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- Ferrite (magnet) - Wikipedia
A ferrite is one of a family of iron oxide-containing magnetic ceramic materials They are ferrimagnetic , meaning they are attracted by magnetic fields and can be magnetized to become permanent magnets
- 鐵氧體 - 维基百科,自由的百科全书
鐵氧體(英語: Ferrite )是一種陶瓷材料,以氧化铁為其主要成份 [1] 。 大部份的鐵氧體是 磁性 材料,用來製作 永久磁鐵 、 變壓器 的 鐵芯 及其他相關的應用。
- Ferrite | Iron Oxide Compound | Britannica
Ferrite, a ceramic-like material with magnetic properties that are useful in many types of electronic devices Ferrites are hard, brittle, iron-containing, and generally gray or black and are polycrystalline—i e , made up of a large number of small crystals They are composed of iron oxide and one
- Mn-Zn Ferrite - TDK
Mn-Zn Ferrite Material characteristics Ferrite for switching power supplies Ferrite for high-frequency power supplies Large size ferrite for high power Ferrite for telecommunication FERRITES (2 24) 20220510 ferrite_mn-zn_material_characteristics_en fm FERRITES Please be sure to read this manual thoroughly before using the products
- 肥粒铁 - 百度百科
肥粒铁(ferrite)又称为铁素体或α-Fe,是钢铁的一种显微组织,通常是α-Fe中固溶少量碳的固溶体,一般的钢铁中可能固溶有其它合金元素等杂质。 同时,肥粒铁也是波来铁和变韧铁的构成组织之一。
- Basics of Ferrites: Types and Structures - Springer
A ferrite ‘a ceramic substance’ composed primarily of iron oxide (Fe 2O 4), with a small number of metals like barium, manganese, nickel, and zinc etc [1–3] The term “ferrite” comes from the Latin word “Ferrum,” this is meant for “iron ” Both theironoxideandthemetalareferrimagnetic Ferrite,aceramicsubstancecreatedby
- Ferrite | Formula, Properties Application
Ferrite, an intriguing class of ceramic compounds, is known for its unique magnetic properties and diverse practical applications Made from iron oxides and other metal elements, ferrite exhibits an intricate structural identity, which has fascinated scientists and engineers for years
- Introduction to ferrites: history and magnetism - ScienceDirect
A brief study of present, past, and future of nanoferrites along with the historical developments, structure, industrial applications leads to the profound understanding of ferrite materials The morphology and synthesis-based applications are also discussed along with the detailed structural analysis
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