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    • 3. 发明申请
    • METHOD AND SYSTEM OF USING GAS FLOW TO CONTROL WELD PUDDLE IN OUT-OF-POSITION WELDING
    • 使用气体流动控制焊接位置不对称焊接的方法和系统
    • US20140008332A1
    • 2014-01-09
    • US13788688
    • 2013-03-07
    • LINCOLN GLOBAL, INC.
    • Jonathan S. OGBORNEdward EnyedySteven R. Sumner
    • B23K26/20B23K26/14
    • B23K26/14B23K26/211B23K26/34
    • A system and method for using gas flow to control a molten puddle in out-of-position applications is provided. The system includes a high intensity energy source configured to heat at lease one workpiece to create a molten puddle and a housing assembly configured to supply a gas over the molten puddle in order to minimize sagging of the molten puddle in the out-of-position applications. The system also includes a gas source that is configured to supply the gas. The gas source is operatively connected to the housing assembly. The pressure of the gas in the housing assembly is in a range of 15 psi to 35 psi. The method includes heating at least one workpiece to create a molten puddle and supplying a gas over the molten puddle via a housing assembly in order to minimize sagging of the molten puddle in the out-of-position applications.
    • 提供了一种使用气流来控制处于不适当位置的熔融水坑的系统和方法。 该系统包括高强度能量源,其被配置为加热至少一个工件以产生熔融熔池;以及壳体组件,其构造成将气体供应到熔融水坑上,以便最小化熔融水坑在离开位置应用中的下垂 。 该系统还包括被配置为供应气体的气体源。 气源可操作地连接到壳体组件。 壳体组件中的气体的压力在15psi至35psi的范围内。 该方法包括加热至少一个工件以产生熔融的熔池,并通过壳体组件将气体供应到熔融的熔池上,以便最小化熔池在失位应用中的下垂。