Grooving tool for machining rack assembly
By combining the design of side support base, rotating shaft, mounting base and drive adjustment base, multi-angle and multi-position machining of workpieces is realized, solving the problems of insufficient adjustment flexibility and insufficient precision of traditional tooling, and improving machining efficiency and accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LUOYANG DEQUAN MECHANICAL EQUIP CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-28
AI Technical Summary
Traditional tooling is difficult to meet the processing needs of multiple angles and positions, lacks adjustment flexibility, cannot adapt to large-sized or special-shaped workpieces, and has low processing efficiency and insufficient precision.
It adopts a combination design of adjustable side support, rotating shaft, mounting seat, limiting component and drive adjustment seat. The workpiece can be precisely adjusted and firmly clamped by telescopic adjustment cylinder. Combined with the design of displacement slide rail and limiting component, it can adapt to workpieces of different sizes and shapes.
It improves processing accuracy and efficiency, adapts to diverse workpieces, prevents displacement and vibration during processing, and simplifies workpiece loading, unloading, and positioning.
Smart Images

Figure CN224169276U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of frame processing technology, specifically to a slotting tool for processing frame components. Background Technology
[0002] In modern manufacturing, the requirements for machining accuracy and efficiency of machine frame components are constantly increasing. Especially when performing precision machining processes such as grooving, traditional fixed tooling often fails to meet the machining needs of multiple angles and positions, resulting in low machining efficiency, insufficient accuracy, and complex operation. Most grooving tooling currently on the market suffers from the following problems: firstly, insufficient adjustment flexibility; secondly, it is often only suitable for workpieces within a specific size range, and cannot be used outside this range; thirdly, the displacement adjustment range is limited, failing to meet the machining needs of large-sized or specially shaped workpieces; and fourthly, the angle locking mechanism has poor stability, easily causing slight displacements during machining. For workpieces requiring continuous machining at multiple angles, it cannot achieve a smooth transition, resulting in obvious machining breakpoints. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to overcome the existing defects and provide a slotting tooling for processing frame components, which can effectively solve the problems in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a slotting fixture for a processing frame assembly, comprising a side support base, with rotating shafts at both ends of the side support base, and a mounting base for placing the object to be processed mounted on the rotating shafts. The mounting base includes a placement base, a limiting member disposed on the placement base, and a drive adjustment seat for adjusting the angle of the mounting base. Displacement slide rails are respectively disposed on the upper and lower sides of the placement base, and the limiting member is slidably disposed on the displacement slide rails. A hinge seat is disposed on the lower surface of the placement base, and the hinge seat is connected to the telescopic end of the drive adjustment seat. The fixed end of the drive adjustment seat is connected to the cross brace disposed between the side support bases.
[0005] As a preferred embodiment of the present invention, the side support base includes a lower support plate and a middle support column, and the middle support column is sleeved on the bushing of the lower support plate.
[0006] As a preferred embodiment of this utility model, a through hole is provided on the bushing of the lower support plate, and the through hole is connected to the mounting hole provided on the intermediate support column through a mounting shaft.
[0007] As a preferred technical solution of this utility model, the limiting member consists of a side bracket and an adjusting shaft, and the adjusting shaft is threadedly connected to a threaded hole on the side bracket.
[0008] As a preferred embodiment of this utility model, the side bracket adopts a T-shaped structure, and the upper end of the T-shaped side bracket is provided with two threaded holes for installing the adjustment shaft.
[0009] In a preferred embodiment of this invention, the drive adjustment base includes a fixed rotating base and a telescopic adjustment cylinder. The fixed rotating base is mounted on a cross brace and connected to the telescopic adjustment cylinder. The telescopic end of the telescopic adjustment cylinder is connected to a hinged seat placed on the lower surface of the base.
[0010] As a preferred embodiment of this utility model, there are two cross braces, located on the front and rear sides of the side support base.
[0011] Compared with existing technologies, this application achieves height adjustment through the combination of a bottom support plate, a middle support column, and a mounting shaft, which can adapt to the processing needs of workpieces of different heights and significantly improve the applicability of the tooling. The use of a rotating shaft design and a drive adjustment seat control system enables precise angle adjustment of the mounting seat. In particular, the precise control of the tilt angle by the telescopic adjustment cylinder greatly improves the accuracy and quality of slant groove processing. The T-shaped limit component, combined with the displacement slide rail design, can slide freely on the mounting base and lock securely, adapting to workpieces of various sizes and shapes. This solves the problem that traditional tooling cannot adapt to diverse workpieces. The combined application of the adjustment shaft and side brackets achieves multi-point stable clamping of the workpiece, effectively preventing displacement or vibration of the workpiece during processing and ensuring processing accuracy. The design of the displacement slide rail and limit component greatly simplifies the loading, unloading, and positioning process of the workpiece. Combined with the rapid angle adjustment function of the telescopic adjustment cylinder, it greatly improves production efficiency and reduces the time for workpiece switching and adjustment. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of this application;
[0013] Figure 2 This is the main view of this application;
[0014] Figure 3 This is the left view of this application.
[0015] In the diagram: 1 Side support seat, 11 Lower support plate, 12 Middle support column, 2 Rotary shaft, 3 Mounting seat, 31 Placement base, 32 Limiting component, 321 Side bracket, 322 Adjusting shaft, 33 Drive adjustment seat, 331 Fixed rotating seat, 332 Telescopic adjustment cylinder, 4 Displacement slide rail, 5 Hinge seat, 6 Cross brace, 7 Bushing, 8 Mounting shaft. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model (for ease of description and understanding, hereinafter referred to as...), Figure 2 (The above is described above). All other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this utility model.
[0017] Please see Figures 1-3 This utility model provides a technical solution: a slotting tooling for a processing frame assembly, including a side support 1, with rotating shafts 2 at both ends of the side support 1, and a mounting seat 3 for placing the object to be processed is installed on the rotating shafts 2.
[0018] The side support 1 provides structural support and stability.
[0019] Specifically, the side support 1 includes a lower support plate 11 and a middle support column 12, and the middle support column 12 is sleeved on the bushing 7 on the lower support plate 11.
[0020] The bushing 7 on the lower support plate 11 has a through hole, which is connected to the mounting hole on the intermediate support column 12 via a mounting shaft 8.
[0021] Mounting shaft 8 serves to fix and connect, allowing the intermediate support column 12 to adjust its angle or position within a certain range.
[0022] The bottom support plate 11 has strip-shaped holes around its perimeter for connecting to an external device via fasteners. The bushing 7 not only provides a connection interface with the intermediate support column 12, but also achieves a precise fit with the intermediate support column 12 through its through holes.
[0023] The intermediate support column 12 bears the weight of the mounting base 3 and the workpiece on it, and transmits the force to the lower support plate 11. After the mounting holes on the intermediate support column 12 are aligned with the through holes on the bushing 7, they are connected through the mounting shaft 8. This ensures the integrity of the structure while allowing the intermediate support column 12 to be raised and lowered within a certain adjustment range to adapt to different working environments and requirements, and to meet different processing needs.
[0024] By installing shaft 8, bushing 7 and intermediate support column 12 are formed into a stable structure, which allows the height of intermediate support column 12 to be freely adjusted as needed, improving the convenience of use.
[0025] The rotating shaft 2 is installed at both ends of the side support 1, so that the mounting base 3 can be adjusted around the shaft, improving the flexibility of processing.
[0026] The mounting base 3 includes a base 31, a limiting member 32 disposed on the base 31, and a drive adjustment seat 33 for adjusting the angle of the mounting base 3. The upper and lower sides of the base 31 are respectively provided with displacement slide rails 4. The limiting member 32 is slidably disposed on the displacement slide rails 4. The lower surface of the base 31 is provided with a hinge seat 5. The hinge seat 5 is connected to the telescopic end of the drive adjustment seat 33. The fixed end of the drive adjustment seat 33 is connected to the cross brace 6 disposed between the side support seats 1.
[0027] The base 31 directly supports the workpiece to be processed. Displacement rails 4 are provided on its upper and lower sides to provide sliding tracks for the limiting component 32, ensuring that the workpiece can be easily positioned.
[0028] Specifically, the limiting component 32 includes a side bracket 321 and an adjusting shaft 322, which adopts a T-shaped structure design. It can be flexibly adjusted and fixed in an appropriate position as needed to ensure that the material to be processed is stable and does not shift. The limiting component 32 is installed on the placement base 31 via the displacement slide rail 4 and can move left and right according to the size of the workpiece, making it suitable for clamping workpieces of different sizes.
[0029] The drive adjustment seat 33 consists of a fixed rotating seat 331 and a telescopic adjustment cylinder 332, and is used to adjust the angle of the mounting seat 3. The fixed rotating seat 331 is connected to the cross brace 6, while the telescopic end of the telescopic adjustment cylinder 332 is connected to the hinge seat 5 on the lower surface of the mounting base 31, thereby achieving precise control of the angle of the mounting base 31, which is convenient for the split inclined groove processing.
[0030] The displacement slide rail 4 allows the limiting member 32 to slide freely on it, which facilitates quick positioning and adjustment of the position of the limiting member 32 and improves work efficiency.
[0031] The hinge seat 5 is connected to the telescopic end of the drive adjustment seat 33 to achieve flexible adjustment of the angle of the mounting seat 3.
[0032] The cross brace 6 serves to enhance the overall structural stability and is also the location of the fixed end of the drive adjustment seat 33.
[0033] Furthermore, the side bracket 321 adopts a T-shaped structure, and the upper end of the T-shaped side bracket 321 is provided with two threaded holes for installing the adjustment shaft 322.
[0034] The side bracket 321 adopts a T-shaped structure design, providing an installation position for the adjustment shaft 322. The top of the T-shaped structure is provided with two threaded holes for mounting the adjustment shaft 322, so that the adjustment shaft 322 can be firmly fixed in different positions, thereby accommodating materials of different sizes and shapes to be processed.
[0035] Furthermore, there are two cross braces 6, located on the front and rear sides of the side support 1.
[0036] In use: First, fix the side support 1 to the external device through the strip holes around the bottom support plate 11 and fasteners to ensure the stability of the entire structure. Adjust the height of the middle support column 12 to adapt to the current working requirements, and then lock the position through the mounting shaft 8. Place the material to be processed on the placement base 31 of the mounting seat 3. According to the size of the workpiece, the side bracket 321 on the sliding limit member 32 moves to the appropriate position along the displacement slide rail 4 and is fixed by the adjusting shaft 322 to ensure that the workpiece is securely clamped. If it is necessary to perform inclined surface processing on the workpiece, activate the telescopic adjusting cylinder 332 to rotate the mounting seat 3 around the hinge seat 5 to the required angle. After completing the above adjustments, begin grooving and other processing operations on the workpiece. Since the mounting seat 3 can flexibly adjust its angle and position, it can easily handle both flat and inclined surface processing. During the processing, if it is necessary to adjust the position of the workpiece or further fine-tune the angle, repeat the above steps for a quick response.
[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A slotting fixture for a processing frame assembly, comprising a side support (1), with rotating shafts (2) at both ends of the side support (1), and a mounting seat (3) for placing the object to be processed mounted on the rotating shafts (2), characterized in that: The mounting base (3) includes a mounting base (31), a limiting member (32) disposed on the mounting base (31), and a drive adjustment seat (33) for adjusting the angle of the mounting base (3). The upper and lower sides of the mounting base (31) are respectively provided with displacement slide rails (4). The limiting member (32) is slidably disposed on the displacement slide rails (4). The lower surface of the mounting base (31) is provided with a hinge seat (5). The hinge seat (5) is connected to the telescopic end of the drive adjustment seat (33). The fixed end of the drive adjustment seat (33) is connected to the cross brace (6) disposed between the side support seats (1).
2. The grooving fixture for a machining frame assembly according to claim 1, characterized in that: The side support base (1) includes a bottom support plate (11) and a middle support column (12), and the middle support column (12) is sleeved on the bushing (7) on the bottom support plate (11).
3. The grooving fixture for a machining frame assembly according to claim 2, characterized in that: The bushing (7) on the lower support plate (11) is provided with a through hole, which is connected to the mounting hole on the intermediate support column (12) by a mounting shaft (8).
4. The grooving fixture for a machining frame assembly according to claim 1, characterized in that: The limiting member (32) consists of a side bracket (321) and an adjusting shaft (322), the adjusting shaft (322) being threaded into a threaded hole on the side bracket (321).
5. The grooving fixture for a machining frame assembly according to claim 4, characterized in that: The side bracket (321) adopts a T-shaped structure, and the upper end of the T-shaped side bracket (321) is provided with two threaded holes for installing the adjustment shaft (322).
6. The grooving fixture for a machining frame assembly according to claim 1, characterized in that: The drive adjustment seat (33) includes a fixed rotating seat (331) and a telescopic adjustment cylinder (332). The fixed rotating seat (331) is mounted on the cross brace (6). The fixed rotating seat (331) is connected to the telescopic adjustment cylinder (332). The telescopic end of the telescopic adjustment cylinder (332) is connected to the hinge seat (5) on the lower surface of the base (31).
7. The grooving fixture for a machining frame assembly according to claim 1, characterized in that: There are two cross braces (6), located on the front and rear sides of the side support seat (1).