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Mathematical models of heat and mass transfer in electrical contacts

机译:电触点传热和传质的数学模型

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Mathematical models describing phenomena of heat and mass transfer in electrical contacts are based on systems of partial differential equations for temperature and electromagnetic fields. The influence of Joule, Kohler and Thomson heat sources on the temperature field in closed contacts is discussed. The mathematical model of the ring-shaped welding in closed contacts is presented. Dynamics of contact opening is considered as consecutive stages including the initial stage of heating up to the melting point, the stage of a liquid bridge, metallic and gaseous arc stages. The dimensionless criteria of Thomson and Kohler are introduced which may be responsible for the displacement of the hottest isotherms of a bridge from its middle and corresponding bridge material transfer. The conditions for self-restrained bridge transfer are discussed. Phenomenon of contact floating due to metallic vapour pressure produced by a vacuum micro-arc is investigated experimentally and then described by a mathematical model. A mathematical model is presented describing transient phenomena accompanied a vacuum short arc at the initial stage of contact opening. It enables to describe the evolution of transient short anode dominated arc, which appears just after the rupture of molten bridge, into diffusive cathode dominated arc. The mechanisms of arc erosion are described by several models due to evaporation, droplets ejection, Marangoni effect, ejection of solid particles at thermo-elastic stresses. The hybrid mathematical model is elaborated to describe dynamics of the arc and forces acting in contact gap. It includes experimental oscillograms of current, voltage and contact displacement and nonlinear equations for arc, anode and cathode temperature fields and contact motion. It is shown theoretically and confirmed experimentally that in the range of high current the force of metallic vapour pressure at arcing in vacuum is comparable with magnetic repulsion force and should be taken into- consideration.The mathematical model describing transition from arc to glow at contact opening in circuits with a high inductance and small current is elaborated and identified experimentally. The mechanism of thermionic emission from the cathode surface based on Richardson-Dushman equation is corrected by addition of another emission mechanism due to electrochemical phenomena in melted pool on the cathode. The influence of current frequency on the rate of the arc erosion at contact opening is investigated using the model of transition of the metallic arc phase into gaseous phase.
机译:描述电触点中传热和传质现象的数学模型基于温度和电磁场的偏微分方程组。讨论了焦耳,科勒和汤姆森热源对闭合触点温度场的影响。提出了闭合触点环形焊接的数学模型。触点打开的动力学被认为是连续的阶段,包括加热到熔点的初始阶段,液桥阶段,金属和气态电弧阶段。引入了Thomson和Kohler的无量纲标准,这可能是桥梁最热的等温线从其中间和对应的桥梁材料转移引起的位移的原因。讨论了自约束桥传递的条件。实验研究了由真空微弧产生的金属蒸气压引起的接触浮动现象,然后通过数学模型进行了描述。提出了一个数学模型,描述了在触点打开初期伴随真空短弧的瞬态现象。它能够描述瞬态短阳极主导电弧的演变,该现象在熔融桥断裂后立即出现,变成了扩散阴极主导电弧。由于蒸发,液滴喷射,Marangoni效应,热弹性应力下固体颗粒的喷射,几种模型描述了电弧腐蚀的机理。阐述了混合数学模型,以描述电弧的动力学和作用在接触间隙中的力。它包括电流,电压和接触位移的实验波形图,以及电弧,阳极和阴极温度场以及接触运动的非线性方程。从理论上证明并通过实验证实,在大电流范围内,真空中电弧起弧时金属蒸气压的作用力与磁斥力相当,应予以考虑。描述接触孔处电弧到辉光过渡的数学模型在实验中确定并确定了具有高电感和小电流的电路中的电路。基于Richardson-Dushman方程的阴极表面热电子发射机理,通过添加另一种发射机理进行了修正,这是由于阴极熔池中的电化学现象引起的。利用金属电弧相向气相的转变模型,研究了电流频率对触头开口处电弧腐蚀速率的影响。

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