Core mechanical equipment for applications in the power industry
Release time:2026-02-03
Core equipment for the power generation stage (main equipment for each type of power generation)
- Thermal power generation Boilers, steam turbine generator sets, coal mills, coal feeders, induced draft fans, forced draft fans, slag removal machines, desulfurization and denitrification equipment, coal crushers, condensers, and more;
- Hydropower Hydroelectric generator sets, hydro turbine governors, gate operators, pressure steel pipes, excitation systems, and pump bodies for hydraulic auxiliary systems, etc.;
- Wind power generation Wind turbine units (including rotor blades, hub, nacelle, tower cylinder), yaw system, pitch control system, gearbox, generator, braking system, and others;
- Photovoltaic power generation Photovoltaic inverters, combiner boxes, photovoltaic mounting structures, packaged transformers, DC distribution cabinets, and other associated mechanical and electrical equipment;
- Nuclear power generation Nuclear reactor, steam generator, pressurizer, main circulating pump, turbine-generator unit, containment cooling system equipment, and others;
- Other power generation Crushing and conveying equipment for biomass power generation, gas turbines for gas-fired power generation, combined-cycle power generation units, and more.
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Core mechanical equipment for applications in the power industry
The mechanical equipment in the power industry is strategically arranged across the entire value chain—power generation, transmission, transformation, distribution, and consumption—and is categorized according to power generation types (such as thermal power, hydropower, wind power, photovoltaic power, nuclear power, etc.) and grid segments. The core equipment categories are clearly defined and well-suited to different power-generation scenarios. Below are the key application devices for each segment:
2026-02-03
Forging and Casting Processing Technology
Focusing on ensuring the density, dimensional accuracy, and mechanical performance of castings and forgings, we strictly adhere to the process principles of "precise process control, homogeneous forming, and stable strength assurance." We also take into account both the aesthetic uniformity of finished products and their service durability, thereby avoiding issues such as forming defects, non-uniform microstructures, and dimensional deviations. This ensures that the finished products meet design standards and operational requirements, making them suitable for a wide range of applications involving heavy loads, wear resistance, and pressure-bearing conditions.
2026-02-02
General Core Process Specifications for Electric Welding
Arc welding (electric arc welding) is a welding process in which an electric arc generated between an electrode and the workpiece melts the base metal and the filler metal at high temperatures, thereby forming a metallurgically bonded weld. The core of this process revolves around three major stages: pre-weld preparation, welding operation, and post-weld treatment. It also requires matching appropriate welding parameters. This method is suitable for welding common heavy-duty machinery base metals such as carbon steel and low-alloy steel. The following outlines a standardized, general procedure that can be adjusted according to the thickness of the workpiece, its material, and the welding position.
2026-01-30
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