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    • 1. 发明专利
    • Clathrate compound, thermoelectric conversion element, and manufacturing methods thereof
    • 层压复合材料,热电转换元件及其制造方法
    • JP2012222149A
    • 2012-11-12
    • JP2011086395
    • 2011-04-08
    • Denso CorpHiroshima Univ国立大学法人広島大学株式会社デンソー
    • KONO YASUSHITAGUCHI TAKASHITAKAHATA TOSHIROSAIGA YUTADING SU KAN
    • H01L35/14H01L35/34
    • PROBLEM TO BE SOLVED: To provide a clathrate compound which exhibits a higher performance index (ZT) in comparison to a BaGaSnthermoelectric conversion material and is less expensive, and a thermoelectric conversion element, and manufacturing methods thereof.SOLUTION: The clathrate compound comprises: a BaGaSnthermoelectric conversion material with the gallium partially substituted with copper which is cheaper than the gallium. In this case, the ratio of the copper in a preparation stage thereof represents from more than 0 to 2.0 or less. In the clathrate compound, the composition ratio (Cu×100/(Ba+Ga+Sn+Cu)) of the copper represents from more than 0 to 0.061 or less. It is found that the clathrate compound with the gallium substituted with the copper in this way, exhibits better numerical values in its Seebeck coefficient, specific resistance, and performance index (ZT) in comparison to a BaGaSnthermoelectric conversion material.
    • 要解决的问题:提供一种与Ba 16 相比表现出更高性能指数(ZT)的包合物化合物 Sn 30 热电转换材料,并且成本较低,并且热电转换元件及其制造方法。 &lt; P&gt;解决方案:包合化合物包括: Sn 30 < / SB>热电转换材料,其中镓部分被铜替代,其比镓便宜。 在这种情况下,其制备阶段的铜的比例为0〜2.0以下。 在层状化合物中,铜的组成比(Cu×100 /(Ba + Ga + Sn + Cu))大于0〜0.061以下。 与Ba 8相比,发现以这种方式用铜取代的镓的包合物化合物在其塞贝克系数,电阻率和性能指数(ZT)中表现出更好的数值 Ga 16 热电转换材料。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • 流量測定装置
    • 流量测量装置
    • JP2015007601A
    • 2015-01-15
    • JP2013133615
    • 2013-06-26
    • 株式会社デンソーDenso Corp
    • KONO YASUSHI
    • G01F1/684
    • 【課題】従来の流量測定装置は、流量センサと湿度センサとが個別に実装されている。これにより、ワイヤハーネスが長く、電気ノイズの影響を受け易くなるので、高応答で、且つ高精度に吸気の湿度を計測することができなくなるという課題があった。【解決手段】エアフロメータ1は、吸気ダクト2の吸気通路3内を流れる吸気の流量を検出する流量センサ4がセンサケース7のバイパス流路9の途中の流量センサ配置部31に設置され、吸気ダクト2の吸気通路3内を流れる吸気の温度を検出する温度センサ5が吸気ダクト2の吸気通路3に向けて開放された温度センサ配置部32に設置されているので、流量センサ配置部31を通過する吸気の流れが安定するため、高応答で、且つ高精度に空気の流量を計測することができる。これにより、エンジンの制御性の向上を図ることができる。【選択図】図2
    • 要解决的问题为了解决常规流量测量装置单独安装有流量传感器和湿度传感器的问题,并且因此,由于线束变长并且装置更容易受到电噪声的影响, 该设备不能以高响应和高精度测量吸入空气的湿度。解决方案:在空气流量计1中,用于检测在进气管道的进气通道3中流动的吸入空气的流量的流量传感器4 2安装在传感器壳体7的旁通流路9的中间的流量传感器配置单元31中,以及温度传感器5,用于检测在进气通道3的进气通路3中流动的吸入空气的温度 2安装在朝向进气管2的进气通道3开口的温度传感器配置单元32中,使得由于通过流量传感器配置单元31的吸入空气的流动为 稳定,可以以高响应和高精度测量空气的流量。 从而可以提高发动机的可控性。
    • 4. 发明专利
    • Flow rate measurement apparatus
    • 流量测量装置
    • JP2014077737A
    • 2014-05-01
    • JP2012226363
    • 2012-10-11
    • Denso Corp株式会社デンソー
    • KONO YASUSHI
    • G01F1/696
    • PROBLEM TO BE SOLVED: To provide a flow rate measurement apparatus capable of identifying a problem which has occurred on an AFM in which sensor output is adjusted in a state of being mounted on an air cleaner and increasing the accuracy of the AFM.SOLUTION: In an AFM1 sensor output is adjusted independently before the AFM1 is mounted on an air cleaner 4 and in a state after mounted on an air cleaner 4. Data on the independent state, which is obtained when the sensor output is adjusted in a state before the AFM1 is mounted on the air cleaner 4, is stored for a long period of time. When a problem is generated on the AFM1, output characteristic of the AFM1 is measured to compare the measured data to the stored independent-state data. With this, the location of the problem can be easily identified, which was conventionally difficult. In the AFM1, since the sensor output is adjusted before the AFM1 is mounted on the air cleaner 4, the adjustment range of the sensor output after mounted on the air cleaner 4 can be reduced. As a result, a fine adjustment can be made resulting in an enhanced measurement accuracy.
    • 要解决的问题:提供一种流量测量装置,其能够识别在安装在空气滤清器上的状态下调节传感器输出的AFM上发生的问题并提高AFM的精度。解决方案:在 AFM1传感器输出在AFM1安装在空气滤清器4上并在安装在空气滤清器4上之后的状态下独立调节。独立状态下的数据是在AFM1之前的状态下调节传感器输出时获得的 安装在空气滤清器4上,长时间贮存。 当AFM1产生问题时,测量AFM1的输出特性,将测量数据与存储的独立状态数据进行比较。 由此,可以容易地识别问题的位置,这通常是困难的。 在AFM1中,由于在将AFM1安装在空气滤清器4之前调节传感器输出,所以可以减小安装在空气滤清器4上的传感器输出的调整范围。 结果,可以进行微调,从而提高测量精度。
    • 5. 发明专利
    • Air flow rate measuring apparatus
    • 空气流量测量装置
    • JP2013213834A
    • 2013-10-17
    • JP2013147507
    • 2013-07-16
    • Denso Corp株式会社デンソー
    • KONO YASUSHIYAMAGUCHI JUNZO
    • G01F1/692
    • PROBLEM TO BE SOLVED: To improve detection accuracy of an air flow rate by setting a sheet resistance of a lead section 43 lower than a sheet resistance of a temperature measuring section 8 without increasing a cost in a detection unit of an air flow rate measuring apparatus.SOLUTION: An impurity density of the lead section 43 is enhanced more than the impurity density of the temperature measuring section 8, such that the sheet resistance of the lead section 43 is set lower than the sheet resistance of the temperature measuring section 8. This configuration can negligibly minimize a voltage drop in the lead section 43 compared with a voltage drop in the temperature measuring section 8 so as to improve sensibility of the temperature measuring section 8 with respect to a flow rate signal, thus improving the detection accuracy of the air flow rate. Providing a difference in the impurity densities between the temperature measuring section 8 and the lead section 43 can be implemented without increasing the cost. However, the impurity density of a specific range 51 of the lead section 43 that is continuously extended from the temperature measuring section 8 is set similar to that of the temperature measuring section 8.
    • 要解决的问题:通过将引导部43的薄层电阻设定为低于温度测量部8的薄层电阻,来提高空气流量的检测精度,而不会增加空气流量测量装置的检测单元中的成本 解决方案:引线部分43的杂质浓度比温度测量部分8的杂质浓度增加,使得引线部分43的薄层电阻被设定为低于温度测量部分8的薄层电阻。这 与温度测量部分8中的电压降相比,可以将引线部分43的电压降可以忽略不计,从而提高温度测量部分8相对于流量信号的灵敏度,从而提高空气的检测精度 流量。 可以在不增加成本的情况下实现温度测量部分8和引线部分43之间的杂质浓度的差异。 然而,从温度测量部分8连续延伸的引线部分43的特定范围51的杂质浓度被设置为类似于温度测量部分8的杂质浓度。
    • 6. 发明专利
    • Throttle device
    • 节流装置
    • JP2013181481A
    • 2013-09-12
    • JP2012046690
    • 2012-03-02
    • Denso Corp株式会社デンソー
    • KONO YASUSHI
    • F02D11/10F02D9/02
    • PROBLEM TO BE SOLVED: To provide a throttle device for holding a valve in horizontal opening without using motor drive, and capable of holding the valve in the horizontal opening when a motor is powered on.SOLUTION: A throttle device includes a stopper means 16 for regulating rotation in the opening direction rather than the horizontal opening of a valve 4, and applying biasing force in a closing direction to the valve 4. The valve 4 can be held in the horizontal opening by the stopper means 16 and an open spring 15 without using motor drive. Even when the valve is turned in the opening direction beyond the horizontal opening when returning the valve 4 to control fully-opened opening from a closing position by the motor drive, an impact due to a collision between a stopper part 17 and a stopper member 18 can be absorbed by the biasing force of the stopper means 16, so that there is no need to set the control fully-opened opening to the closing direction side more than machine fully-opened opening, the valve 4 can be held in the horizontal opening even when the motor is powered on.
    • 要解决的问题:提供一种用于在不使用电动机驱动的情况下将阀保持在水平开口中并且当电动机通电时能够将阀保持在水平开口中的节流装置。解决方案:节流装置包括止动装置16, 调节旋转方向而不是阀4的水平开度,并向阀4提供关闭方向的偏压力。阀4可以通过止动装置16和打开弹簧15保持在水平开口中,而没有 使用电机驱动。 即使当阀门在打开方向上超过水平开口而转动时,阀4从电动机驱动器的关闭位置控制完全打开的开口,由于止动件17和止动件18之间的碰撞而产生冲击 可以通过止动装置16的偏置力吸收,使得不需要比机器完全打开开口更多地设置关闭方向侧的控制完全打开开口,所以阀4可以保持在水平开口 即使电机通电。
    • 8. 发明专利
    • Flow measurement device
    • 流量测量装置
    • JP2012093155A
    • 2012-05-17
    • JP2010239272
    • 2010-10-26
    • Denso Corp株式会社デンソー
    • KONO YASUSHIBAN TAKAHISAMIZUTANI AKITOSHI
    • G01F1/684G01F1/00G01F15/04
    • F02D41/18F02D41/28F02D2041/286F02D2041/288G01F1/6842G01F1/696G01F1/72
    • PROBLEM TO BE SOLVED: To provide a flow measurement device with an A/D conversion circuit for converting a flow voltage signal to be an output signal from a flow sensor into digital data and outputting the digital data, which reduces output variations and improves flow detection accuracy.SOLUTION: A flow measurement device 1 includes a digital arithmetic part 14 performing arithmetic processing by using digital data (flow digital data) of a flow voltage signal, in which average processing on the flow digital data is performed by moving average in at least continuous prescribed number which is equal to or more than two. Namely, the average processing on the flow digital data is performed in the flow measurement device 1. Accordingly, the average processing can be performed by using all of the flow digital data in the flow measurement device 1, thereby improving accuracy of the average processing as compared with a case where the average processing is performed in an ECU 17 by taking data in the ECU 17.
    • 要解决的问题:提供一种具有A / D转换电路的流量测量装置,用于将来自流量传感器的流量电压信号转换为数字数据并输出数字数据,从而降低输出变化和 提高流量检测精度。 流量测量装置1包括数字运算部分14,通过使用流量电压信号的数字数据(流量数字数据)进行运算处理,其中流量数字数据的平均处理是通过在 最小连续规定数等于或大于2。 即,在流量测量装置1中进行流量数字数据的平均处理。因此,可以通过使用流量测量装置1中的所有流量数字数据进行平均处理,从而将平均处理的精度提高为 与通过在ECU 17中获取数据在ECU 17中进行平均处理的情况相比较。(C)2012年,JPO和INPIT
    • 9. 发明专利
    • Throttle valve device
    • 节流阀装置
    • JP2012026382A
    • 2012-02-09
    • JP2010166975
    • 2010-07-26
    • Denso Corp株式会社デンソー
    • KONO YASUSHI
    • F02D9/10F02D9/02
    • PROBLEM TO BE SOLVED: To prevent water or foreign matter from entering a storage space 9 which stores a driver of a throttle valve of a throttle valve device and to prevent a lid 8 from breaking even if internal pressure of the storage space 9 continues to rise.SOLUTION: In the throttle valve device, a joint part 27 of a housing part 5 and the lid 8 is sealed by a seal member 33 which contacts the outer circumferential surface 28 of the housing and the outer circumferential surface 29 of the lid and covers a boundary 30 from the outer circumference by elastic restoration. Thereby the seal member 33 covers the boundary 30 from the outer circumference and entry of the foreign matter or water into the storage space 9 through the boundary 30 can be prevented. When internal pressure of the storage space 9 continues to rise, the seal member 33 is elastically deformed by pressure which is going to leak to the outside from the boundary 30 and pressure is released, thereby preventing the lid 8 from breaking.
    • 要解决的问题:为了防止水或异物进入存储节气门装置的节流阀的驱动器的储存空间9,并且即使即使存储空间9的内部压力也防止盖8断裂 继续上升 解决方案:在节气门装置中,壳体部分5的接合部分27和盖8被密封构件33密封,密封构件33接触壳体的外周表面28和盖的外周表面29 并通过弹性恢复从外周覆盖边界30。 因此,密封构件33从外周覆盖边界30,并且可以防止异物或水通过边界30进入存储空间9。 当存储空间9的内部压力继续上升时,密封构件33由于从边界30泄漏到外部的压力而弹性变形,并且释放压力,从而防止盖8断裂。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Air flow rate measuring device
    • 空气流量测量装置
    • JP2011128080A
    • 2011-06-30
    • JP2009288323
    • 2009-12-18
    • Denso Corp株式会社デンソー
    • KONO YASUSHIYAMAGUCHI JUNZO
    • G01F1/692
    • G01F1/6842G01F1/6845G01F1/698G01F1/699
    • PROBLEM TO BE SOLVED: To heighten detection accuracy of an air flow rate by setting a sheet resistance of a lead part 43 to be lower than a sheet resistance of a temperature measuring part 8 without increasing cost, in a detection part of an air flow rate measuring device.
      SOLUTION: An impurity concentration of the lead part 43 is set to be higher than an impurity concentration of the temperature measuring part 8, to thereby set the sheet resistance of the lead part 43 to be lower than the sheet resistance of the temperature measuring part 8. Hereby, a voltage drop at the lead part 43 can be reduced to the negligible degree in comparison with a voltage drop at the temperature measuring part 8, and sensitivity of the temperature measuring part 8 to a flow rate signal can be heightened, to thereby heighten detection accuracy of the air flow rate. A difference of the impurity concentration can be set without increasing cost between the temperature measuring part 8 and the lead part 43. Consequently, the detection accuracy of the air flow rate can be heightened by setting the sheet resistance of the lead part 43 to be lower than the sheet resistance of the temperature measuring part 8 without increasing cost.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提高空气流量的检测精度,通过将引线部43的薄层电阻设定为低于温度测量部8的薄层电阻而不增加成本,在 空气流量测量装置。 解决方案:引线部分43的杂质浓度设定为高于温度测量部分8的杂质浓度,从而将引线部分43的薄层电阻设置为低于温度的薄层电阻 因此,与温度测量部分8的电压降相比,引线部分43处的电压降可以降低到可忽略的程度,并且可以提高温度测量部分8对流量信号的灵敏度 ,从而提高空气流量的检测精度。 可以在温度测量部分8和引线部分43之间不增加成本来设置杂质浓度的差异。因此,通过将引线部分43的薄层电阻设置为较低,可以提高空气流速的检测精度 比没有增加成本的温度测量部件8的薄层电阻。 版权所有(C)2011,JPO&INPIT