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1)  longitudinal magnetic annealing
纵向磁场退火
2)  field annealing
磁场退火
1.
The GMI effects in samples treated with different field annealing have been studied .
03软磁合金薄膜,研究了不同磁场退火方式对(Fe88Zr7B5)0。
2.
The obtained results showed that the GMI ratios could be improved observably by longitudinal and transverse field annealing, with the maximum longitudinal GMI ratios being 18.
03软磁合金薄膜,研究了不同磁场退火方式对薄膜磁导率和巨磁阻抗(GMI)效应的影响。
3)  magnetic field annealing
磁场退火
1.
The results show that the magnetic properties of alloy without magnetic field annealing can be impaired.
实验证明:无磁场退火使合金静磁性能恶化,而纵向磁场退火有效地消除了内应力、局部感生各向异性和畴壁钉扎,并形成感生单轴磁各向异性,静态磁性获得显著提高。
4)  magnetic annealing
磁场退火
1.
The effects of magnetic annealing on microstructure of the cold rolled non-oriented silicon steel
磁场退火对冷轧无取向硅钢微观组织的影响
2.
The effect of applied mode in magnetic annealing field on magnetostriction of 〈110〉-oriented polycrystalline Tb_(0.
研究了磁场退火时磁场施加方式对〈110〉取向Tb0。
3.
The effects of magnetic annealing on microstructure of 0.
在正交实验基础上,研究磁场退火工艺对成分为3%Si 的0。
5)  longitudinal magnetic field
纵向磁场
1.
Effect of longitudinal magnetic field on microstructure and properties of MIG weld joint of mild steel;
纵向磁场对低碳钢MIG焊焊缝组织及性能的影响
2.
Effect of applied longitudinal magnetic field on the properties of overlaying weld metal;
外加纵向磁场对堆焊层金属性能的影响
3.
Effect of longitudinal magnetic field on splatter in CO_2 short-circuit transfer arc welding;
外加纵向磁场对CO_2焊短路过渡飞溅影响的研究
6)  longitudinal magnetic
纵向磁场
1.
Analyses of process of MIG droplet transfer with longitudinal magnetic
纵向磁场作用下MIG焊熔滴过渡过程的分析
2.
On the basis of measuring gas tungsten arc welding (GTAW) the arc electrical current density distribution with a probe method, the new expression of body force and model of LD10CS aluminum alloy weld pool were put forward in GTAW with additional longitudinal magnetic field controlling.
在惰性气体保护钨极电弧焊接 (GTAW)过程中 ,引入纵向磁场焊接 。
3.
A non-singular single integral mathematical model is adopted to calculate the external intermittent and alternative longitudinal magnetic field acquired by single axisymmetrical and cylindrical hollow coil t which is coaxial to electrode and excitated by a revisable pulsed current of square wave t in austenitic stainless steel GTA welding.
针对奥氏体不锈钢外加纵向磁场的气体保护钨极电弧焊接(GTAW)时,与电极同轴的单个轴对称空心圆柱线圈在双向脉冲矩形励磁电流作用下产生的间歇交变纵向磁场,采用无暇点单积分磁场的数学模型,对*TAW焊接外加间歇交变纵向磁场进行了数值计算,该方法具有模型简单、计算速度快和精度高等优点并讨论了该间隙交变纵向磁场的分布、磁场的均匀性及其纵向分量与径向分量的比率等规律及其对焊接行为的影响,认为横磁分量将削弱GTAW外加纵向磁场的有利作用,影响磁控电弧的焊接质量。
补充资料:纵向
分子式:
CAS号:

性质:随意规定或选择的方向,例如:(1)试样的较长方向;(2)机加工方向,即在制造过程中,材料在机器内或机器上成型和移动的方向;(3)已知某一指定性能较强的试样方向;(4)任意选定的方向,特别为期望在测量平面内所测性能均匀时,所任意选定的方向。由于有些塑料材料如薄膜、板材,增强的板材等,其物理力学性能是各向异性的。因此,在制测试样条时,需标明是纵向还是横向,以确定各向的性能。

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