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    • 2. 发明专利
    • Method and apparatus for machining periodic structure on outer peripheral body
    • 加工周边外部周期结构的方法与装置
    • JP2008200699A
    • 2008-09-04
    • JP2007037964
    • 2007-02-19
    • Enshu LtdLaser Gijutsu Sogo KenkyushoOsaka Univエンシュウ株式会社国立大学法人大阪大学財団法人レーザー技術総合研究所
    • ABE NOBUYUKITSUKAMOTO MASAHIROFUJITA MASAYUKIMURAKAMI KUNIOKATO TAKAYUKIFUJITA YASUHIRO
    • B23K26/36B23K26/06B23K26/073B23K26/08
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for machining the periodic structure of an outer peripheral body by which arraying machining is made possible with high accuracy without putting out the regular shape of the periodic construction (fine periodic groove and dimple) by specializing the outer peripheral body. SOLUTION: The method and apparatus are characterized by conducting the femtosecond laser of a linearly polarized light into a first rotary cylinder 41 which is provided rotatably, changing the polarization direction of the linearly polarized light with a λ/2 plate which is arranged in the first rotary cylinder, advancing the femtosecond laser in the direction of the outside diameter while condensing the femtosecond laser with a condensing lens R3 and a reflection mirror M which are arranged in a second rotary cylinder 49 which is provided rotatably by aligning the axial center O2 to the first rotary cylinder, emitting the femtosecond laser after facing the outer peripheral surface W1 of the outer peripheral body W which is held by a chucking means 7 to the outer circumference of the reflection mirror and rotating the first rotary cylinder which is provided with the λ/2 plate by a half per rotation in the rotation of the second rotary cylinder which is provided with the reflection mirror, and arraying machining the periodic grooves in the same direction on the outer peripheral surface of the outer peripheral body. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于加工外周体的周期性结构的方法和装置,通过其可以高精度地进行排列加工,而不会排除周期性构造的规则形状(精细周期性凹槽和 凹坑)通过专门的外围机身。 解决方案:该方法和装置的特征在于将线性偏振光的飞秒激光导入第一旋转圆筒41中,第一旋转圆筒41可旋转地设置,改变线偏振光的偏振方向,其中λ/ 2板被布置 在第一旋转圆筒中,使飞秒激光在外径方向上前进,同时将飞秒激光与聚光透镜R3和反射镜M聚光,该聚光透镜R3和反射镜M布置在第二旋转圆筒49中,第二旋转圆筒49通过使轴向中心 O2到第一旋转圆筒,在将由夹紧装置7保持的外周体W的外周面W1面向与反射镜的外周相反并且旋转设置有第一旋转圆筒的第一旋转圆筒之后,将飞秒激光发射 在设置有反射的第二旋转圆筒的旋转中,λ/ 2板旋转一半 在外周体的外周面上对相同方向的周期性凹槽进行反射和排列加工。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Method of controlling machining for cyclic structure, and machining controller for periodic structure
    • 控制循环结构加工的方法和定期结构的加工控制器
    • JP2009050904A
    • 2009-03-12
    • JP2007221963
    • 2007-08-29
    • Enshu LtdLaser Gijutsu Sogo KenkyushoOsaka Univエンシュウ株式会社国立大学法人大阪大学財団法人レーザー技術総合研究所
    • ABE NOBUYUKITSUKAMOTO MASAHIROFUJITA MASAYUKIKURODA KIYOTSUGUKATO TAKAYUKISUZUKI TOSHIYUKI
    • B23K26/36B23K26/06B23K26/073B23K26/08B23K101/04G02B5/18
    • PROBLEM TO BE SOLVED: To provide a method and a device for forming the proper pattern of periodic structures on the surface of a workpiece to the outer or inner circumferential face of the workpiece. SOLUTION: A femtosecond laser LO is introduced into a laser machining head 20 via a shutter ST, and is linearly polarized by a λ/2 plate within a first rotary cylindrical body rotatably provided at the laser machining head. The femtosecond laser is advanced to the outside diameter direction while being condensed with a condensing lens R3 and a reflection mirror within a second rotary cylindrical body rotatably provided in such a manner that the axial center O1 is aligned to the first rotary cylindrical body 41. The outer circumference of the reflection mirror is made to face the machining face W1 of a cylindrical workpiece grasped by a chuck means in a workpiece rotary driving part and irradiated with a femtosecond laser, and both the first rotary cylindrical body provided with theλ/2 plate and the second rotary cylindrical body provided with the reflection mirror are rotated in such a manner that the rotational amount of the first rotary cylindrical body is controlled to 1/2 that of the secondary rotary cylindrical body. Further, the cylindrical workpiece is revolved around the outer circumference of the reflection mirror, and periodic structures are intermittently lined up on the machining face of the cylindrical workpiece. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于在工件的表面上形成适当图案的周期性结构的方法和装置到工件的外周面或内周面。 解决方案:飞秒激光器LO通过快门ST引入激光加工头20中,并且由可旋转地设置在激光加工头部的第一旋转圆柱体内的λ/ 2板线性偏振。 飞秒激光在与轴向中心O1与第一旋转圆柱体41对准的状态下可旋转地设置的第二旋转圆筒体内与聚光透镜R3和反射镜聚光而前进到外径方向。 将反射镜的外周面与由工件旋转驱动部中的卡盘装置夹持的圆筒状工件的加工面W1相对照,并且用飞秒激光照射,并且将设置有λ/ 2板的第一旋转圆筒体和 设置有反射镜的第二旋转圆柱体以使得第一旋转圆柱体的旋转量被控制为二次旋转圆柱体的旋转量的方式旋转。 此外,圆筒状工件围绕反射镜的外周旋转,周期性结构间歇地排列在圆筒形工件的加工面上。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Method and apparatus for machining periodic structure on inner peripheral surface of cylinder
    • 加工圆筒内周期周期结构的方法与装置
    • JP2008200698A
    • 2008-09-04
    • JP2007037963
    • 2007-02-19
    • Enshu LtdLaser Gijutsu Sogo KenkyushoOsaka Univエンシュウ株式会社国立大学法人大阪大学財団法人レーザー技術総合研究所
    • ABE NOBUYUKITSUKAMOTO MASAHIROFUJITA MASAYUKIMURAKAMI KUNIOKATO TAKAYUKIFUJITA YASUHIRO
    • B23K26/36B23K26/06B23K26/073B23K26/08
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for machining periodic construction of the inner peripheral surface of a cylinder by which the arraying machining is made possible with high accuracy without putting out of a regular shape of periodic construction (fine periodic groove and dimple) by specializing the inner peripheral surface of a cylinder of a cylindrical workpiece. SOLUTION: The method and apparatus are characterized by conducting a femtosecond laser of linearly polarized light into a first rotary cylinder 41 which is provided rotatably, changing the polarization direction of the linearly polarized light with a λ/2 plate which is arranged in the first rotary cylinder, advancing the femtosecond laser in the direction of the outside diameter while condensing the femtosecond laser with a condensing lens R3 and a reflection mirror M which are arranged in a second rotary cylinder 49 which is provided rotatably by aligning the axial center O2 to the first rotary cylinder, emitting the femtosecond laser after facing the inner peripheral surface W1 of the cylindrical workpiece W and rotating the first rotary cylinder provided with the λ/2 plate by a half per the rotation of the rotation of the second rotary cylinder which is provided with the reflection mirror, and arraying machining the periodic groove KM in the same direction on the inner peripheral surface of the cylindrical workpiece. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于加工气缸的内周面的周期性构造的方法和装置,通过该方法和装置可以高精度地进行排列加工,而不会脱离周期性构造的规则形状(精细 周期性凹槽和凹坑),专门用于圆柱形工件的圆柱体的内周面。 解决方案:该方法和装置的特征在于将线性偏振光的飞秒激光导入第一旋转圆筒41,第一旋转圆筒41可旋转地设置,以布置在...中的λ/ 2板改变线偏振光的偏振方向 第一旋转圆筒,使飞秒激光在外径方向上前进,同时将飞秒激光与聚光透镜R3和反射镜M聚光,该聚光透镜R3和反射镜M布置在第二旋转圆筒49中,第二旋转圆筒49通过将轴向中心O2 到第一旋转圆筒,在面对圆筒形工件W的内周面W1之后发射飞秒激光,并且使第二旋转圆筒的转动旋转使设置有λ/ 2板的第一旋转圆筒旋转一半 设置有反射镜,并且在内周边沿相同方向排列加工周期槽KM 圆柱形工件的表面。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • High-efficiency hydrogen-storing metallic material and method for manufacturing the same
    • 高效储氢金属材料及其制造方法
    • JP2009255141A
    • 2009-11-05
    • JP2008108630
    • 2008-04-18
    • Osaka Univ国立大学法人大阪大学
    • KOBAYASHI AKIRATSUKAMOTO MASAHIROARATA YOSHIAKI
    • B23K26/36B23K26/00B23K103/08
    • PROBLEM TO BE SOLVED: To provide a method for subjecting the surface of a metallic material having a hydrogen-storing function to nanometer-order microfabrication in a short time and at low cost, and a simple method for manufacturing a high-efficiency hydrogen-storing metallic material. SOLUTION: In the invented method for manufacturing the high-efficiency hydrogen-storing metallic material, the surface of the metallic material having the hydrogen-storing function is irradiated with femtosecond laser whereby a microperiodic structure is formed on the surface of the metallic material having the hydrogen-storing function. A large volume of hydrogen can be efficiently stored by the formation of the microperiodic structure on the surface of the metallic material having the hydrogen-storing function. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种在短时间和低成本下对具有储氢功能的金属材料的表面进行纳米级微细加工的方法,以及用于制造高效率的简单方法 储氢金属材料。 解决方案:在本发明的制造高效储氢金属材料的方法中,用飞秒激光照射具有储氢功能的金属材料的表面,由此在金属的表面上形成微周期结构 具有储氢功能的材料。 通过在具有氢储存功能的金属材料的表面上形成微周期结构可以有效地储存大量的氢。 版权所有(C)2010,JPO&INPIT