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    • 1. 发明申请
    • Resin-made storage container
    • 树脂储存容器
    • US20090065468A1
    • 2009-03-12
    • US11919671
    • 2006-05-02
    • Hiroaki HataNaokazu FujitaToshimasa TanakaMasaaki SasakiTakao Iizuka
    • Hiroaki HataNaokazu FujitaToshimasa TanakaMasaaki SasakiTakao Iizuka
    • B65D1/02
    • B65D1/0223B65D79/005
    • The object of this invention is to provide a container having a reduced area of vacuum-absorbing panels and thus acquiring improved appearance and having strength against a pressure drop, i.e., the strength enough to retain the shape of the container even when there is a pressure drop inside the container.A shoulder portion or a bottom portion of a resin-made storage container is molded by aligning one or two groups of three corners and one or two groups of three pillars vertically and in parallel to the central axis of the container. Each group of three corners is a part of the corners forming a cross-section of a regular enneagon and being connected to either the shoulder portion or the bottom portion, and the lines connecting these three corners form a regular triangle. Each group of three pillars is a part of the pillars belonging to the body and forming a cross-section of a hexagon, and the lines connecting these three pillars form a regular triangle.If there is a pressure drop inside the container due to a decrease in the temperature of the contents, stress builds up inside the body of the container in such a way that the body deforms into a regular triangular prism, with vertically aligned corners/pillars serving as the three angles. As a result, the container has an enhanced level of strength against the force coming from any direction. With the shape stabilized, the container has also high resistance to buckling.
    • 本发明的目的是提供一种具有减小真空吸收面板面积的容器,从而获得改进的外观并且具有抵抗压降的强度,即足以保持容器形状的强度,即使当存在压力 放在容器内。 树脂制储存容器的肩部或底部通过将一个或两组三个角和一组或两组三个柱垂直并平行于容器的中心轴线对准而成型。 每组三角都是角部的一部分,形成正常的边缘的横截面并且连接到肩部或底部,并且连接这三个角的线形成正三角形。 每组三支柱是属于身体的支柱的一部分,形成六边形的横截面,连接这三支柱的线形成一个三角形。 如果由于内容物的温度降低而在容器内存在压降,则容器内部的应力会以容纳体的形式变形为规则的三角形棱镜,使垂直对齐的角/柱供应 作为三个角度。 结果,容器相对于来自任何方向的力具有增强的强度水平。 在形状稳定的情况下,容器也具有高抗弯曲性。
    • 4. 发明授权
    • Hermetic rotary compressor with balancing weights
    • 具有平衡重的密封旋转压缩机
    • US4915554A
    • 1990-04-10
    • US258462
    • 1988-10-17
    • Yukio SerizawaKazuo IkedaHiroaki HataShin IshiharaMotohiro Shiga
    • Yukio SerizawaKazuo IkedaHiroaki HataShin IshiharaMotohiro Shiga
    • F04C23/00F04C29/00
    • F04C23/008F04C29/0021F04C2240/603
    • A hermetic rotary compressor has a motor unit composed of a stator and a rotor which are arranged in an upper portion of a hermetic housing, an oil-lubricated compressor unit arranged in a lower portion of the hermetic housing, a crank shaft which interconnects said motor unit and said compressor unit, a discharging silencer which is formed by a lower bearing of the compressor unit positioned around the lower end of the crank shaft and a cover of the lower bearing. The hermetic rotary compressor further has a lower balancing weight mounted around a lower shaft end portion of the crank shaft which extends to a position below the discharging silencer and a weight cup surrounding the lower balancing weight. In this hermetic rotary compressor, the lower balancing weight is not disposed within the discharging silencer. Hence, even is the gas-liquid mixture of refrigerant is discharged from the discharging valve into the silencer chamber in the start-up or during liquid-back operation of the compressor, there is no risk that the lower balancing weight undesirably stirs such a fluid.
    • 密闭式旋转压缩机具有由定子和转子构成的电动机单元,该电动机单元设置在密封壳体的上部,设置在密封壳体的下部的油润滑压缩机单元,将所述电动机 单元和所述压缩机单元,排出消音器,其由围绕曲轴的下端定位的压缩机单元的下轴承和下轴承的盖形成。 密封旋转式压缩机还具有安装在曲轴的下轴端部周围的较低的平衡重,其延伸到排放消声器下方的位置和围绕下平衡重的重量杯。 在这种密封旋转压缩机中,较低的平衡重不设置在排放消音器内。 因此,即使制冷剂的气液混合物在压缩机的启动或回液运转中从排出阀排入消音室,也不存在较低的平衡重不利地搅动这种流体的风险 。
    • 8. 发明授权
    • Refrigerator
    • 冰箱
    • US5540061A
    • 1996-07-30
    • US740
    • 1993-01-05
    • Masahiko GommoriKatsutoshi ShinoharaTakahiro KanekoHiroaki HataAkihiko Ishiyama
    • Masahiko GommoriKatsutoshi ShinoharaTakahiro KanekoHiroaki HataAkihiko Ishiyama
    • F25B1/00F04C23/00F04C29/04F25B31/00F25D11/00F25D19/00F25D21/14F25D17/00
    • F25B31/006F04C23/00F04C29/045F25D21/14F04C2210/26F25D2321/1412
    • A refrigerator comprises a compressor for compressing and discharging a coolant, a first heat exchanger which performs heat exchange between the compressed coolant from the compressor and the atmosphere to cool the compressed coolant, an adiabatic expansion orifice where the compressed and cooled coolant after passing the first heat exchanger is adiabatically expanded, and a second heat exchanger which performs heat exchange between the adiabatically expanded coolant and the air in refrigerating chambers so as to cool the air in the refrigerating chambers by the coolant and to heat the coolant by the air in the refrigerating chambers. The refrigerator further includes a third heat exchanger which performs heat exchange between water produced when frost attached on the refrigerating chambers is melted and the compressed coolant discharged from the compressor so as to heat and evaporate the water, and a fourth heat exchanger which performs heat exchange between the compressed coolant and the atmosphere so as to cool the compressed coolant. The third heat exchanger and the fourth heat exchanger are connected in series so that the compressed coolant discharged from the compressor is supplied to the first heat exchanger after it passes and is cooled by both the third and fourth heat exchangers.
    • 冰箱包括用于压缩和排出冷却剂的压缩机,在压缩机的压缩冷却剂和大气之间进行热交换以冷却压缩冷却剂的第一热交换器,绝热膨胀孔,其中压缩和冷却的冷却剂经过第一 热交换器被绝热膨胀,并且第二热交换器在绝热膨胀的冷却剂和冷藏室中的空气之间进行热交换,以便通过冷却剂冷却冷藏室中的空气并且通过冷藏中的空气来加热冷却剂 房间。 冰箱还包括第三热交换器,其对附着在冷藏室上的霜进行熔融时产生的水与从压缩机排出的压缩的冷却水进行热交换,从而对水进行加热和蒸发;以及第四热交换器,其进行热交换 在压缩的冷却剂和大气之间,以冷却压缩的冷却剂。 第三热交换器和第四热交换器串联连接,使得从压缩机排出的压缩的冷却剂经过第一热交换器并被第三和第四热交换器冷却。