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首页> 外文期刊>Advances in Engineering Software >Surface hardening of commercially pure titanium by laser nitriding: Response surface analysis
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Surface hardening of commercially pure titanium by laser nitriding: Response surface analysis

机译:商业纯钛通过激光氮化的表面硬化:响应表面分析

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In this work laser surface nitriding was performed to enhance wear and erosion resistance of pure titanium by increasing its surface hardness while keeping the strength and ductility of the core for static and dynamic loading resistance. The Response Surface Methodology (RSM) in the Design of Experiment (DOE) statistical method is adopted in this research work to perform the experimental design, analysis and optimization of the laser nitriding process. Continuous wave CO_2 laser was used to melt the surface, and then nitrogen gas was incorporated into the melted pool to produce hard TiN. The Response Surface Design was first created using MINTAB program, and then the laser nitriding process was performed according to the planned design. Microhardness is then measured for each sample, which represents the response, and incorporated into the design matrix. Results are then analyzed and a RSM model was developed and verified. The model is then used to perform parametric study and optimization. The maximum measured microhardness based on the original RSM design was 1382 HV_(0.15). However, based on the model prediction, the optimal process parameters settings were found to be as: 2.84 kW laser power, 5 mm/s scanning speed and 2076 1/h nitrogen flow rate which would result in a maximum microhardness of approximately 1920 HV_(0.15).
机译:在这项工作中,进行了激光表面渗氮处理,以通过提高纯钛的表面硬度来增强纯钛的耐磨性和耐蚀性,同时保持芯的强度和延展性以抵抗静态和动态负载。本研究工作采用实验设计(DOE)统计方法中的响应面方法(RSM)进行激光氮化工艺的实验设计,分析和优化。使用连续波CO_2激光熔化表面,然后将氮气掺入熔化池中以生成硬TiN。首先使用MINTAB程序创建响应表面设计,然后根据计划的设计执行激光氮化工艺。然后测量每个代表响应的样品的显微硬度,并将其纳入设计矩阵。然后分析结果,并开发和验证RSM模型。然后将该模型用于执行参数研究和优化。基于原始RSM设计的最大测得显微硬度为1382 HV_(0.15)。但是,基于模型预测,发现最佳工艺参数设置为:2.84 kW激光功率,5 mm / s的扫描速度和2076 1 / h的氮气流速,这将导致最大显微硬度约为1920 HV_( 0.15)。

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