In-situ control system for atomization
    11.
    发明授权
    In-situ control system for atomization 失效
    雾化现场控制系统

    公开(公告)号:US5423520A

    公开(公告)日:1995-06-13

    申请号:US58767

    申请日:1993-04-13

    IPC分类号: B05B12/08 B22F9/08 B22D41/58

    摘要: Melt atomizing apparatus comprising a melt supply orifice for supplying the melt for atomization and gas supply orifices proximate the melt supply orifice for supplying atomizing gas to atomize the melt as an atomization spray. The apparatus includes a sensor, such as an optical and/or audio sensor, for providing atomization spray data, and a control unit responsive to the sensed atomization spray data for controlling at least one of the atomizing gas pressure and an actuator to adjust the relative position of the gas supply orifice and melt supply in a manner to achieve a desired atomization spray.

    摘要翻译: 熔融雾化装置包括用于供应用于雾化的熔体的熔体供应孔和靠近熔体供应孔的气体供应孔,用于供应雾化气体以将雾化雾化为雾化喷雾。 该装置包括用于提供雾化喷雾数据的传感器,例如光学和/或音频传感器,以及控制单元,其响应于感测到的雾化喷雾数据,用于控制雾化气体压力和致动器中的至少一个,以调节相对 气体供应孔的位置和熔体供应以达到期望的雾化喷雾的方式。

    Dispersoid reinforced alloy powder and method of making
    12.
    发明授权
    Dispersoid reinforced alloy powder and method of making 有权
    分散增强合金粉末及其制造方法

    公开(公告)号:US08197574B1

    公开(公告)日:2012-06-12

    申请号:US12660354

    申请日:2010-02-25

    IPC分类号: C22C29/12 C22C38/18

    摘要: A method of making dispersion-strengthened alloy particles involves melting an alloy having a corrosion and/or oxidation resistance-imparting alloying element, a dispersoid-forming element, and a matrix metal wherein the dispersoid-forming element exhibits a greater tendency to react with a reactive species acquired from an atomizing gas than does the alloying element. The melted alloy is atomized with the atomizing gas including the reactive species to form atomized particles so that the reactive species is (a) dissolved in solid solution to a depth below the surface of atomized particles and/or (b) reacted with the dispersoid-forming element to form dispersoids in the atomized particles to a depth below the surface of said atomized particles. The atomized alloy particles are solidified as solidified alloy particles or as a solidified deposit of alloy particles. Bodies made from the dispersion strengthened alloy particles, deposit thereof, exhibit enhanced fatigue and creep resistance and reduced wear as well as enhanced corrosion and/or oxidation resistance at high temperatures by virtue of the presence of the corrosion and/or oxidation resistance imparting alloying element in solid solution in the particle alloy matrix.

    摘要翻译: 制造分散强化合金颗粒的方法包括熔化具有腐蚀和/或抗氧化性赋予合金元素,分散质形成元素和基质金属的合金,其中分散质形成元素表现出更大的与 从雾化气体获得的反应物质比合金元素。 熔化的合金与包括反应性物质的雾化气体雾化以形成雾化颗粒,使得反应性物质(a)溶解在固溶体中至雾化颗粒表面下方的深度和/或(b)与分散质 - 形成元素以在雾化颗粒中形成分散质,使其在所述雾化颗粒的表面下方的深度。 雾化的合金颗粒作为固化合金颗粒固化,或作为合金颗粒的固化沉积物固化。 由分散强化的合金颗粒,其沉积物,由于存在耐腐蚀和/或抗氧化性赋予的合金元素,在高温下表现出增强的疲劳和抗蠕变性和降低的磨损以及增强的耐腐蚀和/或耐氧化性。 在颗粒合金基质中的固溶体。

    Pb-free Sn-Ag-Cu ternary eutectic solder
    14.
    发明授权
    Pb-free Sn-Ag-Cu ternary eutectic solder 失效
    无铅Sn-Ag-Cu三元共晶焊料

    公开(公告)号:US5527628A

    公开(公告)日:1996-06-18

    申请号:US394228

    申请日:1995-02-24

    IPC分类号: B23K35/26

    CPC分类号: B23K35/262 Y10T428/12715

    摘要: A Pb-free solder includes a ternary eutectic composition consisting essentially of about 93.6 weight % Sn-about 4.7 weight % Ag-about 1.7 weight % Cu having a eutectic melting temperature of about 217.degree. C. and variants of the ternary composition wherein the relative concentrations of Sn, Ag, and Cu deviate from the ternary eutectic composition to provide a controlled melting temperature range (liquid-solid "mushy" zone) relative to the eutectic melting temperature (e.g. up to 15.degree. C. above the eutectic melting temperature).

    摘要翻译: 无铅焊料包括三元共晶组合物,其基本上由约93.6重量%的Sn-约4.7重量%Ag-约1.7重量%的Cu组成,共晶熔融温度为约217℃。三元组合物的变体,其中相对 Sn,Ag和Cu的浓度偏离三元共晶组成,以提供相对于共晶熔融温度(例如高于共晶熔融温度高达15℃)的受控熔融温度范围(液体 - 固体“糊状”区域) 。

    Method of making environmentally stable reactive alloy powders
    15.
    发明授权
    Method of making environmentally stable reactive alloy powders 失效
    制备环境稳定的反应性合金粉末的方法

    公开(公告)号:US5372629A

    公开(公告)日:1994-12-13

    申请号:US926151

    申请日:1992-08-05

    摘要: Apparatus and method for making powder from a metallic melt by atomizing the melt to form droplets and reacting the droplets downstream of the atomizing location with a reactive gas. The droplets are reacted with the gas at a temperature where a solidified exterior surface is formed thereon and where a protective refractory barrier layer (reaction layer) is formed whose penetration into the droplets is limited by the presence of the solidified surface so as to avoid selective reduction of key reactive alloyants needed to achieve desired powder end use properties. The barrier layer protects the reactive powder particles from environmental constituents such as air and water in the liquid or vapor form during subsequent fabrication of the powder to end-use shapes and during use in the intended service environment.

    摘要翻译: 通过使熔体雾化以形成液滴并使雾化位置下游的液滴与反应性气体反应从金属熔体制造粉末的装置和方法。 在其上形成凝固的外表面的温度下,液滴与气体反应,并且形成保护性耐火阻挡层(反应层),其中渗入液滴的渗透被固化表面的存在所限制,以避免选择性 减少需要达到所需粉末末端使用性能的关键反应性合金。 阻挡层在随后将粉末制成粉末至最终使用形状和使用期间在预期的使用环境中保护反应性粉末颗粒免受诸如空气和水的液体或蒸汽形式的环境成分的影响。

    Powder collection apparatus/method
    17.
    发明授权
    Powder collection apparatus/method 失效
    粉末收集装置/方法

    公开(公告)号:US5277705A

    公开(公告)日:1994-01-11

    申请号:US997725

    申请日:1992-12-30

    IPC分类号: B01D45/12 B01D50/00 B22F9/08

    CPC分类号: B01D50/004 B01D45/12 B22F9/08

    摘要: Device for separating and collecting ultrafine atomized powder from the gas stream of a gas atomizing apparatus comprises a housing having an interior wall oriented at an angle relative to horizontal so as to form a downwardly converging, conical expansion chamber, an inlet conduit communicated to the expansion chamber proximate an upper region thereof for receiving the gas stream, and an outlet proximate a lower region of the expansion chamber. The inlet conduit is oriented at a compound inclined angle (with respect to horizontal) selected to promote separation and collection of powder from the gas stream in the expansion chamber. The compound angle comprises a first entrance angle that is greater than the angle of repose of the powder on the housing interior wall such that any powder accumulation in the inlet conduit tends to flow down the wall toward the outlet. The second angle is selected generally equal to the angle of the housing interior wall measured from the same horizontal plane so as to direct the gas stream into the expansion chamber generally tangent to the housing interior wall to establish a downward swirling gas stream flow in the expansion chamber. A powder collection container is communicated to the outlet of the expansion chamber to collect the powder for further processing.

    摘要翻译: 用于从气体雾化装置的气流中分离和收集超细雾化粉末的装置包括具有相对于水平面成一角度定向的内壁的壳体,以形成向下收敛的锥形膨胀室,与膨胀 靠近其上部区域的腔室用于接收气体流,以及靠近膨胀室的下部区域的出口。 入口导管被选择为以与化合物倾斜角度(相对于水平方向)相对应的方式被选择以促进粉末从膨胀室中的气流的分离和收集。 复合角度包括大于粉末在壳体内壁上的休止角的第一入射角,使得入口导管中的任何粉末积聚倾向于朝着出口向下流动。 第二角度通常等于从同一水平面测量的壳体内壁的角度,以便将气流引导到与壳体内壁大致相切的膨胀室中,以在膨胀中建立向下旋转的气流流 房间。 将粉末收集容器连通到膨胀室的出口以收集粉末用于进一步处理。