旋转运动对堆积层表面形状影响的理论研究

M. Mykhailyshyn, V. Havryliuk, Ch.V. Pulka
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引用次数: 0

摘要

不同的堆焊方法被用来强化机器零件。本文对同步感应堆焊工艺进行了研究。与传统的堆焊方案相比,采用同步离心旋转进行堆焊。在整个堆焊过程中,按照传统的方案,圆盘位于固定的位置。在金属层熔化时,旋转运动以一定的角速度进行。由于离心旋转,零件的工作时间增加。因为熔融金属层移动到零件的边缘,增加了它的体积。部件的边缘在运行时承受最大的载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical research of the effect of rotational motion on the shape of surface of the deposited layer
Different methods of surfacing are using to strengthen machine parts. The process of simultaneous induction surfacing consider in the article. The surfacing will perform with using simultaneous centrifugal rotation compared to the traditional surfacing scheme. The disk is located in a fixed position during the entire surfacing process according to the traditional scheme. The rotational movement is carrying out with a certain angular velocity at the time of fusion of the metal layer. The working time of the part increased due to centrifugal rotation. Because the layer of molten metal moves to the edge of the part, increasing its volume. The edge of the part receives the greatest load to the moment of operation.
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