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声悬浮的英文

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"声悬浮"怎么读用"声悬浮"造句

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  • acoustic levitation

例句与用法

  • The rapid solidification process of pb - sn eutectic alloy is investigated with acoustic levitation and the maximum undercooling of 38k has been achieved
    采用声悬浮无容器处理技术研究了pb - sn共晶合金在深过冷条件下的凝固规律。
  • The main influencing factors for containerless processing , such as the gas medium , gravitational levels , resonance adjustment , and temperature variations are studied
    对材料声悬浮无容器处理过程中的主要影响因素如气体媒质、重力水平、声场调谐以及温度变化等进行了研究。
  • It is found that the levitation force can be remarkably enhanced by choosing optimum value of r or d , and the possibility of this enhancement for spherically curved reflectors is the largest
    发现通过选择最优化的r或d值,可以显著提高声悬浮力,并且谐振模式数越小,反射端截面半径越大,提高的程度就越大。
  • The present thesis has carried out detailed investigation on the rapid solidification of undercooled bulk water and pb - sn binary eutectic alloy with acoustic levitation , and the various factors influencing the achievement of undercooling in sound field have been analyzed
    主要取得了以下几方面的研究成果:研究了5 8mm的大体积水在声悬浮无容器条件下的快速凝固行为。获得了最大为24k的过冷度。
  • Single - axis acoustic levitation of the heaviest solid ( iridium , p = 22 . 6g / cm3 ) and liquid ( mercury , p = 13 . 6g / cm3 ) on the earth is achieved by greatly enhancing both the levitation force and stability through optimizing the geometric parameters of the self - developed single - axis acoustic levitator . this indicates that all the solids and liquids can be acoustically levitated on the earth in principle
    对自行研制的单轴式声悬浮器进行了优化设计,极大地提高了悬浮力和悬浮稳定性,首次悬浮起自然界中密度最大的固体铱( i - r ,密度22 . 6g cm ~ 3 )和液体汞( hg ,密度13 . 6g cm ~ 3 ) 。
  • A two - cylinder model for saal incorporating bem simulations is proposed , which introduces a factor concerning the geometric parameters of the levitator into the expressions for the time - averaged potential u , acoustic radiation force f , and restoring force constant ki , respectively , and builds up the relationship between the levitation capabilities and the geometric parameters of a single - axis acoustic levitator
    建立了单轴式声悬浮的优化设计理论模型,采用边界元方法求解入射声场,在表征声悬浮性能的时间平均势u 、声辐射力f _ i和回复力常数_ i的表达式中分别引入了一个涉及悬浮器几何参数的因子。
  • The advantage of al is its applicability to non - conducting substances and also to low - melting - point metallic materials . due to the fact that the levitation capability of single - axis acoustic levitation ( saal ) is comparatively weak and its applications are mainly limited to low - density substances , this paper aims at enhancing the levitation capability of saal and realizing the containerless solidification of those materials with low melting temperature and high density
    本文针对当前单轴式声悬浮能力较弱,而且主要应用于低密度材料无容器处理的研究现状,以提高声悬浮能力、实现低熔点高密度材料的声悬浮无容器凝固为主线,采用理论和实验相结合的方法,对单轴式声悬浮过程及其主要影响因素进行了较为系统、深入的研究,主要取得以下几方面的研究结果。
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