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1)  defomation measurement
基板温度测量
2)  substrate temperature
基板温度
1.
Effect of substrate temperature on the structure and properties of SnO_2∶Sb films;
基板温度对SnO_2:Sb薄膜结构和性能的影响
2.
The influence of substrate temperature,substrate conveying speed and the flow rate of N2 on the structure and properties of the films was investigated.
研究了基板温度、基板输送速度和氮气流量对ATO薄膜结构和性能的影响。
3.
Kinetic Monte Carlo method was applied to simulate the relationship between substrate temperature and the microstructure of the thin film fabricated by means of physical vapor deposition(PVD),and its surface topography was studied by fractal theory.
采用动态蒙特卡罗(KMC)方法研究物理气相沉积(PVD)制备薄膜过程中基板温度对薄膜微观结构的影响,并用分维理论研究薄膜表面的复杂程度。
3)  temperature measurement
温度测量
1.
Estimation of heat source term in three-dimensional heat conduction problem from temperature measurements;
利用温度测量结果反演三维热传导问题中热源项的算法研究(英文)
2.
Linear temperature measurement device of thermocouple;
热电偶线性温度测量装置
3.
The application of chaos theory in the temperature measurement;
混沌在温度测量中的应用
4)  temperature measure
温度测量
1.
Design of temperature measure circuit based on XTR101;
基于XTR101的温度测量电路设计
2.
Technology of multi-temperature measure based on single bus;
基于单总线的多点温度测量技术
3.
The Circuit System Design and Study on Temperature Measurement for Microwave Hyperthermia Apparatus;
微波治疗仪电路设计与温度测量研究
5)  temperature measuring
温度测量
1.
Thermal-resistor temperature measuring device based on current method;
基于电流法的热电阻温度测量装置
2.
EMC for temperature measuring in atrocious electromagnetic field;
恶劣电磁环境下温度测量的抗干扰
3.
this article show the research and application of intellectualized temperature measuring instrument based on K-thermocouple which is used in cocoon cooking process.
探讨了以K型热电偶为测温传感器的智能化温度测量仪在煮茧方面的应用。
6)  Measurement of Temperature
温度测量
1.
The research about acoustoelectric effect on the frozen soil model with a simulative frost-thawing interface be concerned in three measurement task: measurement of temperature, ultrasonic measurement, acoustoelectric measurement.
对于温度测量,从测量范围、测量误差以及灵敏度综合考虑,选择铂热电阻作为模拟冻融界面冻土模型测温装置的温度传感器。
补充资料:表面温度测量


表面温度测量
surface temperature measurement

  bia以1,ian功旧ndu celiang表面温度测t(s urface temperatu二~uI’e-~t)指固体表面温度测量、两固相界面温度测量和液体表面温度测量等。广泛应用于冶金、石油化工、机械加工、生物医疗工程、航空航天等领域。主要特点是受传热面边界条件影响大,误差主要来源于测温元件供散热不平衡和接触热阻。另外,在辐射测温时,非黑体辐射的影响和气体吸收的影响也会给测量带来误差。表面温度测量可分为表面接触测量和非接触测量。表面接触测量中,被测物体表面和温度计相接触,由于破坏了表面温场,引人接触热阻,故误差相对较大。主要分为便携式表面温度计和固定式表面温度计,热敏元件常用热偶式或热阻式。非接触测量由于温度计和被测物体表面不接触,不改变物体表面温场,所以测量精度较高,而且可以测量运动物体的表面温度。主要分为辐射测温法、光纤测温法、电涡流测温法和感应测温法。(王磊)
  
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