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    • 21. 发明专利
    • Ion wind blowing device using stylus-ring electrode
    • 离子风吹管装置使用STYLUS-RING电极
    • JP2008218853A
    • 2008-09-18
    • JP2007056664
    • 2007-03-07
    • Toyohashi Univ Of Technology国立大学法人豊橋技術科学大学
    • MIZUNO AKIRAAKI TAKUYANAKANO MICHIHIKOMAZEN ABDEL-SALAM
    • H01L23/467
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To solve the problem that although techniques using a fan, a heat sink with cooling fins, etc., as a cooling air blowing device for an electronic component, especially, a semiconductor component are available so far, it is difficult to make those cooling (heat radiating) components compact since, especially, a mechanical fan has a movable portion and then it is difficult to use them as a cooling air blowing device for an electronic component which becomes compact as techniques innovate. SOLUTION: An ion wind generated by a corona discharge is used to manufacture a compact and simple air blowing device. In configurations thereof, ring electrodes with styli are used in multiple stages and a high DC voltage is applied between a stylus electrode and a ring electrode to generate a corona discharge. At this time, an ion generated by the corona discharge generated by the stylus electrode moves toward a ring and collides against an air molecule to generate an ion wind. The stylus-ring electrodes are disposed in stages to make the speed of the ion wind faster, and a high voltage is applied to each of the stages in order. Consequently, ions are prevented from flowing back a high-speed ion wind is generated. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题为了解决尽管目前为止可以使用作为电子部件的冷却风吹风装置,特别是半导体部件的使用风扇,散热片等的散热装置的技术的问题, 难以使这些冷却(散热)部件紧凑,因为特别是机械风扇具有可移动部分,因此难以用作电子部件的冷却风吹送装置,因为技术创新而变得紧凑。

      解决方案:使用电晕放电产生的离子风来制造紧凑简单的送风装置。 在其构造中,具有触针的环形电极被多级使用,并且在触针电极和环形电极之间施加高的直流电压以产生电晕放电。 此时,由触针电极产生的电晕放电产生的离子朝向环移动,与空气分子碰撞而产生离子风。 触针环电极分阶段布置,使得离子的速度变得更快,并且按顺序向每个级施加高电压。 因此,防止离子流回,产生高速离子风。 版权所有(C)2008,JPO&INPIT

    • 22. 发明专利
    • High voltage charging unit for electrostatic precipitator
    • 静电放电器高压充电装置
    • JP2007222717A
    • 2007-09-06
    • JP2006044051
    • 2006-02-21
    • Amano CorpToyohashi Univ Of Technologyアマノ株式会社国立大学法人豊橋技術科学大学
    • MIZUNO AKIRAKITABAYASHI KOICHIKISANUKI YOSHIYUKI
    • B03C3/60B03C3/40B03C3/41C22C14/00
    • PROBLEM TO BE SOLVED: To provide a high voltage charging unit for electrostatic precipitators which is capable of surely controlling the generation and wear of ozone at the time of corona discharge as a discharge electrode of the charging part and of reducing the production cost of the whole of equipment by using an inexpensive and easily obtainable material.
      SOLUTION: The high voltage charging unit consists of the charging part 5 to electrostatically charge particles such as dust or mist in air current by corona discharge generated by applying high voltage from the high voltage power supply part 10 and a dust collection part 7 to collect the particles, such as charged dust or mist. In the electrostatic precipitator, the needle electrode 6c for discharge of the charging part 5 is made of a titanium alloy.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于静电除尘器的高压充电单元,其能够可靠地控制作为充电部件的放电电极的电晕放电时的臭氧的产生和磨损,并且降低生产成本 的整个设备使用廉价和容易获得的材料。 解决方案:高电压充电单元包括充电部件5,通过从高压电源部件10和集尘部件7施加高电压而产生的电晕放电,对空气中的灰尘或雾气等微粒进行静电充电 以收集颗粒,例如带电的灰尘或雾。 在静电除尘器中,用于排出充电部5的针电极6c由钛合金制成。 版权所有(C)2007,JPO&INPIT
    • 23. 发明专利
    • Gas cleaning apparatus
    • 气体清洁装置
    • JP2007152201A
    • 2007-06-21
    • JP2005349389
    • 2005-12-02
    • Honda Motor Co LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学本田技研工業株式会社
    • MIKI MASANOBUDOUSAKA KENJIIWAMA KEIZOMIZUNO AKIRA
    • B03C3/66B03C3/74F01N3/02
    • PROBLEM TO BE SOLVED: To provide a gas cleaning apparatus for cleaning particulate matters present in exhaust gas of an internal combustion engine or the like by the electric discharge capable of effectively performing collection of the particulate matters by the electric discharge and oxidation of the collected particulate matters. SOLUTION: Particulate matters are oxidized and decomposed by allowing the gas containing the particulate matters to flow between a pair of electrodes 201 and 202, and performing the electric discharge between the electrodes. In the first discharge period (T 1 ), the discharge at the relatively low voltage V1 is performed, particulate matters 203a are collected on a surface of the electrode 202. In the second discharge period (T 2 ), the electric discharge at the relatively high voltage V2 is performed, and the particulate matters 203b collected on the electrode 202 are oxidized and decomposed. Further, by providing a non-discharge period (T 3 ) in which no electric discharge is performed, the low power consumption is realized and any electric discharge losses are suppressed. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种用于通过放电来清洁内燃机等的排气中存在的颗粒物的气体净化装置,其能够通过放电和氧化有效地进行颗粒物的收集 收集的颗粒物。 解决方案:通过使含有颗粒物质的气体在一对电极201和202之间流动,并且在电极之间进行放电,使颗粒物质氧化和分解。 在第一放电时段(T 1 )中,执行相对低电压V1的放电,颗粒物质203a被收集在电极202的表面上。在第二放电时段(T 2 )时,执行相对高电压V2的放电,并且收集在电极202上的颗粒物质203b被氧化分解。 此外,通过提供不进行放电的非放电期间(T 3 ),实现低功耗,并且抑制任何放电损失。 版权所有(C)2007,JPO&INPIT
    • 25. 发明专利
    • Electric emulsifying method
    • 电动仿真方法
    • JP2007044664A
    • 2007-02-22
    • JP2005234054
    • 2005-08-12
    • Toyohashi Univ Of Technology国立大学法人豊橋技術科学大学
    • KATSURA SHINJIMIZUNO AKIRANAKANO MICHIHIKO
    • B01F3/08C12N15/09
    • PROBLEM TO BE SOLVED: To provide a method of preparing a small amount of (specially 1 ml or less) W/O emulsion little in risk of contamination, without using a stirrer element or a shaft, or a special implement. SOLUTION: An oil of a volume necessary for emulsification (1 ml or less) and a water solution are put in a container 6, a voltage electrode 3 is set inside the container 6, and an earth electrode 8 is placed outside the container 6. A container formed of a dielectric is used for the container 6, and the oil and the water solution in the container 6 are mixed by applying an AC voltage 10. Also, the voltage electrode 3 can be arranged outside the container 6. Since equipment used for this method is easy to be made smaller and the stirring part has a simple structure, it is low-cost and can be made disposal, and also since the method uses an electric field, it is also suitable for parallel treatment. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种制备少量(特别是1ml或更少)W / O乳剂的方法,该乳化剂在不使用搅拌器元件或轴或特殊工具的情况下几乎没有污染的风险。 <1>解决方案:将乳化所需体积(1ml或更少)和水溶液的油放入容器6中,将电压电极3放置在容器6内部,并将接地电极8放置在 容器6.由电介质形成的容器用于容器6,并且通过施加AC电压10将容器6中的油和水溶液混合。此外,电压电极3可以布置在容器6的外部。 由于用于该方法的设备易于制造,搅拌部件结构简单,所以成本低廉,可以进行处理,并且由于该方法使用电场,因此也适合于并行处理。 版权所有(C)2007,JPO&INPIT
    • 28. 发明专利
    • Exhaust emission control device
    • 排气排放控制装置
    • JP2012180808A
    • 2012-09-20
    • JP2011045406
    • 2011-03-02
    • Toyota Motor CorpToyota Industries CorpToyohashi Univ Of Technologyトヨタ自動車株式会社国立大学法人豊橋技術科学大学株式会社豊田自動織機
    • KINOSHITA YOHEIYOSHIDA KOJIMIZUNO AKIRA
    • F01N3/08B01D53/86F01N3/01F01N3/02F01N3/021
    • PROBLEM TO BE SOLVED: To provide an exhaust emission control device that can prevent plasma discharge from being rebounded after hitting against a wall coming into contact with an electrode on the upstream side in an exhaust gas flowing direction of a honeycomb structure to improve an introduction rate of plasma in an intermediate space of the honeycomb structure.SOLUTION: An exhaust emission control device carries a catalyst on an inner wall surface 5 coming into contact with exhaust gas 4 passing through an intermediate space 3 of a honeycomb structure 2, includes a first electrode 7 for generating plasma in an opening 6 on an upstream side in an exhaust gas 4 flowing direction of the honeycomb structure 2, a second electrode for drawing the plasma into an opening 8 on a downstream side in the exhaust gas 4 flowing direction of the honeycomb structure 2, and an exhaust gas inflow openings 12 arranged in the first electrode 7 and not larger than respective openings 11 of the honeycomb structure 2 in positions corresponding to respective openings 11 in the opening 6 on the upstream side of the honeycomb structure 2.
    • 要解决的问题:提供一种废气排放控制装置,其可以防止等离子体放电在撞击与蜂窝结构的排气流动方向上游侧的电极接触的壁之后发生反弹,以改善 在蜂窝结构的中间空间中的等离子体的引入速率。 解决方案:废气排放控制装置在与通过蜂窝结构体2的中间空间3的废气4接触的内壁表面5上承载催化剂,包括用于在开口6中产生等离子体的第一电极7 在蜂窝结构体2的废气4流动方向的上游侧,将等离子体拉入蜂窝结构体2的排气4流动方向的下游侧的开口部8的第二电极和排气流入 开口12布置在蜂窝结构体2的上游侧的开口部6的与第1电极7相对应的开口部11的开口部11的开口部11的开口部11上。(C)2012 ,JPO&INPIT
    • 29. 发明专利
    • Exhaust emission control device
    • 排气排放控制装置
    • JP2009264147A
    • 2009-11-12
    • JP2008111972
    • 2008-04-23
    • Hino Motors LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学日野自動車株式会社
    • KAWADA YOSHIHIROSATO SHINYAHOSOYA MITSURUMIZUNO AKIRA
    • F01N3/08B01D53/94
    • Y02T10/24
    • PROBLEM TO BE SOLVED: To provide an exhaust emission control device capable of showing high NOx reduction performances right after a stage where exhaust gas temperature reaches activation temperature zone of selective reduction type catalyst even under a condition where exhaust gas temperature is low such as in the case of engine start and low speed travel. SOLUTION: The exhaust emission control device includes the selective reduction type catalyst 11 provided with a characteristics making NOx selectively react with ammonia even under existence of oxygen, and an urea water adding valve 14 (urea water adding means) adding urea water 13 as reducer to an upstream side of the selective reduction type catalyst 11, in the middle of an exhaust pipe 10 in which exhaust gas 8 from an engine 1 flows. The device is additionally equipped with an urea water discharge decomposition reactor 18 supplied with pasted urea which is formed by dissolving urea powder in solution to be given fluidity, and forcibly decomposing the pasted urea to ammonia by discharge plasma and introducing the same to the exhaust pipe 10 at an upstream side of the selective reduction type catalyst 11. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决问题:即使在废气温度低的条件下,即使在排气温度低的条件下,即使在排气温度达到选择还原型催化剂的活化温度区域的阶段之后,也能够显示出高NOx还原性能的废气排放控制装置, 如在发动机启动和低速行驶的情况下。 解决方案:废气排放控制装置包括选择还原型催化剂11,其特征在于,即使在存在氧的情况下,NOx也选择性地与氨反应,并且添加尿素水13的尿素水添加阀14(尿素水添加装置) 作为选择还原型催化剂11的上游侧的还原剂,其中来自发动机1的废气8流过的排气管10的中间。 该装置还配备有通过将尿素粉末溶解在溶液中而成为赋予流动性而形成的粘贴尿素的尿素水分解反应器18,并且通过排出等离子体强制地将糊状尿素分解成氨,并将其引入排气管 10选择还原型催化剂11的上游侧。版权所有(C)2010,JPO&INPIT