Large forge piece cooling supporting platform
The design of detachable support gears and heat dissipation grooves solves the problems of heavy weight and inconvenient movement of forging platforms in the existing technology, and realizes the flexibility and efficient cooling effect of the support platform.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN ZHONGYU HEAVY IND TECH CO LTD
- Filing Date
- 2025-05-08
- Publication Date
- 2026-05-01
AI Technical Summary
The existing forging platform has support teeth welded to the platform, which increases the platform weight when forging large forgings, makes it difficult to move, and makes it impossible to flexibly adjust the number and position of the support teeth, affecting cooling efficiency and maintenance and replacement efficiency.
The design features detachable support gears that connect to the assembly via splicing sections. The support gears can be detachably mounted on the support plate. The support gear assembly can be adjusted according to the size of the forging and is equipped with heat dissipation grooves and support legs to improve air circulation and platform stability.
It achieves flexibility and applicability of the support platform, reduces platform weight, facilitates movement and maintenance, and eliminates the need to replace the entire platform when replacing the support gear assembly, thus improving cooling efficiency and maintenance efficiency.
Smart Images

Figure CN224182000U_ABST
Abstract
Description
A large forging cooling support platform Technical Field
[0001] This utility model belongs to the field of support mechanism technology, specifically relating to a large forging cooling support platform. Background Technology
[0002] In the forging process, if the freshly forged workpiece is placed directly on a flat surface, the airtightness is low due to the direct contact between the workpiece and the surface, which prolongs the heat dissipation time of the workpiece. Therefore, it is usually necessary to use a platform with multiple support points to place the freshly forged workpiece in order to maintain air circulation between the workpiece and the platform and facilitate the cooling of the workpiece.
[0003] In the prior art, in order to ensure air circulation between the forging and the platform, multiple toothed blocks are usually set on a support platform to support the forging, thereby achieving the effect of support and cooling. However, these toothed blocks are usually directly welded to the support platform. When supporting some large forgings, these toothed blocks will occupy a large area of the top of the support platform, which will increase the weight of the support platform itself and make it inconvenient for workers to move it. Summary of the Invention
[0004] In view of this, the present invention provides a large forging cooling support platform, the purpose of which is to provide a detachable support gear assembly, so that workers can remove the support gear assembly and move the platform frame separately, thereby reducing the weight of a single platform frame and facilitating handling and movement.
[0005] The technical solution adopted in this utility model is as follows:
[0006] A large forging cooling support platform includes a platform frame, an assembly frame on the top of the platform frame, a plurality of support plates between two opposing inner walls of the assembly frame, a support tooth assembly on the top of the support plate, and assembly parts at both ends of the support plate in the length direction.
[0007] The supporting tooth assembly includes a tooth assembly base, which is located on the top of the support plate, and the tooth assembly base has splicing parts at both ends in the length direction, and the splicing parts are connected to the assembly parts.
[0008] As a preferred technical solution, the assembly includes a clamping block, the bottom of which is fixedly connected to the support plate, wherein the top of the clamping block is provided with a slot, which is suitable for connecting the splicing part.
[0009] Furthermore, the splicing part includes a locking block, which is adapted to the slot, wherein the inner wall of the slot and the locking block are provided with corresponding screw holes.
[0010] Furthermore, a reserved gap is left between two adjacent support plates, which forms a heat dissipation groove, wherein the heat dissipation groove extends through the bottom of the platform frame.
[0011] Furthermore, the platform frame is provided with legs at the bottom, the number of which corresponds to the support plate, and the legs are located at the bottom of the support plate.
[0012] Furthermore, the top of the tooth assembly base is provided with a storage groove extending along its length, and the storage groove contains a plurality of support teeth arranged in an array.
[0013] Furthermore, the top of the support tooth is tapered, and the bottoms of any two adjacent support teeth are integral.
[0014] Furthermore, the bottom of the support tooth and the inner wall of the storage groove are both provided with corresponding fixing holes.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:
[0016] By incorporating splicing sections and assemblies, the support teeth are detachably mounted on the platform frame. This design allows workers to select the number and distribution of support tooth assemblies based on the size of the forgings and cooling requirements, thereby improving the flexibility and applicability of the support platform. Furthermore, when the platform frame needs to be moved, workers can quickly detach the support tooth assemblies, reducing the platform frame's weight and facilitating its relocation, thus saving labor and time costs. Attached Figure Description
[0017] This utility model will be described by way of example and with reference to the accompanying drawings, wherein:
[0018] Figure 1 is a structural schematic diagram of the large forging cooling support platform provided by this utility model;
[0019] Figure 2 is a structural schematic diagram of the assembly frame provided by this utility model;
[0020] Figure 3 is a schematic diagram of the structure of the support tooth assembly provided by this utility model.
[0021] Platform frame-1; Support gear assembly-2; Frame leg-3; Assembly frame-4; Support plate-5; Clamping block-6; Slot-7; Heat dissipation slot-8; Gear assembly base-9; Clamping block-10. Detailed Implementation
[0022] 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, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Example 1
[0024] In existing technologies, to ensure good airflow between the forging and the platform, multiple toothed blocks are typically designed on the support platform. These toothed blocks support the forging and simultaneously provide support and cooling. However, these toothed blocks are usually directly fixed to the support platform by welding. When supporting large forgings, the toothed blocks occupy a significant amount of space at the top of the support platform, increasing the platform's weight and hindering operator movement.
[0025] Therefore, in order to solve the above problems and realize the function of reducing the weight of the platform frame 1 and facilitating its handling and movement, this utility model discloses a large forging cooling support platform. Referring to Figures 1 to 3, it includes a platform frame 1. The top of the platform frame 1 is provided with an assembly frame 4. Several support plates 5 are provided between two opposing inner walls of the assembly frame 4. The top of the support plate 5 is provided with a support tooth assembly 2. Both ends of the support plate 5 in the length direction are provided with fittings. The support tooth assembly 2 includes a tooth assembly base 9, which is located on the top of the support plate 5. The tooth assembly base 9 has splicing parts at both ends in the length direction, and the splicing parts are connected to the fittings.
[0026] In this embodiment, the worker can remove the support tooth assembly 2 from the support plate 5 by disconnecting the splicing part from the assembly. Removing the support tooth assembly 2 reduces the weight of the platform frame 1, making it easier and more convenient to move the platform frame 1 independently. Subsequently, when the platform frame 1 is needed again, the worker can reinstall the support tooth assembly 2 onto the support plate 5 using the assembly. The cooperation between the splicing part and the assembly ensures the stability of the support tooth assembly 2 on the support plate 5. After installation, the top of the support tooth assembly 2 has several arrayed support teeth. These support teeth support large forgings, ensuring good airflow between the forgings and the platform frame 1, thereby achieving rapid cooling.
[0027] Furthermore, since the support teeth in the existing technology are directly welded to the platform frame 1, when a support tooth is damaged, the staff can only replace the entire platform frame 1. In view of this, by setting up the splicing part and the assembly, when the support tooth assembly 2 needs to be repaired or replaced, only the damaged support tooth assembly 2 needs to be removed and replaced separately, without replacing the entire platform frame 1, thereby improving the efficiency of repair and replacement.
[0028] Furthermore, since the support tooth assembly 2 is detachably mounted on the platform frame 1, when supporting forgings of different sizes, the operator can adjust the number of support tooth assemblies 2 according to the size of the forgings. Specifically, when the forging is large, support tooth assemblies 2 can be installed on most of the support plates 5 to stably support the forging; while when the forging is small, support tooth assemblies 2 can be installed on a few support plates 5 to avoid wasting resources.
[0029] For example, the assembly includes a clamping block 6, the bottom of which is fixedly connected to the support plate 5. The top of the clamping block 6 has a slot 7, which is adapted to connect a splicing part. The splicing part includes a locking block 10, which fits into the slot 7. The inner wall of the slot 7 and the locking block 10 both have corresponding screw holes. Through the cooperation of the above structure, workers can insert the locking block 10 into the slot 7 and then use bolts or other fasteners to pass through the screw holes to fix the locking block 10 and the slot 7, thereby installing the support tooth assembly 2 on the support plate 5, ensuring that the support tooth assembly 2 will not shake or fall off during use. At the same time, due to the connection method of the splicing part and the assembly, the disassembly and replacement of the support tooth assembly 2 becomes very convenient, improving the efficiency of maintenance and replacement.
[0030] Example 2
[0031] Based on Embodiment 1, referring to Figure 2, in order to further improve the cooling effect of the forging, a reserved gap is left between two adjacent support plates 5, which forms a heat dissipation groove 8, wherein the heat dissipation groove 8 extends through the bottom of the platform frame 1.
[0032] This arrangement ensures that when the forging is placed on the support tooth assembly 2, the bottom of the forging contacts the top of the support teeth. Because the top of the support teeth has a conical structure, a point contact is formed between the forging and the support teeth, rather than a surface contact. This reduces the contact area, lowers the airtightness, and allows for smoother airflow between the forging and the platform frame 1. Simultaneously, since the heat dissipation groove 8 extends through the bottom of the platform frame 1, air can flow from the bottom of the platform frame 1 to the bottom of the forging, further improving the cooling effect of the forging.
[0033] Furthermore, to improve the stability of the platform frame 1, the bottom of the platform frame 1 is provided with support legs 3. The number of support legs 3 corresponds to the number of support plates 5, and the support legs 3 are located at the bottom of the support plates 5. The support legs 3 provide support for the platform frame 1, aiming to prevent it from swaying or tilting when placing large forgings. At the same time, since the number of support legs 3 corresponds to the number of support plates 5, this arrangement of multiple support legs 3 helps to distribute the force evenly on the platform frame 1, improving its load-bearing capacity and stability.
[0034] It should be noted that the support leg 3 is a rectangular strip, and the length of the support leg 3 is longer than that of the support plate 5, so that both ends of the support leg 3 are connected to the platform frame 1.
[0035] Furthermore, since the bracket 3 is also connected to the bottom of the support plate 5, the bracket 3 can also support the support plate 5 and the support tooth assembly 2.
[0036] Example 3
[0037] Based on Embodiment 1 and Embodiment 2, in order to further improve the ease of replacing the support tooth assembly 2, the top of the tooth assembly base 9 is provided with a storage groove extending along its length direction. The storage groove is provided with a plurality of support teeth arranged in an array, and the bottom of any two adjacent support teeth is an integral structure.
[0038] This design makes it easier for workers to remove the entire support tooth from the storage slot when maintenance or replacement is needed, and also facilitates the installation and return of new support teeth to the storage slot. Because the bottoms of any two adjacent support teeth are of a single integrated structure, the overall structural strength of support tooth assembly 2 is improved, and the arrangement of the support teeth within the storage slot is more neat and stable.
[0039] When installing or removing the support tooth, the bottom of the support tooth and the inner wall of the storage groove are provided with corresponding fixing holes. The fixing holes can be threaded holes. The operator only needs to pass the bolts or other fasteners through the fixing holes to fix the support tooth in the storage groove or remove the support tooth from the storage groove, thereby realizing the installation and removal of the support tooth.
[0040] In summary, based on Embodiments 1 to 3, the working steps of this large forging cooling support platform are as follows:
[0041] First, check whether each component, such as platform frame 1, support plate 5, support tooth assembly 2, clamping block 6, and frame leg 3, is intact. Check whether the slot 7 on clamping block 6, the clamping block 10 of splicing part, and the screw holes and fixing holes on each component are damaged or blocked. At the same time, check the stability of frame leg 3 to ensure that it can provide normal support for platform frame 1.
[0042] Secondly, if it is necessary to move the platform frame 1, the staff can release the bolted connection between the splicing part (clamp 10) and the assembly (clamp 6 slot 7), and remove the support tooth assembly 2 from the support plate 5. At this time, the platform frame 1 can be moved alone, and the handling is easier and more convenient due to its reduced weight.
[0043] Next, when preparing to use the platform frame 1 to support the large forging, move the support tooth assembly 2 above the support plate 5, align the locking block 10 with the locking slot 7 and lock it in, then use bolts to pass through the corresponding screw holes and tighten them so that the support tooth assembly 2 is firmly installed on the support plate 5.
[0044] Next, check the condition of the support teeth on the support tooth assembly 2. If any support teeth are damaged, unscrew the bolts connecting the bottom of the damaged support tooth to the fixing hole on the inner wall of the storage slot, remove the damaged support tooth from the storage slot, replace it with a new support tooth, and then fix it with bolts through the fixing hole.
[0045] Next, the large forging is placed on the support teeth of the support tooth assembly 2. The conical structure at the top of the support teeth allows the forging to make point contact with the support teeth, reducing the contact area and ensuring smooth airflow. At the same time, the heat dissipation groove 8 runs through the bottom of the platform frame 1, allowing air to flow from the bottom to the bottom of the forging, further enhancing the cooling effect.
[0046] During the cooling process of the forging, check the status of each component regularly, check whether the support tooth assembly 2 is shaking, whether the connection between the clamping block 6 and the locking block 10 is loose, and whether the support leg 3 is stable, to ensure that the entire support platform is in normal working condition.
[0047] Finally, once the forging has cooled down, if the platform frame 1 needs to be moved again, disconnect the support tooth assembly 2 from the support plate 5 and remove the support tooth assembly 2 for transport. If the support tooth assembly 2 needs further maintenance or replacement, repeat the above operation procedure for replacing the support teeth.
[0048] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.
[0049] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A cooling support platform for large forgings, characterized in that, The system includes a platform frame (1), with an assembly frame (4) on top. Several support plates (5) are provided between two opposing inner walls of the assembly frame (4). The support plates (5) are provided with a support tooth assembly (2) on top. Both ends of the support plates (5) in the length direction are provided with fittings. The support tooth assembly (2) includes a tooth assembly base (9), which is located on top of the support plates (5). Both ends of the tooth assembly base (9) in the length direction are provided with splicing parts, which are connected to the fittings.
2. The large forging cooling support platform according to claim 1, characterized in that, The assembly includes a clamping block (6), the bottom of which is fixedly connected to the support plate (5), wherein the top of the clamping block (6) is provided with a slot (7), which is suitable for connecting the splicing part.
3. The large forging cooling support platform according to claim 2, characterized in that, The splicing part includes a locking block (10), which is adapted to the locking groove (7). The inner wall of the locking groove (7) and the locking block (10) are provided with corresponding screw holes.
4. The large forging cooling support platform according to claim 1, characterized in that, A reserved gap is left between two adjacent support plates (5), which forms a heat dissipation groove (8), wherein the heat dissipation groove (8) extends through the bottom of the platform frame (1).
5. The large forging cooling support platform according to claim 4, characterized in that, The platform frame (1) is provided with legs (3) at the bottom. The number of legs (3) corresponds to the number of the support plate (5), and the legs (3) are located at the bottom of the support plate (5).
6. The large forging cooling support platform according to claim 1, characterized in that, The top of the tooth base (9) is provided with a storage groove extending along its length, and the storage groove is provided with a number of support teeth arranged in an array.
7. The large forging cooling support platform according to claim 6, characterized in that, The top of the support tooth is tapered, and the bottom of any two adjacent support teeth is a single piece.
8. The large forging cooling support platform according to claim 6, characterized in that, The bottom of the support tooth and the inner wall of the storage groove are both provided with corresponding fixing holes.