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空心微球的英文

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"空心微球"怎么读用"空心微球"造句

英文翻译手机手机版

  • tiny balloon

例句与用法

  • The process of heat - treatment showed m - type ferrite was straightly formed from metal oxide without the transition of spinel phase
    实验结果表明:该方法制备的空心微球粒径分布较广,主要在4 20 m之间,平均密度在2 . 50g cm ~ 3左右。
  • In this thesis , the structure and basic characteristic of hexagonal ferrite absorbent were summarized , and popular methods to prepare ultrafine ferrite particles and hollow microspheres were introduced . hexagonal ferrite hollow microspheres were prepared by flame powders spraying technique and flame suspending solution spraying technique
    本文较为系统地概述了六角晶系铁氧体吸收剂的结构和基本特性;介绍了当前铁氧体超微粉末及空心微球的主要制备方法;用氧乙炔火焰粉末喷雾技术与等离子火焰溶液喷雾技术制备了六角晶系铁氧体空心微球,对其结构和性能进行了一系列的探讨工作。
  • The formation process of w - type ferrite underwent from oxide of metal , the m - type transition phase to final w - phase . when the heating rate was 5 / min , at 900 for 3 hrs and 1200 for 4 hrs , pure m - type and w - type ferrites were formed in air respectively . with heat treatment temperature increasing , crystal structure was more intact , the saturation magnetization increased and the coercive force decreased
    热处理过程表明, m型铁氧体直接由金属氧化物反应形成,未经历尖晶石中间相; w型铁氧体形成由金属氧化物到m相过渡相最终向w相的转变;当升温速率为5 min ,温度在900 ,保温3小时和1200保温4小时,就分别形成单相m相和w相铁氧体;随着热处理温度的升高和保温时间的延长,衍射峰变尖锐,结晶更完整,空心微球的饱和磁化强度增大,矫顽力减小。
  • With heat treatment temperature increasing , the complex permittivity of w - type ferrite hollow microspheres decreased ; " firstly increased and then decreased , increased and there was an obvious resonance peak ; the complex permittivity ? of m - type ferrite hollow microspheres increased ; " increased , " was basically unchangeable
    随热处理温度的升高, w型铁氧体空心微球的介电常数降低;磁导率实部先增加后减少,虚部增加并出现明显的共振峰; m型铁氧体空心微球的介电常数增加,磁导率实部增加,虚部变化不明显。
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