Supporting structure for alloy plate cutting
By designing a support structure for alloy sheet cutting, the problem of sheet misalignment in the sheet cutting device was solved, enabling precise cutting and high-quality component assembly.
Patent Information
- Application Number
- CN202423033888.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-10
AI Technical Summary
When existing alloy sheet cutting devices are supported by a flat worktable, the sheet material is prone to deviation, resulting in cutting dimension errors and affecting the assembly accuracy of parts and product quality.
Design a support structure for cutting alloy plates, including a worktable, support components, limiting components, moving components, mounting components, and lifting components. By cooperating with the cutting structure through the sliding support structure, the plate is prevented from deviating and the cutting accuracy is ensured.
By using a sliding support structure for cutting, cutting errors are reduced, ensuring the accuracy of sheet metal cutting dimensions, and improving the assembly precision of parts and product quality.
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Figure CN223684860U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to plate cutting technical field especially alloy plate cutting uses support structure. BACKGROUND
[0002] The alloy plate cutting device is a kind of equipment for cutting alloy plate, can cut alloy plate according to predetermined size and shape, meet different production needs, for example, in aerospace field, the cutting of aluminum alloy plate needs to be accurate to millimeter or even smaller error range, to ensure the assembly accuracy of parts.
[0003] Now alloy plate cutting device usually uses flat workbench to support plate and assist cutting, when using, the situation of plate deviation easily occurs, which can cause cutting size deviation, and the size of cut plate does not meet design requirements, which can cause parts cannot be normally assembled, affect product quality.
[0004] Therefore, according to the above alloy plate cutting device, which usually uses flat workbench to support plate and assist cutting, when using, the situation of plate deviation easily occurs, which can cause cutting size deviation, and the size of cut plate does not meet design requirements, which can cause parts cannot be normally assembled, affect product quality, a support structure that can cooperate with cutting track operation can be designed, by setting sliding support structure, moving plate cooperates with cutting structure for cutting when using, avoid plate deviation, reduce cutting error, ensure product quality. SUMMARY
[0005] In order to overcome the problem in the prior art that alloy plate cutting device usually uses flat workbench to support plate and assist cutting, when using, the situation of plate deviation easily occurs, which can cause cutting size deviation, and the size of cut plate does not meet design requirements, which can cause parts cannot be normally assembled, affect product quality.
[0006] The technical scheme of the utility model is as follows: an alloy plate cutting support structure, comprising a workbench plate, a support assembly, a limiting assembly, a moving assembly, an installation assembly, a lifting assembly, an installation frame, a support slide rod, a support motor, a fixed block, a connecting block, an auxiliary rod and a placing plate, the bottom surface of the workbench plate is provided with the support assembly, the top surface of the workbench plate is provided with the limiting assembly, the inner side of the limiting assembly is provided with the moving assembly, the outer part of the moving assembly is provided with the installation assembly, one side of the installation assembly is provided with the lifting assembly, the top surface of the workbench plate is provided with the installation frame, the inside of the installation frame is provided with the support slide rod, one end of the support slide rod is provided with the support motor, one end of the support slide rod is provided with the fixed block, and the surface of the support slide rod is provided with the connecting block.
[0007] Preferably, the workpiece is installed by the workbench plate, the overall device is supported by the support assembly, the sliding track is provided by the limiting assembly, the left and right movement of the cutting structure is controlled by the moving assembly, the up and down movement of the cutting structure is controlled by the mounting assembly, the plate is cut by the lifting assembly, the plate support structure is installed by the mounting frame, the plate sliding track is provided by the support slide rod, the control circuit is provided by the support motor, the support slide rod is fixed by the fixing block, the support slide rod is connected with the placing plate by the connecting block, the plate is assisted to slide by the auxiliary rod, and the plate is moved by the placing plate.
[0008] Preferably, the support assembly comprises a support frame and a support column, the bottom surface of the workbench plate is provided with the support frame, and the four corners of the support frame are provided with the support.
[0009] Preferably, the limiting assembly comprises a mounting block, a limiting block and a limiting strip, the top surface of the workbench plate is provided with two groups of mounting blocks, the inner side of the mounting block is provided with the limiting block, and the surface of the limiting block is provided with a plurality of limiting strips.
[0010] Preferably, the moving assembly comprises an expansion block, a moving rod and a sliding motor, one side of the mounting block is provided with the expansion block, the inner side of the expansion block is provided with the moving rod, and one end of the moving rod is provided with the sliding motor.
[0011] Preferably, the mounting assembly comprises a sliding block, a connecting plate and a lifting plate, the surface of the moving rod is sleeved with the sliding block, the surface of the sliding block is provided with the connecting plate, and one side of the connecting plate is provided with the lifting plate.
[0012] Preferably, the lifting assembly comprises an auxiliary sliding rail, a cutting block, a lifting rod, a cutting head and a replacement bolt, the surface of the lifting plate is provided with two groups of auxiliary sliding rails, the surface of the auxiliary sliding rail is provided with the cutting block, the inner side of the cutting block is provided with the lifting rod, the surface of the cutting block is provided with the cutting head, and the bottom surface of the cutting head is provided with the replacement bolt.
[0013] Preferably, the two sides of the support slide rod are provided with auxiliary rods, and the top surface of the connecting block is provided with a placing plate.
[0014] The utility model discloses the beneficial effect:
[0015] 1、Compared with the traditional alloy plate cutting device usually uses the workbench of flatness to support the plate and assists cutting, when using, the condition of plate deviation is easy to appear, this can cause the cutting size deviation, and the size of the cut plate does not meet the design requirement, so that the parts can not be normally assembled, influence product quality, the support structure is provided with the sliding support structure, and the plate is cut in cooperation with the cutting structure when moving, avoids the plate deviation, reduces the cutting error, and guarantees product quality. DRAWINGS
[0016] Figure 1 A first three-dimensional structure schematic view of the alloy plate cutting support structure is shown.
[0017] Figure 2 A second three-dimensional structure schematic view of the alloy plate cutting support structure is shown.
[0018] Figure 3 A side view three-dimensional structure schematic view of the alloy plate cutting support structure is shown.
[0019] Figure 4 A partial three-dimensional structure schematic view of the alloy plate cutting support structure is shown.
[0020] The reference signs are explained as follows: 1, workbench plate; 201, support frame; 202, support column; 301, mounting block; 302, limiting block; 303, limiting strip; 401, expansion block; 402, moving rod; 403, sliding motor; 501, sliding block; 502, connecting plate; 503, lifting plate; 601, auxiliary sliding rail; 602, cutting block; 603, lifting rod; 604, cutting head; 605, replacement bolt; 701, mounting frame; 702, support sliding rod; 703, support motor; 704, fixed block; 705, connecting block; 706, auxiliary rod; 707, placing plate. DETAILED DESCRIPTION
[0021] The utility model is further explained in connection with the drawings and examples.
[0022] Please refer to Figure 1 The utility model provides a kind of alloy plate cutting support structure, including workbench plate 1, support component, limiting component, moving component, installation component, lifting assembly, mounting frame 701, support sliding rod 702, support motor 703, fixed block 704, connecting block 705, auxiliary rod 706 and placing plate 707, the bottom of workbench plate 1 is provided with support component, the top of workbench plate 1 is provided with limiting component, the inside of limiting component is provided with moving component, the outside of moving component is provided with installation component, one side of installation component is provided with lifting assembly, the top of workbench plate 1 is provided with mounting frame 701, the inside of mounting frame 701 is provided with support sliding rod 702, one end of support sliding rod 702 is provided with support motor 703, one end of support sliding rod 702 is provided with fixed block 704, the surface of support sliding rod 702 is provided with connecting block 705.
[0023] Please refer to Figures 2-4In the embodiment, the supporting assembly comprises a supporting frame 201 and supporting columns 202. The bottom surface of the workbench plate 1 is provided with the supporting frame 201. The four corners of the supporting frame 201 are provided with the supporting columns 202. In use, the supporting structure is reinforced by the supporting frame 201, and the whole device is supported by the supporting columns 202. The limiting assembly comprises mounting blocks 301, limiting blocks 302 and limiting strips 303. The top surface of the workbench plate 1 is provided with two groups of mounting blocks 301. The inner side of the mounting block 301 is provided with the limiting block 302. The surface of the limiting block 302 is provided with a plurality of limiting strips 303. In use, the limiting block 302 is installed on the top surface of the workbench plate 1 through the mounting block 301. The limiting strip 303 is installed on the inner side of the mounting block 301 through the limiting block 302. The sliding movement is limited by the limiting strip 303. The moving assembly comprises expansion blocks 401, moving rods 402 and sliding motors 403. One side of the mounting block 301 is provided with the expansion block 401. The inner side of the expansion block 401 is provided with the moving rod 402. One end of the moving rod 402 is provided with the sliding motor 403. In use, the installation space is expanded by the expansion block 401. The transverse sliding track is provided by the moving rod 402. The left and right sliding of the cutting structure is controlled by the sliding motor 403.
[0024] The mounting assembly comprises sliding blocks 501, connecting plates 502 and lifting plates 503. The surface of the moving rod 402 is sleeved with the sliding block 501. The surface of the sliding block 501 is provided with the connecting plate 502. One side of the connecting plate 502 is provided with the lifting plate 503. In use, the connecting plate 502 is connected with the moving rod 402 through the sliding block 501. The lifting plate 503 is installed through the connecting plate 502. The cutting structure is installed and fixed through the lifting plate 503. The lifting assembly comprises auxiliary sliding rails 601, cutting blocks 602, lifting rods 603, cutting heads 604 and replacement bolts 605. The surface of the lifting plate 503 is provided with two groups of auxiliary sliding rails 601. The surface of the auxiliary sliding rail 601 is provided with the cutting block 602. The inner side of the cutting block 602 is provided with the lifting rod 603. The surface of the cutting block 602 is provided with the cutting head 604. The bottom surface of the cutting head 604 is provided with the replacement bolt 605. In use, the cutting structure is moved up and down with the help of the auxiliary sliding rail 601. The cutting structure is installed and fixed through the cutting block 602. The cutting block 602 is moved up and down to adjust the cutting height through the lifting rod 603. The cutting part is installed through the cutting head 604. The cutting tool bit is replaced through the replacement bolt 605. The two sides of the supporting sliding rod 702 are provided with auxiliary rods 706. The top surface of the connecting block 705 is provided with a placing plate 707.
[0025] In the work, first, by supporting frame 201 reinforcement support structure, by supporting column 202 overall device, by mounting block 301 will limit block 302 is installed in the top surface of the workbench plate 1, by limiting block 302 will limit strip 303 is installed in the inner side of mounting block 301, by limiting strip 303 to limit the sliding work, by expanding block 401 expansion installation space, by moving rod 402 provides transverse sliding track, by sliding motor 403 control cutting structure left and right slide;
[0026] Then, by sliding block 501 will be connected to the moving rod 402 plate 502, by connecting plate 502 installation lifting plate 503, by lifting plate 503 installation fixed cutting structure, by auxiliary slide rail 601 assist cutting structure up and down, by cutting block 602 installation fixed cutting structure, by lifting rod 603 control cutting block 602 up and down to adjust the cutting height, by cutting head 604 installation cutting parts, by replacing the bolt 605 replacement cutting tool bit, the two sides of the support slide bar 702 is provided with auxiliary rod 706, the top surface of the connecting block 705 is provided with a placement plate 707.
[0027] Through the above steps, by workbench plate 1 support work parts installation, by supporting assembly support overall device, by limiting assembly provides sliding track, by moving assembly control cutting structure left and right movement, by installation assembly control cutting structure up and down, by lifting assembly cutting plate, by mounting frame 701 installation plate support structure, by supporting slide bar 702 provides plate sliding track, by supporting motor 703 provides control circuit, by fixed block 704 fixed support slide bar 702, by connecting block 705 will be connected with the support slide bar 702 and placement plate 707, by auxiliary rod 706 auxiliary sliding plate, by placement plate 707 assist support moving plate.
[0028] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge scope possessed by the person skilled in the art, various changes can be made without departing from the purpose of the utility model.
Claims
1. An alloy sheet cutting support structure comprising a table plate (1) ; characterized by: The support assembly, the limiting assembly, the moving assembly, the mounting assembly, the lifting assembly, the mounting frame (701), the support slide rod (702), the support motor (703), the fixed block (704), the connecting block (705), the auxiliary rod (706) and the placing plate (707) are further included. The bottom surface of the workbench plate (1) is provided with the support assembly. The top surface of the workbench plate (1) is provided with the limiting assembly. The inner side of the limiting assembly is provided with the moving assembly. The outer side of the moving assembly is provided with the mounting assembly. One side of the mounting assembly is provided with the lifting assembly. The top surface of the workbench plate (1) is provided with the mounting frame (701). The inside of the mounting frame (701) is provided with the support slide rod (702). One end of the support slide rod (702) is provided with the support motor (703). One end of the support slide rod (702) is provided with the fixed block (704). The surface of the support slide rod (702) is provided with the connecting block (705).
2. The support structure for cutting an alloy sheet according to claim 1, wherein: The support assembly includes the support frame (201) and the support column (202). The bottom surface of the workbench plate (1) is provided with the support frame (201). The support frame (201) is provided with the support column (202) at the four corners.
3. The support structure for cutting an alloy sheet according to claim 2, wherein: The limiting assembly includes the mounting block (301), the limiting block (302) and the limiting strip (303). The top surface of the workbench plate (1) is provided with two groups of mounting blocks (301). The inner side of the mounting block (301) is provided with the limiting block (302). The surface of the limiting block (302) is provided with a plurality of limiting strips (303).
4. The support structure for cutting an alloy sheet according to claim 3, wherein: The moving assembly includes the expansion block (401), the moving rod (402) and the sliding motor (403). One side of the mounting block (301) is provided with the expansion block (401). The inner side of the expansion block (401) is provided with the moving rod (402). One end of the moving rod (402) is provided with the sliding motor (403).
5. The support structure for cutting an alloy sheet according to claim 4, wherein: The mounting assembly includes the sliding block (501), the connecting plate (502) and the lifting plate (503). The surface of the moving rod (402) is provided with the sliding block (501). The surface of the sliding block (501) is provided with the connecting plate (502). One side of the connecting plate (502) is provided with the lifting plate (503).
6. The support structure for cutting an alloy sheet according to claim 4, wherein: The lifting assembly includes the auxiliary slide rail (601), the cutting block (602), the lifting rod (603), the cutting head (604) and the replacement bolt (605). The surface of the lifting plate (503) is provided with two groups of auxiliary slide rails (601). The surface of the auxiliary slide rail (601) is provided with the cutting block (602). The inner side of the cutting block (602) is provided with the lifting rod (603). The surface of the cutting block (602) is provided with the cutting head (604). The bottom surface of the cutting head (604) is provided with the replacement bolt (605).
7. The support structure for cutting an alloy sheet according to claim 6, wherein: The two sides of the support slide rod (702) are provided with the auxiliary rod (706). The top surface of the connecting block (705) is provided with the placing plate (707).