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    • 22. 发明申请
    • PARTICULATE MATTER DETECTION DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 颗粒物检测装置及其制造方法
    • US20100071441A1
    • 2010-03-25
    • US12559762
    • 2009-09-15
    • Takeshi SakumaAtsuo KondoTakashi Egami
    • Takeshi SakumaAtsuo KondoTakashi Egami
    • G01N37/00F01N11/00
    • G01N15/0656Y10T29/49002
    • A particulate matter detection device including a main body which has one end provided with a through hole; a pair of electrodes embedded in a wall through which the through hole is formed, and covered with a dielectric material; wires extending from the electrodes to the other end of the main body; and a ground electrode provided at a position sandwiched between the wires. The device can electrically adsorb, on the wall surface of the through hole, a charged particle in a fluid flowing into the through hole, or a particle charged by electric discharge caused in the through hole by applying a voltage across the pair of electrodes. The device can measure the changes of the electric properties of the wall through which the through hole is formed, thereby detecting particles adsorbed on the wall surface of the through hole.
    • 一种颗粒物质检测装置,包括:主体,其一端设有通孔; 一对电极,嵌入到壁中,通孔穿过该电极形成,并被电介质材料覆盖; 从电极延伸到主体的另一端的电线; 以及设置在夹在电线之间的位置处的接地电极。 该装置可以在通孔的壁面上电吸附流入通孔的流体中的带电粒子,或者通过在该对电极上施加电压而在通孔中引起的放电所带来的粒子。 该装置可以测量形成通孔的壁的电特性的变化,从而检测吸附在通孔的壁表面上的颗粒。
    • 23. 发明授权
    • Particulate matter detection device and method for manufacturing the same
    • 颗粒物检测装置及其制造方法
    • US08278907B2
    • 2012-10-02
    • US12559762
    • 2009-09-15
    • Takeshi SakumaAtsuo KondoTakashi Egami
    • Takeshi SakumaAtsuo KondoTakashi Egami
    • G01N27/00
    • G01N15/0656Y10T29/49002
    • A particulate matter detection device including a detection device main body which has one end provided with a through hole a pair of electrodes embedded in a wall through which the through hole is formed, and covered with a dielectric material; wires extending from the electrodes to the other end of the main body; and a ground electrode provided at a position sandwiched between the wires. The device can electrically adsorb, on the wall surface of the through hole, a charged particle in a fluid flowing into the through hole, or a particle charged by electric discharge caused in the through hole by applying a voltage across the pair of electrodes. The device can measure the changes of the electric properties of the wall through which the through hole is formed, thereby detecting particles adsorbed on the wall surface of the through hole.
    • 一种颗粒物检测装置,包括检测装置主体,该检测装置主体的一端设有通孔,一对电极嵌入到形成有通孔的壁中,并被电介质材料覆盖; 从电极延伸到主体的另一端的电线; 以及设置在夹在电线之间的位置处的接地电极。 该装置可以在通孔的壁面上电吸附流入通孔的流体中的带电粒子,或者通过在该对电极上施加电压而在通孔中引起的放电所带来的粒子。 该装置可以测量形成通孔的壁的电特性的变化,从而检测吸附在通孔的壁表面上的颗粒。
    • 26. 发明授权
    • Particulate matter detection device and particulate matter detection method
    • 颗粒物检测装置和颗粒物检测方法
    • US07862649B2
    • 2011-01-04
    • US12541424
    • 2009-08-14
    • Takeshi SakumaYasumasa FujiokaAtsuo Kondo
    • Takeshi SakumaYasumasa FujiokaAtsuo Kondo
    • B03C3/68
    • G01N15/0656F01N2560/05Y10S55/10
    • A particulate matter detection device includes a collection electrode that collects the particulate matter, a discharge electrode that allows a corona discharge to occur when a voltage is applied between the collection electrode and the discharge electrode, a measurement electrode, the impedance between the collection electrode and the measurement electrode changing when the collection electrode has collected the particulate matter, and a measurement section that detects a change in the impedance between the collection electrode and the measurement electrode, the particulate matter detection device detecting the particulate matter by charging the particulate matter contained in the gas by utilizing the corona discharge, collecting the charged particulate matter by the collection electrode by utilizing an electrostatic force, and detecting a change in the impedance between the collection electrode that has collected the particulate matter and the measurement electrode using the measurement section.
    • 颗粒物检测装置包括收集颗粒物的收集电极,当在收集电极和放电电极之间施加电压时允许发生电晕放电的放电电极,测量电极,收集电极和 所述测定电极在所述收集电极收集了所述颗粒物质时变化;以及测量部,其检测所述收集电极和所述测量电极之间的阻抗的变化,所述颗粒物质检测装置通过将含有 通过利用电晕放电的气体,通过利用静电力收集电极的带电粒子物质,并使用测量来检测收集了颗粒物质的收集电极与测量电极之间的阻抗变化 ent部分。
    • 27. 发明申请
    • Particulate matter detection device and particulate matter detection method
    • 颗粒物检测装置和颗粒物检测方法
    • US20100000404A1
    • 2010-01-07
    • US12541424
    • 2009-08-14
    • Takeshi SakumaYasumasa FujiokaAtsuo Kondo
    • Takeshi SakumaYasumasa FujiokaAtsuo Kondo
    • B03C3/68
    • G01N15/0656F01N2560/05Y10S55/10
    • A particulate matter detection device includes a collection electrode that collects the particulate matter, a discharge electrode that allows a corona discharge to occur when a voltage is applied between the collection electrode and the discharge electrode, a measurement electrode, the impedance between the collection electrode and the measurement electrode changing when the collection electrode has collected the particulate matter, and a measurement section that detects a change in the impedance between the collection electrode and the measurement electrode, the particulate matter detection device detecting the particulate matter by charging the particulate matter contained in the gas by utilizing the corona discharge, collecting the charged particulate matter by the collection electrode by utilizing an electrostatic force, and detecting a change in the impedance between the collection electrode that has collected the particulate matter and the measurement electrode using the measurement section.
    • 颗粒物检测装置包括收集颗粒物的收集电极,当在收集电极和放电电极之间施加电压时允许发生电晕放电的放电电极,测量电极,收集电极和 所述测定电极在所述收集电极收集了所述颗粒物质时变化;以及测量部,其检测所述收集电极和所述测量电极之间的阻抗的变化,所述颗粒物质检测装置通过将含有 通过利用电晕放电的气体,通过利用静电力收集电极的带电粒子物质,并使用测量来检测收集了颗粒物质的收集电极与测量电极之间的阻抗变化 ent部分。
    • 29. 发明授权
    • Particulate material detecting apparatus
    • 颗粒物检测装置
    • US07846241B2
    • 2010-12-07
    • US12542805
    • 2009-08-18
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • B03C3/12B03C3/68
    • G01N15/0656G01M15/102
    • A particulate matter detecting apparatus (100) includes a detecting apparatus main body having a cavity (2) that is formed through the detecting apparatus main body, a particle charging section (3) that can charge particulate matter that has entered the cavity through an inflow-side end (6) of the cavity, a collection section (4) that can collect the particulate matter charged by the particle charging section (3) and measure the amount of the particulate matter, and an ion wind generation section (5) that allows the particulate matter charged by the particle charging section (3) to flow toward an outflow-side end (7) of the cavity, the particle charging section, the collection section (4), and the ion wind generation section (5) being provided inside the cavity in this order from the inflow-side end (6). The particulate matter detecting apparatus has a reduced size, shows only a small measurement error, and can be produced inexpensively.
    • 一种颗粒物检测装置(100),包括:检测装置主体,具有通过检测装置主体形成的空腔(2);粒子充填部(3),其能够通过流入 (6)的收集部(4),能够收集粒状物充填部(3)所装载的粒子状物并测定粒子状物的量的收集部(4)和离子风生成部(5) 允许由颗粒充填部分(3)装入的颗粒物质流向空腔的流出侧端部(7),颗粒充电部分,收集部分(4)和离子风发生部分(5)为 从流入侧端部(6)依次设置在空腔内。 颗粒物检测装置的尺寸减小,仅显示小的测量误差,并且可以廉价地生产。