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Effect of laser welding on the mechanical and degradation behaviour of Fe-20Mn-0.6C bioabsorbable alloy

机译:激光焊接对Fe-20mN-0.6C生物可吸收合金机械和降解行为的影响

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The present work aims at exploring the influence of laser welding on the functional behaviour of a Fe-20Mn-0.6C (wt.%) bioabsorbable alloy. At first, the selection of the most suitable process speed (40?mm/s) was done in order to obtain a full penetration joint with limited taper. Then, microstructural and mechanical analyses of welded sheets confirmed suitable performance of the joint, without porosity, thus preserving chemical composition, mechanical resistance and ductility even after welding. In particular, the base material comprised both γ austenite and ε martensite, while the welded samples showed a further type of martensite, namely α’. Moreover, ultimate tensile strength (1095?MPa and 1104?MPa in base and welded material, respectively) and elongation to failure (61.3% and 60.9%, respectively) were almost not influenced by the welding process. Considering the absorbable nature of these alloys, static immersion degradation tests were carried out, and confirmed that the surface of the welded bead did not exhibit a significant variation of the material degradation rate after 14 days in modified Hanks’ solution. Finally, a significant accumulation of degradation products, mainly (Fe,Mn)CO3, was observed along the joining line.
机译:目前的作品旨在探讨激光焊接对Fe-20mN-0.6℃(wt.%)生物可吸收合金的功能性的影响。首先,完成最合适的工艺速度(40毫米)以获得具有有限锥度的完全渗透接头。然后,焊接板的微观结构和机械分析证实了关节的合适性能,无孔隙率,因此即使在焊接之后也会保持化学成分,机械性和延展性。特别地,基础材料包括γαuStenite和ε马氏体,而焊接样品显示出另一种类型的马氏体,即α'。此外,极限拉伸强度(1095〜MPa和1104mPa,分别为底部和焊接材料)和对抗衰力伸长(分别为61.3%和60.9%)几乎不受焊接过程的影响。考虑到这些合金的可吸收性质,进行了静浸渍降解试验,并确认焊接珠的表面在修饰的Hanks溶液中14天后没有表现出材料降解速率的显着变化。最后,沿着接合线观察到脱脂产物的显着积累,主要是(Fe,Mn)CO 3。

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