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    • 61. 发明专利
    • Ultrasonic wave generating device and machinery having the same
    • 超声波发生装置和具有该超声波发生装置的机器
    • JP2010063961A
    • 2010-03-25
    • JP2008230722
    • 2008-09-09
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOMAE SOTAFUJIWARA SUSUMU
    • B06B1/06B01D51/08B06B1/02B06B3/04
    • PROBLEM TO BE SOLVED: To provide an ultrasonic wave generating device capable of radiating a powerful sound pressure level-ultrasonic wave in a broad range and machinery having the same.
      SOLUTION: The ultrasonic wave generating device 100 includes a vibrator 10 (ultrasonic vibrator) where a piezoelectric element 10a is provided, a plurality of vibrating plates 12 that are mounted at positions corresponding to the abdominal portion of the ultrasonic wave oscillated from the vibrator 10 and flexibly vibrates to generate an ultrasonic wave by resonating with the vibration of the vibrator 10, and a plurality of reflective vibrating plates 22 that are opposed to the vibrating plates 12 at a predetermined distance, are mounted at positions corresponding to the knot portion of the ultrasonic wave oscillated from the vibrator 10, and reflect sound radiation from the vibrating plates 12.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供能够在宽范围内发射强大的声压级超声波的超声波发生装置和具有该超声波发生装置的机械。 解决方案:超声波发生装置100包括设置有压电元件10a的振动器10(超声波振动器),多个振动板12,其安装在与从该振荡器振荡的超声波的腹部对应的位置 振动器10并且通过与振动器10的振动共振而灵活地振动以产生超声波,并且与振动板12相对的预定距离的多个反射振动板22安装在与结部分相对应的位置 从振动器10振荡的超声波,并且反射来自振动板12的声辐射。版权所有(C)2010,JPO&INPIT
    • 62. 发明专利
    • Deodorizer, and air conditioner equipped with the same
    • 除臭器和装有相同的空调器
    • JP2007144278A
    • 2007-06-14
    • JP2005340065
    • 2005-11-25
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOMAE SOTAFURUHASHI TAKUYAHOSHIZAKI JUNICHIROTAKEUCHI SHIROSHIGA AKIRAMORIOKA REIJI
    • B01D53/86A61L9/00A61L9/01A61L9/16A61L9/22B01J29/076B01J35/04F24F1/00
    • PROBLEM TO BE SOLVED: To provide a deodorizer capable of enhancing decomposition and removal efficiencies of odorous gas components or toxic volatile chemical substances in air by a small amount of a noble metal-based catalyst and charged electric power, and cleaning the air more inexpensively with lower energy. SOLUTION: This device is provided with a discharge electrode 1 applied with a high voltage and a grounding electrode 4 disposed in a flow space of treating object fluid; and a catalyst part 2 disposed between the discharge electrode 1 and grounding electrode 4 and cleaning the odorous gas components and toxic volatile chemical substances. The catalyst part 2 carries a mixture formed by mixing one or more kinds of porous adsorbent having mesopores or micropores, such as zeolite, activated carbon or silica gel; a porous metal oxide having fine pore structure consisting of mainly transit metal, such as manganese oxide or titanium oxide; and noble metals like platinum or palladium. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供能够通过少量的贵金属类催化剂和带电电力提高空气中的气体成分或有毒的挥发性化学物质的分解和去除效率的除臭剂,并且清洁空气 更低廉的能源。 解决方案:该装置设置有施加高电压的放电电极1和设置在处理对象流体的流动空间中的接地电极4; 以及设置在放电电极1和接地电极4之间的清洁有气体成分和有毒的挥发性化学物质的催化剂部分2。 催化剂部分2携带通过混合一种或多种具有介孔或微孔的多孔吸附剂如沸石,活性炭或硅胶形成的混合物; 具有细孔结构的多孔金属氧化物,主要由运输金属如氧化锰或氧化钛组成; 贵金属如铂或钯。 版权所有(C)2007,JPO&INPIT
    • 63. 发明专利
    • Nozzle and vacuum cleaner using the same
    • 使用相同的喷嘴和真空清洁器
    • JP2014087385A
    • 2014-05-15
    • JP2012237473
    • 2012-10-29
    • Mitsubishi Electric Corp三菱電機株式会社
    • MAEDA TSUYOSHIHOSHIZAKI JUNICHIROKOMAE SOTA
    • A47L9/04
    • PROBLEM TO BE SOLVED: To provide a nozzle and vacuum cleaner using the same capable of removing dust attached to the distal ends of cleaning bodies while improving suction force of a suction chamber.SOLUTION: A nozzle comprises: a suction chamber having an opening; a suction air passage communicating with the suction chamber; a brush chamber partitioned to be different from the suction chamber and the suction air passage and having an opening opened in a direction being the same as that of the opening of the suction chamber; a brush shaft rotatably arranged in the brush chamber; a cleaning bodies arranged on the outer peripheral surface of the brush shaft; a removal body arranged inside the brush chamber to have contact with the distal ends of the cleaning bodies; and a removal air passage connecting a part close to the removal body in the brush chamber and the suction air passage.
    • 要解决的问题:提供使用该喷嘴和吸尘器的喷嘴和吸尘器能够除去附着在清洁体的末端上的灰尘,同时改善吸入室的吸力。解决方案:喷嘴包括:具有开口的吸入室; 与所述吸入室连通的吸入空气通路; 分隔成不同于吸入室和吸入空气通道并且具有与吸入室的开口相同的方向开口的开口的刷室; 可旋转地布置在刷室中的刷轴; 布置在所述刷轴的外周表面上的清洁体; 布置在刷室内部以与清洁体的远端接触的去除体; 以及连接毛刷室中的除去体的部分和吸入空气通路的去除空气通路。
    • 64. 发明专利
    • Detection device for refrigerant leakage, and refrigerating air conditioning device
    • 用于制冷剂泄漏的检测装置和制冷空气调节装置
    • JP2012159214A
    • 2012-08-23
    • JP2011017729
    • 2011-01-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • OCHIAI YASUTAKAKOMAE SOTA
    • F25B49/02F25B43/00
    • PROBLEM TO BE SOLVED: To provide a detection device for refrigerant leakage that calculates an excess liquid refrigerant amount in an excess-liquid-refrigerant storage container using an inexpensive detection device having high degree of installation freedom to detect refrigerant leakage, and to provide a refrigerating air conditioning device with the same.SOLUTION: The detection device for refrigerant leakage includes: a refrigerant amount calculation unit 3b that calculates a refrigerant amount except for the excess liquid refrigerant amount in an ACC 24, in a refrigerant circulating a refrigerant circuit; a resonance frequency detection sensor 25 that includes a vibrator 25b installed on the exterior of the ACC 24 and for vibrating the ACC 24 and a receiver 25c for detecting vibration of the ACC 24 vibrated by the vibrator 25b, and that detects a resonance frequency of the ACC 24 from a detection signal of the receiver 25c; an excess-liquid-refrigerant amount calculation unit 3c that calculates the excess liquid refrigerant amount in the ACC 24 on the basis of the result detected by the resonance frequency detection sensor 25; and a determination unit 3d that calculates the total refrigerant amount in the refrigerant circuit 10 from the results calculated by the excess-liquid-refrigerant amount calculation unit 3c and the refrigerant amount calculation unit 3b to determine presence of refrigerant leakage.
    • 解决的问题:提供一种制冷剂泄漏检测装置,其使用具有高安装自由度的便宜的检测装置来计算过剩液体制冷剂储存容器中的过量液体制冷剂量以检测制冷剂泄漏,并且 提供与此相同的制冷空调装置。 用于制冷剂泄漏的检测装置包括制冷剂量计算单元3b,该制冷剂量计算单元3b计算在循环制冷剂回路的制冷剂中ACC24中的过量的液体制冷剂量以外的制冷剂量; 谐振频率检测传感器25,其包括安装在ACC 24的外部并用于振动ACC 24的振动器25b和用于检测由振动器25b振动的ACC 24的振动的接收器25c,并且检测 ACC 24从接收器25c的检测信号; 过剩液体制冷剂量计算单元3c,其基于由共振频率检测传感器25检测到的结果计算ACC 24中的过量的液体制冷剂量; 以及根据由过量液体制冷剂量计算单元3c和制冷剂量计算单元3b计算的结果计算制冷剂回路10中的总制冷剂量以确定制冷剂泄漏的存在的确定单元3d。 版权所有(C)2012,JPO&INPIT
    • 65. 发明专利
    • Air conditioner
    • 冷气机
    • JP2011169500A
    • 2011-09-01
    • JP2010032860
    • 2010-02-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOMAE SOTAUCHIDA TAKESHI
    • F24F3/16F24F3/14
    • PROBLEM TO BE SOLVED: To solve problems in a constitution of a conventional air conditioner wherein it is difficult to prevent releasing of an odor substance attached to a humidity conditioning member to the external of the air conditioner, and further it is difficult to prevent degradation of humidity absorbing and humidifying performances due to clogging of small holes formed on the humidity conditioning member by dust or the odor substance. SOLUTION: This air conditioner includes: a body provided with an intake port 6 for taking the air, an exhaust port 8 for discharging the air, a ventilation passage section 3 communicating the intake port and the exhaust port, and a humidity conditioning section disposed on a position independent from the ventilation passage section for humidifying processing and dehumidifying processing; the humidity conditioning member holding a humidity absorbing material, disposed rotatably over the ventilation passage section and the humidity conditioning section, so that a region positioned on the ventilation passage section and a region positioned on the humidity conditioning section are moved by the rotation, and adsorbing or desorbing moisture at the humidity conditioning section to dehumidify or humidify the air taken at the ventilation passage section; and a cleaning section for cleaning the dust or odor substance attached to the humidity conditioning member. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题为了解决传统空调的结构中的问题,其中难以防止附着在湿度调节部件上的气味物质释放到空调的外部,并且还难以 防止由于灰尘或气味物质而在湿度调节部件上形成的小孔堵塞而导致的吸湿加湿性能下降。 解决方案:该空调包括:本体设置有用于吸入空气的进气口6,用于排出空气的排气口8,连通进气口和排气口的通风通道部分3和湿度调节 设置在与通风通路部分无关的位置,用于加湿处理和除湿处理; 保湿吸湿材料的湿度调节部件可旋转地设置在通气通路部分和湿度调节部分上,使得位于通风通道部分上的区域和位于湿度调节部分上的区域通过旋转而移动,并且吸附 或在湿度调节部分解吸湿气以对在通风通道部分所采取的空气进行除湿或加湿; 以及用于清洁附着在湿度调节部件上的灰尘或气味物质的清洁部。 版权所有(C)2011,JPO&INPIT
    • 67. 发明专利
    • 空気清浄機
    • 空气净化器
    • JP2015045462A
    • 2015-03-12
    • JP2013177125
    • 2013-08-28
    • 三菱電機株式会社Mitsubishi Electric Corp
    • SHIGA AKIRAKOMAE SOTAFURUHASHI TAKUYASAIKI AYUMI
    • F24F13/08F24F7/00
    • 【課題】全体を薄型化しつつも風路での圧損を抑制し、吹出口から均一な気流を効率よく吹き出すことが可能な空気清浄機を提供する。【解決手段】空気清浄機は、ケーシング1、吸込口4、吹出口5、送風ユニット6、空気清浄デバイス8、吸込背面パネル9、複数の風向制御板10等を備える。空気清浄機の作動時には、吸込口4から吸い込まれた空気が空気清浄デバイス8により清浄化され、この空気は送風ユニット6から送り出された後に、吹出口5から外部に吹き出す。このとき、各風向制御板10は、送風ユニット6から送り出された空気の流れを吹出口5に向けて案内すると共に、当該空気の流れを吹出口5の全体に分散させる。これにより、吹出口5の全体から吹き出す空気を均一化できるので、吹出口5の開口面積を大きくして圧損を抑制し、また、空気清浄機の全体を薄型化することができる。【選択図】図1
    • 要解决的问题:提供一种空气净化器,其抑制空气管道中的压力损失,并且可以在其整体厚度变薄的同时有效地吹出来自吹出口的均匀气流。解决方案:空气净化器包括 外壳1,吸入口4,吹出口5,吹风单元6,空气净化装置8,吸力背面板9,多个风向控制板10等。 在空气滤清器的操作中,从吸入口4吸入的空气被空气净化装置8清扫,从吹出口6送出吹出口5后吹出外部。此时 时间,每个风向控制板10将从送风单元6发出的空气流朝向吹出口5引导,并将空气流分散到整个吹出口5.通过这种配置 由于能够使吹出口5全部吹出的空气均匀,因此通过扩大吹出口5的开口面积来抑制压力损失,空气滤清器的整体厚度变薄 。
    • 68. 发明专利
    • Ultrasonic generation apparatus and smoke exhaustion apparatus
    • 超声波发生装置和烟雾排放装置
    • JP2013141652A
    • 2013-07-22
    • JP2012003600
    • 2012-01-11
    • Mitsubishi Electric Corp三菱電機株式会社
    • FUJIWARA SUSUMUHOSHIZAKI JUNICHIROKOMAE SOTA
    • B06B1/06A62B13/00
    • PROBLEM TO BE SOLVED: To provide an ultrasonic generation apparatus and a smoke exhaustion apparatus, quietly and certainly blowing off smoke or the like to another place in a short time by the force of an acoustic flow by an intense sound pressure level.SOLUTION: This ultrasonic generation apparatus includes: an ultrasonic signal generator 3 generating an ultrasonic signal; a low-frequency signal generator 5 generating a low-frequency signal; an ultrasonic modulator 4 inputting the ultrasonic signal outputted from the ultrasonic signal generator 3 and the low-frequency signal outputted from the low-frequency signal device 5, and generating a carrier wave wherein the low-frequency signal is superposed on the ultrasonic signal; an amplifier 7 amplifying the carrier wave from the ultrasonic modulator 4; and an ultrasonic generation means 100 inputting an output signal from the amplifier 7, and generating an ultrasonic wave.
    • 要解决的问题:为了提供超声波发生装置和排烟装置,通过强烈的声压级的声流的力量,在短时间内将烟雾等静音地吹出到另一个地方。解决方案:这 超声波发生装置包括:超声波信号发生器3,生成超声波信号; 产生低频信号的低频信号发生器5; 超声波调制器4,输入从超声波信号发生器3输出的超声信号和从低频信号装置5输出的低频信号,生成低频信号叠加在超声波信号上的载波; 放大器7,放大来自超声波调制器4的载波; 以及超声波产生装置100,其输入来自放大器7的输出信号,并产生超声波。
    • 69. 发明专利
    • Thin plate inspection device
    • 薄板检查装置
    • JP2012103034A
    • 2012-05-31
    • JP2010249556
    • 2010-11-08
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOMAE SOTAFUJIWARA SUSUMU
    • G01N29/14
    • PROBLEM TO BE SOLVED: To provide a thin plate inspection device enabling a stable measurement regarding a detection of the presence or absence of a crack on a thin plate as a measured object, regardless of variations of the shape etc. of the measured object and an installation position of support means.SOLUTION: A thin plate inspection device emits a sound wave from a vibration plate 12. A variation of sound pressure gives a buoyant force to a measured object 50, thereby vibrating the whole of the measured object 50 with a displacement magnitude Δr2.
    • 要解决的问题:提供一种薄板检查装置,其能够对作为测量对象的薄板上的裂纹的存在或不存在的检测进行稳定的测量,而不管所测量的形状等的变化如何 物体和支撑装置的安装位置。 解决方案:薄板检查装置从振动板12发出声波。声压的变化给测量物体50提供浮力,从而以位移幅度Δr2振动整个被测物体50。 版权所有(C)2012,JPO&INPIT
    • 70. 发明专利
    • Crack detection support device
    • 裂纹检测支持装置
    • JP2011058879A
    • 2011-03-24
    • JP2009207180
    • 2009-09-08
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOMAE SOTAFUJIWARA SUSUMUOISHI TOMOKO
    • G01N29/12
    • PROBLEM TO BE SOLVED: To provide a crack detection support device effectively detecting a crack of a measuring object by non-contact vibration of the measuring object by stably irradiating a measuring target with ultrasonic waves with a high sound pressure level to float and vibrate the measuring object along the density of the ultrasonic waves.
      SOLUTION: The crack detection support device 100 includes: a vibrating part 10 generating ultrasonic waves; a diaphragm 12 generating ultrasonic waves with a prescribed sound pressure level by resonating with vibration of the vibrating part 10; an oscillation part 30 supplying a voltage of a frequency in a range of the measuring object 50 floated and deviated from the resonance frequency of the diaphragm 12, to a piezoelectric element 10a; and a sound detection device 13 detecting a sound generated from the measuring object 50 floating and vibrating in the air by the ultrasonic waves emitted from the diaphragm 12.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种裂纹检测支持装置,通过用高声压级的超声波稳定地照射测量对象来有效地检测测量对象的裂纹,以测量对象的非接触振动,以浮动和 沿着超声波的密度振动测量对象。 解决方案:裂纹检测支持装置100包括:产生超声波的振动部分10; 振动板12,通过与振动部10的振动共振而产生规定的声压级的超声波; 将测量对象物50的范围内的频率的电压提供到振动膜12的谐振频率而偏离的振荡部分30,压电元件10a; 以及声音检测装置13,其检测由从隔膜12发射的超声波在空气中浮动和振动的测量对象50产生的声音。版权所有(C)2011,JPO&INPIT