Aircraft forging factory can achieve energy saving and emission reduction through servo forging press, the specific implementation plan is as follows:
Optimization of forging process: Through the rational configuration of the forging process of the servo press, the power system can be optimized according to the specific forging needs, reducing the operating power and reducing energy consumption. For example, under low load conditions, the operating power of the servo press can be reduced, thus reducing energy consumption.
Running speed optimization: Set the running speed of the servo press reasonably, and reduce the running speed as far as possible under the premise of meeting the forging process requirements, in order to reduce ineffective power consumption and friction loss.
Energy recovery and utilization: servo press will produce a lot of energy consumption in the working process, such as heat, mechanical energy, etc. By using energy recovery technology, part of the lost energy can be collected and reused to reduce additional energy consumption. For example, heat recovery technology can be used to convert the heat generated during the forging process into electricity, which can be used in the operation of the equipment.
Automation upgrade: The forging equipment of the aircraft forging plant is automatically upgraded, and the intelligent operation of the equipment is realized through the automatic control system, reducing manual intervention and operation errors, and improving production efficiency and product quality.
Regular maintenance and maintenance: Regular maintenance and maintenance of the servo press to ensure the normal operation and service life of the equipment, reduce energy waste and environmental pollution caused by equipment failure. Reasonable planning of production plan: According to market demand and production plan, reasonable planning of production plan to avoid overproduction or insufficient production, resulting in energy waste or low production efficiency.
Staff training: Provide professional training to employees, improve their technical level and operational capabilities, and reduce energy waste and environmental pollution caused by improper operation.
To sum up, the aircraft forging plant can achieve the goal of energy conservation and emission reduction by optimizing the forging process, optimizing the operation speed, energy recovery and utilization, automation upgrading, regular maintenance and maintenance, reasonable production planning and training employees and other measures. The implementation of these measures requires comprehensive planning and comprehensive consideration of aircraft forgings to ensure the effectiveness and sustainability of energy conservation and emission reduction work.