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    • 81. 发明授权
    • Rare earth magnetic powder, its fabrication method, and resin bonded
magnet
    • 稀土磁粉,其制造方法和树脂粘结磁铁
    • US5643491A
    • 1997-07-01
    • US290819
    • 1994-08-17
    • Yoshinobu HonkuraHironari MitaraiChisato MishimaYoshikazu AmahiroHiroshi MatsuokaYoshinobu Sugiura
    • Yoshinobu HonkuraHironari MitaraiChisato MishimaYoshikazu AmahiroHiroshi MatsuokaYoshinobu Sugiura
    • B22F9/02H01F1/057
    • H01F1/0573B22F9/023
    • In a method of fabricating an R--Fe--B based alloy magnetic powder excellent in magnetic anisotropy, and an R--Fe--B--Co based alloy magnetic powder excellent in magnetic anisotropy and temperature characteristic an R--Fe--B based alloy is subjected to hydrogenation under pressurized hydrogen gas and to dehydrogenation. Excellent magnetic properties and stable with less variation in range can be attained in an industrial fabrication by using a plurality of divided reaction tubes. Moreover, the R--Fe--B--Co based alloy magnetic powder is constituted of an aggregate structure including, as a main phase, a recrystallized structure of an extremely fine R.sub.2 Fe.sub.14 B type phase with an average grain size of 0.05 to 3 .mu.m, and has excellent magnetic anisotropy and temperature characteristic. Additionally, a resin bonded magnet excellent in magnetic properties and temperature characteristic is fabricated by injection molding or compression molding using the above R--Fe--B--Co based alloy magnetic powder.
    • PCT No.PCT / JP93 / 01863 Sec。 371日期:1994年8月17日 102(e)日期1994年8月17日PCT提交1993年12月24日PCT公布。 第WO94 / 15345号公报 日本时间1994年7月7日在制造磁各向异性优异的R-Fe-B系合金磁粉的制造方法中,R-Fe-B系合金磁铁具有优异的磁各向异性和温度特性的R-Fe-B-Co系合金磁粉, B基合金在加压氢气下进行氢化并脱氢。 通过使用多个分开的反应管,可以在工业制造中获得优异的磁性和稳定性,同时具有较小的范围变化。 此外,R-Fe-B-Co系合金磁粉由具有平均粒径为0.05〜3μm的极细的R2Fe14B型相的再结晶组织作为主相的集合体构成, 具有优异的磁各向异性和温度特性。 另外,通过使用上述R-Fe-B-Co系合金磁粉的注射成型或压缩成型制造磁特性和温度特性优异的树脂粘结磁体。
    • 82. 发明授权
    • Denture attachment
    • 义齿附件
    • US08591233B2
    • 2013-11-26
    • US13642303
    • 2011-04-15
    • Kazuo AraiYoshinobu HonkuraYasuhiro Takeuchi
    • Kazuo AraiYoshinobu HonkuraYasuhiro Takeuchi
    • A61C13/235
    • A61C13/235
    • A magnetic device includes a cylindrical portion and a flange portion. The cylindrical portion is mounted with a cylindrical shaped flexible sleeve. The sleeve is axially longer than the cylindrical portion and includes an outer peripheral concavo-convex portion. When one end of the sleeve is abutted on a flange portion, the other end of the sleeve is projected above an attractive surface to form a keeper housing recess. The sleeve is relatively moved in an axial direction of the magnetic device to be inserted into and removed from a top end of the cylindrical portion. The magnetic device is used under condition the sleeve is fitted, an outer side surface of the magnetic device including the outer peripheral concavo-convex portion of the sleeve and the flange portion abutted on the one end of the sleeve is embedded in a denture base, and the keeper housing recess is exposed.
    • 磁性装置包括圆柱形部分和凸缘部分。 圆柱形部分安装有圆柱形柔性套筒。 套筒的轴向长于圆柱形部分,并且包括外周凹凸部分。 当套筒的一端抵靠在凸缘部分上时,套筒的另一端突出在吸引表面上方以形成保持器容纳凹部。 套筒在磁性装置的轴向方向上相对移动以被插入到圆柱形部分的顶端并从圆柱形部分的顶端移除。 在装配套筒的条件下使用磁性装置,包括套筒的外周凹凸部分的磁性装置的外侧表面和与套筒的一端邻接的凸缘部分嵌入义齿底座中, 并且保持器壳体凹部暴露。
    • 83. 发明申请
    • DENTURE ATTACHMENT
    • 牙齿附着
    • US20130034831A1
    • 2013-02-07
    • US13642303
    • 2011-04-15
    • Kazuo AraiYoshinobu HonkuraYasuhiro Takeuchi
    • Kazuo AraiYoshinobu HonkuraYasuhiro Takeuchi
    • A61C13/235A61C8/00
    • A61C13/235
    • A magnetic device includes a cylindrical portion and a flange portion. The cylindrical portion is mounted with a cylindrical shaped flexible sleeve. The sleeve is axially longer than the cylindrical portion and includes an outer peripheral concavo-convex portion. When one end of the sleeve is abutted on a flange portion, the other end of the sleeve is projected above an attractive surface to form a keeper housing recess. The sleeve is relatively moved in an axial direction of the magnetic device to be inserted into and removed from a top end of the cylindrical portion. The magnetic device is used under condition the sleeve is fitted, an outer side surface of the magnetic device including the outer peripheral concavo-convex portion of the sleeve and the flange portion abutted on the one end of the sleeve is embedded in a denture base, and the keeper housing recess is exposed.
    • 磁性装置包括圆柱形部分和凸缘部分。 圆柱形部分安装有圆柱形柔性套筒。 套筒的轴向长于圆柱形部分,并且包括外周凹凸部分。 当套筒的一端抵靠在凸缘部分上时,套筒的另一端突出在吸引表面上方以形成保持器容纳凹部。 套筒在磁性装置的轴向方向上相对移动以被插入到圆柱形部分的顶端并从圆柱形部分的顶端移除。 在装配套筒的条件下使用磁性装置,包括套筒的外周凹凸部分的磁性装置的外侧表面和与套筒的一端邻接的凸缘部分嵌入义齿底座中, 并且保持器壳体凹部暴露。
    • 86. 发明授权
    • Magnet with electromagnetic coil/impedance/sensor element
    • 具有电磁线圈/阻抗/传感器元件的磁铁
    • US07224161B2
    • 2007-05-29
    • US10501329
    • 2003-02-19
    • Yoshinobu HonkuraMichiharu YamamotoMasaki MoriYoshiaki Koutani
    • Yoshinobu HonkuraMichiharu YamamotoMasaki MoriYoshiaki Koutani
    • G01R33/02
    • G01R33/02
    • A magneto impedance sensor element with electromagnetic coil comprised of: a terminal board on which an extended groove which extends in one direction has been formed; an electromagnetic coil, made with one part of the coil formed in a spiral shape inside the extended groove in the terminal board, and joined to each tip of that coil the other part of the coil placed across the top of the groove; insulating material placed in the extended groove on the terminal board; and a magnetic sensitive body inserted within the insulating material, to which either high frequency or pulse electic current is applied. When either high frequency or pulse electrical current is applied to the magnetic sensitive body, voltage is output from the above electromagnetic coil in response to the intensity of the external magnetic field which is generated in the electromagnetic coil.
    • 一种具有电磁线圈的磁阻抗传感器元件,包括:端子板,其上形成有沿一个方向延伸的延伸槽; 由线圈的一部分制成的电磁线圈,其在端子板的延伸槽内形成为螺旋形状,并且连接到线圈的每个尖端,线圈的另一部分横跨槽的顶部; 绝缘材料放置在端子板上的延伸槽中; 以及插入绝缘材料内的磁敏体,施加高频或脉冲电流。 当将高频或脉冲电流施加到敏感体时,响应于在电磁线圈中产生的外部磁场的强度,从上述电磁线圈输出电压。
    • 87. 发明申请
    • Denture attachment, denture and process for producing the same
    • 义齿附件,义齿及其制造方法
    • US20060160048A1
    • 2006-07-20
    • US10546059
    • 2004-09-03
    • Yoshinobu HonkuraKazuo Arai
    • Yoshinobu HonkuraKazuo Arai
    • A61C13/235
    • A61C13/235
    • A dental attachment is embedded in a denture base so as to attach to a keeper made of a soft magnetic material built in a tooth root by magnetic attractive force. The dental attachment includes an attachment main body which has a magnetic body delivering magnetic attractive force and a cap which covers a head portion located on the opposite side of an attractive surface to attach the keeper of the attachment main body. The cap, made of a non-magnetic material, is installed in the attachment main body to be configured to move between a contacting position which contacts with the head portion and an extended position which is spaced from the head portion by a distance.
    • 牙科附件被嵌入义齿底座中,以便通过磁力吸引力附接到由内置在牙根中的软磁性材料制成的保持器。 牙科附件包括具有提供磁吸引力的磁体的附接主体和覆盖位于吸引表面的相对侧上的头部的盖,以附接附件主体的保持器。 由非磁性材料制成的帽被安装在附件主体中,以构造成在与头部接触的接触位置与与头部间隔一定距离的延伸位置之间移动。
    • 89. 发明申请
    • Process for producing anisotropic magnet powder
    • 生产各向异性磁铁粉的工艺
    • US20060048855A1
    • 2006-03-09
    • US10529547
    • 2004-01-15
    • Yoshinobu HonkuraNorihiko HamadaChisato Mishima
    • Yoshinobu HonkuraNorihiko HamadaChisato Mishima
    • H01F1/06
    • H01F1/0573H01F41/0293
    • A method for manufacturing an anisotropic magnet powder includes a high-temperature hydrogenation process of holding an RFeB-based alloy containing rare earth elements (R), B and Fe as main ingredients in a treating atmosphere under a first treating pressure (P1) of which a hydrogen partial pressure ranges from 10 to 100 kPa and at a first treating temperature (T1) which ranges from 953 to 1133 K, a structure stabilization process of holding the RFeB-based alloy after the high-temperature hydrogenation process under a second treating pressure (P2) of which a hydrogen partial pressure is 10 or more and at a second treating temperature (T2) which ranges from 1033 to 1213 K such that the condition T2>T1 or P2>P1 is satisfied, a controlled evacuation process of holding the RFeB-based alloy after the structure stabilization process in a treating atmosphere under a third treating pressure (P3) of which a hydrogen partial pressure ranges from 0.1 to 10 kPa and at a third treating temperature (T3) which ranges from 1033 to 1213 K, and a forced evacuation process of removing residual hydrogen (H) from the RFeB-based alloy after the controlled evacuation process. With this method, the magnetic properties of the anisotropic magnet powder can be improved.
    • 制造各向异性磁体粉末的方法包括:在处理气氛中,在第一处理压力(P 1)下,将含有稀土元素(R),B和Fe作为主要成分的RFeB系合金保持在 氢分压为10〜100kPa,第一处理温度(T 1)为953〜1133K,第二次为高温氢化处理后的RFeB系合金的结构稳定化工序 处理压力(P 2),其中氢分压为10以上,处理温度(T 2)为1033〜1213K,使得条件T 2> T 1或P 2> P 1满足 在处于分解压力为0.1〜10kPa的第三处理压力(P 3)和第三处理压力(P 3)的处理气氛中,在结构稳定化处理之后保持RFeB系合金的受控抽空处理 温度(T 3)为1033〜1213K,在受控排气处理之后,从RFeB系合金除去残留氢(H)的强制抽空处理。 通过该方法,能够提高各向异性磁铁粉末的磁特性。