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    • 1. 发明专利
    • Prevention method of base metal adhesion to molten iron transportation vehicle
    • 基础金属粘结防止铁路运输车辆的预防方法
    • JP2014152371A
    • 2014-08-25
    • JP2013024549
    • 2013-02-12
    • Kobe Steel Ltd株式会社神戸製鋼所
    • TAKAHASHI DAIKIARAI HIROTADAYAMAMOTO YUKIMIYAMOTO YU
    • C21C1/06
    • PROBLEM TO BE SOLVED: To prevent base metal adhesion to a molten iron transportation vehicle.SOLUTION: In an operation method of a molten iron transportation vehicle, the weight of a base metal adhering to the molten iron transportation vehicle after 1 cycle of injecting and ejecting a molten iron in the molten iron transportation vehicle "ΔW(ton)", a molten iron temperature of the molten iron injected in the molten iron transportation vehicle "T(°C)", a filled pot time during which the molten iron is contained in the molten transportation vehicle "t(min)", and an empty pot time during which the molten iron is not contained in the molten transportation vehicle "t(min)" are adjusted to satisfy "ΔW=126.56-0.1004T+0.0442 t+0.0275 t≤1".
    • 要解决的问题:防止贱金属粘附到铁水运输车辆。解决方案:在铁水运输车辆的操作方法中,在喷射和喷射1个循环之后附着在铁水运输车辆上的贱金属的重量 铁水运输车辆“&Dgr; W(ton)”中的铁水,铁水运输车辆“T(℃)”中注入的铁水的铁水温度, 被包含在熔融运输车辆“t(min)”中,并且在熔融运输车辆“t(min)”中不包含铁水的空罐装时间被调节为满足“&Dgr; W = 126.56-0.1004 T + 0.0442t +0.0275t≤1“。
    • 8. 发明专利
    • Method for producing titanium ingot
    • 生产钛白粉的方法
    • JP2014129556A
    • 2014-07-10
    • JP2012286532
    • 2012-12-28
    • Kobe Steel Ltd株式会社神戸製鋼所
    • TAKAHASHI DAIKIISHIDA HITOSHIMATSUWAKA DAISUKEOYAMA HIDETOKANEHASHI HIDEKATSUYOKOYAMA HIROSHI
    • C22B34/12C22B9/22
    • Y02P10/253
    • PROBLEM TO BE SOLVED: To provide a method for producing a titanium ingot, which can give a titanium ingot at a low cost, at a high quality and with reliability, which contains removing HDI's (high density inclusions) from a titanium alloy and lowering the residual rate of LDI's (low density inclusions) having a particle diameter φ of about 10 to 15 mm to 1% or less.SOLUTION: Provided is a method for producing a titanium ingot 30, which contains the steps of: melting a titanium alloy in a given time period by CCIM (a cold crucible induction melting); supplying the resultant molten titanium 6 into a cold hearth 10; and subjecting sedimentation separation of HDI's 8 in the cold hearth 10, while irradiating the bath face of the molten titanium 6 with electron beam.
    • 要解决的问题:提供一种可以以高质量和可靠的方式以低成本得到钛锭的钛锭的制造方法,其包含从钛合金中去除HDI(高密度夹杂物)并降低 残留率LDI(低密度夹杂物)具有粒径&phgr; 为10〜15mm〜1%以下。本发明提供一种钛锭30的制造方法,其特征在于,包括以下步骤:通过CCIM(冷坩埚感应熔融)在给定时间内熔化钛合金; 将所得熔融钛6供应到冷床10中; 并在用电子束照射熔融钛6的浴面的同时,将HDI8的沉淀分离进入冷室10。
    • 10. 发明专利
    • Input method of cold iron source
    • 冷铁源的输入方法
    • JP2014189841A
    • 2014-10-06
    • JP2013066536
    • 2013-03-27
    • Kobe Steel Ltd株式会社神戸製鋼所
    • ARAI HIROTADATAKAHASHI DAIKIMIYAMOTO YUYAMAMOTO YUKI
    • C21C5/28C21C1/06
    • PROBLEM TO BE SOLVED: To perform that a bullion amount that adheres to a hot metal ladle or the like is suppressed, and a large cold iron source can be input the hot metal ladle or the like.SOLUTION: When a cold iron source is melted by a molten iron transportation container, and a molten iron amount is increased, an input amount M(kg/ton) of the cold iron source input to the molten iron transportation container, a C concentration C(mass%) of the molten iron, a C concentration C(mass%) of the cold iron source, a molten iron temperature T(°C) immediately after receiving molten iron, a weight equivalent diameter d(mm) per one cold iron source are made to satisfy M≤-975+0.0365C1.00C+0.760T-0.0137d.
    • 要解决的问题:为了执行粘附在热金属浇包等上的金块量,并且可以将大量的冷铁源输入到铁水包等。解决方案:当冷铁源熔化时 通过铁水运输容器,铁水量增加,输入到铁水运输容器的冷铁源的输入量M(kg / ton),铁水的C浓度C(质量%), 冷铁源的C浓度C(质量%),立即接收铁水后的铁水温度T(℃),每个冷铁源的重量当量直径d(mm)满足M≤-975 + 0.0365C1.00C + 0.760T-0.0137d。