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    • 1. 发明专利
    • Cooling device
    • 冷却装置
    • JP2009275317A
    • 2009-11-26
    • JP2008128420
    • 2008-05-15
    • Air Water Tansan Kkエア・ウォーター炭酸株式会社
    • SASAKI TOSHIOYOSHIDA HIDEYUKINAKAMURA FUKUMI
    • A41D13/00A41D27/28F25D3/12
    • PROBLEM TO BE SOLVED: To provide a cooling device improving workability in a high temperature work section, and preventing frostbite of the body by a cooling material. SOLUTION: This cooling device 1 has an attachment part 2 and a cooling part 3. The attachment part 2 can hold a dry ice 4 for cooling the body. The cooling part 3 has a mesh-like state, is at least arranged between the attachment part 2 and the body and on the lower side of the attachment part 2 to pass therethrough carbon dioxide cool air which occurs from the dry ice 4. Further, the cooling part 3 has a first mesh layer 5 and a second mesh layer 6. The first mesh layer 5 is placed on the body side and set alternately with a plurality of first opening areas 7. The second mesh layer 6 is placed on the opposite side of the body and has a plurality of second opening areas 8 which are alternately set. The plurality of second opening areas 8 are alternately disposed. The individual opening area of a plurality of the second opening areas 8 is larger than that of a plurality of the first opening areas 7. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种提高高温加工部的加工性的冷却装置,并且通过冷却材料来防止身体的冻伤。 解决方案:该冷却装置1具有安装部2和冷却部3.安装部2能够容纳用于冷却身体的干冰4。 冷却部3具有网状状,至少配置在安装部2与主体之间以及安装部2的下侧,通过从干冰4发生的二氧化碳冷却空气。此外, 冷却部件3具有第一网眼层5和第二网眼层6.第一网眼层5被放置在主体侧并与多个第一开口区域7交替设置。第二网格层6被放置在相反的 并且具有交替设置的多个第二开口区域8。 多个第二开口区域8交替设置。 多个第二开口区域8的单个开口面积大于多个第一开口区域7的个别开口面积。(C)2010,JPO&INPIT
    • 2. 发明专利
    • Method and apparatus for producing dry ice pellet
    • 用于生产干冰颗粒的方法和装置
    • JP2006199539A
    • 2006-08-03
    • JP2005013236
    • 2005-01-20
    • Air Water Tansan KkCostem:Kkエア・ウォーター炭酸株式会社株式会社コステム
    • MURAMATSU HIROYASUITAKURA FUMIO
    • C01B32/55
    • PROBLEM TO BE SOLVED: To provide a labor-saving method for producing a dry ice pellet, whereby the dry ice pellet with a high density can be efficiently produced from a hexahedral dry ice block, and an apparatus for producing the dry ice pellet.
      SOLUTION: The hexahedral dry ice block 60 is fed to a crusher 20 and crushed in the crusher to produce crushed dry ice 70. The crushed dry ice is subsequently fed to a receiving hopper 11 located above an extrusion cylinder 12 lying horizontally in a dry ice pellet extruder 10. The crushed dry ice fed to the extrusion cylinder from the receiving hopper is pushed toward a die 16 which is located on one end of the extrusion cylinder and has several through-holes of a particular shape by a hydrodynamic piston 13 from the other end of the extrusion cylinder, and the dry ice pellet 80 extruded from the die in the form of a chalk is fed to a receiving vessel 50.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种用于制造干冰颗粒的省力的方法,由此可以从六面体干冰块有效地生产具有高密度的干冰颗粒,以及用于生产干冰的设备 沉淀。 解决方案:将六面体干冰块60进料到破碎机20并在破碎机中破碎以产生压碎的干冰70.随后将破碎的干冰送入位于水平放置的挤压圆筒12上方的接收料斗11中 干冰颗粒挤出机10.从接收料斗供给到挤压圆筒的破碎的干冰被推向位于挤出圆筒的一端的模具16,并且具有若干通过流体动力活塞的特定形状的通孔 从挤出圆筒的另一端开始,将从模具挤出的粉笔形式的干冰球80送入接收容器50.版权所有(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Refrigerating body
    • 制冷机构
    • JP2010052769A
    • 2010-03-11
    • JP2008219907
    • 2008-08-28
    • Air Water Tansan Kkエア・ウォーター炭酸株式会社
    • SHIZUME RYUJI
    • B65D81/38
    • PROBLEM TO BE SOLVED: To provide a refrigerating body that is adoptable for any amount of content. SOLUTION: A refrigerating structure 1 has a content 2 and a refrigerating body 3. The refrigerating body 3 is a means for refrigerating the content 2, is able to accommodate the content 2, and is able to cover at least the upper face 4 or the lower face 5 and a side face 6 of the content 2. The refrigerating body 3 has a base face part 7 and a side face part 8. The base face part 7 is arranged to the side of the upper face 4 or the lower face 5 of the content 2. The side face part 8 extends continuously from the base face part 7 and is arranged to the side of the side face 6 of the content 2. At least one of the base face part 7 and the side face part 8 is bendable and extendable at an arbitrary position. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供可用于任何量的内容物的冷藏体。 解决方案:制冷装置1具有内容物2和冷藏体3.制冷机构3是用于冷藏内容物2的装置,能够容纳内容物2,并且能够至少覆盖上表面 4或下表面5以及内容物2的侧面6.冷藏体3具有基面部7和侧面部8.基面部7配置在上面4的一侧或 侧面部分8从基面部分7连续地延伸,并且被布置在内容物2的侧面6侧。基面部分7和侧面中的至少一个 部分8可在任意位置弯曲和延伸。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Heat insulating box
    • 热绝缘盒
    • JP2006306422A
    • 2006-11-09
    • JP2005129637
    • 2005-04-27
    • Air Water Tansan Kkエア・ウォーター炭酸株式会社
    • SASAKI TOSHIOITOI AKIRA
    • B65D81/38F25D23/06F25D23/08
    • PROBLEM TO BE SOLVED: To provide a heat insulating box maintaining the airtight state during the storage and conveyance, lightweight, low in manufacturing cost, and applicable to the fluid granules.
      SOLUTION: In a container part 10, a container bottom part heat insulating plate and four container side wall heat insulating plates 11 surrounding four sides of the container bottom part heat insulating plate adhere to each other to form a box with a top side opened, and a lid part 30 is constituted of a lid part heat insulating plate having a projecting part to be engaged with an opening part of the container part 10. A side wall of a groove-shaped metal member 21 for fixing the top side is mounted on upper faces of the container side wall heat insulating plates 11 to surround the opening part so as to hold both sides of the heat insulating plates 11. The entire container side wall heat insulating plates 11 are connected to each other, and any deformation of an upper portion of the container part 10 does not occur. Thus, even when the fluid granule such as granular dry ice is stored in the container 10, any gap is formed between the container part 10 and the lid part 30 with a simple configuration, and the airtightness between the container part 10 and the lid part 30 is maintained.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种在储存和输送过程中保持气密状态的隔热箱,重量轻,制造成本低,适用于流体颗粒。 解决方案:在容器部分10中,容器底部绝热板和围绕容器底部绝热板四边的四个容器侧壁隔热板11彼此粘合以形成具有顶侧 打开,盖部30由具有与容器部10的开口部配合的突出部的盖部绝热板构成。用于固定顶侧的槽状金属构件21的侧壁为 安装在容器侧壁隔热板11的上表面上以围绕开口部分,以便保持绝热板11的两侧。整个容器侧壁隔热板11彼此连接,任何变形 不会发生容器部10的上部。 因此,即使在容器10中储存粒状干冰等流体颗粒的情况下,也可以容易地形成容器部10与盖部30之间的间隙,容器部10与盖部之间的气密性 维持30。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Container apparatus
    • 集装箱装置
    • JP2005255240A
    • 2005-09-22
    • JP2004072885
    • 2004-03-15
    • Air Water Tansan KkCostem:Kkエア・ウォーター炭酸株式会社株式会社コステム
    • ITOI AKIRAMURAMATSU HIROYASUSHIZUME RYUJI
    • B65D6/18
    • PROBLEM TO BE SOLVED: To provide a container apparatus which allows a worker to change its assembled state to its folded state by himself (herself) even if each side has a length of 1 m or more.
      SOLUTION: This container apparatus 300 is made such that an upper side of a rear plate member 320 and a rear side of a top plate member 350 are connected to each other in a foldable manner, a lower side of the rear plate member and a rear side of the bottom plate member 360 are connected to each other in a foldable manner, a front side of the bottom plate member and a lower side of the front plate member 310 are connected to each other in a foldable manner, and the left side of the rear plate member and the rear side of the left plate member 330 are connected to each other in a foldable manner. In this container apparatus, since the right side of the rear plate member and the rear side of the right plate member 340 are connected to each other in a foldable manner, when the container is changed from its assembled state to its folded state, for example, the top plate member opened upwardly is turned from the rear side to the lower side, the front plate member is opened forwardly and then the left plate member, the right plate member and the bottom plate member are turned rearward and then the front plate member is also overlapped on each of these plate members.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种容器设备,即使每个侧面的长度为1μm以上,也能够使自己(自己)将工作人员的组装状态改变为折叠状态。 解决方案:这种容器装置300被制成使得后板构件320的上侧和顶板构件350的后侧以可折叠的方式彼此连接,后板构件的下侧 并且底板构件360的后侧以可折叠的方式彼此连接,底板构件的前侧和前板构件310的下侧以可折叠的方式彼此连接,并且 后板构件的左侧和左板构件330的后侧以可折叠的方式彼此连接。 在这种容器装置中,由于后板构件的右侧和右板构件340的后侧以可折叠的方式彼此连接,所以当容器从组装状态变为折叠状态时,例如 向上打开的顶板构件从后侧向下侧转动,前板构件向前打开,然后左板构件,右板构件和底板构件向后转动,然后前板构件 也在这些板构件的每一个上重叠。 版权所有(C)2005,JPO&NCIPI