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1)  thermal simulation
热模拟
1.
Hydrocarbon-generating thermal simulation of uranium-bearing minerals;
含铀矿物对烃源岩生烃影响的热模拟研究
2.
Study on microstructure of roll-cast AZ31 magnesium alloy by thermal simulation;
铸轧AZ31镁合金热模拟的微观组织研究
3.
Structure and property of coarse-grained zone in weld of a high strength low alloy 20Mn2WNbB steel studied by thermal simulation;
低合金高强钢20Mn2WNbB焊接热模拟粗晶区组织与性能
2)  hot simulation
热模拟
1.
The hot simulation of continuous annealing was performed on Gleeble-3800.
利用Gleeble-3800热模拟试验机对带钢在80 m/min和120 m/min两种带速条件下的连续退火工艺进行了模拟,采用780、820、860、900℃4种模拟温度。
2.
The process experiments producing HRB400 reinforced bar with low alloy steel are made on the basis of hot simulation.
分析强化元素C和Mn、轧制控冷工艺及魏氏体组织对螺纹钢筋性能的影响,在热模拟实验的基础上进行低合金生产HRB400螺纹钢筋的工艺试验。
3.
The recrystallization rules of the Nb-Ti micro-alloyed C-Mn steel have been researched by the hot simulation tests.
热模拟试验方法研究了Nb -Ti微合金钢的再结晶规律 ,在此基础上制定了合理的炼钢、控轧控冷工艺 ,进行Nb -Ti微合金钢的工业试制。
3)  thermo-simulation
热模拟
1.
The weldability of 3OCrMoVTiAl has been studied in this paper by using manual arc welding, flash butt welding, weld thermo-simulation test and H2S stress corrosion test.
采用手工电弧焊、闪光对焊、焊接热模拟及焊后抗H2S应力腐蚀试验等方法对30CrMoVTiAl的焊接性能进行了研究。
2.
Using the thermo-simulation test and Transmission Electron Microscopy(TEM),the interaction between the microalloyed element Nb and Mo in the precipitates during relaxation after austenite deformation for C-Ti-Mo steel and C-Nb-Mo steel was investigated.
运用热模拟技术和 TEM 分析法,研究了 C-Ti-Mo 和 C-Nb-Mo 两种简单成分钢奥氏体变形后弛豫过程中微合金元素 Nb,Mo 在析出物中的相互作用。
3.
The dynamics curve of continuous cooling transformation of 700 MPa container steel has been determined by means of Gleeble-3800 thermo-simulation experiment machine.
通过Gleeble-3800热模拟试验机测定了700 MPa级集装箱用钢的连续冷却转变动力学曲线(CCT曲线);研究了在不同温度下进行压缩变形、以及变形后冷却到不同的温度区间保温,变形温度和保温温度对钢的组织形态和性能的影响,为生产实践和新工艺的制定提供了参考依据。
4)  thermal modeling
热模拟
1.
Thermal modeling of the tectonic evolution of the southwest subbasin in the South China Sea;
南海西南海盆构造演化的热模拟研究
2.
The thermal modeling of proton exchange membrane fuel cell in present was introduced,and the model related to simulation in the study was described in the article.
介绍了质子交换膜燃料电池(PEMFC)的热问题模拟现状,根据研究问题的需要,对模拟相关的模型进行了描述,并应用计算机模拟技术对质子交换膜燃料电池进行了热模拟
3.
The proton exchange membrane fuel cell (PEMFC) has become the hotspot of new energy resources and power technology development in the twenty-first century because its advantages, such as low noise, zero pollution, without eroding, long lifetime, high power density, high efficiency, safety, stability and so on To research of PEMFC, thermal modeling and software development of PEMFC are the impo.
PEMFC的热模拟及软件开发是质子交换膜燃料电池研究的重要工作。
5)  hot simulation
热态模拟
1.
Natural gas & coal co-gasification to produce synthesis gas in hot simulation;
天然气-煤共气化制备合成气热态模拟
6)  thermal simulation
热态模拟
1.
The control of transition from thermal simulation to esterification feeding;
热态模拟过渡酯化投料的控制
补充资料:热模拟
      研究传热现象的手段之一,主要用于求解热传导问题。导热现象与某些非导热现象可以用同样的数学模式来表示,所以通过对与导热现象相模拟的其他物理问题的求解,可完成对导热问题的求解。最常见的是利用导热现象与导电现象的模拟,称为热的电模拟。这种方法用电压模拟温度,电流模拟热流,电阻模拟热阻,电容模拟热容。模拟法可用于求解含热源的或不含热源的、稳定的或不稳定的导热问题。模拟法也可用于求解对流换热和辐射换热问题,只要把电阻对应于对流换热热阻或辐射热阻即可。利用水力学现象与传热现象的模拟,称为热的水力模拟法。利用各类模拟计算机(电的或气的)也可解决导热问题,这种方法也是一种热模拟,但属于间接模拟性质。
  

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