High-toughness low-carbon alloy casting
By introducing anti-deformation pillars and elastic clips into the structural design of low-carbon alloy castings, the problem of insufficient toughness in low-carbon alloy castings is solved, enabling the toughness to be adjusted according to requirements and expanding the range of applications.
Patent Information
- Application Number
- CN202422555974.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-10-23
AI Technical Summary
Existing low-carbon alloy castings are wasteful of resources in scenarios where toughness requirements are not high, while they lack toughness in scenarios where toughness requirements are high, thus limiting their application range.
By introducing anti-deformation columns and elastic clips into the low-carbon alloy casting, the toughness can be adjusted according to the requirements. The anti-deformation columns are detachably connected through mounting slots and through holes and fixed by elastic clips.
This allows for adjustments to toughness based on actual needs without affecting usability, thus expanding the application range of low-carbon alloy castings.
Smart Images

Figure CN223498541U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of low-carbon alloy casting technology, specifically a high-toughness low-carbon alloy casting. Background Technology
[0002] Low-carbon alloy castings are made by adding a small amount of alloying elements (usually no more than 5%) to low-carbon steel through a casting process. The addition of alloying elements improves the corrosion resistance and heat resistance of low-carbon alloy castings, allowing them to maintain stable performance even in harsh environments. Furthermore, low-carbon alloy castings have good machinability, facilitating subsequent processing such as cutting, welding, and heat treatment. However, low-carbon alloy castings are manufactured with a certain degree of toughness. This can be wasteful in applications where toughness requirements are low, while insufficient toughness in applications requiring higher toughness limits their application range and presents certain shortcomings. Utility Model Content
[0003] The present invention aims to solve the problems existing in the prior art or related technologies.
[0004] Therefore, the technical solution adopted by this utility model is as follows: a high-toughness low-carbon alloy casting, including a base, a column, a support seat, an anti-deformation column, and an elastic clip. The top of the base is provided with several first mounting slots, the column is arranged on the top of the base, the support seat is arranged on the top of the column, the bottom of the support seat is provided with several second mounting slots, the anti-deformation column is inserted into the first mounting slots and the second mounting slots, and the elastic clip is arranged inside the anti-deformation column.
[0005] Preferably, the base, column, and support are an integral structure, and the base and support are provided with mounting holes.
[0006] Preferably, the first mounting slot and the second mounting slot have the same structure, and a plurality of the first mounting slots correspond one-to-one with a plurality of the second mounting slots.
[0007] Preferably, each of the first mounting slots has a slot on its inner side, and the slot has a circular cross-section.
[0008] Preferably, the outer side of the anti-deformation column is provided with a through hole.
[0009] Preferably, the elastic locking element includes a spring disposed inside the anti-deformation column, a locking block disposed at the bottom of the spring, and a moving rod disposed outside the locking block.
[0010] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows: By setting anti-deformation columns, this utility model achieves the effect of adjusting the toughness according to actual needs without affecting the use of low-carbon alloy castings, thus having a wide range of applications. Simultaneously, by setting elastic clips, the anti-deformation columns can be installed and disassembled. During use, the user can align the anti-deformation columns with the first and second mounting slots, insert them, and then install a certain number of anti-deformation columns according to actual needs. During installation, each anti-deformation column needs to be evenly distributed. The more anti-deformation columns installed, the higher the toughness of the low-carbon alloy casting, achieving the effect of adjusting the toughness according to actual needs, thus having a wide range of applications. Furthermore, when installing the anti-deformation columns, the moving rod of the elastic clip can be moved upwards. The moving rod will drive the clip block upwards to compress the spring until the clip block is completely hidden inside the anti-deformation column. When the anti-deformation column is inserted into the first and second mounting slots, the moving rod can be released. After release, due to the elasticity of the spring, the clip block will automatically engage in the slot, thus fixing the anti-deformation column for easy installation and disassembly. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model;
[0012] Figure 2 This is a structural schematic diagram of the present invention from one perspective, excluding the anti-deformation column;
[0013] Figure 3 This is a structural schematic diagram of the present invention from another perspective, excluding the anti-deformation column;
[0014] Figure 4 This utility model Figure 1 A schematic diagram of the structure of the anti-deformation column and the elastic clamp.
[0015] Figure label:
[0016] 100. Base; 101. First mounting slot; 102. Card slot;
[0017] 200. Column;
[0018] 300, Support base; 301, Second mounting slot;
[0019] 400, Anti-deformation column; 401, Through hole;
[0020] 500, Elastic locking element; 501, Spring; 502, Locking block; 503, Moving rod. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.
[0022] The following description, in conjunction with the accompanying drawings, describes some embodiments of this utility model that provide a high-toughness, low-carbon alloy casting.
[0023] Example 1:
[0024] Reference Figure 1-4 This is the first embodiment of the present invention, which provides a high-toughness low-carbon alloy casting, including a base 100, a column 200, a support 300, an anti-deformation column 400, and an elastic clip 500.
[0025] Specifically, the top of the base 100 is provided with a number of first mounting slots 101, and the inner side of each of the first mounting slots 101 is provided with a slot 102. The slot 102 has a circular cross-section. In use, the first mounting slots 101 are used to install the anti-deformation column 400 to improve toughness, while the slot 102 is used for the elastic clip 500 to be inserted to fix the anti-deformation column 400.
[0026] Specifically, the column 200 is installed on the top of the base 100. In use, the column 200 is used to connect the base 100 and the support 300 and provides support.
[0027] Specifically, the support base 300 is arranged on the top of the column 200, and the bottom of the support base 300 is provided with several second mounting slots 301. In use, the several second mounting slots 301 are used to install the anti-deformation column 400 in order to improve toughness.
[0028] Furthermore, the first mounting groove 101 and the second mounting groove 301 have the same structure. Several first mounting grooves 101 and several second mounting grooves 301 correspond one-to-one. In use, several first mounting grooves 101 and several second mounting grooves 301 play a limiting role so as to install several anti-deformation columns 400.
[0029] It should be noted that the base 100, column 200 and support 300 are an integral structure. The base 100 and support 300 are provided with mounting holes. During use, the mounting holes can be penetrated by bolts or other structures for fixing.
[0030] Specifically, the anti-deformation column 400 is inserted into the first mounting groove 101 and the second mounting groove 301. The outer side of the anti-deformation column 400 is provided with a through hole 401. During use, a certain number of anti-deformation columns 400 can be installed. The more anti-deformation columns 400 there are, the higher the toughness of the low-carbon alloy casting. This achieves the effect of adjusting the toughness according to actual needs, and has a wide range of applications.
[0031] Specifically, the elastic clip 500 is installed inside the anti-deformation column 400. The elastic clip 500 includes a spring 501 installed inside the anti-deformation column 400, a clip 502 located at the bottom of the spring 501, and a moving rod 503 located outside the clip 502. In use, when installing the anti-deformation column 400, the moving rod 503 of the elastic clip 500 can be moved upward. The moving rod 503 will drive the clip 502 to compress the spring 501 upward until the clip 502 is completely hidden inside the anti-deformation column 400. When the anti-deformation column 400 is inserted into the first mounting groove 101 and the second mounting groove 301, the moving rod 503 can be released. After release, due to the elasticity of the spring 501, the clip 502 will automatically engage in the slot 102, thereby fixing the anti-deformation column 400 for installation and removal.
[0032] The working principle and usage process of this utility model are as follows: During use, the user can align the anti-deformation column 400 with the first mounting groove 101 and the second mounting groove 301, insert them, and then install a certain number of anti-deformation columns 400 according to actual needs. During installation, each anti-deformation column 400 needs to be evenly distributed. The more anti-deformation columns 400 installed, the higher the toughness of the low-carbon alloy casting, achieving the effect of adjusting the toughness according to actual needs, thus expanding the application range. Simultaneously, when installing the anti-deformation column 400, the moving rod 503 of the elastic clip 500 can be moved upwards. The moving rod 503 will drive the clip 502 to compress the spring 501 upwards until the clip 502 is completely hidden inside the anti-deformation column 400. When the anti-deformation column 400 is inserted into the first mounting groove 101 and the second mounting groove 301, the moving rod 503 can be released. After release, due to the elasticity of the spring 501, the clip 502 will automatically engage in the slot 102, thus fixing the anti-deformation column 400 for easy installation and removal.
[0033] Although embodiments of the present invention have been shown and described, those skilled in the art will understand 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 claims and their equivalents.
Claims
1. A high-toughness, low-carbon alloy casting, characterized in that, include: A base (100) having a plurality of first mounting slots (101) at its top end; A column (200) is provided on top of the base (100); A support base (300) is provided on the top of the column (200), and a plurality of second mounting slots (301) are provided on the bottom of the support base (300); An anti-deformation column (400) is inserted into the first mounting groove (101) and the second mounting groove (301); An elastic clip (500) is disposed inside the anti-deformation column (400).
2. The high-toughness, low-carbon alloy casting according to claim 1, characterized in that, The base (100), column (200) and support (300) are an integral structure, and mounting holes are provided on the base (100) and support (300).
3. The high-toughness, low-carbon alloy casting according to claim 1, characterized in that, The first mounting slot (101) and the second mounting slot (301) have the same structure, and a plurality of the first mounting slots (101) correspond one-to-one with a plurality of the second mounting slots (301).
4. A high-toughness, low-carbon alloy casting according to claim 1, characterized in that, Each of the first mounting slots (101) has a slot (102) on its inner side, and the slot (102) has a circular cross-section.
5. A high-toughness, low-carbon alloy casting according to claim 1, characterized in that, The outer side of the anti-deformation column (400) is provided with a through hole (401).
6. A high-toughness, low-carbon alloy casting according to claim 1, characterized in that, The elastic locking element (500) includes a spring (501) disposed inside the anti-deformation column (400), a locking block (502) disposed at the bottom of the spring (501), and a moving rod (503) disposed outside the locking block (502).