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    • 1. 发明申请
    • DENTURE ATTACHMENT
    • 牙齿附着
    • WO1996019948A1
    • 1996-07-04
    • PCT/JP1994002228
    • 1994-12-27
    • AICHI STEEL WORKS, LTD.HONKURA, YoshinobuYOKOYAMA, TakashiFUJII, Hideki
    • AICHI STEEL WORKS, LTD.
    • A61C08/00
    • A61C8/0081A61C13/235
    • The invention relates to a denture attachment implanted on a dental plate so as to face a keeper (103) formed of a soft magnetic body and adapted to be attracted to the keeper (103) by a magnetic attracting force, said denture attachment comprising at least three plate-shaped yokes formed of a soft magnetic body, and two plate-shaped magnets with N-S poles extending in a thicknesswise direction. In this example, the denture attachment comprises a central yoke (10), a first magnet (1), a second magnet (2), a first lateral yoke (11) and a second lateral yoke (12). The first magnet (1) and second magnet (2), which are positioned on both sides of the central yoke (10), have a feature in that the same poles face each other. So, separate magnetic loops are formed for the respective magnets. With this novel arrangement, the denture attachment can display a great magnetic attracting force double that of a conventional one while presenting compactness required for denture attachments. Further, if both magnets (1, 2) are covered as a whole by covering those surfaces of both magnets (1, 2), which abut against the keeper (103), with spacers (21, 22) formed of non-magnetic bodies and covering those surfaces of both magnets (1, 2), which do not face the keeper (103), with a casing (3) similarly formed of a non-magnetic body, the denture attachment can be improved in corrosion resistance and abrasion resistance.
    • 本发明涉及一种植入牙板上的义齿附着物,以面对由软磁体形成的保持器(103),并且适于通过磁吸引力被吸引到保持器(103)上,所述假牙附件至少包括 由软磁体形成的三个板状轭铁和具有沿着厚度方向延伸的NS极的两个板状磁体。 在该示例中,义齿附件包括中心轭(10),第一磁体(1),第二磁体(2),第一横向磁轭(11)和第二侧磁轭(12)。 第一磁体(1)和第二磁体(2)位于中心磁轭(10)的两侧,具有这样的特征:相同磁极彼此面对。 因此,为相应的磁体形成单独的磁环。 通过这种新颖的布置,义齿附件可以显示出与常规的相同的极大的吸引力,同时具有义齿附着所需的紧凑性。 此外,如果通过覆盖由非磁性体形成的间隔物(21,22)覆盖与保持器(103)抵接的两个磁体(1,2)的那些表面,则两个磁体(1,2)整体被覆盖, 并且通过类似地由非磁性体形成的壳体(3)覆盖不面对保持器(103)的两个磁体(1,2)的表面,可以提高耐腐蚀性和耐磨性 。
    • 3. 发明申请
    • DENTURE ATTACHMENT
    • 牙齿附着
    • WO1996019951A1
    • 1996-07-04
    • PCT/JP1995002685
    • 1995-12-26
    • AICHI STEEL WORKS, LTD.HONKURA, YoshinobuYOKOYAMA, TakashiFUJII, HidekiTANAKA, Yoshinobu
    • AICHI STEEL WORKS, LTD.
    • A61C13/235
    • A61C8/0081A61C13/235
    • A denture attachment is planted in a denture base in such a manner as to oppose a keeper (103) made of a soft magnetic substance, and clamped by the keeper (103) through magnetic attraction. The attachment comprises at least plate-like three yokes made of a soft magnetic substance and at least two plate-like magnets the N and S poles are oriented in the direction of the thickness of the attachment. In the drawing, the attachment comprises a center yoke (10), a first magnet (1), a second magnet (2), a first side yoke (11) and a second side yoke (12). The magnetic poles of the first and second magnet (1, 2) on both sides of the center yoke (10) are characteristically opposed to one another. Therefore, an independent magnetic loop is formed for each magnet. Because of this novel structure, the magnetic force is about twice stronger than conventional while the denture has a compactness required generally. Spacers (21 and 22) made of a non-magnetic substance may cover the surfaces of both magnets (1 and 2) in contact with the keeper (103), and a casing (3) made of a non-magnetic substance may cover the entire portion other than the surfaces in contact with the keeper so as to improve both corrosion resistance and wear resistance.
    • 义齿附件以与软磁性物质制成的保持器(103)相对的方式种植在假牙基座中,并由保持器(103)通过磁吸引力夹持。 该附件至少包括由软磁性物质制成的板状三个轭和至少两个板状磁体,N和S极在附件的厚度方向上定向。 在附图中,附件包括中心磁轭(10),第一磁体(1),第二磁体(2),第一侧磁轭(11)和第二侧磁轭(12)。 中心磁轭(10)两侧的第一和第二磁体(1,2)的磁极的特征是彼此相对。 因此,为每个磁体形成独立的磁环。 由于这种新颖的结构,磁力比常规磁力强大约两倍,而义齿具有通常所要求的紧凑性。 由非磁性物质制成的间隔物(21和22)可以覆盖与保持器(103)接触的两个磁体(1和2)的表面,并且由非磁性物质制成的壳体(3)可以覆盖 与保持器接触的表面以外的整个部分,以便提高耐腐蚀性和耐磨性。
    • 4. 发明申请
    • ATTACHMENT FOR FALSE TOOTH
    • 附着牙膏
    • WO1993025159A1
    • 1993-12-23
    • PCT/JP1992000778
    • 1992-06-17
    • AICHI STEEL WORKS, LTD.HONKURA, YoshinobuTANAKA, YoshinobuARAI, Kazuo
    • AICHI STEEL WORKS, LTD.
    • A61C08/00
    • A61C13/235
    • The main body (2) of an attachment according to the present invention comprises: a pair of yokes (21, 22) made of a corrosion-resistant soft magnetic alloy, which are provided on the side of a keeper (1) with a spacer (23) interposed therebetween; magnets (24, 25) provided for forming a longitudinal magnetic field with respect to the keeper (1), with an N pole opposed to one (21) of the yokes and an S pole opposed to the other (22) of the yokes; and a cap (27) crowned, for integrally surrounding the magnets (24, 25), the pair of yokes (21, 22) and the spacer (23) except for on the keeper's side. With the formation of the magnetic field, a high attracting force is generated between the yokes (21, 22) and the keeper (1). With the provision of the magnets (24, 25) as described above, high attracting force is secured, and, in addition, it becomes possible to shorten the main body (2) of the attachment in the direction of height, thus making the attachment more compact.
    • 根据本发明的附件的主体(2)包括:由耐腐蚀软磁合金制成的一对轭(21,22),其设置在具有间隔件(1)的保持器(1)侧, (23); 用于相对于保持器(1)形成纵向磁场的磁体(24,25),与磁轭的一个(21)相对的N极和与磁轭的另一个(22)相对的S极; 和用于整体地围绕磁体(24,25),一对磁轭(21,22)和间隔件(23)的盖子(27)的顶盖,除了保持器的一侧。 随着磁场的形成,在轭(21,22)和保持器(1)之间产生高的吸引力。 通过设置如上所述的磁体(24,25),确保了高的吸引力,并且另外,可以使附件的主体(2)沿高度方向缩短,从而使附件 更紧凑
    • 5. 发明申请
    • RARE EARTH MAGNETIC POWDER, METHOD OF ITS MANUFACTURE, AND RESIN-BONDED MAGNET
    • 稀土磁粉,其制造方法和树脂粘结磁铁
    • WO1994015345A1
    • 1994-07-07
    • PCT/JP1993001863
    • 1993-12-24
    • AICHI STEEL WORKS, LTD.HONKURA, YoshinobuMITARAI, HironariMISHIMA, ChisatoAMAHIRO, YoshikazuMATSUOKA, HiroshiSUGIURA, Yoshinobu
    • AICHI STEEL WORKS, LTD.
    • H01F01/06
    • H01F1/0573B22F9/023
    • Relating to a method of manufacturing a magnetic powder of an R-Fe-B alloy having an excellent magnetic anisotropy by causing the alloy to absorb hydrogen and then dehydrogenizing the alloy and a method of manufacturing a magnetic powder of an R-Fe-B-Co alloy having excellent magnetic anisotropy and temperature characteristics, there is provided a method of manufacturing a stabilized magnetic alloy powder having excellent magnetic properties and a small variation of the magnetic properties in industrial production adopting a hydrogen absorption process under pressure and using a plurality of slit type reaction tubes. There is further provided an R-Fe-B-Co alloy magnetic powder having excellent magnetic anisotropy and temperature characteristics. The structure of the powder is a crystalline texture whose main phase is a recrystallization structure of fine R2Fe14B phase of a mean particle diameter of 0.05 - 3 mu m. Moreover, a resin-bonded magnet having excellent magnetic properties and temperature characteristics is provided by injection molding or compression molding by use of the R-Fe-B-Co alloy magnetic powder.
    • 关于通过使合金吸氢并使合金脱氢而制造具有优异的磁各向异性的R-Fe-B合金的磁粉的方法,以及制造R-Fe-B合金磁性粉末的方法, Co合金具有优异的磁各向异性和温度特性,提供了一种制造稳定的磁性合金粉末的方法,该稳定的磁性合金粉末在工业生产中在压力下采用氢吸收过程并且使用多个狭缝具有优异的磁性能和小的磁性能的变化 型反应管。 还提供了具有优异的磁各向异性和温度特性的R-Fe-B-Co合金磁粉。 粉末的结构是晶体结构,其主相是平均粒径为0.05-3μm的细小的R2Fe14B相的再结晶结构。 此外,通过使用R-Fe-B-Co合金磁粉的注射成型或压缩成型,提供具有优异的磁特性和温度特性的树脂粘结磁体。