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    • 151. 发明授权
    • Double-pipe heat exchanger
    • 双管换热器
    • US06920917B2
    • 2005-07-26
    • US10728788
    • 2003-12-08
    • Yuji InoueNoriho OkazaKazuo NakataniYoshikazu Kawabe
    • Yuji InoueNoriho OkazaKazuo NakataniYoshikazu Kawabe
    • F28F1/00F28D7/10F28F1/06F28F1/40F28F13/12
    • F28F1/06F28D7/106
    • It is an object of the invention to provide an inexpensive double-pipe heat exchanger having high performance and comprising an inner pipe and an outer pipe which constitute a double pipe without adding a heat-transfer facilitating material such as an inner fin. In the double-pipe heat exchanger having the inner pipe and the outer pipe, the outer pipe is dented from its outside toward its inside, thereby forming a plurality of projections which are dented toward the inner pipe. Examples of shapes of the projection are substantially conical shape, substantially truncated shape, substantially spherical surface shape, substantially cylindrical shape, substantially elliptic cylindrical shape and the like. The projections are disposed helically or in a staggered configuration such as to surround the inner pipe. With this structure, only by subjecting the outer pipe to simple working such as press working, it is possible to increase the turbulent flow of fluid flowing between the inner pipe and the outer pipe, and to facilitate heat transfer from fluid flowing in the inner pipe to fluid flowing between the inner pipe and the outer pipe.
    • 本发明的目的是提供一种具有高性能的便宜的双管式热交换器,并且包括内管和外管,其构成双管,而不添加诸如内翅片的传热促进材料。 在具有内管和外管的双管式热交换器中,外管从其外侧向内侧凹陷,从而形成向内管凹陷的多个突起。 突起的形状的实例基本上是圆锥形,基本上截头形状,基本上是球形表面形状,基本上圆柱形,基本上椭圆柱形等。 突出部螺旋地或以交错构造设置,以包围内管。 利用这种结构,只有通过对外管进行诸如冲压加工的简单加工,可以增加在内管和外管之间流动的流体的湍流,并且便于在内管中流动的流体的热传递 流体在内管和外管之间流动。
    • 152. 发明授权
    • Circular pole piece and MRI system
    • 圆极片和MRI系统
    • US06838966B2
    • 2005-01-04
    • US10776893
    • 2004-02-11
    • Yuji Inoue
    • Yuji Inoue
    • A61B5/055G01R33/383H01F3/10H01F3/00G01R33/46
    • G01R33/383
    • The object of the present invention is to minimize the residual magnetic induction in a circular pole piece included in a magnetic circuit for magnetic resonance imaging. A circular pole piece is divided into two portions, that is, a center portion and a marginal portion. A soft magnetic material that exhibits a high permeability (for example, 10000 or more) with a relatively small external magnetic field (for example, ranging from 20 A/m to 60 A/m) applied thereto is adopted as a soft magnetic material to be made into a center-portion laminate block. A soft magnetic material that exhibits a high permeability (for example, 6000 or more) with a relatively large external magnetic field (for example, ranging from 50 A/m to 150 A/m) applied thereto is adopted as a soft magnetic material to be made into a marginal-portion laminate block 103b. Consequently, since the residual magnetic induction in the circular pole piece can be minimized, the degradation in image quality attributable to a residual magnetic induction can be prevented.
    • 本发明的目的是使包含在用于磁共振成像的磁路中的圆极片中的残余磁感应最小化。 圆极片被分成两部分,即中心部分和边缘部分。 作为软磁性材料,采用具有相对小的外部磁场(例如,20A / m至60A / m)的高磁导率(例如10000以上)的软磁性材料作为软磁性材料 制成中心部分层压块。 采用具有较高磁导率(例如6000以上)的软磁性材料作为软磁性材料,具有较大的外部磁场(例如,50A / m至150A / m的范围) 制成边缘部分层压块103b。 因此,由于圆极片中的残余磁感应可以最小化,所以可以防止归因于残余磁感应的图像质量的劣化。
    • 153. 发明授权
    • Continuous vacuum lamination treatment system and vacuum lamination apparatus
    • 连续真空层压处理系统和真空层压装置
    • US06241839B1
    • 2001-06-05
    • US09245310
    • 1999-02-05
    • Takehito YoshinoKimitoshi FukaeYuji InoueShigenori Itoyama
    • Takehito YoshinoKimitoshi FukaeYuji InoueShigenori Itoyama
    • B32B3112
    • H01L31/1876H01L31/048Y02E10/50Y02P70/521
    • The present invention relates to a vacuum lamination apparatus suitable for vacuum-laminating a stacked body. The vacuum lamination apparatus includes a mounting table including a metal plate having a front surface on which the stacked body is to be positioned. The apparatus also includes a vacuuming pipe comprising a looped hollow pipe having an inside circumference and a plurality of vents spacedly perforated at the inside circumference thereof. The vacuuming pipe is arranged in and fixed to the front surface of the metal plate. The front surface of the metal plate has a front surface with a center line average height of 0.2 to 1.5 &mgr;m. The vacuuming pipe is fixed to the front surface of the metal plate by intermittently welded portions provided at a contact region between the front surface of the metal plate and the vacuuming pipe. A sealant is disposed to the entire contact region, whereby the vacuuming pipe and the metal plate are integrated.
    • 本发明涉及适用于真空层压层叠体的真空层压装置。 真空层压装置包括安装台,该安装台包括金属板,该金属板具有正面,堆叠体将放置在该前表面上。 该设备还包括一个真空管,该真空管包括环形中空管,该中空管具有内周和在其内圆周间隔开穿孔的多个通气孔。 吸尘管布置在金属板的前表面并固定到金属板的前表面。 金属板的前表面具有中心线平均高度为0.2-1.5μm的前表面。 抽真空管通过设置在金属板的前表面和真空吸管之间的接触区域处的间歇焊接部分固定到金属板的前表面。 在整个接触区域设置密封剂,由此将真空管和金属板集成。
    • 155. 发明授权
    • Continuous vacuum lamination treatment system and vacuum lamination
apparatus
    • 连续真空层压处理系统和真空层压装置
    • US5993582A
    • 1999-11-30
    • US907613
    • 1997-08-08
    • Takehito YoshinoKimitoshi FukaeYuji InoueShigenori Itoyama
    • Takehito YoshinoKimitoshi FukaeYuji InoueShigenori Itoyama
    • H01L31/048H01L31/18B32B31/20
    • H01L31/048H01L31/1876Y02E10/50Y02P70/521
    • The present invention relates to a continuous vacuum lamination treatment method including the steps of stacking a back side covering member, a first filler member, a member to be sealed, a second filler member, and a surface side covering member in the named order to form a stacked body. The method further includes decompressing an interior region of the stacked body which is sandwiched by the surface side covering member and the back side covering member, and subjecting the stacked body to heat treatment at a desired temperature, in the named order. The stacking step is conducted on a plurality of vacuum lamination instruments having a structure capable of vacuuming the interior region therein and capable of being stacked vertically with adjacent stacked vacuum lamination instruments in contact. After the stacking step, the plurality of vacuum lamination instruments are stacked in the vertical direction using a loading unit to establish a pile, with the pile being subjected to the decompression step and the heating step in the named order. Each vacuum lamination instrument is separated from the pile using an unloading unit, and a vacuum-laminated stacked body is taken out from each vacuum lamination instrument.
    • 连续真空层压处理方法技术领域本发明涉及一种连续真空层压处理方法,其特征在于,包括以下述步骤:按照所述的顺序层叠后侧覆盖部件,第一填充部件,被密封部件,第二填充部件和表面侧覆盖部件, 堆叠的身体。 该方法还包括对层叠体的被表面侧覆盖部件和背面侧覆盖部件夹持的内部区域进行减压,按照所要求的顺序对层叠体进行所需温度的热处理。 堆叠步骤在具有能够对其中的内部区域进行抽真空并能够与相邻的堆叠的真空层压装置接触的垂直堆叠的多个真空层压装置上进行。 在层叠步骤之后,使用装载单元在垂直方向上堆叠多个真空层压装置以建立桩,其中桩以按顺序进行减压步骤和加热步骤。 使用卸载单元将每个真空层压装置与桩分离,并从每个真空层压装置中取出真空层叠的堆叠体。
    • 156. 发明授权
    • Temperature control device of a heating or cooling apparatus for saving
energy
    • 用于节能的加热或冷却装置的温度控制装置
    • US5678758A
    • 1997-10-21
    • US565436
    • 1995-11-30
    • Hirozo TakegawaYuji InoueHisashi KodamaTomoko KitamuraShigeyuki Inoue
    • Hirozo TakegawaYuji InoueHisashi KodamaTomoko KitamuraShigeyuki Inoue
    • F24F11/02F24D19/10F24F11/00G05D23/19F23N5/20G05D15/00
    • G05D23/1904F24F11/006
    • A temperature control device of a heating apparatus comprising: an input unit for receiving input of a set temperature; a heating/cooling unit for raising/dropping temperature of a medium, from which a person receives heat; a set temperature reaching unit for controlling the heating/cooling unit so that temperature of the medium is raised to the set temperature and maintained afterwards; a time judgement unit for judging whether a given time has passed after the temperature of the medium is raised to the set temperature; and an imperceptible temperature change unit for controlling the heating/cooling unit, if the time judgement unit judges that the given time has passed, so that the temperature of the medium drops/rises by an amount within a given range by which human beings cannot perceive changes in temperature at a temperature change rate by which human beings cannot perceive changes in temperature. According to the temperature control device, after a person sets a room temperature, it drops/rises by an amount which cannot be perceived by the person during heating/cooling.
    • 一种加热装置的温度控制装置,包括:输入单元,用于接收设定温度的输入; 用于升高/降低介质温度的加热/冷却单元,人从其接收热量; 用于控制加热/冷却单元的设定温度到达单元,使得介质的温度升高到设定温度并保持; 时间判断单元,用于在介质的温度升高到设定温度之后判断给定时间是否已经过去; 以及用于控制加热/冷却单元的不可察觉的温度变化单元,如果时间判断单元判断给定时间已经过去,则介质的温度下降/上升到人类不能察觉的给定范围内的量 温度变化在人类不能察觉温度变化的温度变化率。 根据温度控制装置,在人设定室温后,在加热/冷却期间人身体不能感知到的量下降/上升。