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    • 21. 发明申请
    • IMPACT MITIGATING STRUCTURE OF CONTACT STRIP PIECE
    • 影响接触条纹结构的影响
    • US20130270050A1
    • 2013-10-17
    • US13876845
    • 2011-09-30
    • Haruo YamadaTakeshi KuritaFumio MizushimaShinji NakajimaHitoshi Satoh
    • Haruo YamadaTakeshi KuritaFumio MizushimaShinji NakajimaHitoshi Satoh
    • B60L5/20
    • B60L5/20B60L5/30B60L2200/26
    • A slider is slightly moved in a direction in which both side surfaces of the slider come in contact with inclined surfaces of impact mitigating parts of neighboring contact strip pieces. For this reason, the inclined surface of the impact mitigating part of the contact strip piece which the slider approaches is relatively downwardly slid with respect to one side surface of the slider. In addition, the inclined surface of the impact mitigating part of the contact strip piece from which the slider moves away is relatively upwardly slid with respect to the other side surface of the slider. As a result, since an impact generated between the contact strip piece and the slider is mitigated by the impact mitigating part without fitting the slider into a stepped section between the neighboring contact strip pieces, the slider is smoothly transferred from the one contact strip piece of the neighboring contact strip pieces to the other contact strip piece.
    • 滑块在滑块的两个侧表面与相邻的接触片片的冲击减轻部件的倾斜表面接触的方向上稍微移动。 为此,滑块接近的接触片片的冲击减轻部分的倾斜表面相对于滑块的一个侧表面相对地下滑动。 此外,滑块从其移开的接触片件的冲击减轻部分的倾斜表面相对于滑块的另一侧表面相对地向上滑动。 结果,由于在接触片片和滑块之间产生的冲击被冲击减轻部分减轻而不将滑动件嵌入相邻的接片片之间的阶梯部分,所以滑块从一个接触片片 相邻的接触片片连接到另一个接触片片。
    • 23. 发明授权
    • Self-emission panel and method of manufacturing the same
    • 自排放面板及其制造方法
    • US08029684B2
    • 2011-10-04
    • US12392764
    • 2009-02-25
    • Shinji NakajimaYusuke NakajimaToshinao Yuki
    • Shinji NakajimaYusuke NakajimaToshinao Yuki
    • B29D11/00
    • H01L51/5203H01L27/3246H01L27/3283H01L51/56
    • A self-emission panel and a method of manufacturing a self-emission panel which can prevent emission failures from occurring due to various factors, thereby achieving a self-emission panel that is free from emission failures. The self-emission panel is manufactured by forming a first conductive layer on a substrate directly or via other layers, forming a deposition layer including a luminescent layer on the first conductive layer, and forming a second conductive layer on the deposition layer. This manufacturing method includes: a first step of forming a sectioning layer for sectioning an opening for making a emission area on the first conductive layer after the formation of the first conductive layer; a second step of applying surface treatment to at least the surface of the first conductive layer inside the opening; and a third step of depositing a deposition layer on the first conductive layer given surface treatment in the second step.
    • 自发射面板和​​自发射面板的制造方法,其可以防止由于各种因素而发生发射故障,从而实现无发光故障的自发光面板。 通过在基板上直接或经由其他层形成第一导电层,在第一导电层上形成包括发光层的沉积层,并在沉积层上形成第二导电层,制造自发光面板。 该制造方法包括:第一步骤,在形成第一导电层之后,形成用于在第一导电层上形成用于形成发光区域的开口的切片层; 将表面处理施加到开口内的至少第一导电层的表面的第二步骤; 以及在第二步骤中给予表面处理的第一导电层上沉积沉积层的第三步骤。
    • 25. 发明授权
    • Self-emission panel and method of manufacturing same
    • 自排放面板及其制造方法
    • US07535164B2
    • 2009-05-19
    • US11485471
    • 2006-07-13
    • Shinji NakajimaYusuke NakajimaToshinao Yuki
    • Shinji NakajimaYusuke NakajimaToshinao Yuki
    • H01L51/54H01L51/40H01L51/56H01J1/62
    • H01L51/5203H01L27/3246H01L27/3283H01L51/56
    • A self-emission panel and a method of manufacturing a self-emission panel which can prevent emission failures from occurring due to various factors, thereby achieving a self-emission panel that is free from emission failures. The self-emission panel is manufactured by forming a first conductive layer on a substrate directly or via other layers, forming a deposition layer including a luminescent layer on the first conductive layer, and forming a second conductive layer on the deposition layer. This manufacturing method includes: a first step of forming a sectioning layer for sectioning an opening for making a emission area on the first conductive layer after the formation of the first conductive layer; a second step of applying surface treatment to at least the surface of the first conductive layer inside the opening; and a third step of depositing a deposition layer on the first conductive layer given surface treatment in the second step.
    • 自发射面板和​​自发射面板的制造方法,其可以防止由于各种因素而发生发射故障,从而实现无发光故障的自发光面板。 通过在基板上直接或经由其他层形成第一导电层,在第一导电层上形成包括发光层的沉积层,并在沉积层上形成第二导电层,制造自发光面板。 该制造方法包括:第一步骤,在形成第一导电层之后,形成用于在第一导电层上形成用于形成发光区域的开口的切片层; 将表面处理施加到开口内的至少第一导电层的表面的第二步骤; 以及在第二步骤中给予表面处理的第一导电层上沉积沉积层的第三步骤。
    • 28. 发明授权
    • Electro-optical liquid-crystal display
    • 电光液晶显示
    • US06602562B2
    • 2003-08-05
    • US09560136
    • 2000-04-28
    • Shinji NakajimaHideo IchinoseAkiko TakashimaYasushi Sugiyama
    • Shinji NakajimaHideo IchinoseAkiko TakashimaYasushi Sugiyama
    • C09K1930
    • C09K19/46G02F1/134363G02F2001/13706Y10T428/10
    • The invention generally relates to an electro-optical liquid-crystal display having a re-alignment layer, for re-aligning the liquid crystals, whose field has a component parallel to the liquid-crystal layer which is desirable for the re-alignment, including a liquid-crystalline medium of positive dielectric anisotropy, where the medium can include one or more compounds of the formula I and one or more compounds selected from the group of compounds of the formulae II and III in which R1, R2 and R3 are each, independent of one another, alkyl or alkoxy having 1 to 7 carbon atoms or alkenyl, alkenyloxy or alkoxyalkyl having 2 to 7 carbon atoms, Y11, Y12, Y21, Y22, Y31 and Y32 are each, independent of one another, H or F, are each, independent of one another,  and Q—X is F, Cl, —OCF2H or —OCF3.
    • 本发明一般涉及一种具有重新对准层的电光液晶显示器,用于重新对准液晶,其场具有与重新对准所需的液晶层平行的分量,包括 具有正介电各向异性的液晶介质,其中介质可包括一种或多种式I化合物和一种或多种选自式II和III化合物的化合物,其中R 1,R 2和R 3各自独立地为 另一方面,具有1至7个碳原子的烷基或烷氧基或具有2至7个碳原子的链烯基,烯氧基或烷氧基烷基,Y11,Y12,Y21,Y22,Y31和Y32各自独立地为H或F, 彼此独立,和
    • 29. 发明授权
    • Storage box with openable lid for a motorcycle
    • 具有可动作的摩托车的储物盒
    • US5127560A
    • 1992-07-07
    • US644263
    • 1991-01-22
    • Toshio MiyamotoMitsuya TachibanaShinji NakajimaMunenori Nagasaka
    • Toshio MiyamotoMitsuya TachibanaShinji NakajimaMunenori Nagasaka
    • B62J35/00B62K19/46
    • B62J35/00B62K19/46
    • A storage box equipment of a motorcycle is disposed at substantially an upper central portion of a body frame of the motorcycle and comprises a storage box body having an upper portion defining an opening and having a rear portion supported to the body frame to be openable by a first hinge mechanism, a lid member for opening and closing the opening of the storage box body by a second hinge mechanism and a lock mechanism mounted to the storage box body for locking the lid member. The lock mechanism includes a pair of strikers which are engaged with a pair of hook disposed on the lid member and includes a solenoid which is attached to a base plate secured to the storage box body. The second hinge member is disposed at a front end portion of the storage box body and comprises a lever and a spring members. The lid member may be reinforced with a reinforcing member disposed on the side of the lid member. A seal member is provided for the storage box body and comprises an elastic member deformable in a sealing manner together with the lid member when the same is closed.
    • 摩托车的储物箱设备设置在摩托车的主体框架的基本上的中央部分,并且包括储存箱体,其具有限定开口的上部,并且具有支撑在主体框架上的后部,以使其可打开 第一铰链机构,用于通过第二铰链机构打开和关闭储物箱主体的开口的盖构件和安装到存储箱体上用于锁定盖构件的锁定机构。 锁定机构包括与设置在盖构件上的一对钩接合的一对撞击器,并且包括螺线管,螺线管连接到固定到存储箱体的基板。 第二铰链构件设置在储物箱主体的前端部,并且包括杠杆和弹簧构件。 盖构件可以用设置在盖构件一侧的加强构件来加强。 密封构件设置在储藏箱体上,并且包括弹性构件,该弹性构件在封闭时可与密封构件一起以密封方式变形。