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    • 4. 发明专利
    • Gas collector
    • 气体收集器
    • JP2010276566A
    • 2010-12-09
    • JP2009131813
    • 2009-06-01
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • KIZAKI YOSHIMI
    • G01N1/22
    • PROBLEM TO BE SOLVED: To collect a desired volume of gas in a collection bag 3 even if there is a pressure difference between the inside and the outside of a container 2 for collecting a gas.
      SOLUTION: Pressure values of the inside and the outside of the container 2 are measured by a pressure gauge 13 inside the container 2 and a pressure gauge 14 outside the container 2 to determine the difference in pressure. Thus, an exhaust pump 4 is driven, while a gas volume collected in the collection bag 3 is calculated in response to the difference.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:即使在用于收集气体的容器2的内部和外部之间存在压力差,也收集收集袋3中的所需体积的气体。 解决方案:容器2的内部和外部的压力值通过容器2内部的压力计13和容器2外部的压力计14来测量,以确定压力差。 因此,驱动排气泵4,同时根据该差异计算收集在收集袋3中的气体体积。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Material detector and material detecting method
    • 材料检测和材料检测方法
    • JP2009098135A
    • 2009-05-07
    • JP2008246348
    • 2008-09-25
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • KIZAKI YOSHIMIKARASAWA MASANOBUTAKEGAWA HIDETOTANAKA SHIHO
    • G01N21/3504G01N21/35
    • PROBLEM TO BE SOLVED: To provide a material detector capable of improving detection accuracy of material though it is small in consideration of the fact, and to provide a material detecting method capable of achieving accurate material detection with a small detector. SOLUTION: This portable NOx detector 10 comprises an infra-red light source 26, an optical ring cell 20 for forming a closed optical path C where light can be circulated by four or more reflection mirrors 22, an optical chopper 30 for making the infra-red light come from the infra-red light source 26 to the closed optical path C and making the infra-red light go from the closed optical path C to the outside of the optical ring cell 20, and a highly sensitive MCT device 36 for outputting a signal according to the intensity of the infra-red light made to go out of the closed optical path C. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够提高材料的检测精度的材料检测器,尽管考虑到这个事实,其能够小,并且提供能够利用小型检测器实现准确的材料检测的材料检测方法。 解决方案:该便携式NOx检测器10包括红外光源26,用于形成闭合光路C的光环单元20,其中光可以由四个或更多个反射镜22循环,光学切割器30用于制造 红外光源从红外光源26到达封闭光路C,并使红外光从封闭光路C移动到光环电池20的外部,并且高灵敏度的MCT器件 36,用于根据从闭合光路C出来的红外光的强度来输出信号。C.版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Pump and actuator
    • 泵和执行器
    • JP2014169691A
    • 2014-09-18
    • JP2013151827
    • 2013-07-22
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • KUGIMOTO TSUNEKIZAKI YOSHIMI
    • F04D33/00
    • F04B19/006F04B19/20
    • PROBLEM TO BE SOLVED: To efficiently generate heat transition flow, in a pump and an actuator utilizing heat transition flow.SOLUTION: By irradiating, from a light source 24, a surface 10a of a porous body with infrared light 44 of a wavelength band against which a silicon dioxide material of a porous body film 10 has optical absorption property, the energy of the irradiated infrared light 44 can be efficiently absorbed into the porous body film 10 through the surface 10a, and the surface 10a of the porous body film 10 can be efficiently heated. Consequently, heat transition flow 40 can be efficiently generated inside the porous body film 10, and differential pressure between a first space 16 and a second space 18 can be efficiently generated.
    • 要解决的问题:在利用热过渡流的泵和致动器中有效地产生热转换流。解决方案:通过从波长带的红外光44照射来自光源24的多孔体的表面10a, 其中多孔体膜10的二氧化硅材料具有光吸收特性,可以通过表面10a将照射的红外光44的能量有效地吸收到多孔体膜10中,多孔体膜10的表面10a可以 有效加热 因此,能够在多孔体膜10内部有效地产生热转移流40,能够有效地产生第一空间16和第二空间18之间的压差。
    • 8. 发明专利
    • Exhaust emission control device and method of internal combustion engine
    • 排气控制装置及内燃机的方法
    • JP2013072398A
    • 2013-04-22
    • JP2011213264
    • 2011-09-28
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • SHICHI AKIRAKIZAKI YOSHIMIUEDA MATSUEAKIHAMA KAZUHIRO
    • F01N3/08F01N3/24
    • PROBLEM TO BE SOLVED: To prevent reduction in exhaust emission control performance, even when a low temperature area of hardly activating a catalyst continues over a long time.SOLUTION: A reformer 14 reforms nitrogen monoxide and hydrocarbon included in a toxic component in exhaust gas from an internal combustion engine 10 into water-soluble gas. A water-soluble gas absorbing device 15 separates and removes the toxic component reformed into the water-soluble gas by the reformer 14 from the exhaust gas by being absorbed to an absorbing liquid including water. An exhaust emission control catalyst 16 purifies the toxic component including carbon monoxide passed through the water-soluble gas absorbing device 15 without being absorbed to the absorbing liquid.
    • 要解决的问题为了防止排气排放控制性能的降低,即使在几乎不活化催化剂的低温区域长时间持续的情况下也是如此。 解决方案:重整器14将包含在来自内燃机10的废气中的有毒成分中的一氧化氮和烃改性为水溶性气体。 水溶性气体吸收装置15通过吸收到包含水的吸收液体而从重排器14分离并除去由重整器14重整成水溶性气体的有毒成分。 废气排放控制催化剂16净化含有通过水溶性气体吸收装置15的一氧化碳的有毒成分,而不被吸收液吸收。 版权所有(C)2013,JPO&INPIT
    • 9. 发明专利
    • Degreased degree determining device and method
    • 度数测定装置及方法
    • JP2011107029A
    • 2011-06-02
    • JP2009263978
    • 2009-11-19
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • OISHI YOSHIHIKOFUKUI KENJIKIZAKI YOSHIMIAKIHAMA KAZUHIROSUNAMI SEIICHI
    • G01N21/64G01B11/08G01B11/28
    • PROBLEM TO BE SOLVED: To detect automatically a degreased state of a measuring object surface, regardless of oil properties on a quantitative basis, without being influenced by the procedure of a manufacturing process or by individual weight. SOLUTION: A device includes a light source 14 for irradiating a sample 30 with light; a camera 32 for detecting fluorescence from the sample 30; and a means for determining degreasing uniformity and a degreasing condition of the sample 30 by using at least two indexes, namely, a first index acquired by subjecting a fluorescence intensity distribution to space pattern analysis and a second index acquired, by subjecting the fluorescence intensity distribution to statistical analysis. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:在不受制造过程的过程或单独重量的影响的情况下,自动检测测量对象表面的脱脂状态,而不考虑油性质。 解决方案:一种装置包括用于用光照射样品30的光源14; 用于检测来自样品30的荧光的照相机32; 以及通过使用至少两个指标来确定样品30的脱脂均匀性和脱脂条件的手段,即通过对荧光强度分布进行空间图案分析和获得的第二指标获得的第一指标,通过使荧光强度分布 进行统计分析。 版权所有(C)2011,JPO&INPIT