Assembly equipment for 5G antenna metal spacers and fasteners

By designing an assembly device that includes a conveyor, a work fixture, a cutting device, and a covering sheet bending device, the problem of unstable position of the fixing parts was solved, and a stable connection and efficient processing of the metal gasket and the fixing parts were achieved.

CN117260239BActive Publication Date: 2025-10-31GUANGDONG ZHENLIANG HONGKAI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202311501674.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-10
Publication Date
2025-10-31
Estimated Expiration
2043-11-10

AI Technical Summary

Technical Problem

During the 5G antenna assembly process, the position of the fixing component is not fixed, which causes the covering sheet to not be properly attached to the fixing component, affecting the connection stability between the metal pad and the fixing component.

Method used

An assembly device for 5G antenna metal pads and fasteners was designed, including a conveyor, a work fixture, a cutting device, a fastener positioning device, and a covering sheet bending device. The device bends the covering sheet while positioning and cutting the material strip to ensure that the covering sheet fits snugly with the fastener.

Benefits of technology

This improves the connection stability between the metal gasket and the fastener, prevents the fastener from deflecting during subsequent processing, and increases processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of 5G antenna manufacturing technology, and particularly relates to an assembly device for 5G antenna metal pads and fasteners, comprising: a conveying channel arranged along a first direction; a work fixture disposed between the conveying channels; a cutting device including a cutting cylinder, a moving upper mold, and a cutter, wherein the cutting cylinder and the moving upper mold are both located on one side of the work fixture, the cutting cylinder is connected to the moving upper mold, the cutter is installed in the moving upper mold, and the cutter is positioned corresponding to the excess material discharge port; a fastener positioning device including a fastener positioning cylinder and a positioning component; and a covering sheet bending device including a bending drive cylinder, a lifting rod, a shaft, and a bending component; the assembly device of this application can simultaneously bend the covering sheet of the metal pad during the process of cutting off excess material strip, so that the covering sheet fits with the fastener, thereby improving the connection stability between the metal pad and the fastener, and ensuring that the fastener does not deflect relative to the metal pad during subsequent processing, thus facilitating subsequent processing.
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Description

Technical Field

[0001] This application relates to the field of 5G antenna component manufacturing technology, and in particular to an assembly equipment for 5G antenna metal pads and fasteners. Background Technology

[0002] In the 5G antenna assembly process, fasteners and metal spacers are typically used to assemble the various modules inside the antenna. To save internal space and avoid interfering with the installation of the modules, the metal spacers need to be shaped according to the positions of each module, ensuring a better fit between the spacers and the fasteners without interfering with the other modules inside the antenna. Specifically, a covering plate extends from the metal spacer; this covering plate needs to be bent and attached to the sides and top surfaces of some fasteners.

[0003] In related technologies, the fastener needs to be inserted sequentially into each metal gasket connected by a strip, and then the strip is cut to make each metal gasket independent. The covering sheet is then bent and attached to the fastener. During this process, because the position of the fastener is not fixed, the covering sheet cannot be properly attached to the fastener, which affects the connection between the metal gasket and the fastener.

[0004] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this disclosure, and therefore may include information that does not constitute prior art known to those skilled in the art. Summary of the Invention

[0005] In view of at least one of the above technical problems, this application provides an assembly device for 5G antenna metal pads and fasteners, which solves the problem in the related technology that the fastener needs to be inserted into each metal pad connected by a strip in sequence, and then the strips are cut to make each metal pad independent, and then the covering sheet is bent and attached to the fastener. In this process, because the position of the fastener is not fixed, the covering sheet cannot be properly attached to the fastener, thus affecting the connection between the metal pad and the fastener.

[0006] This application embodiment provides an assembly device for 5G antenna metal spacers and fasteners, comprising:

[0007] The conveying channel is set along the first direction;

[0008] The working fixture is located between the conveying channels. The working fixture has a conveying trough that is connected to the conveying channels. The conveying trough is arranged along a first direction. The bottom wall of the first conveying channel is penetrated by an adjacent first through hole and a second through hole. The working fixture is provided with a residual material discharge port, which is located on one side of the conveying trough and is connected to a discharge channel.

[0009] The cutting device includes a cutting cylinder, a movable upper mold, and a cutter. The cutting cylinder and the movable upper mold are both located on one side of the working fixture. The cutting cylinder is connected to the movable upper mold, and the cutter is installed in the movable upper mold. The cutter is set to correspond to the scrap material discharge port.

[0010] The fixing component positioning device includes a fixing component positioning cylinder and a positioning component. The fixing component positioning cylinder is located on the side of the working fixture away from the cutting cylinder. The positioning component is connected to the fixing component positioning cylinder. The positioning component can be movably inserted into the first through hole. The positioning component has a positioning hole along the third direction. The positioning hole is a round hole.

[0011] The covering sheet bending device includes a bending drive cylinder, a lifting rod, a shaft, and a bending component. The bending drive cylinder is located on one side of the positioning cylinder of the fixing component. The lifting rod is connected to the bending drive cylinder and can be movably inserted into the second through hole. The shaft is located on the lifting rod along the second direction. The bending component is rotatably located on the shaft. The lengths of the shaft and the bending component are both less than the length of the second through hole.

[0012] The present application has the following technical effects: The assembly equipment of the present application can simultaneously bend the covering sheet of the metal gasket during the process of cutting off excess material strip, so that the covering sheet fits with the fastener, thereby improving the connection stability between the metal gasket and the fastener, so that the fastener will not deflect relative to the metal gasket in subsequent processing, which facilitates subsequent processing.

[0013] In some alternative implementations, the moving upper die is provided with a strip positioning rod facing the working fixture, and the strip positioning rod is a round rod.

[0014] In some alternative implementations, the length of the positioning element is less than the length of the lifting rod.

[0015] In some alternative implementations, the direction of movement of the positioning element is the same as the direction of movement of the lifting rod.

[0016] In some optional implementations, a pre-shaping device located on one side of the cutting device is also included. The pre-shaping device includes a pre-shaping machine base, a clamping cylinder, a clamping component, a pre-shaping cylinder, a pre-shaping connector, and a pre-shaping component. The pre-shaping machine base is located on one side of the cutting device. Both the clamping cylinder and the pre-shaping cylinder are located in the pre-shaping machine base. The clamping component is connected to the clamping cylinder and is movably disposed in the pre-shaping machine base. A clamping head is provided on the clamping component. The pre-shaping connector is connected to the pre-shaping cylinder and is movably disposed in the pre-shaping machine base. The pre-shaping component is disposed on the pre-shaping connector.

[0017] In some alternative implementations, the pre-shaped parts are staggered from the conveyor belt.

[0018] In some alternative implementations, a limit groove is provided on the pre-forming machine, and a limit connector is provided between the clamping cylinder and the clamping component. The limit connector is movably disposed in the limit groove.

[0019] In some alternative implementations, the clamping head includes a clamping protrusion and a mounting plate. The clamping protrusion has a clamping groove that is semi-circular. The mounting plate is detachably mounted on the clamping protrusion, and a clearance groove is formed between the mounting plate and the clamping protrusion.

[0020] In some alternative implementations, a molding device is also included, which includes a molding cylinder, a molding connecting block, and a molding part. The molding cylinder is located on one side of the pre-forming device along the second direction, the molding connecting block is connected to the molding cylinder, and the molding part is connected to the molding connecting block.

[0021] In some alternative implementations, the forming device also includes a guide rail and a slider, the guide rail being disposed on one side of the pre-forming device along the second direction, the slider being movably disposed on the guide rail, and the forming connector being connected to the slider.

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a structural diagram of the assembly equipment shown in the embodiments of this application;

[0025] Figure 2 This is a structural diagram of the work jig, the fixing positioning device, and the covering sheet bending device shown in the embodiments of this application;

[0026] Figure 3 This is a structural diagram of the pre-shaping device shown in the embodiments of this application;

[0027] Figure 4 This is a structural diagram of the molding apparatus shown in the embodiments of this application;

[0028] The attached figures are labeled as follows:

[0029] 100. Conveying channel;

[0030] 200. Working fixture; 210. Conveying trough; 220. Residual material discharge port; 230. Discharge channel;

[0031] 300. Cutting device; 310. Cutting cylinder; 320. Moving upper mold;

[0032] 400. Fixing component positioning device; 410. Fixing component positioning cylinder; 420. Positioning component;

[0033] 500. Covering sheet bending device; 510. Bending drive cylinder; 520. Lifting rod; 530. Shaft; 540. Bending component;

[0034] 600. Pre-shaping device; 610. Pre-shaping machine base; 620. Clamping cylinder; 630. Clamping component; 640. Pre-shaping cylinder;

[0035] 650. Pre-shaped connector; 660. Pre-shaped component; 670. Limiting connector;

[0036] 611. Limiting groove; 631. Tightening head; 6311. Tightening protrusion; 6312. Mounting piece; 6313. Tightening groove; 6314. Clearance groove;

[0037] 700. Molding device; 710. Molding cylinder; 720. Molding connecting block; 730. Molded part; Detailed Implementation

[0038] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0039] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0040] In the description of this application, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0041] In the embodiments of this application, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.

[0042] In this embodiment, the first direction corresponds to the X-axis (left-right direction) of the spatial coordinate system, the second direction corresponds to the Y-axis (front-back direction) of the spatial coordinate system, and the third direction corresponds to the Z-axis (up-down direction) of the spatial coordinate system. The first, second, and third directions are perpendicular to each other.

[0043] In related technologies, fasteners need to be inserted sequentially into various metal gaskets connected by strips, then these strips are cut to make each metal gasket independent, and then the covering sheet is bent and attached to the fastener. During this process, because the position of the fastener is not fixed, the covering sheet cannot be properly attached to the fastener, thus affecting the connection between the metal gasket and the fastener. The assembly equipment of this application can simultaneously bend the covering sheet of the metal gasket while removing excess strips, allowing the covering sheet to adhere to the fastener, thereby improving the connection stability between the metal gasket and the fastener. This prevents the fastener from shifting relative to the metal gasket during subsequent processing, facilitating subsequent processing.

[0044] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 ,in, Figure 1 This is a structural diagram of the assembly equipment shown in the embodiments of this application; Figure 2 This is a structural diagram of the work jig, the fixing positioning device, and the covering sheet bending device shown in the embodiments of this application; Figure 3 This is a structural diagram of the pre-shaping device shown in the embodiments of this application; Figure 4 This is a structural diagram of the molding apparatus shown in the embodiment of this application; the embodiment of this application provides an assembly equipment for 5G antenna metal pads and fasteners, including a conveying channel 100, a working jig 200, a cutting device 300, a fastener positioning device 400, a covering sheet bending device 500, a pre-shaping device 600 and a molding device 700.

[0045] Please see Figures 1 to 4The conveying channel 100 is arranged along a first direction and is used to convey materials, which refer to metal gaskets and fasteners, with the fasteners inserted into the metal gaskets. The conveying channel 100 is discontinuous, that is, the conveying channel 100 is divided into two sections, and the working fixture 200 is located between the two sections of the conveying channel 100.

[0046] A work fixture 200 is disposed between conveying channels 100. The work fixture 200 has a conveying trough 210 that communicates with the conveying channels 100. The conveying trough 210 is arranged along a first direction. The bottom wall of the first conveying channel 100 is provided with adjacent first through holes and second through holes. A residual material discharge port 220 is provided through the work fixture 200. The residual material discharge port 220 is located on one side of the conveying trough 210. The residual material discharge port 220 is connected to a discharge channel 230.

[0047] The cutting device 300 includes a cutting cylinder 310, a movable upper die 320, and a cutter. Both the cutting cylinder 310 and the movable upper die 320 are located on one side of the working fixture 200. The cutting cylinder 310 is connected to the movable upper die 320, and the cutter is installed in the movable upper die 320, corresponding to the excess material discharge port 220. The cutting device 300 is located directly above the working fixture 200. The cutting cylinder 310 can move the movable upper die 320 and the cutter closer to or further away from the working fixture 200, thereby enabling the cutter to cut off excess strips of metal gasket.

[0048] The fixing component positioning device 400 includes a fixing component positioning cylinder 410 and a positioning component 420. The fixing component positioning cylinder 410 is located on the side of the working fixture 200 away from the cutting cylinder 310. The positioning component 420 is connected to the fixing component positioning cylinder 410 and is movably inserted into a first through hole. The positioning component 420 has a positioning hole along a third direction, which is a round hole. The fixing component positioning cylinder 410 can move the positioning component 420 closer to or away from the fixing component, and the fixing component stops on the working fixture 200 with its position directly opposite the positioning component 420. When the fixing component positioning cylinder 410 moves the positioning component 420 closer to the fixing component, the positioning hole on the positioning component 420 is directly opposite the fixing component, allowing the positioning component 420 to fit onto the fixing component, thereby achieving positioning of the fixing component and preventing the material from deviating from its position during cutting and bending. Furthermore, the positioning hole and the fixing component are in clearance fit.

[0049] The covering sheet bending device 500 includes a bending drive cylinder 510, a lifting rod 520, a shaft 530, and a bending component 540. The bending drive cylinder 510 is located on one side of the fixing positioning cylinder 410. The lifting rod 520 is connected to the bending drive cylinder 510 and can be movably inserted into a second through hole. The shaft 530 is located on the lifting rod 520 along a second direction. The bending component 540 is rotatably located on the shaft 530. The lengths of the shaft 530 and the bending component 540 are both less than the length of the second through hole. The bending drive cylinder 510 can simultaneously drive the lifting rod 520, the shaft 530, and the bending component 540 to move closer to or away from the covering sheet of the metal gasket. While cutting the excess material strip of the metal gasket, the covering sheet is bent. Two processes are completed simultaneously in one positioning operation, resulting in high processing efficiency.

[0050] In actual operation, when the material moves into the work fixture 200, the excess strip of the metal pad remains at the position of the excess material discharge port 220, and the covering sheet of the metal pad remains at the position of the second through hole. The moving upper die 320 moves downward under the drive and comes into contact with the material, pressing the material into the work fixture 200. At this time, the cutter approaches the excess strip of the metal pad but does not contact it. Then, the positioning hole on the positioning member 420 is aligned with the fixing member, allowing the positioning member 420 to fit onto the fixing member. After the material is positioned, the cutter cuts off the excess strip of the metal pad under the drive. The cut strip enters the discharge channel 230 along the excess material discharge port 220. At the same time, the lifting rod 520 moves upward under the drive, causing the bending member 540 to contact the covering sheet, thereby bending and fitting the covering sheet towards the fixing member.

[0051] Please see Figures 1 to 4 In some embodiments, a strip positioning rod is provided on the movable upper mold 320 facing the working fixture 200. The strip positioning rod is a round rod. Before the cutting process, the metal pad is connected to two strips: one strip to be cut and the other connected to the next metal pad. The positioning rod is used to insert into the other strip, thereby enabling the material to continue moving forward.

[0052] Please see Figures 1 to 4 In some embodiments, the length of the positioning member 420 is less than the length of the lifting rod 520. This ensures that the bending member 540 on the lifting rod 520 is higher than the positioning member 420, and that the covering sheet can be bent more completely when the bending member 540 contacts the covering sheet.

[0053] Please see Figures 1 to 4In some embodiments, the movement direction of the positioning member 420 is the same as that of the lifting rod 520. Both the positioning member 420 and the lifting rod 520 move along a third direction. Under the drive, the positioning member 420 is fitted onto the fixing member from bottom to top, while the bent member 540 located on the lifting rod 520 moves from bottom to top under the drive and contacts the covering piece, so that the covering piece is close to the fixing member.

[0054] Please see Figures 1 to 4 In some embodiments, a pre-shaping device 600 located on one side of the cutting device 300 is also included. The pre-shaping device 600 includes a pre-shaping machine base 610, a clamping cylinder 620, a clamping component 630, a pre-shaping cylinder 640, a pre-shaping connector 650, and a pre-shaping component 660. The pre-shaping machine base 610 is located on one side of the cutting device 300. The clamping cylinder 620 and the pre-shaping cylinder 640 are both disposed in the pre-shaping machine base 610. The clamping component 630 is connected to the clamping cylinder 620 and is movably disposed in the pre-shaping machine base 610. A clamping head 631 is disposed on the clamping component 630. The pre-shaping connector 650 is connected to the pre-shaping cylinder 640 and is movably disposed in the pre-shaping machine base 610. The pre-shaping component 660 is disposed on the pre-shaping connector 650.

[0055] The clamping cylinder 620 is used to move the clamping component 630 closer to or away from the material, so that the clamping head 631 of the clamping component 630 presses on the material. The pre-shaping cylinder 640 moves the pre-shaping connector 650 and the pre-shaping component 660 closer to or away from the material, and bends the extension of the metal gasket downward.

[0056] In actual operation, a single piece of material moves into the conveyor 100 directly below the pre-forming machine 610. The clamping member 630, driven by the machine, applies a vertically downward pressure to the material, pressing it into the conveyor 100. At this time, the pre-forming member 660, driven by the machine, pre-bends the extended sheet downward.

[0057] Please see Figures 1 to 4 In some embodiments, the pre-forming member 660 is offset from the conveyor channel 100. The extension of the metal gasket extends out of the conveyor channel 100 and is located directly below the pre-forming member 660. The pre-forming member 660 and the conveyor channel 100 cooperate to bend the extension.

[0058] Please see Figures 1 to 4In some embodiments, a limiting groove 611 is provided on the pre-shaping machine 610, and a limiting connector 670 is provided between the clamping cylinder 620 and the clamping member 630. The limiting connector 670 is movably disposed in the limiting groove 611. The limiting connector 670 and the limiting groove 611 cooperate with each other, thereby restricting the degree of freedom of the limiting connector 670 in a third direction, thus restricting the degree of freedom of the clamping member 630 in a third direction.

[0059] Please see Figures 1 to 4 In some embodiments, the clamping head 631 includes a clamping protrusion 6311 and a mounting piece 6312. The clamping protrusion 6311 has a clamping groove, which is semi-circular. The mounting piece 6312 is detachably mounted on the clamping protrusion 6311, and a clearance groove is formed between the mounting piece 6312 and the clamping protrusion 6311. When the clamping head 631 of the clamping member 630 presses down on the material, the upper part of the material is located in the clamping groove. In addition, the protruding part of the metal gasket is located in the clearance groove. This can prevent the clamping head 631 from interfering with the original structure of the metal gasket, and can also press the material into the conveying channel 100, improving the stability of the material on the conveying channel 100.

[0060] Please see Figures 1 to 4 In some embodiments, a forming device 700 is also included. The forming device 700 includes a forming cylinder 710, a forming connecting block 720, and a forming component 730. The forming cylinder 710 is disposed on one side of the pre-forming device 600 along a second direction. The forming connecting block 720 is connected to the forming cylinder 710, and the forming component 730 is connected to the forming connecting block 720. The forming cylinder 710 is used to move the forming connecting block 720 and the forming component 730 closer to or away from the bent extension piece of the metal gasket, further bending the extension piece to a predetermined angle.

[0061] Please see Figures 1 to 4 In some embodiments, the forming device 700 further includes a guide rail and a slider. The guide rail is disposed on one side of the pre-forming device 600 along the second direction, and the slider is movably disposed on the guide rail. The forming connector is connected to the slider. The cooperation between the guide rail and the slider makes the movement of the forming connector smoother.

[0062] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0063] The above are merely preferred embodiments of this application and do not constitute any limitation on this application. Any person skilled in the art can make many possible variations and modifications to the technical solution of this application, or modify it into equivalent embodiments, without departing from the scope of the technical solution of this application. Therefore, all equivalent changes made based on the shape, structure, and principle of this application without departing from the content of the technical solution of this application should be covered within the protection scope of this application.

Claims

1. An assembly device for 5G antenna metal pads and fasteners, characterized in that, include: The conveying channel is set along the first direction; A working fixture is disposed between the conveying channels. The working fixture has a conveying trough that communicates with the conveying channels. The conveying trough is arranged along a first direction. The bottom wall of the conveying channel is provided with adjacent first and second through holes. The working fixture is provided with a residual material discharge port, which is located on one side of the conveying trough and is connected to a discharge channel. The cutting device includes a cutting cylinder, a movable upper mold, and a cutter. The cutting cylinder and the movable upper mold are both located on one side of the working fixture. The cutting cylinder is connected to the movable upper mold, and the cutter is installed in the movable upper mold. The cutter is set corresponding to the waste material discharge port. A fixing component positioning device includes a fixing component positioning cylinder and a positioning component. The fixing component positioning cylinder is located on the side of the working fixture away from the cutting cylinder. The positioning component is connected to the fixing component positioning cylinder. The positioning component is movably inserted into the first through hole. The positioning component has a positioning hole along a third direction. The positioning hole is a round hole. A sheet bending device includes a bending drive cylinder, a lifting rod, a shaft, and a bending component. The bending drive cylinder is located on one side of the positioning cylinder of the fixing component. The lifting rod is connected to the bending drive cylinder and can be movably inserted into the second through hole. The shaft is located on the lifting rod along a second direction. The bending component is rotatably located on the shaft. The lengths of the shaft and the bending component are both less than the length of the second through hole. The first direction corresponds to the X-axis of the spatial coordinate system, the second direction corresponds to the Y-axis of the spatial coordinate system, and the third direction corresponds to the Z-axis of the spatial coordinate system; wherein, the first direction, the second direction, and the third direction are perpendicular to each other.

2. The assembly equipment for 5G antenna metal pads and fasteners according to claim 1, characterized in that, The movable upper mold is provided with a material strip positioning rod facing the working fixture, and the material strip positioning rod is a round rod.

3. The assembly equipment for 5G antenna metal pads and fasteners according to claim 1, characterized in that, The length of the positioning element is less than the length of the lifting rod.

4. The assembly equipment for 5G antenna metal pads and fasteners according to claim 3, characterized in that, The direction of movement of the positioning element is the same as the direction of movement of the lifting rod.

5. The assembly equipment for 5G antenna metal pads and fasteners according to claim 1, characterized in that, It also includes a pre-shaping device located on one side of the cutting device. The pre-shaping device includes a pre-shaping machine base, a clamping cylinder, a clamping component, a pre-shaping cylinder, a pre-shaping connector, and a pre-shaping component. The pre-shaping machine base is located on one side of the cutting device. The clamping cylinder and the pre-shaping cylinder are both located in the pre-shaping machine base. The clamping component is connected to the clamping cylinder and is movably disposed in the pre-shaping machine base. The clamping component is provided with a clamping head. The pre-shaping connector is connected to the pre-shaping cylinder and is movably disposed in the pre-shaping machine base. The pre-shaping component is disposed on the pre-shaping connector.

6. The assembly equipment for 5G antenna metal pads and fasteners according to claim 5, characterized in that, The pre-shaped component is offset from the conveyor channel.

7. The assembly equipment for 5G antenna metal pads and fasteners according to claim 5, characterized in that, A limiting groove is provided on the pre-forming machine platform, and a limiting connector is provided between the pressing cylinder and the pressing component. The limiting connector is movably disposed in the limiting groove.

8. The assembly equipment for 5G antenna metal pads and fasteners according to claim 5, characterized in that, The clamping head includes a clamping protrusion and a mounting plate. The clamping protrusion has a clamping groove, which is semi-circular. The mounting plate is detachably mounted on the clamping protrusion. An anti-cavity groove is formed between the mounting plate and the clamping protrusion.

9. The assembly equipment for 5G antenna metal pads and fasteners according to claim 5, characterized in that, It also includes a molding device, which includes a molding cylinder, a molding connecting block and a molding component. The molding cylinder is located on one side of the pre-shaping device along the second direction. The molding connecting block is connected to the molding cylinder and the molding component is connected to the molding connecting block.

10. The assembly equipment for 5G antenna metal pads and fasteners according to claim 9, characterized in that, The forming device further includes a guide rail and a slider. The guide rail is disposed on one side of the pre-forming device along the second direction, and the slider is movably disposed on the guide rail. The forming connecting block is connected to the slider.

Citation Information

Patent Citations

  • Deformation mounting device for inner core and metal sheet

    CN114939771A

  • Laser tape splicing equipment

    CN115194318A