High-precision forging tool

By designing high-precision forged tooling, the rapid and accurate clamping of forged objects is solved, and the problems of low production efficiency and unstable product quality caused by inaccurate clamping in the prior art are improved, and the production efficiency and product quality are improved, and the diversified production needs are adapted to diversified production needs.

CN223222397UActive Publication Date: 2025-08-15HENAN HONGFANG TECHNOLOGY IND CO LTD
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Patent Information

Application Number
CN202422202815.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-08-15
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

It is difficult for existing forged tooling to achieve precise centering clamping of forged objects during forging, resulting in low production efficiency, unstable product quality and high defect rate, which cannot meet diversified production needs.

Method used

A high-precision forging tooling is designed, including a mounting frame, a working table and a fixture. The combination of drive components, linkage components and clamping blocks is used to achieve fast and accurate centering clamping. By precisely controlling the clamping force and position, the stability of the forging during processing is ensured.

Benefits of technology

Improve production efficiency, reduce deformation or damage caused by improper clamping, improve product quality, can adapt to forged materials of different shapes and sizes, and meet diversified production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-precision forging tool which comprises an installation frame, an operation table and a fixing device, and the operation table is arranged on the installation frame. The fixing device comprises a driving assembly, a linkage assembly and a clamping block, and the driving assembly is arranged on the mounting frame; the linkage assembly is arranged on the operation table in a sliding mode, and the linkage assembly is connected with the driving assembly; the clamping blocks are arranged on the operation table in a sliding mode, and the clamping blocks are connected with one ends of the linkage assemblies correspondingly. Therefore, by arranging the fixing device, a forged object can be quickly and accurately clamped in the middle, the stability of the forged object in the machining process is ensured by accurately controlling the clamping force and position, deformation or damage caused by improper clamping is effectively prevented, the overall quality of a product is improved, and meanwhile, the machining efficiency is improved. And forging objects of different shapes and sizes can be adapted, and diversified production requirements are met.
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Description

Technical Field

[0001] The utility model relates to the technical field of forging auxiliary tools, in particular to a high-precision forging tool. Background Art

[0002] In current forging processes, the limitations of forging tooling are particularly evident in its ability to center the forged object. With the rapid development of the manufacturing industry, the demands for forgings are becoming increasingly diverse, with requirements for dimensional accuracy and shape complexity increasing. However, existing forging tooling is unable to cope with these changes. The uncontrollable nature of manual operation and the limitations of mechanical assistance make centering and clamping an insurmountable obstacle in the forging process. This not only leads to low production efficiency but also inadvertently increases product defect rates and costs.

[0003] More seriously, the inaccuracy and inconsistency of centered clamping pose a direct threat to product quality. During the forging process, the material's fluidity and deformation characteristics require stable and accurate clamping to ensure that the forged part deforms evenly under pressure, achieving the desired size and shape. However, due to misaligned clamping, forgings often experience localized stress concentration and uneven deformation, which in turn affects their mechanical properties and service life. Utility Model Content

[0004] The utility model aims to solve one of the technical problems in the related art at least to a certain extent.

[0005] To this end, the purpose of the utility model is to propose a high-precision forging tool, which is provided with a fixing device and can quickly and accurately achieve the center clamping of the forging. By precisely controlling the clamping force and position, the stability of the forging during the processing is ensured, and deformation or damage caused by improper clamping is effectively prevented, thereby improving the overall quality of the product. At the same time, it can cope with forgings of different shapes and sizes and meet diverse production needs.

[0006] To achieve the above-mentioned purpose, the utility model proposes a high-precision forging tool including a mounting frame, an operating table and a fixing device, wherein the operating table is arranged on the mounting frame; the fixing device includes a driving assembly, a linkage assembly and a clamping block, wherein the driving assembly is arranged on the mounting frame; the linkage assembly is slidably arranged on the operating table, and the linkage assembly is connected to the driving assembly; the clamping block is slidably arranged on the operating table, and the clamping blocks are respectively connected to one end of the linkage assembly.

[0007] The utility model provides a high-precision forging tool, which is provided with a fixing device, and can quickly and accurately achieve the center clamping of the forging object. By accurately controlling the clamping force and position, the stability of the forging object during the processing is ensured, and deformation or damage caused by improper clamping is effectively prevented, thereby improving the overall quality of the product. At the same time, it can cope with forgings of different shapes and sizes and meet diversified production needs.

[0008] In addition, the high-precision forging tool proposed in the application may also have the following additional technical features:

[0009] Specifically, the drive assembly includes a hydraulic rod, two first connecting rods and two second connecting rods, wherein the hydraulic rod is arranged in the mounting frame; one end of the two first connecting rods is movably connected to the two ends of the hydraulic rod respectively; one end of the two second connecting rods is movably connected to the other end of the two first connecting rods respectively.

[0010] Specifically, the linkage assembly includes a fixed rod, a sliding sleeve and two third connecting rods, wherein the fixed rod is arranged at the top inside the mounting frame; the sliding sleeve is slidably arranged on the fixed rod; one end of the two third connecting rods is movably connected to the two ends of the sliding sleeve, and the other end is connected to one end of the two first connecting rods.

[0011] Specifically, movable blocks are respectively provided at both ends of the mounting frame, and one end of each of the two first connecting rods is movably provided in the movable blocks.

[0012] Specifically, two ends of the top of the operating table are respectively provided with sliding grooves, and the other ends of the two second connecting rods are respectively slidably arranged in the sliding grooves.

[0013] Specifically, the other ends of the two second connecting rods are respectively connected to one end of the clamping block.

[0014] The advantages of this utility model compared with the existing technology are:

[0015] (1) A fixing device is provided to quickly and accurately achieve the center clamping of the forging, which greatly improves the production efficiency. By precisely controlling the clamping force and position, the stability of the forging during the processing is ensured, and deformation or damage caused by improper clamping is effectively prevented;

[0016] (2) Due to the significant improvement in clamping accuracy, the forgings are more in line with the design requirements in terms of size and shape, which reduces the defective rate and improves the overall quality of the product. At the same time, it can handle forgings of different shapes and sizes to meet diverse production needs.

[0017] Additional aspects and advantages of the present invention will be given in part in the following description and in part will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:

[0019] Figure 1 This is a three-dimensional diagram of a high-precision forging tool according to one embodiment of the present utility model;

[0020] Figure 2 A three-dimensional diagram of a high-precision forging tool according to another embodiment of the present invention;

[0021] Figure 3 The figure is a schematic structural diagram of a high-precision forging tool according to an embodiment of the present invention.

[0022] As shown in the figure: 1. Mounting frame; 2. Operating table; 3. Fixing device; 31. Driving assembly; 32. Linkage assembly; 33. Clamping block; 311. Hydraulic rod; 312. First connecting rod; 313. Second connecting rod; 321. Fixed rod; 322. Sliding sleeve; 323. Third connecting rod; 11. Movable block; 21. Slide groove. DETAILED DESCRIPTION

[0023] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention. On the contrary, the embodiments of the present invention include all variations, modifications, and equivalents that fall within the spirit and scope of the appended claims.

[0024] A high-precision forging tool according to an embodiment of the present invention will be described below with reference to the accompanying drawings.

[0025] like Figure 1-Figure 3 As shown, a high-precision forging tool of an embodiment of the present invention includes a mounting frame 1, an operating table 2 and a fixing device 3, wherein the operating table 2 is arranged on the mounting frame 1, and the fixing device 3 includes a driving component 31, a linkage component 32 and a clamping block 33, wherein the driving component 31 is arranged on the mounting frame 1, the linkage component 32 is slidably arranged on the operating table 2, and the linkage component 32 is connected to the driving component 31, and the clamping block 33 is slidably arranged on the operating table 2, and the clamping block 33 is respectively connected to one end of the linkage component 32.

[0026] Among them, it can be understood that the forging is placed on the operating table 2, and the driving component 31 drives the linkage component 32 to slide. When the linkage component 32 slides, it can drive the clamping block 33 to slide on the operating table 2, and at the same time, it can achieve fixed clamping of the forging, and the linkage component 32 can drive the clamping block 33 to quickly and accurately achieve centered clamping of the forging. By precisely controlling the clamping force and position, the stability of the forging during the processing is ensured, and deformation or damage caused by improper clamping is effectively prevented, thereby improving the overall quality of the product. At the same time, it can cope with forgings of different shapes and sizes to meet diverse production needs.

[0027] In one embodiment of the present invention, Figure 3 As shown, the drive assembly 31 includes a hydraulic rod 311, two first connecting rods 312 and two second connecting rods 313, wherein the hydraulic rod 311 is arranged in the mounting frame 1, one end of the two first connecting rods 312 is movably connected to the two ends of the hydraulic rod 311, and one end of the two second connecting rods 313 is movably connected to the other end of the two first connecting rods 312.

[0028] It can be understood that the hydraulic rod 311 drives the two first connecting rods 312 to move inward at the same time, and when the two first connecting rods 312 move inward, they can drive the two second connecting rods 313 to slide inward on the operating table 2.

[0029] In one embodiment of the present invention, Figure 3 As shown, the linkage assembly 32 includes a fixed rod 321, a sliding sleeve 322 and two third connecting rods 323, wherein the fixed rod 321 is set at the top inside the mounting frame 1, the sliding sleeve 322 is slidably set on the fixed rod 321, and one end of the two third connecting rods 323 is movably connected to the two ends of the sliding sleeve 322, and the other end is connected to one end of the two first connecting rods 312.

[0030] It can be understood that when the two first connecting rods 312 move, they can drive the two third connecting rods 323 to move. When the two third connecting rods 323 move, they drive the sliding sleeve 322 to slide downward on the fixed rod 321 and drive the two second connecting rods 313 to slide inward.

[0031] In one embodiment of the present invention, Figure 1-Figure 2As shown, movable blocks 11 are respectively provided at both ends of the mounting frame 1, one end of the two first connecting rods 312 are respectively movably provided in the movable blocks 11, and slide grooves 21 are respectively provided at both ends of the top of the operating table 2, the other ends of the two second connecting rods 313 are respectively slidably provided in the slide grooves 21, and the other ends of the two second connecting rods 313 are respectively connected to one end of the clamping block 33.

[0032] Among them, it can be understood that when the two first connecting rods 312 move, the two first connecting rods 312 move in the movable block 11, and when driving the two second connecting rods 313 to slide, they slide in the slide groove 21, ensuring the stability and accuracy of the sliding process, and at the same time driving the clamping block 33 to move inward synchronously to achieve clamping of the forging object.

[0033] Specifically, during the actual implementation process, the forging is placed on the operating table 2, and the two first connecting rods 312 are driven to move inward at the same time by the hydraulic rod 311. When the two first connecting rods 312 move inward, the two second connecting rods 313 can be driven to slide inward on the operating table 2. When the two first connecting rods 312 move, the two third connecting rods 323 can be driven to move. When the two third connecting rods 323 move, the sliding sleeve 322 is driven to slide downward on the fixed rod 321, and the two second connecting rods 313 are driven to slide inward. When the two first connecting rods 312 move, the two first connecting rods 312 move in the movable block 11. When the two second connecting rods 313 are driven to slide, they slide in the slide groove 21, ensuring the stability and accuracy of the sliding process. At the same time, the clamping block 33 is driven to move inward synchronously to clamp the forging. It can quickly and accurately achieve centered clamping of the forging. At the same time, it can cope with forgings of different shapes and sizes to meet diverse production needs.

[0034] In summary, the high-precision forging tooling of the embodiment of the present invention is provided with a fixing device, which can quickly and accurately achieve the center clamping of the forging, and ensure the stability of the forging during the processing by precisely controlling the clamping force and position, effectively preventing deformation or damage caused by improper clamping, and improving the overall quality of the product. At the same time, it can cope with forgings of different shapes and sizes and meet diverse production needs.

[0035] In this specification, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this utility model, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.

[0036] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification and features of different embodiments or examples without contradiction.

[0037] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are illustrative and cannot be understood as limitations on the present invention. Ordinary technicians in this field can change, modify, replace and deform the above embodiments within the scope of the present invention.

Claims

1. A high-precision forging tool, characterized in that: It comprises a mounting frame (1), an operating table (2) and a fixing device (3), wherein: The operating table (2) is arranged on the mounting frame (1); The fixing device (3) comprises a driving assembly (31), a linkage assembly (32) and a clamping block (33), wherein: The drive assembly (31) is arranged on the mounting frame (1); The linkage assembly (32) is slidably disposed on the operating table (2), and the linkage assembly (32) is connected to the driving assembly (31); The clamping block (33) is slidably arranged on the operating table (2), and the clamping block (33) is respectively connected to one end of the linkage assembly (32).

2. A high-precision forging tool according to claim 1, characterized in that: The driving assembly (31) includes a hydraulic rod (311), two first connecting rods (312) and two second connecting rods (313), wherein: The hydraulic rod (311) is arranged in the mounting frame (1); One end of each of the two first connecting rods (312) is movably connected to both ends of the hydraulic rod (311); One end of the two second connecting rods (313) is movably connected to the other end of the two first connecting rods (312) respectively.

3. A high-precision forging tool according to claim 2, characterized in that: The linkage assembly (32) includes a fixed rod (321), a sliding sleeve (322) and two third connecting rods (323), wherein: The fixing rod (321) is arranged at the top of the mounting frame (1); The sliding sleeve (322) is slidably arranged on the fixing rod (321); One end of the two third connecting rods (323) is movably connected to the two ends of the sliding sleeve (322), and the other end is connected to one end of the two first connecting rods (312).

4. A high-precision forging tool according to claim 2, characterized in that: Both ends of the mounting frame (1) are respectively provided with movable blocks (11), and one end of each of the two first connecting rods (312) is movably arranged in the movable blocks (11).

5. A high-precision forging tool according to claim 2, characterized in that: Slide grooves (21) are respectively provided at both ends of the top of the operating table (2), and the other ends of the two second connecting rods (313) are respectively slidably provided in the slide grooves (21).

6. A high-precision forging tool according to claim 2, characterized in that: The other ends of the two second connecting rods (313) are respectively connected to one end of the clamping block (33).