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加热段的英文

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"加热段"怎么读用"加热段"造句

英文翻译手机手机版

  • bringing-up section
  • heat up section
  • heating coil section
  • heating section
  • heating zone
  • tonnage zone

例句与用法

  • No . of heating section of machine barrel
    机筒加热段
  • No . of heating section of mold head
    模头加热段
  • Selective heating zone ( 8 , 10 , 12zones ) allow wide variation of profile settings
    选择性的加热段( 8 、 10和12温区)为外形设置的变化提供很大空间
  • Double - deck stainless steel inner in heating section , and automatic radiator system fitting in sloww - cooling sect
    加热段双层不锈钢内胆,缓冷段有自动散热系统装置。
  • The proper temperature setting differs depending on type of resin material , but it must be abide by a rule that temperature setting should diminish in step 10 . c from nozzle to feeding resin material position
    加热段温度设定必须按照产品所使用的原料的不同而不同,但却必须遵循一个这样的规则,即由射口筒到进科段温度是逐步递减的.且递减温度是以10 .度为单位
  • In this model , the velocity was controlled below50 m / s so that it is easy that the temperature of outlet propellant exceeds 1000k . by the measure of advancing the melting point of metal panel to 3000k , the temperature of outlet propellant even could be close to the very high temperature of the metal panel . it is very active to improve the capability of the whole propulsion system
    在本文模型中,将管道内工质的流速控制在50m / s ,热交换器的出口工质温度就能够提升至1000k以上;提高换热器高温加热段的金属平板熔点到3000k以上,完全可以将工质出口温度提升至接近金属平板的温度,这样可以大幅度提高推进系统的性能。
  • Two heat - pipe with the same construction are produced by the special and common working fluid . during the experiment , the comparison of temperature distribution starting speed and transmit heat speed are tested , the effect of different heat length is observed at the same time . through compared and analyzed results of the test , its heat - transfer performance is known initially
    本文首先对这种未知物性的特殊工质进行了实验研究,把特殊工质和一种以知物性的普通工质制成两根结构相同的热管,在同样条件下进行温度分布、启动和传热速率等性能对比实验,同时观察了不同加热段通过实验结果的对比和分析,对这种特殊工质的传热性能有了初步了解。
  • What ' s more , the theory analysis and experiment research on the performances and applications of the components of inorganic heat transfer are also carried out . in the second , the paper carries out an application research on this technology in the field of waste heat recovery , especially on the structure of equipment and the efficiency of heat recovery
    理论分析和实验表明,无机传热元件具有奇特的传热性能和效果;无机传热元件加热段的长度对加热段的平均换热系数有明显的影响,加热段长度越短,换热系数越高;无机传热元件的工质充填量仅为碳钢-水热管的1 / 10左右,其具有的传热性能却优于碳钢-水热管。
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