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    • 1. 发明授权
    • Gas sensor element, method for manufacturing the same, and gas sensor
    • 气体传感器元件及其制造方法以及气体传感器
    • US08080143B2
    • 2011-12-20
    • US11392574
    • 2006-03-30
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • G01N27/407G01N27/409
    • G01N27/4071Y10T156/107
    • A method for manufacturing a gas sensor element (300), which includes a plate-like second solid electrolyte member (109), a fourth electrode (110) formed on the second solid electrolyte member (109), and a protection layer (111) including a reinforcement member (112) having an insertion hole (112a), and a porous electrode protection member (113a) provided in the insertion hole (112) and adapted to protect the fourth electrode (110) from becoming poisoned. The method includes a pressing step of, after disposing a green electrode protection member (113a) in the insertion hole (112a) of a green reinforcement member (112), pressing at least one of the green reinforcement member (112) and the green electrode protection member (113a) so as to form a green protection layer (111); a laminate-forming step of arranging the green protection layer (111) and a green solid electrolyte member (113a) in layers so as to form a laminate which will become the gas sensor element (300) after being fired; and a firing step of firing the laminate.
    • 一种制造气体传感器元件(300)的方法,其包括板状第二固体电解质部件(109),形成在第二固体电解质部件(109)上的第四电极(110)和保护层(111) 包括具有插入孔(112a)的加强构件(112)和设置在插入孔(112)中并适于保护第四电极(110)不被中毒的多孔电极保护构件(113a)。 该方法包括按压步骤,在绿色加强部件(112)的插入孔(112a)中设置绿色电极保护部件(113a)之后,按压至少一个绿色加强部件(112)和绿色电极 保护构件(113a),以形成绿色保护层(111); 层叠形成步骤,将绿色保护层(111)和绿色固体电解质构件(113a)分层布置,以形成在烧成之后成为气体传感器元件(300)的层压体; 以及焙烧步骤。
    • 2. 发明申请
    • Gas sensor element, method for manufacturing the same, and gas sensor
    • 气体传感器元件及其制造方法以及气体传感器
    • US20060219554A1
    • 2006-10-05
    • US11392574
    • 2006-03-30
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • G01N27/28
    • G01N27/4071Y10T156/107
    • A method for manufacturing a gas sensor element (300), which includes a plate-like second solid electrolyte member (109), a fourth electrode (110) formed on the second solid electrolyte member (109), and a protection layer (111) including a reinforcement member (112) having an insertion hole (112a), and a porous electrode protection member (113a) provided in the insertion hole (112) and adapted to protect the fourth electrode (110) from becoming poisoned. The method includes a pressing step of, after disposing a green electrode protection member (113a) in the insertion hole (112a) of a green reinforcement member (112), pressing at least one of the green reinforcement member (112) and the green electrode protection member (113a) so as to form a green protection layer (111); a laminate-forming step of arranging the green protection layer (111) and a green solid electrolyte member (113a) in layers so as to form a laminate which will become the gas sensor element (300) after being fired; and a firing step of firing the laminate.
    • 一种制造气体传感器元件(300)的方法,其包括板状第二固体电解质部件(109),形成在第二固体电解质部件(109)上的第四电极(110)和保护层(111) 包括具有插入孔(112a)的加强构件(112)和设置在所述插入孔(112)中并适于保护所述第四电极(110)不被中毒的多孔电极保护构件(113a)。 该方法包括按压步骤,在绿色加强部件(112)的插入孔(112a)中设置绿色电极保护部件(113a)之后,按压至少一个绿色加强部件(112)和 绿色电极保护构件(113a),以形成绿色保护层(111); 层叠形成工序,将绿色保护层(111)和绿色固体电解质构件(113a)分层配置,形成在烧成后成为气体传感元件(300)的层压体; 以及焙烧步骤。
    • 8. 发明授权
    • Cash depository
    • 现金存放处
    • US07191937B2
    • 2007-03-20
    • US11046778
    • 2005-02-01
    • Hayato MinamishinAtsunori KimuraAkinori Kojima
    • Hayato MinamishinAtsunori KimuraAkinori Kojima
    • G06Q40/00G07D11/00
    • G07D7/162G07D7/17G07D11/0018G07D11/0036G07F19/202
    • A sensor for executing simple discrimination is provided on a transfer path immediately after a cash inlet of a cash depository. The sensor detects a position of a bill in a transfer direction, a width of the bill in a direction orthogonal to the transfer direction, thereby outputting detection results to a controller. The controller calculates a degree of a slant of the bill and the width of the bill, thereby determining whether or not those values are in excess of reference values. If the controller determines that the degree of the slant and the width of the bill are in excess of the reference values, the transfer direction of the transfer path is changed over to coincide with a direction opposite to a normal direction by reverse-rotating a motor.
    • 用于执行简单辨别的传感器被提供在现金存放处的现金入口之后的传送路径上。 传感器检测纸币在传送方向上的位置,纸币在与传送方向正交的方向上的宽度,从而将检测结果输出到控制器。 控制器计算纸币的倾斜度和纸币的宽度,从而确定这些值是否超过参考值。 如果控制器确定倾斜程度和纸币的宽度超过参考值,则通过反转电机将传送路径的传送方向转换为与正常方向相反的方向 。
    • 10. 发明授权
    • Hard magnetic alloy, hard magnetic alloy compact, and method for producing the same
    • 硬磁合金,硬磁合金,其制造方法
    • US06171410B2
    • 2001-01-09
    • US09026853
    • 1998-02-20
    • Akinori KojimaAkihiro MakinoTakashi HatanaiYutaka YamamotoAkihisa Inoue
    • Akinori KojimaAkihiro MakinoTakashi HatanaiYutaka YamamotoAkihisa Inoue
    • H01F104
    • B82Y25/00H01F1/0579
    • A hard magnetic alloy in accordance with the present invention is composed of at least element T selected from the group consisting of Fe, Co and Ni, at least one rare earth element R, and boron (B). The hard magnetic alloy has an absolute value of the temperature coefficient of magnetization of 0.15%/° C. or less and a coercive force of 1 kOe, when being used in a shape causing a permeance factor of 2 or more. A hard magnetic alloy compact in accordance with the present invention has a texture, in which at least a part or all of the texture comprises an amorphous phase or fine crystalline phase having an average crystal grain size of 100 nm or less, is subjected to crystallization or grain growth under stress, such that a mixed phase composed of a soft magnetic or semi-hard magnetic phase and a hard magnetic phase is formed in the texture, and anisotropy is imparted to the crystal axis of the hard magnetic phase.
    • 根据本发明的硬磁合金由至少选自Fe,Co和Ni,至少一种稀土元素R和硼(B)的元素T组成。 当使用导磁系数为2以上的形状时,硬磁合金的磁化温度的绝对值为0.15%/℃以下,矫顽力为1kOe。 根据本发明的硬磁合金压块具有其中至少部分或全部组织包含平均晶粒尺寸为100nm以下的非晶相或细结晶相的织构,进行结晶化 或在应力下的晶粒生长,使得在织构中形成由软磁性或半硬磁性相和硬磁性相组成的混合相,并且赋予硬磁相的晶轴各向异性。