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AZ91B镁合金TIG焊接头组织与性能 总被引:15,自引:3,他引:15
使用AZ61和AZ91焊丝TIG焊AZ91B镁合金均可获得组织致密、焊缝与母材结合良好的焊接接头。焊缝组织由分枝发达、呈雪化状的α枝晶以及晶间(α Mg17Al2)低熔点共晶体组成;熔合区组织由细小的α-Mg等轴晶和晶间共晶体组成;热影响区组织接近母材,由粗大的α-Mg树枝品和分布于其间的α Mg17Al2共晶体组成。由于焊接过程中镁的过热蒸发,导致焊缝相对含Al量升高,共晶体含量增多,从而使焊缝热裂纹倾向增大。使用ER AZ61焊接AZ91B合金更易获得抗热裂性能高、与母材成分和组织一致性好的接头;而且接头抗拉强度和伸长率也较高。 相似文献
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利用钨极氩弧焊方法,在无填充材料和不开坡口条件下获得了AZ91D镁合金的焊接接头.利用扫描电镜和能谱分析了焊缝组织形貌和成分,测试了接头的显微硬度分布.结果表明:利用钨极氩弧焊方法,在焊接电流为152A、弧焊电压13.4V、焊接速度6.5 mm/s以及采用20 L/min的氩气焊接工艺条件下,可以实现3.4mm厚度的AZ91D镁合金的连接,接头情况良好;焊缝组织主要由黑色基体相α-Mg、白色块体(α+Mg17Al12)共晶体和灰色块体组成;焊缝宽度可达7mm,焊缝区平均显微硬度达到64.5 HV0.2,母材的显微硬度为56.3 HV0.2,接头显微硬度曲线过渡平滑. 相似文献
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在对5 mm厚的AZ31B镁合金板材进行A-TIG焊焊接过程中引入外加纵向磁场,试验所用的活性剂是以氧化物为基的活性剂,试验中改变磁场参数,对焊接接头的成形性、组织及性能进行试验和检测,研究磁场参数对镁合金A-TIG焊过程的影响规律.结果表明,活性剂及磁场共同作用可以改善焊接接头的成形性和组织形态,在磁场频率为10 Hz,磁场电流为2 A时,焊接接头的成形系数和性能得到了最佳值,此时成形系数为2.304,硬度为980.98 MPa;外加磁场通过电磁搅拌作用与活性剂相结合,改变了熔池的流行形态,使金属液由四周向中心流动并伴有搅拌,进而使焊缝熔深增大的同时细化组织,改善接头力学性能. 相似文献
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本文通过对铸态AZ31镁合金经不同条件的深冷处理继而热轧,分析其强度、韧性、延展性效应及其规律。深冷实验条件分别为-60℃/12h、-120℃/12h、-180℃/12h、-60℃/2h和-180℃/2h。结果表明:AZ31经适宜的深冷处理,晶粒得到细化,强度、韧性及延展性得到有效提高;与未经深冷处理试样相比,深冷处理时间为2h的两种试样中都出现大量孪晶;经-60℃/12h深冷处理后再进行轧制试样的显微组织最为细小均匀,屈服强度提高了25.8%,而延伸率则更是提高了4倍,由3.06%提高到了12.31%;深冷处理后的AZ31镁合金断口呈现出脆性断裂和塑性断裂集合的复合性断裂特征。 相似文献
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应用交流TIG焊对镁合金板材进行焊接,对焊接接头进行组织观察和力学性能测试.结果表明,焊缝区为细小的等轴晶粒,热影响区晶粒粗大,拉伸断裂多发生在晶粒粗大的热影响区. 相似文献
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Improving the fatigue property of welded joints for AZ31 magnesium alloy by ultrasonic peening treatment 总被引:3,自引:1,他引:2
The fatigue property of AZ31 magnesium alloy and its TIG welded joints were investigated. The ultrasonic peening treatment (UPT) was used to improve the fatigue property of the TIG welded joints, which was treated at the weld toe by the UPT process. The test results show that the fatigue strength of the base metal of AZ31 magnesium alloys is 57.8 MPa, and those of the fillet joint and the transverse cross joint are respectively 20.0 MPa and 17.2 MPa at 2×106 cycles. The fatigue strengths of two kinds of welded joints treated by the UPT are respectively 30.3 MPa and 24.7 MPa, which have been improved by 51.5% and 43.6%, respectively. The fatigue life of the fillet joint specimens is prolonged by about 2.74 times and the fatigue life of the transverse cross joint specimens is prolonged by about 1.05 times when the stress range is at 40.0 MPa. 相似文献
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研究焊接电流对涂覆TiO2活性剂AZ31镁合金板材活性钨极氩弧焊(A-TIG)焊接接头的宏观形貌、微观结构和力学性能的影响。实验结果表明,随着焊接电流的增加,焊缝的熔深和熔宽比增加,涂覆TiO2的焊缝表面形貌逐渐恶化;焊缝中α-Mg晶粒尺寸增加,颗粒状β-Mg17Al12数量增多。与普通的TIG焊相比,A-TIG焊缝熔深明显增加并且晶粒尺寸粗化。当焊接电流小于130 A时,涂覆TiO2焊接接头的极限抗拉强度值随着焊接电流的增加而增加,当焊接电流超过130 A时其抗拉强度值开始下降;焊缝热影响区和熔合区的平均显微硬度随着焊接电流的增加逐渐降低。 相似文献
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Microstructure and mechanical properties of wrought magnesium alloy AZ31B welded by laser-TIG hybrid 总被引:5,自引:0,他引:5
The laser-TIG hybrid welding was mainly used to weld the wrought magnesium alloy AZ31B. The tech-nical characteristics of laser-TIG hybrid welding process was investigated and the interactional mechanism between laser and arc was discussed, at the same time the microstructure and mechanical properties of the wrought magnesi-um alloy AZ31B using laser-TIG hybrid welding were analyzed by optical microscope, EPMA, SEM, tensile ma-chine, hardness machine. The experimental results show that the presence of laser beam boosts up the stability of the arc during high speed welding and augments the penetration of weld; the crystal grains of magnesium alloy weld are fine without porosity and cracks in the best welding criterion and the microstructure of HAZ does not become coarse obviously. The elements profile analysis reveals that Mg content in the weld is lower than that of the base metal, but Al content is higher slightly. Under this experimental condition, the wrought magnesium alloy AZ31B joint can be achieved using laser-TIG hybrid process and the tensile strength of the joint is equivalent to that of the base metal. 相似文献
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Effect of heat input on microstructure and properties of welded joint in magnesium alloy AZ31B 总被引:3,自引:0,他引:3
Using the optical microscope, tensile test machine and micro-hardness meter, the effect of heat input on the microstructure and mechanical properties in fusion welding joints of AZ31B wrought alloys was investigated systematically, the mechanism on joint properties losing was analyzed, and a valid method to improve joint properties of the magnesium alloy fusion welding was explored. The results show that the heat input has an obvious effect on the microstructure and properties. Under the condition of penetration, with the heat input decreasing, the crystal grain in the weld and heat-affected zone (HAZ) becomes fine, the width of HAZ becomes obviously narrow, and the molding of the weld is improved, so the tensile strength and elongation are increased and the hardness of joints is improved. When the heat input reaches 60 J/mm, the high quality joints can he gained. 相似文献