What are the driving methods of the fully automatic pipe bending machine
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What are the driving methods of the fully automatic pipe bending machine
There are generally three main driving methods for fully automatic pipe bending machines: motor drive, hydraulic drive, and hybrid motor hydraulic drive.
1. Motor drive
In today's intelligent industrial production, most institutions and machine equipment use motor driven power devices to provide driving force for the root position of all machine equipment. The motor provides the driving force, and there are many different ways to propagate the driving force throughout the entire process. For example, the motor can be used to drive the transmission gear, worm gear, camshaft, crankshaft and other mechanisms, and a fully automatic pipe bending machine that meets the requirements can be planned according to the overall situation.
2. Hydraulic drive
With the continuous development trend of industrial production professional skills, hydraulic transmission system professional skills are one of the rapidly developing professional skills in industrial equipment, especially in recent years, it has entered a new rapid development stage. Hydraulic transmission systems and control system software are widely used in society due to their advantages of high transmission output power, high control precision, faster mapping speed, and easy integration of motor and hydraulic control. The fully active CNC pipe bending machine driven by hydraulic pressure is a new type of elbow mechanism, which has the advantages of reasonable structure, convenient practical operation, application safety, fast loading and unloading, and common use of one machine.
3. Motor hydraulic hybrid drive
Although the fully automatic pipe bending machine has the advantages of high transmission output power, high control accuracy, and faster mapping speed, there are also some shortcomings, such as: due to the excessive posture of the controller, the production and manufacturing output power is low; High equipment consumption and shortened service life; There are many personnel required for actual operation, which results in high labor costs and production costs. Therefore, in further discussion, it is explicitly proposed to adopt a hybrid teaching drive system of electric motor and hydraulic, which can adopt the most effective driving method based on the advantages of electric motor and hydraulic respectively to reduce product costs, develop production and manufacturing output power, and improve machining accuracy.
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