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1)  Network ferrite
网状铁素体
2)  acicular ferrite
针状铁素体
1.
Thermodynamic analysis on intermediate transformation mechanism of acicular ferrite in welds;
焊缝针状铁素体中温转变机制的热力学分析
2.
Effects of nonmetallic inclusions on acicular ferrite nucleation in deposited metals of microalloyed steel;
夹杂物对微合金钢熔敷金属针状铁素体形核的影响
3.
Thermodynamic analysis of pre-eutectoid transition of acicular ferrite in carbon-depleted regions of austenite in Fe-C-X alloys;
Fe-C-X系合金针状铁素体在奥氏体贫碳区先共析转变的热力学分析
3)  piece ferrite
块状铁素体
4)  ferrite band
条状铁素体
1.
From the results of the analysis on chemical composition, microstructure and morphology of crack fracture of the raw tube, it was observed that cracks were mainly related to the ferrite band and chain-like inclusion of titanium nitride present in the raw tube.
奥氏体不锈钢管坯在切割过程中发生分层开裂,对该管坯进行化学成分、微观组织及裂纹断口形貌的分析表明,管坯的开裂主要与条状铁素体和链状氮化钛夹杂有关。
5)  ferritic state
铁素体状态
1.
Nitrocarburizing,sulfo-nitrocarburizing and sulfo-nitrocarbo-oxidazating processes under steel ferritic state at the temperature below 600℃ can markedly enhance the hardness,wear resistance,fatique strength and the anti-corrosion ability of steel parts,and thereby prolong their service life.
在600℃以下钢的铁素体状态施行氮碳、硫氮碳、硫氮碳氧共渗可以显著提高钢件表面硬度,提高耐磨性、疲劳强度和抗腐蚀减摩能力,从而延长其服役寿命。
6)  chain-like ferrite
链状铁素体
补充资料:低温铁素体钢
分子式:
CAS号:

性质:适合低温(273~153K)使用的低合金铁素体钢。它们在脆性转变温度以上使用。可为三类:(1)低碳-锰钢,如233K用钢16Mn属于此类;(2)低镍钢,在233~213K用0.5%Ni钢;当温度降至193~183K时,用2.25%Ni钢,或含锰的1.5%Ni钢;(3)无镍铬低温铁素体钢,主要有203K用钢09Mn2V及09MnTiCuRE,183K用钢06MnNb,153K用钢06AlCu和06AlNbCuN。低温铁素体钢主要用于液体丙烷与丙烯、液氨等液化气的储存及输送装置,寒冷地区野外作业的设备和工程结构以及一些冷冻设备等。

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