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    • 2. 发明授权
    • Garbage disposer
    • 垃圾处理器
    • US4917311A
    • 1990-04-17
    • US409728
    • 1989-09-20
    • Masataka YoshinoTakao MorisakiHiromi OdegawaMasaharu Oohori
    • Masataka YoshinoTakao MorisakiHiromi OdegawaMasaharu Oohori
    • E03C1/266
    • E03C1/2665
    • A garbage disposer includes a pulverizing unit, adapted to communicate with a basin of a sink through a drain hole of the basin, for pulverizing the garbage charged through the drain hole together with water, a straining unit, connected to the pulverizing unit through a transporting mechanism, the straining unit including a straining casing, a straining drum, supported within the straining casing for rotation about a horizontal axis, and a motor for rotating the straining drum, the straining drum having a circumferential face with a multiplicity of perforations formed therethrough for straining out the garbage pulverized in the pulverizing unit.
    • 垃圾处理机包括粉碎单元,其适于通过所述盆的排水孔与水槽的沟槽连通,用于通过排水孔与通过所述排水孔的垃圾一起粉碎与所述粉碎单元连接的应变单元,所述应变单元通过运送 所述应变单元包括应变壳体,承载在所述应变壳体内的用于围绕水平轴线旋转的应变鼓,以及用于使所述应变滚筒旋转的马达,所述应变滚筒具有圆周面,所述圆周面具有穿过其形成的多个穿孔, 使粉碎机中的垃圾粉碎。
    • 4. 发明授权
    • Heat exchanger
    • 热交换器
    • US07320361B2
    • 2008-01-22
    • US11260137
    • 2005-10-28
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • F28F3/02
    • F28D21/0015F28D9/0062
    • A known heat exchanger has a lower rate of blocking the movement of moisture through the joint as compared to a joint bonded with a moisture impermeable adhesive because the corrugated and flat substrates are bonded with thermoplastic fibers by performing heating and pressurizing treatments, but has insufficient moisture permeability because both the flat substrate, which is a partition, and the corrugated substrate, which is a space retaining plate, have a poor moisture permeability.In a heat exchanger in which two types of air flows are directed across a moisture permeable partition plate spaced apart from an adjacent partition plate by a space retaining plate, and perform heat exchange between them through the partition plate, a joint is formed by bonding the partition plate and the space retaining plate using fluoro-resin or hydrocarbon resin containing a hydrophilic group to provide an excellent moisture absorption and diffusion property.
    • 与通过不透湿粘合剂接合的接头相比,已知的热交换器具有较低的阻塞水分通过接头的速率,因为通过进行加热和加压处理,波纹状和平坦的基底与热塑性纤维结合,但水分不足 渗透性,因为作为隔板的平坦基板和作为空间保持板的波纹状基板都具有差的透湿性。 在两个类型的空气流通过间隔板与相邻隔板间隔开的透湿分隔板的热交换器中,通过分隔板进行热交换,通过将接合 隔板和空间保持板,其使用含有亲水基团的氟树脂或烃树脂,以提供优异的吸湿扩散性。
    • 6. 发明申请
    • Heat exchanger
    • 热交换器
    • US20070095513A1
    • 2007-05-03
    • US11260137
    • 2005-10-28
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • F28F3/00
    • F28D21/0015F28D9/0062
    • A known heat exchanger has a lower rate of blocking the movement of moisture through the joint as compared to a joint bonded with a moisture impermeable adhesive because the corrugated and flat substrates are bonded with thermoplastic fibers by performing heating and pressurizing treatments, but has insufficient moisture permeability because both the flat substrate, which is a partition, and the corrugated substrate, which is a space retaining plate, have a poor moisture permeability. In a heat exchanger in which two types of air flows are directed across a moisture permeable partition plate spaced apart from an adjacent partition plate by a space retaining plate, and perform heat exchange between them through the partition plate, a joint is formed by bonding the partition plate and the space retaining plate using fluoro-resin or hydrocarbon resin containing a hydrophilic group to provide an excellent moisture absorption and diffusion property.
    • 与通过不透湿粘合剂接合的接头相比,已知的热交换器具有较低的阻塞水分通过接头的速率,因为通过进行加热和加压处理,波纹状和平坦的基底与热塑性纤维结合,但水分不足 渗透性,因为作为隔板的平坦基板和作为空间保持板的波纹状基板都具有差的透湿性。 在两个类型的空气流通过间隔板与相邻隔板间隔开的透湿分隔板的热交换器中,通过分隔板进行热交换,通过将接合 隔板和空间保持板,其使用含有亲水基团的氟树脂或烃树脂,以提供优异的吸湿扩散性。
    • 7. 发明授权
    • Fuel vaporizer and burner unit for space heater
    • 燃料蒸发器和空间加热器的燃烧器单元
    • US4128390A
    • 1978-12-05
    • US803913
    • 1977-06-06
    • Masataka YoshinoNobuyoshi MatsunoHiroyasu KuwazawaTomatsu Nomaguchi
    • Masataka YoshinoNobuyoshi MatsunoHiroyasu KuwazawaTomatsu Nomaguchi
    • F23N5/22F23D5/00F23D5/02F24H3/10F24H9/18F23D11/44
    • F24H9/1881F23D5/00F24H3/105Y02E20/348
    • A vaporizer and burner unit for an oil or kerosene space heater comprises three elongated, vertically stacked fuel mixture flow chambers A, B and C respectively defined between a lower U-shaped frame member 19b and the sloping bottom wall 26 of a flanged, upper U-shaped frame member 19a nested on the lower member, between the wall 26 and an inverted V-shaped pressure plate 27 having a plurality of fuel mixture feed holes 28 therein, and between the plate 27 and a burner plate 30 having a plurality of flame slits 31 therein. Fuel is fed into one end of the chamber A onto a heated vaporizer block 21, and combustion air blown in through a side window 24 adjacent the block and through a concentric gap 25 around the fuel supply line 12 mixes with the vaporized fuel and flows down chamber A and into chamber B through an end opening 29. The mixture then disperses through the holes 28 into chamber C and through the flame slits 31 to a spark igniter 62. Secondary combustion air is blown up through holes 32 in the upper frame member flanges and funneled into the flames by converging guide plates 33 mounted on the flanges. The zig-zag flow chamber arrangement implements thorough fuel-air mixture and preheating, and the holes 28 and 32 are staggered with respect to the slits 31 to promote uniform and complete combustion.
    • 用于油或煤油空间加热器的蒸发器和燃烧器单元包括三个细长的垂直堆叠的燃料混合物流动室A,B和C,其分别限定在下U形框架构件19b和法兰的上U形的倾斜底壁26之间 嵌套在下部构件上的壁26和位于其间的多个燃料混合物供给孔28的反向V形压力板27之间以及板27与具有多个火焰的燃烧器板30之间的倒V形框架构件19a 狭缝31。 燃料被输送到室A的一端到加热的蒸发器块21上,并且通过邻近块的侧窗24吹过并通过围绕燃料供应管线12的同心间隙25吹入的燃烧空气与汽化的燃料混合并向下流动 室A通过端部开口29进入室B.然后混合物通过孔28分散到室C中并通过火焰狭缝31分散到火花点火器62中。二次燃烧空气通过上框架构件凸缘 并通过会聚在安装在凸缘上的引导板33而进入火焰中。 曲折流动室装置实现了完全的燃料 - 空气混合和预热,并且孔28和32相对于狭缝31交错以促进均匀和完全的燃烧。