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Effect of Deformation on the Microstructure of Cold-Rolled TA2 Alloy after Low-Temperature Nitriding

机译:低温氮化后冷轧TA2合金微观结构变形的影响

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In order to improve the low hardness and poor wear resistance of TA2, this paper proposes a composite process of cold-rolling and low-temperature plasma nitriding with recrystallization. This composite modification process can effectively achieve the dual goals of modifying the matrix structure and surface of TA2 alloy simultaneously. The cold-rolling experimental results indicate that when the deformation rate increases, the small-sized grains in the sample increase significantly, and the grain orientation changes from TD (transverse direction) to RD (rolling direction) and then to TD. The nitriding experimental results indicate that the {0001} basal surface texture deflected from the TD direction to the RD direction, {10-10} cylindrical texture components gradually increased, and the special orientation phenomenon of cylindrical and conical texture disappeared, it can be seen that an increase in the deformation rate promotes recrystallization. The XRD test results indicate that after low-temperature nitriding, metastable nitriding phase TiN0.26 is formed on the surface of TA2. The SEM morphology of the cross-section shows that a relatively special nitrided zone is formed, and mechanical performance test results indicate the wear resistance and hardness of the alloy increased.
机译:为了提高TA2的低硬度和耐磨性差,本文提出了一种冷轧和低温等离子体氮化重结晶的复合过程。该复合修改过程可以同时实现改变Ta2合金的矩阵结构和表面的双重目标。冷轧实验结果表明,当变形率增加时,样品中的小尺寸粒度显着增加,并且晶粒取向从Td(横向)变为RD(滚动方向),然后从TD(横向)变为TD。氮化实验结果表明,{0001}基底表面纹理从TD方向偏转到RD方向,【10-10】圆柱形纹理成分逐渐增加,圆柱形和锥形纹理的特殊方向现象消失,可以看出变形率的增加促进重结晶。 XRD试验结果表明,在低温氮化后,在Ta2的表面上形成稳定氮化相TiN0.26。横截面的SEM形态表明,形成了相对特殊的氮区,机械性能测试结果表明合金的耐磨性和硬度增加。

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