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Influence of Nd: YAG Laser Parameters on Tensile Behaviour, Microhardness and Surface Roughness of Ni-Cr Alloy for Dental Prostheses

机译:ND:YAG激光参数对牙科假体牙科施工中Ni-Cr合金的拉伸行为,显微硬度和表面粗糙度的影响

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The paper presents the results of tensile behaviour, microhardness, surface roughness and microstructure of Ni-Cr alloy surface treated using high power Q-switched Nd: YAG laser have been studied. The major clinical disadvantage of the Ni - Cr is their lack of adequate ductility and yield strength. These properties combined made finishing, polishing and burnishing of conventional base metal alloys rather difficult. The dumbbell shaped tensile and cylindrical specimens of Ni-Cr were cast with a phosphate bonded investment material, using an induction melting centrifugal casting machine. The microhardness values of the surface melted layers increased as compared with Ni-Cr as - cast condition. The results of experiment showed that the surface treatment process has improved the % elongation, and surface roughness and microhardness as compared with untreated (as-cast). The improvement of the mechanical properties may be attributed due to grain refinement imparted by laser shock peening. The microstructure and changes in crystal orientation presented in the surface layer of the laser treated material were analyzed by optical, SEM as well as XRD. The chemical composition of laser treated surface was determined by EDX attached along with SEM. Vickers microhardness was measured as per ASTM E384 11el standard test method. The data were compared using ANOVA and post hoc-Tukey test. In our present study, the laser shock peening process shows, a substantial increase in surface roughness from Ra = 0.440μm before LSP treatment to 1.781μm and surface hardness of Ni-Cr was achieved by 53.5% the base material hardness (i.e. from 284 HV to 436 HV) and the mean values of % elongation of Ni-Cr alloy was higher (double) than that of after laser shock peening. The mean values of UTS, YS, modulus of elasticity of Ni-Cr were significantly lower after LSP. The experimental results showed that the mean values of percentage elongation of Ni-Cr increased by 200% after LSP. It is evident from the above experimentation, increase of ductility of Ni-Cr alloy facilities workability which could produce a reliable removable partial denture (RPD) metal framework for dental prostheses.
机译:本文介绍了使用高功率Q开关Nd:YAG激光处理的Ni-Cr合金表面的拉伸行为,显微硬度,表面粗糙度和微观结构的结果。 Ni - Cr的主要临床缺点是它们缺乏足够的延展性和屈服强度。这些性能结合完成,抛光和抛光常规基础金属合金相当困难。使用感应熔化离心铸造机用磷酸粘合的投资材料铸造Ni-Cr的哑铃形拉伸和圆柱形标本。与铸造条件相比,表面熔化层的显微硬度值增加。实验结果表明,与未处理(铸造)相比,表面处理过程改善了伸长率和表面粗糙度和微硬度。由于激光冲击喷丸赋予的晶粒细化,机械性能的改善可以归因于晶粒细化。通过光学,SEM和XRD分析激光处理材料表面层中呈现的微观结构和晶体取向的变化。通过EDX与SEM连接的激光处理表面的化学成分。根据ASTM E384 11EL标准试验方法测量维氏微硬度。使用ANOVA和后HOC-TUKEY测试进行比较数据。在我们目前的研究中,激光冲击喷丸过程显示,在LSP处理之前,从Ra =0.440μm的表面粗糙度大幅增加到1.781μm,Ni-Cr的表面硬度达到53.5%的基材硬度(即284 HV至436HV)和Ni-Cr合金的%伸长率的平均值高(双)比激光休克喷丸在激光震动之后。 LSP后,UTS,Ys,Ni-Cr弹性模量,镍镉模量显着降低。实验结果表明,LSP后Ni-Cr的伸长率伸长率的平均值增加了200%。从上述实验中明显看出,Ni-Cr合金设施的延展性的增加可以生产可用于牙科假肢的可靠可拆卸的部分义齿(RPD)金属框架。

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