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Near-Net Shaping Control of Triangular Stacking in Laser Cladding Process

机译:激光熔覆过程中三角堆叠的近净成形控制

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Fabrication of complex parts with irregular geometric cross-section can be realized through precise control of triangular stacking in laser cladding process. This paper deals with the optimization of overlapping ratio and scanning strategy in order to obtain near-net shaping parts. First, multi-track overlapping surface formation mechanisms and surface flatness evaluation method are described. Then, the effects of overlapping ratio and scanning strategy on surface flatness are investigated and optimized. Afterwards, the formation of triangular stack under the optimized parameters are evaluated in terms of accuracy and metallographic aspects. The results show that the minimum flatness occurred when the overlapping ratio is about 20 %. Changing the scanning sequence from left-to-right to center-to-sides can help reduce the negative effects caused by the accumulated heat during the material deposition process, thereby improving the performance efficiency of the cladding.
机译:通过精确控制激光熔覆过程中的三角形堆叠,可以制造出具有不规则几何形状横截面的复杂零件。本文研究了重叠比的优化和扫描策略,以获得近净成形零件。首先,描述多轨道重叠表面形成机制和表面平坦度评估方法。然后,研究并优化了重叠率和扫描策略对表面平整度的影响。然后,在精度和金相方面对优化参数下的三角形叠层的形成进行了评估。结果表明,当重叠率约为20%时,出现最小平整度。将扫描顺序从左到右更改为从中心到侧面,可以帮助减少在材料沉积过程中积聚的热量引起的负面影响,从而提高覆层的性能效率。

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