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    • 81. 发明授权
    • Valve timing control apparatus
    • 气门正时控制装置
    • US09441507B2
    • 2016-09-13
    • US14370602
    • 2012-01-12
    • Hiroshi Kanai
    • Hiroshi Kanai
    • F01L1/34F01L1/344F02D41/00F02D13/02
    • F01L1/344F01L1/34409F01L1/3442F01L2001/3445F01L2001/34453F02D13/0203F02D2041/001
    • A valve timing control apparatus is provided with at least one of: an advance-angle control starting device configured to start to control a relative rotational phase of a camshaft with respect to a crankshaft to an advance side when an internal combustion engine starts and when a valve lift amount associated with an intake valve or an exhaust valve increases; and a delay-angle control starting device configured to start to control the relative rotational phase to a delay side when the internal combustion engine starts and when the valve lift amount associated with the intake valve or the exhaust valve decreases. It is possible to appropriately release engagement by a locking mechanism between a first rotating body configured to rotate synchronously with the camshaft and a second rotating body configured to rotate synchronously with the crankshaft.
    • 一种气门正时控制装置,具备以下至少一个:提前角控制启动装置,其配置为当内燃机启动时开始将凸轮轴相对于曲轴的相对旋转相位控制到前进侧,并且当 与进气门或排气门相关联的气门升程量增加; 以及延迟角控制启动装置,其被构造成当内燃机启动时以及当与进气门或排气门相关联的气门升程量减小时,开始将相对旋转相位控制到延迟侧。 可以通过构造成与凸轮轴同步旋转的第一旋转体和与曲轴同步旋转的第二旋转体中的锁定机构适当地释放接合。
    • 83. 发明申请
    • VALVE TIMING CONTROL APPARATUS
    • 阀门定时控制装置
    • US20140352639A1
    • 2014-12-04
    • US14370602
    • 2012-01-12
    • Hiroshi Kanai
    • Hiroshi Kanai
    • F01L1/344
    • F01L1/344F01L1/34409F01L1/3442F01L2001/3445F01L2001/34453F02D13/0203F02D2041/001
    • A valve timing control apparatus is provided with at least one of: an advance-angle control starting device configured to start to control a relative rotational phase of a camshaft with respect to a crankshaft to an advance side when an internal combustion engine starts and when a valve lift amount associated with an intake valve or an exhaust valve increases; and a delay-angle control starting device configured to start to control the relative rotational phase to a delay side when the internal combustion engine starts and when the valve lift amount associated with the intake valve or the exhaust valve decreases. It is possible to appropriately release engagement by a locking mechanism between a first rotating body configured to rotate synchronously with the camshaft and a second rotating body configured to rotate synchronously with the crankshaft.
    • 一种气门正时控制装置,具备以下至少一个:提前角控制启动装置,其配置为当内燃机启动时开始将凸轮轴相对于曲轴的相对旋转相位控制到前进侧,并且当 与进气门或排气门相关联的气门升程量增加; 以及延迟角控制启动装置,其被构造成当内燃机启动时以及当与进气门或排气门相关联的气门升程量减小时,开始将相对旋转相位控制到延迟侧。 可以通过构造成与凸轮轴同步旋转的第一旋转体和与曲轴同步旋转的第二旋转体中的锁定机构适当地释放接合。
    • 84. 发明授权
    • Magnetic recording medium having ion-implanted parts
    • 具有离子注入部件的磁记录介质
    • US08361640B2
    • 2013-01-29
    • US12378894
    • 2009-02-20
    • Toshinori OnoHiroshi KanaiTatsuysa HinoueHiroyuki SuzukiHiroshi Inaba
    • Toshinori OnoHiroshi KanaiTatsuysa HinoueHiroyuki SuzukiHiroshi Inaba
    • G11B5/66
    • G11B5/82G11B5/855
    • Embodiments of the present invention provide recording area separated magnetic recording media (DTMs, BPMs) allowing magnetic heads to fly lower. According to one embodiment, the recording area separated magnetic recording media are configured so that magnetic recording layers have parts with the relatively higher element ratio of a ferromagnetic material, and parts with the lower element ratio of the ferromagnetic material, occurring periodically in the in-plane direction, and the average height from the substrate surface of the parts with the relatively higher element ratio of a ferromagnetic material is higher than the average height from the substrate surface of the parts with the lower element ratio of the ferromagnetic material. In producing recording area separated magnetic recording media with the element ratio of a ferromagnetic material relatively lowered by ion implantation, preliminarily etching the part to be ion implanted makes the height after ion implantation relatively lower than the non-implanted part.
    • 本发明的实施例提供了允许磁头较低飞行的记录区分离的磁记录介质(DTM,BPM)。 根据一个实施例,记录区域分离的磁记录介质被配置为使得磁记录层具有铁磁材料的相对较高的元件比的部件,并且具有铁磁材料的较低元件比的部件在内部周期性地出现, 并且与铁磁材料相对较高的元件比的部件的基板表面的平均高度高于具有铁素体的较低元素比的部件的基板表面的平均高度。 在通过离子注入相对降低的铁磁材料的元素比率的记录区域分离的磁记录介质中,预先蚀刻待离子注入的部分使离子注入后的高度相对低于非注入部分。
    • 87. 发明申请
    • Precoated sheet having good workability and scratch resistance and method for production thereof
    • 具有良好的加工性和耐划伤性的预涂片及其制造方法
    • US20090246472A1
    • 2009-10-01
    • US11990828
    • 2006-03-10
    • Hiroshi KanaiHiroyasu FurukawaMagonori Nagase
    • Hiroshi KanaiHiroyasu FurukawaMagonori Nagase
    • B05D5/00B32B7/04B32B3/26
    • B05D7/14B05D3/0281B05D7/542B05D7/5423B05D2202/10C09D5/28Y10T428/24521
    • The invention relates to precoated sheets, including precoated metal sheets, each having an appearance of orange peel, and good workability and scratch resistance. The precoated sheet of the invention has a filtered center line waviness curve (Wca) of the outermost surface of coated film of 0.35 μm≦Wca≦1.25 μm, and a mean spacing of local peaks of filtered center line waviness curve (Wc−sm) of 2800 μm≦Wc−sm≦12500 μm, and has a wavy structure at the interface between the outermost coated film layer and the lower coated film layer. Preferably, the precoated sheet is designed to satisfy the conditions that a wavy curve W revealed when observing the interface between the outermost coated film layer and the lower coated film layer in the section of the film thickness direction (1) comprises a big wave defined as a wave having a region in which A≦0.8B, wherein A is a distance between the outermost surface S of the coated film and the wavy curve W at the interface, and B is an average film thickness of the outermost coated film layer, and (2) has an average distance between the big waves of not greater than 750 μm.
    • 本发明涉及预涂片,包括预涂金属片,各具有橘皮的外观,以及良好的可加工性和耐擦伤性。 本发明的预涂片具有0.35μm(wca)=1.25μm的涂覆膜的最外表面的过滤中心线波纹曲线(Wca),并且滤过的中心线波纹曲线(Wc- sm)为2800mum <= Wc-sm <=12500μm,并且在最外涂层膜层和下涂膜层之间的界面处具有波状结构。 优选地,预涂片材被设计成满足当在膜厚度方向(1)的截面中观察最外涂层膜层和下涂层膜之间的界面时波纹曲线W显示的条件包括定义为 具有A <= 0.8B的区域的波,其中A是涂膜的最外表面S与界面处的波状曲线W之间的距离,B是最外涂膜层的平均膜厚度, 和(2)之间的大波之间的平均距离不大于750mum。
    • 90. 发明申请
    • Magnetic recording medium and manufacturing method thereof
    • 磁记录介质及其制造方法
    • US20090214895A1
    • 2009-08-27
    • US12378777
    • 2009-02-18
    • Tatsuya HinoueHiroshi KanaiToshinori OnoHiroyuki SuzukiHiroshi Inaba
    • Tatsuya HinoueHiroshi KanaiToshinori OnoHiroyuki SuzukiHiroshi Inaba
    • G11B5/66C23C14/04
    • G11B5/855C23C14/3414C23C30/00G11B5/66H01F41/34
    • Embodiments of the present invention produce discrete track media and bit patterned media having both excellent read/write performance and reliability. According to one embodiment, the medium comprises a magnetic layers formed by at least two ferromagnetic alloy layers with different compositions on a substrate. The ferromagnetic alloy layer located closest to the medium surface has more concentrated parts and less concentrated parts of nonmagnetic element in the in-plane direction. The more concentrated parts of the nonmagnetic element contain more nonmagnetic elements than the other parts except for an intermediate layer in the magnetic recording layer. The more concentrated parts and the less concentrated parts of the nonmagnetic element in the ferromagnetic alloy layer located closest to the medium surface are formed substantially concentric. The more concentrated parts of the nonmagnetic element is formed by being doped with ions of nonmagnetic element.
    • 本发明的实施例产生具有优异的读/写性能和可靠性的离散轨道介质和位图案化介质。 根据一个实施例,介质包括由衬底上具有不同组成的至少两个铁磁性合金层形成的磁性层。 位于最靠近介质表面的铁磁合金层在面内方向具有更多的集中部分和更少的非磁性元件的集中部分。 除了磁记录层中的中间层之外,非磁性元件的集中部分比其他部分含有更多的非磁性元件。 位于最靠近介质表面的铁磁性合金层中的非磁性元件的集中部分和较不集中的部分基本上是同心的。 通过掺杂非磁性元素的离子形成非磁性元件越集中的部分。