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MICROWAVE IGNITION OF ELECTRICALLY OPERATED PROPELLANTS

机译:电动推进剂的微波点火

摘要

Microwave energy is used to ignite and control the ignition of electrically operated propellant to produce high-pressure gas. The propellant includes conductive particles that act as a free source of electrons. Incoming microwave energy accumulates electric charge in an attenuation zone, which is discharged in the form of dielectric breakdowns to create local randomly oriented currents. The propellant also includes polar molecules. The polar molecules in the attenuation zone absorb microwave energy causing the molecules to rapidly vibrate thereby increasing the temperature of the propellant. The increase in temperature and the local current densities together establish an ignition condition to ignite and sustain ignition of an ignition surface of the attenuation zone as the zone regresses without igniting the remaining bulk of the propellant.
机译:微波能量用于点燃和控制电动推进剂的点火以产生高压气体。 推进剂包括用作自由电子来源的导电颗粒。 进入的微波能量累积衰减区中的电荷,其以介电击穿的形式排出以产生局部随机取向的电流。 推进剂还包括极性分子。 衰减区中的极性分子吸收微波能量,导致分子快速振动,从而提高推进剂的温度。 温度和局部电流密度的增加在一起建立点火条件以点燃和维持衰减区的点火表面的点火,因为区域回归而不点燃剩余的推进剂。

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