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首页> 外文期刊>JOM >Multi-material Additive Manufacturing by 3D Plasma Metal Deposition for Graded Structures of Super Duplex Alloy 1.4410 and the Austenitic Corrosion Resistant Alloy 1.4404
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Multi-material Additive Manufacturing by 3D Plasma Metal Deposition for Graded Structures of Super Duplex Alloy 1.4410 and the Austenitic Corrosion Resistant Alloy 1.4404

机译:多材料添加剂制造通过三维等离子体金属沉积,用于超双工合金1.4410和奥氏体耐腐蚀合金的渐变结构1.4404

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摘要

In this work, 3D plasma-metal deposition (3DPMD) is introduced as an innovative additive manufacturing process for multi-material components. The possibility of the production of multi-material parts in a layer-by-layer design with 3DPMD was investigated. Multi-material demonstrators with a continuous transition from the super duplex steel 1.4410 to the austenitic steel 1.4404 have been prepared and investigated. By analyzing the hardness, ferrite content, mechanical-technological properties and microstructure, it was shown that the production of multi-material components using 3DPMD is possible. The properties of the transition zone lie between those of the two pure metals. The evaluation of stress-strain curves showed that the strength of the transition zone is higher than that of the austenitic material. It can be concluded that the production of graded steel structures between 1.4404 and 1.4410 using 3DPMD is possible, and mixing of the materials in the transition zone does not weaken the component. The 3DPMD process is suitable to produce functionally graded multi-material components out of metal powders.
机译:在这项工作中,将3D等离子体 - 金属沉积(3DPMD)作为多材料组件的创新添加剂制造方法引入。研究了用3DPMD在层次层设计中生产多重材料部件的可能性。已经制备并研究了从超级双相钢1.4410到奥氏体钢1.4404的连续过渡的多材料示范器。通过分析硬度,铁氧体含量,机械技术性质和微观结构,表明使用3DPMD的生产多重组件是可能的。过渡区的性质位于两个纯金属之间。应力 - 应变曲线的评估表明,过渡区的强度高于奥氏体材料的强度。可以得出结论,使用3DPMD的1.4404和1.4410之间的分级钢结构的生产是可能的,并且过渡区中材料的混合不会削弱该部件。 3DPMD工艺适用于生产功能梯度的多材料组件,金属粉末。

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