1、

Furthermore, precipitate of Nb in deformed austenite is more helpful for DEFT.

Nb对变形奥氏体再结晶的显著抑制作用十分有利于DIFT,同时, Nb的碳氮化物析出对DIFT是十分有益的.

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2、

A new type of austenite hot working die steel added copper is presented in this paper.

提出了一种新型的含铜奥氏体热作模具钢.

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4、

Effect of residual austenite on mechanical properties and abrasion resistance medium Mn white iron was investigated.

研究了残余奥氏体对中锰白口铸铁力学性能和抗磨性的影响.

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5、

The failure of grid plate made of casting austenite heat resistant steel was analyzed.

分析了铸造奥氏体耐热钢篦板失效原因.

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6、

Melting Residual Stress is the main factor Causing Stress erosion damage on Austenite Rustless Steel's Structures.

焊接残余应力是奥氏体不锈钢发生应力腐蚀破坏的重要因素.

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7、

AlN precipitation at the full austenite grain boundary would worsen the ductility of the steels.

在奥氏体单相区,由于氮化铝的析出导致钢种的塑性恶化.

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8、

A new way to fine steel structure has been developed. It is the austenite-ferrite-repeating deformation.

提出了细化金属组织的一种新方法,即奥氏体 — 铁素体区循环形变.

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9、

Other than austenite, copper element dissolution is found in material.

母材区除了奥氏体组织外, 存在铜元素的扩散.

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10、

The material quality is ASTM A 743 M ( ZG 00 Cr 13 Ni 4 Mo ) the austenite stainless steel.

材质均为ASTMA743M ( ZG00Cr13Ni4Mo ) 奥氏体不锈钢. 由于其一,它们的形状所致,在加工制造中给工件的装夹和翻身带来很大的难度.

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11、

The interface of austenite and martensite is somewhat straight.

奥氏体和马氏体之间的界面为较平直的界面.

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12、

The induced martensite firstly nucleated in parent austenite intergranular and twin boundary.

应力诱发的马氏体首先在原奥氏体的晶界和孪晶界形核.

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13、

There occours needle-type or M-type martensite precipitation within retained austenite.

残余奥氏体内有针状或“M”型马氏体析出.

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14、

A simplified model of isothermal austenite grain growth has been developed.

在分析现有描述奥氏体晶粒长大模型的基础上,提出一简化模型.

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15、

These lath martensite first nucleates in parent austenite intergranular and twin boundary.

应变诱发马氏体首先在原奥氏体晶界和孪晶界形核.

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16、

The micro cracks in matrix propagate along the bainitic ferrite austenite interface. The crack deflection or branching is occurred due to the different orientation of bainitic ferrite.

基体中的裂纹多数是沿贝氏体铁素体-奥氏体界面扩展,不同取向的基体组织可使裂纹偏转或分叉;

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17、

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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18、

The dendritic crystal grains of primary austenite were spheroidized and fined significantly after the alloy slurry flowed through the cooling slope plate.

合金液经倾斜板处理后枝晶状先共晶奥氏体得到了明显细化、球化。

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19、

In this work, xW is about 11 times of the original austenite grains.

在本研究中, xW约 为原始奥氏体晶粒大小的11倍.

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20、

A nonmagnetic allotrope of iron that is the basis of austenite; stable between 906 and 1403 degrees centigrade.

无磁性的铁的同素异形体,奥氏体的主要成分,在摄氏度之间保持稳定。

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