1)  TaN film
TaN_x薄膜
2)  Ta
Ta
1.
Comparison of Electrochemical Property between Ta & Ta-2.5W Alloy in Sulfuric Acid Solution;
Ta与Ta-2.5W在硫酸溶液中的电化学性能比较
2.
Atomistic simulation of the relaxed structure and energy of edge dislocation in metal Ta;
金属Ta中刃型位错弛豫结构和能量的原子级模拟
3.
Calculation of Welding Residual Stress between SiC Ceramic and Ta;
SiC陶瓷与金属Ta连接的残余应力
3)  Tenax TA
Tenax-TA
1.
Comparison of Adsorptive Capacity of Benzene in Air between Tenax TA Adsorbent and Activated Carbon;
吸附剂Tenax-TA和活性炭对空气中苯的吸附性能比较
4)  NbTiTa
NbTi Ta
5)  CⅡTA
CⅡTA
1.
Expression of MHC Ⅱ on rat corneal keratocytes is inhibited by special siRNA targeting CⅡTA;
靶向CⅡTA基因siRNA对大鼠角膜基质细胞MHCⅡ基因表达影响的研究
2.
Biological Activity of CⅡTA Anti-sense RNA ——A Novel Approach to Inhibition of Rejection in Transplantation;
抑制移植排斥的新途径——CⅡTA反义RNA的生物学活性
3.
Enhanced antitumor effect of dendritic cells modified by CⅡTA gene in hepatocellular carcinoma-bearing mice;
CⅡTA基因修饰树突状细胞增强荷肝癌小鼠抗瘤效应
6)  ~(182)Ta
~(182)Ta
参考词条
补充资料:loss factor tan δ
分子式:
CAS号:

性质:损耗模量与弹性模量之比,又称阻尼因子(damping factor)或内耗(internal dissipation)或损耗角正切(loss tangent),是每周期耗散能量与在一周期内的最大贮能之比。对剪切应力而言,损耗因子tan δ=G″/Gˊ;对法向应力而言,损耗因子tan δ=E″/E′。如果δ=0,作用力完全有效地用于橡胶变形,没有内耗;如果作用力完全用于克服橡胶的黏性阻力(内摩擦),损耗角的大小代表了动态变形下能量损耗的大小。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。