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1)  continuous cooling transformation
连续冷却相变
1.
A continuous cooling transformation diagram (CCT) of steel 10MnMoNiNb reduced by 50 % at 800 ℃ was constructed using dilatometric method on a Gleeble 1500 thermomechanical testing system, along with optical microscope and TEM.
在Gleeble1500热模拟机上,利用热膨胀法建立了10MnMoNiNb钢在800℃变形50%后的连续冷却相变曲线(动态CCT曲线),并采用光学金相和TEM方法分析了在不同冷速条件下,形变奥氏体的相变产物。
2.
The continuous cooling transformation(CCT) behaviors of this steel were investigated in the undeformed and deformed(the thermomechanical processing schedule was consistent with laboratorial processing) conditions,respectively,and the corresponding static(without hot deformation) and dynamic(with hot deformation) CCT diagrams were constructed.
在Gleeble-1500热模拟试验机上进行铆螺钢的热模拟实验,通过研究其不变形条件下和与实验室轧机轧制变形量相一致的变形条件下的连续冷却相变行为,建立了相应的静态和动态CCT图,通过扫描电镜(SEM)对其组织进行观测。
2)  continuous cooling transformation diagram, CCT-diagram
连续冷却相变图; CCT图
3)  continuous cooling transformation
连续冷却转变
1.
Study on continuous cooling transformation of dual phase steel with 0.06C-0.6Si-1.5Mn-0.6Cr;
0.06C-0.6Si-1.5Mn-0.6Cr双相钢的连续冷却转变
2.
Study on continuous cooling transformation behavior of hot deformed austenite in V-Ti microalloyed steel;
V-Ti钢热变形奥氏体的连续冷却转变行为
3.
Continuous Cooling Transformation of Ultra-High Strength Steel 25CrNiWVA and 30CrNiWVA;
超高强度钢25CrNiWVA和30CrNiWVA的连续冷却转变
4)  CCT
连续冷却转变
1.
The continuous cooling transformation (CCT) diagram for hot deformed austenite of the Mn\|B bainitic non\|quench\|tempering steel SBL has been studied and obtained.
研究获得了Mn B系低碳贝氏体型非调质钢SBL热变形奥氏体的连续冷却转变曲线。
2.
The continuous cooling transformation of hot deformed austenite for a Mn B microalloyed bainitic engineering steel was studied, and the CCT diagram had been obtained as well.
研究了一种Mn-B系低碳贝氏体型非调质钢热变形奥氏体的连续冷却转变,得到了实验用钢热变形奥氏体的连续冷却转变曲线。
3.
The paper deals with the continuous cooling transformation of deformed and undeformed austenite for SBL microalloyed engineering steel, and the CCT diagram has been obtained as well.
研究了SBL 非调质钢奥氏体连续冷却转变,获得了试验用钢形变与未形变奥氏体的连续冷却转变曲线。
5)  Continuous cooling transformation diagram
连续冷却转变图
6)  continuous cooling
连续冷却
1.
Effect of Austenitic State on Continuous Cooling Transformation Structure of Mn-Cr Gear Steel;
奥氏体状态对Mn-Cr齿轮钢连续冷却相变组织的影响
2.
Precipitation study of gamma prime in continuous cooling process of FGH95 superalloy;
FGH95合金连续冷却条件下γ′相析出过程的研究
3.
Precipitation behavior of Cu in Fe-2.0Cu alloy during continuous cooling process
Fe-2.0Cu合金连续冷却过程中Cu的析出行为
补充资料:连续相变
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性质:大多是发生在极低温度时的相变。例如,在居里点铁磁体转变为顺磁体,在零磁场下超导体转变为正常导体,液态氦Ⅱ与液态氦Ⅰ之间的λ相变等。二级相变的特点是,两相的化学势和化学势的一级偏微商相等,但化学势的二级偏微商不相等。因此在相变时没有体积变化和潜热(即相变热)。在相变点,两相的体积、焓和熵的变化是连续的。故这种相变也称为连续相变(continuous phase transition)。

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