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1)  nanometer yttrium aluminum garnet
纳米钇铝石榴石
1.
By using this method,the time of preparation was saved and a small diameter nanometer yttrium aluminum garnet was gained.
在制备过程中,采用适当的混合强度和反应浓度可加强浆料过滤性,从而大大节省时间,得到小粒径高温相纳米钇铝石榴石粉体。
2)  yttrium aluminum garnet
钇铝石榴石
1.
The research progress of rare-earth-doped yttrium aluminum garnet powders
稀土掺杂钇铝石榴石粉体的研究进展
2.
Nano-crystalline yttrium aluminum garnet (YAG) powders were prepared by the co-precipitation method using Al(NO3)3·9H2O and Y(NO3)3·6H2O as raw materials, the NH4HCO3 as precipitator, and (NH4)2SO4 as dispersion medium.
以硝酸铝[Al(NO3)3·9H2O]和硝酸钇[Y(NO3)3·6H2O]为原料、以碳酸氢铵[NH4HCO3]为沉淀剂,硫酸铵[(NH4)2SO4]为分散剂,用共沉淀法合成钇铝石榴石(yttrium aluminumgarnet,YAG)纳米粉体。
3.
Transparent yttrium aluminum garnet (YAG ) ceramics were synthesized by a solid-state reaction method using commercial high-purity ultra-fine powders of α-Al2O3 and Y2O3 as starting materials.
采用高纯α-Al2O3和Y2O3作为原料并由固相反应法合成了钇铝石榴石(yttriumaluminumgarnet,YAG)透明多晶陶瓷。
3)  YAG [英][jæg]  [美][jæɡ]
钇铝石榴石
1.
On the Synthesis of YAG Nanopowders and Fabrication of Transparent YAG Ceramic;
钇铝石榴石纳米粉体及YAG透明陶瓷的制备研究
2.
Study of YAG Nanoparticles Prepared by Using Improved Pechini Method
用改进的Pechini法制备钇铝石榴石纳米晶粉体
3.
Hydrothermal Synthesis of Yttrium Aluminum Garnet (YAG) Micro-crystals
水热法制备微米级钇铝石榴石(YAG)晶体
4)  yttrium aluminium garnet
钇铝石榴石
5)  Yttrium aluminum garnet (YAG)
钇铝柘榴石
6)  neodymium doped yttrium aluminum garnet
掺钕钇铝石榴石
1.
The neodymium doped yttrium aluminum garnet (Nd:YAG) powders were synthe- sized by the low temperature combustion and the transparent ceramic disks with 9mm in diameter and 1mm in thickness were prepared by the vacuum sintering at 1700℃for 5h after being 300MPa model pressing.
采用低温燃烧法合成出掺钕钇铝石榴石(Nd:YAG)粉末,经模压300MPa成型,于1700℃真空烧结5h,制备出尺寸φ9mm×1mmNd:YAG透明陶瓷片。
补充资料:钇-钙-钒石榴石型旋磁铁氧体
分子式:
CAS号:

性质:具有超低共振线宽的一类石榴石型旋磁铁氧体。化学式{Y3-2xCa2x}[Fe2](Fe3-xVx)O12式中{  }代表十二面体晶位,[  ]代表八面体晶位,(  )代表四面体晶位。当x=1时,为抵消点(饱和磁化强度为零的点),其附近性能反常,无实际应用价值。一般这一类型的铁氧体的铁磁共振线宽较大,但通过用铟、锡、钛、钒、锗等置换部分铁离子,并采用合适的电子陶瓷生产工艺可获得一系列超低共振线宽的制品,在低频段,铁磁共振线宽为80A/m,达到了单晶体共振线宽的数量级。广泛用于制作各种微波器件。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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