邵阳趁嫉航天信息有限公司

3dptek logo

Repository

3D printing technology, process, application sharing

2024 2nd 3D Printing Science

May 22, 2024

The second Science 2024 article in the field of 3D printing technology was published on February 8th. A joint team from the University of Queensland, Australia (Jingqi Zhang et al.), Chongqing University (Ziyong Hou, Xiaoxu Huang), and the Technical University of Denmark has achieved in-situ alloying for the 3D printing process by adding Mo to Ti5553 metal powder.

Specifically, by precisely delivering molybdenum into the molten pool, molybdenum can act as a seed nucleus for crystal formation and refinement during each layer scan, facilitating the transition from large columnar crystals to a fine equiaxed and narrow columnar crystal structure. Molybdenum also stabilizes the desired β-phase and inhibits the formation of phase heterogeneity during thermal cycling, by which not only the strength of the 3D printed titanium alloys is improved, but also a perfect balance of ductility and tensile properties is achieved.

While TC4, the so-called workhorse of the titanium industry, has a recommended minimum elongation at break of 101 TP3T, the titanium 5553 prepared by this 3D printing has a great potential for application with a yield strength of 926 MPa and an elongation at break of 261 TP3T. The method is also expected to be applied to other metal powder mixtures and to customize different alloys with enhanced properties.

magnifierchevron-down
en_USEnglish
桃园市| 黔南| 固阳县| 广灵县| 同江市| 双江| 延庆县| 武宣县| 湘西| 三穗县| 中卫市| 安化县| 临西县| 宜昌市| 库尔勒市| 衡阳市| 吉木萨尔县| 社会| 长白| 晋宁县| 江达县| 沽源县| 喜德县| 宜黄县| 谢通门县| 井冈山市| 陈巴尔虎旗| 黄冈市| 图们市| 丰镇市| 大厂| 祥云县| 九台市| 云和县| 天峨县| 太原市| 迁西县| 巨野县| 天峻县| 体育| 青海省|