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Study on Tensile Property and Fracture of Welded Joint ofTi-6.5A1-2Zr-lMo-1V Alloy by Hydrogen Processing

机译:用氢气加工研究了焊接接头焊接接头的拉伸性能和骨折

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The microstructural evolution of TIG welded joint in Ti-6.5A1-2Zr- 1 Mo-1V alloy treated by thermo hydrogen processing was investigated by optical microscopy, transmission electron microscopy and scanning electronic microscopy and the mechanical properties of welded joints were tested and analysed. The results showed that 5-hydride formed after hydrogenising at 700°C for 3 hours, and it is a face-centered cubic crystal. And these hydrides brought a strong fuzzy effect on microstructure. A lot of rhombic martensite phase a" generated in the area of welded joint. Metastable (H) phase and a" phase were gradually decomposed to a and S phases during aging. Hydrides were dissolved, the hydrogen was removed from the alloy and the recrystallization occurred in the process of annealing in vacuum. After hydrogen treatment, the refinement effect of grains in the fusion area was very obviously, that is, coarse columnar grains changed to finer equiaxed grains. Non-equilibrium phase reduced in grains. After hydrogen treatment (hydrogenization at 700°C for 3 hours, eutectoid at 300°C for 8 hours and annealing at 750°C for 8 hours in vacuum), the tensile strength of welded samples increased by 25.7%, and the elongation increased by 37.6% compared with welded samples without hydrogen treatment. After hydrogen treatment, the surface morphology of tensile fracture was relative flatness.
机译:通过光学显微镜研究了Ti-6.5A1-2Zr-1的Tig焊接接头的微观结构演化,进行了光学显微镜,透射电子显微镜和扫描电子显微镜和焊接接头的力学性能,研究并分析了焊接接头的机械性能。结果表明,在700℃下氢化3小时后形成的5-氢化物,是中心的立方晶体。这些氢化物对微观结构带来了强烈的模糊作用。许多菱形马氏体相A“在焊接接头面积中产生。亚稳(H)相和”相位逐渐分解在老化期间逐渐分解。将氢化物溶解,从合金中除去氢,并在真空退火过程中进行再结晶。氢处理后,融合区域中的颗粒的细化作用非常明显,即粗柱晶粒变为更细的等轴晶粒。谷物中的非平衡阶段减少。氢处理后(700℃的氢化3小时后,300℃的eutectop 8小时,真空退火8小时),焊接样品的拉伸强度提高25.7%,伸长率增加37.6%与没有氢处理的焊接样品相比。氢处理后,拉伸骨折的表面形态相对平坦度。

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