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    • 1. 发明申请
    • HEAD, HEAD SUSPENSION ASSEMBLY, AND DISK DRIVE DEVICE PROVIDED WITH THE SAME
    • 头部,头部悬挂组件以及与其同时提供的磁盘驱动器件
    • US20100002340A1
    • 2010-01-07
    • US12548285
    • 2009-08-26
    • Masami YamaneKan Takahashi
    • Masami YamaneKan Takahashi
    • G11B5/60
    • G11B5/6082G11B5/6064
    • According to an embodiment, a slider of a head includes a negative-pressure cavity defined by a recess formed in a disk-facing surface, a leading step portion which is situated on an upstream side of the negative-pressure cavity with respect to an airflow and projects from a bottom surface of the negative-pressure cavity, a trailing step portion which is provided on an outflow-side end portion of the facing surface on the downstream side of the negative-pressure cavity with respect to the airflow, projects from the bottom surface of the negative-pressure cavity, and constitutes a part of the facing surface, and a maximum-positive-pressure producing step portion which is spaced upstream from the trailing step portion with respect to the airflow, projects from the bottom surface of the negative-pressure cavity, and produces a maximum positive pressure. A head portion is provided on the trailing step portion.
    • 根据实施例,头部的滑块包括由形成在面向盘的表面中的凹部限定的负压腔,相对于气流位于负压腔的上游侧的前进台阶部 并且从负压腔的底面突出设置有相对于气流在负压腔的下游侧的面对面的流出侧端部设置的后台阶部, 并且构成所述面对面的一部分,并且相对于所述气流与所述后台阶部的上游侧隔开的最大正压力产生台阶部从所述负压腔的底面突出, 负压腔,产生最大正压。 头部部分设置在后台阶部分上。
    • 2. 发明授权
    • Disk drive head and suspension assembly having a slider with a groove and a connecting step
    • 磁盘驱动器头和悬架组件具有带槽的滑块和连接步骤
    • US08184401B2
    • 2012-05-22
    • US12548285
    • 2009-08-26
    • Masami YamaneKan Takahashi
    • Masami YamaneKan Takahashi
    • G11B5/60
    • G11B5/6082G11B5/6064
    • According to an embodiment, a slider of a head includes a negative-pressure cavity defined by a recess formed in a disk-facing surface, a leading step portion which is situated on an upstream side of the negative-pressure cavity with respect to an airflow and projects from a bottom surface of the negative-pressure cavity, a trailing step portion which is provided on an outflow-side end portion of the facing surface on the downstream side of the negative-pressure cavity with respect to the airflow, projects from the bottom surface of the negative-pressure cavity, and constitutes a part of the facing surface, and a maximum-positive-pressure producing step portion which is spaced upstream from the trailing step portion with respect to the airflow, projects from the bottom surface of the negative-pressure cavity, and produces a maximum positive pressure. A head portion is provided on the trailing step portion.
    • 根据实施例,头部的滑块包括由形成在面向盘的表面中的凹部限定的负压腔,相对于气流位于负压腔的上游侧的前进台阶部 并且从负压腔的底面突出设置有相对于气流在负压腔的下游侧的面对面的流出侧端部设置的后台阶部, 并且构成所述面对面的一部分,并且相对于所述气流与所述后台阶部的上游侧隔开的最大正压力产生台阶部从所述负压腔的底面突出, 负压腔,产生最大正压。 头部部分设置在后台阶部分上。
    • 3. 发明申请
    • HEAD CONTROLLER, MEMORY DEVICE AND HEAD CONTROL METHOD
    • 头控制器,存储器和头控制方法
    • US20130003216A1
    • 2013-01-03
    • US13398513
    • 2012-02-16
    • Masami YAMANE
    • Masami YAMANE
    • G11B5/02
    • G11B5/607G11B5/6029
    • In one embodiment, there is provided a head controller for controlling a head of a read/write device which reads/writes data from/into a recording medium. The head controller includes: a controller configured to adjust a gap between the head of the read/write device and a surface of the recording medium by increasing/decreasing a power supplied to a heater, wherein the heater is configured to heat and expand the read/write device; and an acquisition unit configured to acquire output differences of the read/write devices for two or more rotation speeds of the recording medium, wherein the controller is configured to increase or decrease the power supplied to the heater based on the output differences of the read/write device.
    • 在一个实施例中,提供了一种头控制器,用于控制从/向记录介质读/写数据的读/写设备的头部。 头控制器包括:控制器,被配置为通过增加/减少提供给加热器的功率来调节读/写设备的头部和记录介质的表面之间的间隙,其中加热器被配置为加热和扩展读取 /写设备; 以及获取单元,被配置为获取所述记录介质的两个或更多个转速的所述读/写装置的输出差,其中所述控制器被配置为基于所述读/写装置的输出差异来增加或减少提供给所述加热器的功率, 写设备。
    • 4. 发明授权
    • Mechanism for firing gas turbines with liquefied natural gas
    • 用液化天然气燃烧燃气轮机的机理
    • US5400588A
    • 1995-03-28
    • US136376
    • 1993-10-15
    • Masami YamaneKazuhiko AsadaYutaka ItohShinichi MiuraHiroo Nishimura
    • Masami YamaneKazuhiko AsadaYutaka ItohShinichi MiuraHiroo Nishimura
    • F02C3/22F02C7/143F02C7/16F02C7/224F02C7/24
    • F02C7/143F02C3/22F02C7/224
    • Disclosed herein is a method of firing a gas turbine with LNG which is designed to store the "cold" of LNG in an the LNG vaporizer. The method comprises supplying liquefied natural gas through heat exchanger tubes in the LNG vaporizer, thereby gasifying the liquefied natural gas by heat exchange with a heat transfer medium recycled through the LNG vaporizer and an air precooler, and cooling the air in the air precooler by heat exchange with the heat transfer medium cooled by the liquefied natural gas when the turbine load is high, and suspending the recycling of the heat transfer medium through the LNG vaporizer and air precooler, thereby causing the heat transfer medium to freeze on the outside of the heat exchanger tubes (for the storing of freezing latent heat) by the "cold" of the liquefied natural gas supplied, when the turbine load is low, and using the freezing latent heat (stored by the freezing of the heat transfer medium) as a "cold" source to cool air through the heat transfer medium, when the turbine load is high.
    • 本文公开了一种用LNG燃烧燃气轮机的方法,其被设计成将LNG的“冷”储存在LNG蒸发器中。 该方法包括通过LNG蒸发器中的热交换器管供应液化天然气,从而通过与通过LNG蒸发器和空气预冷器再循环的传热介质进行热交换来气化液化天然气,并通过热量冷却空气预冷器中的空气 与涡轮负载高时由液化天然气冷却的传热介质进行交换,并且通过LNG蒸发器和空气预冷器来悬浮传热介质的再循环,从而使传热介质在热量外部冷冻 当涡轮机负荷低时,通过所供给的液化天然气的“冷”,将冷冻潜热(通过传热介质的冷冻保存))作为“冷冻潜热” 冷“源,当涡轮负载高时,通过传热介质冷却空气。