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    • 3. 发明授权
    • Cyclone separator and vacuum cleaner
    • 旋风分离器和吸尘器
    • US09226631B2
    • 2016-01-05
    • US13575364
    • 2011-02-03
    • Sota KomaeTsuyoshi MaedaJunichiro HoshizakiTomoo KobayashiAkihiro IwaharaMasayoshi IzukaTadashi FukushimaKenji YanagisawaDaisuke Kondo
    • Sota KomaeTsuyoshi MaedaJunichiro HoshizakiTomoo KobayashiAkihiro IwaharaMasayoshi IzukaTadashi FukushimaKenji YanagisawaDaisuke Kondo
    • A47L9/16A47L9/00
    • A47L9/1625A47L9/0081A47L9/1683
    • A cyclonic separator and a vacuum cleaner which efficiently separates dust, collect the dust without re-scattering it and make low noise are provided. In a primary cyclone portion 10, a primary swirl chamber 12 swirls air containing dust sucked from a primary inlet 11, and thereby, separates a first dust and a second dust from the air containing dust to collect them respectively in a zero-order dust case 114 which is provided at a side of the primary swirl chamber 12 and communicates with a zero-order opening portion 113 provided at a side wall, and a primary dust case 14 provided at a lower side of the primary swirl chamber 12. In a secondary cyclone portion 20, a secondary inlet 21 with an opening area smaller than that of a primary outlet body 15 sucks air exhausted from the primary outlet body 15, a secondary swirl chamber 22 swirls the first air to separate the second dust which is finer than the first dust from the first air to collect the second dust in a secondary dust case 24 provided at a lower side of the secondary swirl chamber 12. With regard to the cyclonic separator with such a configuration, the zero-order dust case 114 is formed to cover at least a part of the secondary cyclone portion 20.
    • 旋风分离器和真空吸尘器可有效分离灰尘,收集灰尘而不会再次散射并产生低噪音。 在主旋流部10中,初级涡旋室12使包含从主入口11吸入的灰尘的空气旋转,从而将含有灰尘的空气中的第一灰尘和第二灰尘分离,收集到零级除尘器 114,其设置在主旋流室12的一侧,并与设置在侧壁上的零级开口部分113连通,以及设置在主涡流室12的下侧的一次防尘壳14。 旋风部分20,具有比主出口主体15的开口面积小的开口面积的次级入口21吸入从主出口体15排出的空气,次级涡流室22使第一空气旋转以分离比第一空气流 来自第一空气的第一灰尘将第二灰尘收集在设置在次级涡流室12的下侧的二次灰尘盒24中。对于具有这种结构的旋风分离器,零级灰尘盒1 14形成为覆盖第二旋风部20的至少一部分。
    • 4. 发明申请
    • CYCLONE SEPARATOR AND VACUUM CLEANER
    • 循环分离器和真空清洁器
    • US20130025086A1
    • 2013-01-31
    • US13575364
    • 2011-02-03
    • Sota KomaeTsuyoshi MaedaJunichiro HoshizakiTomoo KobayashiAkihiro IwaharaMasayoshi IzukaTadashi FukushimaKenji YanagisawaDaisuke Kondo
    • Sota KomaeTsuyoshi MaedaJunichiro HoshizakiTomoo KobayashiAkihiro IwaharaMasayoshi IzukaTadashi FukushimaKenji YanagisawaDaisuke Kondo
    • B01D45/16A47L9/16
    • A47L9/1625A47L9/0081A47L9/1683
    • A cyclonic separator and a vacuum cleaner which efficiently separates dust, collect the dust without re-scattering it and make low noise are provided.In a primary cyclone portion 10, a primary swirl chamber 12 swirls air containing dust sucked from a primary inlet 11, and thereby, separates a first dust and a second dust from the air containing dust to collect them respectively in a zero-order dust case 114 which is provided at a side of the primary swirl chamber 12 and communicates with a zero-order opening portion 113 provided at a side wall, and a primary dust case 14 provided at a lower side of the primary swirl chamber 12. In a secondary cyclone portion 20, a secondary inlet 21 with an opening area smaller than that of a primary outlet body 15 sucks air exhausted from the primary outlet body 15, a secondary swirl chamber 22 swirls the first air to separate the second dust which is finer than the first dust from the first air to collect the second dust in a secondary dust case 24 provided at a lower side of the secondary swirl chamber 12. With regard to the cyclonic separator with such a configuration, the zero-order dust case 114 is formed to cover at least a part of the secondary cyclone portion 20.
    • 旋风分离器和真空吸尘器可有效分离灰尘,收集灰尘而不会再次散射并产生低噪音。 在主旋流部10中,初级涡旋室12使包含从主入口11吸入的灰尘的空气旋转,从而将含有灰尘的空气中的第一灰尘和第二灰尘分离,收集到零级除尘器 114,其设置在主旋流室12的一侧,并与设置在侧壁上的零级开口部分113连通,以及设置在主涡流室12的下侧的一次防尘壳14。 旋风部分20,具有比主出口主体15的开口面积小的开口面积的次级入口21吸入从主出口体15排出的空气,次级涡流室22使第一空气旋转以分离比第一出口主体15更细的第二灰尘 来自第一空气的第一灰尘将第二灰尘收集在设置在次级涡流室12的下侧的二次灰尘盒24中。对于具有这种结构的旋风分离器,零级灰尘盒1 14形成为覆盖第二旋风部20的至少一部分。
    • 6. 发明授权
    • Piezoelectric micro-blower
    • 压电式微型鼓风机
    • US08596998B2
    • 2013-12-03
    • US12958573
    • 2010-12-02
    • Masaaki FujisakiKiyoshi KuriharaDaisuke Kondo
    • Masaaki FujisakiKiyoshi KuriharaDaisuke Kondo
    • F04B35/04
    • F04B43/046F04B45/047F04F7/00
    • A piezoelectric micro-blower includes an inner case to which a peripheral portion of a vibrating plate including a piezoelectric element is fixed such that a blower chamber is defined between the inner case and the vibrating plate and an outer case arranged to cover an outer periphery of the inner case with a gap therebetween. The inner case is elastically retained in the outer case by a plurality of connecting portions. A first opening is provided in a top plate portion of the inner case that faces a central portion of the vibrating plate, and a second opening is provided in a top plate portion of the outer case that faces the first opening. A central space is provided between the top plate portions, and fluid introduced from the outside is guided to the central space through the gap between the inner and outer cases. The vibrating plate is driven in a bending mode so that air is sucked into the central space and is discharged through the second opening. The connecting portions prevent leakage of vibration of the vibrating plate from the inner case to the outer case, thereby reducing energy loss.
    • 一种压电微型鼓风机,包括内壳体,其中包括压电元件的振动板的周边部分固定在内壳体和振动板之间限定鼓风机室,外壳体设置成覆盖外壳 内壳体之间具有间隙。 内壳通过多个连接部分弹性地保持在外壳中。 第一开口设置在内壳体的面对振动板的中心部分的顶板部分中,并且第二开口设置在外壳体的面向第一开口的顶板部分中。 在顶板部之间设置中央空间,从外侧引入的流体通过内外壳之间的间隙被引导到中央空间。 振动板以弯曲模式被驱动,使得空气被吸入中心空间并通过第二开口排出。 连接部防止振动板从内侧壳体向外侧壳体的振动的泄漏,从而减少能量损失。
    • 8. 发明申请
    • SURFACE PROCESSING APPARATUS
    • 表面加工设备
    • US20090173444A1
    • 2009-07-09
    • US12397150
    • 2009-03-03
    • Yasumi SagoMasayoshi IkedaKazuaki KanekoDaisuke KondoOsamu Morita
    • Yasumi SagoMasayoshi IkedaKazuaki KanekoDaisuke KondoOsamu Morita
    • C23F1/08C23C16/54
    • C23C16/4557C23C16/45565C23C16/45572C23C16/5096H01J37/3244
    • The invention is to realize a gas ejection mechanism, which makes it possible to form a uniform gas flow and to control the temperature and its distribution over a gas plate, and thereby to provide a surface processing apparatus which can continuously carry out uniform processing. A surface processing apparatus of this invention comprises: a process chamber in which a substrate holding mechanism and a gas ejection mechanism are arranged to face each other; an exhaust means; and a gas supply means; wherein a gas distribution mechanism, a cooling or the heating mechanism provided with a coolant channel or a heater to cool or heat a gas plate and a number of gas passages, and the gas plate having a number of gas outlets communicated with the gas passages are arranged in that order from the upper stream to construct the gas ejection mechanism, and wherein the gas plate is fixed to the cooling or heating mechanism with a clamping member or with an electrostatic chucking mechanism. A second gas distribution mechanism may be installed between the gas plate and the cooling or heating mechanism so as to form gas outlets under the coolant channel.
    • 本发明是为了实现气体喷射机构,其能够形成均匀的气流并且控制温度及其在气板上的分布,从而提供能够连续进行均匀处理的表面处理装置。 本发明的表面处理装置包括:处理室,其中基板保持机构和气体喷射机构彼此相对配置; 排气装置; 和气体供给装置; 其特征在于,具有冷却通道的冷却或加热机构,或用于冷却或加热气板和多个气体通道的加热机构以及具有与气体通路连通的多个气体出口的气体板的气体分配机构, 从上游按顺序排列构成气体排出机构,其中,气板用夹紧构件或静电吸附机构固定在冷却或加热机构上。 第二气体分配机构可以安装在气体板和冷却或加热机构之间,以在冷却剂通道下形成气体出口。