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热电离的英文

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"热电离"怎么读用"热电离"造句

英文翻译手机手机版

  • thermal ionization
  • thermionization

例句与用法

  • Calibration specification for thermal ionization isotope mass spectrometers
    热电离同位素质谱计校准规范
  • Standard test method for uranium and plutonium concentrations and isotopic abundances by thermal ionization mass spectrometry
    热电离质谱法进行铀和钚浓度和同位素丰度的标准试验方法
  • Standard test method for isotopic analysis of hydrolyzed uranium hexafluoride and uranyl nitrate solutions by thermal ionization mass spectrometry
    热电离质谱法进行水解六氟化铀和硝酸双氧铀溶液同位素分析的标准试验方法
  • Test results indicated : with the hoist of altitude , the increase of ice amount and the rise of pollutant , the average flashover voltage reduced . the character exponent generally depends on the insulator profile , ice amount , ice state and pollution severity etc . by means of a high - speed camera , a data acquisition system and high voltage test facilities , a series of the flashover processes on ice surfaces were record . the experimental results form this study and the subsequent theoretical analyses suggested : the thermal ionization of the air in front of an arc root resulted in arc movement ; the electrostatic force had an auxiliary effect of impelling arc propagation ; the electrical
    通过对摄像机、数据采集系统及高压试验装置记录覆冰绝缘子表面闪络电弧的发展过程的试验结果进行理论分析得出:弧根周围空气的热电离导致了电弧的发展,静电场力对电弧的发展起到了加速作用,电击穿仅发生在闪络最终的跳跃阶段;通过测量闪络过程中的放电电压、泄漏电流、闪络时间、覆冰水电导率、电弧长度及电弧半径等参数,得到了不同阶段电弧(电弧起弧阶段、电弧发展阶段及完全闪络)的发展速度、临界电弧长度均随覆冰水电导率的增加而减小。
  • The physical characteristic of forming plasma within resonant cavity was revealed , i . e . the forming mechanism is a switching process from the ionization caused by strong electric field at the initial stage of mpt ' s start to another ionization caused by joule ' s heat at the stage of mpt ' s steady work . the main influencing factors of mpt ' s steady work were studied . anther pointed out the matching between pressure in resonant cavity and microwave power is the determinant factor to the plasma whether stabilization or extinguishing
    分析了mpt谐振腔内微波能量的转换过程,揭示了其内等离子体的形成是由mpt启动初期的强电场电离形成放电区过渡到稳定工作期的热电离形成稳态等离子体区这一物理本质;研究了影响mpt稳定工作的主要因素,指出微波有效功率与谐振腔内气体压强的匹配是维持等离子体稳定、避免等离子体消失、放电区熄灭的关键因素。
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