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    • 1. 发明授权
    • Brake fluid control device
    • 制动液控制装置
    • US07198334B2
    • 2007-04-03
    • US10947140
    • 2004-09-23
    • Yoshitada Katayama
    • Yoshitada Katayama
    • B60T8/36
    • B60T8/363B60T8/368
    • An engagement portion with a shape recessed in a radial direction of a sleeve is formed on an outer peripheral surface of the sleeve so as to circuit the outer periphery of the sleeve. The engagement portion is also disposed inside an assembly hole of a housing. Caulking of an area surrounding an opening of the assembly hole joins the engagement portion and a deformed portion of the housing. Parts such as sealing members and bushings become unnecessary, because the assembly hole and the sleeve are sealed by contacting surfaces of the deformed portion and the engagement portion. Furthermore, fixing of the sleeve and the housing, as well as the formation of a sealed portion between the assembly hole and the sleeve assures the realization of a one-time caulking process.
    • 在套筒的外周面上形成具有在套筒的径向凹陷的形状的接合部,以便使套筒的外周线回路。 接合部也设置在壳体的组装孔的内部。 围绕组装孔的开口的区域的挤压将接合部分和壳体的变形部分结合。 因为组装孔和套筒通过接触变形部分和接合部分的表面而被密封,所以不需要诸如密封件和衬套的零件。 此外,套筒和壳体的固定以及在组装孔和套筒之间形成密封部分确保了一次性铆接过程的实现。
    • 4. 发明申请
    • Brake fluid control device
    • 制动液控制装置
    • US20050073194A1
    • 2005-04-07
    • US10947140
    • 2004-09-23
    • Yoshitada Katayama
    • Yoshitada Katayama
    • F16K31/06B60T8/36
    • B60T8/363B60T8/368
    • An engagement portion with a shape recessed in a radial direction of a sleeve is formed on an outer peripheral surface of the sleeve so as to circuit the outer periphery of the sleeve. The engagement portion is also disposed inside an assembly hole of a housing. Caulking of an area surrounding an opening of the assembly hole joins the engagement portion and a deformed portion of the housing. Parts such as sealing members and bushings become unnecessary, because the assembly hole and the sleeve are sealed by contacting surfaces of the deformed portion and the engagement portion. Furthermore, fixing of the sleeve and the housing, as well as the formation of a sealed portion between the assembly hole and the sleeve assures the realization of a one-time caulking process.
    • 在套筒的外周面上形成具有在套筒的径向凹陷的形状的接合部,以便使套筒的外周线回路。 接合部也设置在壳体的组装孔的内部。 围绕组装孔的开口的区域的挤压将接合部分和壳体的变形部分结合。 因为组装孔和套筒通过接触变形部分和接合部分的表面而被密封,所以不需要诸如密封件和衬套的零件。 此外,套筒和壳体的固定以及在组装孔和套筒之间形成密封部分确保了一次性铆接过程的实现。
    • 9. 发明授权
    • Composite magnetic member, process for producing the member and electromagnetic valve using the member
    • 复合磁性构件,用于制造构件的方法和使用该构件的电磁阀
    • US06187459B1
    • 2001-02-13
    • US09149082
    • 1998-09-08
    • Yoshitada KatayamaKeizo TakeuchiToshiaki TeradaShinya SugiuraHakaru SasakiTsutomu Inui
    • Yoshitada KatayamaKeizo TakeuchiToshiaki TeradaShinya SugiuraHakaru SasakiTsutomu Inui
    • G11B566
    • H01F1/147B60T8/3615C21D8/12C21D8/1294F15B13/044F16K31/06H01F1/0302H01F1/0306H01F1/047H01F7/081Y10S428/90
    • A metallic member including not more than 0.6% C, 12 to 19% Cr, 6 to 12% Ni, not more than 2% Mn, not more than 2% Mo, not more than 1% Nb and the balance being Fe and inevitable impurities, where Hirayama's equivalent H eq=[Ni %]+1.05 [Mn %]+0.65 [Cr %]+0.35 [Si %]+12.6 [C %] is 20 to 23%; Nickel equivalent Ni eq=[Ni %]+30 [C %]+0.5 [Mn %] is 9 to 12%, and Chromium equivalent Cr eq=[Cr %]+[Mo %]+1.5 [Si %]+0.5 [Nb %] is 16 to 19, wherein % is by weight, is made to have at least one ferromagnetized part having a magnetic flux density B4000 of not less than 0.3T and at least one non-magnetized part having a relative magnetic permeability &mgr; of not more than 1.2 at a temperature of not less than −40° C., as continuously and integrally formed. The non-magnetized part has crystal grain sizes of not more than 30 &mgr;m. The metallic member is subjected to by ferromagnetization and successive local non-magnetization of part or parts of the ferromagnetized member, and the thus obtained composite magnetic member is employed as a support member such as a sleeve in electromagnetic valves.
    • 包含不超过0.6%C,12-19%Cr,6-12%Ni,不大于2%Mn,不超过2%Mo,不大于1%Nb和余量为Fe和不可避免的金属构件 杂质,其中日山的等效H eq = [Ni%] + 1.05 [Mn%] + 0.65 [Cr%] + 0.35 [Si%] + 12.6 [C%]为20〜23%;镍当量Ni eq = [Ni% +30 [C%] +0.5 [Mn%]为9〜12%,铬当量Cr eq = [Cr%] + [Mo%] + 1.5 [Si%] +0.5 [Nb%]为16〜19, %的重量比被制成具有磁通密度B4000至少为0.3T的至少一个铁磁性部分和至少一个在非温度下的相对导磁率μ不大于1.2的非磁化部分 小于-40℃,连续地和一体地形成。 非磁化部件的晶粒尺寸不超过30μm。 金属构件通过铁磁性和铁磁性构件的一部分或多个部分的连续的局部非磁化受到影响,由此获得的复合磁性构件用作诸如电磁阀中的套筒的支撑构件。