Exploitation of deformation mechanisms for industrial usage in thin product forms
    1.
    发明授权
    Exploitation of deformation mechanisms for industrial usage in thin product forms 有权
    开发薄型产品形式工业用变形机制

    公开(公告)号:US08293036B2

    公开(公告)日:2012-10-23

    申请号:US12612319

    申请日:2009-11-04

    IPC分类号: C22C45/10

    摘要: The present disclosure relates to a glass forming alloy. The glass forming alloy may include 43.0 atomic percent to 68.0 atomic percent iron, 10.0 atomic percent to 19.0 atomic percent boron, 13.0 atomic percent to 17.0 atomic percent nickel, 2.5 atomic percent to 21.0 atomic percent cobalt, optionally 0.1 atomic percent to 6.0 atomic percent carbon, and optionally 0.3 atomic percent to 3.5 atomic percent silicon. Furthermore, the glass forming alloy includes between 5% to 95% by volume one or more spinodal glass matrix microconstituents which include one or more semi-crystalline or crystalline phases at a length scale less than 50 nm in a glass matrix. In addition, the glass forming alloy is capable of blunting shear bands through localized deformation induced changes under tension.

    摘要翻译: 本公开涉及一种玻璃形成合金。 玻璃形成合金可以包括43.0原子%至68.0原子%的铁,10.0原子%至19.0原子%的硼,13.0原子%至17.0原子%的镍,2.5原子%至21.0原子%的钴,任选的0.1原子%至6.0原子% 碳和任选的0.3原子%至3.5原子%的硅。 此外,玻璃形成合金包括5体积%至95体积%的一种或多种旋转玻璃基质微组成物,其包含玻璃基质中尺寸小于50nm的一个或多个半结晶相或结晶相。 此外,玻璃成形合金能够通过局部变形引起的张力下的变化而使剪切带钝化。

    Utilization of Amorphous Steel Sheets In Honeycomb Structures
    5.
    发明申请
    Utilization of Amorphous Steel Sheets In Honeycomb Structures 有权
    无定形钢板在蜂窝结构中的应用

    公开(公告)号:US20110108166A1

    公开(公告)日:2011-05-12

    申请号:US12941866

    申请日:2010-11-08

    IPC分类号: C22C45/02 B22D19/00

    摘要: A honeycomb structure and a method of forming an iron based glass forming honeycomb structure. The honeycomb structure may include at least two sheets, each having a thickness in the range of 0.01 mm to 0.15 mm, formed from an iron based glass forming alloy comprising 40 to 68 atomic percent iron, 13 to 17 atomic percent nickel, 2 to 21 atomic percent cobalt, 12 to 19 atomic percent boron, optionally 0.1 to 6 atomic percent carbon, optionally 0.3 to 4 atomic percent silicon, optionally 1 to 20 percent chromium. The sheets may be stacked, bonded together and formed into a honeycomb. The honeycomb structure may include a plurality of cells.

    摘要翻译: 蜂窝结构体和形成铁基玻璃形成蜂窝结构体的方法。 所述蜂窝结构体可以包括至少两个片,每个片的厚度在0.01mm至0.15mm的范围内,由铁基玻璃形成合金形成,所述铁基玻璃形成合金包含40至68原子%的铁,13至17原子%的镍,2至21 原子百分比的钴,12至19原子百分比的硼,任选的0.1至6原子%的碳,任选的0.3至4原子%的硅,任选的1至20%的铬。 片材可以堆叠,粘合在一起并形成蜂窝状。 蜂窝结构可以包括多个单元。

    Process for continuous production of ductile microwires from glass forming systems
    6.
    发明授权
    Process for continuous production of ductile microwires from glass forming systems 有权
    从玻璃成型系统连续生产延性微丝的工艺

    公开(公告)号:US08858739B2

    公开(公告)日:2014-10-14

    申请号:US12910640

    申请日:2010-10-22

    摘要: A method and system of forming a micro-wire including heating metal feedstock to a liquid state within a glass tube, wherein the metal feedstock includes an iron based glass forming alloy comprising one or more of nickel and cobalt present in the range of 7 atomic percent to 50 atomic percent and one or more of boron, carbon, silicon, phosphorous and nitrogen present in the range of 1 to 35 atomic percent. Negative pressure may be provided to the interior the glass tube and the glass tube containing the metal feedstock may be drawn down. The metal feedstock in the glass tube may be cooled at a rate sufficient to form a wire exhibiting crystalline microstructures present in the range of 2 to 90 percent by volume in a glass matrix.

    摘要翻译: 一种形成微丝的方法和系统,其包括在玻璃管内加热金属原料至液态,其中所述金属原料包括铁基玻璃形成合金,其包含一种或多种镍和钴,其存在于7原子% 至50原子%,并且硼,碳,硅,磷和氮中的一种或多种存在1至35原子百分比的范围内。 可以向内部提供负压,玻璃管和包含金属原料的玻璃管可以被拉下。 玻璃管中的金属原料可以以足以形成呈玻璃基质中呈现出2至90体积%范围内的结晶微结构的丝的速率来冷却。

    Wire and methodology for cutting materials with wire
    7.
    发明授权
    Wire and methodology for cutting materials with wire 有权
    用电线切割材料的线和方法

    公开(公告)号:US08689777B2

    公开(公告)日:2014-04-08

    申请号:US12938241

    申请日:2010-11-02

    IPC分类号: B28D1/08 B24B1/00

    摘要: Wire for cutting feedstock and a method for cutting feedstock with the wire. The wire may include an iron based alloy comprising at least 35 at % iron, nickel and/or cobalt in the range of about 7 to 50 at %, at least one non-metal or metalloid selected from the group consisting of boron, carbon, silicon, phosphorus, and/or nitrogen present in the range of about 1 to 35 at %, and one metal selected from the group consisting of copper, titanium, molybdenum, aluminum, and/or chromium present in the range of about 0 to 25 at %, wherein the wire has an aspect ratio of greater than one and exhibits metallic and/or crystalline phases of less than 500 nm in size.

    摘要翻译: 用于切割原料的电线和用电线切割原料的方法。 导线可以包括铁基合金,其包含至少35at%的铁,约7至50at%的镍,和/或钴,至少一种非金属或准金属选自硼,碳, 硅,磷和/或氮存在的范围为约1至35原子%,和一种选自铜,钛,钼,铝和/或铬的金属,其存在范围为约0至25 at%,其中导线具有大于1的纵横比,并且具有尺寸小于500nm的金属和/或结晶相。

    Utilization of amorphous steel sheets in honeycomb structures
    8.
    发明授权
    Utilization of amorphous steel sheets in honeycomb structures 有权
    无定形钢板在蜂窝结构中的应用

    公开(公告)号:US08497027B2

    公开(公告)日:2013-07-30

    申请号:US12941866

    申请日:2010-11-08

    IPC分类号: B32B3/12 B32B15/18 C22C45/02

    摘要: A honeycomb structure and a method of forming an iron based glass forming honeycomb structure. The honeycomb structure may include at least two sheets, each having a thickness in the range of 0.01 mm to 0.15 mm, formed from an iron based glass forming alloy comprising 40 to 68 atomic percent iron, 13 to 17 atomic percent nickel, 2 to 21 atomic percent cobalt, 12 to 19 atomic percent boron, optionally 0.1 to 6 atomic percent carbon, optionally 0.3 to 4 atomic percent silicon, optionally 1 to 20 percent chromium. The sheets may be stacked, bonded together and formed into a honeycomb. The honeycomb structure may include a plurality of cells.

    摘要翻译: 蜂窝结构体和形成铁基玻璃形成蜂窝结构体的方法。 所述蜂窝结构体可以包括至少两个片,每个片的厚度在0.01mm至0.15mm的范围内,由铁基玻璃形成合金形成,所述铁基玻璃形成合金包含40至68原子%的铁,13至17原子%的镍,2至21 原子百分比的钴,12至19原子百分比的硼,任选的0.1至6原子%的碳,任选的0.3至4原子%的硅,任选的1至20%的铬。 片材可以堆叠,粘合在一起并形成蜂窝状。 蜂窝结构可以包括多个单元。

    Process for manufacturing a perpendicular magnetic recording writer pole with nonmagnetic bevel
    10.
    发明授权
    Process for manufacturing a perpendicular magnetic recording writer pole with nonmagnetic bevel 失效
    制造具有非磁性斜面的垂直磁记录刻录机的方法

    公开(公告)号:US08628672B1

    公开(公告)日:2014-01-14

    申请号:US13535091

    申请日:2012-06-27

    IPC分类号: B44C1/22

    摘要: A method for fabricating a magnetic recording transducer having a magnetic writer pole with a short effective throat height is provided. In an embodiment, a writer structure comprising a magnetic writer pole having a trailing bevel and a nonmagnetic stack on the top surface of the writer pole is provided. A dielectric write gap layer comprising alumina is deposited over the trailing bevel section and the nonmagnetic stack; and at least one etch stop layer is deposited over the dielectric write gap layer. A layer of nonmagnetic fill material is deposited over the etch stop layer and to form a nonmagnetic bevel by performing a dry etch process. The etch stop layer(s) are removed from the short throat section; and a trailing shield is deposited over the short throat section, nonmagnetic bevel, and nonmagnetic stack top surface.

    摘要翻译: 提供一种制造具有具有短的有效喉部高度的磁性写入极的磁记录换能器的方法。 在一个实施例中,提供了一种写入器结构,其包括在写入器极的顶表面上具有后斜面和非磁性堆叠的磁性写入极。 包含氧化铝的电介质写入间隙层沉积在后斜面部分和非磁性层上; 并且至少一个蚀刻停止层沉积在电介质写间隙层上。 一层非磁性填充材料沉积在蚀刻停止层上并通过执行干法蚀刻工艺形成非磁性斜面。 蚀刻停止层从短喉部分移除; 并且尾部屏蔽层沉积在短喉部分,非磁性斜面和非磁性堆叠顶表面上。