TC11钛合金单道选区激光熔化成形机理与工艺参数影响规律
PDF下载 (321)郑智予,束学道,陈思远,陆栩奔,杜李伟.TC11钛合金单道选区激光熔化成形机理与工艺参数影响规律[J].宁波大学学报(理工版),2023,36(5):18-23.DOI:10.20098/j.cnki.1001-5132.2022.1218
ZHENG Zhiyu,SHU Xuedao,CHEN Siyuan,LU Xuben,DU Liwei.Mechanism and influence of process parameters on single track selective laser melting forming of TC11 titanium alloy[J].Journal of Ningbo University(Natural Science & Engineering Edition),2023,36(5):18-23.DOI:10.20098/j.cnki.1001-5132.2022.1218
| Title: | Mechanism and influence of process parameters on single track selective laser melting forming of TC11 titanium alloy |
| 作者: | 郑智予, 束学道, 陈思远, 陆栩奔, 杜李伟 |
| Author(s): | ZHENG Zhiyu, SHU Xuedao, CHEN Siyuan, LU Xuben, DU Liwei |
| 关键词: | 选区激光熔化; 工艺参数; 熔池形态; 熔池尺寸 |
| Keywords: | selective laser melting; process parameters; molten pool morphology; molten pool size |
| 分类号: | TG146.2+3 |
| DOI: | 10.20098/j.cnki.1001-5132.2022.1218 |
| 文献标识码: | A |
| 摘要: | 为探明TC11钛合金选区激光熔化成形规律, 以获得高质量TC11钛合金增材制造参数, 本文基于离散单元法建立粒径呈高斯分布的粉末层, 并将其通过UDF导入到Fluent软件, 建立介观尺度下的选区激光熔化CFD模型, 对不同工艺参数下的单道形貌缺陷以及熔池演变过程进行模拟, 阐明TC11钛合金单道选区激光熔化成形机理, 并结合实验验证仿真模型的准确性. 结果表明: 当能量密度较小时, 部分粒径较大或较为集中的粉末无法吸收足够的能量后熔化, 故易产生球化或单道不平直等缺陷; 在相同线能量密度下, 过高扫描速度也会导致缺陷形成, 且实验和仿真误差在15%以内. 研究结果可为提高TC11增材制造质量和工艺参数优化提供依据. |
| Abstract: | In order to find out the law of selective laser melting forming of TC11 titanium alloy and obtain high quality additive manufacturing parameters of TC11 titanium alloy, a powder layer with Gaussian particle size distribution is established based on discrete element method and imported into Fluent software through UDF to establish a mesoscopic selective laser melting CFD model. The morphology defects of single track and the evolution process of molten pool with different process parameters are simulated, and the forming mechanism of single track selective laser melting of TC11 titanium alloy is clarified. The accuracy of the simulation model is verified by experiments. The results show that when the energy density is small, some powders with larger or more concentrated particle size cannot absorb enough energy and melt, so it is easy to produce defects such as spheroidization or single channel irregularity. Under the same linear energy density, high scanning speed will also lead to the formation of defects and experimental and simulation errors within 15%. The results provide a basis for improving the additive manufacturing quality of TC11 and optimizing the process parameters. |
| 参考文献 /References: | [1] Banerjee D, Williams J C. Perspectives on titanium science and technology[J]. Acta Materialia, 2013, 61(3): 844-879. [2] 田宗军, 顾冬冬, 沈理达, 等. 激光增材制造技术在航空航天领域的应用与发展[J]. 航空制造技术, 2015, 58(11):38-42. [3] 张海洲, 白洁, 马瑞, 等. 激光选区熔化成形技术在航空航天发动机制造领域的研究与应用现状[J]. 推进技术, 2023, 44(3):6-21. [4] Wong K V, Hernandez A. A review of additive manufacturing[J]. ISRN Mechanical Engineering, 2012, 2012:1-10. [5] 柯林达, 殷杰, 朱海红, 等. 钛合金薄壁件选区激光熔化应力演变的数值模拟[J]. 金属学报, 2020, 56(3):374-384. [6] 汪豪杰, 杨芳, 郭志猛, 等. 3D打印钛及钛合金的发展现状及挑战[J]. 稀有金属材料与工程, 2021, 50(2):709-716. [7] 谢琰军, 杨怀超, 王学兵, 等. 激光参数和扫描策略对选择性激光熔化TC11合金成形性能的影响[J]. 粉末冶金工业, 2018, 28(2):18-24. [8] 陈浩然. 激光粉末床熔融TC11钛合金成形工艺研究[D]. 南京: 南京理工大学, 2020. [9] 窦恩惠, 肖美立, 柯林达, 等. 热处理对激光选区熔化成形TC11钛合金组织性能的影响[J]. 中国激光, 2021, 48(6):207-215. [10] Zhang L, Liao W H, Liu T T, et al. In situ elimination of pores during laser powder bed fusion of Ti-6.5Al-3.5Mo- l.5Zr-0.3Si titanium alloy[J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3):439-452. [11] 谢印开. 激光选区熔化Ti-6Al-4V温度场与流场的数值模拟[D]. 北京: 北京工业大学, 2018. [12] 冯一琦, 谢国印, 张璧, 等. 激光功率与底面状态对选区激光熔化球化的影响[J]. 航空学报, 2019, 40(12): 229-238. [13] 宫新勇. 激光熔覆沉积修复TC11钛合金叶片的基础问题研究[D]. 北京: 北京有色金属研究总院, 2014. [14] Shrestha S, Chou K. A build surface study of powder-bed electron beam additive manufacturing by 3D thermo-fluid simulation and white-light interferometry[J]. International Journal of Machine Tools and Manufacture, 2017, 121:37-49. [15] 袁伟豪. 激光选区熔化单道熔池热动态演变模拟与实验研究[D]. 武汉: 华中科技大学, 2020. [16] 向羽, 张树哲, 李俊峰, 等. Ti6Al4V的激光选区熔化单道成形数值模拟与实验验证[J]. 浙江大学学报(工学版), 2019, 53(11):2102-2109; 2117. |
| 备注/Memo: | 收稿日期: 2022-12-20. 宁波大学学报(理工版)网址: http://journallg.nbu.edu.cn/ 基金项目: 浙江省自然科学基金(LZ22E050002); 国家自然科学基金(51975301); 宁波市重大科技专项(2022Z064, 2022Z009, 2022Z015). 宁波大学学报(理工版)网址:http://journallg.nbu.edu.cn/第一作者: 郑智予(1996-), 男, 浙江慈溪人, 在读硕士研究生, 主要研究方向: 金属选区激光熔化成形. E-mail: 253533237@qq.com *通信作者: 束学道(1968-), 男, 安徽舒城人, 教授, 主要研究方向: 金属塑性成形与装备. E-mail: shuxuedao@nbu.edu.cn |