High-safety aluminum veneer bending equipment

By introducing a bottom mold and a pressing mold mechanism into the aluminum single-panel bending equipment, combined with improvements to the clamping mechanism, the deformation and detachment problems of aluminum single panels when processing multiple curved surfaces have been solved, achieving a more efficient and stable bending effect.

CN115475859BActive Publication Date: 2025-11-28JIANGSU NUOMI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202211201707.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-29
Publication Date
2025-11-28
Estimated Expiration
2042-09-29

AI Technical Summary

Technical Problem

When processing multiple curved surfaces, existing aluminum panel bending equipment can only clamp the aluminum panel at the edge, causing the aluminum panel to be subjected to concentrated stress, making it easy to deform or detach, resulting in processing inconvenience, especially when the edge is narrow.

Method used

The system employs a bottom mold and a pressing mechanism in conjunction with a clamping mechanism. The bottom mold is machined with an arc surface on the aluminum panel, and the clamping mechanism drives the base plate to move via a power mechanism. The rods and clamping plates are connected by bolts, and the rods are equipped with rotating shafts and connecting components to evenly distribute stress and adapt to aluminum panels of different thicknesses.

Benefits of technology

It effectively reduces the risk of deformation and detachment of aluminum panels during processing, improves processing stability and efficiency, and enables the processing of multiple curved surfaces on aluminum panels, reducing the probability of breakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a high-safety aluminum veneer bending equipment and relates to the technical field of aluminum veneer processing machines, which comprises a bottom plate, a bottom die, a die pressing mechanism and a clamping mechanism, the bottom die is installed on the bottom plate, the die pressing mechanism is arranged on the bottom plate, the die pressing mechanism is located on the side of the bottom die far from the bottom plate, the die pressing mechanism is used for reciprocating movement and abutting against the aluminum veneer, the clamping mechanism comprises a power mechanism, a base plate and two clamping assemblies, the power mechanism is arranged on the bottom plate, the base plate is connected with the power mechanism, the power mechanism is used for driving the base plate to move in the direction close to and far from the bottom die, the clamping assembly comprises a rod one, a rod two and a clamping plate, one end of the rod one is rotationally connected to the base plate, the other end is rotationally connected to the end of the rod two, the end of the rod two far from the rod one is rotationally connected to the clamping plate, the clamping plate is used for clamping the aluminum veneer, and the clamping plates of the two clamping assemblies are detachably connected through bolts. The application has the effect of conveniently processing the aluminum veneer with an arc surface.
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Description

Technical Field

[0001] This application relates to the technical field of aluminum panel processing machinery, and in particular to a highly safe aluminum panel bending device. Background Technology

[0002] Aluminum single-layer panels are building decoration materials that have undergone processes such as chromating. Aluminum single-layer panels have good corrosion resistance and resistance to hot and cold temperatures. They also have excellent processing performance, allowing them to be processed into various shapes, thus making them widely used in interior decoration. To enhance aesthetics, aluminum single-layer panels often require curved surfaces, which are achieved using aluminum single-layer panel bending equipment.

[0003] The relevant aluminum panel bending equipment includes a frame, a die, and a clamping mechanism. The die is fixedly connected to the frame and is used to press against the aluminum panel, thereby bending the panel to form an arc surface. The clamping mechanism is mounted on the frame and has a power mechanism that drives the clamping mechanism to move. The clamping mechanism is configured as a clamping plate, the structure of which is shown in the attached instruction manual. Figure 1 As shown, the clamping plate includes a connecting part 1', a snap-fit ​​part 2', and a clamping part 3'. The snap-fit ​​part 2' is arc-shaped and is used to abut against the outer wall of the pipe. The connecting part 1' and the clamping part 3' are located on both sides of the snap-fit ​​part 2'. Both the connecting part 1' and the clamping part 3' have through holes for bolt insertion. By setting two clamping plates on the pipe, the clamping part 3' is located on the upper and lower sides of the aluminum single panel, which enables the clamping plates to clamp the aluminum single panel. The power mechanism can move the pipe to achieve the effect of pulling and processing the aluminum single panel.

[0004] The aforementioned technical solutions have the following drawbacks: When processing multiple curved surfaces on an aluminum panel, the clamping plate can only be held at the edge of the aluminum panel. When the edge of the aluminum panel is narrow, the force on the aluminum panel is concentrated during the process of the clamping plate being held on the side of the aluminum panel and moving, which can easily cause the aluminum panel to deform or detach from the clamping plate, resulting in processing inconvenience. Summary of the Invention

[0005] To facilitate the processing of pre-curved aluminum panels, this application provides a highly safe aluminum panel bending device.

[0006] The high-safety aluminum single-panel bending equipment provided in this application adopts the following technical solution:

[0007] The utility model provides a high security's aluminium veneer bending equipment, including bottom plate, bottom die, mould pressing mechanism and clamping mechanism, bottom die installs on the bottom plate, mould pressing mechanism sets up on the bottom plate, mould pressing mechanism is located on the side of bottom die far from the bottom plate, mould pressing mechanism is used for reciprocating and leans on aluminium veneer, clamping mechanism includes power mechanism, base plate and two clamping components, power mechanism sets up on the bottom plate, base plate is connected with power mechanism, power mechanism is used for driving base plate moves in the direction close to and far from bottom die, clamping component includes link one, link two and clamping plate, link one one end rotationally connected in base plate, the other end rotationally connected in the end of link two, link two on the end far from link one rotationally connected in clamping plate, clamping plate is used for clamping aluminium veneer, and the clamping plate of two clamping components is detachably connected through bolt.

[0008] Through the above technical scheme, by setting the bottom die on the bottom plate, setting the mould pressing mechanism above the bottom die, the mould pressing mechanism can vertically fall and extrude the aluminium veneer, the effect of processing the arc surface on the aluminium veneer is achieved, the bottom die supports the aluminium veneer, can be on the other side of the aluminium veneer, reduces the probability of excessive depression of the aluminium veneer, by setting the clamping mechanism on the bottom plate, the power mechanism can drive the base plate to move, thereby playing the effect of pulling the aluminium veneer, so that the aluminium veneer can pass through the space between the bottom die and the mould pressing mechanism, the effect of processing the arc surface on the aluminium veneer is achieved, by rotationally connecting the link one and the link two on the base plate, the clamping plate can move through the link one and the link two, the freedom of the clamping plate is improved, the clamping plate can abut on the two side surfaces of the aluminium veneer, by setting the bolt on the clamping plate, the bolt is located on the two sides of the aluminium veneer, thereby the clamping plate can be clamped at the flat part between the two arc surfaces, even if the space between the two arc surfaces is narrow, the clamping plate can also clamp the aluminium veneer with a larger area, the connection is firm, and the effect of conveniently processing the aluminium veneer with the arc surface is achieved.

[0009] Optionally, the cross section of the bottom die is a figure surrounded by two straight lines and an arc, and the moving direction of the base plate driven by the power mechanism is parallel to the tangent line of the end of the arc of the bottom die.

[0010] Through the above technical scheme, by setting the bottom die as a columnar structure with an arc surface, the bottom die can process the aluminium veneer with a larger size, when the power mechanism drives the clamping component to move, the moving direction of the aluminium veneer is the same as the tangent line at the outlet of the bottom die and the mould pressing mechanism, thereby reducing the stress applied to the aluminium veneer by the edge of the bottom die, reducing the shear stress on the aluminium veneer, and reducing the probability of fracture of the aluminium veneer during processing.

[0011] Optionally, the mould pressing mechanism comprises a hydraulic mechanism, a mounting plate and an arc-shaped piece, the hydraulic mechanism is arranged on the bottom plate, the mounting plate is connected to the hydraulic mechanism, the hydraulic mechanism is used to drive the mounting plate to reciprocate, the mounting plate is located on the side of the bottom die far from the bottom plate, and the arc-shaped piece is mounted on the mounting plate and used to extrude the aluminium veneer together with the bottom die.

[0012] By adopting the technical scheme, the hydraulic mechanism is arranged on the bottom plate, the hydraulic mechanism can drive the mounting plate to move vertically, the user can set the aluminum single plate between the arc-shaped piece and the bottom die, the hydraulic mechanism drives the arc-shaped piece to extrude the aluminum single plate, the aluminum single plate is pressed on the arc surface of the bottom die, and different shapes can be machined on the aluminum single plate.

[0013] Optionally, the rod one is provided with a rotating shaft, the rotating shaft penetrates the rod one and the rod two, and a connecting assembly is detachably connected to the rotating shaft, the connecting assembly is connected to the two rotating shafts of the two clamping assemblies, and the connecting assembly is used to stabilize the distance between the two rotating shafts.

[0014] By adopting the technical scheme, the rotating shaft is arranged on the rod one, the connecting assembly is arranged on the rotating shaft, one end of the connecting assembly is connected to one rotating shaft, and the connecting assembly plays a supporting role, when the power mechanism drives the clamping assembly to move, the rod one and the rod two have a tendency to rotate, the connecting assembly is clamped between the two rotating shafts, so that the base plate, the rod one, the rod two and the clamping plate remain relatively stationary, the stress concentration phenomenon on the clamping assembly can be reduced, and the stress on the clamping assembly is uniformly distributed.

[0015] Optionally, the connecting assembly comprises two shaft seats and a sleeve, the rotating shaft is used for being inserted into the shaft seat and being rotationally connected with the shaft seat, and one end of the sleeve is connected with one shaft seat.

[0016] By adopting the technical scheme, the shaft seat is arranged at both ends of the sleeve, one shaft seat is connected to one rotating shaft, so that the sleeve clamps the two rotating shafts, the user can slide the shaft seat to detach the shaft seat from the rotating shaft, and the sleeve is convenient to use.

[0017] Optionally, the shaft seat is connected with a connecting rod, an external thread is formed at one end of the connecting rod away from the shaft seat, internal thread holes are formed at both ends of the sleeve, the sleeve is threadedly connected with the connecting rod, and the threads at both ends of the sleeve have opposite directions.

[0018] By adopting the technical scheme, the connecting rod is arranged on the shaft seat, the connecting rod and the sleeve are threadedly connected, the user can adjust the relative position of the connecting rod and the sleeve, and the distance between the two shaft seats is adjusted, so that the user can install the connecting assembly on the rotating shaft when the clamping plate clamps aluminum single plates with different thicknesses.

[0019] Optionally, the bottom die is detachably connected to the bottom plate.

[0020] By adopting the technical scheme, the bottom die is detachably connected to the bottom plate, and the arc-shaped piece is detachably connected to the mounting plate, the user can set bottom dies and arc-shaped pieces with different shapes, and different shapes can be pressed on the aluminum single plate.

[0021] Optionally, the rod one and the rod two are provided in plurality, and the rod one and the rod two in the same clamping assembly are provided equidistantly along the length direction of the base plate.

[0022] By adopting the technical scheme, the rod one is provided on the base plate, and the rod two is connected to each rod one, so that when the power mechanism drives the clamping assembly to move, the stress on the clamping plate is evenly distributed on the rod two and the rod one, and the structural stability of the clamping assembly is improved.

[0023] To sum up, the beneficial technical effects of the present application are:

[0024] 1. The bottom die is arranged on the bottom plate, and the pressing die mechanism is arranged above the bottom die, so that the pressing die mechanism can vertically fall and extrude the aluminum veneer, so as to process the arc surface on the aluminum veneer. The bottom die supports the aluminum veneer and can abut against the other side of the aluminum veneer, thereby reducing the probability of excessive depression of the aluminum veneer. The clamping mechanism is arranged on the bottom plate, so that the power mechanism can drive the base plate to move, thereby pulling the aluminum veneer, enabling the aluminum veneer to pass through the space between the bottom die and the pressing die mechanism, and completing the processing of the arc surface on the aluminum veneer. The rod one and the rod two are rotatably connected to the base plate, so that the clamping plate can move through the rod one and the rod two, improving the degree of freedom of the clamping plate, enabling the clamping plate to abut against the two side surfaces of the aluminum veneer, and enabling the clamping plate to be clamped at the flat part between the two arc surfaces by arranging the bolts on the clamping plate, thereby facilitating the processing of the aluminum veneer with the arc surface;

[0025] 2. The shaft is arranged on the rod one, and the connecting assembly is arranged on the shaft. One end of the connecting assembly is connected to one shaft, thereby supporting the base plate, the rod one, the rod two and the clamping plate to remain relatively stationary when the power mechanism drives the clamping assembly to move, thereby reducing the stress concentration on the clamping assembly and evenly distributing the stress on the clamping assembly.

[0026] 3. The connecting rod is arranged on the shaft seat, and the connecting rod and the sleeve are connected by threads, so that the user can adjust the relative position of the connecting rod and the sleeve, thereby adjusting the distance between the two shaft seats. When the clamping plate clamps aluminum veneers of different thicknesses, the user can install the connecting assembly on the shaft. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a structural schematic diagram of the clamping plate of the prior art.

[0028] Figure 2 is a use state schematic diagram of the embodiment of the present application Figure 1 .

[0029] Figure 3 This is a schematic diagram of the usage state of an embodiment of this application. Figure 2 .

[0030] Figure 4 This is a schematic diagram of the clamping component according to an embodiment of this application.

[0031] Figure 5 This is a schematic diagram of the structure of the connection component according to an embodiment of this application.

[0032] Figure 6 This is a schematic diagram of the installation structure of the grinding roller according to an embodiment of this application.

[0033] Reference numerals: 1' Connecting part; 2' Snap-fit ​​part; 3' Clamping part; 1, Base plate; 2, Bottom mold; 3, Pressing mechanism; 31, Hydraulic mechanism; 32, Mounting plate; 33, Arc-shaped part; 4, Clamping mechanism; 41, Power mechanism; 42, Base plate; 43, Clamping assembly; 431, Rod one; 432, Rod two; 433, Clamping plate; 434, Rotating shaft; 435, Extension rod; 436, Grinding roller; 44, Connecting assembly; 441, Shaft seat; 442, Connecting rod; 443, Sleeve. Detailed Implementation

[0034] The following is in conjunction with the appendix Figures 2-5 This application will be described in further detail.

[0035] This application discloses a highly safe aluminum single-panel bending device. (Refer to...) Figure 2 and Figure 3 The system includes a base plate 1, a bottom mold 2, a pressing mechanism 3, and a clamping mechanism 4. The base plate 1 is horizontally positioned, and the bottom mold 2 is positioned on the side of the base plate 1 away from the ground. The pressing mechanism 3 is mounted on the base plate 1 and is located above the bottom mold 2. The pressing mechanism 3 is used to reciprocate in the vertical direction. Users can place the aluminum panel between the bottom mold 2 and the pressing mechanism 3, causing the pressing mechanism 3 to fall vertically. This causes the bottom mold 2 and the pressing mechanism 3 to squeeze and deform the aluminum panel, achieving the effect of bending the aluminum panel. The base plate 1 is equipped with a clamping mechanism 4, which is used to clamp the aluminum panel and move it away from the bottom mold 2 and the pressing mechanism 3, allowing the aluminum panel to pass through the space between the bottom mold 2 and the pressing mechanism 3, achieving the effect of arcing on the aluminum panel.

[0036] Reference Figure 2 and Figure 3, the bottom die 2 is a columnar structure, the cross section of the bottom die 2 is a figure surrounded by two straight lines and an arc, the arc surface of the bottom die 2 is used for supporting the aluminum veneer, so that the aluminum veneer can be deformed and then attached to the bottom die 2, thereby forming an arc surface on the aluminum veneer. The bottom die 2 is detachably connected to the bottom plate 1 by bolts, so that the user can replace the bottom die 2 to adjust the arc line processed on the aluminum veneer. The mold pressing mechanism 3 includes a plurality of hydraulic mechanisms 31, a mounting plate 32 and an arc-shaped piece 33, the hydraulic mechanisms 31 are arranged in two groups, the two groups of hydraulic mechanisms 31 are respectively located on both sides of the length direction of the bottom die 2, the hydraulic mechanisms 31 are arranged as hydraulic cylinders, the hydraulic mechanisms 31 are perpendicular to the bottom plate 1, the cylinder body of the hydraulic mechanisms 31 is fixed on the bottom plate 1, the piston rod of the hydraulic mechanisms 31 is fixed on the mounting plate 32, the mounting plate 32 is located above the bottom die 2, and the arc-shaped piece 33 is detachably connected to one side of the mounting plate 32 close to the bottom die 2 by bolts. The arc-shaped piece 33 is a columnar structure, the cross section of the arc-shaped piece 33 is a figure surrounded by two straight lines and an arc, the arc surface is arranged on the arc-shaped piece 33, and the arc surface of the arc-shaped piece 33 can be attached to the arc surface of the bottom die 2. The mounting plate 32 can drive the arc-shaped piece 33 to vertically reciprocate through the hydraulic mechanisms 31, thereby achieving the effect of processing the arc surface on the aluminum veneer.

[0037] With reference to Figure 3 and Figure 4 , the clamping mechanism 4 includes a plurality of power mechanisms 41, a base plate 42 and two clamping assemblies 43, the power mechanisms 41 can be hydraulic cylinders, the length direction of the power mechanisms 41 is parallel to the bottom plate 1, the cylinder body of the power mechanisms 41 is fixed on the bottom plate 1, the piston rod of the power mechanisms 41 is fixed on the base plate 42, the clamping assemblies 43 are connected to the base plate 42, and the clamping assemblies 43 are used for clamping the aluminum veneer. The length direction of the power mechanisms 41 is parallel to the tangent line at the end point of the arc line of the cross section of the bottom die 2, when the clamping assemblies 43 clamp the aluminum veneer, the power mechanisms 41 can drive the base plate 42 to move, at this time, the aluminum veneer can move along the tangent direction of the bottom die 2, thereby reducing the shearing stress of the aluminum veneer on the bottom die 2 and the arc-shaped piece 33 during the pulling arc process, so as to reduce the probability of fracture of the aluminum veneer.

[0038] With reference to Figure 3 and Figure 4Two clamping assemblies 43 are arranged on the upper side and the lower side of the base plate 42 respectively, and the two clamping assemblies 43 are symmetrical relative to the horizontal plane. The length direction of the base plate 42 is perpendicular to the power mechanism 41, and the clamping assembly 43 comprises a plurality of rod members one 431, a plurality of rod members two 432 and a clamping plate 433. One end of the rod member one 431 is rotatably connected to the base plate 42, and the other end is rotatably connected to the end of the rod member two 432. The rod member one 431 is arranged at equal intervals along the length direction of the base plate 42. The end of the rod member two 432 away from the rod member one 431 is rotatably connected to the clamping plate 433. The clamping plate 433 can be moved through the rod member one 431 and the rod member two 432, so that the two clamping plates 433 can be attached to the two sides of the aluminum veneer with different thicknesses. The side of the clamping plate 433 close to the aluminum veneer is rough, so as to increase the connection strength of the clamping plate 433 and the aluminum veneer. The opposite sides of the clamping plate 433 are provided with through holes. When the clamping plate 433 clamps the aluminum veneer, the through holes are located on the opposite sides of the aluminum veneer. The user can connect the two clamping plates 433 through bolts and nuts, so that the clamping plate 433 can stably clamp the aluminum veneer. By clamping the aluminum veneer with the clamping plate 433, the contact area between the clamping mechanism 4 and the aluminum veneer can be increased, and the friction force can be increased. By arranging the bolts on the two sides of the aluminum veneer, the clamping plate 433 can be clamped at the plane of any position on the aluminum veneer, so as to facilitate the user to process a plurality of arc surfaces on the aluminum veneer.

[0039] With reference to Figure 4 and Figure 5 , a rotating shaft 434 is arranged between the rod member one 431 and the rod member two 432. The rotating shaft 434 penetrates the plurality of rod member ones 431 and the plurality of rod member twos 432 in sequence, and the rod member one 431 and the rod member two 432 are rotatably connected through the rotating shaft 434. The two ends of the rotating shaft 434 protrude, and the connecting assembly 44 can be continuously connected to the rotating shaft 434. The connecting assembly 44 is used for supporting the two rotating shafts 434, so that the distance between the rotating shafts 434 of the two clamping assemblies 43 remains stable, thereby reducing the probability of rotation of the rod member one 431 and the rod member two 432 when the clamping plate 433 clamps the aluminum veneer, and making the direction of movement of the aluminum veneer driven by the power mechanism 41 constant.

[0040] With reference to Figure 4 and Figure 5The connecting assembly 44 includes two bearing seats 441, two connecting rods 442, and a sleeve 443. A rotating shaft 434 is inserted into and rotatably connected to the bearing seats 441. One end of each connecting rod 442 is fixed to the bearing seat 441, and the other end has an external thread. Both ends of the sleeve 443 have internal threaded holes. One end of the sleeve 443 is detachably connected to a connecting rod 442 via a thread. The threads at both ends of the sleeve 443 rotate in opposite directions. By rotating the sleeve 443, the user can move the two connecting rods 442 towards or away from each other, thereby controlling the distance between the two bearing seats 441 and supporting the rotating shaft 434. When the clamping plates 433 clamp the aluminum panel, the stress on the two clamping plates 433 is evenly distributed and transmitted to the multiple rods 431 and 432, thereby improving the structural strength of the clamping assembly 43.

[0041] Reference Figure 6 An extension rod 435 is provided on the side surface of the clamping plate 433 that connects to the second rod 432. One end of the extension rod 435 is fixed to the clamping plate 433, and the other end is rotatably connected to a grinding roller 436. The length direction of the grinding roller 436 is parallel to the arrangement direction of the multiple first rods 431. The extension rod 435 is set at an angle to the clamping plate 433, and the end of the extension rod 435 away from the clamping plate 433 extends beyond the clamping plate 433. A power mechanism is provided on the extension rod 435 to drive the grinding roller 436 to rotate. The user can rotate the grinding roller 436 through the power mechanism, thereby making the grinding roller 436 grind the surface of the aluminum panel, making the surface of the aluminum panel flat, and allowing the clamping plate 433 to fit tightly against the surface of the aluminum panel. The clamping plate 433 moves via rod 431 and rod 432, allowing the user to move the clamping plate 433 and press the grinding roller 436 against the aluminum panel. After grinding is completed, the user turns off the power mechanism, enabling the clamping plate 433 to hold the aluminum panel. When the clamping plate 433 holds the aluminum panel, the grinding roller 436 is located on both sides of the clamping plate 433.

[0042] The implementation principle of this application embodiment is as follows: By setting a bottom mold 2 on the bottom plate 1 and setting a pressing mechanism 3 above the bottom mold 2, the arc-shaped part 33 can move vertically through the hydraulic mechanism 31 to press an arc surface on the aluminum single panel. By setting a clamping mechanism 4 on the bottom plate 1, the power mechanism 41 can drive the clamping component 43 to move, thereby achieving the effect of the power mechanism 41 pulling the aluminum single panel. By using rod one 431 and rod two 432 to connect the clamping plate 433, the degree of freedom of movement of the clamping plate 433 is improved. The user can set the two clamping plates 433 on both sides of aluminum single panels of different thicknesses and clamp the aluminum single panels, improving construction efficiency. The user can set the two clamping plates 433 in the middle of the aluminum single panel, thereby facilitating the processing of multiple arc surfaces on the aluminum single panel.

[0043] The embodiments of the present application are all the preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A high-safety aluminum single-panel bending equipment, characterized in that: The utility model relates to a kind of aluminum single plate pressing machine, including bottom plate (1), bottom die (2), pressing die mechanism (3) and clamping mechanism (4), bottom die (2) is installed on bottom plate (1), pressing die mechanism (3) is set on bottom plate (1), pressing die mechanism (3) is located on the side of bottom die (2) away from bottom plate (1), and pressing die mechanism (3) is used to reciprocate and resist on aluminum single plate, clamping mechanism (4) includes power mechanism (41), base plate (42) and two clamping components (43), power mechanism (41) is set on bottom plate (1), base plate (42) is connected with power mechanism (41), and power mechanism (41) is used to drive base plate (42) to move in the direction of approaching and away from bottom die (2), clamping component (43) includes rod piece one (431), rod piece two (432) and clamping plate (433), one end of rod piece one (431) is rotatably connected on base plate (42), the other end is rotatably connected in the end of rod piece two (432), the end of rod piece two (432) away from rod piece one (431) is rotatably connected on clamping plate (433), and clamping plate (433) is used to clamp aluminum single plate, the clamping plate (433) of two clamping components (43) is detachably connected by bolt, the rod piece one (431) is provided with rotating shaft (434), rotating shaft (434) penetrates rod piece one (431) and rod piece two (432), and rotating shaft (434) is detachably connected with connecting component (44), and connecting component (44) is connected on the two rotating shafts (434) of two clamping components (43), and connecting component (44) is used to make the interval of two rotating shafts (434) stable, the connecting component (44) includes two shaft seats (441) and a sleeve (443), rotating shaft (434) is used to insert shaft seat (441) and is rotatably connected with shaft seat (441), one end of sleeve (443) is connected with a shaft seat (441), the shaft seat (441) is connected with connecting rod (442), the end of connecting rod (442) away from shaft seat (441) is provided with external thread, the both ends of sleeve (443) are provided with internal thread hole, and sleeve (443) is threadedly connected with connecting rod (442), the thread of the thread hole of the both ends of sleeve (443) is opposite, the cross section of the bottom die (2) is the figure that two straight lines and an arc line enclose, the moving direction of power mechanism (41) drive base plate (42) is parallel with the tangent line of the end of the arc line that bottom die (2) presents, the pressing die mechanism (3) includes hydraulic mechanism (31), mounting plate (32) and arc piece (33), hydraulic mechanism (31) is set on bottom plate (1), mounting plate (32) is connected on hydraulic mechanism (31), and hydraulic mechanism (31) is used to drive mounting plate (32) to reciprocate, and mounting plate (32) is located on the side of bottom die (2) away from bottom plate (1), arc piece (33) is installed on mounting plate (32), and arc piece (33) is used to extrude aluminum single plate with bottom die (2), and the bottom die (2) is detachably connected on bottom plate (1).

2. The high-safety aluminum veneer bending apparatus according to claim 1, characterized in that: The rod member one (431) and the rod member two (432) are arranged in multiple, and the rod member one (431) and the rod member two (432) in the same clamping assembly (43) are arranged equidistantly along the length direction of the base plate (42).

Citation Information

Patent Citations

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    CN110899556A

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  • Aluminum veneer arc-shaped machining device

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