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Analysis and Respond Surface Methodology Modeling on Property and Performance of Two-Dimensional Gradient Material Laser Cladding on Die-cutting Tool

机译:模具上二维梯度材料激光熔覆性能和性能的响应面方法学建模

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摘要

Die-cutting tools have been widely applied in industrial production. However, different forms of failure on a blade, such as wear and fracture, can greatly reduce its service life. In this research, the die-cutting tool was selected as the object, a mixture of high speed steel powder and 304 stainless steel powder was coated as a gradient cladding layer onto the surface of AISI/SAE 1045 steel by laser cladding. The central composition design of the response surface methodology was adopted to establish a mathematical model between the pore area of the multi-layer, multi-track cladding, and its processing parameters: Laser Power (LP), Scanning Speed (SS), Gas Flow (GF), and Overlapping Rate (OR). This model was validated by variance analysis and inspection indicators. The actual experiment value by processing parameters optimization for achieving the smallest pore area showed a 4.41% error compared with the predicted value. The internal structure of the cladding layer is uniform. The defects, such as pores and cracks, meet the requirements. The wear resistance on the cutting edge is about 4.5 times compared with the substrate. The results provide a theoretical guidance for the controlling and prediction of the laser cladding forming quality on a two-dimensional gradient material and the optimization of the processing parameters.
机译:模切工具已广泛应用于工业生产中。但是,叶片上不同形式的故障(例如磨损和断裂)会大大缩短其使用寿命。在这项研究中,选择模切工具为对象,通过激光熔覆将高速钢粉和304不锈钢粉末的混合物作为梯度熔覆层涂覆在AISI / SAE 1045钢的表面上。采用响应面方法的中心成分设计,在多层,多道熔覆层的孔面积与其加工参数之间建立数学模型:激光功率(LP),扫描速度(SS),气体流量(GF)和重叠率(OR)。通过方差分析和检验指标验证了该模型。通过优化工艺参数以获得最小孔面积的实际实验值与预测值相比显示出4.41%的误差。包层的内部结构是均匀的。诸如孔和裂缝的缺陷满足要求。与基材相比,切削刃的耐磨性约为4.5倍。研究结果为二维梯度材料上激光熔覆成型质量的控制和预测以及工艺参数的优化提供了理论指导。

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