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- ferrito martensiten. 贝氏体
- Martensite lath changes into fine tempered sorbite w. 材料经高温回火得到细小回火索氏体,力学性能优良。
- Crack propagation from the flameout edge can be modeled by considering an edge crack in the martensite surface from flame cutting. 裂纹从烧割边缘的扩展可模拟为一个从烧割处的马氏体表面起始的边裂纹。
- Special, highly alloyed welding wire for aluminium pressure molds. Martensit hardening. Good filing qualities. 这是一种特殊的合金焊丝,用于压铝模具的修补中,具有较高的焊接硬度和良好的堆焊性能。
- The proportion of austenite in the matrix of as-cast cast iron 290Cr26MoW increases but that of martensite decreases. 铸态290Cr26MoW耐磨白口铸铁基体的奥氏体比例增加,马氏体减少。
- As for small diameter workpiece, martensite distribution can be obtained by immediately quenching. 对于直径较细的工件,轧后立即淬火几乎可得到全部马氏体。
- Matrix should be of martensite, because it can resist impact and has little deformation. 基体应是马氏体,它能抵抗冲击,变形小。
- Tmis paper deals with the ordering of Fe-1.83C(Wt%)martensite during aging at roomtemperature. 利用透射电镜对Fe-1.;83C马氏体室温时效所产生的有序化进行了详细的研究。
- The large coarsened martensite and grainy bainite are the internal causes of brittlement. 粗大的马氏体和焊接过程产生的粒状贝氏体是脆化的内在原因.
- The results show that the structure of the surfacing layer was martensite, carbides and residual austenite. 试验结果表明:焊后的堆焊层组织为马氏体+碳化物+残余奥氏体。
- Some martensite like bainites such as crossed type and midrib type in the alloy were investigated. 观察到交叉型、中脊型类马氏体形貌贝氏体,发现贝氏体中脊中有大量层错。
- The microstructure of the weld bonds is a combination of martensite, lower bainite and retained austenite. 焊接熔合区组织为马氏体+下贝氏体+残余奥氏体;
- In stead of HCP precipitates, martensite distributed uniformly throughout the FCC matrix. 论文主题为探讨此高锰钢于高温热处理后所产生的麻田散体相变化情形。
- Overheating can result in overtempered martensite (OTM) or untempered martensite (UTM) formations in the base metal. 过热会造成在本体金属中形成过回火马氏体(OTM)或者欠回火马氏体(UTM)。
- The results show that the nitric martensite after cryogenic treatment has better wear resistance. 结果表明,含氮马氏体深冷处理后有更好的耐磨性能。
- Ti martensite can be obtained by oil quenching from 920,the morphology of martensite is lathlike or massive. 油淬后获得马氏体组织,马氏体在电镜下呈块状和条状。
- The micro structure of deposited metal is composed of martensite,residual austnesite and carbide hard phase. 堆焊层组织为马氏体+残余奥氏体+碳化物硬质相。
- Austenitic type is non-magnetic or weak magnetic properties martensite or ferrite is magnetic. 奥氏体型是无磁或弱磁性,马氏体或铁素体是有磁性的。
- Microstructure of heat-affect zone (HAZ) is mainly lath martensite, bainite and residual austenite. 热影响区(HAZ)组织主要为板条马氏体、贝氏体和少量残余奥氏体;
- The hard second phase, for example martensite, contributed to the superior fatigue strength and higher threshold value. 较硬的第二相,如马氏体,贡献了出众的疲劳强度和较高的开始值。