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    • 22. 发明授权
    • Life estimation device and life estimation method for rolling bearing
    • 滚动轴承寿命估计装置及寿命估算方法
    • US09329100B2
    • 2016-05-03
    • US13979784
    • 2012-01-12
    • Takashi ItoTakumi Fujita
    • Takashi ItoTakumi Fujita
    • G01M13/04
    • G01M13/04G01M13/045
    • A lifetime estimation device to estimate a lifetime of a rolling bearing assembly comprising inner and outer rings includes a buildup height estimation unit to estimate in accordance with a predetermined rule a buildup height of the indentation based on the inputted depth of the indentation or the inputted indentation size; and a lifetime estimation unit to estimate the lifetime of the rolling bearing assembly, the lifetime estimation unit being configured to determine a preliminary estimate of the lifetime of the rolling bearing assembly based on a dynamic equivalent load, determine a rate of reduction in a rolling fatigue life based on the buildup height of the indentation, and apply the determined rate of reduction in a rolling fatigue life to the preliminary estimate of the lifetime of the rolling bearing assembly to determine an estimate of the lifetime of the rolling bearing assembly.
    • 用于估计包括内环和外环的滚动轴承组件的寿命的寿命估计装置包括累积高度估计单元,其基于所输入的压痕深度或输入的凹痕根据预定规则估计压痕的累积高度 尺寸; 以及寿命估计单元,其估计所述滚动轴承组件的寿命,所述寿命估计单元被配置为基于动态等效载荷来确定所述滚动轴承组件的寿命的初步估计,确定滚动疲劳减少率 基于压痕的积聚高度的寿命,并将确定的滚动疲劳寿命的降低速率应用于滚动轴承组件的寿命的初步估计,以确定滚动轴承组件的寿命的估计。
    • 23. 发明授权
    • Image processing device and method
    • 图像处理装置及方法
    • US09153015B2
    • 2015-10-06
    • US14002144
    • 2012-01-31
    • Yoshitaka ToyodaDaisuke SuzukiKoichi YamashitaTakashi ItoNarihiro Matoba
    • Yoshitaka ToyodaDaisuke SuzukiKoichi YamashitaTakashi ItoNarihiro Matoba
    • G06T5/20H04N5/21G06T5/00
    • G06T5/20G06T5/002G06T5/008G06T2207/20182H04N5/21
    • For each pixel in an image (Din), a contrast correlation value (CT) is detected for peripheral areas centered around the pixel to be corrected (1), a contrast enhancement coefficient (Ken) is determined in accordance with the contrast correlation value (CT) (2), and in accordance with the enhancement coefficient (Ken), local contrast is enhanced for each pixel and an intermediate image (D3) is generated (3). When performing noise reduction (5) by smoothing the intermediate image (D3) in the time direction, the degree of noise reduction is controlled in accordance with a noise reduction coefficient (Knr) that is large where the enhancement coefficient (Ken) is large. With respect to a low-contrast image such as one captured under fog, haze or other poor weather conditions, the contrast in areas having reduced contrast is appropriately improved, and the noise that is enhanced in conjunction with contrast improvement is reduced, enabling a high quality image to be obtained.
    • 对于图像(Din)中的每个像素,以围绕待校正像素(1)为中心的周边区域检测对比度相关值(CT),根据对比度相关值( CT)(2),并且根据增强系数(Ken),对于每个像素增强局部对比度,并且生成中间图像(D3)(3)。 当通过在时间方向上平滑中间图像(D3)来执行降噪(5)时,根据增强系数(Ken)大的噪声降低系数(Knr)来控制噪声降低的程度。 对于诸如在雾,雾或其他差的天气条件下捕获的低对比度图像,适当地改善了对比度降低的区域中的对比度,并且降低了与对比度改善相结合的噪声,使得能够高 要获得质量图像。
    • 24. 发明授权
    • Gas sensor and method for manufacturing same
    • 气体传感器及其制造方法
    • US09091646B2
    • 2015-07-28
    • US13013094
    • 2011-01-25
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • G01N27/26G01N27/407G01N33/00
    • G01N27/4077G01N27/4075G01N33/0037Y02A50/245
    • A NOx sensor 100 includes a sensor device 110 and a heater 70 capable of heating the sensor device 110. The sensor device 110 includes an inner pump electrode 22 and an outer pump electrode 23 disposed respectively on the inner side and the outer side of a solid electrolyte layer 6. The sensor device 110 detects the concentration of NOx by introducing a gas to be measured into a first inner vacancy 20, pumping out oxygen in the gas to be measured from the inner pump electrode 22 to the outer pump electrode 23, introducing the gas to be measured, from which the oxygen has been pumped out, into a second inner vacancy 40, reducing the NOx in the gas to be measured, to thereby generate oxygen, and detecting the generated oxygen. A characteristic stabilizing layer 24 covers the outer pump electrode 23 and is made of a porous body with a thickness of 10 to 200 μm and a thickness variation of 20% or less.
    • NOx传感器100包括能够加热传感器装置110的传感器装置110和加热器70.传感器装置110包括分别设置在固体的内侧和外侧的内泵电极22和外泵电极23 电解质层6.传感器装置110通过将待测量的气体引入第一内部空间20来检测NOx的浓度,从内部泵电极22向外部泵电极23抽出待测量的气体中的氧气,引入 待被测量的气体已被排出氧气,进入第二内部空位40,减少要测量的气体中的NOx,从而产生氧气,并检测所产生的氧气。 特性稳定层24覆盖外泵电极23,由厚度为10〜200μm,厚度变化为20%以下的多孔体构成。
    • 29. 发明授权
    • Liquid ejection apparatus
    • 液体喷射装置
    • US08708451B2
    • 2014-04-29
    • US13429823
    • 2012-03-26
    • Takashi Ito
    • Takashi Ito
    • B41J2/165
    • B41J2/16552B41J2/16508
    • A liquid ejection apparatus includes a head for ejecting liquid, a cap unit for sealing an ejection surface of the head, a humidified air supply mechanism for performing a humidifying operation; a forcible discharge mechanism for performing a forcible discharge operation of forcibly discharging liquid from the ejection ports, a measuring unit for measuring a lapse time after a power supply becomes off and until the power supply becomes on, and a control unit for controlling the humidifying operation when the power supply becomes off, and controlling the forcible discharge operation when the power supply becomes on. When the power supply becomes on, the control unit controls the humidifying operation before performing the forcible discharge operation based on whether the lapse time measured by the measuring unit exceeds a predetermined time.
    • 液体喷射装置包括用于喷射液体的头部,用于密封头部喷射表面的盖单元,用于进行加湿操作的加湿空气供应机构; 强制排出机构,用于执行从喷射口强制排出液体的强制排放操作;测量单元,用于测量电源关闭之后直到电源打开时的经过时间;以及控制单元,用于控制加湿操作 当电源断开时,并且当电源接通时控制强制放电操作。 当电源打开时,控制单元根据由测量单元测量的经过时间是否超过预定时间,在执行强制放电操作之前控制加湿操作。
    • 30. 发明授权
    • Liquid ejecting head
    • 液体喷头
    • US08591017B2
    • 2013-11-26
    • US13007133
    • 2011-01-14
    • Takashi Ito
    • Takashi Ito
    • B41J2/175
    • B41J2/17563
    • A liquid ejecting head having a liquid-flow space through which a liquid flows from a liquid supply source toward liquid-drop ejecting nozzles, a generally planar partition portion extending in a direction intersecting a vertical direction and partially defining the liquid-flow space, and further partially defining first and second chambers such that the two chambers are arranged in a horizontal direction on respective opposite sides of the partition wall, the first and second chambers having a larger dimension in the vertical direction than in the horizontal direction, in cross section taken in a plane parallel to the vertical direction and a direction of arrangement of the two chambers, and a planar filter fixed to the partition portion so as to extend in a direction intersecting the horizontal direction, along a surface of the partition portion and configured to capture foreign matters contained in the liquid in at least one of the two chambers.
    • 一种具有液体流动空间的液体喷射头,液体从液体供应源流向液滴喷射喷嘴,大致平面的分隔部分沿与垂直方向交叉的方向延伸并部分地限定液体流动空间;以及 进一步部分地限定第一和第二室,使得两个室在分隔壁的相应相对侧上沿水平方向布置,第一和第二室在垂直方向上具有比在水平方向上更大的尺寸,在截面中 在平行于垂直方向的平面和两个室的布置方向上,沿着分隔部分的表面沿着与水平方向相交的方向固定到分隔部分的平面过滤器,并被配置成捕获 包含在两个腔室中的至少一个中的液体中的异物。