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891.
对动态控制低应力无变形(dynamically controlled low stress no - distortion,DC - LSND)铝合金 MAG 焊进行了数值仿真,利用数值仿真模型并结合优化算法对热沉参数进行了优化分析。通过对有限元软件的二次开发,实现了焊接热源程序的加载和热沉过程的加载。对比正常焊接过程,采用热沉实现了随焊激冷法后焊接残余应力降低。在其他条件热沉不变的条件下,随着热沉强度的增大,残余应力显著降低。在热沉强度不变的情况下,热沉与热源距离在30 mm 左右时,应力降低效果最为明显。  相似文献   
892.
在修理某发动机时,发现很多高压涡轮叶片叶尖出现超出使用技术条件规定的裂纹,导致大量叶片报废,分析认为裂纹的产生是"钉扎效应"的结果,而且是先腐蚀后开裂的。为修复这些高压涡轮叶片,缩短发动机修理周期、降低修理成本,采用高钨、锰含量的镍基超合金作为补焊材料,同时采用固体激光脉冲焊接的工艺方法对产生叶尖裂纹的高压涡轮叶片进行了修复。修复后的高压涡轮叶片经去除应力、热处理等工序步骤后,通过了热冲击试验、整机试车考核和装机使用,说明采用该种修理工艺修复的高压涡轮叶片可以满足装机使用要求。  相似文献   
893.
对20 mm厚的2219 C10S铝合金板材进行搅拌摩擦焊对接试验,在进给速度为100 mm/min的条件下,对比研究转速为400~550 r/min时的对接接头的内部缺陷、宏观形貌及微观组织、显微硬度和拉伸力学性能的差异。结果表明,当转速为400~500 r/min时,焊接接头无缺陷,能获得内部质量较高的焊接接头。随着转速的增加,焊核区“洋葱环”的间距和轴肩影响区的范围增大,焊核区和热力影响区的硬度的降低越明显。接头的拉伸性能随转速的增大而降低,拉伸强度最高可达到334 MPa,接头断裂模式主要为韧性断裂,断裂位置发生在后退侧的热力影响区与热影响区的交界处,与显微硬度最小位置相吻合。当转速增大至525 r/min时,焊缝出现表面点状缺陷;当转速达到550 r/min时,焊缝出现连续的犁沟缺陷。  相似文献   
894.
为解决空间推进系统直属组件轻量化需求,对新采用的铝合金材料进行了激光焊阈值特性研究。结果表明,铝合金激光焊阈值区间与焊接速度和离焦量的绝对值正相关,但正向变化幅度远低于不锈钢、镍合金和钛合金等材料。对于光束质量不同的激光焊机来说,光束的焦斑直径越小,实焦焊时阈值区间越低;光束的发散角越小,相同离焦量下阈值区间越低。在-12°~12°内,铝合金激光焊阈值区间与入射角无关。保护气的吹送方向和吹送速度基本不改变铝合金激光焊的阈值区间,此特性与不锈钢等材料略有区别。  相似文献   
895.
阐述了钎焊、摩擦焊技术在铝合金与不锈钢连接中的应用情况.此外,介绍了液相扩散连接、爆炸焊、超声波焊、表面活化连接等新型连接技术.  相似文献   
896.
开展了2219MCS 叉形环和2219C10S 短壳组成的锁底接头的搅拌摩擦焊工艺试验,详细分析了
搅拌针长度和前进侧位置对锁底接头Hook 型缺陷、力学性能、断裂方式的影响规律。结果表明:搅拌摩擦焊
锁底接头在短壳一侧存在Hook 型缺陷,短壳位于前进侧时的搭接界面上翘曲率和迁移量均大于叉形环位于
前进侧,且随着搅拌针长度的增加,搭接界面的向上迁移量逐渐增大。相同的焊透深度时,叉形环位于前进侧
的力学性能优于短壳位于前进侧;相同的前进侧位置时,随着焊透深度的逐渐增加,接头力学性能逐渐降低。
锁底接头搭接界面缺陷形貌及迁移量的变化是引起力学性能变化的主要原因。优化的试验结果显示,当焊透
深度和短壳板材厚度相同,且叉形环位于焊缝前进侧的力学性能最优,常温可达到300 MPa,低温可达到370
MPa,延伸率均超过3. 5%。锁底接头的拉伸断裂方式与焊缝前进侧位置密切相关。当短壳位于前进侧时,从
短壳一侧热力影响区断裂;当叉形环为前进侧时,从焊缝焊核区断裂。
  相似文献   
897.
《中国航空学报》2023,36(5):534-548
The dissimilar materials joining of C/C composites to T2 copper were performed successfully by thermo-compensated Resistance Brazing Welding (RBW) with AgCuTi filler powder. The interfacial microstructure, phase composition, and shear strength of the resistance brazed joints were investigated by the relevant analysis method. Experiment results indicated that the order affecting the shear strength of the C/C-Cu joint was welding current, welding pressure, and welding time in turn. The shear strength of backward thermo-compensated RBW was higher than that of forward thermo-compensated RBW due to the Peltier effect. The maximum shear strength of the C/C-Cu joint was 11.56 MPa in the optimized welding parameter with welding current of 8.0 kA, welding time of 60 ms, and welding pressure of 0.10 MPa by backward thermo-compensated RBW. The interface structure at the resistance brazed joint with this welding parameter was C/C composites/TiC/Cu (s.s)/T2 copper. The TiC phase was verified at the interface of the brazed joint by Scanning Electron Microscope (SEM), Energy-Dispersive X-ray Spectrometer (EDS), and X-ray Diffraction (XRD). Considerable fractures occurred in the C/C composites and partial fracture occurred at the interfacial reaction layer.  相似文献   
898.
《中国航空学报》2023,36(4):104-119
Dielectric Barrier Discharge (DBD) based turbulent drag reduction methods are used to reduce the total drag on a NACA 0012 airfoil at low angels of attack. The interaction of DBD with turbulent boundary layer was investigated, based on which the drag reduction experiments were conducted. The results show that unidirectional steady discharge is more effective than oscillating discharge in terms of drag reduction, while steady impinging discharge fails to finish the mission (i.e. drag increase). In the best scenario, a maximum relative drag reduction as high as 64 % is achieved at the freestream velocity of 5 m/s, and a drag reduction of 13.7 % keeps existing at the freestream velocity of 20 m/s. For unidirectional discharge, the jet velocity ratio and the dimensionless actuator spacing are the two key parameters affecting the effectiveness. The drag reduction magnitude varies inversely with the dimensionless spacing, and a threshold value of the dimensionless actuator spacing of 540 (approximately five times of the low-speed streak spacing) exists, above which the drag increases. When the jet velocity ratio smaller than 0.05, marginal drag variation is observed. In contrast, when the jet velocity ratio larger than 0.05, the experimental data bifurcates, one into the drag increase zone and the other into the drag reduction zone, depending on the value of dimensionless actuator spacing. In both zones, the drag variation magnitude increases with the jet velocity ratio. The total drag reduction can be divided into the reduction in pressure drag and turbulent friction drag, as well as the increase in friction drag brought by transition promotion. The reduction in turbulent friction drag plays an important role in the total drag reduction.  相似文献   
899.
To improve tensile-shear properties of fiction stir lap welded(FSLW) dissimilar Al/Mg joints, pin-tip profiles were innovatively designed and welding speed was optimized, and effects of them on formation, interface microstructure and mechanical properties of different FSLW joints were investigated. With increasing the welding speed, the tensile-shear load of FSLW joints produced by three pins presents an increasing firstly and then decreasing trend. Compared with Rpin, the hook and hole defect i...  相似文献   
900.
《中国航空学报》2023,36(8):454-471
A novel friction stir double-riveting welding (FSDRW) technology was proposed in order to realize the high-quality joining of upper aluminum (Al) and lower copper (Cu) plates, and this technology employed a Cu column as a rivet and a specially designed welding tool with a large concave-angle shoulder. The formations, interfacial characteristics, mechanical properties and fracture features of Al/Cu FSDRW joints under different rotational velocities and dwell times were investigated. The results showed that the well-formed FSDRW joint was successfully obtained. The cylindrical Cu column was transformed into a double riveting heads structure with a Cu anchor at the top and an Al anchor at the bottom, thereby providing an excellent mechanical interlocking. The defect-free Cu/Cu interface was formed at the lap interface due to the sufficient metallurgical bonding between the Cu column and the Cu plate, thereby effectively inhibiting the propagation of crack from the intermetallic compound layer at the lap interface between the Al and Cu plates. The tensile shear load of joint was increased first and then decreased when the rotational velocity and dwell time of welding tool increased, and the maximum value was 5.52 kN. The FSDRW joint presented a mixed mode of ductile and brittle fractures.  相似文献   
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