1) rotational temperature
转动温度
1.
The rotational temperatures were determined using fits to synthetic OH molecular spectra at different time behind shock waves.
通过采用线线合成光谱的方法得到激波后不同时刻高温空气中OH分子的转动温度。
2.
The rotational temperature exists the maximal value in the central position and decreases along radial direction.
通过线阵式光纤光谱仪测量N2+第一负带系(B2→X2)的(0,0)带振转谱线和N2的第二正带系(C3∏u→B3∏g)的顺序带组,分别利用玻尔兹曼图解法和斜率法,得到等离子体的转动温度以及振动温度径向和轴向的二维空间分布。
2) Molecular Rotational Temperature
分子转动温度
3) characteristic temperature of vibration
转动特征温度
4) rotary thermometer
转动式温度计
5) transition temperature
转变温度
1.
Experimental study on partial glass transition temperature of beef;
牛肉部分玻璃化转变温度研究
2.
Thermal expansion coefficient α, transition temperature T_g and softening temperature T_f are calculated.
测定了玻璃的热膨胀曲线,计算了样品的热膨胀系数α,转变温度Tg和软化温度Tf。
3.
The unification for the four toughnesses defined as ductile-to-brittle transition temperature region could be reali.
发现四项韧性指标的延脆转变温度可以通过各材料的屈服强度对温度和加载速率的依赖而统一起来,各韧性的延脆转变现象均由局部解理条件所控制,为简化工程材料抗断性能的评定和断裂理论研究的深入提供了可能。
6) transformation temperature
转变温度
1.
The influence of isothermal transformation temperature of under cooled austenite on the morphology and degenerate degree of pearlite in 16Mn steel has been studied with scan electron microscope S250KMⅢ and image analyzer IBAS2000.
利用 S2 5 0 KM 扫描电子显微镜和 IBAS2 0 0 0真彩色全自动图像分析仪研究了过冷奥氏体等温转变温度对具有不同碳含量和奥氏体晶粒尺寸的 16 Mn钢珠光体形貌和退化程度的影响 ,探讨了珠光体的退化机制 ,并提出促进控冷时珠光体均匀且充分退化的工艺措
2.
series of powders of heat treatment under different temperature are studied by XRD,the result shows that the transformation temperature which the nanocrystalline TiO 2 powders are obtained by Sol Gel Method is related to gel time.
用X射线粉末衍射 (XRD)对不同温度热处理的系列粉末进行了研究 ,结果表明用溶胶 -凝胶法制备的TiO2 纳米晶其晶型转变温度与凝胶时间有
3.
The result shows when Al 2O 3 is introduced, the glass density falls, the IR transmission is deteriorated, but the transformation temperature rises.
结果表明 ,在碲铌铅玻璃中掺入Al2 O3后 ,玻璃的密度和红外透过性能有所降低 ,玻璃转变温度升高 ,但此举并不改变其它组分对其性能变化趋势的影响 。
补充资料:铂电阻温度表(见电阻温度表)
铂电阻温度表(见电阻温度表)
表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条