Microstructure and thermal properties of unalloyed tungsten deposited by Wire plus Arc Additive Manufacture

被引:37
作者
Marinelli, G. [1 ]
Martina, F. [1 ]
Lewtas, H. [2 ]
Hancock, D. [2 ]
Mehraban, S. [3 ]
Lavery, N. [3 ]
Ganguly, S. [1 ]
Williams, S. [1 ]
机构
[1] Cranfield Univ, WELPC, Cranfield MK43 0AL, Beds, England
[2] Culham Sci Ctr, CCFE, Abingdon OX14 3DB, Oxon, England
[3] Singleton Abbey, Dept Mat Engn, Singleton Pk Campus, Swansea SA2 8PP, W Glam, Wales
基金
英国工程与自然科学研究理事会; 欧盟第七框架计划;
关键词
WAAM; Tungsten; Microstructure; Thermal properties; Nuclear fusion; Thermal conductivity; MECHANICAL-PROPERTIES; DEFORMATION; DIFFUSIVITY; METALLURGY; PROGRESS;
D O I
10.1016/j.jnucmat.2019.04.049
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Tungsten is considered as one of the most promising materials for nuclear fusion reactor chamber applications. Wire + Arc Additive Manufacture has already demonstrated the ability to deposit defect-free large-scale tungsten structures, with considerable deposition rates. In this study, the microstructure of the as-deposited and heat-treated material has been characterized; it featured mainly large elongated grains for both conditions. The heat treatment at 1273 K for 6 h had a negligible effect on microstructure and on thermal diffusivity. Furthermore, the linear coefficient of thermal expansion was in the range of 4.5 x 10(-6) mu m m(-1) K-1 to 6.8 x 10(-6) mu m m(-1) K-1; the density of the deposit was as high as 99.4% of the theoretical tungsten density; the thermal diffusivity and the thermal conductivity were measured and calculated, respectively, and seen to decrease considerably in the temperature range between 300 K and 1300 K, for both testing conditions. These results showed that Wire + Arc Additive Manufacture can be considered as a suitable technology for the production of tungsten components for the nuclear sector. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:45 / 53
页数:9
相关论文
共 50 条
[31]   Investigation of thermal influence on weld microstructure and mechanical properties in wire and arc additive manufacturing of steels [J].
Panicker, Suraj ;
Nagarajan, Hari P. N. ;
Tuominen, Jari ;
Patnamsetty, Madan ;
Coatanea, Eric ;
Haapala, Karl R. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 853
[32]   Wire and arc additive manufacturing of HSLA steel: Effect of thermal cycles on microstructure and mechanical properties [J].
Rodrigues, Tiago A. ;
Duarte, V ;
Avila, Julian A. ;
Santos, Telmo G. ;
Miranda, R. M. ;
Oliveira, J. P. .
ADDITIVE MANUFACTURING, 2019, 27 :440-450
[33]   Wire plus Arc Additive Manufacture of 17-4 PH stainless steel: Effect of different processing conditions on microstructure, hardness, and tensile strength [J].
Caballero, Armando ;
Ding, Jialuo ;
Ganguly, Supriyo ;
Williams, Stewart .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2019, 268 :54-62
[34]   Microstructure and mechanical properties of a novel Cu-reinforced maraging steel for wire arc additive manufacturing [J].
Yang, Guang ;
Deng, Fangbin ;
Zhou, Siyu ;
Wu, Bin ;
Qin, Lanyun .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2021, 825
[35]   Characterization of an austenitic stainless steel preform deposited by wire arc additive manufacturing [J].
Souza, Lidia B. O. ;
Santos, Maria R. N. ;
Garcia, Regina P. ;
Fernandes, Diandro B. ;
Vilarinho, Louriel O. .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2022, 123 (9-10) :3673-3686
[36]   Microstructure, Mechanical Properties and Corrosion Behavior of Inconel 617 Superalloy Fabricated by Wire Arc Additive Manufacturing [J].
Avinash, B. ;
Subramanian, K. Manikanda ;
Rajkumar, V .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2023, 32 (14) :6270-6280
[37]   Microstructure, Mechanical Properties and Corrosion Behavior of Inconel 617 Superalloy Fabricated by Wire Arc Additive Manufacturing [J].
B. Avinash ;
K. Manikanda Subramanian ;
V. Rajkumar .
Journal of Materials Engineering and Performance, 2023, 32 :6270-6280
[38]   The Effect of Cu Content on the Microstructure and Properties of the Wire Arc Additive Manufacturing Al-Cu Alloy [J].
Ren, Lingling ;
Wang, Zhenbiao ;
Wang, Shuai ;
Li, Chengde ;
Wang, Wei ;
Ming, Zhu ;
Zhai, Yuchun .
MATERIALS, 2023, 16 (07)
[39]   Effect of hot-wire method on microstructure and mechanical properties of wire arc additive repaired superalloy [J].
Chen, Yuanhang ;
Zhang, Xiaoqian ;
Cheng, Tianpeng ;
Yang, Chunli .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2024, 916
[40]   Preliminary Investigation of Building Strategies of Maraging Steel Bulk Material Using Wire plus Arc Additive Manufacture [J].
Xu, Xiangfang ;
Ding, Jialuo ;
Ganguly, Supriyo ;
Diao, Chenglei ;
Williams, Stewart .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2019, 28 (02) :594-600