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    • 6. 发明专利
    • Controlled cooling furnace
    • 控制冷却炉
    • JP2013002764A
    • 2013-01-07
    • JP2011135890
    • 2011-06-20
    • Nissan Motor Co Ltd日産自動車株式会社
    • IIZUKA SATORUAONO KEITAROSAITO MASAMOTOMATSUNAE HIROKI
    • F27D9/00F27B9/12F27B9/24F27B9/40F27D1/12F27D17/00F27D19/00H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a controlled cooling furnace that can generate power efficiently with a workpiece flowing on a conveyor inside the furnace as a heat source.SOLUTION: A conveyor 2 for transporting the workpiece W with thermal energy, such as the workpiece W after forging, is surrounded by a furnace wall 3 like a tunnel. A plurality of sets of thermoelectric power generation units 10, 11 and 12 with a thermoelectric power generation module 8, a water-cooling heat sink 16 for cooling the thermoelectric power generation module 8, and a heat receiving plate 15 unitized in advance are arranged on the furnace wall 3 side by side in series along the workpiece transport direction. Electricity generated by the thermoelectric power generation module 8 is stored in a storage battery 19 so as to be available as power for a fan motor 21 of a fresh air introduction duct or the like.
    • 要解决的问题:提供一种受控制的冷却炉,其可以在作为热源的炉内的输送机上流动的工件上有效地发电。 解决方案:用于用热能输送工件W(例如锻造后的工件W)的输送机2被诸如隧道的炉壁3包围。 具有热电发电模块8,用于冷却热电发电模块8的水冷散热器16和预先组合的热接收板15的多组热电发电单元10,11和12设置在 炉壁3沿工件输送方向并排并排。 由热电发电模块8产生的电力被存储在蓄电池19中,以便作为新鲜空气导入管道等的风扇电动机21的电力可用。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Waste heat power generator
    • 废热发电机
    • JP2012248552A
    • 2012-12-13
    • JP2011116454
    • 2011-05-25
    • Nissan Motor Co Ltd日産自動車株式会社
    • IIZUKA SATORUAONO KEITAROMATSUNAE HIROKISAITO MASAMOTO
    • H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a waste heat power generator capable of generating power by efficient waste heat recovery when using a workpiece conveyed on a conveyor as a heat source.SOLUTION: Under a conveying body 2a of a conveyor 2 intended for a workpiece W after hot forging as a conveyance object, a thermoelectric power generation unit 4 is arranged which generates power by recovering heat of the workpiece W via the conveying body 2a. The thermoelectric power generation unit 4 is made up of a heat sink 7, a thermoelectric power generation module 8, a heat receiving plate 9, and so forth. A plurality of rollers may also be interposed between the conveying body 2a of the conveyor 2 and the heat receiving plate 9 of the thermoelectric power generation unit 4, as a heat conductive intermediate member which does not impede the movement of the conveying body 2a while making contact with both the conveying body 2a and the heat receiving plate 9.
    • 要解决的问题:提供一种当使用在输送机上输送的工件作为热源时能够通过有效的废热回收发电的废热发电机。 解决方案:在作为输送物体的热锻后的工件W的输送机2的输送体2a的下方,配置有通过经由输送体2a回收工件W的热而发电的热电发电单元4 。 热电发电单元4由散热器7,热电发电模块8,受热板9等构成。 也可以在输送机2的输送体2a和热电发电单元4的受热板9之间设置多个辊,作为不会妨碍输送体2a的移动而导致的导热中间部件 与传送体2a和受热板9接触。版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Method and apparatus for improving surface stress of high frequency-induction hardened article
    • 改善高频感应硬化物件表面应力的方法与装置
    • JP2010209395A
    • 2010-09-24
    • JP2009056110
    • 2009-03-10
    • Nissan Motor Co Ltd日産自動車株式会社
    • AONO KEITAROMATSUNAE HIROKI
    • C21D1/10C21D9/00C21D9/30C21D9/32
    • Y02P10/253
    • PROBLEM TO BE SOLVED: To provide a method for improving the surface stress in a high frequency-induction hardened article by which the improvement of the surf stress at the hardening-boundary part can simply and effectively be performed and the occupancy space can be saed. SOLUTION: The high frequency-induction hardening is performed with Joule-heat developed by flowing electric alternating current into a coil 2 wound around a heat-treatment portion of the article 1 to be heat-treated. Thereafter, low-speed water injecting-flow is injected from an injecting nozzle 4 arranged toward the hardening-boundary part 7 developed near the hardening part 6, and a cavitation injecting-flow 10 developed by injecting high-speed water injecting-flow into the low-speed water injecting-flow, is injected toward the hardening-boundary part. The surface stress is improved so that the hardening-boundary part 7 developed to a tension-stress by performing the high frequency-induction hardening, becomes the compress-stress with this cavitation injecting-flow 10. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种改善高频感应淬火制品中的表面应力的方法,通过该方法可以简单有效地执行硬化边界部分处的冲击应力的改善,并且占用空间可以 被割 解决方案:高频感应淬火通过将电动交流电流流入缠绕在待热处理的物品1的热处理部分上的线圈2中而产生的焦耳热进行。 然后,从配置在硬化部6附近形成的硬化边界部7的喷射喷嘴4喷射低速喷水流,通过将高速注水流注入 低速注水流向硬化边界部分注入。 提高了表面应力,使得通过进行高频感应淬火而发展成拉伸应力的硬化边界部分7成为该空化注入流10的压缩应力。版权所有(C)2010 ,JPO&INPIT
    • 9. 发明专利
    • Waste heat generation device
    • 废热发生装置
    • JP2012234976A
    • 2012-11-29
    • JP2011102702
    • 2011-05-02
    • Nissan Motor Co Ltd日産自動車株式会社
    • IIZUKA SATORUAONO KEITAROMATSUNAE HIROKISAITO MASAMOTO
    • H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a waste heat generation device by which efficient power generation is made to be performed when a work flowing on a conveyor is used as a heat source.SOLUTION: Disclosed is a waste heat generation device in which a thermoelectric power generation unit 3 having a heat receiving plate 9 and a thermoelectric power generation module 7 is arranged on the upper side of a conveyor 2 having a work W after hot forging as a carrying object, and the work W itself is used as a heat source. Only the lower surface of the heat receiving plate 9 is opened, the whole thermoelectric power generation unit 3 except the opened lower surface is made to have a heat insulating effect by being surrounded by a heat insulating material 13. Radiation heat from the work W is positively guided to the heat receiving plate 9 by using the lower parts of the upstream side and the downstream side out of the heat insulating material 13 as inclining-shaped skirt parts 14, 15, and convection generated directly under the thermoelectric power generation unit 3 by heat from the work W is prevented from escaping to the outside.
    • 要解决的问题:提供一种当在输送机上流动的工作用作热源时,进行有效发电的废热发生装置。 解决方案:公开了一种废热发生装置,其中具有热接收板9和热电发电模块7的热电发电单元3布置在热锻后具有工件W的输送机2的上侧 作为携带物体,工件W本身被用作热源。 只有受热板9的下表面被打开,整个热电发电单元3除了开放的下表面之外都被隔热材料13包围而具有绝热效果。来自工件W的放射热是 通过使用隔热材料13的上游侧和下游侧的下部作为倾斜形的裙部14,15,以及在热电发电单元3的下方直接产生的对流,被积极地引导到受热板9,通过 防止来自工件W的热量逸出到外面。 版权所有(C)2013,JPO&INPIT