Locking mechanism with pressing function
By designing a locking mechanism with a pressing function, the problem of loose screws caused by loose component connections was solved, resulting in a tighter component connection and improving the stability and completeness of the locking.
Patent Information
- Application Number
- CN202422942716.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-28
AI Technical Summary
When fastening certain components, if the connection between the components is not tight enough, the screws may loosen during the fastening process, affecting the overall performance and stability of the equipment, and even causing safety hazards.
A locking mechanism with a pressing function is designed, including a mounting frame, a first transport component, a locking device, a second transport component, and a pressing device. The product is transported to the pressing device by the second transport component for pressing, which enhances the tightness of the connection between the components. The pressing device uses a pressure component and an auxiliary plate to achieve a tight fit.
It improves the overall stability and completeness after locking, reduces the torque force required during locking, and ensures the structural integrity and functional reliability of the product.
Smart Images

Figure CN223506605U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of screw fastening mechanism technology, specifically to a fastening mechanism with a pressing function. Background Technology
[0002] In today's industrial production environment, many products are designed with multiple precision screw holes, which are crucial for the product's structural stability and overall performance. To achieve efficient and precise assembly, more and more companies are adopting mechanical automation to complete the screw fastening process. This automated fastening system can precisely screw each screw into each keyhole, greatly improving production efficiency.
[0003] However, when fastening certain components, the connection between the components is not tight enough, which prevents a firm bond from being formed during the fastening process. As a result, the screws are prone to loosening during subsequent use or in vibration environments. This not only affects the overall performance and stability of the equipment, but may also cause safety hazards. Utility Model Content
[0004] In view of the shortcomings of the prior art described above, the purpose of this utility model is to provide a locking mechanism with a pressing function to solve the problem that screws may loosen during locking of certain components due to insufficient tightness in the connection between the components.
[0005] To achieve the above and other related objectives, this utility model provides a locking mechanism with a pressing function, comprising:
[0006] Mounting rack;
[0007] A first transport component is disposed on the mounting frame and has an input end and an output end, both of which extend out of the mounting frame.
[0008] A locking device is fixedly disposed inside the mounting frame and is disposed adjacent to the first transport component;
[0009] The second transport component is fixedly mounted on the mounting frame and intersects with the first transport component. The second transport component has a lifting part and a transport part arranged along the transport direction of the second transport component. The lifting part intersects with the first transport component and reciprocates between a hidden position and a lifting position. Both the hidden position and the lifting position are located on the first transport component.
[0010] A pressing device is fixedly mounted on the mounting frame, and the end of the transport part away from the lifting part is located inside the pressing device. The pressing device is provided with a set of locking holes.
[0011] Optionally, the pressing device includes a pressing frame, a pressure component, and an auxiliary plate. The pressing frame is fixedly mounted on the mounting frame and has a pressing space. The mounting frame is provided with a pressing groove located below the pressing space and communicating with the pressing space. The pressure component is disposed inside the pressing groove, with its output end facing the pressing space. The auxiliary plate is located on the upper part of the pressing frame, and the locking hole group is disposed on the auxiliary plate.
[0012] Optionally, the mounting bracket is further provided with an auxiliary device, which includes an auxiliary output signal unit group, a signal receiver, and a signal converter. The auxiliary output signal unit group is located on the auxiliary plate and is correspondingly arranged with the locking hole group. The signal receiver is connected to the locking end of the locking device, and the signal converter is fixedly mounted on the mounting bracket. The signal receiver, the signal converter, and the auxiliary output signal unit are electrically connected to each other.
[0013] Optionally, the lifting section includes a lifting cylinder and a conveyor belt. The mounting frame is provided with a lifting groove located below the intersection of the first transport component and the second transport component. The lifting cylinder is disposed in the lifting groove, with its output end facing upward. The output end of the lifting cylinder is connected to the conveyor belt. The lifting cylinder drives the conveyor belt to reciprocate between the lifting section and the lifting position, and the conveyor belt is connected to the transport section.
[0014] Optionally, the locking device includes a mounting base, a fixing rod, a mounting rod, and a locking assembly. The mounting base has a protruding fixing plate with a vertically arranged mounting hole. The fixing rod is vertically mounted on the mounting base through the mounting hole. The fixing rod has multiple limiting grooves along its axial direction. The mounting rod is laterally mounted on the fixing rod through the limiting grooves. The number of mounting rods is the same as the number of limiting grooves. A receiving space is formed between two adjacent mounting rods. The locking assembly is segmented within the multiple receiving spaces. The locking assembly is fixedly connected to the mounting rod.
[0015] The locking assembly is connected to the mounting base via a guide rail.
[0016] Optionally, the mounting base is connected to the mounting frame via a moving device. The moving device includes a horizontal moving component, a vertical moving component, and a longitudinal moving component. The longitudinal moving component is fixedly connected to the mounting frame. The output end of the longitudinal moving component is connected to the horizontal moving component. The output end of the horizontal moving component is connected to the vertical moving component. The output end of the vertical moving component is connected to the mounting base.
[0017] Optionally, the mounting frame is further provided with a feeding device, which includes an arrangement assembly and a feeding assembly. The arrangement assembly includes a transport component, a vibrating component, and a conveying component. The transport component and the vibrating component are arranged adjacent to each other. The transport component is located above the inlet of the vibrating component. The output end of the transport component is connected to the inlet of the vibrating component through the conveying component. The vibrating component has an outlet, which is connected to the feeding assembly through a conveying pipe.
[0018] Optionally, the feeding assembly includes a housing and a cylinder. The housing is fixedly mounted on the mounting bracket. The top surface of the housing has a vertically parallel feeding port and a feed inlet. The feed inlet is connected to the conveying pipe. The housing has a horizontally arranged pushing hole. The output end of the cylinder is located in the pushing hole. The pushing hole is connected to the feeding port and the feed inlet, respectively.
[0019] Optionally, the mounting frame is further provided with a waste collection assembly, which includes a fixed base, a collection box, and a collection hopper. The fixed base is fixedly mounted on the mounting frame, and a receiving cavity is provided inside the fixed base. The collection box is disposed inside the receiving cavity, and an opening is provided at the top of the collection box. The collection hopper is located at the top of the fixed base, and the lower part of the collection hopper penetrates the fixed base and communicates with the opening of the collection box.
[0020] Optionally, a transport groove for transporting screws is provided inside the housing along the axial direction of the push hole, with one end of the transport groove located below the feed port and the other end of the transport groove located below the feed port.
[0021] As described above, the beneficial effects of the technical solution in this utility model include at least the following: by setting up a pressing device, when the product is transported to the designated location, the product is transported to the pressing device for pressing by the second transport component, and the pressed product is then locked. The connection between the various parts of the product is significantly enhanced, achieving a tighter and more seamless combination, greatly improving the overall stability and completion after locking, and the locking process is smoother and requires less torque. Attached Figure Description
[0022] Figure 1 The diagram shown is a structural schematic diagram of an exemplary embodiment of the present invention.
[0023] Figure 2 The diagram shown is a schematic representation of the structure after removing the baffle, which is an exemplary embodiment of the present invention.
[0024] Figure 3 The diagram shows a structural schematic of a mobile device as an exemplary embodiment of the present invention.
[0025] Figure 4 The diagram shows a structural schematic of a locking device as an exemplary embodiment of the present invention.
[0026] Figure 5 The diagram shows a structural schematic of a pressing device as an exemplary embodiment of the present invention.
[0027] Figure 6 The diagram shown is a structural schematic of the first transport component of an exemplary embodiment of the present invention.
[0028] Figure 7 The diagram shown is a structural schematic of a waste collection assembly as an exemplary embodiment of the present invention.
[0029] Part Number Explanation
[0030] 1. Mounting frame; 2. First transport assembly; 3. Locking device; 301. Mounting base; 302. Fixing rod; 303. Mounting rod; 304. Locking assembly; 305. Fixing plate; 306. Collar; 307. Guide rail; 4. Second transport assembly; 41. Lifting section; 411. Lifting cylinder; 412. Conveyor belt; 42. Transport section; 5. Pressing device; 501. Locking hole group; 502. Pressing frame; 503. Pressure assembly; 504. Auxiliary plate; 505. First pressing plate; 506. Pressure cylinder; 507. Second pressure plate; 6. Auxiliary device; 7. Moving device; 701. Lateral moving assembly; 702. Vertical moving assembly; 703. Longitudinal moving assembly; 8. Waste collection assembly; 801. Fixing base; 802. Collection box; 803. Collection hopper; 804. Receiving cavity. Detailed Implementation
[0031] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0032] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of the present invention. Therefore, the illustrations only show the components related to the present invention and are not drawn according to the number, shape and size of the components in actual implementation. In actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0033] Numerous details are explored in the following description to provide a more thorough explanation of embodiments of the present disclosure. However, it will be apparent to those skilled in the art that embodiments of the present disclosure may be practiced without these specific details. In other embodiments, well-known structures and devices are shown in block diagram form rather than in detail to avoid obscuring embodiments of the present disclosure.
[0034] It should be noted that in this embodiment, the transport direction of the first transport component is taken as the left-right direction, and the height direction of the mounting frame is taken as the up-down direction.
[0035] Please see Figure 1 , Figure 2 and Figure 3This utility model provides a locking mechanism with a pressing function, including a mounting frame 1, a first transport component 2, a locking device 3, a second transport component 4, and a pressing device 5. The mounting frame 1 has a rectangular cross-section and a mounting position in the middle. The first transport component 2, the locking device 3, the second transport component 4, and the pressing device 5 are all mounted on the mounting position. Baffles are provided around the mounting frame 1, and the baffles on the left and right sides of the mounting frame 1 have openings for the passage of the first transport component 2. The first transport component 2 is mounted on the mounting frame 1 and has an input end and an output end, both of which extend out of the mounting frame 1. The first transport component 2 is used to transport the product to a position adjacent to the locking device 3. The locking device 3 is fixedly mounted inside the mounting frame 1 and is adjacent to the first transport component 2. The input end of the second transport component 4 is located inside the first transport component 2. The second transport component 4 has a lifting part 41 and a transport part 42 arranged along the transport direction of the second transport component 4. The lifting part 41 is located inside the first transport component 2. The lifting part 41 can move up and down. When the lifting part 41 descends, it is in a hidden position below the first transport component 2 and does not obstruct it. When the lifting part 41 rises, it is in a raised position above the first transport component 2. The lifting part 41 lifts the product of the first transport component 2 and transports it to the transport part 42. The transport part 42 transports the product to the pressing device 5. The pressing device 5 is fixedly mounted on the mounting frame 1. The end of the transport part 42 away from the lifting part 41 is located inside the pressing device 5. The top of the pressing device 5 is provided with a locking hole group 501. After pressing, the connection between the various parts of the product is significantly enhanced, achieving a tighter and more seamless combination. This greatly improves the overall stability and completion after locking. Whether from the perspective of structural integrity or functional reliability, it has reached a high level, laying a solid foundation for the long-term performance and user satisfaction of the product.
[0036] Please see Figure 1 , Figure 2 and Figure 5In one embodiment of this application, specifically, the pressing device 5 includes a pressing frame 502, a pressure assembly 503, and an auxiliary plate 504. The pressing frame 502 is fixedly mounted on the mounting frame 1. The pressing frame 502 has a pressing space. The mounting frame 1 is provided with a pressing groove, which is located below the pressing space and communicates with the pressing groove. The bottom of the pressing frame 502 is open, and the top of the pressing frame 502 is a first pressing plate 505. The first pressing plate 505 is provided with multiple weight-reducing locking grooves. The pressure assembly... 503 is disposed inside the pressing groove. The output end of the pressure component 503 is disposed towards the pressing space. The pressure component 503 includes a pressure cylinder 506 and a second pressure plate 507. The second pressure plate 507 is disposed at the output end of the pressure cylinder 506. The second pressure plate 507 can also be used to support the product. The pressure cylinder 506 drives the second pressure plate 507 to move upward. The second pressure plate 507 and the first pressure plate apply pressure to the product. The auxiliary plate 504 is located on the upper part of the pressing frame 502. The locking hole group 501 is disposed on the auxiliary plate 504.
[0037] In one embodiment of this application, specifically, the mounting bracket 1 is further provided with an auxiliary device 6. The auxiliary device 6 includes an auxiliary output signal unit group, a signal receiver, and a signal converter. The auxiliary output signal unit group is located on the auxiliary plate 504 and is correspondingly arranged with the locking hole group 501. The signal receiver is connected to the locking end of the locking device 3. The signal converter is fixedly arranged on the mounting bracket 1. The signal receiver, the signal converter, and the auxiliary output signal unit group are electrically connected. In this embodiment, the auxiliary output signal unit is an indicator light. The number of auxiliary output signal units and locking holes are the same and correspond one-to-one. The system is configured to monitor whether the locking device 3 is complete when locking the product. If the locking is complete, the auxiliary output signal will light up; if the locking is incomplete, the indicator light will turn off. This makes it easier for the operator to observe the locking status, making the locking process faster and more efficient, and ensuring more stable product locking. The signal receiver is connected to the locking end of the locking device 3, and the signal converter is fixed on the mounting bracket 1. The signal receiver is fixed on the locking device 3 to detect whether the locking torque is sufficient. The detected torque signal is transmitted to the signal converter, which converts the received torque signal and outputs it to the auxiliary output signal. The signal converter is fixed on the mounting bracket 1.
[0038] Please see Figure 3 and Figure 6In one embodiment of this application, specifically, the lifting part 41 includes a lifting cylinder 411 and a conveyor belt 412. The mounting frame 1 is provided with a lifting groove, which is located below the intersection of the first transport component 2 and the second transport component 4. The lifting cylinder 411 is disposed in the lifting groove, with its output end facing upward. The output end of the lifting cylinder 411 is connected to the conveyor belt 412. The lifting cylinder 411 drives the conveyor belt 412 to reciprocate between the hidden position and the lifted position of the lifting part 41, and the conveyor belt 412 is connected to the transport part 42.
[0039] Please see Figure 4 In one embodiment of this application, specifically, the locking device 3 includes a mounting base 301, a fixing rod 302, a mounting rod 303, and a locking assembly 304. The mounting base 301 is vertically arranged and has a protruding fixing plate 305. The fixing plate 305 is horizontally arranged on the top of the mounting base 301 and protrudes from the top of the mounting base 301. The protruding portion of the fixing plate 305 has a mounting hole arranged vertically. The top of the fixing rod 302 is vertically arranged on the mounting base 301 through the mounting hole. The top of the fixing rod 302 is provided with a limiting ring, which is located above the fixing plate 305 and abuts against the fixing plate 305 for limiting. The fixing rod 302 has multiple limiting grooves arranged axially, and the mounting rod 303 is horizontally arranged through the limiting grooves. On the fixed rod 302, one end of the mounting rod 303 is provided with a collar 306. The collar 306 is sleeved on the limiting groove for fixing the mounting rod 303. The number of mounting rods 303 is the same as the number of limiting grooves. In this embodiment, there are two mounting rods 303 and two limiting grooves. A receiving space is formed between two adjacent mounting rods 303. The locking assembly 304 is segmented within multiple receiving spaces, serving as a limiting support and for installing the locking assembly 304. The locking assembly 304 is fixedly connected to the mounting rod 303. The locking assembly 304 is connected to the mounting base 301 through a guide rail 307. The guide rail 307 is vertically arranged on the mounting base 301, and the guide block is slidably arranged on the guide rail 307. The mounting base 301 is fixedly connected to the guide block.
[0040] Please see Figure 3In one embodiment of this application, specifically, the mounting base 301 is connected to the mounting frame 1 via a moving device 7. The moving device 7 includes a horizontal moving component 701, a vertical moving component 702, and a longitudinal moving component 703. The longitudinal moving component 703 is fixedly connected to the mounting frame 1. The output end of the longitudinal moving component 703 is connected to the horizontal moving component 701, the output end of the horizontal moving component 701 is connected to the vertical moving component 702, and the output end of the vertical moving component 702 is connected to the mounting base 301. The longitudinal moving component 703 includes two fixed frames, which are respectively arranged longitudinally. On both sides of the mounting bracket 1, two fixed brackets are provided with longitudinal slide rails, and two longitudinal slide rails are provided with longitudinal sliders. The transverse moving component 701 is arranged horizontally. The two ends of the transverse mounting plate of the transverse moving component 701 are respectively connected to the two longitudinal sliders. The transverse mounting plate is provided with transverse slide rails, and the transverse sliders are slidably arranged on the transverse slide rails. The vertical moving component 702 has a vertical mounting plate connected to the transverse sliders. The vertical mounting plate is arranged vertically. The vertical mounting plate is provided with vertical slide rails, and the vertical sliders are arranged on the vertical slide rails. The mounting base 301 is connected to the vertical sliders. The transverse sliders, longitudinal sliders, and vertical sliders are driven by three lead screw drive devices.
[0041] In one embodiment of this application, specifically, the mounting frame 1 is further provided with a feeding device. The feeding device includes an arranging component and a feeding component. The arranging component includes a transport component, a vibrating component, and a conveying component. The transport component and the vibrating component are arranged adjacent to each other. The transport component is located above the inlet of the vibrating component. The output end of the transport component is connected to the inlet of the vibrating component through the conveying component. The vibrating component has an outlet. The outlet is connected to the feeding component through a conveying pipe. The screws are placed on the transport component and transported into the vibrating component. The vibrating component arranges the screws by vibration. The arranged screws enter the conveying pipe. The conveying pipe transports the screws according to the arrangement order and direction to ensure the arrangement direction.
[0042] In one embodiment of this application, specifically, the feeding assembly includes a housing and a cylinder. The housing is fixedly mounted on the mounting bracket 1. The top surface of the housing has a vertically parallel feeding port and a feed inlet. The feed inlet is connected to the conveying pipe. The housing has a horizontally arranged pushing hole. The output end of the cylinder is located in the pushing hole. The pushing hole is connected to the feeding port and the feed inlet respectively. The screw enters the feed inlet through the conveying pipe and then enters the pushing hole. The cylinder pushes the screw from below the feed inlet to the feeding port. The locking device 3 takes out the locking screw from the feeding port and locks it.
[0043] In one embodiment of this application, specifically, a transport groove for transporting screws is provided inside the housing along the axial direction of the push hole. One end of the transport groove is located below the feed port, and the other end of the transport groove is located below the feed port. After the screw enters from the feed port, it falls into the transport groove. The transport groove includes a first groove and a second groove. The first groove is opened at the bottom of the push hole, and the second groove is opened on the basis of the first groove to form a T-shaped structure groove. The first groove is used to accommodate the locking part of the screw, and the second groove is used to accommodate the head of the screw.
[0044] In one embodiment of this application, specifically, there is a first groove and a second groove for transporting goods. The first groove is set at the bottom of the push hole, and the second groove is formed into a T-shaped structure groove based on the first groove. A limiting strip is also set above the second groove, and a channel is formed between the limiting strip and the second groove. The limiting strip is located between the feeding port and the inlet. No limiting strip is set directly below the feeding port and the inlet to facilitate the input and output of the screw. The limiting strip is used to limit the head of the screw. The cylinder is replaced by a blowing device, which blows the screw to the area below the feeding port by high-pressure gas.
[0045] In one embodiment of this application, specifically, two sensor lights are also provided on the housing. When the position of the cylinder is detected, the sensor lights are lit. The two sensor lights are respectively located below the feed port and the inlet port to prevent the cylinder from pushing the screw behind the feed port.
[0046] Please see Figure 6 In one embodiment of this application, specifically, the mounting frame 1 is further provided with a waste collection assembly 8. The waste collection assembly 8 includes a fixed base 801, a collection box 802, and a collection hopper 803. The fixed base 801 is fixedly mounted on the mounting frame 1. The fixed base 801 has a receiving cavity 804 inside. The collection box 802 is disposed inside the receiving cavity 804. The top of the collection box 802 has an opening. The collection hopper 803 is located on top of the fixed base 801. The lower part of the collection hopper 803 penetrates the fixed base 801 and communicates with the opening of the collection box 802.
[0047] In one embodiment of this application, specifically, multiple receiving cavities 804, collection boxes 802 and collection hoppers 803 are provided. In this embodiment, two receiving cavities 804, collection boxes 802 and collection hoppers 803 are provided, and the two receiving cavities 804, collection boxes 802 and collection hoppers 803 are arranged side by side.
[0048] In one embodiment of this application, specifically, the mounting bracket 1 is provided with a camera component, and the movement trajectory of the locking end of the locking device 3 is all within the camera range of the camera component. The locking end of the locking device 3 has multiple movement trajectories that are all within the range of the camera component. The camera component is used to detect whether the position of the screw adsorbed by the locking end is deflected. When the adsorption position is deflected, the deflected screw is transported to the waste collection component 8 for disposal to avoid the situation of unqualified locking.
[0049] In one embodiment of this application, specifically, the first transport component 2 is provided with a lifting limit component for lifting the transported product. When the product is transported to the locking position, the output end of the lifting limit component lifts the product, causing it to disengage from the first transport component 2, so as to facilitate locking and prevent its position from changing.
[0050] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
Claims
1. A locking mechanism with a pressing function, characterized in that, include: Mounting rack; A first transport component is disposed on the mounting frame and has an input end and an output end, both of which extend out of the mounting frame. A locking device is fixedly disposed inside the mounting frame and is disposed adjacent to the first transport component; The second transport component is fixedly mounted on the mounting frame and intersects with the first transport component. The second transport component has a lifting part and a transport part arranged along the transport direction of the second transport component. The lifting part intersects with the first transport component and reciprocates between a hidden position and a lifting position. Both the hidden position and the lifting position are located on the first transport component. A pressing device is fixedly mounted on the mounting frame, and the end of the transport part away from the lifting part is located inside the pressing device. The pressing device is provided with a set of locking holes.
2. The locking mechanism with pressing function according to claim 1, characterized in that: The pressing device includes a pressing frame, a pressure component, and an auxiliary plate. The pressing frame is fixedly mounted on the mounting frame and has a pressing space. The mounting frame is provided with a pressing groove, which is located below the pressing space and communicates with it. The pressure component is disposed inside the pressing groove, with its output end facing the pressing space. The auxiliary plate is located on the upper part of the pressing frame, and the locking hole group is disposed on the auxiliary plate.
3. A locking mechanism with a pressing function according to claim 2, characterized in that: The mounting bracket is also equipped with an auxiliary device, which includes an auxiliary output signal unit group, a signal receiver, and a signal converter. The auxiliary output signal unit group is located on the auxiliary plate and is correspondingly arranged with the locking hole group. The signal receiver is connected to the locking end of the locking device. The signal converter is fixedly mounted on the mounting bracket. The signal receiver, the signal converter, and the auxiliary output signal unit are electrically connected to each other.
4. A locking mechanism with a pressing function according to claim 2, characterized in that: The lifting section includes a lifting cylinder and a conveyor belt. The mounting frame is provided with a lifting groove, which is located below the intersection of the first transport component and the second transport component. The lifting cylinder is disposed in the lifting groove, with its output end facing upward. The output end of the lifting cylinder is connected to the conveyor belt. The lifting cylinder drives the conveyor belt to reciprocate between the lifting section and the lifting position, and the conveyor belt is connected to the transport section.
5. A locking mechanism with a pressing function according to claim 1, characterized in that: The locking device includes a mounting base, a fixing rod, a mounting rod, and a locking assembly. The mounting base has a protruding fixing plate with a vertically arranged mounting hole. The fixing rod is vertically mounted on the mounting base through the mounting hole and has multiple limiting grooves along the axial direction. The mounting rod is laterally mounted on the fixing rod through the limiting grooves. The number of mounting rods is the same as the number of limiting grooves. A receiving space is formed between two adjacent mounting rods. The locking assembly is segmented within the multiple receiving spaces and is fixedly connected to the mounting rod. The locking assembly is connected to the mounting base via a guide rail.
6. A locking mechanism with a pressing function according to claim 5, characterized in that: The mounting base is connected to the mounting frame via a moving device. The moving device includes a horizontal moving component, a vertical moving component, and a longitudinal moving component. The longitudinal moving component is fixedly connected to the mounting frame. The output end of the longitudinal moving component is connected to the horizontal moving component. The output end of the horizontal moving component is connected to the vertical moving component. The output end of the vertical moving component is connected to the mounting base.
7. A locking mechanism with a pressing function according to claim 6, characterized in that: The mounting frame is also equipped with a feeding device, which includes an arrangement assembly and a feeding assembly. The arrangement assembly includes a transport component, a vibrating component, and a conveying component. The transport component and the vibrating component are arranged adjacent to each other. The transport component is located above the inlet of the vibrating component. The output end of the transport component is connected to the inlet of the vibrating component through the conveying component. The vibrating component has an outlet, which is connected to the feeding assembly through a conveying pipe.
8. A locking mechanism with a pressing function according to claim 7, characterized in that: The feeding assembly includes a housing and a cylinder. The housing is fixedly mounted on the mounting bracket. The top surface of the housing has a vertically arranged feeding port and a feeding port. The feeding port is connected to the conveying pipe. The housing has a horizontally arranged pushing hole. The output end of the cylinder is located in the pushing hole. The pushing hole is connected to the feeding port and the feeding port respectively.
9. A locking mechanism with a pressing function according to claim 1, characterized in that: The mounting frame is also equipped with a waste collection assembly, which includes a fixed base, a collection box, and a collection hopper. The fixed base is fixedly mounted on the mounting frame and has an internal receiving cavity. The collection box is located inside the receiving cavity and has an opening at the top. The collection hopper is located at the top of the fixed base and its lower part penetrates the fixed base and communicates with the opening of the collection box.
10. A locking mechanism with a pressing function according to claim 8, characterized in that: The housing is provided with a transport groove for transporting screws along the axial direction of the push hole. One end of the transport groove is located below the feed port, and the other end of the transport groove is located below the feed port.