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    • 1. 发明授权
    • Conveyer of honeycomb formed article and conveying method thereof
    • 蜂窝成型体输送机及其输送方法
    • US08419403B2
    • 2013-04-16
    • US12724672
    • 2010-03-16
    • Yasumasa FujiokaYohei TakemoriYuji UedaKiyoshi Ishihara
    • Yasumasa FujiokaYohei TakemoriYuji UedaKiyoshi Ishihara
    • B65G49/00
    • B28B21/90B28B13/04B29C47/0028B29C47/34
    • There is disclosed a conveyer and a conveying method that enable conveying a lengthy honeycomb formed article extruded at a high speed with a simple apparatus without causing cracks and deformation. The conveyer of a honeycomb formed article includes a plurality of lengthy cradles that are sequentially supplied and then sequentially support and convey the honeycomb formed article, and a fixed support that is fixed so as to extend from the extruder to a supply position of the lengthy cradles, supports the honeycomb formed article just after being extruded, and conveys it to one of the lengthy cradles, and the fixed support is an air float having a supporting face and a plurality of air ejection pores formed on the supporting face that conveys the honeycomb formed article by feeding air from the air ejection pores.
    • 公开了一种输送机和输送方法,其能够以简单的装置输送长时间挤出的蜂窝成型制品而不引起裂纹和变形。 蜂窝成型体的输送机包括依次供给的多个长的托架,然后顺序地支撑和输送蜂窝成型品,以及固定的支撑件,其从挤出机延伸到长的托架的供应位置 在挤出后立即支撑蜂窝成型体,并将其输送到长条形托架中的一个,固定支撑件是具有支撑面的空气浮子和形成在支撑面上的多个空气喷射孔,其传送形成的蜂窝体 通过从空气喷射孔输送空气的物品。
    • 6. 发明申请
    • Plasma generating electrode and plasma reactor
    • 等离子体发生电极和等离子体反应器
    • US20070045246A1
    • 2007-03-01
    • US10568980
    • 2004-09-10
    • Yasumasa FujiokaMasaaki MasudaAtsuo Kondo
    • Yasumasa FujiokaMasaaki MasudaAtsuo Kondo
    • B23K9/00B23K9/02
    • F01N3/0892H05H1/2406H05H2001/2418H05H2001/2437
    • A plasma generating electrode according to the invention includes at least two opposing plate-shaped unit electrodes 2, each having a rectangular surface and four end faces, and a holding member 5 which holds at least one (fixed end 6) of a pair of parallel ends (pair of ends) of four ends of the unit electrode 2 corresponding to the four end faces, at least one of the opposing unit electrodes 2 being a conductive-film-containing electrode 8 including a ceramic body 3 and a conductive film 4, and a distance “a” (mm) from an edge of the conductive film 4 to an edge of the ceramic body 3 on the other pair of parallel ends (other pair of ends 9) of the four ends of the conductive-film-containing electrode 8 adjacent to the pair of ends and a thickness “c” (mm) of the ceramic body 3 satisfying a relationship “(c/2)≦a≦5c”. The plasma generating electrode 1 is effectively prevented from breaking due to thermal shock.
    • 根据本发明的等离子体产生电极包括至少两个相对的板状单元电极2,每个具有矩形表面和四个端面,并且保持构件5保持至少一个(固定端6)一对平行 对应于四个端面的单元电极2的四个端部的端部(一对端部),至少一个相对的单位电极2是包括陶瓷体3和导电膜4的导电膜含电极8, 并且在导电膜4的四个端部的另一对平行端(另一对端部9)上从导电膜4的边缘到陶瓷体3的边缘的距离“a”(mm) 电极8,并且陶瓷体3的厚度“c”(mm)满足关系“(c / 2)<= a <= 5c”。 有效防止等离子体产生电极1因热冲击而断裂。
    • 8. 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。
    • 9. 发明授权
    • Plasma generating electrode and plasma reactor
    • 等离子发生电极和等离子体反应器
    • US07727488B2
    • 2010-06-01
    • US10562467
    • 2004-07-07
    • Yukio MiyairiYasumasa FujiokaMasaaki MasudaTakeshi Sakuma
    • Yukio MiyairiYasumasa FujiokaMasaaki MasudaTakeshi Sakuma
    • B01J19/08
    • B01D53/92B01D53/56B01D53/62B01J19/088B01J2219/0813B01J2219/0835B01J2219/0843B01J2219/0875F01N3/0892
    • A plasma generating electrode 1 of the present invention includes two or more electrodes 2 disposed to face each other, and holding members 3 for holding electrodes 2 at a predetermined interval, and can generate plasma by applying voltage between electrodes 2. At least one of electrodes facing each other 2 has a plate-shaped ceramic body 6 serving as a dielectric body, and a conductive film 7 disposed inside the body 6, and the holding members 3 fix the opposite side end portions 5 (fixed end portions 5a) of electrodes facing each other 2 in the state of a cantilever in such a condition that electrodes 2 are held by holding members in the state of cantilevers of the different directions alternately at a predetermined interval as a whole. This relaxes the thermal stress and effectively prevents distortion and breakage of electrodes caused by to a temperature change.
    • 本发明的等离子体发生电极1包括彼此相对设置的两个或更多个电极2和用于以预定间隔保持电极2的保持构件3,并且可以通过在电极2之间施加电压来产生等离子体。至少一个电极 彼此相对的是具有作为电介质体的板状陶瓷体6和配置在主体6内部的导电膜7,保持部件3将电极的相对侧端部5(固定端部5a) 彼此以悬臂的状态彼此2,在这样的状态下,电极2由整体上以预定间隔交替地以不同方向的悬臂状态的保持构件保持。 这样放松了热应力,并有效地防止了由温度变化引起的电极的变形和断裂。