Plastic card cage networking machine and use method thereof
By designing a plastic card mesh cage networking machine, the automatic adjustment of the plastic card hanging position and networking operation is achieved, which solves the problem of low networking efficiency caused by manual adjustment in the existing technology and improves the efficiency of automated networking.
Patent Information
- Application Number
- CN202310717455.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-15
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2043-06-15
AI Technical Summary
In the prior art, the networking process of plastic card mesh cages requires manual adjustment and collaboration of multiple people, resulting in low networking efficiency and difficulty in achieving automated operation.
A plastic card mesh cage networking machine is designed, which includes a networking machine base, a networking conveying trolley, a lifting vehicle body component and a networking component. By automatically adjusting the networking position of the plastic card, automatic networking and networking are achieved, reducing manual operation.
It realizes the automatic networking of plastic card mesh cages, improves the networking efficiency, adapts to the needs of mesh cages of different specifications and sizes, reduces manual operations, and improves production efficiency.
Smart Images

Figure CN116749540B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of aerated concrete plate production lines, and more particularly, relates to a plastic card mesh cage assembly machine and a method for using the same. Background Art
[0002] Currently, some companies' mesh cages in autoclaved aerated concrete block production lines use plastic card cages, meaning the mesh panels are connected using plastic card connections. The plastic cards are not fixed to the mesh panels and can be partially moved along the length of the mesh panels. When networking with these cages, manual adjustments to the saddle steel chisels are generally required before the plastic cards are secured. Finally, multiple people collaborate to connect the mesh panels to the plastic cards to form the cage. Manual networking requires manual adjustments to the dimensions of each device, requiring multiple people to collaborate. This is time-consuming and labor-intensive, resulting in low networking efficiency and reduced overall autoclaved aerated concrete block production efficiency.
[0003] This application designs a plastic card mesh cage networking machine, which can automatically adjust the hanging position of the plastic card according to the specifications of the mesh cage. The networking machine automatically hangs the mesh, reducing manual operation, realizing the automated operation of the work section, and improving the production efficiency of the plastic card mesh cage networking.
[0004] A search revealed Chinese patent application number 2021103946212, which discloses a high-level networking device, a networking production line, and a networking process. A mesh cage frame is sequentially conveyed by a drill pulling device, a low-level electric conveyor, and a high-level manual conveyor. A mesh cage frame elevator can lift the cage frame from a low position to a high position. During the lifting process, the drill rods are manually adjusted. When the cage frame is in the high position, the mesh cages are manually networked beneath the manual conveyor. However, this solution still requires manual adjustment of the steel drill and networking operations, making it difficult to improve networking efficiency.
[0005] For example, Chinese patent application number: 2019218540483 discloses an efficient networking device for steel mesh cages that can accurately insert steel chisels. The device can guide the insertion of the steel chisels, eliminating the process of manual mesh positioning, ensuring the precise placement of the steel mesh cages during the networking process, and ensuring the accuracy of the networking process. However, it does not involve automatic networking operations. Summary of the Invention
[0006] 1. Technical problem to be solved by the invention
[0007] In response to the above-mentioned difficulties, the present invention intends to provide a plastic card mesh cage networking machine and its use method, which can automatically adjust the hanging net position of the plastic card according to the mesh cage specifications, and the networking machine can automatically hang the net, reducing manual operation and realizing the automatic operation of this section, thereby improving the production efficiency of plastic card mesh cage networking.
[0008] 2. Technical solution
[0009] To solve the above problems, the present invention adopts the following technical solutions.
[0010] A plastic card cage networking machine of the present invention comprises:
[0011] The networking machine base is provided with a network taking station and a first networking station;
[0012] The network transport trolley is located on the base of the network machine and moves horizontally on the base of the network machine, traveling back and forth between the network taking station and the first network station;
[0013] The jacking car body assembly is used to place and transport the plastic card net cage. The jacking car body assembly is arranged on the network conveying trolley and moves vertically on the jacking car body assembly to drive the jacking of the plastic card net cage;
[0014] The jacking vehicle body assembly includes a net hanging assembly, which is used to clamp and position two mesh pieces (420) of the plastic card cage, and push the plastic clamp to move laterally along the mesh piece, and complete the netting operation after clamping with the steel chisel. The plastic clamp is used to connect the two mesh pieces.
[0015] As a further improvement of the present invention, the jacking body assembly further includes:
[0016] The tooling replacement trolley is arranged on one side of the jacking car body assembly, and the tooling replacement trolley drives the net hanging assembly to move horizontally on the jacking car body assembly.
[0017] As a further improvement of the present invention, the net hanging assembly includes:
[0018] A pair of symmetrically arranged left and right guide assemblies, the left and right guide assemblies move longitudinally along the base of the networking machine, and the left and right guide assemblies are used to engage and position the plastic card mesh cage;
[0019] The card connector is used to push the plastic card to move horizontally along the base of the networking machine.
[0020] As a further improvement of the present invention, the jacking body assembly further includes:
[0021] Lifting car body, which is installed on the network transport trolley;
[0022] Lifting components, a pair of lifting components, symmetrically arranged at both ends of the network conveying trolley, and the lifting components are connected to both ends of the jacking car body to drive the vertical movement of the jacking car body;
[0023] And / or, the lifting assembly includes a vertically arranged lifting screw rod, a screw nut sleeve is sleeved on the lifting screw rod, and the screw nut sleeve is connected to the end of the jacking vehicle body.
[0024] As a further improvement of the present invention, the jacking body assembly further includes:
[0025] The synchronization mechanism includes a synchronization shaft, and synchronization gears are provided at both ends of the synchronization shaft;
[0026] A vertically arranged synchronous rack is provided on the lifting assembly, and the synchronous gears at both ends of the synchronous rotating shaft are engaged with the synchronous racks on the lifting assemblies on both sides.
[0027] As a further improvement of the present invention, the net hanging assembly further comprises:
[0028] The steel drill positioning assembly is provided between the left guide assembly and the right guide assembly, and is used to engage and position the steel drill;
[0029] And / or, the steel drill positioning assembly includes a mounting seat arranged on the hanging net assembly, and the mounting seat is provided with a steel drill pin seat for inserting the steel drill.
[0030] As a further improvement of the present invention, the tooling transposition trolley includes:
[0031] The positioning pin is connected to the telescopic mechanism and extends or retracts when driven by the telescopic mechanism;
[0032] The net hanging component is provided with a connecting seat, which cooperates with the positioning pin shaft to realize the connection or disconnection between the tooling transposition trolley and the net hanging component.
[0033] A networking method for a plastic card cage networking machine of the present invention comprises the following steps:
[0034] Step 1: Plastic card net cage transportation. After the network transportation trolley moves to the net taking station, the plastic card net cage is placed on the jacking vehicle body assembly and transported to the first network station by the network transportation trolley;
[0035] Step 2: Positioning of the steel chisel: Lift the car body assembly to drive the plastic card mesh cage to the second mesh assembly station and then stop. At this time, the bottom of the steel chisel located above the plastic card mesh cage just enters the steel chisel pin seat, completing the positioning and support of the steel chisel;
[0036] Step 3: Networking, the card seat pushes the plastic card to move horizontally toward the steel drill pin seat, and makes the plastic card and the steel drill connected to complete the networking operation of the plastic card cage.
[0037] As a further improvement of the present invention, in step one, according to the number and position arrangement of plastic clips on the plastic card mesh cage, the same number of hanging net components are selected, and the hanging net components are driven one by one by the tooling replacement trolley so that the position arrangement of the hanging net components corresponds to the position arrangement of the plastic clips.
[0038] As a further improvement of the present invention, in step 1, the left guide assembly and the right guide assembly move inward relative to each other according to the spacing between the two meshes of the plastic card cage, thereby completing the guiding and positioning of the plastic card cage;
[0039] Then start the clamping parts on the left guide assembly and the right guide assembly to complete the locking and fixing of the two meshes of the plastic card mesh cage.
[0040] 3. Beneficial effects
[0041] Compared with the prior art, the present invention has the following beneficial effects:
[0042] (1) The method for using the plastic card mesh cage networking machine of the present invention can automatically adjust the mesh hanging position of the plastic card according to the mesh cage specifications, and the networking machine automatically hangs the mesh, thereby reducing manual operation, realizing the automated operation of the work section, and improving the production efficiency of the plastic card mesh cage networking.
[0043] (2) In a plastic card mesh cage assembly machine according to the present invention, the left and right guide assemblies move inward, shortening the distance between them, thereby guiding and positioning the two mesh sheets of the plastic card mesh cage. The plastic card mesh cage is then locked and fixed by clamping members on the left and right guide assemblies. The distance between the left and right guide assemblies can be adjusted as needed to accommodate the support requirements of plastic card mesh cages of varying widths.
[0044] (3) A plastic card mesh cage networking machine of the present invention realizes an integrated connection between the tooling exchange trolley and the mesh hanging component when the positioning pin shaft is extended and connected to the connecting seat. At this time, the mesh hanging component can be easily driven to move horizontally by the movement of the tooling exchange trolley. After the mesh hanging component is transported to the desired position, the positioning pin shaft is retracted and disconnected from the connecting seat. Then, the tooling exchange trolley can transport the next mesh hanging component.
[0045] (4) The plastic card mesh cage networking machine of the present invention realizes the synchronous operation of the two ends of the vehicle body assembly by designing a synchronization mechanism, wherein the synchronization mechanism includes a synchronization shaft, and synchronization gears are provided at both ends of the synchronization shaft; a vertically arranged synchronization rack is provided on the lifting frame, and the synchronization gears at both ends of the synchronization shaft are engaged with the synchronization racks on the lifting assemblies on both sides, ensuring that the two ends of the vehicle body assembly are synchronized when lifting and lowering, without deflection, and ensuring smooth operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 Schematic diagram of the three-dimensional structure of the plastic card cage networking machine in an embodiment of the present invention;
[0047] Figure 2 This is a schematic diagram of the partial main structure of the networking machine base in an embodiment of the present invention;
[0048] Figure 3 Schematic diagram of the three-dimensional structure of the networked transport vehicle in an embodiment of the present invention;
[0049] Figure 4 Schematic diagram of the three-dimensional structure of the jacking body assembly in an embodiment of the present invention;
[0050] Figure 5 Schematic diagram of the three-dimensional structure of the lifting assembly in an embodiment of the present invention;
[0051] Figure 6 This is a schematic diagram of the three-dimensional structure of the tooling exchange trolley in an embodiment of the present invention;
[0052] Figure 7 Schematic diagram of the three-dimensional structure of the screen hanging assembly in an embodiment of the present invention;
[0053] Figure 8 Schematic diagram of the three-dimensional structure of the steel drill positioning assembly in an embodiment of the present invention;
[0054] Figure 9 Schematic diagram of the three-dimensional structure of the plastic card mesh cage in an embodiment of the present invention;
[0055] Figure 10 Schematic diagram of the three-dimensional structure of the mesh cage plastic card in an embodiment of the present invention.
[0056] The reference numerals in the accompanying drawings are:
[0057] 100. Networking machine base;
[0058] 110. Horizontal conveyor rail;
[0059] 120. Horizontal conveying rack;
[0060] 200. Network transport trolley;
[0061] 210, horizontal conveying slider;
[0062] 220, transposition guide rail;
[0063] 230. Horizontal power assembly; 231. Horizontal power gear;
[0064] 240, transposition rack;
[0065] 250. Tooling transposition trolley; 251. Transposition slide; 252. Transposition power assembly; 253. Positioning pin; 254. Telescopic mechanism;
[0066] 300. Lifting vehicle body components;
[0067] 310, lifting assembly; 311, synchronous rack; 312, vertical guide rail; 313, lifting frame; 314, lifting screw;
[0068] 321, synchronous shaft; 322, synchronous gear;
[0069] 330, net hanging assembly; 331, left guide assembly; 332, right guide assembly; 333, steel drill positioning assembly; 3331, mounting seat; 3332, steel drill pin seat; 334, snap-fit seat; 335, two-way movable platform; 336, snap-fit slider; 337, connecting seat; 338, snap-fit guide rail;
[0070] 340, car body guide rails;
[0071] 350, lifting seat;
[0072] 360, vertical slider;
[0073] 400, plastic card mesh cage;
[0074] 410, plastic card; 411, steel drill slot; 412, connection end;
[0075] 420. Mesh. DETAILED DESCRIPTION
[0076] In order to further understand the content of the present invention, the present invention is described in detail with reference to the accompanying drawings.
[0077] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0078] The present invention will be further described below with reference to the embodiments.
[0079] Example
[0080] like Figure 1As shown, a plastic card mesh cage networking machine of the present embodiment includes a networking machine base 100, a networking conveying trolley 200 and a lifting vehicle body assembly 300. The networking machine base 100 is arranged horizontally, and a mesh taking station and a first networking station are provided on the networking machine base 100; the networking conveying trolley 200 is provided on the networking machine base 100, and moves laterally on the networking machine base 100, traveling back and forth between the mesh taking station and the first networking station, for loading and transporting the plastic card mesh cage 400, and completing the switching of the plastic card mesh cage 400 from the mesh taking station to the first networking station.
[0081] In this embodiment, the lifting vehicle assembly 300 is used to place and transport the plastic card mesh cage 400. The lifting vehicle assembly 300 is mounted on the networking transport trolley 200 and moves vertically on the lifting vehicle assembly 300 to drive the lifting of the plastic card mesh cage 400, lifting the plastic card mesh cage 400 from the first networking station to the second networking station for networking. The lifting vehicle assembly 300 includes a mesh hanging assembly 330, which is used to lock and position the two mesh sheets 420 of the plastic card mesh cage 400. After the two mesh sheets 420 are locked and positioned, the plastic clip 410 is pushed horizontally along the mesh sheets 420 to engage with the steel bar to complete the networking operation. The plastic clip 410 is used to connect the two mesh sheets 420. The mesh cage networking machine of this embodiment eliminates the manual operation of the mesh hanging process, realizes automated networking operation, and improves the networking efficiency of the plastic card mesh cage 400.
[0082] In order to realize the automatic and smooth operation of the networking conveying trolley 200 on the networking machine base 100, one of the preferred design schemes is that in this embodiment, the top surface of the networking machine base 100 is provided with a horizontal conveying guide rail 110 extending along its length direction. Furthermore, the horizontal conveying guide rail 110 is a pair, which is symmetrically arranged on both sides of the width direction of the networking machine base 100. The bottom of the networking conveying trolley 200 is provided with a horizontal conveying slider 210 that cooperates with the horizontal conveying guide rail 110. The horizontal conveying slider 210 slides on the horizontal conveying slider 210 to ensure that the networking conveying trolley 200 can move smoothly horizontally on the networking machine base 100.
[0083] In order to realize the automatic movement of the networking conveying trolley 200 on the networking machine base 100, a horizontal power component 230 is provided on one side of the networking conveying trolley 200 in this embodiment. The horizontal power component 230 includes a horizontal power gear 231. The side of the networking machine base 100 is provided with a horizontal conveying rack 120 extending along the length direction. The horizontal power gear 231 is engaged with the horizontal conveying rack 120 and rotates along the length direction of the horizontal conveying rack 120 under the drive of the motor, thereby realizing the lateral movement of the networking conveying trolley 200.
[0084] The mesh hanging assembly 330 in this embodiment is used to engage and position the plastic card mesh cage 400 on the one hand, and can also push the plastic card part 410 to perform networking operations on the other hand. In practice, preferably, the mesh hanging assembly 330 in this embodiment includes a two-way movable platform 335 extending and distributed along the width direction of the networking machine base 100, and the two-way movable platform 335 is symmetrically provided with a pair of left guide assemblies 331 and right guide assemblies 332. The left guide assembly 331 and the right guide assembly 332 move longitudinally along the two-way movable platform 335, and the left guide assembly 331 and the right guide assembly 332 are used to engage and position the two mesh sheets 420 of the plastic card mesh cage 400. During specific use, the left guide assembly 331 and the right guide assembly 332 move inward respectively to shorten the distance between the two, thereby realizing the guiding and positioning of the two mesh sheets 420 of the plastic card mesh cage 400, and then the two mesh sheets 420 of the plastic card mesh cage 400 are locked and fixed by the clamping members on the left guide assembly 331 and the right guide assembly 332. In this embodiment, the distance between the left guide assembly 331 and the right guide assembly 332 can be adjusted according to needs, so as to adapt to the support requirements for plastic card mesh cages 400 of different widths.
[0085] Preferably, the net hanging assembly 330 in this embodiment further includes a mounting bracket 334, which is used to propel the plastic net cage 400 to move laterally along the net assembly machine base 100. Driven by a power element, the mounting bracket 334 moves horizontally toward or away from the bidirectional movable platform 335. To ensure stability during movement, the net hanging assembly 330 in this embodiment is further provided with a mounting rail 338, which is arranged perpendicular to the arrangement of the bidirectional movable platform 335. The mounting bracket 334 is also provided with a slider that cooperates with the mounting rail 338. In this embodiment, the lifting car body assembly 300 is provided with a car body guide rail 340, and the car body guide rail 340 is a pair, symmetrically arranged on both sides of the width direction of the lifting car body assembly 300, and the bottom of the net hanging assembly 330 and the corresponding position of the car body guide rail 340 are provided with a clamping slider 336. The clamping slider 336 slides on the car body guide rail 340 to realize the horizontal movement of the net hanging assembly 330 on the lifting car body assembly 300.
[0086] In this embodiment, the lateral movement of the net hanging assembly 330 on the jacking car body assembly 300 is driven by a tooling exchange trolley 250, which is located on one side of the jacking car body assembly 300. The tooling exchange trolley 250 includes a positioning pin 253, which is connected to a telescopic mechanism 254 and is driven to extend or retract by the telescopic mechanism 254. The net hanging assembly 330 is provided with a connecting seat 337, which cooperates with the positioning pin 253 to connect or disconnect the tooling exchange trolley 250 and the net hanging assembly 330. When the positioning pin 253 extends and connects with the coupling seat 337, the tooling repositioning trolley 250 and the net hanging assembly 330 are integrally connected. The tooling repositioning trolley 250 can now easily move the net hanging assembly 330 horizontally. After the net hanging assembly 330 is moved to the desired position, the positioning pin 253 is retracted and disconnected from the coupling seat 337, allowing the tooling repositioning trolley 250 to transport the next net hanging assembly 330. To prevent the net hanging assembly 330 from being easily moved after it has been moved to the desired position, a clamp is provided on the net hanging assembly 330 that cooperates with the vehicle body guide rail 340. Once the net hanging assembly 330 reaches the desired position, the clamp self-locks with the vehicle body guide rail 340, ensuring the stability of the position of the net hanging assembly 330. To adjust the position of the net hanging assembly 330, simply open the clamp and easily push the net hanging assembly 330 to adjust its position.
[0087] Preferably, in this embodiment, the jacking body assembly 300 further includes a jacking body and a lifting assembly 310. The jacking body is provided on the network conveying trolley 200. The lifting assemblies 310 are a pair, symmetrically provided at both ends of the network conveying trolley 200, and the lifting assemblies 310 are connected to both ends of the jacking body to drive the vertical movement of the jacking body. In practice, there are many types of lifting assembly 310 structures that can achieve vertical up and down movement. Specifically, in this embodiment, the lifting assembly 310 includes a gantry-structured lifting frame 313, wherein a vertically arranged lifting screw 314 is provided in the lifting frame 313. The lifting screw 314 is provided with a screw nut sleeve, which is connected to the end of the jacking body. Both ends of the jacking body are provided with a lifting seat 350 that cooperates with the screw nut sleeve. The motor drives the lifting screw 314 to rotate, driving the screw nut sleeve and the lifting seat 350 to move up and down along the lifting screw 314, thereby achieving the up and down movement of the jacking body assembly 300.
[0088] In practice, to ensure the stability of the lifting movement of the jacking car body assembly 300, preferably, in this embodiment, a synchronization mechanism is designed to achieve synchronous operation of both ends of the car body assembly 300, wherein the synchronization mechanism includes a synchronization shaft 321, and both ends of the synchronization shaft 321 are provided with synchronization gears 322; a vertically arranged synchronization rack 311 is provided on the lifting frame 313, and the synchronization gears 322 at both ends of the synchronization shaft 321 are engaged with the synchronization racks 311 on the lifting assemblies 310 on both sides. The design of the synchronization mechanism ensures that both ends of the car body assembly 300 are synchronized during lifting and lowering, and no deviation occurs, thereby ensuring smooth operation. In order to achieve the lifting and sliding guidance of the car body assembly 300, a vertical guide rail 312 is also provided on the lifting frame 313, and a matching vertical slider 360 is provided at a position corresponding to the vertical guide rail 312 on the jacking car body.
[0089] In order to achieve the guidance and positioning of the steel drill and ensure the accuracy of the networking, preferably, in this embodiment, the net hanging component 330 also includes a steel drill positioning component 333, which is arranged between the left guide component 331 and the right guide component 332, and the steel drill positioning component 333 is used to engage and position the steel drill, wherein the steel drill positioning component 333 includes a mounting seat 3331 arranged on the net hanging component 330, and the mounting seat 3331 is provided with a steel drill pin seat 3332 for inserting the steel drill. When the net hanging component 330 is transported to the desired position, the position of the steel drill pin seat 3332 corresponds to the position of the steel drill above. Under the lifting action of the lifting component 310, the steel drill pin seat 3332 is lifted upward to the second networking station. At this time, the bottom of the steel drill passes through the steel drill pin seat 3332, completing the guidance and positioning of the steel drill, which can effectively ensure the accuracy of subsequent networking operations.
[0090] To achieve automatic sliding of the tooling transposition trolley 250, preferably, in this embodiment, the tooling transposition trolley 250 is provided with a transposition power assembly 252, which includes a motor and a transposition gear connected to the motor. The networking conveying trolley 200 is provided with a transposition rack 240 extending along the length direction. The transposition gear engages with the transposition rack 240 and rotates along the length direction of the transposition rack 240 under the drive of the motor. Furthermore, in this embodiment, to achieve horizontal sliding guidance of the tooling transposition trolley 250, a transposition slider 251 is provided at the bottom of the tooling transposition trolley 250, and the networking conveying trolley 200 is provided with a transposition guide rail 220 extending along the length direction. The transposition slider 251 slides horizontally along the length direction of the transposition guide rail 220.
[0091] A method for using a plastic card cage networking machine according to this embodiment includes the following steps:
[0092] After the trolley 250 is started, the net assembly 330 is moved to the desired position, and the positioning pin 253 is retracted and disconnected from the connecting seat 337. Then, the trolley 250 can transport the next net assembly 330. At this time, the net assembly 330 is self-locked by the clamp, which can effectively prevent the position of the net assembly 330 from moving.
[0093] After the net assembly transport trolley 200 is activated and moved to the net retrieval station, the plastic card net cage 400 is placed on the lifting vehicle body assembly 300 and transported to the first net assembly station by the net assembly transport trolley 200. The specific operation is as follows: Based on the spacing between the two mesh sheets 420 of the plastic card net cage 400, the left guide assembly 331 and the right guide assembly 332 move inward relative to each other to guide and position the plastic card net cage 400. The clamping members on the left guide assembly 331 and the right guide assembly 332 are then activated to secure the two mesh sheets 420 of the plastic card net cage 400. Finally, the net assembly transport trolley 200 is transported to the first net assembly station.
[0094] Step 2: Positioning of the steel chisel. Lift the car body assembly 300 to drive the plastic card mesh cage 400 to rise to the second networking station and then stop. At this time, the bottom of each steel chisel located above the plastic card mesh cage 400 just enters the steel chisel pin seat 3332, completing the positioning and support of the steel chisel, which can effectively ensure the accuracy of subsequent networking operations.
[0095] Step 3: Networking. The connector 334 pushes the plastic clip 410 horizontally toward the steel drill pin seat 3332, causing the plastic clip 410 to move laterally along the length of the mesh 420 until the plastic clip 410 engages with the steel drill, completing the networking of the plastic card cage 400. Specifically, in this embodiment, the connector 334 pushes the plastic clip 410 so that the steel drill slot 411 in the middle of the plastic clip 410 engages from one side to the outer periphery of the steel drill, completing the networking. In this embodiment, the two meshes 420 of the plastic card cage 400 are connected by the plastic clip 410, and the two connecting ends 412 of the plastic clip 410 are respectively connected to the two meshes 420.
[0096] When a group of plastic card mesh cages 400 is networked, the connecting seat 334 is driven by the power mechanism to move away from the steel pin seat 3332, separating from the plastic card mesh cage 400 and resetting. The clamping member is released, and the left guide assembly 331 and the right guide assembly 332 are symmetrically stretched to their maximum size, completing the release of the plastic card mesh cage 400. The networked plastic card mesh cage 400 is then transported to the next process via other equipment. After the lifting vehicle assembly 300 descends to the first network-forming station, it is driven by the network-forming transport trolley 200 to return to the network-removing station to begin the network-forming operation of the next group of plastic card mesh cages 400. The above steps are repeated to complete the network-forming operation of all plastic card mesh cages 400.
[0097] When the size of the plastic card mesh cage 400 is adjusted, the number and position of the mesh hanging components 330 can be adjusted as needed. It can be suitable for the networking operation of plastic card mesh cages 400 of different specifications and sizes. It can position the size of the plastic card mesh cage 400 required for the whole mold production and automatically hang the mesh, reducing manual operation and realizing the automatic operation of the work section, thereby improving the networking efficiency and production efficiency of the plastic card mesh cage 400.
[0098] The examples described in the present invention are merely descriptions of the preferred embodiments of the present invention and are not intended to limit the concept and scope of the present invention. Without departing from the design concept of the present invention, various modifications and improvements made to the technical solutions of the present invention by engineers and technicians in this field should fall within the scope of protection of the present invention.
Claims
1. A plastic card cage networking machine, characterized in that: include: A networking machine base (100), wherein a network taking station and a first networking station are provided on the networking machine base (100); A networking transport trolley (200), the networking transport trolley (200) being arranged on the networking machine base (100) and moving laterally on the networking machine base (100) to travel back and forth between the network taking station and the first networking station; A lifting vehicle body assembly (300), the lifting vehicle body assembly (300) is used to place and transport the plastic card mesh cage (400), the lifting vehicle body assembly (300) is arranged on the networking conveying trolley (200), and moves vertically on the lifting vehicle body assembly (300) to drive the lifting of the plastic card mesh cage (400); The jacking vehicle body assembly (300) includes a net hanging assembly (330), which is used to engage and position the two mesh pieces (420) of the plastic mesh cage (400), and to push the plastic clamping member (410) to move laterally along the mesh piece (420), and to complete the netting operation after being engaged with the steel chisel. The plastic clamping member (410) is used to connect the two mesh pieces (420).
2. A plastic card cage netting machine according to claim 1, characterized in that: The jacking vehicle body assembly (300) further includes: A tooling transposition trolley (250) is provided on one side of the jacking vehicle body assembly (300), and the tooling transposition trolley (250) drives the net hanging assembly (330) to perform horizontal movement on the jacking vehicle body assembly (300).
3. A plastic card cage netting machine according to claim 2, characterized in that: The mesh hanging assembly (330) includes: A pair of symmetrically arranged left guide assemblies (331) and right guide assemblies (332), wherein the left guide assemblies (331) and the right guide assemblies (332) move longitudinally along the networking machine base (100), and the left guide assemblies (331) and the right guide assemblies (332) are used to engage and position the plastic card mesh cage (400); The card connection seat (334) is used to push the plastic card member (410) to move laterally along the networking machine base (100).
4. A plastic card cage networking machine according to claim 1, characterized in that: The jacking vehicle body assembly (300) further includes: A jacking vehicle body, wherein the jacking vehicle body is arranged on a network transport trolley (200); A lifting assembly (310), wherein the lifting assembly (310) is a pair and is symmetrically arranged at both ends of the network transport trolley (200), and the lifting assembly (310) is connected to both ends of the jacking vehicle body and is used to drive the vertical movement of the jacking vehicle body; And / or, the lifting assembly (310) includes a vertically arranged lifting screw (314), a screw nut sleeve is sleeved on the lifting screw (314), and the screw nut sleeve is connected to the end of the lifting vehicle body.
5. A plastic card cage netting machine according to claim 4, characterized in that: The jacking vehicle body assembly (300) further includes: A synchronization mechanism, the synchronization mechanism comprising a synchronization shaft (321), and synchronization gears (322) are provided at both ends of the synchronization shaft (321); A vertically arranged synchronous rack (311) is provided on the lifting assembly (310), and the synchronous gears (322) at both ends of the synchronous rotating shaft (321) are meshed with the synchronous racks (311) on the lifting assemblies (310) on both sides.
6. A plastic card cage netting machine according to claim 3, characterized in that: The net hanging component (330) further includes: A steel drill positioning assembly (333), the steel drill positioning assembly (333) being arranged between the left guide assembly (331) and the right guide assembly (332), and the steel drill positioning assembly (333) being used for engaging and positioning the steel drill; And / or, the steel drill positioning assembly (333) includes a mounting seat (3331) provided on the mesh hanging assembly (330), and a steel drill pin seat (3332) for inserting the steel drill is provided on the mounting seat (3331).
7. A plastic card cage netting machine according to claim 2, 3 or 6, characterized in that: The tooling transposition trolley (250) comprises: A positioning pin shaft (253), the positioning pin shaft (253) is connected to the telescopic mechanism (254) and is extended or retracted under the drive of the telescopic mechanism (254); A net hanging assembly (330) is provided with a connecting seat (337) on the net hanging assembly (330), and the connecting seat (337) cooperates with the positioning pin shaft (253) to realize connection or disconnection between the tooling transposition trolley (250) and the net hanging assembly (330).
8. A method for using the plastic card cage netting machine according to any one of claims 1 to 7, characterized in that: The following steps are involved: Step 1: transporting the plastic card net cage (400). After the network transport trolley (200) moves to the net taking station, the plastic card net cage (400) is placed on the jacking vehicle body assembly (300) and transported to the first network station by the network transport trolley (200); Step 2: Positioning of the steel drill. Lifting the vehicle body assembly (300) drives the plastic card mesh cage (400) to rise to the second meshing station and then stops. At this time, the bottom of the steel drill located above the plastic card mesh cage (400) just enters the steel drill pin seat (3332), completing the positioning and support of the steel drill. Step 3: Networking, the card seat (334) pushes the plastic card (410) to move horizontally toward the steel drill pin seat (3332), and enables the plastic card (410) to be connected with the steel drill, completing the networking operation of the plastic card cage (400).
9. The method for using the plastic card cage networking machine according to claim 8, characterized in that: In step 1, according to the number and positional arrangement of the plastic clips (410) on the plastic clip cage (400), the same number of net hanging assemblies (330) are selected, and the net hanging assemblies (330) are driven one by one by the tooling transposition trolley (250) so that the positional arrangement of the net hanging assemblies (330) corresponds to the positional arrangement of the plastic clips (410).
10. The method for using the plastic card cage netting machine according to claim 8 or 9, characterized in that: In step 1, according to the spacing between the two mesh sheets (420) of the plastic card mesh cage (400), the left guide assembly (331) and the right guide assembly (332) move inward relative to each other to complete the guiding and positioning of the plastic card mesh cage (400); Then, the clamping members on the left guide assembly (331) and the right guide assembly (332) are activated to complete the locking and fixing of the two mesh sheets (420) of the plastic card mesh cage (400).
Citation Information
Patent Citations
High position networking device, networking production line and networking process
CN113264336A
Reinforcing mesh assembling device and reinforcing mesh cage assembling method
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