块状相变动力学及相变产物的形态决定于相界结构。
Kinetics and the morphology of the product phase of the massive transformation are determined by the structure of interphase boundaries.
研究了应力对45钢珠光体相变动力学及相变塑性的影响。
The influence of applied stress on the transformation kinetics and transformation plasticity during pearlite transformation of 45 steel has been studied.
利用该模型已经对许多先进镍基合金的相变动力学进行了模拟研究。
Using this model, the simulation investigations have been made on the phase transition kinetics of many advanced nickel-based alloys.
最后讨论了相变动力学中决定新相形成、生长的成核过程和结团过程。
Finally, the nucleation and clustering processes in phase transition dynamics which determine the formation of the new phase and its growth are also discussed shortly.
用XRD、IR、DSC等方法对其结构、贮能性能及相变动力学进行了研究。
Its structure, phase change kinetics and the performance of energy storage were analyzed by XRD, IR and DSC methods.
研究了奥氏体相塑性变形和保温温度对相变动力学以及铁素体晶粒尺寸的影响。
In this study, the effects of plasticdeformation of the austenite phase and the holding temperature on thetransformation kinetics and the ferrite grain size are investigated.
研究了弦宇宙中的相变动力学模型,分析了极早期宇宙中的超弦相变和QCD相变。
The dynamic model of phase transition in string cosmology is studied in this paper. The superstring phase transition and QCD phase transition in early universe are analysed.
根据结晶及相变动力学理论,建立了预测球墨铸铁件铸态组织及机械性能的数学模型。
Mathematical model of the microstructure as well as the mechanical properties of spheroidal graphite iron casting was researched on the basis of solidification and thermodynamics theories.
以相变动力学为基础,研究了奥氏体向铁素体、珠光体和贝氏体转变的温度和相变体积分数的计算方法。
On the basis of transformation kinetics, the transformation of austenite to ferrite, austenite to pearlite, austenite to bainite was investigated.
而含碳合金,相变驱动力不是相变动力学的主要控制因素,从一个侧面支持了溶质类拖曳(SDLE)理论。
The result is considered to be in accordance with what is prodicted by the solute drag-like effect (SDLE) theory on the transformation kinetics.
而含碳合金,相变驱动力不是相变动力学的主要控制因素,从一个侧面支持了溶质类拖曳(SDLE)理论。
The result is considered to be in accordance with what is prodicted by the solute drag-like effect (SDLE) theory on the transformation kinetics.
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