1、

Test results show that the carbide can be precipitated and grown isothermally from high-temperature austenite on carburization. The formation of massive carbide under ordinary carburizing conditions is the result of accumulative growth and its mean diameter is proportional to the cubic root of time.

试验结果表明,渗碳时碳化物可以直接从高温奥氏体中恒温析出和长大,一般渗破条件下形成的块状碳化物是集聚式长大的结果,其平均半径和时间的1/3次方成正比。

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2、

Through comparing the valence electron structure in austenitic crystal cell among all kinds of alloys, the strong covalent bond of austenitic crystal cell valence electron structure is thought as a main factor to influence the stability of austenite.

对各种合金奥氏体晶胞价电子结构进行比较后,认为影响合金奥氏体稳定性的主要因素是奥氏体晶胞价电子结构的强共价键。

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3、

The microstructures of duplex stainless steels consist of ferrite and austenite in approximately equal amounts.

双相不锈钢的显微组织是由奥氏体和铁素体组成,两相大约各占一半.

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4、

In this paper The hardness of grey iron is related to the amount and fineness of pearlite in the matrix, and is effected to a great extent by the amount of primary austenite and its eutectoid structure.

结果表明,灰铸铁的硬度不仅与基体中珠光体的含量和细化程度有关,而且在很大程度上还取决于铸铁结晶过程中初生奥氏体量及其共析转变的结果。

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5、

The pre eutectoid ferrite transformation initiated at the original austenite grain boundaries and formed a net structure.

先共析铁素体沿原始奥氏体晶粒边界生长,形成网状结构。

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6、

The results show that the microstructure of the steel obtained after cooling is proeutectoid ferrite, eutectoid ferrite from the austenite, a little carbide-free bainite, granular bainite and martensite.

结果表明,该钢在冷却过程中组织均为未溶的先共析铁素体、从奥氏体中析出的共析铁素体、少量的无碳化物贝氏体、粒状贝氏体和马氏体。

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7、

When the deformation temperature is lower than 950 ℃, the precipitation of VCN takes place in the austenite.

在热变形温度小于950℃的条件下,在奥氏体区析出VCN。

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8、

The Behaviour of Austenite Grain Growth and the Effect of Stress on it in 18% Ni ( 350 KSi) Maraging Steel

18%Ni(350KSi)马氏体时效钢晶粒长大行为及应力对它的影响

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9、

Results show that none of KRC, LFG/ MD and X-K models can be employed to establish the thermodynamic criterion for the spinodal decomposition in austenite and ferrite ( martensite) in steels.

首次表明KRC、LFG/MD以及X-K模型均不能用来建立奥氏体与马氏体中是否发生Spinodal分解的热力学判据。

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10、

The analysis of the structure and break of the minor diameter cast iron bars shows that developed primary austenite dendrites distribute in framework; With the high-power electron microscope to observe the D-type graphite between dendrites, the graphite is approximately worm-shaped or coral-shaped.

对小直径铸铁型材的组织及断裂行为分析表明:发达的初生奥氏体枝晶呈框架结构分布;枝晶间的D型石墨在高倍电镜下观察石墨的形状近似呈蠕虫状或珊瑚状。

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11、

The corrosion behavior of austenite stainless steel weld joint in the different acidic medium was studied.

研究了奥氏体不锈钢焊接接头在不同酸性介质中的腐蚀行为.

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12、

Serious mischcrystal and extremely coarse austenite grains lead to the production of this kind abnormal structure.

产生这种组织的主要原因是50车轴钢锻造后混晶现象严重及存在特别粗大晶粒.

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13、

The martensitic transformation of retained austenite particles in an intercritically annealed low-alloy steel has been studied using the acoustic emission technique.

用声发射法研究了一种低合金钢于双相区热处理所得残余奥氏体的马氏体相变。

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14、

The influence of anomalous scattering on austenite determination in steel by X-ray diffraction method was investigated.

研究了异常散射校正对 X 射线测定钢中残余奥氏体含量的影响.

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15、

The micro structure of deposited metal is composed of martensite, residual austenite and carbide hard phase.

堆焊层组织为马氏体+残余奥氏体+碳化物硬质相.

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16、

The process investigation on hybrid YAG-MAG laser arc welding of austenite stainless steel is systematically developed.

针对奥氏体不锈钢材料,系统地开展了YAG-MAG激光电弧复合焊工艺研究.

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17、

The decomposition and transformation of the retained austenite in bainite differ from that in martensite.

贝氏体中的残余奥氏体分解和转变的行为与马氏体中的不同.

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18、

The deformation induced martensite in metastable austenite stainless steels affects their physical and chemical properties.

亚稳奥氏体不锈钢冷变形后产生形变诱发马氏体,影响其物理和化学性能.

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19、

Spheroidal austenite and acicular austenite can be seen during the austenitizing courses at low speed.

慢速加热奥氏体化过程中,观察到球状奥氏体和针状奥氏体.

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20、

At the same time , effects of rolling temperature and deformed amount on austenite grain size mill.

在轧制温度一定时,变形量和钛含量增加,奥氏体晶粒尺寸减小.

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