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Study on the mechanism of power device's dust absorption in plateau environment

机译:高原环境下动力装置吸尘机理的研究

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This paper designed a simulation test platform, aiming at studying the phenomenon of dust absorption of power devices in plateau environment. Researches show that: under the same conditions, the distance between gas molecules will increase as the atmospheric pressure getting lower. When getting enough kinetic energy, those gas particles will collide with each other, forming charged particles in the collision process. When the charged particle is combined with the dust particle, the power device forms the dust absorption phenomenon under the action of the electric field. The phenomenon of dust absorption becomes serious with the reduction of air pressure, which causes the power device to be damaged due to the decrease of heat dissipation performance. Thus, it is of great significance to reduce the falling dust phenomenon to ensure the reliable operation of power devices.
机译:本文设计了一个模拟测试平台,旨在研究高原环境中功率器件的吸尘现象。研究表明:在相同条件下,气体分子之间的距离将随着大气压的降低而增加。当获得足够的动能时,这些气体粒子将相互碰撞,在碰撞过程中形成带电粒子。当带电粒子与灰尘粒子结合时,功率器件在电场的作用下形成灰尘吸收现象。随着气压的降低,吸尘现象变得严重,由于散热性能的降低,导致功率器件损坏。因此,减少落粉现象对保证功率器件的可靠运行具有重要意义。

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