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1)  thermomechanical age hardening
形变时效硬化
2)  strain age-hardening
应变时效硬化<冶>
3)  strain-age hardening
应变时效硬化
4)  age hardening
时效硬化
1.
The effect of yttrium on as-cast structure and age hardening of the magnesium alloy Mg-9Al-1Zn were investigated.
研究了稀土元素钇 (Y)对Mg 9Al 1Zn合金铸态组织及时效硬化特性的影响。
2.
The characteristics of a new generation of Cu age hardening steel for naval structures are investigated in this paper.
铜的时效硬化是该钢最显著的特点之一。
3.
ST5”BZ]The age hardening of spray deposited Cu-15Ni-8Sn alloy has been investigated by means of hardness measurement,optical microscope,X-ray diffraction and transmission electron microscope.
采用硬度测量、光学显微镜、X射线衍射及透射电镜 (TEM)等试验方法 ,研究了喷射成形Cu 1 5Ni 8Sn合金的时效硬化。
5)  age-hardening
时效硬化
1.
Cr-Mn-W-Mo-V age-hardening alloys were fabricated by hardfacing.
采用堆焊方法制备了Cr-Mn-W-Mo-V时效硬化合金,研究了合金元素含量对其时效硬度的影响。
2.
The results indicated that there almost was no difference between Al-Cu-Sc alloy and Al-Cu alloy in age-hardening curves at the temperature below 200 ℃.
3%Sc合金在150、200、250、300、350、400℃的时效硬化和析出行为。
3.
The effect of scandium on the age-hardening behavior of Al-Li alloy was investigated by measuring the Vickers hardness of Al-Li alloys with and without scandium aged at 190℃ for different time and observing the precipitation of strengthening phases in the alloys using transmission electron microscope.
通过对190℃时效不同时间的含钪和不含钪Al Li合金维氏硬度测量和合金中强化相析出行为的透射电镜观察,研究了钪对铝锂合金时效硬化行为的影响。
6)  aging hardening
时效硬化
1.
Research progress of aging hardening model for aluminum alloy;
铝合金时效硬化模型的研究进展
2.
Effect of Ni and Mn on solidified microstructure and aging hardening of Al-Si-Cu-Mg alloy;
镍和锰对Al-Si-Cu-Mg合金凝固组织及时效硬化的影响
3.
An obvious aging hardening in alloys occurs when aging is about 2h,then the hardness decreases sharply.
合金在时效初期(2h左右)出现了一次明显的时效硬化峰,之后硬度急剧下降;在10h左右又出现小幅二次硬化现象,随着时效时间的增加,材料不断软化。
补充资料:时效硬化合金钢
分子式:
CAS号:

性质:凡通过时效热处理可提高硬度的合金钢,均称之为时效硬化合金钢,均称之为时效硬化合金钢。典型钢种有马氏体时效钢和沉淀硬化不锈钢。前者的基本成分为含碳≤0.03%和镍18%~25%,并添加有各种能产生时效硬化的合金元素,它主要用于飞机上的某些部件、火箭发动机外壳等,也用于压铸模具等方面。沉淀硬化不锈钢又分为奥氏体-马氏体沉淀硬化不锈钢和马氏体沉淀硬化不锈钢。奥氏体-马氏体沉淀硬化不锈钢可用作飞机机体的薄壁结构、蜂窝结构,还可作燃料储箱、火箭发动机外壳、高压容器等。马氏体沉淀硬化不锈钢可耐大气、水以及其他一些介质腐蚀,用于制造液体火箭壳体和核动力装置中的某些零件。

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