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1)  polycrystalline iron fiber phosphating
多晶铁纤维磷化
1.
The process flows and formulations of black phosphating, laser quenching phosphating, polycrystalline iron fiber phosphating, metal composite coating phosphating and metal plate phosphating were introduced.
介绍了黑色磷化、激光淬火磷化、多晶铁纤维磷化、金属复合涂层磷化、金属板材磷化的工艺流程及配方,分析了黑色磷化工艺中各成分的作用,并讨论了金属复合涂层磷化工艺的作用机理。
2)  multi-crystal iron fiber
多晶铁纤维
1.
An electromagnetic shielding film was prepared by introducing multi-crystal iron fiber(MCIF) and nickel powder(Ni)into low density polyethylene(PE-LD).
通过向低密度聚乙烯(PE-LD)中添加导电填料羰基多晶铁纤维(MCIF)和导电镍粉(Ni),制备了 PE-LD/Ni/MCIF 电磁屏蔽复合薄膜材料,研究了导电填料对复合薄膜材料电磁性能、导电性能和力学性能的影响。
2.
The electrical conductive composites were made by adding multi-crystal iron fiber,nickel and carbon black into LDPE.
以多晶铁纤维、镍粉和炭黑作为导电填料填充LDPE,制备了一种导电复合材料。
3)  polycrystalline iron fiber
多晶铁纤维
1.
By controlling only pyrolysis temperature of Fe(CO)5, polycrystalline iron fibers with tunable structure and chemical compositions were prepared by carrier gas flow induced method.
仅通过控制Fe(CO)5的热解温度(Td),用气流诱导法制备了化学组成与结构可控的多晶铁纤维。
2.
The method of pyrolysis of carbonyl with introducing magnetic field can produce polycrystalline iron fiber with controllable geometry size.
多晶铁纤维是一类新型磁性材料,应用十分广泛。
3.
A novel method of the production of the polycrystalline iron fiber is introduced in this paper.
介绍了一种崭新的制备多晶铁纤维的方法———磁场引导羰基热分解法 ,并从羰基分解和磁场诱导原理出发 ,分析了羰基铁颗粒特有的洋葱结构的形成及其在磁场作用下相互连接 ,最终长成纤维的过程 。
4)  Polycrystalline ferro-fiber
多晶铁纤维
1.
By comparing the reflectivity of absorbing coating on metallic substrate, the absorbing performance of three kinds of absorbing coatings of ferrite, magnetic micropowder and polycrystalline ferro-fiber on the surface of substrate of glass fiber composite material were studied.
以金属基体吸波涂层的反射率为对比,研究了铁氧体、磁性微粉和多晶铁纤维3种吸波涂料在玻璃钢表面的吸波性能。
5)  polycrystalline iron fibers
多晶铁纤维
1.
In this paper,the preparation device and process of microwave absorbing polycrystalline iron fibers(PIF)was introduced.
介绍了吸波多晶铁纤维的制备装置和制备工艺,研究了反应温度、励磁电流、羰基铁流速及1次进样总量对多晶铁纤维的影响。
2.
The microwave permeability of polycrystalline iron fibers decreases with the increase of fiber diameter and increases with the increase of aspect ratio.
实验研究了纤维组分、直径和长径比对多晶铁纤维微波磁导率的影响。
3.
With regularly oriented iron fibers,stratified polycrystalline iron fibers absorbing material shows macroscopic electromagnetic anisotropy.
层状多晶铁纤维吸波材料中铁纤维分层取向规则排列,吸波材料表现为宏观各向异性。
6)  alumina fiber
多晶氧化铝纤维
补充资料:多晶莫来石晶须(纤维)
分子式:
CAS号:

性质:莫来石相为主晶相的多晶纤维。化学成分为Al2O3 72%~77%,SiO222%~17%,B2O3 3%~5%,P2O51.5%~3.0%。纤维直径2~7μm,纤维长度20~125μm。使用温度1350℃。多采用溶胶-凝胶法制造。主要用作补强填料,也可作为轻质、隔热保温材料使用。

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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