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SPIRAL TITANIUM-BASED CLOCK SPRING

机译:螺旋钛基时钟弹簧

摘要

FIELD: watches and other time measuring instruments.;SUBSTANCE: spiral clock spring having a two-phase structure and made from niobium and titanium alloy, and a method of making said spring, including production of binary alloy containing niobium and titanium, with content of niobium: residue up to 100 %, weight ratio of titanium greater than or equal to 60.0 % of total amount and less than or equal to 85.0 % of total amount, trace amounts of components from O, H, C, Fe, Ta, N, Ni, Si, Cu, Al in range of 0 to 1,600 ppm (wt) of total amount and less than 0.3 wt% in combination, use of deformations alternating with thermal treatments, up to obtaining a two-phase microstructure containing a solid solution of niobium with titanium in form of β-phase and solid solution of niobium with titanium in form of α-phase, wherein content of titanium in form α-phase is more than 10 vol%, wire drawing to produce a wire capable of calendering, calendering or insertion into a ring to produce a running spring with a profile of a treble clef before its first coiling or coiling to produce a balancing spring.;EFFECT: disclosed is a method of making a spring.;23 cl, 3 dwg
机译:领域:钟表弹簧由铌和钛合金制成的具有两相结构的螺旋时钟弹簧及其制造方法,包括生产含铌和钛的二元合金铌:残留量高达100%,钛的重量比大于或等于总量的60.0%,小于或等于总量的85.0%,来自O,H,C,Fe,Ta,N的微量元素,Ni,Si,Cu,Al的总量在0至1,600 ppm(wt)的范围内且小于0.3 wt%,结合使用变形和热处理交替进行,直至获得包含固溶体的两相微结构制备拉丝以生产能够压延的线材,其中所述的铌以β相形式的钛与钛和以α相的形式钛铌的固溶体通过拉丝制成能够压延的线,压延或插入环中以产生磨合弹簧,在其第一次卷绕或卷绕以产生平衡弹簧之前具有高音谱号的轮廓。效果:公开了一种制造弹簧的方法。23 cl,3 dwg

著录项

  • 公开/公告号RU2727354C1

    专利类型

  • 公开/公告日2020-07-21

    原文格式PDF

  • 申请/专利权人 NIVAROX-FAR S.A.;

    申请/专利号RU20190142569

  • 发明设计人 CHARBON CHRISTIAN (CH);

    申请日2019-12-19

  • 分类号G04B17/06;

  • 国家 RU

  • 入库时间 2022-08-21 11:02:21

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