Molding equipment

By combining the design of punching, forming and shaping devices, the problems of appearance defects and low precision in the edge-binding structure of forming equipment are solved, and high-precision forming of products is achieved.

CN223642601UActive Publication Date: 2025-12-09HEBI YUZHAN PRECISION TECH CO LTD
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Patent Information

Application Number
CN202423007977.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-12-09
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Existing molding equipment suffers from material reduction at the sharpest point of the edge-sealing structure, leading to product appearance defects and low molding accuracy.

Method used

It adopts a combined structure including punching, forming and shaping devices. Through the arc connection of the forming groove and the design of the shaping protrusion, it can achieve precise bending and shaping of the strip and ensure the flatness and perfection of the edge binding structure.

Benefits of technology

It improves the molding precision of the product, eliminates the outward turning of the edge binding structure, and enhances the appearance quality and molding effect of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides forming equipment to improve the product forming precision, the forming equipment comprises a blanking device, a forming device and a shaping device, the blanking device is used for receiving a material belt with a through hole, and a main body part, a first side plate and a second side plate are cut on the material belt; the forming device comprises a bearing assembly and a forming assembly, the bearing assembly is provided with a supporting area and a containing groove, the forming assembly is movably arranged above the bearing assembly and provided with a forming piece, and the forming piece is provided with a forming groove provided with an abutting face, a first forming face and a second forming face. An arc-shaped chamfering part is arranged at the joint of the first forming surface with the side opening and the second forming surface with the side opening; the shaping device comprises a shaping assembly and an abutting and pushing assembly, the shaping assembly comprises a shaping piece and a sliding piece, the shaping piece is provided with a bearing face, an abutting face and a shaping protrusion, the sliding piece is arranged on one side of the shaping piece in a sliding mode and provided with a shaping groove, and the abutting and pushing assembly is movably arranged above the sliding piece.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of parts processing, especially to a forming equipment. BACKGROUND

[0002] At present, in modern manufacturing industry, when the forming equipment is used for product forming and edge covering operation, for example, the flash lamp cover forming and edge covering operation of mobile phone, first, the blanking device cuts out the initial shape of the lamp cover with through holes on the material belt, then the forming device bends the two side edges of the initial shape of the lamp cover connected to each other to form an edge covering structure, and finally the shaping device performs plane shaping on the side edge of the initial shape of the lamp cover with part of the through holes and having been formed after edge covering.

[0003] Among them, the forming punch in the forming device is provided with a forming groove for bending the product, and the connecting groove walls of the forming groove have protrusions therebetween to reduce the material at the sharpest point position of the edge covering structure and avoid burrs at the edge covering structure. However, reducing the material at the sharpest point position of the edge covering structure is easy to make the edge covering structure not full, and thus to cause defects in the appearance of the product and low product forming precision. SUMMARY

[0004] In view of the above situation, it is necessary to provide a forming equipment to improve the forming precision.

[0005] The embodiment of the present application provides a kind of forming equipment, comprising:

[0006] Blanking device, for receiving material belt with through hole, and cutting out main part and first side plate and second side plate horizontally connected to the two sides of the main part on the material belt;

[0007] Forming device, including the bearing assembly and forming assembly that are arranged at intervals up and down, the bearing assembly has support area and accommodating groove, the support area corresponds with the forming assembly, and the main part of the material belt output from the blanking device is supported, the forming assembly is movably arranged above the bearing assembly and is provided with forming piece, the side of the forming piece towards the support area is provided with forming groove, the forming groove has abutting face and first forming surface and second forming surface with side opening formed by the arc connection around the abutting face, the abutting face is arranged corresponding to the support area, the arc connection of the first forming surface and the second forming surface is arc chamfer part, the abutting face is pressed to the main part of the material belt to the support area under the driving of the forming piece, the first forming surface and the second forming surface bend the first side plate and the second side plate of the material belt and extend out of the support area and are extruded into the accommodating groove to form the first side plate and the second side plate bently connected to the main part, and the first side plate forms part of the through hole and is arc transitionally connected with the second side plate; and

[0008] The shaping device comprises a shaping assembly and a pushing assembly. The shaping assembly comprises a shaping piece and a sliding piece. The shaping piece is provided with a supporting surface, an abutting surface and a shaping protrusion. The supporting surface is arranged on the upper surface of the shaping piece and used for supporting the main body part of the material belt after being shaped by the shaping device. The abutting surface is arranged on the circumferential side of the shaping piece and connected with the supporting surface. The abutting surface is used for abutting the first side plate. The shaping protrusion is protruded on the abutting surface. The sliding piece is slidably arranged on one side of the shaping piece and provided with a shaping groove. The shaping groove is arranged on the side of the sliding piece facing the abutting surface and correspondingly arranged with the shaping protrusion. The pushing assembly is movably arranged above the sliding piece. The pushing assembly is used for pushing the main body part to the supporting surface and pushing the sliding piece to move close to the shaping piece, so that the shaping protrusion pushes the first side plate to the shaping groove to shape the first side plate to a preset angle.

[0009] In actual use, the punching device cuts the first side plate and the second side plate horizontally connected on both sides of the main body part on the material belt first. Then the supporting area receives the cut material belt and supports the main body part of the material belt. The shaping piece moves close to the supporting area. The abutting surface abuts the main body part of the material belt to the supporting area. The first shaping surface and the second shaping surface bend the first side plate and the second side plate of the material belt out of the supporting area and into the accommodating groove, so that the first side plate and the second side plate are shaped on the material belt and arc-shapedly connected with the main body part. The first side plate has a part of the through hole and is arc-shapedly and transitionally connected with the second side plate, so that the first side plate and the second side plate form a covering structure. The arc-shaped connection of the first shaping surface and the second shaping surface forms an arc-shaped chamfer, so that the formed covering structure is smooth and complete. In addition, the first side plate is everted because the part of the through hole causes the excess material of the main body part to be extruded to the first side plate when being bent. Finally, the supporting surface supports the main body part, the abutting surface abuts the first side plate, the pushing assembly pushes the main body part to the supporting surface and pushes the sliding piece to move close to the shaping piece, so that the shaping protrusion pushes the everted first side plate to the shaping groove to shape the first side plate, thereby eliminating the everted condition of the first side plate and improving the shaping precision of the product.

[0010] In some embodiments, one side of the shaping protrusion facing the sliding piece is a shaping plane, and the groove bottom of the shaping groove is a clamping plane. The shaping plane and the clamping plane are respectively clamped on opposite sides of the first side plate to shape the first side plate.

[0011] In some embodiments, the shaping piece further comprises an abutting surface, which is arranged on the circumferential side of the shaping piece and connected with the abutting surface.

[0012] The shaping assembly further comprises a guide member adjacent to the shaping member and having a guide slope, the guide slope is obliquely arranged relative to the sliding member and abuts against the shaping member, and the guide slope is used to guide the oblique movement of the shaping member relative to the sliding member, so that the abutting surface and the abutting surface abut against the first side plate and the second side plate, respectively.

[0013] In some embodiments, one side of the shaping member towards the guide slope is provided with a protruding body, the guide member is provided with a guide groove, the guide groove is opened in the guide slope, and the guide groove accommodates the protruding body to guide the movement of the shaping member.

[0014] In some embodiments, the connection between the abutting surface and the abutting surface is the arc-shaped chamfer to fit the arc-shaped transition of the first side plate and the second side plate.

[0015] In some embodiments, one side of the sliding member away from the abutting surface is provided with a force receiving slope, the abutting member is provided with a pushing slope towards one side of the sliding member, the abutting member is lowered to drive the pushing slope to abut against the force receiving slope, so as to side-push the sliding member to move close to the abutting surface.

[0016] In some embodiments, the sliding member is provided with an avoiding groove on one side of the sliding member towards the abutting member, and the avoiding groove is used to accommodate the first side plate that has been shaped on the material belt.

[0017] In some embodiments, the connection between the first forming surface and the second forming surface and the abutting surface is an arc-shaped transition.

[0018] In some embodiments, the punching device comprises:

[0019] A support assembly has a receiving area for supporting the material belt and a material falling groove partially surrounding the receiving area.

[0020] A punching assembly is movably arranged above the support assembly and corresponds to the material falling groove, the punching assembly is used to move close to the receiving area and cooperate with the receiving area to cut out the main body part and the first side plate and the second side plate horizontally connected to the main body part on the material belt and form waste, so that the material falling groove receives the waste.

[0021] In some embodiments, the slot area of the material falling groove is greater than the cross-sectional area of the punching assembly. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 The structural diagram of the molding equipment and the adapted material belt provided by the embodiments of the present application is shown.

[0023] Figure 2 for Figure 1 The three-dimensional structure diagram of the product after shaping.

[0024] Figure 3 for Figure 2 The three-dimensional structure diagram of the product after shaping.

[0025] Figure 4 for Figure 1 The three-dimensional structure diagram of the shaping device.

[0026] Figure 5 for Figure 4 The three-dimensional structure diagram of the shaping member.

[0027] Figure 6 for Figure 1 The three-dimensional structure diagram of the shaping device.

[0028] Figure 7 for Figure 6 The three-dimensional structure diagram of the shaping member and the sliding member.

[0029] Figure 8 for Figure 1 The three-dimensional structure diagram of the punching device.

[0030] Main element symbol explanation: shaping equipment 100, punching device 101, shaping device 102, shaping device 103, bearing assembly 10, support area 11, containing groove 12, bearing surface 13, shaping assembly 20, shaping member 21, shaping groove 211, pressing surface 2111, first shaping surface 2112, second shaping surface 2113, arc chamfer part 2114, arc transition part 2115, side opening 2116, shaping assembly 30, shaping member 31, bearing surface 311, pressing surface 312, shaping protrusion 313, shaping flat surface 3131, abutting surface 314, convex body 315, sliding member 32, shaping groove 321, clamping flat surface 3211, stress inclined surface 322, avoiding groove 323, guide member 33, guide inclined surface 331, guide groove 332, pressing assembly 40, pressing member 41, pushing inclined surface 411, support assembly 50, receiving area 51, blanking groove 52, receiving surface 53, punching assembly 60, material belt 200, product 300, through hole 301, main body part 302, first side plate 303, second side plate 304. DETAILED DESCRIPTION

[0031] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0032] In the description of this application, it should be understood that the terms indicating orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and 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, and therefore should not be construed as a limitation of this application. Furthermore, 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 indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, it should be noted that "a plurality of" means two or more, unless otherwise explicitly specified.

[0033] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the term "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that allows communication between the two components; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0034] The following will describe some embodiments of this application in detail with reference to the accompanying drawings.

[0035] Please see Figure 1 , Figure 2 and Figure 3 This application provides a molding device 100, which includes a punching device 101, a molding device 102 and a shaping device 103, for molding a product 300 to improve the molding accuracy of the product 300.

[0036] Please see Figure 1 and Figure 2 The punching device 101 is used to receive a strip 200 having a plurality of through holes 301 and to cut at least one main body 302, at least one first side plate 303 and at least one second side plate 304 on the strip 200. The first side plate 303 and the second side plate 304 are horizontally connected to the two sides of the main body 302.

[0037] Please see Figure 4 andFigure 5 The forming device 102 includes a support component 10 and a forming component 20 arranged at intervals. The support component 10 is spaced apart from the punching device 101 and has a support surface 13 for carrying the strip 200. The support surface 13 has a support area 11 corresponding to the forming component 20. The support surface 13 has a receiving groove 12, which surrounds the support area 11. The support area 11 is used to support the main body 302 of the strip 200. The forming component 20 is movably disposed above the support component 10 and has a forming part 21. The forming part 21 has a forming groove 211 on the side facing the support area 11. The forming groove 211 has a pressing surface 2111 and a first forming surface 2112 and a second forming surface 2113 that are arc-shaped connected around the pressing surface 2111 and have a side opening 2116. The pressing surface 2111 is corresponding to the support area 11. The arc-shaped connection between the first forming surface 2112 and the second forming surface 2113 is an arc-shaped chamfer 2114. The pressing surface 2111 presses the main body 302 of the strip 200 to the support area 11 under the action of the forming part 21. The first forming surface 2112 and the second forming surface 2113 bend the first side plate 303 and the second side plate 304 of the strip 200 out of the support area 11 and press them into the receiving groove 12 to form the first side plate 303 and the second side plate 304 that are bent and connected to the main body 302. The first side plate 303 forms a partial through hole 301 and is connected to the second side plate 304 in an arc transition.

[0038] Please see Figure 6 and Figure 7 The shaping device 103 includes a shaping assembly 30 and a pushing assembly 40. The shaping assembly 30 includes a shaping member 31 and a sliding member 32. The shaping member 31 is provided with a supporting surface 311, a supporting surface 312, and a shaping protrusion 313. The supporting surface 311 is provided on the upper surface of the shaping member 31 and is used to support the main body 302 of the material strip 200 output after being formed by the forming device 102. The supporting surface 312 is provided on the periphery of the shaping member 31 and is connected to the supporting surface 311. The supporting surface 312 is used to abut against the first side plate 303. The shaping protrusion 313 protrudes from the supporting surface 312. The sliding member 32 is slidably disposed on one side of the shaping member 31 and is provided with a shaping groove 321. The shaping groove 321 is disposed on the side of the sliding member 32 facing the abutment surface 312 and is correspondingly disposed with the shaping protrusion 313. The pushing component 40 is movably disposed above the sliding member 32. The pushing component 40 is used to push the main body 302 to the support surface 311 and push the sliding member 32 to move closer to the shaping member 31, so that the shaping protrusion 313 pushes the first side plate 303 to the shaping groove 321 to shape the first side plate 303 to a preset angle in order to form the product 300.

[0039] In actual use, the forming equipment 100 described above firstly cuts out the first side plate 303 and the second side plate 304 horizontally connecting the two sides of the main body 302 from the strip 200 using the punching device 101. Then, the support area 11 receives the cut strip 200 and supports the main body 302 of the strip 200. The formed part 21 moves close to the support area 11, and the pressing surface 2111 presses against the main body 302 of the strip 200 to the support area 11. The first forming surface 2112 and the second forming surface 2113 bend the first side plate 303 and the second side plate 304 of the strip 200 out of the support area 11 and into the receiving groove 12, so that the first side plate 303 and the second side plate 304 are formed on the strip 200 and are arc-shaped connected to the main body 302. The first side plate 303 has a partial through hole 301 and is arc-shapedly connected to the second side plate 304. The first side plate 303 and the second side plate 304 form a binding structure. The arc connection between the first molding surface 2112 and the second molding surface 2113 forms an arc chamfer 2114, making the binding structure flat and round. In addition, since the first side plate 303 has a partial through hole 301, excess material in the main body 302 is squeezed to the first side plate 303 during bending, causing the first side plate 303 to fold outward. Finally, the supporting surface 311 supports the main body 302, the abutting surface 312 abuts the first side plate 303, and the pushing component 40 pushes the main body 302 to the supporting surface 311 and pushes the sliding component 32 to move closer to the shaping component 31, so that the shaping protrusion 313 pushes the folded first side plate 303 to the shaping groove 321 to shape the first side plate 303, thereby eliminating the folded condition of the first side plate 303 and improving the molding accuracy of the product 300.

[0040] Please see Figure 7 In some embodiments, the side of the shaping protrusion 313 facing the slider 32 is the shaping plane 3131, and the bottom of the shaping groove 321 is the clamping plane 3211. The shaping plane 3131 and the clamping plane 3211 are respectively clamped on opposite sides of the first side plate 303 to shape the first side plate 303.

[0041] Thus, by setting the shaping plane 3131 and clamping plane 3211 as described above, the clamping plane 3211, driven by the sliding member 32, cooperates with the shaping plane 3131 to clamp the opposite sides of the first side plate 303, thereby adjusting the straightness of the first side plate 303 and helping to counteract the outward flipping of the first side plate 303.

[0042] The aforementioned preset angle can be the angle of the shaping plane 3131 or the angle of the clamping plane 3211.

[0043] Please continue reading. Figure 7In some embodiments, the shaping member 31 further includes an abutment surface 314, which, along with the supporting surface 312, is disposed on the periphery of the shaping member 31 and connected to the supporting surface 312. The shaping assembly 30 further includes a guide member 33, which is adjacent to the shaping member 31 and has a guide slope 331. The guide slope 331 is inclined relative to the sliding member 32 and abuts against the shaping member 31. The guide slope 331 is used to guide the shaping member 31 to move at an angle relative to the sliding member 32, so that the supporting surface 312 and the abutment surface 314 abut against the first side plate 303 and the second side plate 304, respectively.

[0044] In this embodiment, the shaping member 31 protrudes from the upper surface of the sliding member 32 in the initial state. The pushing component 40 presses the main body 302 of the formed strip 200 against the supporting surface 311 of the shaping member 31 and pushes the shaping member 31 to move in the direction of the pushing component 40 towards the sliding member 32. Thus, by providing the guide member 33, the shaping member 31 moves at an angle relative to the sliding member 32 under the guidance of the guide slope 331, so that the abutting surface 312 and the abutting surface 314 abut against the first side plate 303 and the second side plate 304 respectively. This allows the shaping member 31 to simultaneously support the main body 302, the first side plate 303 and the second side plate 304 of the strip 200, which is beneficial for the sliding member 32 and the shaping member 31 to stably shape the first side plate 303.

[0045] Please see Figure 6 and Figure 7 In some embodiments, the shaping member 31 has a protrusion 315 on the side facing the guide slope 331, and the guide member 33 has a guide groove 332. The guide groove 332 is opened on the guide slope 331 and the guide groove 332 receives the protrusion 315 to guide the movement of the shaping member 31.

[0046] Thus, by setting the aforementioned protrusion 315 and guide groove 332, the guide groove 332 accommodates the protrusion 315 to guide the shaping part 31 to tilt relative to the sliding part 32. At the same time, the guide groove 332 limits the protrusion 315 and the shaping part 31 connected to it, preventing the shaping part 31 from detaching from the guide part 33, which helps to ensure the stable operation of the shaping assembly 30.

[0047] In some embodiments, the connection between the abutting surface 312 and the abutting surface 314 is a curved chamfer 2114.

[0048] Thus, by setting the connection between the abutting surface 312 and the abutting surface 314 to be an arc-shaped chamfer 2114, the connection between the abutting surface 312 and the abutting surface 314 can be precisely fitted to the arc-shaped transition between the first side plate 303 and the second side plate 304, avoiding gaps between the abutting surface 312 and the abutting surface 314 and the first side plate 303 and the second side plate 304, and ensuring that the shaping part 31 stably supports the first side plate 303 and the second side plate 304.

[0049] Please see Figure 6 and Figure 7 In some embodiments, the sliding member 32 has a force-receiving inclined surface 322 on the side away from the abutment surface 312, and the pushing assembly 40 includes an abutment member 41. The abutment member 41 has a pushing inclined surface 411 on the side facing the sliding member 32. The abutment member 41 descends and drives the pushing inclined surface 411 to abut the force-receiving inclined surface 322, so as to push the sliding member 32 to move closer to the abutment surface 312.

[0050] Thus, by setting the aforementioned force-bearing inclined surface 322 and pushing inclined surface 411, the pushing inclined surface 411 abuts against the force-bearing inclined surface 322 under the action of the supporting member 41, thereby causing the supporting member 41 to stably push the sliding member 32 closer to the supporting surface 312, ensuring the shaping stability of the shaping component 30.

[0051] Please see Figure 7 In some embodiments, the slider 32 is provided with a relief groove 323, which is located on the side of the slider 32 facing the pushing assembly 40. The relief groove 323 is used to receive the first side plate 303 that has been shaped on the material strip 200.

[0052] Thus, by setting the aforementioned clearance groove 323, the clearance groove 323 can collect the shaped first side plate 303 on the material strip 200, thus preventing the pushing component 40 from colliding with the shaped component 303 and other components when the first side plate 303 to be shaped is shaped in conjunction with the shaping component 30.

[0053] Please see Figure 5 In some embodiments, the connection between the first molding surface 2112 and the second molding surface 2113 and the pressing surface 2111 is an arc-shaped transition portion 2115.

[0054] Thus, by setting the aforementioned arc-shaped transition portion 2115, when the main body portion 302 on the strip 200 extending out of the support area 11 is bent, the molded part 21 shapes the connection between the main body portion 302 and the first side plate 303 and the second side plate 304 through the arc-shaped transition portion 2115, so that the main body portion 302 smoothly transitions to the first side plate 303 and the second side plate 304, ensuring the quality and aesthetics of the product 300.

[0055] Please see Figure 8In some embodiments, the blanking device 101 includes a support assembly 50 and a blanking assembly 60. The support assembly 50 has a receiving surface 53 for carrying the strip 200. The receiving surface 53 has a receiving area 51 and a discharge groove 52 adjacent to the receiving area 51. The receiving area 51 corresponds to the blanking assembly 60, and the discharge groove 52 is partially arranged around the receiving area 51. The blanking assembly 60 is movably disposed above the support assembly 50 and corresponding to the discharge groove 52. The blanking assembly 60 is used to move close to the receiving area 51 and cooperate with the receiving area 51 to cut out the main body 302 and the first side plate 303 and the second side plate 304 horizontally connected to the main body 302 on the strip 200 to form waste material (not shown), so that the discharge groove 52 can receive the waste material.

[0056] Thus, by setting the specific structure of the support component 50 and the punching component 60, the punching component moves close to the receiving area 51 and cooperates with the receiving area 51 to cut out the main body 302 and the first side plate 303 and the second side plate 304 horizontally connected to the main body 302 on the strip 200 and form waste material, so that the discharge chute 52 can receive the waste material, which facilitates the subsequent forming operation of the cutting product 300 by the forming device 102.

[0057] It is understood that the punching assembly 60 and other components of the support assembly 50 can cut through holes 301 on the strip 200. Their specific structure and mating relationship will not be described in detail here.

[0058] Please continue reading. Figure 8 In some embodiments, the opening area of ​​the blanking trough 52 is larger than the cross-sectional area of ​​the punching assembly 60.

[0059] Thus, by setting the groove area of ​​the blanking groove 52 to be larger than the cross-sectional area of ​​the blanking component 60, the blanking groove 52 can accommodate the end of the blanking component 60 adjacent to the support component 50, thereby avoiding collision between the support component 50 and the blanking component 60.

[0060] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this application without departing from the spirit and scope of the technical solutions of this application.

Claims

1. A molding device, characterized in that, include: A punching device is used to receive a strip of material with through holes and to cut out a main body and a first side plate and a second side plate horizontally connected to both sides of the main body on the strip of material. A forming device includes a support component and a forming component arranged at intervals. The support component has a support area and a receiving groove. The support area corresponds to the forming component and supports the main body of the strip output from the punching device. The forming component is movably disposed above the support component and has a forming part. The forming part has a forming groove on the side facing the support area. The forming groove has a pressing surface and a first forming surface and a second forming surface that are arc-shaped and connected around the pressing surface to form a side opening. The pressing surface is corresponding to the support area. The arc-shaped connection between the first forming surface and the second forming surface is an arc-shaped chamfer. The pressing surface presses the main body of the strip against the support area under the action of the forming part. The first forming surface and the second forming surface bend and extend the first side plate and the second side plate of the strip out of the support area and punch and squeeze them into the receiving groove to form the first side plate and the second side plate that are bent and connected to the main body. The first side plate forms a partial through hole and is arc-shaped and connected to the second side plate. and A shaping device includes a shaping assembly and a pushing assembly. The shaping assembly includes a shaping member and a sliding member. The shaping member has a supporting surface, a supporting surface, and a shaping protrusion. The supporting surface is located on the upper surface of the shaping member and is used to support the main body of the strip output after being formed by the forming device. The supporting surface is located on the periphery of the shaping member and is connected to the supporting surface. The supporting surface is used to abut against the first side plate. The shaping protrusion protrudes from the supporting surface. The sliding member is slidably located on one side of the shaping member and has a shaping groove. The shaping groove is located on the side of the sliding member facing the supporting surface and is correspondingly arranged with the shaping protrusion. The pushing assembly is movably located above the sliding member. The pushing assembly is used to push the main body to the supporting surface and push the sliding member closer to the shaping member, so that the shaping protrusion pushes the first side plate to the shaping groove to shape the first side plate to a preset angle.

2. The molding equipment as described in claim 1, characterized in that, The side of the shaping protrusion facing the slider is a shaping plane, and the bottom of the shaping groove is a clamping plane. The shaping plane and the clamping plane are respectively clamped on opposite sides of the first side plate to shape the first side plate.

3. The molding equipment as described in claim 1, characterized in that, The shaping component also includes abutting surface, which is located on the periphery of the shaping component and connected to the abutting surface; The shaping assembly further includes a guide member, which is adjacent to the shaping member and has a guide slope. The guide slope is inclined relative to the slider and abuts against the shaping member. The guide slope is used to guide the shaping member to move at an inclination relative to the slider, so that the abutting surface and the abutting surface abut against the first side plate and the second side plate, respectively.

4. The molding equipment as described in claim 3, characterized in that, The shaping component has a protruding body on one side facing the guide slope, and the guide component has a guide groove. The guide groove is opened on the guide slope and receives the protruding body to guide the movement of the shaping component.

5. The molding equipment as described in claim 3, characterized in that, The connection between the supporting surface and the abutting surface is the arc-shaped chamfered portion, which fits into the arc-shaped transition between the first side plate and the second side plate.

6. The molding equipment as described in claim 1, characterized in that, The slider has a force-receiving inclined surface on the side away from the abutment surface. The pushing assembly includes an abutment member. The abutment member has a pushing inclined surface on the side facing the slider. The abutment member descends and drives the pushing inclined surface to abut the force-receiving inclined surface, thereby pushing the slider closer to the abutment surface.

7. The molding equipment as described in claim 1, characterized in that, The slider is provided with a clearance groove, which is located on the side of the slider facing the pushing assembly. The clearance groove is used to receive the first side plate that has been shaped on the material strip.

8. The molding equipment as described in claim 1, characterized in that, The connection points between the first molding surface and the second molding surface and the pressing surface are both arc-shaped transition sections.

9. The molding equipment as described in claim 1, characterized in that, The punching device includes: A support component has a receiving area and a discharge chute, wherein the receiving area is used to support the material strip and the discharge chute partially surrounds the receiving area; A punching assembly is movably disposed above the support assembly and corresponding to the material drop chute. The punching assembly is used to move close to the receiving area and cooperate with the receiving area to cut the main body and the first side plate and the second side plate horizontally connected to the main body on the strip and form waste material so that the material drop chute receives the waste material.

10. The molding equipment as described in claim 9, characterized in that, The opening area of ​​the blanking trough is larger than the cross-sectional area of ​​the punching assembly.