Aluminum alloy frame forming apparatus
By implementing a bending and forming system driven by a motor and cylinder, the problem of the inability to adjust the bending radius of aluminum alloy frame forming equipment has been solved, realizing flexible aluminum alloy frame forming and radius adjustment to meet the processing needs of different widths.
Patent Information
- Application Number
- CN202311033940.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-15
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2043-08-15
AI Technical Summary
Existing aluminum alloy frame forming equipment cannot adjust the bending radius.
The bending forming system, which consists of components such as an actuator motor, actuator cylinder, and actuator screw, achieves bending and forming of aluminum alloy frames by driving the push rod to move through the actuator cylinder, combined with the actuator motor driving the actuator screw to rotate. The radius can be adjusted by adjusting the spacing of the bending forming components and the spacing of the bending roller axes.
It enables flexible forming and processing of aluminum alloy frames, can adapt to the processing of frames of different widths, and can adjust the bending radius, thus improving the applicability and processing accuracy of the equipment.
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Figure CN116871371B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of aluminum alloy frame processing, and particularly relates to an aluminum alloy frame forming equipment. BACKGROUND
[0002] For example, a forming device for an aluminum alloy frame disclosed in patent application No. CN202021713006.0 comprises a base, a fixed table is arranged on the base, a clamping groove for placing a bottom frame of aluminum alloy is formed in the table surface of the fixed table, a through groove is formed in each side of the fixed table, a movable table capable of linear sliding is arranged in the through groove, a vertical plate is arranged on the table surface of the movable table, a support is arranged on the side surface of each vertical plate facing each other, a sliding groove is formed in the side surface of the support away from the vertical plate, and the side frame of aluminum alloy slides along the sliding groove. However, the technical solution has the defect that the bending radius cannot be adjusted. SUMMARY
[0003] The application aims to provide an aluminum alloy frame forming equipment to solve the technical problem that the bending radius cannot be adjusted.
[0004] To achieve the above-mentioned purpose, the specific technical solution of the aluminum alloy frame forming equipment is as follows:
[0005] The aluminum alloy frame forming equipment comprises an execution motor and an execution motor mounting frame, the execution motor is mounted on the execution motor mounting frame, further comprises a processing assembly, an auxiliary assembly and a bending forming assembly, the auxiliary assembly is connected with the processing assembly, and the bending forming assembly is connected with the execution motor and the processing assembly.
[0006] Further, the processing assembly comprises a processing support, a bearing plate is fixedly mounted in the middle end of the processing support, an end cover is fixedly mounted at the upper end of the processing support, a lower end mounting plate is fixedly mounted at the lower end of the processing support, a universal wheel is mounted on the lower end mounting plate, a balance column is threadedly mounted on the lower end mounting plate, a limiting rod is connected with the bearing plate through a limiting rod screw, a rectangular sliding groove is formed in the bearing plate, an execution lead screw is slidingly mounted in the inner end of the rectangular sliding groove, an execution cylinder one is mounted on a connecting frame, an output shaft of the execution cylinder one is mounted on one end of a mounting block one, the other end of the mounting block one is fixedly mounted on a push rod one, a sliding mounting sleeve one is fixedly mounted on the connecting frame, a sliding rod one is slidingly mounted on the sliding mounting sleeve one, and one end of the sliding rod one is fixedly mounted on the push rod one.
[0007] Further, two screw threads with opposite rotation directions are formed in the execution lead screw.
[0008] Further, an output shaft of the execution motor is mounted on the execution lead screw.
[0009] Further, the auxiliary assembly comprises a connecting frame, a sliding mounting sleeve two is fixedly installed on the connecting frame, the sliding mounting sleeve two is slidably connected with one end of a slide rod two, the other end of the slide rod two is fixedly installed on a push rod two, the push rod two is fixedly installed with a hinged support, the hinged support is hingedly connected with the connecting frame, the push rod two is fixedly installed with a mounting block two, the mounting block two is installed with a mounting block three, the mounting block three is connected with the output shaft of an execution cylinder two, the execution cylinder two is installed on the connecting frame, and the connecting frame is fixedly connected with the bearing plate.
[0010] Further, the bending forming assembly comprises a sliding frame, a mounting rack is fixedly installed on the sliding frame, an execution cylinder three is installed on the mounting rack, the output shaft of the execution cylinder three is installed on a connecting terminal, the connecting terminal is hingedly installed on one end of a hinged connecting rod, the other end of the hinged connecting rod is hingedly installed on a matching sliding block, a connecting disc is fixedly installed on the sliding frame, a rectangular slide groove A is formed in the connecting disc, a matching sliding column is arranged in the rectangular slide groove A, the matching sliding block and the matching sliding column are slidably matched, a roller rotating column is fixedly installed on the matching sliding block, a bending roller is rotatably limitedly installed on the roller rotating column through a rotating limiting ring, a connecting sliding block is fixedly installed on the sliding frame, the connecting sliding block is slidably installed in the rectangular slide groove, a lead screw matching sleeve is fixedly installed on the connecting sliding block, and the lead screw matching sleeve is threadedly matched with the execution lead screw.
[0011] Further, the bending forming assembly is provided with two, and the two bending forming assemblies are respectively arranged on two thread lines with opposite rotation directions of the execution lead screw.
[0012] The advantages of the present application are that:
[0013] 1. The execution cylinder two is started, and the mounting block three is driven to move through the execution cylinder two, the mounting block two is driven to move through the mounting block three, the push rod two is driven to move together with the hinged support, the connecting frame is driven to move through the hinged support, the execution cylinder one is started at the same time, the mounting block one is driven to move through the execution cylinder one, the push rod one is driven to move through the mounting block one, the push rod one acts on the aluminum alloy frame, the bending forming assembly is used through the action of the aluminum alloy frame and the bending forming assembly, and the forming processing of the aluminum alloy frame is realized; at the same time, with the change of the degree of the aluminum alloy frame, the execution cylinder one and the execution cylinder two are adaptively adjusted, so that the push rod one acts on one end of the aluminum alloy frame at any time.
[0014] 2. The execution motor is started, the execution lead screw is driven to rotate through the execution motor, the connecting sliding block is driven to slide in the inner end of the rectangular slide groove through the threaded connection between the execution lead screw and the lead screw matching sleeve, the sliding frame is driven to move at the same time, the bending roller is contacted with the bending part of the aluminum alloy frame, the bending forming of the aluminum alloy frame is realized under the action of the push rod one.
[0015] 3. The space between the two bending forming assemblies can be adjusted by the screw rod, so that the aluminum alloy frame with different processing width can be conveniently used;
[0016] 4. The execution cylinder three is started, the connecting terminal is driven to move by the execution cylinder three, the articulated connecting rod is driven to move by the connecting terminal, the matching sliding block is relatively slid on the matching slide post, the space between the bending roller and the connecting disc central axis is changed, and the adjustment of the bending forming processing radius of the aluminum alloy frame is realized. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the overall structure schematic diagram of the present application;
[0018] Figure 2 It is the sectional view position schematic diagram of the present application; Figure 1
[0019] Figure 3 It is the sectional view along A-A section; Figure 2
[0020] Figure 4 It is the processing position structure schematic diagram of the present application;
[0021] Figure 5 It is the processing assembly structure schematic diagram of the present application; Figure 1
[0022] Figure 6 It is the processing assembly structure schematic diagram of the present application; Figure 2
[0023] Figure 7 It is the auxiliary assembly structure schematic diagram of the present application;
[0024] Figure 8 It is the sectional view position schematic diagram of the present application; Figure 7
[0025] Figure 9 It is the sectional view along C-C section; Figure 8
[0026] Figure 10 It is the bending forming assembly structure schematic diagram of the present application;
[0027] Figure 11 It is the sectional view position schematic diagram of the present application; Figure 10
[0028] Figure 12 It is the sectional view along B-B section; Figure 11
[0029] MARKING DESCRIPTION IN THE FIGURE:
[0030] Processing assembly 1; Processing support 1-1; Bearing plate 1-2; End cover 1-3; Lower end mounting plate 1-4; Universal wheel 1-5; Balancing column 1-6; Limiting rod 1-7; Limiting rod screw 1-8; Rectangular sliding groove 1-10; Execution lead screw 1-11; Push rod one 1-12; Connection frame 1-13; Execution cylinder one 1-14; Sliding mounting sleeve one 1-15; Slide rod one 1-16; Mounting block one 1-17; Auxiliary assembly 2; Connection edge frame 2-1; Sliding mounting sleeve two 2-2; Slide rod two 2-3; Push rod two 2-4; Hinged support 2-5; Mounting block two 2-6; Mounting block three 2-7; Execution cylinder 2-8; Bending forming assembly 3; Sliding edge frame 3-1; Mounting frame 3-2; Execution cylinder three 3-3; Connection terminal 3-4; Connection disc 3-5; Connection sliding block 3-6; Screw fitting sleeve 3-7; Rectangular sliding groove A 3-8; Bending roller 3-9; Rotating limiting ring 3-10; Roller rotating column 3-11; Hinged connecting rod 3-12; Fitting sliding block 3-13; Fitting sliding column 3-14; Execution motor 4; Execution motor mounting frame 5. DETAILED DESCRIPTION
[0031] The technical solutions of the present application will be described below in conjunction with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0032] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0033] Embodiment 1
[0034] As shown in Figures 1-4 An aluminum alloy frame forming device, comprising an execution motor 4 and an execution motor mounting frame 5, the execution motor 4 is installed on the execution motor mounting frame 5, further comprising a processing assembly 1, an auxiliary assembly 2 and a bending forming assembly 3, the auxiliary assembly 2 is connected with the processing assembly 1, and the bending forming assembly 3 is connected with the execution motor 4 and the processing assembly 1.
[0035] Embodiment 2
[0036] As shown in Figure 5 , 6As shown, the processing assembly 1 comprises a processing support 1-1, a bearing plate 1-2 is fixedly installed in the middle end of the processing support 1-1, an end cover 1-3 is fixedly installed at the upper end of the processing support 1-1, a lower end mounting plate 1-4 is fixedly installed at the lower end of the processing support 1-1, universal wheels 1-5 are installed on the lower end mounting plate 1-4, balance columns 1-6 are threadedly installed on the lower end mounting plate 1-4, limit rods 1-7 are connected with the bearing plate 1-2 through limit rod screws 1-8, a rectangular sliding groove 1-10 is formed in the bearing plate 1-2, an execution lead screw 1-11 is slidingly installed in the inner end of the rectangular sliding groove 1-10, an execution cylinder one 1-14 is installed on a connecting frame 1-13, an output shaft of the execution cylinder one 1-14 is installed at one end of a mounting block one 1-17, the other end of the mounting block one 1-17 is fixedly installed on a push rod one 1-12, a sliding installation sleeve one 1-15 is fixedly installed on the connecting frame 1-13, a sliding rod one 1-16 is slidingly installed on the sliding installation sleeve one 1-15, and one end of the sliding rod one 1-16 is fixedly installed on the push rod one 1-12.
[0037] Among them, the execution lead screw 1-11 is provided with two screw threads with opposite rotation directions.
[0038] Among them, the output shaft of the execution motor 4 is installed on the execution lead screw 1-11.
[0039] Example 3
[0040] As Figures 7-9As shown, the auxiliary assembly 2 includes a connecting frame 2-1, a sliding mounting sleeve two 2-2 is fixedly installed on the connecting frame 2-1, the sliding mounting sleeve two 2-2 is slidably connected with one end of a slide rod two 2-3, the other end of the slide rod two 2-3 is fixedly installed on a push rod two 2-4, a hinged support 2-5 is fixedly installed on the push rod two 2-4, the hinged support 2-5 is hingedly connected with the connecting frame 1-13, an installation block two 2-6 is fixedly installed on the push rod two 2-4, an installation block three 2-7 is installed on the installation block two 2-6, the installation block three 2-7 is connected with an output shaft of an execution cylinder two 2-8, the execution cylinder two 8 is installed on the connecting frame 2-1, the connecting frame 2-1 is fixedly connected with the bearing plate 1-2, in this way, the execution cylinder two 2-8 is started, and the installation block three 2-7 is driven to move by the execution cylinder two 2-8, then the installation block two 6 is driven to move by the installation block three 2-7, then the push rod two 4 is driven to move along with the hinged support 2-5, then the connecting frame 1-13 is driven to move by the hinged support 2-5, at the same time, the execution cylinder one 1-14 is started, the installation block one 1-17 is driven to move by the execution cylinder one 1-14, then the push rod one 1-12 is driven to move by the installation block one 1-17, so that the push rod one 1-12 acts on the aluminum alloy frame, through the action of the aluminum alloy frame and the bending and forming assembly 3, the forming processing of the aluminum alloy frame is realized; at the same time, with the change of the degree of the aluminum alloy frame, the execution cylinder one 1-14 and the execution cylinder two 2-8 are adaptively adjusted, so that the push rod one 1-12 acts on one end of the aluminum alloy frame at any time.
[0041] Example 4
[0042] As Figures 10-12As shown, the bending forming assembly 3 comprises a sliding frame 3-1, a mounting rack 3-2 is fixedly installed on the sliding frame 3-1, an execution cylinder three 3-3 is installed on the mounting rack 3-2, the output shaft of the execution cylinder three 3-3 is installed on a connecting terminal 3-4, the connecting terminal 3-4 is hingedly installed on one end of a hinged connecting rod 3-12, the other end of the hinged connecting rod 3-12 is hingedly installed on a matching sliding block 3-13, a connecting disc 3-5 is fixedly installed on the sliding frame 3-1, a rectangular sliding groove A3-8 is opened on the connecting disc 3-5, a matching sliding column 3-14 is arranged in the rectangular sliding groove A3-8, the matching sliding column 3-14 and the matching sliding block 3-13 are in sliding fit, a roller rotating column 3-11 is fixedly installed on the matching sliding block 3-13, a bending roller 3-9 is rotationally limitedly installed on the roller rotating column 3-11 through a rotation limiting ring 3-10, a connecting sliding block 3-6 is fixedly installed on the sliding frame 3-1, the connecting sliding block 3-6 is slidingly installed in the rectangular sliding groove 1-10, a lead screw matching sleeve 3-7 is fixedly installed on the connecting sliding block 3-6, and the lead screw matching sleeve 3-7 is in threaded fit with the execution lead screw 1-11. In this way, the execution motor 4 is started, and drives the execution lead screw 1-11 to rotate, and drives the connecting sliding block 3-6 to slide at the inner end of the rectangular sliding groove 1-10 through the threaded connection between the execution lead screw 1-11 and the lead screw matching sleeve 3-7, thereby driving the sliding frame 3-1 to move simultaneously, and making the bending roller 3-9 contact the bending position of the aluminum alloy frame, thereby realizing the bending forming of the aluminum alloy frame under the action of the push rod one 1-12. At the same time, the distance between the two bending forming assemblies 3 can be adjusted through the execution lead screw 1-11, thereby facilitating the use of aluminum alloy frames with different processing widths. At the same time, the execution cylinder three 3-3 is started, thereby driving the connecting terminal 3-4 to move through the execution cylinder three 3-3, thereby driving the hinged connecting rod 3-12 to move through the connecting terminal 3-4, thereby making the matching sliding block 3-13 relatively slide on the matching sliding column 3-14, thereby making the distance between the bending roller 3-9 and the central axis of the connecting disc 3-5 change, thereby realizing the adjustment of the bending forming processing radius of the aluminum alloy frame.
[0043] Among them, the bending forming assembly 3 is provided with two, and the two bending forming assemblies 3 are respectively arranged on two screw lines with opposite rotation directions of the execution lead screw 1-11.
[0044] It is to be understood that the present application is described by way of example only, and that modifications or alterations can be made to the features and embodiments described without departing from the spirit and scope of the application. In addition, modifications can be made to the features and embodiments described to accommodate specific situations and materials without departing from the spirit and scope of the application. Accordingly, the application is not limited to the specific embodiments disclosed herein, but rather, the scope of the application includes all embodiments falling within the scope of the claims.
Claims
1. An aluminum alloy frame forming apparatus comprising an execution motor (4) and an execution motor mounting rack (5), the execution motor (4) being mounted on the execution motor mounting rack (5), characterized in that, Also include processing assembly (1), auxiliary assembly (2) and bending forming assembly (3), the auxiliary assembly (2) is connected with processing assembly (1), and the bending forming assembly (3) is connected with execution motor (4) and processing assembly (1); The processing assembly (1) includes a processing support (1-1), a bearing plate (1-2) is fixedly installed in the middle end of the processing support (1-1), an end cover (1-3) is fixedly installed at the upper end of the processing support (1-1), a lower end mounting plate (1-4) is fixedly installed at the lower end of the processing support (1-1), a universal wheel (1-5) is installed on the lower end mounting plate (1-4), a balance column (1-6) is threadedly installed on the lower end mounting plate (1-4), a limiting rod (1-7) is connected with the bearing plate (1-2) through a limiting rod screw (1-8), a rectangular sliding groove (1-10) is formed in the bearing plate (1-2), an execution lead screw (1-11) is slidingly installed in the inner end of the rectangular sliding groove (1-10), an execution cylinder one (1-14) is installed on a connecting frame (1-13), an output shaft of the execution cylinder one (1-14) is installed at one end of a mounting block one (1-17), the other end of the mounting block one (1-17) is fixedly installed on a push rod one (1-12), a sliding mounting sleeve one (1-15) is fixedly installed on the connecting frame (1-13), a sliding rod one (1-16) is slidingly installed on the sliding mounting sleeve one (1-15), one end of the sliding rod one (1-16) is fixedly installed on the push rod one (1-12). The auxiliary assembly (2) includes a connecting frame (2-1), a sliding mounting sleeve two (2-2) is fixedly installed on the connecting frame (2-1), one end of a sliding rod two (2-3) is slidingly connected with the sliding mounting sleeve two (2-2), the other end of the sliding rod two (2-3) is fixedly installed on a push rod two (2-4), a hinged support (2-5) is fixedly installed on the push rod two (2-4), the hinged support (2-5) is hingedly connected with the connecting frame (1-13), a mounting block two (2-6) is fixedly installed on the push rod two (2-4), a mounting block three (2-7) is installed on the mounting block two (2-6), the mounting block three (2-7) is connected with an output shaft of an execution cylinder two (2-8), the execution cylinder two (2-8) is installed on the connecting frame (2-1), and the connecting frame (2-1) is fixedly connected with the bearing plate (1-2).
2. The aluminum alloy frame forming apparatus according to claim 1, characterized by, Two screw threads with opposite rotation directions are formed in the execution lead screw (1-11).
3. The aluminum alloy frame forming apparatus of claim 1, wherein An output shaft of the execution motor (4) is installed on the execution lead screw (1-11).
Citation Information
Patent Citations
Forming device for aluminum alloy frame
CN212823682U
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CN209477158U
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CN217018069U