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    • 11. 发明专利
    • Removal system for volatile organic matter by resin
    • 通过树脂挥发有机物的去除系统
    • JP2009011941A
    • 2009-01-22
    • JP2007177068
    • 2007-07-05
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • B01D53/06B01D53/04B01J20/26B01J20/34
    • Y02A50/235
    • PROBLEM TO BE SOLVED: To provide a removal system for volatile organic matters by a resin excellent in usefulness and economical efficiency. SOLUTION: A chamber 1 having a cylindrical chamber is partitioned into a VOC absorbing chamber 10 and a VOC discharge chamber 20 by a partition wall 2. The rotary shaft 4 of a rotary rotor 3 equipped with a predetermined amount of chips of silicone rubber 5 is attached to the center part of the partition wall 2 to be rotated at a predetermined rotational speed. A treatment target air supply duct 11 and a treated air supply duct 14 are provided in the absorbing chamber 10, and the absorbing chamber 10 is internally adjusted to a predetermined pressure state by a pressurizing fan 12. An air or inert gas supply duct 21 and a treated air discharge duct 23 are provided in the discharge chamber 20 and the discharge chamber 20 is internally adjusted to a predetermined reduced pressure state by a pressure reducing fan 24. The silicone rubber 5 has the action of absorbing VOC when the steam partial pressure around the rubber is high and discharging VOC when the steam partial pressure is low. By utilizing this action, the absorption and discharge of VOC are performed. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过具有优异的有用性和经济效率的树脂来提供挥发性有机物的去除系统。 解决方案:具有圆柱形室的腔室1通过分隔壁2分隔成VOC吸收室10和VOC排放室20.旋转转子3的旋转轴4配备有预定量的硅氧烷片 橡胶5附接到分隔壁2的中心部分,以预定转速旋转。 处理对象空气供给管道11和经处理的空气供给管道14设置在吸收室10中,并且吸收室10通过加压风扇12内部调节到预定压力状态。空气或惰性气体供应管道21和 处理后的排气管道23设置在排放室20中,排气室20通过减压风扇24内部调节到预定的减压状态。硅橡胶5具有吸收VOC的作用,当蒸汽分压在 当蒸汽分压低时,橡胶高,排出VOC。 通过利用该作用,进行VOC的吸收和放电。 版权所有(C)2009,JPO&INPIT
    • 12. 发明专利
    • Trash-free antistatic dust-removal system using impulse wave
    • 无冲击防静电除尘系统使用脉冲波
    • JP2008234956A
    • 2008-10-02
    • JP2007071885
    • 2007-03-20
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRAMATSUTAME HIROYUKIOGUCHI TATSUOMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • H05F3/06H01T23/00
    • PROBLEM TO BE SOLVED: To provide a trash-free antistatic dust-removal system using an impulse wave, which removes even sub-micron particles.
      SOLUTION: The system is provided with: a static eliminating part of ionizing a part of ion-conveying gas supplied into an ionizing chamber 1 by a given ionizing source, and destaticizing a glass substrate 5 as an object for destaticization by supplying it with the ion generated in the chamber; and a dust-removal part consisting of an impulse wave generating head 10 structured of a cylinder 11 and a piston 12 arranged in free sliding along its inner wall for intermittently generating impulse waves by a switching movement of an electromagnetic valve 24 and hitting them at the glass substrate 5 after a destaticizing treatment, and an exhaust chamber 30 suctioning air blasted at the glass substrate 5 for generating the impulse waves and exhausting it.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供使用脉冲波的无垃圾抗静电除尘系统,其除去甚至亚微米的颗粒。 解决方案:该系统设置有:通过给定的电离源将供给到电离室1的一部分离子输送气体电离的静电消除部分,并且通过供给来去除作为去静电的对象的玻璃基板5 在室内产生离子; 以及由气缸11构成的冲击波产生头10和沿其内壁自由滑动的活塞12构成的除尘部,用于通过电磁阀24的切换运动间歇地产生脉冲波,并在其中击打它们 在静电处理后的玻璃基板5,以及在玻璃基板5上抽吸吹出空气的排气室30,产生脉冲波并排出。 版权所有(C)2009,JPO&INPIT
    • 13. 发明专利
    • Simple-type soft x-ray detector using liquid crystal display
    • 使用液晶显示的简单型软X射线探测器
    • JP2007121061A
    • 2007-05-17
    • JP2005312349
    • 2005-10-27
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORISATO TOMOKATSU
    • G01T1/14G01T7/00
    • PROBLEM TO BE SOLVED: To provide a simple-type soft X-ray detector with a liquid crystal display used, easily carried by a worker, etc., compact, and inexpensive.
      SOLUTION: The interior of a quadratic prism-shaped chamber 1 made of resin is divided into two, a liquid crystal plate placement part 1a and a metal electrode placement part 1b. A window 3 with a soft X-ray transmitting film 2 stuck thereon is formed in the placement part 1b while a window 5 for liquid crystal plate placement is formed in the placement part 1a. An electrically high-insulated cylindrical metal electrode 4 is disposed within the placement part 1b. The metal electrode 4 is supported by an upper insulant 7 and an under insulant 8. An opening formed in a bottom surface of the placement part 1b can be closed up tight by a cap 9. A liquid-crystal-filled plate 6 is mounted in the window 5. This plate 6 is provided with electrodes "a" and "b" on both ends thereof. The electrodes "a" is connected to an upper end part of the metal electrode 4 while the electrodes "b" is connected to an electrode "c" for grounding provided on a bottom surface of the placement part 1a.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决问题:为了提供一种简单型的软X射线检测器,其具有使用的液晶显示器,易于由工人携带等,紧凑且便宜。 解决方案:将由树脂制成的二次棱柱形室1的内部分成两部分,即液晶板放置部分1a和金属电极放置部分1b。 在放置部分1b中形成有粘附有软X射线透射膜2的窗口3,而在放置部分1a中形成用于液晶板放置的窗口5。 电绝缘的圆柱形金属电极4设置在放置部分1b内。 金属电极4由上部绝缘体7和下部绝缘体8支撑。形成在放置部1b的底面的开口可以通过盖9紧闭。将液晶填充板6安装在 窗口5.该板6的两端设置有电极“a”和“b”。 电极“a”连接到金属电极4的上端部分,而电极“b”连接到设置在放置部分1a的底表面上的用于接地的电极“c”。 版权所有(C)2007,JPO&INPIT
    • 14. 发明专利
    • Wearing type soft x-ray detector
    • 磨损型软X射线探测器
    • JP2005003514A
    • 2005-01-06
    • JP2003167419
    • 2003-06-12
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRASUZUKI MASANORIIMAI SEIICHISATO TOMOKATSU
    • G01T1/14
    • PROBLEM TO BE SOLVED: To provide a small and inexpensive wearing type soft X-ray detector which is easy to be carried by a worker or the like.
      SOLUTION: A soft X-ray transmitting film is arranged in an opening part formed on one side surface of a resin-made chamber, and a window part through which the inside of the chamber can be seen from the outside is formed on one side surface adjacent to the side having the soft X-ray transmitting film arranged thereon. A metallic charging plate is substantially vertically arranged within the chamber, and a dielectric ball consisting of a dielectric member is sealed therein. Before the detector is worn, the charging plate is charged to a predetermined electric charge quantity to adhere the dielectric ball to a predetermined position of the charging plate. If the exposure quantity of soft X-ray exceeds a preset limit quantity after the detector is worn, the dielectric ball is fallen.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种容易被工人等携带的小型廉价的佩戴型软X射线检测器。 解决方案:软的X射线透射膜布置在形成在树脂制室的一个侧表面上的开口部分中,并且可以从外部看到室的内部的窗口部分 与其上布置有软X射线透射膜的一侧相邻的一个侧表面。 金属充电板基本上垂直地布置在室内,并且由绝缘构件组成的电介质球被密封在其中。 在检测器磨损之前,将充电板充电至预定电荷量以将电介质球粘附到充电板的预定位置。 如果软X射线的曝光量在检测器磨损后超过预设极限量,则介质球就会下降。 版权所有(C)2005,JPO&NCIPI
    • 16. 发明专利
    • Air cleaner
    • 空气净化器
    • JP2010269259A
    • 2010-12-02
    • JP2009123887
    • 2009-05-22
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • B03C3/16A61L2/04A61L9/16A61L9/22B03C3/02B03C3/40B03C3/41B03C3/53
    • PROBLEM TO BE SOLVED: To provide an air cleaner which can prevent the growth of bacteria and fungi to prevent rescattering of fine particles to which the bacteria have been adhered and spores of the fungi. SOLUTION: A wetted wall column 2 structured so as to form a wetted wall by oil is grounded and disposed inside a cylindrical chamber 1 forming a capture portion, and a discharge wire 4 is disposed at a position facing the wetted wall. Air to be treated is supplied into the chamber 1 so as to come into contact with the wetted wall, and a high voltage is applied to the discharge wire 4 to generate low temperature plasma between it and the wetted wall column 2, whereby the fine particles to which the bacteria have been adhered and the spores of the fungi are charged to be captured in the oil flowing down the wetted wall by Coulomb forces. Subsequently the oil capturing the fine particles in the capture portion is introduced into a chamber 20 forming a separation/sterilization portion, and the oil capturing the fine particles is heated and sterilized by a heater 22 and the fine particles captured in the oil are separated and removed. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种空气净化器,其可以防止细菌和真菌的生长,以防止细菌粘附的细颗粒和真菌孢子的再结晶。 解决方案:通过油形成润湿壁的润湿壁柱2接地并设置在形成捕获部分的圆柱形室1内,并且放电线4设置在面向湿壁的位置。 待处理的空气被供给到室1中以与湿壁接触,并且高压被施加到放电丝4,以在其与润湿的壁柱2之间产生低温等离子体,由此微粒 细菌已被粘附到其上,并且真菌的孢子被装载在通过库仑力沿着湿壁流下的油中捕获。 随后将捕获部分中的微粒捕获的油引入到形成分离/灭菌部分的室20中,并且通过加热器22对捕获微粒的油进行加热灭菌,将捕获在油中的微粒分离, 除去。 版权所有(C)2011,JPO&INPIT
    • 17. 发明专利
    • Charged particle transfer ionizer utilizing ion nucleus condensation
    • 充电颗粒转移离子使用离子核糖体凝结
    • JP2008084746A
    • 2008-04-10
    • JP2006264823
    • 2006-09-28
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRASUZUKI MASANORISATO TOMOKATSUMATSUHASHI HIDEAKI
    • H05F3/06H01T23/00
    • PROBLEM TO BE SOLVED: To provide a charged particle transfer ionizer utilizing ion nucleus condensation which has a simple structure, and can stably transfer ionized air over a long distance.
      SOLUTION: An emission window 11 is disposed on a side wall on the upper part of a chamber 10, and a radiation shielding cover 12 is disposed at the outside of the side wall. An ionizing source 20 is arranged in the chamber so that air inside the chamber 10 is ionized through the emission window 11. A steam generating unit 30 is disposed on a side wall on the lower part of the chamber 10 so that high-temperature deionized water steam is supplied into the chamber 10. An ion transfer gas is supplied into the chamber 10 through an air supply port 13 disposed on one end of the chamber 10, and ionized air is sent toward a charged body S to be neutralized through a blowout port 14 disposed on another end of the chamber 10. A tube 40 serving as a charged particle transfer unit is connected to the blowout port 14 of the chamber, and a reheating heater 41 is disposed in the vicinity of the front end of the tube 40.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供利用离子核冷凝的带电粒子转移离子发生器,其具有简单的结构,并且能够长时间稳定地转移电离空气。 解决方案:发射窗11设置在室10的上部的侧壁上,辐射屏蔽罩12设置在侧壁的外侧。 电离源20设置在室中,使得室10内的空气通过发射窗11离子化。蒸汽发生单元30设置在室10的下部的侧壁上,使得高温去离子水 蒸汽被供应到室10.离子转移气体通过设置在室10的一端的空气供应口13供应到室10中,并且电离空气被送到被充电体S以通过吹出口中和 设置在腔室10的另一端。用作带电粒子传送单元的管40连接到腔室的吹出口14,并且再加热器41设置在管40的前端附近。 版权所有(C)2008,JPO&INPIT
    • 18. 发明专利
    • Simplified electrified plate monitor using liquid crystal display
    • 使用液晶显示的简化电镀板监视器
    • JP2007121062A
    • 2007-05-17
    • JP2005312352
    • 2005-10-27
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORISATO TOMOKATSU
    • G01R29/12G01R29/24G02F1/13
    • PROBLEM TO BE SOLVED: To provide a simplified electrified plate monitor that a worker, or the like can carry easily, and uses a compact and inexpensive liquid crystal display. SOLUTION: In a front plate 1 comprising cardboard, plastic, or the like, a display window 2 is formed at the center, so that one can view a liquid crystal filled plate 4 arranged inside through the display window 2 from the outside. A graduation 3 is formed at the side of the display window 2, thus allowing the position of a liquid crystal where the color of the liquid crystal filled plate 4 is changed to be measured. The liquid crystal filled plate 4 is arranged between a front plate 1 and a rear plate 5, and an electrode (a) and an electrode (b) are provided at both the upper and lower ends, respectively, in the liquid crystal filled plate 4. An electrode 6 for electrification is arranged at the upper portion of the liquid crystal filled plate 4 and is connected to the electrode (a), and an earthed electrode 7 is connected to the electrode (b). COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供工人等容易携带的简单的带电板监视器,并且使用紧凑且廉价的液晶显示器。 解决方案:在包括纸板,塑料等的前板1中,在中心形成有显示窗2,从而可以从外部观察通过显示窗2内部布置的液晶填充板4 。 在显示窗2的侧面形成刻度3,从而允许测量液晶填充板4的颜色改变的液晶的位置。 液晶填充板4布置在前板1和后板5之间,并且在液晶填充板4中分别在上端和下端分别设置电极(a)和电极(b) 用于带电的电极6设置在液晶填充板4的上部并连接到电极(a),并且接地电极7连接到电极(b)。 版权所有(C)2007,JPO&INPIT
    • 19. 发明专利
    • Static eliminator of charged object and its method
    • 充电对象的静态消除器及其方法
    • JP2006216453A
    • 2006-08-17
    • JP2005029259
    • 2005-02-04
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORISATO TOMOKATSUIMAI SEIICHI
    • H05F3/06H05F3/04
    • PROBLEM TO BE SOLVED: To provide a high reliable static eliminator of a charged object in which the charged object can be destaticized efficiently even if the charged object has much charges in the inner part, and in which oxidation and contamination of the charged object can be prevented by suppressing generation of ozone and dust.
      SOLUTION: This is provided with a hollow ionization chamber in which an ion conveyance gas is supplied to the inner part, an ionization source in which a part of the ion conveyance gas is ionized, the rear electrode which is arranged on a chamber inner face, and in which single-pole ions are formed, a porous filter electrode which supplies these single-pole ions to an object to be destaticized, and an induction electrode which induces an electric charge to the object to be destaticized by being arranged opposite to the object to be destaticized. The rear electrode, the filter electrode, and the induction electrode are connected to the same AC power source, a voltage of the same polarity is applied to each electrode, the single-pole ions of the same polarity as that of the rear electrode is formed in the chamber, and because the induction electrode and the electric charge of reverse polarity are induced to the surface of the object to be destaticized by the induction electrode, and by spraying the single-pole ions onto the surface of the object to be destaticized, the electric charge which has been induced onto the surface of the object to be destaticized and the electric charge which has originally existed on the object to be destaticized are neutralized.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种高可靠性的带电对象的静电消除器,其中,即使带电物体在内部具有大量电荷,并且其中充电的物体被充电的氧化和污染 可以通过抑制臭氧和灰尘的产生来防止物体。 解决方案:设置有中空电离室,其中向内部供应离子输送气体,离子输送气体的一部分离子化的电离源,布置在室的后电极 内表面,并且其中形成单极离子;将这些单极离子提供给待静电物体的多孔过滤器电极;以及感应电极,其通过相对布置而导致对要被去静电的物体的电荷 对待被静物的对象。 后电极,过滤电极和感应电极连接到相同的交流电源,对每个电极施加相同极性的电压,形成与后电极相同极性的单极离子 并且由于感应电极和反向极性的电荷被感应电极引导到要去静电的物体的表面,并且通过将单极离子喷射到要去静电的物体的表面上, 被去除被物体表面上的电荷和最终存在于被去离子物质上的电荷被中和。 版权所有(C)2006,JPO&NCIPI