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采用冷金属过渡方法(CMT)对铝和镀锌钢板异种材料进行了熔钎焊连接.使用扫描电镜(SEM)、能谱分析(EDAX)和拉伸试验对焊接接头界面区显微组织及接头性能进行研究.试验结果表明,铝和镀锌钢能得到成形良好的搭接接头.在CMT熔钎焊的方法下,形成了中间厚两边薄的界面区,并且在熔化区一侧边缘形成了富锌区,界面区组织成分也由致密的FeAl3金属间化合物层变为α固溶体和FeAl3化合物混合层,而富锌区是由富铝的α固溶体和残留的铝组成.在进行拉伸试验时,断裂发生在铝母材的热影响区,接头强度为72.09MPa. 相似文献
3.
在高频感应钎焊的过程中,要获得良好的钎焊接头,必须要根据接头材料的物理性能选择合适频率的高频电源,采用计算机数值分析手段建立了感应加热电源及其频率范围的选择数值分析模型。研究表明,数值解析法可以作为高频感应钎焊感应加热设备设计的重要方法。在对高频电源电流频率等参数的选择时,利用数值解析模型所得到的解析近似解进行频率选择比传统经验公式更精确。因为后者由平面电磁波在导电媒质中的传播特性导出,更适合于板状结构感应加热时频率的选择。而对于管状或其它复杂形状,利用数值解析解可以较好地对高频电源的频率进行优化选择。 相似文献
4.
采用X射线衍射、透射电镜和电子衍射技术对Fe3Al/Q235真空扩散焊界面附近的微观相结构进行了试验研究。试验结果表明,当加热温度1050~1080℃,保温时间60min,压力9.8MPa时,Fe3Al金属间化合物与Q235钢扩散焊界面附近形成了明显的扩散过滤区,该过渡区由Fe3Al相和a-Fe(Al)固深体构成,显微硬度约为480~540HM,不存在含铝校较高的高硬度脆性相。有利于提高Fe3Al/Q235扩散过滤区的韧性,提高扩散焊接头的抗裂纹能力。扩散过滤区中的Fe3Al相与a-Fe(Al)固溶体之间存在着(110)a-Fe(Al)//(011)Fe3Al和[001]a-Fe(Al)//[100]Fe3Al的晶体学取向关系。 相似文献
5.
In this study, TiB2 cermet and TiAl-based alloy are vacuum brazed successfully by using Ag-Cu-Ti filler metal.The microstructural analyses indicate that two reaction products, Ti ( Cu, Al ) 2 and Ag bused solid solution ( Ag ( s. s ) ) , are present in the brazing seam, and the iuterface structure of the brazed joint is TiB2/TiB2 Ag ( s. s ) /Ag ( s. s ) Ti ( Cu,Al)2/Ti( Cu, Al)2/TiAl. The experimental results show that the shear strength of the brazed TiB2/TiAl joints decreases us thebrazing time increases at a definite brazing temperature. When the joint is brazed at 1 223 K for 5 min, a joint strength up to 173 MPa is achieved. 相似文献
6.
Friction stir welding of AZ31 magnesium alloy 总被引:3,自引:0,他引:3
Friction stir welding (FSW) is an new solid-phase joining technology which has more advantages over fusion welding methods in welding of aluminum and other non-ferrous metals. The effects of welding parameters on mechanical properties and microstructure during friction stir welding of AZ31 magnesium alloy were studied in this paper. Microstructures and mechanical properties of the joints were investigated by means of optical microscopy, scanning electric microscopy ( SEM ) , micro-hardness analysis, and tensile test. Experimental results show that the magnesium alloy can be successfully welded by FSW method, and the ultimate tensile strength (UTS) of FSW joint reaches up to 90 percent of base metal. The microstructures of welded joints exhibit the variation from dynamically recrystallized fine grains to greatly deformed grains. Hardness in nugget zone was found lower than the base metal but not too obvious. 相似文献
7.
The analysis of the microstructural characterization and phase composition of electron beam welded joint zones of Ti- 43Al-9V-O. 3Y alloy has been done in this study. The welded seam is mainly composed of B2 phase, the partial γ + α2 twophase lamellar structure and granular γm phase. And the lanthanon Y existed as YAl2 phase and served as grain refined. The impact of different cooling rates on joint microstructure, fracture characteristic and tensile strength were investigated. The high cooling rate restrained the structural transformation and resulted in the ordering structure. The fracture of the joint was brittle cleavage fracture because the ordering structure went against restraining the crack propagation. With the decrease of cooling rate, the transformation amounts of lamellar structure increased, and the fracture presented the layered and crosslayered characteristic. 相似文献
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9.
对2219-O铝合金进行了搅拌摩擦焊接,采用光学显微镜分析了接头的微观组织,采用拉伸试验方法评价了接头的力学性能.微观分析表明,在热机循环的共同作用下,焊核区(WNZ)发生了动态再结晶,形成了细小的等轴晶粒,并且沉淀相的数量较其它各区有所增加;热机影响区(TMAZ)晶粒被拉长、弯曲,发生了动态回复和部分再结晶,晶粒内部开始有新的晶粒生成;热影响区(HAZ)的晶粒发生粗化.力学性能测试结果表明,当转速为800r/min,焊接速度为200~400 mm/min时,接头与母材等强度,断裂发生在母材区;当焊接速度大于400mm/min时,接头的抗拉强度很低,断裂发生在缺陷处. 相似文献
10.
Effect of welding current on strength and microstructure in resistance spot welding of AZ31 Mg alloy
In this paper, resistance spot welding were performed on lmm-thickness magnesium AZ31B plates. The effect of welding current on the microstructure and tensile shear force was investigated. It was found that the welding current governed the nugget growth, and the nugget could not form if current levels were insufficient. The nugget revealed a homogeneous, equiaxed, fine-grained structure, which consisted of non-equilibrium microstructure of α-phase dendrites surrounded by eutectic mixtures of α and β( Mg17All2 ) in the grain boundaries. With increasing welding current, the size of grains in nugget would be more smaller and uniform, and the width of plastic rings would be larger. Tensile shear tests showed that tensile shear force of the joints increased with increasing welding current when the welding current was smaller than 17 000 A. The maximum tensile shear force was up to 1980 N. 相似文献