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    • 1. 发明授权
    • Barium ferrite magnetic storage media
    • 钡铁氧体磁存储介质
    • US09324354B2
    • 2016-04-26
    • US12753718
    • 2010-04-02
    • David C. LoweryStephen R. EbnerRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • David C. LoweryStephen R. EbnerRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • G11B5/706G11B5/714G11B5/738
    • G11B5/70678G11B5/714G11B5/738
    • Magnetic storage media that include a multilayer structure are described. In general, the magnetic storage media include a substrate, an underlayer that includes a plurality of underlayer particles formed over the substrate, and a magnetic layer that includes a plurality of magnetic particles formed over the underlayer. The magnetic layer may define a saturated magnetization and thickness product less than or equal to approximately 1.00 memu per square centimeter, and the magnetic particles may be selected from the group consisting of magnetic platelet-shaped particles and magnetic particles with an aspect ratio less than or equal to approximately 1.5. In addition, the described magnetic storage media may exhibit minimal interlayer diffusion between the underlayer and magnetic layer. Reduced interlayer diffusion between different layers of a magnetic recording medium may result in an improved magnetic recording surface for recording and storing data.
    • 描述了包括多层结构的磁存储介质。 通常,磁性存储介质包括基板,包括在基板上形成的多个下层颗粒的底层,以及包含形成在该下层上的多个磁性粒子的磁性层。 磁性层可以限定小于或等于约1.00毫秒/平方厘米的饱和磁化和厚度产品,并且磁性颗粒可以选自磁性粒子形颗粒和磁性颗粒,磁性颗粒和磁性颗粒的纵横比小于或等于 等于大约1.5。 此外,所描述的磁存储介质可能在底层和磁性层之间表现出最小的层间扩散。 在磁记录介质的不同层之间减少层间扩散可导致用于记录和存储数据的改进的磁记录表面。
    • 2. 发明申请
    • Method of Forming Barium Ferrite Magnetic Storage Media
    • 形成钡铁氧体磁存储介质的方法
    • US20110244118A1
    • 2011-10-06
    • US12753730
    • 2010-04-02
    • David C. LoweryStephen R. EbnerBruce H. EdwardsRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • David C. LoweryStephen R. EbnerBruce H. EdwardsRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • G11B5/84
    • G11B5/714G11B5/70678G11B5/8404
    • Magnetic storage media and methods for constructing magnetic storage media that include a multilayer structure are described. In general, the magnetic storage media include a substrate, an underlayer formed over the substrate, and a magnetic layer that includes a plurality of magnetic particles formed over the underlayer. In some examples, a magnetic recording medium can be formed by forming an underlayer over a substrate, drying the underlayer, and heat-curing the underlayer prior to forming a magnetic layer over the underlayer. A magnetic layer can then be formed over the underlayer. The magnetic layer may includes a plurality of magnetic particles selected from the group consisting of magnetic platelet-shaped particles and magnetic particles with an aspect ratio less than or equal to approximately 1.5, may then be formed over the underlayer. By heat-curing the underlayer prior to forming the magnetic layer over the underlayer, the formed magnetic recording medium may exhibit an improved magnetic recording surface for recording and storing data.
    • 描述了磁存储介质和用于构造包括多层结构的磁存储介质的方法。 通常,磁存储介质包括衬底,在衬底上形成的衬底,以及包括形成在衬底上的多个磁性颗粒的磁性层。 在一些实例中,可以通过在衬底上形成底层,在底层上干燥底层和在底层上形成磁性层之前对底层进行热固化来形成磁记录介质。 然后可以在底层上形成磁性层。 磁性层可以包括选自磁性片状颗粒和纵横比小于或等于约1.5的磁性颗粒的多个磁性颗粒,然后可以在底层上形成。 通过在将下一层形成磁性层之前对底层进行热固化,所形成的磁记录介质可以呈现用于记录和存储数据的改进的磁记录表面。
    • 4. 发明申请
    • Barium Ferrite Magnetic Storage Media
    • 钡铁氧体磁存储介质
    • US20110242698A1
    • 2011-10-06
    • US12753718
    • 2010-04-02
    • David C. LoweryStephen R. EbnerRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • David C. LoweryStephen R. EbnerRyosuke IsobeLarold L. OlsonMichael P. SharrockScott A. Walker
    • G11B21/02G11B5/66
    • G11B5/70678G11B5/714G11B5/738
    • Magnetic storage media that include a multilayer structure are described. In general, the magnetic storage media include a substrate, an underlayer that includes a plurality of underlayer particles formed over the substrate, and a magnetic layer that includes a plurality of magnetic particles formed over the underlayer. The magnetic layer may define a saturated magnetization and thickness product less than or equal to approximately 1.00 memu per square centimeter, and the magnetic particles may be selected from the group consisting of magnetic platelet-shaped particles and magnetic particles with an aspect ratio less than or equal to approximately 1.5. In addition, the described magnetic storage media may exhibit minimal interlayer diffusion between the underlayer and magnetic layer. Reduced interlayer diffusion between different layers of a magnetic recording medium may result in an improved magnetic recording surface for recording and storing data.
    • 描述了包括多层结构的磁存储介质。 通常,磁性存储介质包括基板,包括在基板上形成的多个下层颗粒的底层,以及包含形成在该下层上的多个磁性粒子的磁性层。 磁性层可以限定小于或等于约1.00毫秒/平方厘米的饱和磁化和厚度产品,并且磁性颗粒可以选自磁性粒子形颗粒和磁性颗粒,磁性颗粒和磁性颗粒的纵横比小于或等于 等于大约1.5。 此外,所描述的磁存储介质可能在底层和磁性层之间表现出最小的层间扩散。 在磁记录介质的不同层之间减少层间扩散可导致用于记录和存储数据的改进的磁记录表面。
    • 6. 发明授权
    • Portable self-energizing pressure sprayer
    • 便携式自增压喷雾器
    • US06565015B2
    • 2003-05-20
    • US09800791
    • 2001-03-07
    • Rick L. LeerScott A. Walker
    • Rick L. LeerScott A. Walker
    • B05B1700
    • B05B9/007B05B9/06B05B9/085B05B9/0877
    • A pressure sprayer is pressurized automatically with movement of the sprayer and maintains adequate pressure during non-movement to allow the ejection of an amount of liquid before needing re-pressurization. The pressure sprayer includes wheels that allow the pressure sprayer to be mobile. A cam is attached to the axle of the wheels which rotates with the rotation of the axle/wheels. A pressure pump is associated with the cam such that movement of the cam causes the pressure pump to pump liquid from a holding tank to an accumulator or directly to a spray wand in communication with the pump. The liquid may be sprayed (ejected) from the accumulator during both movement (pumping) and non-movement (no pumping) of the sprayer, while the liquid may be directly sprayed from the holding tank only during movement (pumping) thereof. Thus, as the wheels rotate due to moving the pressure sprayer, the cam causes movement of the pressure pump to fill the accumulator with the liquid under pressure. The pressure pump is adapted to obtain liquid from the holding tank and provide that liquid to the pressure accumulator. A relief valve is provided to relieve the buildup of pressure during movement of the wheels when no spraying is taking place.
    • 压力喷雾器通过喷雾器的运动自动加压,并且在不运动期间保持足够的压力,以允许在需要再加压之前喷射一定量的液体。 压力喷雾器包括允许压力喷雾器移动的轮子。 凸轮连接到随着车轮/车轮的旋转而旋转的车轮轴上。 压力泵与凸轮相关联,使得凸轮的运动使得压力泵将液体从储存罐泵送到蓄能器或者直接泵送到与泵连通的喷雾杆。 在喷雾器的运动(泵送)和不运动(无泵送)期间,液体可以从蓄能器喷射(喷射),而液体可以在其运动(泵送)期间从储存罐直接喷射。 因此,当轮子由于移动压力喷雾器而旋转时,凸轮引起压力泵的运动,以使压力下的液体填充蓄能器。 压力泵适于从储存罐获得液体并将该液体提供给蓄压器。 提供安全阀以在不发生喷雾的情况下减轻车轮运动期间的压力积聚。
    • 10. 发明授权
    • Protective cover for eyeglasses
    • 眼镜防护罩
    • US5014846A
    • 1991-05-14
    • US579571
    • 1990-09-10
    • Scott A. WalkerRandy J. Walker
    • Scott A. WalkerRandy J. Walker
    • A45C11/04G02C5/00
    • A45C11/04G02C3/006A45F2200/0541A45F5/00
    • A protective cover for eyeglasses is comprised of flexible material that can be folded into a compact configuration suitable for storage within a pouch. The pouch is either integrally formed within a strap for retaining eyeglasses about one's neck or is provided with rings for attachment to the strap or portions of an eyeglass frame. The flexible material comprising a cover body of the invention is tethered by a cord to the inside of the pouch so that it cannot be lost. The flexible cover body is stretchable to envelope the lens portion of eyeglasses and includes a hem around an opening in the cover body through which eyeglasses are inserted for protection therein. This hem includes an elastic band which tends to draw the cover body snugly about the eyeglass lenses.
    • 用于眼镜的保护罩由柔性材料组成,其可折叠成适于存储在袋内的紧凑构型。 袋子一体地形成在带子内,用于将眼镜保持在颈部周围,或者设置有用于附接到皮带或眼镜框架的部分的环。 包括本发明的盖体的柔性材料通过绳索系在袋的内部,使得其不会丢失。 柔性盖体是可拉伸的以包围眼镜的透镜部分,并且包括围绕盖体中的开口的边缘,眼镜通过所述开口插入以保护其中。 这种下摆包括一个弹性带,其倾向于将盖体紧贴在眼镜镜片上。