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    • 2. 发明申请
    • BLOW-BY GAS RECIRCULATION DEVICE FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的气体再循环装置
    • US20140352673A1
    • 2014-12-04
    • US14374271
    • 2012-01-30
    • Jun Ikeda
    • Jun Ikeda
    • F01M13/00
    • F01M13/00F01M11/10F01M13/023F01M2013/027F02D41/0007F02D41/22F02D2250/08F02M25/06Y02T10/144
    • If the pressure of the section of the air intake path downstream of a compressor wheel becomes higher than the pressure of the section on the upstream side, a flow of air is produced in a bypass pipe and an ejector draws in blow-by gas from within a first gas pipe. The blow-by gas sucked into the ejector from the first gas pipe flows into the section of the air intake path upstream of the compressor wheel by way of the bypass pipe. The blow-by gas recirculation device has a structure in which the section of at least the bypass pipe or the first gas pipe that connects to the other components separates at the same time the other piping located in the vicinity of the internal combustion engine separates. The other piping is piping that will affect a monitorable engine operation state when separated.
    • 如果压缩机叶轮下游的进气道的部分的压力变得高于上游侧的部分的压力,则在旁通管中产生空气流,喷射器从内部吸入窜气 第一个气管。 从第一气体管道吸入喷射器的窜气通过旁通管流入压缩机叶轮上游的进气路径的部分。 窜气再循环装置具有这样的结构,其中连接到其它部件的至少旁通管或第一气体管的部分同时分离位于内燃机附近的另一管道。 其他管道是分离时会影响可监控发动机运行状态的管道。
    • 7. 发明申请
    • Color Adjustment Device and Method
    • 颜色调整装置及方法
    • US20090009525A1
    • 2009-01-08
    • US11791725
    • 2005-11-28
    • Tsuyoshi HirashimaShuichi OjimaJun IkedaRyouta HataShinya Kiuchi
    • Tsuyoshi HirashimaShuichi OjimaJun IkedaRyouta HataShinya Kiuchi
    • G09G5/02
    • H04N1/62H04N1/628H04N9/643H04N9/646
    • A color adjustment device (100) comprises an image characteristic amount acquiring unit (10), a specific-color-area determination unit (20), and a color compensation unit (30). The image characteristic amount acquiring unit (10) acquires the image characteristic amount of an input image from the average luminance or additional information of the input image. The specific-color-area determination unit (20) determines a specific color area based on the image characteristic amount. With reference to the specific color area, the color compensation unit (30) calculates the degree of similarity of the input color of the input image to the specific color, and performs the color adjustment of the input color of the input image with respect to at least one specific color. The area of the input image which is comparatively wide and possesses a color of the same system as the specific color is not wrongly recognized as the area of the specific color.
    • 颜色调整装置(100)包括图像特征量获取单元(10),特定颜色区域确定单元(20)和颜色补偿单元(30)。 图像特征量获取单元(10)从输入图像的平均亮度或附加信息获取输入图像的图像特征量。 特定颜色区域确定单元(20)基于图像特征量确定特定颜色区域。 参照特定的颜色区域,颜色补偿单元(30)计算输入图像的输入颜色与特定颜色的相似度,并且对输入图像的输入颜色进行颜色调整 至少一种特定的颜色。 相对较宽且具有与特定颜色相同系统的颜色的输入图像的区域未被错误地识别为特定颜色的区域。
    • 10. 发明授权
    • Dielectric ceramic, method for producing the same, laminated ceramic electronic element, and method for producing the same
    • 介电陶瓷,其制造方法,层叠陶瓷电子元件及其制造方法
    • US06205015B1
    • 2001-03-20
    • US09233335
    • 1999-01-20
    • Nobuyuki WadaJun IkedaTakashi HiramatsuYukio Hamaji
    • Nobuyuki WadaJun IkedaTakashi HiramatsuYukio Hamaji
    • H01G406
    • H01G4/1227C04B35/4682
    • A dielectric ceramic which exhibits an excellent electrostatic capacity-temperature characteristic; which allows use of a base metal such as nickel; which can be fired in a reducing atmosphere; and which is suitable for constituting a dielectric ceramic layer of a laminated ceramic electronic element such as a laminated ceramic capacitor; is obtained by firing barium titanate powder in which the c-axis/a-axis ratio in the perovskite structure is in the range of about 1.003 to 1.010 and the amount of OH groups in the crystal lattice is about 1 wt. % or less. The barium titanate powder a starting material preferably has a maximum particle size of about 0.5 &mgr;m or less and an average particle size of about 0.1-0.3 &mgr;m, and individual particles of the barium titanate powder comprise a low-crystallinity portion 21 and a high-crystallinity portion 23, with the diameter of the low-crystallinity portion being less than about 0.65 times the particle size of the powder. When sintered, the powder satisfies the ratio of (average grain size of the fired dielectric ceramic)/(average particle size of barium titanate powder serving as a starting material), which is referred to as R, of about 0.90-1.2, to thereby suppress considerable grain growth. A laminated ceramic electronic element including a laminate of a plurality of layers of the above-mentioned dielectric ceramic, as well as a method for producing the same, is described.
    • 表现出优异的静电电容 - 温度特性的介电陶瓷; 其允许使用诸如镍的贱金属; 可在还原气氛中燃烧; 适用于层叠陶瓷电容器等层叠陶瓷电子元件的介电陶瓷层的构成; 是通过煅烧其中钙钛矿结构中的c轴/ a轴比在约1.003至1.010的范围内并且晶格中的OH基的量为约1重量%的钛酸钡粉末而获得的。 % 或更少。 作为起始原料的钛酸钡粉末的最大粒径优选为0.5μm以下,平均粒径为0.1〜0.3μm左右,钛酸钡粉末的单个粒子为低结晶性部21, 结晶度部分23,低结晶度部分的直径小于粉末粒度​​的约0.65倍。 当烧结时,粉末满足作为R的(烧结后的电介质陶瓷的平均粒径)/(作为原料的钛酸钡粉末的平均粒径)为约0.90〜1.2的比例,由此 抑制可观的粮食增长。 描述了包括上述介电陶瓷的多层的叠层体的层压陶瓷电子元件及其制造方法。