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RSM Based Experimental Investigation and Analysis into Laser Surface Texturing on Titanium using Pulsed Nd:YAG Laser

机译:基于RSM的实验研究和脉冲Nd钛激光表面纹理的分析:YAG激光

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Recently,production of defined surfaces with required tribological properties in different biomedical materials is in high demand.Amongst various non-traditional machining processes,laser surface texturing is a novel machining technique by which this type of tribological surfaces can be generated efficiently and effectively.In the present paper,an attempt has been made to carry out experimentation and analysis in laser surface texturing process on commercially available pure titanium material employing a pulsed Nd:YAG laser system.Response surface methodology (RSM) based design of experiments was implemented to conduct the experiments and further analysis of results obtained.Utilizing four process variables,each has five levels,experiments were conducted based on laser scanning methodology and surface roughness (Ra and Rz) were measured.Empirical models were also developed for establishing relationships between process parameters and performance criteria.Multi-objective optimization was conducted to achieve minimum value of surface roughness and contact angle.
机译:最近,在不同生物医学材料中具有所需的摩擦学性质的规定表面的生产是高的需求。驱动各种非传统加工工艺,激光表面纹理是一种新的加工技术,可以有效且有效地产生这种类型的摩擦学表面。本文的尝试已经尝试在使用脉冲Nd:YAG激光系统的市售纯钛材料上进行激光表面纹理化过程的实验和分析。响应表面方法(RSM)基于实验的设计进行了实施以进行实验和进一步分析得到的结果。ilize四个过程变量,每个都有五个水平,基于激光扫描方法进行实验,并测量表面粗糙度(RA和Rz)。还开发了用于在工艺参数和性能之间建立关系的阶散模范。标准.Multi-objective优化wa S进行以实现表面粗糙度和接触角的最小值。

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