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    • 3. 发明专利
    • Method for densifying porous structure and densifying apparatus
    • 用于对多孔结构和透镜装置进行识别的方法
    • JP2013086999A
    • 2013-05-13
    • JP2011227053
    • 2011-10-14
    • Ihi Aerospace Co Ltd株式会社IhiエアロスペースDai Ichi High Frequency Co Ltd第一高周波工業株式会社
    • YAMAUCHI HIROSHIHAYAKAWA HIRONAGASUZUKI SHIGERUIDE DAIKIMURA SOJIROKOBAYASHI RYOJIMIYATA SHUICHIRO
    • C04B41/85B64G1/00C04B35/80F16D65/12
    • PROBLEM TO BE SOLVED: To provide a method for densifying a porous structure and a densifying apparatus capable of manufacturing a high-density porous structure required for, for example, a nozzle liner of a spacecraft or a brake disk, and greatly shortening the time required for its manufacture.SOLUTION: This densifying apparatus includes: a reactor 2; a heating derivative 4 arranged in the reactor 2, and comprising a high-density C/C composite having a density of ≥1.95 g/cmand supported in the state where a carbon preform W is immersed into a liquid phase precursor C stored in the reactor 2; and a power supply part 6 for heating the liquid phase precursor C and the preform W immersed into the liquid phase precursor C in the reactor 2 by supplying a high-frequency current to the heating derivative 4 and heating by resistance heating, and allowing a decomposition product of the liquid phase precursor C decomposed by the heating to impregnate and deposit into many fine cavities of the carbon preform W.
    • 解决的问题:提供一种致密化多孔结构的方法和能够制造例如航天器或制动盘的喷嘴衬套所需的高密度多孔结构的致密化装置,并且大大缩短 其制造所需的时间。 解决方案:该致密化装置包括:反应器2; 布置在反应器2中的加热衍生物4,并且包含密度为≥1.95g/ cm 3的高密度C / C复合物,并且在碳 将预制件W浸入存储在反应器2中的液相前体C中; 以及电源部分6,用于通过向加热衍生物4提供高频电流并通过电阻加热进行加热来加热液相前体C和浸入反应器2中的液相前体C中的预成型件W,并且允许分解 通过加热分解的液相前体C的产物浸渍并沉积到碳预型体W的许多细小空腔中。(C)2013,JPO&INPIT
    • 4. 发明专利
    • Film forming method
    • 电影制作方法
    • JP2011189263A
    • 2011-09-29
    • JP2010057023
    • 2010-03-15
    • Dai Ichi High Frequency Co Ltd第一高周波工業株式会社
    • KOGIN TAKASHIKIMURA SOJIROMIYATA SHUICHIRO
    • B05D3/02H05B6/02
    • PROBLEM TO BE SOLVED: To provide a film forming method which can form a uniform film having a thick film thickness to a surface to be treated of a workpiece, has a low energy cost, can utilize a film raw material efficiently, and can practice with a simple equipment and with a good workability. SOLUTION: The method includes a step of heating the surface to be treated S in a state that a heat resistance member 21 which is impregnated with a metal-containing liquid material of a film formability contacts with the surface to be treated S of a workpiece W to form the film on the surface to be treated S. More specifically, the method comprises steps of coating the surface to be treated S of the workpiece W by the sheet-like heat-resistant member 21, of impregnating the heat-resistant member 21 coating the surface to be treated S of the workpiece W with the metal-containing liquid material of the film formability, and at the same time, of forming the film on the concerned surface to be treated S by heating the surface to be treated S. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种能够形成具有厚膜厚度的均匀的膜到待处理的表面的成膜方法,具有低能量成本,可以有效地利用膜原料,以及 可以用简单的设备练习,并具有良好的可操作性。 解决方案:该方法包括在浸渍有可成膜性的含金属液体材料的耐热构件21与待处理的表面S接触的状态下加热待处理表面S的步骤 工件W,以在待处理的表面S上形成膜。更具体地,该方法包括通过片状耐热构件21涂覆工件W的被处理物S的步骤, 用成膜性的含金属液体材料涂覆被加工物W的被处理物S的同时,通过将表面加热而在被处理物S的表面上形成膜 (C)2011,JPO&INPIT
    • 5. 发明专利
    • Carburizing method
    • 加碳方法
    • JP2011106018A
    • 2011-06-02
    • JP2009265429
    • 2009-11-20
    • Dai Ichi High Frequency Co Ltd第一高周波工業株式会社
    • KOGIN TAKASHIKIMURA SOJIROMIYATA SHUICHIRO
    • C23C8/46
    • PROBLEM TO BE SOLVED: To provide a carburizing method capable of obtaining the carburizing speed of the equivalent to that in the in-liquid carburizing method, and efficiently using liquid-like substance as a carbon supply source while the energy cost is low. SOLUTION: The carburizing method includes a step of heating a surface S to be treated while a heat-resistant member 21 with carbon-containing compound being impregnated therein is brought into contact with the surface S to be treated of a workpiece W. More specifically, the carburizing method includes a step of coating the surface S of the workpiece W with a sheet-like heat-resistant member 21, and a step of supplying a liquid-like carbon-containing compound from a nozzle 31 and impregnating it in the heat-resistant member 21 coating the surface S of the workpiece W, and executing the dielectric heating of the surface S by using a coil 31. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够获得与液体中渗碳方法相同的渗碳速度的渗碳方法,并且在能量成本低的情况下有效地使用液体状物质作为碳源 。 解决方案:渗碳方法包括在其中浸渍有含碳化合物的耐热构件21与待处理的待处理表面S接触的同时加热要处理的表面S的步骤。 更具体地,渗碳方法包括用片状耐热构件21涂覆工件W的表面S的步骤,以及从喷嘴31供给液体状含碳化合物并将其浸渍在 耐热构件21涂覆工件W的表面S,并且通过使用线圈31执行表面S的介电加热。版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Body warming device
    • 身体加温装置
    • JP2007267875A
    • 2007-10-18
    • JP2006096064
    • 2006-03-30
    • Dai Ichi High Frequency Co LtdNano Therapy Kenkyusho:Kk株式会社ナノセラピー研究所第一高周波工業株式会社
    • HIRAYAMA KOTAROTOMOTA ISAMUMIYATA SHUICHIRO
    • A61N2/00A61F7/00
    • A61F7/0053A61N1/403
    • PROBLEM TO BE SOLVED: To provide a body enclosing solenoid type body warming device with small coil impedance, capable of generating a magnetic flux with a prescribed density at a region near an affected part inside a solenoid coil. SOLUTION: The body warming device 10 comprises: a tubular solenoid coil 17 of such a size as a living body can be slackly inserted into; a high-frequency power supply 11 for feeding electricity to the solenoid coil; and a body holder 15 which can be slackly inserted into the solenoid coil 17. The shape of the contour related to the cross section of the solenoid coil 17 is circular 17a in a section larger than a half and is linear 17b in the remaining section in the circumferential direction of the contour. A subordinate solenoid coil, short and densely wound, is inserted into the solenoid coil 17. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种具有小线圈阻抗的主体封闭式电磁式体温加热装置,能够在螺线管线圈内的受影响部分附近的区域产生规定密度的磁通量。 解决方案:身体保暖装置10包括:诸如生物体的尺寸的管状螺线管线圈17可以松弛地插入; 用于向电磁线圈供电的高频电源11; 以及能够松弛地插入到螺线管线圈17中的主体保持件15.与螺线管线圈17的横截面相关的轮廓的形状是大于一半的截面中的圆形17a,并且在剩余部分中是线性的17b 轮廓的圆周方向。 电磁线圈17中插入一个短而密集的下级电磁线圈。(C)2008,JPO&INPIT