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选区激光熔化成形TC4钛合金力学性能及其工艺关联性
Mechanical Properties and Parameter Optimization of TC4 Alloy by Additive Manufacturing

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龙旭 1   贾啟普 1   李娇 1   种凯楠 1   杜雷鸣 2   潘向南 2   常超 3  
文摘 增材制造技术可实现复杂结构的无模具,快速、近净成形,高致密度。为保证零件的成形质量,建立金属增材制造技术工艺参数-微观结构-宏观力学性能的关联机制十分关键。采用选区激光熔化技术(SLM)制备四种不同工艺参数组合的Ti-6Al-4V合金(又称TC4),对比和讨论试件微观形貌。通过单轴拉伸试验从宏观角度研究准静态条件下材料本构行为,并确定流动应力和应变极限等关键力学性能参数,通过纳米压痕试验从微观角度研究0.01/s和0.10/s压痕应变率下材料荷载-位移曲线,并基于连续刚度法获取材料弹性模量和硬度。最后通过引入约束因子和位错密度,结合单轴拉伸和纳米压痕试验所得的力学性能,讨论SLM成形过程中激光能量输入密度对TC4材料宏观力学性能的影响规律。通过开展工艺参数与力学性能的相关性分析,从更具统计意义的角度阐明SLM工艺参数-微观结构-宏观力学性能的关联机制,进而更加有效地确定可用于调控SLM成形TC4材料宏观力学性能的工艺参数优化组合。研究结果可为提升TC4材料力学性能的SLM成形工艺参数提供指导。
其他语种文摘 Additive manufacturing can realize die free,rapid and near net shape of complex structures with high densities.In order to ensure the forming quality of manufactured components,it is critical to establish a correlation mechanism between processing parameters,microstructure,and macro-mechanical properties in the additive manufacturing for metals.The Ti-6Al-4V alloy (referred to as TC4) is created by selective laser melting (SLM) using four distinct processing settings,and the microstructures are compared and discussed.The constitutive behavior is studied by uniaxial tensile tests under quasi-static conditions to determine the key mechanical properties such as flow stress and ultimate strain.The load-displacement curves of the TC4 alloy under the indentation strain rates of 0.01/s and 0.10/s are studied by nanoindentation experiments,in which the Young's modulus and hardness are obtained based on the continuous stiffness method.Finally,the effect of laser energy density during the SLM processing on the macro-mechanical properties of TC4 alloy is discussed by adopting the concepts of constraint factor and dislocation density,which combines the mechanical properties obtained from uniaxial tension and nanoindentation experiments.From a statistical standpoint,a correlation analysis is performed between SLM processing parameters and mechanical properties to elucidate the prevailing pathways among SLM processing parameters,microstructural morphology,and macro-mechanical properties.As a result,the most effective combination of processing parameters is identified and then used to tune the macro-mechanical properties of SLM-fabricated TC4 alloy.A guidance is provided for the SLM forming process parameters to improve the mechanical properties of TC4 material.
来源 中国表面工程 ,2022,35(2):215-223 【核心库】
DOI 10.11933/j.issn.1007-9289.20210924002
关键词 选区激光熔化 ; TC4 ; 微观形貌 ; 力学性能 ; 工艺参数优化
地址

1. 西北工业大学力学与土木建筑学院, 西安, 710072  

2. 中国科学院力学研究所, 非线性力学国家重点实验室, 北京, 100190  

3. 太原科技大学应用科学学院, 太原, 030024

语种 中文
文献类型 研究性论文
ISSN 1007-9289
学科 一般工业技术;金属学与金属工艺
文献收藏号 CSCD:7247846

参考文献 共 22 共2页

1.  宋建丽. 激光熔覆成形技术的研究进展. 机械工程学报,2010,46:29-39 CSCD被引 81    
2.  Brandl E. Additive manufactured AlSi10Mg samples using Selective Laser Melting (SLM):Microstructure,high cycle fatigue, and fracture behavior. Materials & Design,2012,34:159-169 CSCD被引 62    
3.  赵志国. 激光选区熔化成形技术的发展现状及研究进展. 航空制造技术,2014,463:46-49 CSCD被引 34    
4.  Wysocki B. Microstructure and mechanical properties investigation of CP titanium processed by selective laser melting (SLM). Journal of Materials Processing Technology,2017,241:13-23 CSCD被引 17    
5.  Bormann T. Tailoring selective laser melting process parameters for NiTi implants. Journal of Materials Engineering & Performance,2012,21:2519-2524 CSCD被引 13    
6.  Jervremovic D. The analysis of the mechanical properties of F75 Co-Cr alloy for use in selective laser melting (SLM) manufacturing of removable partial dentures (RPD). Metalurgija,2012,51:171-174 CSCD被引 1    
7.  Thijs L. A study of the microstructural evolution during selective laser melting of Ti-6Al-4V. Acta Materialia,2010,58:3303-3312 CSCD被引 198    
8.  Alfaify A Y. Critical evaluation of the pulsed selective laser melting process when fabricating Ti64 parts using a range of particle size distributions. Additive Manufacturing,2018,19:197-204 CSCD被引 3    
9.  杨晶晶. 激光选区熔化成形Ti-6Al-4V合金的组织演变及调控,2017 CSCD被引 8    
10.  张升. 选择性激光熔化成形TC4钛合金开裂行为及其机理研究. 机械工程学报,2013,49:21-27 CSCD被引 47    
11.  肖美立. 激光选区熔化Ti-6Al-4V合金工艺参数对致密度及显微硬度的影响. 热加工工艺,2019,48:105-108 CSCD被引 4    
12.  Kumar P. Micro-and meso-structures and their influence on mechanical properties of selectively laser melted Ti-6Al-4V. Acta Materialia,2018,154:246-260 CSCD被引 32    
13.  Du L. Influence of processing parameters of selective laser melting on high-cycle and very-high-cycle fatigue behavior of Ti-6Al-4V. Fatigue & Fracture of Engineering Materials & Structures,2020,44:240-256 CSCD被引 5    
14.  张贵锋. 固态相变原理及应用,2011 CSCD被引 1    
15.  胡光立. 钢的热处理(原理和工艺),2011 CSCD被引 1    
16.  Boyer G. ASM International,physical metallurgy of titanium alloys, materials properties handbook titanium alloys,1994 CSCD被引 1    
17.  Hay J. Continuous stiffness measurement during instrumented indentation testing. Experimental Techniques,2010,34:86-94 CSCD被引 5    
18.  Weaver J S. Mechanical characterization of Ti-6Al-4V titanium alloy at multiple length scales using spherical indentation stress-strain measurements. Materials & Design,2016,111:463-472 CSCD被引 5    
19.  石文天. 选区激光熔化TiA1合金裂纹产生机制及工艺优化试验研究. 稀有金属,2019,43:349-358 CSCD被引 9    
20.  Long X. Strain rate shift for constitutive behaviour of sintered silver nanoparticles under nanoindentation. Mechanics of Materials,2021,158:103881 CSCD被引 4    
引证文献 6

1 周安 选区激光熔化成形过程监测技术研究进展 中国表面工程,2023,36(4):36-50
CSCD被引 3

2 吴向举 等离子弧增材制造Ti-6Al-4V工艺参数对成形性和显微硬度的影响 中国表面工程,2023,36(6):186-194
CSCD被引 0 次

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