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    • 1. 发明申请
    • LEAF SEAL AND METHOD OF PRODUCING A LEAF SEAL
    • 叶片密封和生产叶片密封方法
    • US20070085277A1
    • 2007-04-19
    • US11538104
    • 2006-10-03
    • Nigel RhodesErnst Vogt
    • Nigel RhodesErnst Vogt
    • F16J15/44
    • F01D11/001F16J15/3292
    • A leaf seal for sealing a shaft rotating about an axis, in particular in a gas turbine, includes a multiplicity of spaced-apart leaves (26) which are arranged in a concentric circle around the axis and are fixed in their position by welded connections produced by electron beam welding, the leaves (26), with their surfaces, being oriented essentially parallel to the axis. The welded connections of the leaves are improved by the leaves (26) being designed in such a way and being arranged in the leaf seal in such a way that they abut against one another at the side edges directly or via intermediate spacers (27) along at least one contact line (36) extending over a plurality of leaves (26), and by the welded connections being designed as welds directed along the at least one contact line (36) and oriented in axial direction.
    • 用于密封围绕轴线旋转的轴的叶片密封件,特别是在燃气涡轮机中,包括多个间隔开的叶片(26),其围绕轴线布置成同心圆,并通过焊接连接件固定在其位置 通过电子束焊接,其表面的叶片(26)基本上平行于轴线定向。 叶片的焊接连接通过被设计成叶片(26)而被改进,并且被布置在叶片密封件中,使得它们在侧边缘处直接或通过中间间隔件(27)彼此抵靠 至少一个在多个叶片(26)上延伸的接触线(36),并且通过焊接连接被设计为沿着至少一个接触线(36)引导并沿轴向定向的焊接。
    • 3. 发明申请
    • METHOD OF PROCESSING SEALS LIKE LEAF SEALS
    • 加工密封的方法类似于叶片密封
    • US20070119909A1
    • 2007-05-31
    • US11538094
    • 2006-10-03
    • Nigel Rhodes
    • Nigel Rhodes
    • B23K31/02
    • F16J15/3288F16J15/3292Y10T29/49297
    • A method of processing seals (20), like leaf seals, in which seals (20) an annular gap, formed between two coaxial, cylindrical surfaces, is sealed off in the axial direction by a multiplicity of individual, thin sealing elements (22; 22a, b) which, with an orientation deviating from the radial direction, extend transversely through the gap and are fixed at their end assigned to the one cylindrical surface and bear loosely with the other, free end against the other cylindrical surface. An improvement in the sealing geometry is achieved in a simple manner in that, for the uniform orientation of the free ends of the sealing elements (22; 22a, b), in a first step, the sealing elements (22, 22a, b) are brought to bear with their free ends against a coaxial cylindrical surface having a predetermined diameter (D) in such a way that they are subjected to a bending stress, and in that, in a second step, the sealing elements (22; 22a, b) subjected to the bending stress are subjected to a heat treatment in such a way that the bending stress is completely removed.
    • 一种处理密封件(20)的方法,如叶片密封件,其中形成在两个同轴的圆柱形表面之间的环形间隙的密封件(20)通过多个单独的薄密封元件(22; 22)在轴向上被密封。 如图22a,b)所示,具有偏离径向方向的方向横向延伸穿过间隙,并且在它们的端部被固定到一个圆柱形表面,并松开地与另一个自由端相对于另一个圆柱形表面承载。 密封几何形状的改进以简单的方式实现,因为对于密封元件(22; 22a,b)的自由端的均匀取向,在第一步骤中,密封元件(22,22a, b)以其自由端承载在具有预定直径(D)的同轴圆柱形表面上,使得它们受到弯曲应力,并且在第二步骤中,密封元件(22; 对经受弯曲应力的弯曲应力进行热处理,使得弯曲应力被完全去除。