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公开(公告)号:JP5850856B2
公开(公告)日:2016-02-03
申请号:JP2012547977
申请日:2010-12-17
发明人: シーワース、アーンスト−ヤン
IPC分类号: D06F43/08
CPC分类号: D06F43/007 , D06F43/00 , D06F43/08 , D06F43/081 , B08B7/0021
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公开(公告)号:JP2015509753A
公开(公告)日:2015-04-02
申请号:JP2014552392
申请日:2013-01-16
发明人: バビット、ガイ、ロバート , マキシー、アンドリュー、ティモシー , シーワース、アーネスト、ジャン , パーカー、スチュアート , エヒター、ニコラス、ポール
CPC分类号: D06F43/007 , B08B7/0021 , D06F43/00 , D06F43/02 , D06F43/081 , D06L1/00 , F16J13/08
摘要: 高密度化流体バリアクリーニングシステムが開示される。ここでは、圧力容器の1つの開口が第1の環境内に存在し、圧力容器の第2の開口が第2の環境内に存在するように、バリアを横切るように配置される可動バスケットを圧力容器が包み込む。その長手方向の中心軸が圧力容器の第1および第2開口の両者と位置合わせされるように、チューブ状のバスケットが圧力容器内に配置される。クリーニングサイクルが成功裏に完了することに対応して、第1開口を介して第1環境からバスケットに導入された汚れた物品は、第2開口を通して第2環境に除去されることができるので、第1環境から第2環境へと汚染物質を導入する恐れなく、バリアを乗り越える。
摘要翻译: 粘滞流体屏障清洁系统被公开。 这里存在于压力容器中的第一环境的一个开口,使得压力容器中存在的所述第二环境中的第二开口,其设置在可动的压力篮穿过屏障 容器包装。 在纵向方向上的中心轴,以便与所述第一和所述压力容器的第二开口对准,篮形管被布置在一个压力容器中。 响应于所述清洁循环成功完成,脏污物品通过的第一开口引入到从所述第一环境的篮子,能够通过第二开口在所述第二环境中被移除, 而不必担心从第一种环境中的污染物引入到第二环境中,克服了屏障。
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公开(公告)号:JP4901434B2
公开(公告)日:2012-03-21
申请号:JP2006313317
申请日:2006-11-20
CPC分类号: D06F43/00
摘要: According to the present invention, a highly safe dry cleaner is provided, which ensures safety without the danger of ignition in a drying process even if so-called microcomputer runaway occurs. The dry cleaner includes a relay sequence controlling circuit (71). The relay sequence controlling circuit (71) includes a serial connection of a first valve (V27) to be controlled, a first switch (77) which controls the turn-on of the first valve (V27) and a second contact (76a) provided in a second relay (76). A detection circuit (79) which controls the second contact (76a) is connected to the serial connection. Thus, the first valve (V27) is maintained in an inactive state irrespective of a first switch turn-on control performed by a control section (81) until the detection circuit (79) performs a predetermined operation to turn on the second contact 76a.
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6.
公开(公告)号:JP4888634B2
公开(公告)日:2012-02-29
申请号:JP2005357363
申请日:2005-12-12
申请人: 株式会社東京洗染機械製作所
摘要: PROBLEM TO BE SOLVED: To improve the technology to judge highly accurately the degree of an advance of regeneration (removal of adsorbed solvent), in the conventional technology for regeneration by passing steam through the active carbon when active carbon 9 provided in a washing machine apparatus adsorbs solvent vapor and the adsorption capability is degraded. SOLUTION: A valve means (e.g., four-way valve 13) is placed in and connected with a space between a channel (arrows q and q' shown breadthwise by a dotted line) for supplying the solvent vapor in a washing tank 1 to the active carbon 9 from the first and a channel (shown vertically by a solid line) for supplying the solvent delivered from a solvent pump 3 to the washing tank 1 from the first. The steam 10 flowing through the active carbon 9 is introduced to a steel condenser 6 to be cooled and condensed via the valve 13 and the water content is separated by a water-content separator 7. The amount of separated water is measured by a water-level gage 14 and considered to be the amount of the steam 10 blown, thereby allowing the degree of the advance of regeneration of the active carbon 9 (removal of adsorbed solvent) to be highly accurately judged. COPYRIGHT: (C)2007,JPO&INPIT
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公开(公告)号:JP2010271213A
公开(公告)日:2010-12-02
申请号:JP2009123819
申请日:2009-05-22
申请人: Nippon Signal Co Ltd:The , 日本信号株式会社
发明人: UCHIDA KIYOTAKA
IPC分类号: D06F43/08 , G01N21/3504
摘要: PROBLEM TO BE SOLVED: To optimally control a vaporization apparatus for vaporizing a vaporization component existing in a medium or a vaporable material. SOLUTION: A vaporization controller 1 for controlling a vaporization operation of the vaporization apparatus having a vaporization means for vaporizing the vaporization component present in the medium or the vaporable material comprises: a measurement means for measuring a concentration of the vaporization component vaporized from the medium or the vaporable material by the vaporization operation of the vaporization apparatus using laser light at an infrared wavelength; and a control means for controlling the vaporization means in the vaporization apparatus, and controlling the vaporization quantity of the vaporization component vaporized from the medium or the vaporable material based on a measurement result from the measurement means. COPYRIGHT: (C)2011,JPO&INPIT
摘要翻译: 要解决的问题:为了最佳地控制用于汽化存在于介质或可蒸发材料中的蒸发组分的蒸发装置。 解决方案:一种用于控制蒸发装置的汽化操作的蒸发控制器1,具有用于汽化介质或蒸发材料中存在的气化组分的蒸发装置,包括:测量装置,用于测量从 所述介质或可蒸发材料通过使用红外波长的激光的蒸发装置的蒸发操作; 以及控制装置,用于控制蒸发装置中的蒸发装置,并且基于来自测量装置的测量结果来控制从介质或可蒸发材料蒸发的蒸发成分的蒸发量。 版权所有(C)2011,JPO&INPIT
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公开(公告)号:JP2010179186A
公开(公告)日:2010-08-19
申请号:JP2010122176
申请日:2010-05-28
申请人: Sanyo Electric Co Ltd , 三洋電機株式会社
发明人: SAKAMOTO TOSHIAKI , NISHINO MASAFUMI , KITAMURA YOSHITSUGU , OSANAWA MITSURU , KAKUMOTO YOSHITAKA
摘要: PROBLEM TO BE SOLVED: To provide a washing and drying machine which prevents an accident of back flash and the like more surely than the conventional one. SOLUTION: The washing and drying machine includes: an inlet ventilation passage connected to an outer tub; an outlet ventilation passage connected to the outer tub; a hot air supply means to supply hot air to the outer tub through the inlet ventilation passage and take out air having passed through the outer tub from the outlet ventilation passage; an inlet temperature detection means to detect the air temperature on the inlet side of the outer tub; and further an outlet temperature detection means to detect the air temperature on the outlet side of the outer tub. A drying operation control means controls the hot air supply means so as to maintain a difference between the inlet temperature and the outlet temperature at the vicinity of a predetermined temperature difference, and according to eccentricity detected by an eccentric load detection means, the temperature difference is set smaller, as the eccentricity is larger. COPYRIGHT: (C)2010,JPO&INPIT
摘要翻译: 要解决的问题:提供一种比常规的更可靠地防止反闪发生事故的洗衣机。 洗涤干燥机包括:连接到外桶的入口通风通道; 连接到外桶的出口通风通道; 热空气供应装置,用于通过入口通风通道向外桶供应热空气,并从出口通风通道中取出已经通过外桶的空气; 入口温度检测装置,用于检测外桶入口侧的空气温度; 以及进一步的出口温度检测装置,用于检测外桶的出口侧的空气温度。 干燥操作控制装置控制热空气供应装置以保持入口温度和出口温度在预定温度差附近的差异,并且根据由偏心负载检测装置检测的偏心率,温度差为 设定较小,偏心度较大。 版权所有(C)2010,JPO&INPIT
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