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    • 3. 发明专利
    • Roll forming processing method for thin plate
    • 薄板轧制成型加工方法
    • JP2014155958A
    • 2014-08-28
    • JP2013029475
    • 2013-02-18
    • Toyota Motor Corpトヨタ自動車株式会社
    • ISHIZU SEIJIOKADA HIDEYUKIYASUE KAZUYA
    • B21D13/04H01M8/02H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To provide a roll forming processing method for a thin plate capable of improving productivity and suppressing manufacturing cost by easily confirming a difference between relative rotating phases of both roller blades as a setup before regularly forming irregularities on both face sides of a thin plate-shaped material that is delivered to a space between the pair of roller blades by engagement of the corotating roller blades.SOLUTION: A roll forming processing method for a thin plate includes: a sample member formation process of forming irregularities on both side faces of a sample member 50 transparent between surface and back face sides by a pair of roller blades 10 before a material 5 is molded; a coating material adhesion process of subsequently applying coating materials having different colors to the surface side and the back face side of a formed sample member 60 and adhering the coating materials; a coating material wiping process of subsequently wiping off the coating materials adhering to both of the surfaces of the formed sample member 60 while the coating materials adhering to bottoms 63 and tops 64 of grooves of the formed sample member 60 are left; and a coating material color pattern confirmation process of confirming positions of color patterns of the coating materials on both of the surface and back face sides that remain unwiped on the formed sample member 60.
    • 要解决的问题:提供一种能够通过容易地确认两个辊叶片的相对旋转相位之间的差异作为设置来提供能够提高生产率和抑制制造成本的薄板的辊加工方法, 薄板状材料通过相互转动的辊叶片的接合被输送到一对辊叶片之间的空间。解决方案:薄板的成形加工方法包括:样品构件形成工艺,在两个侧面上形成凹凸 在模制材料5之前,通过一对辊叶片10在表面和背面之间透明的样品构件50; 随后将涂覆材料与不同颜色的涂层材料粘附到所形成的样品构件60的表面侧和背面侧并粘附涂层材料的涂料粘附工艺; 随后擦拭附着在所形成的样品构件60的两个表面上的涂料的涂料擦拭过程,同时留下附着在所形成的样品构件60的槽的底部63和顶部64上的涂料; 以及涂布材料颜色图案确认处理,确认在形成的样品构件60上保持未被覆盖的表面和背面两侧的涂布材料的颜色图案的位置。
    • 4. 发明专利
    • Transporting roller device
    • 运输滚子设备
    • JP2014088246A
    • 2014-05-15
    • JP2012239858
    • 2012-10-31
    • Toyota Motor Corpトヨタ自動車株式会社
    • OZAKI TAKEYUKIASANO JUNJIISHIZU SEIJI
    • B65H27/00B65G39/09
    • PROBLEM TO BE SOLVED: To solve the problem that it is impossible to attain the compatibility of securing the rigidity of a shaft member and reduction in diameter of a roller member.SOLUTION: A transporting roller device 100 is disposed in a cantilever attitude on a fitting side part 200. The transporting roller device 100 includes: a shaft member 10, one end of which is fixed to the fitting side part 200 and provided with a step recessed part 12b near the other end; a cylindrical roller member 20 disposed on the outer periphery of the shaft member 10; a first bearing 30 which is disposed on the fitting side part 200 side of the roller member 20, an outer ring 31 of the bearing being fixed to the fitting side part 200, an inner ring 32 of the bearing being fixed to the outer peripheral surface of the roller member 20; and a second bearing 40 which is disposed on the position of the step recessed part 12b of the shaft member 10, an inner ring 42 of the bearing being fixed to the step recessed part 12b, an outer ring 41 of the bearing being fixed to the inner peripheral surface of the roller member 10.
    • 要解决的问题:为了解决不可能获得确保轴构件的刚性和减小辊构件的相容性的问题。解决方案:传送辊装置100以悬臂姿态设置在配件上 输送辊装置100包括:轴构件10,其一端固定到装配侧部分200,并且在另一端附近设置有台阶凹部12b; 设置在轴构件10的外周上的圆柱滚子构件20; 第一轴承30,其设置在辊构件20的嵌合侧部200侧,轴承的外圈31固定在嵌合侧部200上,轴承的内圈32固定于外周面 的辊构件20; 以及第二轴承40,其设置在轴构件10的台阶凹部12b的位置上,轴承的内圈42固定到台阶凹部12b,轴承的外圈41固定在 辊构件10的内周面。
    • 5. 发明专利
    • Method and apparatus for manufacturing membrane electrode assembly
    • 制造膜电极组件的方法和装置
    • JP2013182682A
    • 2013-09-12
    • JP2012043760
    • 2012-02-29
    • Toyota Motor Corpトヨタ自動車株式会社
    • ASANO JUNJIIDE KOTAROISHIZU SEIJI
    • H01M8/02H01M4/88H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To prevent sag of a film to be caused by separation of a base material sheet during manufacturing a membrane electrode assembly.SOLUTION: A band-shaped electrolyte membrane sheet M10 with an electrolyte membrane M12 formed on an electrolyte membrane base material sheet M11 and a band-shaped catalyst layer transfer sheet M20 with a catalyst later M22 formed on a catalyst layer base material sheet M21 are fed. The catalyst layer of the catalyst layer transfer sheet is laminated on the electrolyte membrane of the fed electrolyte membrane sheet. The catalyst layer of the catalyst layer transfer sheet is transferred onto the electrolyte membrane of the electrolyte membrane sheet. From a membrane electrode assembly sheet with a membrane electrode assembly formed on the catalyst layer base material sheet, the catalyst layer base material sheet is moved in a direction different from advancing direction of the membrane electrode assembly, to separate the catalyst layer base material sheet from the membrane electrode assembly sheet. In separating the catalyst layer base material sheet from the membrane electrode assembly, air is jetted from an air jetting section 62 to a separation start part where the catalyst layer base material sheet starts moving in a direction different from the advancing direction of the membrane electrode assembly.
    • 要解决的问题:为了防止在制造膜电极组件期间由基材片分离而导致膜的松弛。解决方案:在电解质膜基材上形成具有电解质膜M12的带状电解质膜片M10 进料片M11和形成在催化剂层基材片M21上的催化剂后期M22的带状催化剂层转印片M20。 催化剂层转印片的催化剂层层叠在供给的电解质膜片的电解质膜上。 催化剂层转印片的催化剂层转移到电解质膜片的电解质膜上。 从形成在催化剂层基材片上的膜电极接合体的膜电极接合片,使催化剂层基材片沿与膜电极接合体的前进方向不同的方向移动,将催化剂层基材片从 膜电极组件片。 在将催化剂层基材片与膜电极接合体分离的过程中,空气从空气喷射部分62喷射到催化剂层基材片开始沿与膜电极组件的前进方向不同的方向移动的分离开始部分 。
    • 8. 发明专利
    • Manufacturing method of membrane electrode assembly with gas diffusion layer, and manufacturing device therefor
    • 具有气体扩散层的膜电极组件的制造方法及其制造装置
    • JP2014191906A
    • 2014-10-06
    • JP2013064311
    • 2013-03-26
    • Toyota Motor Corpトヨタ自動車株式会社
    • WAKAMATSU KENICHIROOZAKI TAKEYUKIISHIZU SEIJI
    • H01M8/02B32B7/02B32B37/00G06T1/00H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To perform positioning of cutting with high accuracy.SOLUTION: A manufacturing method of a membrane electrode assembly with a gas diffusion layer includes the steps of: preparing a laminate sheet in which a gas diffusion layer is laminated on one surface of a membrane electrode assembly in which electrode catalyst layers are formed on both surfaces of an electrolyte membrane; photographing a predetermined range including at least a predetermined portion of an electrode catalyst layer from the side of a surface where the electrode catalyst layer is exposed, in the laminate sheet; recognizing the predetermined portion from a photographic image obtained by the photography; and cutting the laminate sheet in accordance with a position of the recognized predetermined portion. The step of recognizing the predetermined portion includes: detecting edges of the photographic image in the direction of two neighboring sides of the photographic image from the side of an apex closest to a center of the electrode catalyst layer among four apexes of the photographic image (S123 and S124); and determining the position of the predetermined portion on the basis of each edge detected first in each direction (S125).
    • 要解决的问题:以高精度进行切割定位。解决方案:具有气体扩散层的膜电极组件的制造方法包括以下步骤:制备层压片,其中气体扩散层层压在 在电解质膜的两面形成有电极催化剂层的膜电极组件; 在层压片中从电极催化剂层暴露的表面的一侧拍摄包括电极催化剂层的至少预定部分的预定范围; 从通过摄影获得的摄影图像识别预定部分; 以及根据识别的预定部分的位置切割层压片。 识别预定部分的步骤包括:从摄影图像的四个顶点中的距离最接近电极催化剂层的中心的顶点侧沿摄影图像的两个相邻侧的方向检测摄影图像的边缘(S123 和S124); 以及基于在每个方向上首先检测的每个边缘来确定所述预定部分的位置(S125)。
    • 9. 发明专利
    • Thermal transfer apparatus
    • 热转印装置
    • JP2014097816A
    • 2014-05-29
    • JP2012249990
    • 2012-11-14
    • Toyota Motor Corpトヨタ自動車株式会社Komatsu Ntc LtdコマツNtc株式会社
    • ASANO JUNJIISHIZU SEIJISHIOZAKI KEISUKE
    • B65C9/32B65C1/02B65H5/06H01M8/02H01M8/10
    • Y02E60/521
    • PROBLEM TO BE SOLVED: To provide a thermal transfer apparatus capable of achieving size reduction of the apparatus and cost reduction, while suppressing generation of temperature unevenness of thermal transfer rolls.SOLUTION: The thermal transfer apparatus of the invention comprises, as a pair of thermal transfer rolls: a first thermal transfer roll which is rotated by driving force from a driving source; and a second thermal transfer roll of which position with respect to the first thermal transfer roll can be moved, the second thermal transfer roll rotating following the first thermal transfer roll, at a position where the second thermal transfer roll is in contact with the first thermal transfer roll via a laminated sheet. The thermal transfer apparatus further includes: an idle roll disposed between the first thermal transfer roll and the second thermal transfer roll; and an idle roll movement mechanism for, when thermal transfer is executed and the second thermal transfer roll is in contact with the first thermal transfer roll via the laminated sheet, moving the idle roll to a position where the idle roll is not in contact with the second thermal transfer roll, and when thermal transfer is not executed and the second thermal transfer roll is not in contact with the first thermal transfer roll via the laminated sheet, moving the idle roll to a position where the idle roll is in contact with the first thermal transfer roll and the second thermal transfer roll.
    • 要解决的问题:提供一种能够实现装置的尺寸减小和成本降低的热转印装置,同时抑制热转印辊的温度不均匀的产生。本发明的热转印装置包括作为一对热 传送辊:通过来自驱动源的驱动力旋转的第一传热辊; 并且第二传热辊相对于第一热转印辊的位置可移动,第二热转印辊在第二热转印辊与第一热转印辊接触的位置上随着第一热转印辊旋转 转印辊。 热转印装置还包括:设置在第一热转印辊和第二热转印辊之间的空转辊; 以及空转辊运动机构,当进行热转印并且第二热转印辊经由层压片与第一热转印辊接触时,将空转辊移动到空转辊不与其接触的位置 第二热转印辊,并且当不执行热转印并且第二热转印辊不经由层压片与第一热转印辊接触时,将空转辊移动到空转辊与第一热转印辊接触的位置 热转印辊和第二热转印辊。
    • 10. 发明专利
    • Manufacturing method and manufacturing apparatus of membrane electrode assembly for fuel cell
    • 膜电极组件的制造方法及制造方法
    • JP2014082049A
    • 2014-05-08
    • JP2012227915
    • 2012-10-15
    • Toyota Motor Corpトヨタ自動車株式会社
    • ASANO JUNJIIDE KOTAROISHIZU SEIJI
    • H01M8/02H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To provide a manufacturing method and a manufacturing apparatus of membrane electrode assembly for fuel cells, capable of suppressing defective joints between an electrolyte membrane and an electrode catalyst layer.SOLUTION: A cathode support film DF prepared for a cathode 22 is overlapped on an electrolyte membrane film 20F prepared for an anode 21 and is transferred, resulting in a film-like MEA in which the anode 21 and the cathode 22 are jointed having the electrolyte membrane film 20F therebetween after going through an opposition roller of a film transfer crimping part 140. Then, a cutting-edge mark Ks extending from the anode 21 side against the film-like MEA to the other film surface of the electrolyte membrane film 20F, is formed at a cutter 172 of the terminal side of non-forming non-coated region Ns of the anode 21 along the film transfer direction.
    • 要解决的问题:提供能够抑制电解质膜和电极催化剂层之间的接合不良的燃料电池用膜电极接合体的制造方法和制造装置。解决方案:为阴极22制备的阴极支撑膜DF为 重叠在为阳极21制备的电解质膜膜20F上,并转移,得到膜状MEA,其中阳极21和阴极22在经过膜的相对辊之后具有电解质膜膜20F, 然后,从非阳极21侧的薄膜状MEA延伸到电解质膜膜20F的另一个膜表面的前端标记Ks形成在非接触式端子侧的切割器172上, 沿着膜转移方向形成阳极21的非涂覆区域Ns。