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    • 52. 发明授权
    • Vacuum cleaner having a slanted pedestal
    • 具有倾斜基座的吸尘器
    • US07210192B2
    • 2007-05-01
    • US10430222
    • 2003-05-07
    • Koichi ItoHiroshi Nishimura
    • Koichi ItoHiroshi Nishimura
    • A47L9/10A47L9/26
    • A47L9/009A47L5/362A47L9/1666A47L9/1683A47L9/26Y10S55/03
    • A vacuum cleaner has a suction air inlet disposed in front of an electric blower and a dust chamber detachably installed to the rear of the electric blower. The vacuum cleaner further embodies a swivel caster and wheels for facilitating transportability thereof, wherein the swivel caster is provided in front of the electric blower. By not having the dust chamber above the swivel caster, regardless of the amount of dust accumulated in the dust chamber, the load that is distributed on the swivel caster stays substantially unchanged, thereby enhancing durability of the swivel caster. Furthermore, in such configuration loading and unloading of the dust chamber can be carried out without being interfered with a hose due to the placement of the suction air outlet connected with the hose and the dust chamber on opposite ends of the vacuum cleaner.
    • 真空吸尘器具有设置在电动鼓风机前面的吸入空气入口和可拆卸地安装到电动鼓风机后部的灰尘室。 真空吸尘器进一步体现了旋转脚轮和轮子,便于其运输,其中旋转脚轮设置在电动鼓风机的前面。 由于在旋转脚轮上方没有灰尘室,不管灰尘室中积聚的灰尘量如何,分配在旋转脚轮上的负载基本保持不变,从而提高了旋转脚轮的耐久性。 此外,在这种构造中,由于将与软管和灰尘室连接的抽吸空气出口布置在真空吸尘器的相对端部,因此能够进行灰尘室的加载和卸载而不会被软管干扰。
    • 53. 发明申请
    • Iris authentication apparatus
    • 虹膜认证设备
    • US20070025598A1
    • 2007-02-01
    • US11495326
    • 2006-07-28
    • Koji KobayashiAtsushi KatsumataHiroshi NakajimaKazuyuki MiyazawaKoichi ItoTakafumi Aoki
    • Koji KobayashiAtsushi KatsumataHiroshi NakajimaKazuyuki MiyazawaKoichi ItoTakafumi Aoki
    • G06K9/00
    • G06K9/0061G06K9/522
    • An iris authentication apparatus includes an iris area extraction unit, registration pattern generating unit, collation pattern generating unit, and collation unit. The iris area extraction unit extracts iris areas from a sensed registration eyeball image and a sensed collation eyeball image. When the iris area extraction unit extracts an iris area from the registration eyeball image, the registration pattern generating unit generates a registration iris pattern image by performing polar coordinate transformation of an image in the extracted iris area. When the iris area extraction unit extracts an iris area from the collation eyeball image, the collation pattern generating unit generates a collation iris pattern image by performing polar coordinate transformation of an image in the extracted iris area. The collation unit collates the registration iris pattern image output from the registration pattern generating unit and the collation iris pattern image output from the collation pattern generating unit on the basis of a correlation therebetween.
    • 虹膜认证装置包括光圈区域提取单元,注册图案生成单元,对比图案生成单元和对照单元。 虹膜区域提取单元从感测到的注册眼球图像和感测的对照眼球图像中提取虹膜区域。 当虹膜区域提取单元从登记眼球图像中提取虹膜区域时,登记图案生成单元通过对提取的虹膜区域中的图像进行极坐标变换来生成登记虹膜图案图像。 当虹膜区域提取单元从排序规则眼球图像中提取虹膜区域时,核对图案生成单元通过对提取的虹膜区域中的图像进行极坐标变换来生成排序规则虹膜图案图像。 对照单元根据它们之间的相关性对照从注册图案生成单元输出的登记虹膜图案图像和从核对图案生成单元输出的对照光圈图案图像。
    • 55. 发明申请
    • Method for coating porous polyurethane resin
    • 多孔聚氨酯树脂涂层方法
    • US20050069692A1
    • 2005-03-31
    • US10671860
    • 2003-09-25
    • Koichi Ito
    • Koichi Ito
    • B05D7/00B05D7/02C08J9/36B32B3/26B05D3/02B32B9/00B32B27/00
    • C08J9/365B05D7/02B05D7/544C08J2375/04C08J2429/00Y10T428/249953Y10T428/249987Y10T428/249992
    • A method for coating a porous polyurethane resin substrate with an aromatic isocyanate coating composition is provided comprising the steps of (i) providing a porous substrate of a polyurethane foam resin comprising at least one surface upon which the aromatic isocyanate coating composition is to be applied; (ii) applying at least one coating of a primary layer to the substrate surface, the primary layer comprising an aqueous solution of a compound that includes at least one —OH reactive group in its non-aqueous, dry state, and capable, upon drying, of forming a self-supporting, continuous film on the substrate surface at room temperature; (iii) optionally subjecting the applied primary layer to forced drying conditions at a temperature below the softening point of the porous polyurethane resin substrate; and (iv) after allowing the primary layer to substantially dry, applying a secondary layer comprising an aromatic isocyanate compound to the primary layer to form a continuous, film-forming coating on the substrate surface, preferably one having the property of being water-impermeable or water-impermeable and water vapor-permeable.
    • 提供一种用芳族异氰酸酯涂料组合物涂覆多孔聚氨酯树脂基材的方法,其包括以下步骤:(i)提供聚氨酯泡沫树脂的多孔基材,其包含至少一个表面,所述表面上涂有芳族异氰酸酯涂料组合物; (ii)将至少一个初级层的涂层施加到基底表面,所述主层包含化合物的水溶液,所述化合物的水溶液包含至少一个-OH反应性基团,其非水,干燥状态,并且能够在干燥时 在室温下在衬底表面上形成自支撑的连续膜; (iii)任选地使所施加的主层在低于多孔聚氨酯树脂基材的软化点的温度下进行强制干燥条件; 和(iv)在允许主层基本上干燥之后,将包含芳族异氰酸酯化合物的第二层施加到初级层,以在基材表面上形成连续的成膜涂层,优选具有不透水性的物质 或不透水和透水蒸气。
    • 59. 发明授权
    • Vehicle air conditioning apparatus with hot water flow control
    • 车用空调设备采用热水流量控制
    • US06360958B1
    • 2002-03-26
    • US09405732
    • 1999-09-24
    • Koichi ItoKenji SuwaNoriyoshi Miyajima
    • Koichi ItoKenji SuwaNoriyoshi Miyajima
    • B60H102
    • B60H1/00885B60H1/00485
    • In an air conditioning apparatus for a vehicle, an amount of hot water flowing from an engine into a heater core is adjusted by a flow control valve so that temperature of air blown from the heater core is adjusted. A water pump driven by the engine is disposed in a water circuit so that hot water circulates between the engine and the heater core. The flow control valve includes a bypass passage through which hot water bypasses the heater core and a pressure response valve for adjusting an opening degree of the bypass passage. An opening degree of the flow control valve is controlled by a control unit so that the amount of hot water flowing into the heater core is adjusted. In the air conditioning apparatus, the opening degree of the flow control valve is corrected by the control unit to reduce variation in the amount of hot water flowing into the heater core due to variation in a rotation speed of the engine. Thus, variation in temperature of air blown from the heater core due to the variation in the rotation speed of the engine can be reduced.
    • 在车辆用空调装置中,通过流量控制阀调整从发动机流入加热器芯的热水量,调节从加热器芯体吹出的空气的温度。 由发动机驱动的水泵设置在水回路中,使得热水在发动机和加热器芯之间循环。 流量控制阀包括旁通通道,热水绕过加热器芯,用于调节旁路通道的开度的压力响应阀。 流量控制阀的开度由控制单元控制,从而调节流入加热器芯的热水量。 在空调装置中,通过控制单元来校正流量控制阀的开度,以减少由于发动机的转速的变化而流入加热器芯的热水量的变化。 因此,可以减少由于发动机的转速的变化而从加热器芯吹出的空气的温度变化。