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1)  Mn-Zn soft magnetic ferrite
锰锌软磁铁氧体
1.
A novel technology,which is on the preparation of Mn-Zn soft magnetic ferrite using Fe,Mn and Zn existing in waste battery as raw materials,was proposed.
对废锌锰电池的综合利用的意义和方法进行了评述;提出了利用废锌锰电池中的Fe、Mn和Zn制备高档锰锌软磁铁氧体材料的新技术,并对其工艺流程、技术特点和经济指标进行了详细的阐述。
2.
Using pyrolusite,zinc concentration and iron scrap as materials,preparation of Mn-Zn soft magnetic ferrite was studied.
以软锰矿、硫化锌精矿及铁屑等为原料,研究了直接法制备锰锌软磁铁氧体的工艺条件,重点研究了浸出液复盐沉淀深度净化的工艺条件。
3.
In order to overcome the disadvantages of ceramics method and co-precipitation method on the preparation of Mn-Zn soft magnetic ferrite materials, we combined hydrometallurgy and inorganic chemical engineering with ferrite technology, and the direct-method on the preparation of Mn-Zn soft magnetic ferrite has been successfully developed.
针对“陶瓷法”和“共沉淀法”存在的问题,我们将无机化工、湿法冶金和磁性材料等学科进行交叉,成功开发出“直接法”制备锰锌软磁铁氧体材料新技术。
2)  MnZn ferrite core
锰锌铁氧体磁芯
3)  Mn-Zn ferrite iron core
锰锌系铁氧磁体铁芯
4)  Mn0.78Zn0.22Fe2O4magnetic fluid
锰锌铁氧体磁流体
5)  manganese zinc ferrite
锰锌铁氧体
1.
On defects structure of manganese zinc ferrite nanocrystallines by positron annihilation lifetime spectroscopy
用正电子湮没寿命谱研究锰锌铁氧体纳米晶的缺陷结构
2.
The test results show that the preparation of magnetized paper fiber filled by manganese zinc ferrite is feasible at relatively low temperature.
实验结果证明在相对低温的情况下,制备以锰锌铁氧体为填充物的磁性纸用纤维是可行的。
3.
Coagulation and sedimentation method were used for treating an effluent of a manganese zinc ferrite production factory based on the bench scale experiments, in which chemical and physical conditions for treatment were identified.
锰锌铁氧体生产废水采用混凝沉淀法处理 ,悬浮物去除率可达 99。
6)  Mn-Zn ferrite
锰锌铁氧体
1.
Synthesis and magnetic properties of Mn-Zn ferrite nanoparticles;
锰锌铁氧体纳米粒子的制备和磁性能研究
2.
Adsorption behaviour of PEI on Mn-Zn ferrite magnetic nanoparticles;
聚乙烯亚胺在锰锌铁氧体纳米粒子表面定量吸附
3.
Preparation and characterization of Mn-Zn ferrite magnetic nanoparticles for tumor hyperthermia;
肿瘤热疗用锰锌铁氧体磁性纳米粒的制备及表征
补充资料:镁锰旋磁铁氧体
分子式:
CAS号:

性质:又称镁锰微波铁氧体。镁、锰、铁的氧化物为主要成分的一种旋磁铁氧体。具有尖晶石型结构。其组成(mol%)为:MgO42~58, MnO3~12, Fe2O330~46。饱和磁化强度0.165~0.23T。居里温度240~320℃。铁磁共振线宽12~52kA/m(9kHz)。介电常数9.5~13。介质损耗角氛烧结而成。主要用于X波段和C波段,制作各种隔离器、环行器和调制器等器件。

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