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1)  magnetic temperature compensation
磁温度补偿
1.
The properties of magnetic temperature compensation of the series of nickel-iron alloy have been investigated in this paper.
主要研究了FeNi系合金材料的磁温度补偿特性,分析了不同微量合金元素对磁性能的影响。
2)  magnetic compensation temperature
磁补偿温度
3)  magnetic temperature compensation alloy
磁温度补偿合金
1.
Effect of heat treatment on thermal magnetic performances and microstructure of Fe_(69.07)Ni_(29.25)Mn_(0.615)Si_(0.50)C_(0.50)magnetic temperature compensation alloy;
热处理对Fe_(69.07)Ni_(29.25)Mn_(0.615)Si_(0.50)C_(0.50)磁温度补偿合金热磁性能和微观结构的影响
2.
Characterization of temperature stability of permanent magnet with magnetic temperature compensation alloy was discussed.
讨论了磁温度补偿合金与永磁体组合后的磁性能和温度稳定性的表征。
3.
Influence of forge technique on the performance of Fe-Ni magnetic temperature compensation alloy was studied by optical microscopy and magnetic property test.
采用光学显微镜、静态冲击法磁性能测试设备等研究了锻造工艺对铁镍磁温度补偿合金饱和磁感应强度Bm和磁温度系数△B/△T0-100℃的影响规律。
4)  temperature compensation
温度补偿
1.
The method of temperature compensation in the measuring concentration of lye in mercerizing process;
丝光机碱液浓度检测温度补偿方法的研究
2.
Research and application on the siemens 840D CNC system temperature compensation function;
西门子840 D系统温度补偿功能在数控机床上的开发应用
3.
Pressure sensor temperature compensation based on least squares support vector machine;
基于最小二乘支持向量机的压力传感器温度补偿
5)  temperature compensate
温度补偿
1.
This thesis bring forward by apply of the single- chip to actualize temperature compensate control project.
在定量装液自动控制系统中为了提高计量精度,论文提出了应用单片机实现对油品温度补偿的控制方案,基本上能够解决上述问题。
6)  compensation temperature
补偿温度
1.
Particularly, the effects of single-ion anisotropy and interlayer interaction on magnetization, critical and compensation temperature are investigated.
采用双时温度格林函数方法讨论了具有层间耦合的蜂窝状晶格3/2和5/2混自旋亚铁磁Heisenberg系统全温区的磁性行为·讨论了晶体场单离子各向异性和层间耦合效应对系统磁矩、转变温度和补偿温度的影响·给出了子晶格磁矩和总磁矩在不同的晶体场单离子各向异性和层间耦合效应随温度变化曲线,系统的转变温度和补偿温度随晶体场单离子各向异性和层间耦合效应变化的相图·分析表明:系统存在多种磁矩曲线,当晶体场单离子各向异性和层间耦合超过最小值(D1min/J和J1min/J)后才会出现补偿现象,补偿温度随D1/J和J1/J的增大而减小,最后趋于不变
2.
If the hood concentration varies in the certain ranges, we find that the compensation temperature is obtained for values of the different transverse fields in a restricted region.
如果键浓度在某一范围内变化,我们发现当不同横场在一限制区域时可获得该系统的补偿温度。
3.
A compensation temperature was found with the field being less than 0.
1 T)时,发现有一个补偿温度;当温度大于50 K时,磁化率与温度的关系遵循居里-外斯定律。
补充资料:冷端温度补偿器
分子式:
CAS号:

性质:一种用于补偿热电偶参比端温度不在0℃时引起热电势变化的装置。本质上是一个直流毫伏发生器,其输出的直流电压正好是热电偶参比端(冷端)温度不在0℃时所减少的热电势。将它串接在热电偶回路中,当热电偶参比端温度不在0℃时,能得到自动补偿。

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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