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    • 2. 发明授权
    • Semi-liquid metal processing and sensing device and method of using same
    • 半液态金属加工和检测装置及其使用方法
    • US08241390B2
    • 2012-08-14
    • US12680652
    • 2008-10-10
    • Alan A. Koch
    • Alan A. Koch
    • C22B9/22C22B21/06
    • C22B9/22B22D2/006B22D21/04B22D41/01C22B21/06F27B14/061F27B14/20F27D2019/0037H05B6/06H05B6/24Y02P10/253
    • A semi-liquid metal processing and sensing device comprising a crucible that is at least partially encircled by at least one induction coil. The one or more induction coils can be water cooled. The one or more induction coils can be designed to generate a variable power and/or variable frequency magnetic field which can be modulated to control the cooling of a molten metal charge in the crucible from the liquidus temperature to a selected heat content, resistivity and/or viscosity. The magnetic field can be designed to induce toroidal agitation of the metal charge in the crucible. The semi-liquid condition is sensed and can be actively controlled by the induction power supply via real time or non-real time analysis of electrical feedback signals that are obtained from the induction coil.
    • 一种半液体金属加工和感测装置,包括至少部分地由至少一个感应线圈环绕的坩埚。 一个或多个感应线圈可以是水冷的。 一个或多个感应线圈可以被设计成产生可变功率和/或可变频率磁场,其可被调制以控制坩埚中的熔融金属电荷从液相线温度冷却到所选择的热含量,电阻率和/ 或粘度。 磁场可以被设计成引起坩埚中的金属电荷的环形搅动。 感测半液体状态,并且可以通过感应电源通过从感应线圈获得的电反馈信号的实时或非实时分析来主动地控制半液体状态。
    • 3. 发明申请
    • OVERHEAT DETECTION SYSTEM
    • 超检测系统
    • US20120010761A1
    • 2012-01-12
    • US13235672
    • 2011-09-19
    • Lawrence M. Rubin
    • Lawrence M. Rubin
    • G05D23/00
    • F01P11/18C22B9/22C22B9/228F01P2025/04F27B3/08F27B3/24F27D9/00F27D19/00
    • According to one embodiment of the invention, a method for preventing the failure of a system, which includes one or more pipes, or one or more cooling jackets, or one or more fluid cooled system components carrying a fluid, involves detecting one or more pressure levels of the fluid in the one or more pipes at one or more points, then comparing the detected pressure levels to a corresponding one or more predetermined limitation values. If the detected pressure levels exceed the corresponding limitation values, a shut-down signal is generated. The shut-down signal triggers the adjusting of one or more systems responsible for causing thermal variations of the fluid, preventing the system from failing while allowing the system to continue operation shortly thereafter.
    • 根据本发明的一个实施例,一种用于防止包括一个或多个管道或一个或多个冷却套管或承载流体的一个或多个流体冷却系统部件的系统故障的方法涉及检测一个或多个压力 在一个或多个点处一个或多个管道中的流体的水平,然后将检测到的压力水平与相应的一个或多个预定限制值进行比较。 如果检测到的压力水平超过相应的限制值,则产生关闭信号。 关闭信号触发调节一个或多个负责导致流体热变化的系统,防止系统发生故障,同时允许系统在此后不久继续运行。
    • 4. 发明申请
    • Gas-phase alloying of metallic materials
    • 金相材料的气相合金化
    • US20070012138A1
    • 2007-01-18
    • US11523333
    • 2006-09-19
    • Craig Brice
    • Craig Brice
    • C22C1/02C22B9/22
    • C22B9/22C22B9/223C23C8/10C23C8/24C23C8/28
    • A direct manufacturing technique involving rapid solidification processing uses a reaction between a metallic molten pool and a reactant gas in an inert atmosphere to form alloys with improved desired properties. By utilizing rapid solidification techniques, solubility levels can be increased resulting in alloys with unique mechanical and physical properties. Laser deposition of alloys in atmospheres of varying reactant content produce significant strengthening without cracking. In addition, these materials have very high hardness values for hard face coating and functionally graded materials applications.
    • 涉及快速凝固处理的直接制造技术使用在惰性气氛中的金属熔池和反应气体之间的反应来形成具有改进的所需性能的合金。 通过使用快速固化技术,可以增加溶解度水平,从而形成具有独特机械和物理性能的合金。 激光沉积合金在不同反应物含量的大气中产生显着的强化而不破裂。 此外,这些材料具有非常高的硬面涂层和功能梯度材料应用的硬度值。