2) cycle method of temperature and pressure (CMTP)
升降温度压力循环法
1.
Exposure phenomen a of X-ray film were found in the cycle method of temperature and pressure (CMTP).
使用气体升降温度压力循环法观测到了X光胶片感光现象,并初步弄清了感光原因。
3) calefacient approach
升温法
1.
The calefacient approach qua a method of simulating exerting pre-stress to CFRP sheets has been put forward.
详细介绍了预应力加固混凝土受弯构件中预应力在非线性有限元分析中的模拟方法,以预应力碳纤维布加固混凝土梁为例,采用ANSYS有限元分析软件,对其进行仿真分析,提出了升温法作为模拟对碳纤维布施加预应力的方法,并详细介绍了采用升温法的原理及具体模拟过程。
4) Rabbits Method
升温度法
5) temperature
[英]['temprətʃə(r)] [美]['tɛmprətʃɚ]
环境温度
1.
Effects of Environmental Temperature and Photoperiodic Changes on Calling Behaviour of Chihuo zao Yang;
环境温度和光周期对枣尺蛾求偶行为的影响
2.
Based on investigating theoretically and experimentally,the relationship,in the paper,between the size of materials and the drying environmental temperature and WAAEM has been studied.
通过实验和理论分析,研究了被干燥物料的偏差活化能随其几何尺寸变化的规律,以及相同几何尺寸时偏差活化能随干燥环境温度变化的关系。
3.
Experiments on strain pseudoelastic property of shape memory alloy(SMA) were carried out and the Influence of temperature,cyclic number and loading frequency on pseudoelastic property of SMA were investigated.
对形状记忆合金(Shape Memory Alloy,简称SMA)的超弹性特性进行了试验研究,得到了SMA的超弹性特性随环境温度、循环加载圈数以及加载频率等因素的变化规律,为进一步开发SMA被动阻尼器奠定了基础。
6) lower temperature environment
低温环境
1.
Common problems of grain measuring in flue gas of fixture polluting source in lower temperature environment and its countermeasure;
低温环境下固定污染源烟气中颗粒物测定常见的问题与对策
2.
This paper researches and solves the problems in the operation of FILTER system in lower temperature environment, and analyzes the relations among the permeability of water in soil, the ice layer and air temperature in the operation of FILTER sewage treatment system in the experimental area of Yanggao County.
研究和解决FILTER系统在低温环境下运行中的问题,分析了FILTER污水处理系统在阳高县试验区下运行时,土壤中水的渗透率、冰层与气温之间的关系。
补充资料:程序升温色谱法
分子式:
CAS号:
性质:一种不同于恒温色谱法的重要的辅助操作技术,主要应用于气相色谱法。在一次样品分析的时间周期内,色谱柱温度随分析时间的延长呈线性或非线性地升高,使样品中各组分完全分离。实现分离度和分析速度的优化。
CAS号:
性质:一种不同于恒温色谱法的重要的辅助操作技术,主要应用于气相色谱法。在一次样品分析的时间周期内,色谱柱温度随分析时间的延长呈线性或非线性地升高,使样品中各组分完全分离。实现分离度和分析速度的优化。
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