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    • 1. 发明专利
    • Electrostatic atomization device
    • 静电成型装置
    • JP2007275799A
    • 2007-10-25
    • JP2006106737
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • KOBAYASHI KENTAROYOSHIOKA KOICHINATSUHARA TSUTOMUHIRAI KOICHI
    • B05B5/057F25B21/02
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization device capable of surely sealing a tightly closed space housing a Peltier unit and preventing the leakage of heat from a heat radiation part through a housing cylindrical body.
      SOLUTION: A flange part 12 for increasing a sealing width which is projected to the outside is provided around the end part of an opening 18c side of a bottomed cylindrical housing cylindrical body 18. A cooling part 2 and a circuit part 9 of a Peltier module 1 are housed in the housing cylindrical body 18. A heat radiation part 3 of the Peltier module 1, the end surface of the opening 18c side of the housing cylindrical body 18 which is opposed to the heat radiation part 3 and a flange surface 12a of the flange part 12 are stuck to each other with a sealing resin 26. A heat transfer preventing part 30 for disturbing the transfer of the heat from the outside to the inside of the flange part 12 is formed on the inside end part of the flange part 12.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种静电雾化装置,其能够可靠地密封容纳珀尔帖单元的紧密封闭的空间,并防止热量从热辐射部分通过壳体圆柱体泄漏。 解决方案:用于增加突出到外部的密封宽度的凸缘部分12设置在有底圆筒形壳体圆柱体18的开口18c侧的端部周围。冷却部件2和电路部件9 珀耳帖模块1容纳在壳体圆柱体18中。珀尔帖模块1的散热部分3,与散热部分3相对的壳体圆柱形主体18的开口18c侧的端面和凸缘 凸缘部分12的表面12a用密封树脂26彼此粘合。用于阻止热量从凸缘部分12的外部传递到内部的传热防止部分30形成在 法兰部分12.版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Electrostatic atomization device
    • 静电成型装置
    • JP2007275798A
    • 2007-10-25
    • JP2006106736
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • KOBAYASHI KENTAROYOSHIOKA KOICHINATSUHARA TSUTOMUHIRAI KOICHI
    • B05B5/057
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization device capable of surely preventing risks such that air present in a tightly closed frame body is thermally expanded in a fixing time to cause the breaking of an adhered part or the occurrence of pin holes by carrying out the fixation of the cooling side of the tightly closed frame body and heat radiation side of the tightly closed frame body using a thermosetting adhesive to fix with high airtight reliability for a short time.
      SOLUTION: The electrostatic atomization device has a Peltier module 1 having a circuit part 9 held between the cooling side heat transfer part 2 and a heat radiation side heat transfer part 3, a discharge electrode 4 erected on the cooling side heat transfer part and the cap type tightly closed frame body 17, wherein the tightly closed frame body is fixed to the cooling side heat transfer in a state that the heat radiation side heat transfer part and the circuit part are housed in the tightly closed frame body with a cooling side fixing part 24 and is fixed to the heat radiation side heat transfer part with a heat radiation side fixing part 25. The cooling side fixing part 24 and the heat radiation side fixing part 25 are formed from a thermosetting adhesive and a sealing fixing part 26 for sealing an air vent hole 23 provided in the tightly closed frame body is formed from a normal temperature setting adhesive or a UV setting adhesive.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种静电雾化装置,其能够确保防止存在于密闭框架体中的空气在固定时间内热膨胀以引起粘合部分断裂或引发孔的发生的风险 通过使用热固性粘合剂来执行密闭框体的冷却侧和密闭框体的散热侧的固定,以短时间高密封地固定。 解决方案:静电雾化装置具有珀尔帖模块1,其具有保持在冷却侧传热部分2和散热侧传热部分3之间的电路部分9,竖立在冷却侧传热部分上的放电电极4 帽型密闭框体17,其中,将密闭框架体在散热侧传热部和电路部分收纳在密闭框体内的状态下固定在冷却侧热传递 侧固定部24,并且利用散热侧固定部25固定在散热侧传热部。冷却侧固定部24和散热侧固定部25由热固性粘合剂和密封固定部26形成 用于密封设置在紧密框架体中的通气孔23由常温固化粘合剂或UV固化粘合剂形成。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Electrostatic atomization device
    • 静电成型装置
    • JP2007275796A
    • 2007-10-25
    • JP2006106734
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIYOSHIOKA KOICHIKOBAYASHI KENTARO
    • B05B5/057
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization device capable of surely holding a high voltage impressing plate in a positioned state, surely bringing the high voltage impressing plate into contact with a discharge electrode, and preventing the leakage of the heat of a cooling part of a Peltier module to the outside, thereby improving the cooling efficiency of the Peltier module.
      SOLUTION: The Peltier module 1 is housed in a bottomed cylindrical housing cylinder body 18 having an opening one side, the cooling part 2 of the Peltier module is brought into contact with the inner surface of the bottom part 18a of the housing cylinder body, the discharge electrode 4 is projected from an electrode inserting hole 22 formed on the bottom of the housing cylindrical body to arrange a discharge part 4a of the same in the outside, the high voltage impressing plate 14 on which a holding hole 14a is formed is arranged on the bottom part of the housing cylindrical body, the projected base part of the discharge electrode is held by the holding hole of the high voltage impressing plate to connect the high voltage impressing plate to electrically connected to the discharge electrode, a part of the high voltage impressing plate is supported by a support part 31 projected from the housing cylinder body and a heat insulating gap 32 is formed between the high voltage impressing plate and the bottom of the housing cylindrical body.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种能够可靠地将高压施加板保持在定位状态的静电雾化装置,确保使高压施加板与放电电极接触,并且防止热泄漏 Peltier模块的冷却部分到外部,从而提高了珀耳帖模块的冷却效率。 解决方案:珀耳帖模块1容纳在具有开口一侧的有底圆柱形壳体筒体18中,珀尔帖模块的冷却部分2与壳体筒体的底部18a的内表面接触 放电电极4从形成在壳体筒体的底部的电极插入孔22突出,以将外部的排出部4a布置在其上形成有保持孔14a的高压施加板14 布置在壳体圆筒体的底部,放电电极的突出的基部由高压施加板的保持孔保持,以将高压施加板连接到电连接到放电电极,一部分 高压施加板由从壳体筒体突出的支撑部31支撑,并且在高压施加p之间形成隔热间隙32 晚期和底部的圆柱体的外壳。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Method of manufacturing thermoelectric material
    • 制造热电材料的方法
    • JP2006269870A
    • 2006-10-05
    • JP2005087772
    • 2005-03-25
    • Matsushita Electric Works Ltd松下電工株式会社
    • WATANABE TOMOHARUYOSHIOKA KOICHIIMAI JUNJI
    • H01L35/34B22F3/14B22F9/08C22C1/04H01L35/16H02N11/00
    • PROBLEM TO BE SOLVED: To provide a manufacturing method employing a liquid quenching method which can acquire an N-type Bi
      2 Te
      3 -based thermoelectric material having an excellent performance index.
      SOLUTION: The method of manufacturing a thermoelectric material is provided with a thin-piece powder forming process of supplying a molten metal containing Bi and Te onto a rotating roll to form the metal into a thin-piece powder by the liquid quenching method; a preparatory molding process of pressing a dice in which the thin-piece powder is filled so that a surface (c) may be aligned substantially in parallel in a height direction in at least the center of a widthwise direction, in the axial direction same as the height direction of the dice at a temperature lower than a baking temperature of the thermoelectric material, to preparatorily mold the powder; and a hotpress process for applying hotpress to the preparatorily molded thin-piece powder, while pressing the powder in the axial direction same as the pressing direction in the preparatory molding process.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种采用液体淬火方法的制造方法,其可以获得具有优异性能的N型Bi 2 SB <3> 绩效指标。 解决方案:制造热电材料的方法设置有将含有Bi和Te的熔融金属供给到旋转辊上的薄片粉末形成方法,以通过液体淬火方法将金属形成为薄片状粉末 ; 压入其中填充有薄片粉末的骰子的预备模制过程,使得表面(c)可以在至少沿宽度方向的中心的高度方向上基本上平行排列,在轴向上与 在低于热电材料的烘烤温度的温度下,将模具的高度方向预先设定成粉末; 以及在预备模制过程中将压力施加到预备成型的薄片粉末的同时按照与按压方向相同的轴向的粉末的加热方法。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Infant auxiliary device
    • 婴儿辅助装置
    • JP2003034167A
    • 2003-02-04
    • JP2001222497
    • 2001-07-24
    • Matsushita Electric Works Ltd松下電工株式会社
    • KOBAYASHI KENTAROYOSHIOKA KOICHI
    • A47C7/74B60H1/00B60H1/32B60H1/34B60N2/28B60N2/90B60N2/44
    • PROBLEM TO BE SOLVED: To provide an infant auxiliary device attachable to and detachable from an automotive seat and capable of giving a comfortable air-conditioning state to an infant while ensuring the freedom in the mounting position or mounting direction to the automotive seat. SOLUTION: This infant auxiliary device is used fixedly to a seat in order to serve as a seat belt in the boarding of the infant. This device comprises a seat 1 for seating the infant, and the seat 1 comprises air outlet ports 6, a blowing fan 9, an intake port 7 for sucking air by the fan 9, and a blowing passage 8 for guiding the air sucked by the fan 9 through the intake port 7 to the air outlet ports 6.
    • 要解决的问题:提供一种能够安装到汽车座椅上并可拆卸的婴儿辅助装置,并且能够确保婴儿座椅的安装位置或安装方向的自由度,同时能够向婴儿提供舒适的空调状态。 解决方案:这种婴儿辅助装置固定地用于座椅,以便作为婴儿登机时的安全带。 该装置包括用于安置婴儿的座椅1,座椅1包括空气出口6,吹风扇9,用于通过风扇9吸入空气的进气口7和用于引导被吸入的空气的吹风通道8 风扇9通过进气口7到出风口6。
    • 6. 发明专利
    • Electrostatic atomizing device
    • 静电成型装置
    • JP2007275800A
    • 2007-10-25
    • JP2006106738
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • YOSHIOKA KOICHIKOBAYASHI KENTARONATSUHARA TSUTOMUHIRAI KOICHI
    • B05B5/057
    • PROBLEM TO BE SOLVED: To prevent a circuit part of a Peltier module from being excessively loaded by allowing tightening force of a tightening screw not to be applied to a heat transfer part at the heat radiation side.
      SOLUTION: The electrostatic atomizing device has a protruded cylindrical spacer 30 allowing the tightening screw 28 to pass through at a part of an external surface part 17a of a sealed frame 17 and is provided with a mounting member 12 detachably attached to the heat transfer part 3 at the heat radiation side. A tightening part 12a screwed to the sealed frame 17 through the cylindrical spacer 30 and an engaging part 12b engaged with an end of the heat transfer part 3 at the heat radiation side at an external part 17b around the cylindrical spacer 30 of the sealed frame 17 are integrally formed with each other in the mounting member 12. The end of the heat transfer part 3 at the heat radiation side is sandwiched between the external peripheral part 17b around the cylindrical spacer 30 of the sealed frame 17 and the engaging part 12b of the mounting member 12 by screwing the tightening part 12a to the sealed frame 17 through the cylindrical spacer 30.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过允许紧固螺钉的紧固力不被施加到散热侧的传热部分,来防止珀耳帖模块的电路部分过度地加载。 解决方案:静电雾化装置具有突出的圆柱形间隔件30,允许紧固螺钉28在密封框架17的外表面部分17a的一部分处通过,并且设置有可拆卸地附接到热量的安装构件12 在热辐射侧传送部分3。 紧固部分12a通过圆柱形间隔件30与密封框架17螺纹连接,以及接合部分12b,该接合部分12b在密封框架17的圆柱形间隔件30周围的外部部分17b处在散热侧与传热部分3的端部相接合 在安装构件12中彼此一体地形成。散热侧的传热部3的端部夹在围绕密封框架17的圆柱形间隔件30的外周部17b和 安装构件12通过圆柱形间隔件30将紧固部分12a拧紧到密封框架17.版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Electrostatic atomizing device
    • 静电成型装置
    • JP2007275797A
    • 2007-10-25
    • JP2006106735
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • KOBAYASHI KENTAROYOSHIOKA KOICHINATSUHARA TSUTOMUHIRAI KOICHI
    • B05B5/057A61L9/14A61N1/44
    • PROBLEM TO BE SOLVED: To prevent the excess condensate not contributing to discharge from accumulating on the surface side of a heat insulating material and from forming such puddle of water as to cover the entire part of the outwardly exposed portion of the discharge electrode from the surface of the heat insulating material, and to thereby stabilize the discharge. SOLUTION: The electrostatic atomizing device is equipped with the discharge electrode 1, a cooling means 2 for cooling the discharge electrode 1 to condensate the moisture in the air and supplying the condensate to the discharge electrode 1, and a high voltage applying means 3 for applying the high voltage to the discharge electrode 1 for the purpose of electrostatic atomization of the condensate generated in the discharge electrode 1. The surrounding of the discharge electrode 1 is provided with the heat insulating material 7 via a small clearance 6 the aperture of which is a projecting direction side of the discharge electrode 1, and a discharge part 4a at the tip of the discharge electrode 1 is exposed. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了防止多余的冷凝物不会积聚在绝热材料的表面侧,并且形成这种水坑,以覆盖放电电极的向外暴露部分的整个部分 从绝热材料的表面,从而稳定放电。 解决方案:静电雾化装置配备有放电电极1,用于冷却放电电极1以冷凝空气中的水分并将冷凝物供应到放电电极1的冷却装置2和高压施加装置 3,用于将放电电极1的高电压施加到放电电极1中产生的冷凝水的静电雾化的目的。放电电极1的周围通过小间隙6设置隔热材料7, 即放电电极1的突出方向侧,露出放电电极1前端的放电部4a。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Electrostatic atomization device
    • 静电成型装置
    • JP2007144293A
    • 2007-06-14
    • JP2005341204
    • 2005-11-25
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIYOSHIOKA KOICHIKOBAYASHI KENTAROSADAMATSU KAZUHISAAIDA JUN
    • B05B5/057
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization device for producing condensate by cooling a discharge electrode with a Peltier module, which prevents the invasion of moisture vapor to the Peltier module and enhances the cooling efficiency of a discharge electrode and which enhances the durability to the thermal change of a Peltier module.
      SOLUTION: The electrostatic atomization device is provided with a cooling side heat-transfer plate 2 which is closely attached to the cooling side of the Peltier module 1, a discharge side heat-transfer plate 3 which is closely attached to the discharge side of the Peltier module 1 and the discharge electrode 4 installed on the cooling side heat-transfer plate 2. It is further provided with a sealed frame body 14 to seal the Peltier module 1 which is a rigid body with a low heat-transfer coefficient and bonded to the cooling side heat-transfer plate 2 and the discharge side heat-transfer plate 3 in the presence of an air layer L, and a high heat transfer coefficient shock absorbing material 12 which exists in at least one of the cooling side heat-transfer plate 2 and the discharge side heat-transfer plate 3.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种通过用珀尔帖模块冷却放电电极来制造冷凝水的静电雾化装置,其防止湿气向珀尔帖模块的侵入并提高放电电极的冷却效率,并且其增强 对Peltier模块的热变化的耐久性。 解决方案:静电雾化装置设置有紧密附着在珀尔帖模块1的冷却侧的冷却侧传热板2,紧贴在排出侧的排出侧传热板3 珀尔贴模块1和安装在冷却侧传热板2上的放电电极4.还设置有密封框体14,以密封具有低传热系数的刚体的珀耳帖模块1, 在空气层L的存在下与冷却侧传热板2和排出侧传热板3接合,以及存在于至少一个冷却侧热传导板3中的高传热系数的冲击吸收材料12。 转印板2和排出侧传热板3。版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Electrostatic atomization apparatus
    • 静电成型装置
    • JP2006150334A
    • 2006-06-15
    • JP2005067791
    • 2005-03-10
    • Matsushita Electric Works Ltd松下電工株式会社
    • AKISADA SHOSUKEWADA SUMIOHIRAI TOSHIHISASUGAWA AKIHIDEMIHARA FUMIOISAKA ATSUSHIMATSUMOTO TATSUHIKOKOBAYASHI KENTAROYOSHIOKA KOICHIWATANABE TOMOHARUHIRAI KOICHIMURASE SHINYA
    • B05B5/057B05B5/025B05B5/08
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization apparatus in which the labor and time to replenish water are not required and a nanometer-sized mist is quickly generated suitably.
      SOLUTION: This electrostatic atomization apparatus is provided with: a discharge electrode 2; a counter electrode 3 opposed to the discharge electrode; a cooling means 5 for cooling the discharge electrode 2 to produce water by means of moisture in the air on the periphery of the discharge electrode; a high-voltage power source 4 for impressing high voltage between the discharge electrode and the counter electrode to discharge electricity between them and atomize the produced water; and a control means C for controlling the high-voltage power source according to the output from an abnormal discharge detecting means for monitoring an electricity-discharged state and detecting an abnormal discharge. Since moisture in the air is made to condense into water on the discharge electrode and the water is supplied directly to the discharge electrode, whether there is the water to be atomized electrostatically on the discharge electrode is detected as the abnormal discharge to restrain a useless discharge operation.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种不需要劳动和补充水的时间的静电雾化装置,并且适当地快速生成纳米级的雾。 解决方案:该静电雾化装置设有:放电电极2; 与放电电极相对的对置电极3; 用于冷却放电电极2以通过放电电极周围的空气中的水分产生水的冷却装置5; 用于在放电电极和对电极之间施加高电压以在它们之间放电并使生成的水雾化的高压电源4; 以及控制装置C,用于根据异常放电检测装置的输出控制高电压电源,用于监视放电状态并检测异常放电。 由于空气中的水分在放电电极上凝结成水,水直接供给到放电电极,所以检测放电电极上是否静电被雾化的水作为异常放电,以抑制无用的放电 操作。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Method of manufacturing semiconductor thermoelectric material
    • 制造半导体热电材料的方法
    • JP2005243662A
    • 2005-09-08
    • JP2004047157
    • 2004-02-24
    • Matsushita Electric Works Ltd松下電工株式会社
    • KOBAYASHI KENTAROYOSHIOKA KOICHIWATANABE TOMOHARU
    • B22D21/00C22C12/00C22C28/00H01L35/16H01L35/34
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a semiconductor thermoelectric material by which a uniform and fine organization of a crystal grain can be obtained, and which can reduce a variation in thermoelectric properties and mechanical strength by reducing defects such as an atomic air hole. SOLUTION: The semiconductor thermoelectric material 1 having a hexagonal structure is stored in a nozzle 5, and then heated and melted by a high-frequency coil 6. The semiconductor thermoelectric material 1 heated and melted in the nozzle 5 is blown into a mold 2 formed in a prescribed shape and solidified. After making a crystal C-plane oriented, the solidified semiconductor thermoelectric material 1 is heat-treated under prescribed heating conditions to remove crystal defects. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种制造半导体热电材料的方法,通过该方法能够获得均匀且精细的晶粒结构,并且可以通过减少诸如以下的缺陷来减小热电性能和机械强度的变化 原子空气孔。 解决方案:具有六边形结构的半导体热电材料1储存在喷嘴5中,然后被高频线圈6加热熔化。在喷嘴5中加热熔化的半导体热电材料1被吹入 模具2以规定的形状形成并固化。 在制备晶体C面取向后,在规定的加热条件下对固化的半导体热电材料1进行热处理以除去晶体缺陷。 版权所有(C)2005,JPO&NCIPI