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    • 1. 发明授权
    • Method for producing an insulated vessel
    • 隔热容器的制造方法
    • US06536089B1
    • 2003-03-25
    • US09684306
    • 2000-10-06
    • Yasuhiko KomiyaMasashi YamadaAtsuhiko TanakaSeiichi Ito
    • Yasuhiko KomiyaMasashi YamadaAtsuhiko TanakaSeiichi Ito
    • B65D2518
    • B65D81/3806A47J41/0072F16L59/06Y10T29/49879Y10T29/49885
    • The present invention relates to an insulated vessel which may be produced at low cost, has superior insulating capabilities and excellent volumetric efficiency, and which may be suitably employed in a thermos, cooler, icebox, insulated cup, thermal insulated lunch box, thermal insulated electric pot, heat retaining rice cooker, refrigerator or freezer box insulating material, or as an insulating layer in a bath tub. The insulated vessel of the present invention is characterized in the formation of an insulating layer in the space interval between the inner vessel and the outer vessel of a double walled vessel which is filled with a low thermoconductive gas consisting of at least one the gases of xenon, krypton, and argon, and in the disposition of a metallic heat radiation preventing material at the insulating layer.
    • 本发明涉及一种绝缘容器,其可以低成本生产,具有优异的绝缘性能和优异的体积效率,并且可以适用于保温瓶,冷却器,冰箱,隔热杯,隔热饭盒,热绝缘电 锅,保温电饭煲,冰箱或冷冻箱绝缘材料,或作为浴缸中的绝缘层。 本发明的绝缘容器的特征在于在双壁容器的内部容器和外部容器之间的空间间隔内形成绝缘层,该双壁容器填充有由至少一种氙气体组成的低导热气体 ,氪和氩,以及在绝缘层处设置金属防辐射材料。
    • 2. 发明授权
    • Insulated vessel and method of production therefor
    • 绝缘船及其生产方法
    • US06179155B2
    • 2001-01-30
    • US08890701
    • 1997-07-11
    • Yasuhiko KomiyaMasashi YamadaAtsuhiko TanakaSeiichi Ito
    • Yasuhiko KomiyaMasashi YamadaAtsuhiko TanakaSeiichi Ito
    • F16L5905
    • B65D81/3806A47J41/0072F16L59/06Y10T29/49879Y10T29/49885
    • The present invention relates to an insulated vessel which may be produced at low cost, has superior insulating capabilities and excellent volumetric efficiency, and which may be suitably employed in a thermos, cooler, icebox, insulated cup, thermal insulated lunch box, thermal insulated electric pot, heat retaining rice cooker, refrigerator or freezer box insulating material, or as an insulating layer in a bath tub. The insulated vessel of the present invention is characterized in the formation of an insulating layer in the space interval between the inner vessel and the outer vessel of a double walled vessel which is filled with a low thermoconductive gas consisting of at least one the gases of xenon, krypton, and argon, and in the disposition of a metallic heat radiation preventing material at the insulating layer.
    • 本发明涉及一种绝缘容器,其可以低成本生产,具有优异的绝缘性能和优异的体积效率,并且可以适用于保温瓶,冷却器,冰箱,隔热杯,隔热饭盒,热绝缘电 锅,保温电饭煲,冰箱或冷冻箱绝缘材料,或作为浴缸中的绝缘层。 本发明的绝缘容器的特征在于在双壁容器的内部容器和外部容器之间的空间间隔内形成绝缘层,该双壁容器填充有由至少一种氙气体组成的低导热气体 ,氪和氩,以及在绝缘层处设置金属防辐射材料。
    • 3. 发明授权
    • Thermally insulated container and production process therefor
    • 隔热容器及其生产工艺
    • US5846371A
    • 1998-12-08
    • US843759
    • 1997-04-21
    • Masashi YamadaYasuhiko KomiyaAtsuhiko TanakaSeiichi Ito
    • Masashi YamadaYasuhiko KomiyaAtsuhiko TanakaSeiichi Ito
    • A47J41/00B65D8/16B32B11/00B65B31/04
    • A47J41/0077
    • A thermally insulated container of the present invention is a double-walled container in an integral body in which an inner casing is arranged in an outer casing so as to maintain a space therebetween, wherein the space is charged with a gas having a low thermal conductivity, and an opening having a diameter of 0.1 to 3 mm for charging gas in a wall of either of the inner casing and the outer casing is sealed. In a production process of the present invention, a double-walled container is obtained by arranging an inner casing in an outer casing so as to maintain a space therebetween, and by joining them into an integral body, a wall of either of the inner casing and the outer casing being provided with an opening for charging gas; then, the double-walled container is placed in a thermostatic chamber, a charging-evacuating tube which is switchably disposed to a vacuum evacuation apparatus and to a source of a gas having a low thermal conductivity is connected to the opening for charging gas, the space between the walls of the inner and outer casings is subjected to vacuum evacuation at a predetermined temperature, and thereafter a gas having a low thermal conductivity is introduced; and then, the opening for charging gas is sealed.
    • 本发明的隔热容器是一体式的双壁容器,其中内壳体设置在外壳体中以便在其间保持间隙,其中空间装有导热性低的气体 并且密封了用于在内壳和外壳中的任一个的壁中充入气体的直径为0.1至3mm的开口。 在本发明的制造方法中,通过将内壳体配置在外壳中以便保持其间的空间,并且通过将内壳体连接成一体而获得双壁容器,内壳体 并且所述外壳设置有用于充气的开口; 然后,将双壁容器放置在恒温室中,将切换设置在真空排气装置和具有低热导率的气体源的充电排气管连接到用于充气的开口, 在预定温度下对内壳和外壳的壁之间的空间进行真空排气,然后引入导热性低的气体; 然后将充气气体的开口密封。
    • 4. 发明授权
    • Thermally insulated container
    • 隔热容器
    • US5678725A
    • 1997-10-21
    • US565807
    • 1995-11-30
    • Masashi YamadaYasuhiko KomiyaAtsuhiko TanakaSeiichi Ito
    • Masashi YamadaYasuhiko KomiyaAtsuhiko TanakaSeiichi Ito
    • A47J41/00B65D8/16B65D81/18
    • A47J41/0077
    • A thermally insulated container of the present invention is a double-walled container in an integral body in which an inner casing is arranged in an outer casing so as to maintain a space therebetween, wherein the space is charged with a gas having a low thermal conductivity, and an opening having a diameter of 0.1 to 3 mm for charging gas in a wall of either of the inner casing and the outer casing is sealed. In a production process of the present invention, a double-walled container is obtained by arranging an inner casing in an outer casing so as to maintain a space therebetween, and by joining them into an integral body, a wall of either of the inner casing and the outer casing being provided with an opening for charging gas; then, the double-walled container is placed in a thermostatic chamber, a charging-evacuating tube which is switchably disposed to a vacuum evacuation apparatus and to a source of a gas having a low thermal conductivity is connected to the opening for charging gas, the space between the walls of the inner and outer casings is subjected to vacuum evacuation at a predetermined temperature, and thereafter a gas having a low thermal conductivity is introduced; and then, the opening for charging gas is sealed.
    • 本发明的隔热容器是一体式的双壁容器,其中内壳体设置在外壳体中以便在其间保持间隙,其中空间装有导热性低的气体 并且密封了用于在内壳和外壳中的任一个的壁中充入气体的直径为0.1至3mm的开口。 在本发明的制造方法中,通过将内壳体配置在外壳中以便保持其间的空间,并且通过将内壳体连接成一体而获得双壁容器,内壳体 并且所述外壳设置有用于充气的开口; 然后,将双壁容器放置在恒温室中,将切换设置在真空排气装置和具有低热导率的气体源的充电排气管连接到用于充气的开口, 在预定温度下对内壳和外壳的壁之间的空间进行真空排气,然后引入导热性低的气体; 然后将充气气体的开口密封。
    • 10. 发明授权
    • Rotary self-propelled endoscope system
    • 旋转自走式内窥镜系统
    • US08177709B2
    • 2012-05-15
    • US11906585
    • 2007-10-03
    • Akio UchiyamaMitsuhiro ItoSeiichi ItoYoshiyuki Tanii
    • Akio UchiyamaMitsuhiro ItoSeiichi ItoYoshiyuki Tanii
    • A61B1/00
    • A61B1/31A61B1/00006A61B1/00039A61B1/00055A61B1/00154A61B1/0016A61B1/01
    • A rotary self-propelled endoscope system includes an insertion section body, an insertion section, a drive unit, a torque detection unit, and a control unit. In a distal end portion of the insertion section body, a rigid distal end portion including an image pickup apparatus is disposed. The insertion section is rotatably fit to the outside of the insertion section body, and includes a rotary tubular member having a helical portion formed by a helical concave-convex portion. The drive unit applies the rotary tubular member with axial and rotational drive force. The torque detection unit detects torque information of the rotary tubular member. On the basis of the torque information detected by the torque detection unit, the control unit compares a present value with a preset limit value for controlling the torque of the rotary tubular member, and controls the drive unit on the basis of the comparison result.
    • 一种旋转自走式内窥镜系统,包括插入部主体,插入部,驱动部,转矩检测部以及控制部。 在插入部分主体的远端部分中,设置包括图像拾取装置的刚性远端部分。 插入部可旋转地配合到插入部主体的外侧,并且包括具有由螺旋状凹凸部形成的螺旋部的旋转管状部件。 驱动单元对旋转管状构件施加轴向和旋转驱动力。 扭矩检测单元检测旋转管状构件的扭矩信息。 基于由转矩检测单元检测的扭矩信息,控制单元将当前值与用于控制旋转管状构件的扭矩的预设极限值进行比较,并且基于比较结果来控制驱动单元。