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    • 33. 发明授权
    • Temperature control system for machine tool
    • 机床温度控制系统
    • US07874497B2
    • 2011-01-25
    • US12172736
    • 2008-07-14
    • Tomohiko KawaiKenzo EbiharaHiroshi Minami
    • Tomohiko KawaiKenzo EbiharaHiroshi Minami
    • F24F11/053F24F3/00G05D23/12B23Q11/12
    • B23Q11/145B23Q11/143Y10S82/90Y10T409/303976
    • A temperature control system for a machine tool capable of quickly responding to an ambient temperature change. A mechanical section of the machine tool is surrounded by a machine cover. Gas of which temperature is controlled by a temperature controller is discharged from bearing portions of gas bearings in the mechanical section to a region surrounded by the machine cover through a pipe and a gas bearing channel. A branch pipe is provided for directly introducing a part of gas discharged from the temperature controller to a temperature sensor inside the machine cover. The temperature sensor measures the temperature of gas mixture obtained by mixing the gas introduced directly from the pipe with air inside the machine cover in a predetermined ratio. The result of measurement by the temperature sensor is fed back to the temperature controller to control the temperature of the gas supplied to the gas bearings.
    • 一种能够快速响应环境温度变化的机床的温度控制系统。 机床的机械部分被机盖包围。 通过温度控制器控制温度的气体通过管道和气体支承通道从机械部分中的气体轴承的轴承部分排出到由机器盖包围的区域。 设置有分支管,用于将从温度控制器排出的一部分气体直接引入机盖内的温度传感器。 温度传感器通过将从管道直接引入的气体与机罩内的空气以预定的比例混合而获得的气体混合物的温度。 将温度传感器的测量结果反馈到温度控制器,以控制供应给气体轴承的气体的温度。
    • 35. 发明申请
    • ACTUATOR STOPPER AND STORAGE APPARATUS
    • 执行器停止和储存装置
    • US20100134927A1
    • 2010-06-03
    • US12569473
    • 2009-09-29
    • Hiroshi Minami
    • Hiroshi Minami
    • G11B5/55
    • G11B5/54
    • According to one embodiment, an actuator stopper contacts a butting portion of an actuator which moves a head in a movement direction in a movement plane, and restricts a movement range of the actuator along the movement direction. The actuator stopper includes a first portion and a second portion. The first portion is configured to be positioned at an upstream side along the movement direction and contact the butting portion of the actuator. The second portion is configured to be positioned at a downstream side along the movement direction, have a smaller height than the first portion along a direction vertical to the movement plane, and be formed integrally with the first portion.
    • 根据一个实施例,致动器止动件接触致动器的对接部分,该致动器沿运动平面中的运动方向移动头部,并且沿着运动方向限制致动器的运动范围。 致动器止动器包括第一部分和第二部分。 第一部分构造成沿着运动方向位于上游侧并接触致动器的对接部分。 第二部分被配置为沿着运动方向位于下游侧,沿垂直于运动平面的方向具有比第一部分更小的高度,并且与第一部分一体地形成。
    • 36. 发明申请
    • LITHIUM SECONDARY BATTERY AND METHOD OF MANUFACTURING THE SAME
    • 锂二次电池及其制造方法
    • US20090305129A1
    • 2009-12-10
    • US12295182
    • 2007-03-28
    • Atsushi FukuiHiroshi MinamiYasuyuki Kusumoto
    • Atsushi FukuiHiroshi MinamiYasuyuki Kusumoto
    • H01M4/58H01M4/38H01M4/62H01M4/48H01M6/14H01M4/82
    • H01M10/0587H01M4/134H01M2004/021Y02E60/122Y02P70/54Y10T29/49115
    • [Problem] An object of the invention is to provide a lithium secondary battery that shows good cycle performance and at the same time prevents a battery thickness increase due to charge-discharge cycles, and a method of manufacturing such a battery.[Means for Solving the Problem] A lithium secondary battery includes a negative electrode (2) having a negative electrode current collector (11) and a negative electrode active material layer (12) disposed on the negative electrode current collector (11), a positive electrode (1) having a positive electrode active material, a separator (3), and a non-aqueous electrolyte. The negative electrode active material layer includes negative electrode active material particles and a negative electrode binder, and the negative electrode active material particles include silicon particles and/or silicon alloy particles. The silicon particles and the silicon alloy particles have a crystallite size of 100 nm or less.
    • 发明内容本发明的目的是提供一种显示良好的循环性能并同时防止由于充放电循环引起的电池厚度增加的锂二次电池及其制造方法。 解决问题的手段锂二次电池包括具有负极集电体(11)的负极(2)和设置在负极集电体(11)上的负极活性物质层(12),正极 具有正极活性物质的电极(1),隔膜(3)和非水电解质。 负极活性物质层包括负极活性物质粒子和负极粘合剂,负极活性物质粒子包含硅粒子和/或硅合金粒子。 硅颗粒和硅合金颗粒的微晶尺寸为100nm以下。
    • 39. 发明授权
    • Waterproof/dustproof structure
    • 防水/防尘结构
    • US07319201B2
    • 2008-01-15
    • US11385862
    • 2006-03-22
    • Tomohiko KawaiKenzo EbiharaHiroshi Minami
    • Tomohiko KawaiKenzo EbiharaHiroshi Minami
    • H01H9/04
    • B23Q11/0858
    • A simple, inexpensive waterproof/dustproof structure for a movable mechanism such as a machine tool apparatus or the like, providing a liquid reservoir formed between the inner wall of a stationary member and the outer wall of a movable member at a portion equivalent to the entrance of a gap between the stationary member and the movable member. The leading edge of the movable member moves through a liquid LQ that fills the liquid reservoir. The liquid LQ seals off the interior of the apparatus from the exterior to prevent the entry of mist, dust and other foreign matter. The gap may be made comparatively broad without affecting the ability to prevent the entry of foreign matter. The direction of movement of the movable member may be longitudinal, lateral, reciprocal, rotary, or a combination thereof, depending on the type of movable mechanism to which the waterproof/dustproof structure is applied. The liquid LQ may be a working fluid used by a hydraulic bearing or a machining fluid used by a machine tool.
    • 一种用于诸如机床设备等的可移动机构的简单且廉价的防水/防尘结构,在静止构件的内壁和可移动构件的外壁之间形成有液体储存器 固定构件和可动构件之间的间隙。 可移动部件的前缘移动通过填充液体储存器的液体LQ。 液体LQ将设备的内部从外部密封,以防止雾,灰尘和其他异物进入。 这种差距可能相对较宽,而不影响防止异物进入的能力。 根据施加防水/防尘结构的可动机构的类型,可动构件的移动方向可以是纵向,横向,往复,旋转或其组合。 液体LQ可以是由机床使用的液压轴承或机械流体使用的工作流体。