Metal power chassis stamping parts are made of cold-rolled steel plates as the core substrate and are made through precision sheet metal stamping technology. Relying on CNC punching machines and customized molds, the chassis shell, heat dissipation structure and installation components are punched, bent and integrated. The heat dissipation mesh, power module adapter and equipment installation interface are precisely shaped, and the surface is rust-proofed to present a metallic texture. It provides physical protection and stable operating space for power conversion and control components, adapts to the power supply system of servers, industrial control equipment, communication base stations and other scenarios, and lays a solid hardware foundation for power supply.
Features | Details |
Structural strength | Cold-rolled steel plate is stamped to form, with excellent deformation and impact resistance, effectively resisting external forces and equipment operation vibration, and ensuring the safety of power supply components |
Heat dissipation optimization | Stamped customized array heat dissipation mesh, combined with internal air duct design, accelerates heat dissipation, reduces the risk of overheating of power modules, and improves operational stability |
Precise adaptation | CNC stamping controls the dimensional tolerance within ±0.1mm, and the installation position, interface and power supply components are accurately matched, supporting rapid assembly and module replacement |
Flexible customization | The chassis size, heat dissipation hole layout, and surface treatment (spraying, galvanizing, etc.) can be adjusted to meet the needs of power supply equipment of different power and scenarios |
This metal power chassis stamping focuses on the research and development of power system integration needs. 1.2-2.0mm thick cold-rolled steel plates are selected to take into account both strength and electromagnetic shielding effects. Production process: Laser cutting for precise material cutting, laying the foundation for subsequent processing; CNC punching machine cooperates with molds to punch out the chassis body, heat dissipation mesh (honeycomb/long strip optional), power module rails and installation holes in one piece; bending process shapes the closed cavity and modular structure to ensure protection and assembly convenience; deburring treatment eliminates sharp edges and improves operational safety; the surface is electrostatically sprayed (mainly gray) or galvanized to enhance rust and wear resistance, and adapt to complex use environments.
The chassis design fits the modular operation and maintenance needs of the power supply. The heat dissipation mesh and internal air duct work together to efficiently dissipate the heat of high-power power supplies; the modular installation structure supports fast plug-in and maintenance of power modules. It is suitable for server redundant power supplies, industrial computer DC power supply units, communication base station power supply systems, etc., to build an integrated solution of "protection + heat dissipation + easy maintenance" for power supply components. With the adaptability guaranteed by high-precision stamping, the reliability given by the stable structure, and the diversity satisfied by customization, it helps power supply equipment to achieve efficient integration and long-term stable operation, and provides solid hardware support for power supply in industries such as industry and communications.