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intergranular alloying
相关语句
  晶间合金化
     In this paper,Mo and Al alloying element were introduced into the intergranular region of sintered Nd-Fe-B by intergranular alloying technique to modify the alloy system and microstructure and thus enhance the coercivity of magnets.
     本文采用晶间合金化工艺将合金元素 Mo和 Al直接引入烧结 Nd- Fe- B磁体晶间区域 ,改变晶间区域的合金体系和显微组织 ,以达到提高磁体矫顽力的目的。
短句来源
     The different effects of two kinds of adding methods(conven tional alloying technique:alloying elements added before melting and intergranular alloying technique:a lloying elements added before ball -milling or jet-milling)on sintere d Nd-Fe-B magnets are summarizedF inally,it is concluded that interg ranular alloying technique of blen ding additives is a kind of promi sing method to produce high performance Nd-Fe-B ma gnets
     综述了两种合金化方式 (传统合金化方式 :在熔炼前加入合金元素 ;晶间合金化方式 :在球磨或气流磨前加入合金元素 )对烧结Nd- Fe- B磁体显微结构和磁性能的不同影响 ; 最后指出晶间合金化复合添加方式是一种很有前景的生产高性能Nd -Fe- B磁体的方法。
短句来源
  相似匹配句对
     ALLOYING
     中国有色金属史(十一) 合金制取
短句来源
     (3)alloying;
     (3)合金化阶段;
短句来源
     Compared with the single alloying method, the combined alloying of intergranular region is more efficient to modify the properties of NdFeB magnets.
     与晶间单独合金化相比 ,晶间复合合金化可更有效改善NdFeB磁体显微组织与性能。
短句来源
     Intergranular Fatigue Cracking Mechanisms
     沿晶界疲劳开裂机理(英文)
短句来源
     Intergranular Corrosion of Glycol Evaporator
     乙二醇蒸发塔的晶间腐蚀
短句来源
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In this paper,Mo and Al alloying element were introduced into the intergranular region of sintered Nd-Fe-B by intergranular alloying technique to modify the alloy system and microstructure and thus enhance the coercivity of magnets.The results show the equilibrium transformation between the main phase and Nd-rich phase could be depressed by Mo addition,resluting in the precipitation of fine second main phase grain,the coercivity can be enhanced.

本文采用晶间合金化工艺将合金元素 Mo和 Al直接引入烧结 Nd- Fe- B磁体晶间区域 ,改变晶间区域的合金体系和显微组织 ,以达到提高磁体矫顽力的目的。实验结果表明 :Mo在低温时效过程中可抑制晶间富 Nd相与主相之间的平衡转变 ,使晶界区域析出细小二次主相晶粒 ,使矫顽力提高。

The effects of two kinds of elements (substituent:Co, Dy or Tb and dopant elements:M1(low-melt ing elements):Cu,Al,Ga,Sn,Ge,Zn an d M2(high-melting elements):Nb,Mo, W,Zr,Ti,V,Cr)on microstructure and magnetic properties of sintered Nd -Fe-B permanent magnets are briefl y reviwed. The different effects of two kinds of adding methods(conven tional alloying technique:alloying elements added before melting and intergranular alloying technique:a...

The effects of two kinds of elements (substituent:Co, Dy or Tb and dopant elements:M1(low-melt ing elements):Cu,Al,Ga,Sn,Ge,Zn an d M2(high-melting elements):Nb,Mo, W,Zr,Ti,V,Cr)on microstructure and magnetic properties of sintered Nd -Fe-B permanent magnets are briefl y reviwed. The different effects of two kinds of adding methods(conven tional alloying technique:alloying elements added before melting and intergranular alloying technique:a lloying elements added before ball -milling or jet-milling)on sintere d Nd-Fe-B magnets are summarizedF inally,it is concluded that interg ranular alloying technique of blen ding additives is a kind of promi sing method to produce high performance Nd-Fe-B ma gnets

简述了两类合金元素 (代换元素 :Co ,Dy或Tb与掺杂元素 :M 1(低熔点元素 ) :Cu ,Al,Ga ,Sn ,Ge ,Zn等与M2 (高熔点元素 ) :Nb ,Mo ,W ,Zr,Ti,V ,Cr等 )的添加对烧结Nd -Fe -B永磁合金的显微结构和磁性能的影响。综述了两种合金化方式 (传统合金化方式 :在熔炼前加入合金元素 ;晶间合金化方式 :在球磨或气流磨前加入合金元素 )对烧结Nd- Fe- B磁体显微结构和磁性能的不同影响 ;最后指出晶间合金化复合添加方式是一种很有前景的生产高性能Nd -Fe- B磁体的方法。

 
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