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Effect of electrification and chlorination on the microstructure and electrical properties of fine Al wires

机译:电气化与氯化对细铝线微观结构和电性能的影响

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In this study, Al-50 ppm Ni (AN0005) was fabricated into 15, 12, and 4 mil (375, 300, and 100 mu m, respectively) wires through the wire drawing process. The thick 12 and 15 mil wires exhibited an isometric crystal structure. A large plastic deformation of the thin 4 mil wire resulted in obvious grain refinement. Thin 4 mil AN0005 wires exhibited the best mechanical performance. In the fusing test, the platform area in I-V curve, called the over resistance zone (OR Zone). The change of wire diameter obtained by the fusing test does not affect the occurrence of the OR Zone and all wire diameters appear incandescent. The change of the fusing current conforms to the empirical formula, which increases as the wire diameter increases. The OR zone decreased with the increase in the diameter of AN0005 wires. During the incandescent stage, the Ni-rich granular eutectic cladding structure caused holes and reduced the electrical effective cross-sectional area, which then affected the electrical properties of the AN0005 wires. In the chlorination test, AN0005 wires of three diameters were soaked in a saturated saline solution for various durations. The mechanical strength of the wires did not change considerably, but the cracks on the surface of the wire because of chlorination caused reduced ductility. The results of the study indicated that aluminum wires were resistant to chloride ion attacks.
机译:在本研究中,通过线拉伸过程将Al-50ppm Ni(An0005)制成15,12和4密耳(375,300和100μm)。厚12和15密耳电线显示出等距晶体结构。薄4米尔导线的大塑性变形导致明显的晶粒细化。薄4密MIL AN0005电线显示出最佳的机械性能。在融合测试中,I-V曲线中的平台区域,称为超电阻区(或区域)。通过熔断试验获得的线径的变化不会影响或区域的发生,并且所有导线直径出现白炽灯。熔化电流的变化符合经验公式,随着线径增加而增加。随着AN0005电线直径的增加,该或区域降低。在白炽阶段期间,富含Ni的颗粒共晶包层结构引起孔并降低了电气有效的横截面积,然后影响了AN0005线的电性能。在氯化试验中,在饱和盐水溶液中浸泡30005根,用于各种持续时间。电线的机械强度没有显着变化,但由于氯化导致线的表面上的裂缝引起了降低的延展性。研究结果表明,铝线对氯离子攻击耐药。

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