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    • 6. 发明申请
    • Beta-TYPE TITANIUM ALLOY
    • β型钛合金
    • US20100074795A1
    • 2010-03-25
    • US12447402
    • 2007-10-24
    • Kazuhiro TakahashiHideki FujiiKenichi Mori
    • Kazuhiro TakahashiHideki FujiiKenichi Mori
    • C22C14/00
    • C22C14/00C22F1/00C22F1/18
    • The present invention provides a β-type titanium alloy keeping the content of the relatively expensive β-stabilizing elements such as V or Mo down to a total of 10 mass % or less and reducing the effects of composition segregation of Fe and Cr and thereby able to keep the Young's modulus and density relatively low. The β-type titanium alloy of the present invention comprises, by mass %, when Al: 2 to 5%, 1) Fe: 2 to 4%, Cr: 6.2 to 11%, and V: 4 to 10%, 2) Fe: 2 to 4%, Cr: 5 to 11%, and Mo: 4 to 10%, or 3) Fe: 2 to 4%, Cr: 5.5 to 11%, and Mo+V (total of Mo and V): 4 to 10% in range, and a balance of substantially Ti. These include Zr added in amounts of 1 to 4 mass %. Furthermore, by making the oxygen equivalent Q 0.15 to 0.30 or leaving the alloy in the work hardened state or by applying both, the tensile strength before aging heat treatment can be further increased. Due to this, it is possible to obtain the required strength even if the amount of precipitation of the α phase with the high Young's modulus is small.
    • 本发明提供了一种将相对昂贵的稳定元素如V或Mo的含量保持在总共10质量%或更低的一种类型的钛合金,并降低了Fe和Cr的组分偏析的影响, 从而能够使杨氏模量和密度相对较低。 当Al:2〜5%,1)Fe:2〜4%,Cr:6.2〜11%,V:4〜10%时,本发明的< bgr-型钛合金以质量%计, )Fe:2〜4%,Cr:5〜11%,Mo:4〜10%,或3)Fe:2〜4%,Cr:5.5〜11%,Mo + V(Mo和V ):范围为4〜10%,余量基本为Ti。 这些包括添加量为1〜4质量%的Zr。 此外,通过使氧当量Q为0.15〜0.30,或使合金处于加工硬化状态,或通过施加两者,可以进一步提高时效热处理前的拉伸强度。 由此,即使具有高杨氏模量的α相的析出量小,也可以获得所需的强度。
    • 9. 发明申请
    • TITANIUM ALLOY FOR GOLF CLUB FACE
    • 钛合金高尔夫俱乐部面
    • US20150064055A1
    • 2015-03-05
    • US14380386
    • 2012-02-24
    • Akira KawakamiKazuhiro TakahashiHideki Fujii
    • Akira KawakamiKazuhiro TakahashiHideki Fujii
    • C22C14/00A63B53/04
    • C22C14/00A63B53/0466A63B53/047A63B2053/0416A63B2209/00C22F1/183
    • An α+β-type titanium alloy which, has a high Young's modulus and strength-ductility balance is provided as a material for a face of a driver, iron, or other golf club.A titanium alloy having a high strength and high Young's modulus for a golf club face comprising, by mass %, 4.7 to 5.5% of Al, 0.5 to 1.4% of Fe, 0.03% or less of N, O which satisfies an [O] eq (oxygen equivalent value) of 0.25 to 0.34% calculated by formula (1), and a balance of Ti and unavoidable impurities. By adding Al, O, and N which cause solution strengthening of the α-phase and selecting the inexpensive Fe as the β-stabilizing element and suitably limiting the amounts of addition of these elements, it is possible to achieve a high strength and a high Young's modulus which satisfies the SLE rule without relying on cold working strengthening or aging strengthening heat treatment, and simultaneously obtain a large, good total elongation and a high strength-ductility balance. [O]eq=[O]+2.77[N]  formula (1)
    • 提供具有高杨氏模量和强度 - 延展性平衡的α+ / bgr型型钛合金作为驾驶员,熨斗或其他高尔夫球杆的面部材料。 1.一种高尔夫球杆面的高强度高杨氏模量的钛合金,以质量%计含有Al:0.7〜5.5%,Fe:0.5〜1.4%,N:O 3 :0.03%以下,满足[O] eq(氧当量)为0.25〜0.34%,余量为Ti和不可避免的杂质。 通过添加引起α相的溶液强化的Al,O和N,选择廉价的Fe作为稳定元素,并适当地限制这些元素的添加量,可以实现高强度和 高杨氏模量满足SLE规则,不依赖于冷加工或老化强化热处理,同时获得大的良好的总伸长率和高的强度 - 延展性平衡。 [O] eq = [O] +2.77 [N]式(1)