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    • 3. 发明授权
    • Particulate magnetic medium utilizing keeper technology and methods of
manufacture
    • 使用保持器技术的微粒磁性介质和制造方法
    • US5843565A
    • 1998-12-01
    • US742135
    • 1996-10-31
    • David H. DaviesThomas M. CoughlinBeverley R. Gooch
    • David H. DaviesThomas M. CoughlinBeverley R. Gooch
    • G11B5/667G11B5/712G11B5/716G11B5/66B32B7/02
    • G11B5/712G11B5/716Y10S428/90Y10T428/12465Y10T428/24942Y10T428/2495Y10T428/265Y10T428/2991
    • The flexible, particulate magnetic storage medium includes a substrate and a magnetic storage layer of hard magnetic particles held within a binder. The flexible, particulate magnetic storage medium also includes a soft magnetic keeper layer. The soft magnetic keeper layer may be established by coating the individual hard magnetic particles of the magnetic storage layer with a layer of soft magnetic material to establish a "keeper layer" around each particle. A break layer of non-magnetic material may be provided between the hard and soft layers. The individual particles are coated by methods such as in situ precipitation. The soft magnetic layer may also be established by providing a separate layer of soft magnetic material within a binder of cross linkable resins. The resulting flexible, particulate magnetic storage medium is a laminate principally comprising a substrate, a first layer of hard magnetic particles within a binder, and a second layer of soft magnetic particles also within a binder. The laminate medium may be produced through extrusion of binder particle mixes through multi aperture slot die extensions. The flexible, particulate magnetic media may be used in tape or flexible disc formats.
    • 柔性颗粒磁性存储介质包括基材和保持在粘合剂内的硬磁性颗粒的磁存储层。 柔性颗粒磁存储介质还包括软磁保持层。 可以通过用磁性材料层涂覆磁存储层的各个硬磁性颗粒以在每个颗粒周围建立“保持层”来建立软磁性层。 可以在硬层和软层之间提供非磁性材料的断裂层。 通过诸如原位沉淀的方法涂覆各个颗粒。 也可以通过在可交联树脂的粘合剂内提供单独的软磁性材料层来建立软磁性层。 所得到的柔性颗粒状磁性存储介质是主要包括基底,粘合剂内的第一层硬磁性颗粒和粘结剂内的软磁性颗粒的第二层的层压体。 层压介质可以通过粘合剂颗粒混合物通过多孔隙槽模延伸而挤出来生产。 灵活的微粒磁性介质可以以磁带或软盘形式使用。
    • 9. 发明授权
    • Method for manufacturing a composite metal and ferrite head transducer
    • 复合金属和铁氧体磁头传感器的制造方法
    • US5826326A
    • 1998-10-27
    • US485522
    • 1995-06-07
    • Beverley R. GoochRex Niedermeyer
    • Beverley R. GoochRex Niedermeyer
    • G11B5/10G11B5/127G11B5/17G11B5/23G11B5/235G11B5/255H01F7/06
    • G11B5/10G11B5/1274G11B5/1276G11B5/17G11B5/255G11B5/1272G11B5/232G11B5/235Y10T29/49043
    • A magnetic transducer is batch fabricated from a pair of confronting elongate composite block substrates each formed of a thin cap of non-magnetic material bonded to a much larger block of magnetic material, such as ferrite. An intermediate winding groove is formed in proximate relation to the non-magnetic material along the length of one or both composite block substrates. One (or both) of the substrates is provided with a plurality of parallel spaced V-shaped grooves oriented in a direction perpendicular to the winding groove, wherein adjacent grooves form therebetween track width defining lands. A core layer of high permeability magnetic material, such as Alfesil material, is deposited over the edges whereby magnetic poles are formed of the edges. A gap layer of insulating material is deposited on the edges over the high permeability magnetic material. Two of the composite block substrates are placed with the edges in aligned abutting relation and are assembled by glass bonding. Individual transducers are sliced from the bonded assembly of substrates and are lapped and polished and a coil is added to provide the finished transducers. Alternative embodiments may employ winding and V-shaped grooves in only one composite block substrate with the matching substrate being flat, and/or may employ either rectangular solid or wedge-shaped non-magnetic caps bonded to the ferrite blocks.
    • 磁传感器由一对相对的细长复合块基片批量制造,每个相对的细长复合阻挡基片由非磁性材料薄盖结合到较大的磁性材料块如铁素体上。 中间卷绕槽沿着一个或两个复合块基板的长度与非磁性材料邻接地形成。 一个(或两个)基板设置有沿垂直于卷绕槽的方向定向的多个平行隔开的V形槽,其中相邻的槽形成在其间的轨道宽度限定区域。 高磁导率磁性材料的芯层如Alfesil材料沉积在边缘上,由此由边缘形成磁极。 绝缘材料的间隙层沉积在高磁导率磁性材料上的边缘上。 两个复合块基材以边缘对齐的邻接关系放置,并通过玻璃粘合装配。 单独的换能器从基底的结合组件切片并且被研磨和抛光,并且添加线圈以提供完成的换能器。 替代实施例可以在仅一个复合块基板中采用绕组和V形槽,匹配衬底是平坦的,和/或可以采用与铁氧体块结合的矩形固体或楔形非磁性帽。