典型文献
Crystallography of the martensitic transformation between Ni2In-type hexagonal and TiNiSi-type orthorhombic phases
文献摘要:
MnMX(M=Co or Ni,X=Si or Ge)alloys,experiencing structural transformation between Ni2ln-type hexagonal and TiNiSi-type orthorhombic phases,attract considerable attention due to their potential ap-plications as room-temperature solid refrigerants.Although lots of studies have been carried out on how to tune this transformation and obtain large entropy change in a wide temperature region,the crys-tallography of this martensitic transformation is still unknown.The biggest obstacle for crystallography investigation is to obtain a bulk sample,in which hexagonal and orthorhombic phases coexist,because the MnMX alloys will fragment into powders after experiencing the transformation.For this reason,we carefully tune the transformation temperature to be slightly below 300 K.In that case,a bulk sample with small amounts of orthorhombic phases distributed in hexagonal matrix is obtained.Most impor-tantly,there are no cracks between the two phases.It facilities us to investigate the microstructure using electron microscope.The obtained results indicate that the orientation relationship between hexagonal and orthorhombic structures is[4223]h//[120]0&(0110)h//(001)0 and the habit plane is{2113.26}h.WLR theory is also adopted to calculate the habit plane.The calculated result agrees well with the mea-sured one.Our work reveals the crystallography of hexagonal-orthorhombic transformation for the first time and is helpful for understanding the transformation-associated physical effects in MnMX alloys.
文献关键词:
中图分类号:
作者姓名:
Tingting Zhang;Yuanyuan Gong;Bin Wang;Dongyu Cen;Feng Xu
作者机构:
MIIT Key Laboratory of Advanced Metallic and Intermetallic Materials Technology,Nanjing University of Science and Technology,Nanjing 210094,China
文献出处:
引用格式:
[1]Tingting Zhang;Yuanyuan Gong;Bin Wang;Dongyu Cen;Feng Xu-.Crystallography of the martensitic transformation between Ni2In-type hexagonal and TiNiSi-type orthorhombic phases)[J].材料科学技术(英文版),2022(09):59-66
A类:
Crystallography,Ni2In,TiNiSi,MnMX,Ni2ln,refrigerants,tallography,WLR
B类:
martensitic,transformation,between,type,hexagonal,orthorhombic,phases,Co,Ge,alloys,experiencing,structural,attract,considerable,attention,due,their,potential,plications,room,temperature,solid,Although,lots,studies,have,been,carried,out,how,tune,this,large,entropy,change,wide,region,still,unknown,biggest,obstacle,crystallography,investigation,bulk,sample,which,coexist,because,will,fragment,into,powders,after,For,reason,carefully,slightly,below,that,case,small,amounts,distributed,matrix,obtained,Most,impor,tantly,there,cracks,two,It,facilities,investigate,microstructure,using,electron,microscope,results,indicate,orientation,relationship,structures,habit,plane,theory,also,adopted,calculated,agrees,well,mea,sured,one,Our,work,reveals,first,helpful,understanding,associated,physical,effects
AB值:
0.478927
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