Multilayered Metal Including Titanium, and Method for Manufacturing Method Same
    1.
    发明申请
    Multilayered Metal Including Titanium, and Method for Manufacturing Method Same 审中-公开
    包括钛的多层金属及其制造方法相同

    公开(公告)号:US20130130050A1

    公开(公告)日:2013-05-23

    申请号:US13813322

    申请日:2010-12-20

    IPC分类号: B22F7/02 B32B15/01 C22C1/04

    摘要: A multilayer metal structure is provided that includes an inner layer of metal materials which are not titanium and outer layers on both sides of the inner layer which are formed by rolling titanium powders. A method for manufacturing the multilayer metal structure is provided that includes preparing titanium powders and metal materials which are not titanium, feeding the titanium powders and the metal materials to a vertical type rolling mill, simultaneously rolling the titanium powders and the metal materials by the rolling mill and forming the multilayer metal structure consisting of an inner layer and outer layers on both sides of the inner layer, and post-forming the multilayer metal structure to increase a packing density.

    摘要翻译: 提供了一种多层金属结构,其包括不是钛的金属材料的内层和通过轧制钛粉末形成的内层两侧的外层。 提供一种制造多层金属结构体的方法,其包括制备钛粉末和不是钛的金属材料,将钛粉末和金属材料供给到垂直型轧机,同时通过轧制轧制钛粉末和金属材料 并且在内层的两侧形成由内层和外层组成的多层金属结构,并且后成形多层金属结构以增加堆积密度。

    TITANIUM-NICKEL ALLOY THIN FILM, AND PREPARATION METHOD OF TITANIUM-NICKEL ALLOY THIN FILM USING MULTIPLE SPUTTERING METHOD
    2.
    发明申请
    TITANIUM-NICKEL ALLOY THIN FILM, AND PREPARATION METHOD OF TITANIUM-NICKEL ALLOY THIN FILM USING MULTIPLE SPUTTERING METHOD 审中-公开
    钛 - 镍合金薄膜及使用多种溅射方法的钛 - 镍合金薄膜的制备方法

    公开(公告)号:US20150004432A1

    公开(公告)日:2015-01-01

    申请号:US14354818

    申请日:2012-08-13

    摘要: In a Ti—Ni alloy thin film, Ti and Ni are mixed and deposited on a base material by putting a Ti target and an Ni target at a predetermined distance from each other in a co-sputtering apparatus and simultaneously sputtering the targets by applying different voltages. A method of fabricating a Ti—Ni alloy thin film using co-sputtering includes a target preparing step that prepares a Ti target, a Ni target and a base material, a target disposing step that puts the Ti target and the Ni target at a predetermined distance from each other in a co-sputtering apparatus, an apparatus setting step that sets work conditions of the co-sputtering apparatus, and a thin film depositing step that forms a Ti—Ni alloy thin film with Ti and Ni mixed on the base material by operating the co-sputtering apparatus.

    摘要翻译: 在Ti-Ni合金薄膜中,通过在共溅射装置中将Ti靶和Ni靶彼此放置一定距离,将Ti和Ni混合沉积在基材上,同时通过施加不同的溅射靶 电压。 使用共溅射法制造Ti-Ni合金薄膜的方法包括制备Ti靶,Ni靶和基材的目标制备步骤,将Ti靶和Ni靶设为预定的靶设置步骤 在共溅射装置中彼此间的距离,设置共溅射装置的工作条件的装置设置步骤以及在基材上混合Ti和Ni形成Ti-Ni合金薄膜的薄膜沉积步骤 通过操作共溅射装置。

    Manufacturing method of titanium alloy with high-strength and high-formability and its titanium alloy
    6.
    发明授权
    Manufacturing method of titanium alloy with high-strength and high-formability and its titanium alloy 有权
    具有高强度,高成形性的钛合金及其钛合金的制造方法

    公开(公告)号:US09435017B2

    公开(公告)日:2016-09-06

    申请号:US13879206

    申请日:2012-03-19

    IPC分类号: C22F1/18 C22C14/00

    CPC分类号: C22F1/183 C22C14/00

    摘要: A method of manufacturing a titanium alloy with high strength and high formability, the method including preparing a titanium alloy material and equipment for manufacturing the titanium alloy, manufacturing the titanium alloy having a lamellar structure (martensite structure) by cooling the prepared titanium alloy material with water after performing heat treatment at the beta transformation temperature or more, and rolling that makes ultrafine grains by finishing forming of the titanium alloy at a plastic instability temperature or less of an initial lamellar structure by gradually decreasing the forming temperature in accordance with an increase of a strain after starting the forming at the plastic instability temperature or more of an initial lamellar structure, under a condition of a low strain in which the strain is 2.5 or less, after the manufacturing of a titanium alloy having a lamellar structure.

    摘要翻译: 一种制造具有高强度和高成形性的钛合金的方法,其包括制备钛合金材料和钛合金制造设备的方法,通过将制备的钛合金材料冷却制备具有层状结构(马氏体组织)的钛合金, 在β相变温度以上进行热处理之后的水,以及通过根据初始层状结构的塑性不稳定温度或更低而通过逐渐降低成形温度来完成钛合金的成型而制成超细晶粒的轧制 在制造具有层状结构的钛合金之后,在应变为2.5以下的低应变的条件下,在塑性不稳定温度以上的初始层状结构的开始成形后的应变。