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    • 22. 发明授权
    • Solar battery module manufacturing method
    • 太阳能电池模块制造方法
    • US08551803B2
    • 2013-10-08
    • US13026733
    • 2011-02-14
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • H01L31/18
    • B32B17/10036B32B17/10091H01L31/048Y02E10/50
    • Provided is a process of producing a solar battery module 1 including plural solar battery cells 4 sealed by a resin 5 between a transparent panel 2 of the light reception surface side and a back face panel 3, which is characterized by arranging plural solar battery cells 4 at a prescribed interval and mutually connecting them to each other by a conductor 8; arranging a first sealing resin sheet 12 substantially covering the entire surface of the transparent panel 2 of the light reception surface side between the transparent panel 2 of the light reception surface side and the solar battery cells 4; arranging a second sealing resin sheet 10 substantially covering the entire surface of the back face panel 3 between the back face panel 3 and the solar battery cells 4; arranging sealing resin sheet pieces 18, 19 which are thicker than the solar battery cells 4 at a space 9 between the solar battery cells 4 so as to be sandwiched by the first sealing resin sheet 12 and the second sealing resin sheet 10; discharging air between the transparent panel 2 of the light reception surface side and the back face panel 3; and heating the resin 5 for melting and then cooling down it for sealing. According to this, when the plural solar battery cells 4 are arranged and sealed by the resin 5, breakage of the solar battery cells 4 can be prevented from occurring.
    • 本发明提供一种太阳能电池模块1的制造方法,该太阳能电池模块1包括由光接收表面侧的透明面板2和后面板3之间的由树脂5密封的多个太阳能电池单元4,其特征在于,设置多个太阳能电池单元4 以规定的间隔并且通过导体8将它们彼此连接; 布置基本上覆盖在光接收表面侧的透明面板2和太阳能电池单元4之间的光接收表面侧的透明面板2的整个表面的第一密封树脂片12; 布置基本上覆盖背面板3和太阳能电池单元4之间的背面板3的整个表面的第二密封树脂片10; 在太阳能电池单元4之间的空间9处设置比太阳能电池单元4厚的密封树脂片18,19,以被第一密封树脂片12和第二密封树脂片10夹持; 在受光面侧的透明面板2和背面面板3之间排出空气; 并加热树脂5进行熔化,然后冷却以进行密封。 据此,当多个太阳能电池单元4被树脂5布置和密封时,可以防止发生太阳能电池单元4的破损。
    • 23. 发明申请
    • Linear guide apparatus
    • 直线导轨装置
    • US20070009188A1
    • 2007-01-11
    • US11521454
    • 2006-09-15
    • Xu WeiMasaru Akiyama
    • Xu WeiMasaru Akiyama
    • F16C29/06
    • F16C29/065
    • A linear guide apparatus is provided with two (upper and lower) tracks of rolling element race tracks formed on a guide rail and of rolling element race tracks formed on a slider main body so as to oppose the rolling element race tracks on the respective sides, i.e., four tracks of race tracks in total. A recess is provided below the lower rolling element race track on the slider main body and the end cap fixed to an end face of the slider main body is provided with a projection that engages with the recess so as to determine a position of the end cap.
    • 线性引导装置设置有形成在导轨上的滚动元件座圈和形成在滑块主体上的滚动体座圈的两个(上下)轨道,以便在相应侧面上与滚动体座圈相对, 即总共有四条赛道。 在滑块主体上的下滚动体轨道的下方设置有凹部,固定在滑块主体的端面上的端盖设置有与凹部卡合的突起,以便确定端盖的位置 。
    • 25. 发明授权
    • Separator, linear guide using the separator and linear motion apparatus
    • 分离器,使用分离器的直线导轨和直线运动装置
    • US07090400B2
    • 2006-08-15
    • US10774624
    • 2004-02-10
    • Soichiro KatoMasaru Akiyama
    • Soichiro KatoMasaru Akiyama
    • F16C29/06
    • F16C33/3706F16C29/065F16C33/6614F16C33/6651
    • A separator for use in a linear guide having a guide rail, a slider disposed on the guide rail so as to move relatively each other, and a plurality of roller-shaped rolling elements incorporated in the slider, the separator has a separator main body having, on both sides in a front and rear direction thereof, recessed surface sections which contact circumferential sections of the rolling elements; and at least a pair of arm sections provided parallel to each other on both sides of the separator main body while being oriented in the same direction, wherein a length of the arm section is equal or shorter than a distance between centers of two adjacent rolling elements with the separator main body sandwiched therebetween, with respect to a lateral direction of the separator main-body.
    • 一种用于具有导轨的线性引导件的分离器,设置在导轨上相对于彼此移动的滑块以及结合在滑动件​​中的多个滚子形滚动元件,分离器具有分离器主体, 在前后方向的两侧,与滚动体的圆周部分接触的凹面部; 以及至少一对臂部,其在分离器主体的两侧彼此平行设置,同时沿相同方向定向,其中臂部的长度等于或短于两个相邻滚动元件的中心之间的距离 分离器主体相对于隔板主体的横向方向夹在其间。
    • 26. 发明申请
    • Solar battery module manufacturing method
    • 太阳能电池模块制造方法
    • US20050274410A1
    • 2005-12-15
    • US10531313
    • 2003-10-20
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • H01L31/00
    • B32B17/10036B32B17/10091H01L31/048Y02E10/50
    • Provided is a process of producing a solar battery module 1 including plural solar battery cells 4 sealed by a resin 5 between a transparent panel 2 of the light reception surface side and a back face panel 3, which is characterized by arranging plural solar battery cells 4 at a prescribed interval and mutually connecting them to each other by a conductor 8; arranging a first sealing resin sheet 12 substantially covering the entire surface of the transparent panel 2 of the light reception surface side between the transparent panel 2 of the light reception surface side and the solar battery cells 4; arranging a second sealing resin sheet 10 substantially covering the entire surface of the back face panel 3 between the back face panel 3 and the solar battery cells 4; arranging sealing resin sheet pieces 18, 19 which are thicker than the solar battery cells 4 at a space 9 between the solar battery cells 4 so as to be sandwiched by the first sealing resin sheet 12 and the second sealing resin sheet 10; discharging air between the transparent panel 2 of the light reception surface side and the back face panel 3; and heating the resin 5 for melting and then cooling down it for sealing. According to this, when the plural solar battery cells 4 are arranged and sealed by the resin 5, breakage of the solar battery cells 4 can be prevented from occurring.
    • 本发明提供一种太阳能电池模块1的制造方法,该太阳能电池模块1包括由光接收表面侧的透明面板2和后面板3之间的由树脂5密封的多个太阳能电池单元4,其特征在于,设置多个太阳能电池单元4 以规定的间隔并且通过导体8将它们彼此连接; 布置基本上覆盖在光接收表面侧的透明面板2和太阳能电池单元4之间的光接收表面侧的透明面板2的整个表面的第一密封树脂片12; 布置基本上覆盖背面板3和太阳能电池单元4之间的背面板3的整个表面的第二密封树脂片10; 在太阳能电池单元4之间的空间9处设置比太阳能电池单元4厚的密封树脂片18,19,以被第一密封树脂片12和第二密封树脂片10夹持; 在受光面侧的透明面板2和背面面板3之间排出空气; 并加热树脂5进行熔化,然后冷却以进行密封。 据此,当多个太阳能电池单元4被树脂5布置和密封时,可以防止发生太阳能电池单元4的破损。
    • 29. 发明授权
    • Process for producing preform for metal matrix composite
    • 金属基复合材料预制件生产工艺
    • US5354528A
    • 1994-10-11
    • US811340
    • 1991-12-20
    • Masaru AkiyamaKenji Maniwa
    • Masaru AkiyamaKenji Maniwa
    • C04B35/80B32B15/01C04B35/81C04B41/87C22C47/00C22C47/08C22C49/00C30B29/62B28B1/26B28B1/52B29C43/02
    • C22C49/00B32B15/01C22C47/08
    • A process for producing a preform having a buffer layer for use in compositing a metal matrix composite where the buffer layer is provided at a boundary between a composited portion and a non-composited portion of a metallic material in the metal matrix composite. The process includes subjecting a first dispersion including a liquid medium and a ceramic whisker homogeneously dispersed in the liquid medium to filtration under pressure to form a primary processed preform having a volume fraction of 12 to 30%, depositing on the primary processed preform a second dispersion including a liquid medium and, homogeneously dispersed therein, a binder and at least one member selected from the group consisting of a short fiber and a ceramic whisker, and drying the primary processed preform to form a buffer layer having a volume fraction lower than the volume fraction of the primary processed preform and in a range from 2 to 10%.
    • 一种制备具有用于复合金属基质复合材料的缓冲层的预成型体的方法,其中缓冲层设置在金属基质复合材料中的金属材料的复合部分和非复合部分之间的边界处。 该方法包括使包含均匀分散在液体介质中的液体介质和陶瓷晶须的第一分散体在压力下进行过滤以形成体积分数为12至30%的初步处理的预成型体,在初步处理的预成型体上沉积第二分散体 包括液体介质,并均匀地分散在其中的粘合剂和选自短纤维和陶瓷晶须的至少一种,并干燥初级处理的预成型体以形成体积分数低于体积的缓冲层 初级处理的预制件的分数在2至10%的范围内。
    • 30. 发明申请
    • SOLAR BATTERY MODULE MANUFACTURING METHOD
    • 太阳能电池模块制造方法
    • US20110189807A1
    • 2011-08-04
    • US13026733
    • 2011-02-14
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • Takeshi YuukiMasaru AkiyamaKeizo Masada
    • H01L31/0203
    • B32B17/10036B32B17/10091H01L31/048Y02E10/50
    • Provided is a process of producing a solar battery module 1 including plural solar battery cells 4 sealed by a resin 5 between a transparent panel 2 of the light reception surface side and a back face panel 3, which is characterized by arranging plural solar battery cells 4 at a prescribed interval and mutually connecting them to each other by a conductor 8; arranging a first sealing resin sheet 12 substantially covering the entire surface of the transparent panel 2 of the light reception surface side between the transparent panel 2 of the light reception surface side and the solar battery cells 4; arranging a second sealing resin sheet 10 substantially covering the entire surface of the back face panel 3 between the back face panel 3 and the solar battery cells 4; arranging sealing resin sheet pieces 18, 19 which are thicker than the solar battery cells 4 at a space 9 between the solar battery cells 4 so as to be sandwiched by the first sealing resin sheet 12 and the second sealing resin sheet 10; discharging air between the transparent panel 2 of the light reception surface side and the back face panel 3; and heating the resin 5 for melting and then cooling down it for sealing. According to this, when the plural solar battery cells 4 are arranged and sealed by the resin 5, breakage of the solar battery cells 4 can be prevented from occurring.
    • 本发明提供一种太阳能电池模块1的制造方法,该太阳能电池模块1包括由光接收表面侧的透明面板2和后面板3之间的由树脂5密封的多个太阳能电池单元4,其特征在于,设置多个太阳能电池单元4 以规定的间隔并且通过导体8将它们彼此连接; 布置基本上覆盖在光接收表面侧的透明面板2和太阳能电池单元4之间的光接收表面侧的透明面板2的整个表面的第一密封树脂片12; 布置基本上覆盖背面板3和太阳能电池单元4之间的背面板3的整个表面的第二密封树脂片10; 在太阳能电池单元4之间的空间9处设置比太阳能电池单元4厚的密封树脂片18,19,以被第一密封树脂片12和第二密封树脂片10夹持; 在受光面侧的透明面板2和背面面板3之间排出空气; 并加热树脂5进行熔化,然后冷却以进行密封。 据此,当多个太阳能电池单元4被树脂5布置和密封时,可以防止发生太阳能电池单元4的破损。