1) bimetallic
双金属的
2) bimetallic
双金属
1.
FTIR Studies of Oxalate-Bridged Gd(Ⅲ)-Cr(Ⅲ) Hexanuclear Bimetallic Complex;
草酸根桥联的钆-铬六核双金属配合物的红外光谱研究
2.
The effects of an electromagnetic field on the solid-liquid bimetallic interface were investigated to provide theoretical support for the composite roller preparation by centrifugal casting under an electromagnetic field.
为了给液固相复合界面控制提供理论支持,研究了在电磁离心铸造复合轧辊中电磁场对液固相双金属复合界面的影响。
3.
Based on technological experiments and numerical simulation result,its technological process of manufacturing layer-coated bimetallic compounds by dual-moulds continuous casting process was analyzed;Analyzed the effects of some technological parameters to bonding strength,its compounding mechanism was discussed.
在进行工艺试验和数值模拟的基础上,分析了双结晶器连铸工艺制备层状双金属复合材料的工艺过程,结合一些影响结合强度的工艺因素分析,探讨了双金属液 固相的结合规律。
3) bimetal
双金属
1.
Codeposition and Costripping Models for Bimetal on the Boron-Doped Diamond Surface;
双金属在掺硼金刚石表面电化学共沉积-共溶出模型
2.
Microstructure and mechanical properties of diffusion bonding brass/steel bimetal;
黄铜/钢扩散复合双金属界面组织与性能
3.
Advances in preparation of nano-sized core@shell bimetallic particles;
核壳结构纳米双金属粒子的制备进展
4) bimetallic powders
双金属粉
1.
Cu-Ag bimetallic powders whose grain size was similar to the copper powders,were prepared by reduction reaction with hydrazine as the reducing agent by means of inhibiting substitution reaction.
反应体系中引入强还原剂水合肼,通过反应条件的控制抑制置换反应,使银氨溶液优先发生液相还原反应,制备了与原铜粉粒径和形貌大致相同的铜-银双金属粉;采用XRD、EDX、激光粒度分析仪等检测方法对包覆双金属粉的晶相组成及含量、表面包覆层相组成及含量以及粒径分布等加以研究。
5) Double diamantane hydrocarbons
双金刚烷
6) bimetallic plate
双金属板
1.
The feed proportioning modle for rolling 20Sn-Al steel bimetallic plate is estab lished by the regression method.
应用逐步回归方法,建立了轧制铝锡20铜─钢双金属板的配料模型;并对模型作自适应修正,提高了模型的预测精度。
参考词条
补充资料:高灵敏热双金属
分子式:
CAS号:
性质:较小的温度变化能产生很大比弯曲的热双金属。其典型合金为:主动层72Mn-10Ni-18Cu,被动层为36Ni-Fe,属于高敏感、高电阻和中温型热双金属。在热双金属中有最高的热灵敏性,线性温度范围为-20~150℃,允许使用温度范围-70~200℃。适用于室温调节装置。
CAS号:
性质:较小的温度变化能产生很大比弯曲的热双金属。其典型合金为:主动层72Mn-10Ni-18Cu,被动层为36Ni-Fe,属于高敏感、高电阻和中温型热双金属。在热双金属中有最高的热灵敏性,线性温度范围为-20~150℃,允许使用温度范围-70~200℃。适用于室温调节装置。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。