Natarajan Senthilnathan, Gopalan Venkatachalam, Rajan Raja Annamalai Arunjunai, Jen Chun-Ping
School of Mechanical Engineering, Vellore Institute of Technology (VIT), Vellore 632014, India.
Centre for Innovation and Product Development, Vellore Institute of Technology (VIT), Chennai 600127, India.
Materials (Basel). 2021 Mar 28;14(7):1660. doi: 10.3390/ma14071660.
Tungsten heavy alloys are two-phase metal matrix composites that include W-Ni-Fe and W-Ni-Cu. The significant feature of these alloys is their ability to acquire both strength and ductility. In order to improve the mechanical properties of the basic alloy and to limit or avoid the need for post-processing techniques, other elements are doped with the alloy and performance studies are carried out. This work focuses on the developments through the years in improving the performance of the classical tungsten heavy alloy of W-Ni-Fe through doping of other elements. The influence of the percentage addition of rare earth elements of yttrium, lanthanum, and their oxides and refractory metals such as rhenium, tantalum, and molybdenum on the mechanical properties of the heavy alloy is critically analyzed. Based on the microstructural and property evaluation, the effects of adding the elements at various proportions are discussed. The addition of molybdenum and rhenium to the heavy alloy gives good strength and ductility. The oxides of yttrium, when added in a small quantity, help to reduce the tungsten's grain size and obtain good tensile and compressive strengths at high temperatures.
钨重合金是包括W-Ni-Fe和W-Ni-Cu的两相金属基复合材料。这些合金的显著特点是它们能够兼具强度和延展性。为了改善基础合金的机械性能并限制或避免对后处理技术的需求,向合金中掺杂其他元素并进行性能研究。这项工作聚焦于多年来通过掺杂其他元素来提高经典的W-Ni-Fe钨重合金性能的进展。对钇、镧等稀土元素及其氧化物以及铼、钽、钼等难熔金属的添加百分比对重合金机械性能的影响进行了批判性分析。基于微观结构和性能评估,讨论了以不同比例添加这些元素的效果。向重合金中添加钼和铼可提供良好的强度和延展性。少量添加钇的氧化物有助于减小钨的晶粒尺寸,并在高温下获得良好的拉伸强度和抗压强度。