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Polyfunctional Electromechanical Energy Transformers for Technological Purposes

机译:多功能机电式能量互感器

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Polyfunctional electromechanical energy transformers with a ferromagnetic rotor are considered that allow full use of dissipative energy and structural, functional, and thermal integration. The combination in one machine of several technological functions is a feature of such devices. The rotor is cooled with raw material, which is processed. Air and low-melting materials with high thermal capacity and latent melting heat can act as an additional coolant. It is shown that almost all the conditional loss of active power comes from one of the components of net power, this being is heat power, which is used in the technological process. An implementation is presented of the principle of self-regulation in the division of electromagnetic power into two components of the net power: mechanical power flow and heat power. A gearless provision is discussed of low rotation speed and multiple enhancement of transformer torque based on the use of the interaction of direct and reverse fields of master and slave modules, changing the direction of rotation of the field of the slave module and duration of its action. Reverse moment is positive and leads to increased flatness of mechanical characteristics and, consequently, to increased instability of the transformer under load. The delay time of switching on the braking module needs to be chosen on the basis of the necessity of achieving a necessary result of torque of the transformer.
机译:带有铁磁转子的多功能机电式能量转换器被认为可以充分利用耗散能量以及结构,功能和热集成。一台机器中具有多种技术功能的组合是此类设备的一大特色。转子用原材料冷却,然后进行加工。具有高热容量和潜在熔化热的空气和低熔点材料可以充当额外的冷却剂。结果表明,有功功率的几乎所有条件损耗都来自净功率的组成部分之一,这就是热能,它是在工艺过程中使用的。提出了一种自我调节原理的实现方式,将电磁功率分为净功率的两个组成部分:机械功率流和热功率。通过使用主模块和从模块的正向和反向磁场的相互作用,改变从模块的磁场的旋转方向及其作用的持续时间,讨论了低速传动装置和变压器转矩的多重增强的无齿轮装置。 。反向力矩为正,会导致机械特性的平坦度增加,并因此导致变压器在负载下的不稳定性增加。需要根据实现变压器扭矩的必要结果来选择接通制动模块的延迟时间。

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