5). The feeding mechanism (1) and the tightening mechanism (4) are fixedly connected. The tail-breaking mechanism (2) and the tightening mechanism (4) are fixedly connected. The detection mechanism (3) and the tightening mechanism (4) are fixedly connected. The discharging conveyor belt (5) and the tightening mechanism (4) are fixedly connected. The tail-breaking mechanism (2) is located below the feeding mechanism (1), and the detection mechanism (3) is located below the tail-breaking mechanism (2).
2. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 1, characterized in that: The feeding mechanism (1) includes a screening machine (11), a spacing component (12), and a lifting hydraulic cylinder (13). The screening machine (11) is communicated with the spacing component (12). The lifting hydraulic cylinder (13) is drivingly connected to the spacing component (12). The lifting hydraulic cylinder (13) is fixedly connected to the tightening mechanism (4).
3. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 2, characterized in that: The spacing component (12) includes a first electromagnetic block (121), a first magnetic block (122), a slide rail (123), and a first elastic member (124). The first electromagnetic block (121) and the first magnetic block (122) are attracted by magnetic poles for driving. The first elastic member (124) is fixedly connected to the first magnetic block (122). The first elastic member (124) is fixedly connected to the first electromagnetic block (121). The first electromagnetic block (121) is fixedly connected to the slide rail (123). The first magnetic block (122) is slidably connected to the slide rail (123).
4. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 3, characterized in that: The tail-breaking mechanism (2) includes a pushing electric cylinder (21), a pushing block (22), a first tail-breaking motor (23), a first tail-breaking blade (24), a second tail-breaking motor (25), a second tail-breaking blade (28), a reciprocating component (26), and a sorting component (27). The pushing electric cylinder (21) is fixedly connected to the tightening mechanism (4). The first tail-breaking motor (23) is fixedly connected to the reciprocating component (26). The second tail-breaking motor (25) is fixedly connected to the reciprocating component (26). The first tail-breaking motor (23) is drivingly connected to the first tail-breaking blade (24). The second tail-breaking motor (25) is drivingly connected to the second tail-breaking blade (28). The reciprocating component (26) is fixedly connected to the tightening mechanism (4). The sorting component (27) is fixedly connected to the tightening mechanism (4). The pushing electric cylinder (21) is drivingly connected to the pushing block (22). The first tail-breaking blade (24) is vertically placed, and the second tail-breaking blade (28) is horizontally placed.
5. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 4, characterized in that: The sorting and selecting component (27) includes a sorting and selecting disc (271), a clamping disc (272), a clamping motor (273), a sorting and selecting motor (274), a fastening block (275) and a fastening electric cylinder (276). The sorting and selecting motor (274) is in transmission connection with the sorting and selecting disc (271), the sorting and selecting motor (274) is fixedly connected to the tightening mechanism (4), the fastening electric cylinder (276) is in transmission connection with the fastening block (275), the fastening electric cylinder (276) is fixedly connected to the tightening mechanism (4), the clamping motor (273) is fixedly connected to the sorting and selecting disc (271), and the clamping motor (273) is in transmission connection with the clamping disc (272).
6. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 5, characterized in that: The reciprocating component (26) includes a reciprocating motor (261), a crank rod (262), a reciprocating rod (263), a reciprocating frame (264) and a reciprocating track (265). The reciprocating motor (261) is fixedly connected to the tightening mechanism (4), the reciprocating motor (261) is in transmission connection with the crank rod (262), the crank rod (262) is in transmission connection with the reciprocating rod (263), the reciprocating rod (263) is hinged to the reciprocating frame (264), the reciprocating frame (264) is slidably connected to the reciprocating track (265), and both the first tail-breaking motor (23) and the second tail-breaking motor (25) are fixedly connected to the reciprocating frame (264).
7. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 6, characterized in that: The detection mechanism (3) includes a probe (31), a pressure sensor (32) and a lifting electric cylinder (33). The lifting electric cylinder (33) is fixedly connected to the tightening mechanism (4), the lifting electric cylinder (33) is in transmission connection with the probe (31), and the probe (31) is fixedly connected to the pressure sensor (32).
8. The automatic screw locking and tightening device with a function of preventing broken tail adhesion according to claim 7, characterized in that: The tightening mechanism (4) includes a tightening frame (41), a transverse electric wire rail (42), a longitudinal electric wire rail (43), a fixture (44), a tightening hydraulic cylinder (45), a tightening motor (46) and an electromagnetic tightening head (47). There are two of the longitudinal electric wire rail (43), the fixture (44), the tightening hydraulic cylinder (45), the tightening motor (46) and the electromagnetic tightening head (47). The blanking conveyor belt (5) is fixedly connected to the tightening frame (41), the lifting hydraulic cylinder (13) is fixedly connected to the tightening frame (41), the pushing electric cylinder (21) is fixedly connected to the tightening frame (41), the fastening electric cylinder (276) is fixedly connected to the tightening frame (41), the reciprocating motor (261) is fixedly connected to the tightening frame (41), the lifting electric cylinder (33) is fixedly connected to the tightening frame (41), the sorting and selecting motor (274) is fixedly connected to the tightening frame (41), the fixture (44) is slidably connected to the longitudinal electric wire rail (43), the tightening hydraulic cylinder (45) is slidably connected to the transverse electric wire rail (42), the tightening hydraulic cylinder (45) is in transmission connection with the tightening motor (46), and the tightening motor (46) is in transmission connection with the electromagnetic tightening head (47).
Citation Information
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