高压柱塞超高速激光熔覆工艺参数多目标优化

    Multi-objective Optimization of Extreme High Speed Laser Cladding Process Parameters of High-pressure Plunger

    • 摘要: 为获得超高速激光熔覆铁基自熔性合金粉末在高压柱塞泵柱塞40Cr钢基体上的最佳熔覆工艺参数,采用响应面法中的中心复合试验法进行了超高速激光熔覆试验设计,研究了激光功率、送粉速率以及工件旋转线速度工艺参数对超高速激光熔覆层宽高比、稀释率和显微硬度的影响,建立了响应面法数学模型,优化了超高速激光熔覆工艺参数。对响应面法优化后的最佳熔覆工艺参数进行试验验证,熔覆层关键响应目标均达到预期的提高。结果表明,响应面法是超高速激光熔覆工艺参数多响应目标优化的有效方法。该研究为后续对高压柱塞表面进行表面改性或修复,制备品质优良的熔覆层奠定了工艺基础。

       

      Abstract: In order to obtain the optimal cladding process parameters of extreme high speed laser cladding of Fe-based self-fusible alloy powder on 40 Cr steel matrix of high pressure piston pump, central composite design in response surface methodology(RSM) was used to design extreme high speed cladding test. The effects of laser power, powder feeding rate and workpiece rotating linear speed on the aspect ratio, dilution rate and microhardness of the extreme high speed laser cladding layer were discussed. The mathematical model of response surface method was established and the technological parameters of extreme high speed laser cladding were optimized. The optimal cladding process parameters optimized by RSM were tested and verified, and the key response targets of the cladding layer were improved as expected. The results show that RSM is an effective method for multi-response target optimization of extreme high speed laser cladding process parameters. The research lays a technological foundation for the surface modification or repair of the high-pressure plunger surface and the preparation of high-quality cladding layer.

       

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