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    • 22. 发明授权
    • Particulate matter detection device
    • 颗粒物检测装置
    • US08230721B2
    • 2012-07-31
    • US12715617
    • 2010-03-02
    • Masahiro TokudaTakashi EgamiTakeshi SakumaAtsuo Kondo
    • Masahiro TokudaTakashi EgamiTakeshi SakumaAtsuo Kondo
    • G01N37/00
    • G01N27/68G01N15/0656
    • A particulate matter detection device (100) includes a detection device body (1) extending in one direction and having at least one through-hole (2) that is formed at one end (1a), at least one pair of electrodes buried in the wall of the body (1) that defines the through-hole (2), and covered with a dielectric, lines respectively extending from the pair of electrodes toward the other end (1b), a takeout lead terminal (12a) of one electrode of the pair of electrodes disposed on the surface of the other end (1b), a takeout lead terminal (11a) of the other electrode of the pair of electrodes between one end (1a) and the other end (1b), and an electric wire (21) provided with an electric wire securing member (31) at its tip portion, and bonded to the takeout lead terminal (11a) through the electric wire securing member (31).
    • 一种颗粒物检测装置(100),包括:检测装置主体(1),其在一个方向上延伸并且具有至少一个形成在一端(1a)的通孔(2),至少一对电极埋在 限定通孔(2)的主体(1)的壁,并且被电介质覆盖,所述电介质分别从所述一对电极延伸到另一端(1b);一个电极的取出引线端子(12a) 设置在另一端(1b)的表面上的一对电极,一端(1a)和另一端(1b)之间的一对电极的另一电极的取出引线端子(11a)和电线 (21),其前端设有电线固定部件(31),并通过电线固定部件(31)与取出引线端子(11a)接合。
    • 23. 发明申请
    • PARTICULATE MATTER DETECTION DEVICE
    • 颗粒物检测装置
    • US20100229632A1
    • 2010-09-16
    • US12715644
    • 2010-03-02
    • Masahiro TokudaTakeshi SakumaTakashi EgamiAtsuo Kondo
    • Masahiro TokudaTakeshi SakumaTakashi EgamiAtsuo Kondo
    • G01N37/00
    • G01N27/60G01N15/0656G01N27/68
    • A particulate matter detection device (100) includes a detection device body (1) that has at least one through-hole (2) that is formed at one end of the body (1), a high-voltage electrode (11) and a low-voltage electrode (12) that are buried in the wall of the body (1), a high-voltage takeout lead terminal (11a) that is disposed on the surface of the body (1), a high-voltage takeout lead terminal insulating member (20) that is disposed to cover at least an area in which the lead terminal (11a) is disposed, and a detection device outer tube (30) that is disposed to cover the lead terminal insulating member (20), the device (100) being configured so that particulate matter can be electrically adsorbed on the wall surface of the through-hole (2), and this particulate matter can be detected by measuring a change in electrical properties of the wall that defines the through-hole (2).
    • 一种颗粒物检测装置(100),具备检测装置本体(1),该检测装置主体(1)具有形成在主体(1)的一端的至少一个通孔(2),高压电极(11)和 埋置在本体(1)的壁上的低压电极(12),设置在主体(1)的表面上的高压取出引线端子(11a),高压取出引线端子 绝缘构件(20),其设置成至少覆盖设置有引线端子(11a)的区域;以及检测装置外管(30),其设置成覆盖所述引线端子绝缘构件(20),所述装置 (100)被配置为使得颗粒物质可以电吸附在通孔(2)的壁表面上,并且可以通过测量限定通孔的壁的电特性的变化来检测该颗粒物质( 2)。
    • 24. 发明申请
    • PARTICULATE MATTER DETECTION DEVICE
    • 颗粒物检测装置
    • US20100229631A1
    • 2010-09-16
    • US12715661
    • 2010-03-02
    • Masahiro TOKUDAAtsuo KondoTakeshi SakumaTakashi Egami
    • Masahiro TOKUDAAtsuo KondoTakeshi SakumaTakashi Egami
    • G01N37/00
    • G01N27/60G01N15/0656G01N27/043G01N27/68
    • A particulate matter detection device (100) includes a detection device body (1) having at least one through-hole (2) formed at one end of the body (1), a pair of electrodes (11, 12) buried in the wall of the body (1) defining the through-hole (2), and covered with a dielectric, and a heating section (13) disposed in the body (1), and adjusting the temperature of the wall defining the through-hole (2), the heating section (13) being covered with a protective layer (15) formed of alumina having a purity of 95% or more, and the particulate matter detection device allowing a particulate matter contained in a fluid that flows into the through-hole (2) to be electrically adsorbed on the wall surface of the through-hole (2), and detecting the mass of the particulate matter adsorbed on the wall surface by measuring a change in electrical properties of the wall.
    • 一种颗粒物质检测装置(100),包括:检测装置本体(1),其具有形成在所述主体(1)的一端的至少一个通孔(2);一对电极(11,12) 限定通孔(2)并被电介质覆盖的主体(1)和设置在主体(1)中的加热部分(13),并且调节限定通孔(2)的壁的温度 ),所述加热部(13)被由纯度为95%以上的氧化铝形成的保护层(15)覆盖,并且所述颗粒物质检测装置允许包含在流入所述通孔的流体中的颗粒物质 (2)被电吸附在通孔(2)的壁表面上,并且通过测量壁的电性能的变化来检测吸附在壁表面上的颗粒物质的质量。
    • 25. 发明申请
    • PARTICULATE MATTER DETECTION DEVICE
    • 颗粒物检测装置
    • US20100229629A1
    • 2010-09-16
    • US12701774
    • 2010-02-08
    • Takashi EgamiTakeshi SakumaMasahiro TokudaAtsuo Kondo
    • Takashi EgamiTakeshi SakumaMasahiro TokudaAtsuo Kondo
    • G01N37/00
    • G01N27/68G01N15/0656
    • A particulate matter detection device 100 includes a first electrode 1 and having one surface covered with a dielectric material; a second electrode 2 which is disposed on the side of the one surface of the first electrode 1 via a space where a gas including a particulate matter flows and which performs one or both of the formation of discharge and an electric field by a voltage applied between the first electrode 1 and the second electrode; a pair of measurement electrodes 5, 15 disposed on the surface of the dielectric material so as to face each other; and a protective film 21 disposed on the surfaces of the pair of measurement electrodes and having a volume resistivity of 10 Ωcm to 1012 Ωcm, and the variate of electric properties between the pair of measurement electrodes is measured, whereby the amount of the collected particulate matter can be obtained.
    • 颗粒物质检测装置100包括第一电极1并且具有用电介质材料覆盖的一个表面; 第二电极2,其经由包含颗粒物质的气体流过的空间设置在第一电极1的一个表面侧,并且通过施加在第一电极1的表面之间的电压进行放电和电场之中的一个或两个 第一电极1和第二电极; 设置在电介质材料的表面上彼此面对的一对测量电极5,15; 以及设置在一对测量电极的表面上并具有10Ω·cm·cm〜1012Ω·cm·cm的体积电阻率的保护膜21,并且测量该对测量电极之间的电特性变化,由此, 可以获得收集的颗粒物质。
    • 28. 发明申请
    • Plasma reactor
    • 等离子体反应器
    • US20060208650A1
    • 2006-09-21
    • US11374120
    • 2006-03-14
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • H01J7/24
    • H01J37/32009
    • A plasma reactor is provided with two or more plasma generating electrodes which are installed in series inside a gas passage in a casing, with each plasma generating electrode being electrically controlled independently. The surface area of the conductor on each unit electrode forming the plasma generating electrode installed on the upstream side of the gas passage is smaller than the surface area of the conductor on the unit electrode forming the plasma generating electrode installed on the downstream side of the gas passage. Plasma can be generated between each of the unit electrodes by supplying each of the plasma generating electrodes with independently controlled electric power. The plasma reactor can efficiently react specific components contained in the gas passing through the gas passage.
    • 等离子体反应器设置有两个或更多个等离子体产生电极,其串联安装在壳体中的气体通道内,每个等离子体产生电极被独立地电控制。 形成设置在气体通道上游侧的等离子体发生电极的各单位电极上的导电体的表面积小于形成设置在气体下游侧的等离子体发生电极的单位电极上的导体的表面积 通道。 可以通过向等离子体产生电极中的每一个提供独立控制的电力而在每个单元电极之间产生等离子体。 等离子体反应器可以有效地反应通过气体通道的气体中包含的特定组分。
    • 30. 发明授权
    • Plasma reactor
    • 等离子体反应器
    • US07727489B2
    • 2010-06-01
    • US11374120
    • 2006-03-14
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • B01J19/08
    • H01J37/32009
    • A plasma reactor is provided with two or more plasma generating electrodes which are installed in series inside a gas passage in a casing, with each plasma generating electrode being electrically controlled independently. The surface area of the conductor on each unit electrode forming the plasma generating electrode installed on the upstream side of the gas passage is smaller than the surface area of the conductor on the unit electrode forming the plasma generating electrode installed on the downstream side of the gas passage. Plasma can be generated between each of the unit electrodes by supplying each of the plasma generating electrodes with independently controlled electric power. The plasma reactor can efficiently react specific components contained in the gas passing through the gas passage.
    • 等离子体反应器设置有两个或更多个等离子体产生电极,其串联安装在壳体中的气体通道内,每个等离子体产生电极被独立地电控制。 形成设置在气体通道上游侧的等离子体发生电极的各单位电极上的导电体的表面积小于形成设置在气体下游侧的等离子体发生电极的单位电极上的导体的表面积 通道。 可以通过向等离子体产生电极中的每一个提供独立控制的电力而在每个单元电极之间产生等离子体。 等离子体反应器可以有效地反应通过气体通道的气体中包含的特定组分。