马氏体(隐晶),martensite(crypto-crystal)
1)martensite(crypto-crystal)马氏体(隐晶)
2)cryptocrystalline martensite隐晶马氏体
3)Acicular martensite隐针马氏体
4)martensitic twin马氏体孪晶
1.The Ni-Mn-Ga crystal growth direction is along [100] with the deviation less than 5° The martensitic twins reorientation process was detected by the stress-strain curves.沿单晶试样的3个边分别进行压缩实验,研究马氏体孪晶再取向应力应变行为。
5)martensite ce马氏体晶胞
6)twin martensite孪晶马氏体
1.Lowering the cooling rate leads to the decrease of the plasticity, fracture toughness and corrosion resisence of the back material, mainly due to the increase of twin martensites(including those existing in lathmartensites) after quehching.降低淬火冷却速率,使背部材料塑性以及抗疲劳性能有一定的下降,这主要是由于淬火后孪晶马氏体(含板条内微孪晶马氏体)量有所增加,回火后,使孪晶马氏体发生退化产生脆性片状碳化物,进一步增加了回火脆
英文短句/例句

1.The main cause of low impact toughness is that following the long cooling time, the structure becomes coarsing and appears corse-grained twin-mastensite.冷却时间长,显微组织粗化,出现粗大孪晶马氏体,这是影响韧性低的主要原因。
2.Research on the Mechanism of the Twin Boundary Motion of Ni-Mn-Ga Single Crystals and the Simulation of Stress-induced Martensitic Transformation;单晶Ni-Mn-Ga孪晶界迁动机制研究及应力诱发马氏体相变模拟
3.The EDP Characteristics of Martensite Twin Substructure in High Carbon Steel高碳钢马氏体中孪晶亚结构的电子衍射花样特征
4.Refinement mechanism of twins in austenitic stainless steel by equal channel angular pressing等通道挤压变形奥氏体不锈钢中孪晶细化机理
5.Formed by the process of twinning. Used of crystals.孪晶由孪晶过程形成的。用于晶体
6.THE EFFECT OF PRIOR AUSTENITIC GRAIN BOUNDARIES ON NUCLEATION OF(225)_γ MARTENSITE IN STEELS钢中原始奥氏体晶界对(225)_γ马氏体形核的影响
7.Aging Behavior and Grains Refining of 3J33 Maraging Steel3J33马氏体时效钢时效行为及晶粒细化
8.Grain Boundary Martensite Formation and Tempering Brittleness at Low Temperature of Steels钢的晶界马氏体形成与低温回火脆性
9.Research on the Grain Ultra-refinement in Austenite by Dynamic Recrystallization and Its Martensitic Transformation;奥氏体动态再结晶晶粒超细化及其马氏体相变研究
10.AFM Observation on Martensitic Surface Relief and Research on Its Crystallography and Morphology;马氏体表面浮凸AFM观察及晶体—形态学研究
11.Two interwoven crystals that are mirror images of each other.孪晶相互为翻版的两个相互交错的晶体
12.ON REDUCTION OF THE HIGH ORDER TWINNING IN FCC STRUCTURE TO A SINGLE ROTATION RELATIONSHIP面心立方晶体高次孪晶化为一次旋转对称关系
13.THE STUDY ON THE NUCLEATION OF MARTENSITIC TRANSFORMATION AND LATH WIDTH NANOMETRE IN STEEL;钢的马氏体相变形核与板条晶宽纳米化研究
14.Research on grain refining of 18% Ni maraging stell hot extrusion tube18%Ni马氏体时效钢热挤压管晶粒细化的研究
15.Molecular dynamics simulation of stress-induced martensitic phase transformation in NiAl应力诱发NiAl单晶马氏体相变的分子动力学模拟
16.Relationship Between Grain Size and Aging Behavior of Co-Free Maraging SteelT250马氏体时效钢晶粒尺寸对时效析出的影响
17.Gross crystalline imperfections like twinning are apparent to the unaided eye.粗的晶体不完整性,如孪生体可用肉眼看出。
18.ELECTRON DIFFRACTION ANALYSIS OF THE TWIN AND HCP PHASE FORMED IN A FCC CRYSTAL面心立方晶体中生成孪晶或六角密堆相的电子衍射分析
相关短句/例句

cryptocrystalline martensite隐晶马氏体
3)Acicular martensite隐针马氏体
4)martensitic twin马氏体孪晶
1.The Ni-Mn-Ga crystal growth direction is along [100] with the deviation less than 5° The martensitic twins reorientation process was detected by the stress-strain curves.沿单晶试样的3个边分别进行压缩实验,研究马氏体孪晶再取向应力应变行为。
5)martensite ce马氏体晶胞
6)twin martensite孪晶马氏体
1.Lowering the cooling rate leads to the decrease of the plasticity, fracture toughness and corrosion resisence of the back material, mainly due to the increase of twin martensites(including those existing in lathmartensites) after quehching.降低淬火冷却速率,使背部材料塑性以及抗疲劳性能有一定的下降,这主要是由于淬火后孪晶马氏体(含板条内微孪晶马氏体)量有所增加,回火后,使孪晶马氏体发生退化产生脆性片状碳化物,进一步增加了回火脆
延伸阅读

马氏体分子式:CAS号:性质:钢中相形态之一。碳在α-Fe中的过饱和固溶体。具有体心正方晶体结构。是一种单相的亚稳组织。钢经奥氏体化后,以超过一定的冷却速度,在较低的温度下发生的马氏体转变产物。马氏体一般呈板条状、透镜片状或二者兼有之。具有较高的硬度和强度。板条状马氏体韧性较好,透镜片状马氏体韧性较差。钢的各种组织中马氏体的比容量大。具有铁磁性,电阻率也比较高。钢的各种组织中马氏体的比容最大。具有铁磁性,电阻率也比较高。通常钢中碳含量直高,马氏体硬度越高。但韧性很差,要经过回火热处理后才能用。通过淬火得到马氏体,是对钢进行强化的重要手段。超低碳铁镍合金中,加入适量的钴、钼、钛等合金元素,可制成高强高韧的马氏体时效钢。