共查询到16条相似文献,搜索用时 62 毫秒
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针对某薄壁TC4钛合金零件的电子束焊接,设计了焊接工装夹具,保证了焊接变形要求。通过工艺试验,确定了合理的焊接方案,成功的实现了该零件的电子束焊接。同时,针对其成功应用的研究过程,从焊接工艺及加工方案上总结出经验,为薄壁类钛合金零件的电子束焊接提供了借鉴依据。 相似文献
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氩弧焊和电子束焊是钛合金加工中两类常见的工艺方法,对比研究两种工艺对焊接接头力学性能的影响对其在工程中的合理选用具有重要的参考价值。完成了TC18钛合金氩弧焊接头和电子束焊接头的静力拉伸及旋转弯曲疲劳试验,并根据试验结果对两类焊接接头的力学性能进行了对比分析,采用统计学方法给出了二者的中值疲劳寿命SN曲线及疲劳极限。研究结果表明:氩弧焊接头焊缝区内晶粒粗大,使得材料的力学性能明显劣化;电子柬焊接头具有更高的抗拉强度与更好的高周疲劳性能,更有利于工程应用。 相似文献
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With the development of the manufacturing technology, electron beam welding(EBW) is capable of producing titanium alloy large parts in aero fields. To increase the applications and improve the properties, EBW with beam oscillation was investigated on TC4-DT alloy with50 mm thickness. We detected the welding samples by X-ray NDT, observed the microstructures of the welds, and tested the fatigue properties of the joints. The results showed that EBW with beam oscillation improved the weld morphology as well as welding quality, and the microstructure homogeneity of the welds and HAZ along the weld penetration were also improved. The fatigue properties of the joints with beam oscillation were more excellent than those of conventional EBW, even equal to those of the base metal under high stresses. The influences of the processing and the microstructure on the properties with beam oscillation were discussed. 相似文献
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激光选区熔化(SLM)增材制造技术常用于格栅、腔体结构、燃烧室组件等航空、航天、兵器领域复杂小型零件的制造.为了适应大尺寸零部件的制造,较为理想的方案是采用分段增材成形+拼焊连接的方案,针对SLM成形TC4钛合金进行了电子束焊接工艺验证研究,分析了SLM成形材料焊接气孔缺陷及其产生原因,探讨了不同焊接工艺对气孔缺陷的改... 相似文献
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针对民用航空发动机钛合金整体叶盘常用材料TA19开展其母材试件与电子束焊焊接试件在20,300,450℃的疲劳试验,通过焊接试件的焊缝材料断口与母材断口形貌的比较探讨了焊缝材料的疲劳破坏机理,并在104~106循环的疲劳寿命区间内采用Basquin模型分别建立了焊缝材料和母材的应力-疲劳寿命(S-N)曲线,结果显示母材试件与焊接试件的试验疲劳寿命大部分都落在了对应模型计算疲劳寿命的2倍线之内,表明试验得到的S-N曲线是合理的.焊接试件与母材试件的S-N曲线的对比分析表明,20℃时焊接试件的疲劳性能比母材试件略高,而在300℃和450℃时焊接试件与母材试件的疲劳性能差异随应力水平发生变化.但总地说来,在所关注疲劳寿命区间内,母材试件与焊接试件的计算疲劳寿命差异也在2倍线以内,初步表明两者的疲劳性能相当. 相似文献
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Post-weld single aging treatment(solution treatment at 510 ℃ for 1 h, water quenching,and aging at 155 ℃ for 16 h) and post-weld double aging treatment(solution treatment at 510 ℃ for 1 h, water quenching, aging at 155 ℃ for 16 h, and aging at 130 ℃ for 12 h) are carried out on Al-Cu-Li alloy joints by electron beam welding(EBW) respectively. The effects of aging treatments on microstructures and mechanical properties of welded joints are investigated. Results show that the mechanical properties of welded joints are obviously improved after both aging treatments. The strength coefficient of joints is increased from 0.64 in an as-welded condition(AW) to 0.90 after post-weld double aging treatment. Microstructure analysis shows that the precipitates of the fusion zone within grains and grain boundaries are less in the AW condition. After post-weld heat treatment(PWHT), a lot of fine needle-like phases T_1(Al_2 Cu Li) precipitate in grain boundaries of the fusion zone, and more horseshoe-shaped β' (Al_3 Zr) particles precipitate within grains. In addition,grains of the fusion zone are refined after post-weld double aging treatment, which leads to an effect of grain refinement strengthening. Consequently, the mechanical properties of welded joints are greatly improved. 相似文献
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在温度为910℃,压力为3.4MPa条件下对TC4钛合金板材进行了扩散焊接,对获得的扩散焊接头取样进行金相观察,仅在接近接头表面材料深度为1mm范围内发现未焊合缺陷,其余部分焊合较好,表明在给定工艺下可获得质量良好的焊接头.随后对TC4扩散焊接头的力学性能进行了试验研究,分别开展了静拉伸试验、断裂韧性试验及焊缝附近区域的纳米压痕试验.试验结果表明,所制得的TC4扩散焊接头屈服强度为887MPa,抗拉强度为948MPa,断裂韧性为101.9MPa·m1/2,均与原材料的性能相差不大.纳米压痕试验的结果显示,接头焊缝区和母材区的显微弹性模量分别为180.2GPa和178.0GPa. 相似文献