首页> 外文会议>ASME international mechanical engineering congress and exposition >FREQUENCY EFFECT OF TORSION ON ROTATING BENDING FATIGUE BEHAVIOR OF GAS TUNGSTEN ARC (GTA) WELDED AISI 1018 AND AISI 4140 WELDED JOINTS
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FREQUENCY EFFECT OF TORSION ON ROTATING BENDING FATIGUE BEHAVIOR OF GAS TUNGSTEN ARC (GTA) WELDED AISI 1018 AND AISI 4140 WELDED JOINTS

机译:扭转对焊接钨极氩弧焊(AISI 1018和AISI 4140焊接接头)的弯曲弯曲疲劳行为的频率影响

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Fatigue failures of welded structure are subjected to occur due to multiaxial fatigue load and torsion. In the current research work, the frequency effect of torsion on rotating bending fatigue load is analyzed on AISI 1018 steel and AISI 4140 steel. To perform rotating bending torsional fatigue test of welded and un-welded specimens, a unit was designed and manufactured. Gas Tungsten Arc (GTA) welding was carried out on round bar of AISI 1018 steel and AISI 4140 steel welded using ER70-S2 filler metal for welded specimen. Later, the influence of torsional frequency on rotating bending with torsion is analyzed on both base metal and welded structures. The frequency of torsion was applied on the specimens were -500 cycle, 1000 cycle, 1500 cycle, 2000 cycle and 2500 cycle. From the analysis, fatigue life of AISI 1018 and AISI 4140 base metal specimens (rotating bending and torsion) were not affected when torsion was applied at different frequencies. However, fatigue behavior of welded AISI 1018 and AISI 4140 specimens were highly affected by the frequency of torsion. For torsion applied at every 500 cycles, 83.8% reduction of fatigue life was observed for AISI 1018 welded specimen with respect to AISI 1018 base metal specimens. In addition, torsion applied for every 1000, 1500, 2000, and 2500 cycles; 81.9%, 80%, 77.1%, and 72.4% reduction on fatigue life were observed for AISI 1018 welded specimen compare to AISI 1018 base metal specimens, respectively. Welded AISI 4140 specimens experienced less change in fatigue life compare to welded AISI 1018 specimens. For torsion applied at every 500 cycles, 73.9% fatigue life reduction was observed for welded AISI 4140 specimens compare to AISI 4140 base metal specimens. For torsion applied at every 1000, 1500, 2000, and 2500 cycles; 65.2%, 60.8%, 50%, and 43.5% fatigue life reduction occurred on welded AISI 1018 specimen. Moreover, hardness measurements for welded specimens of AISI 4140 and AISI 1018 were performed longitudinally. For welded AISI 1018 specimen , 14.8% and 9.7% hardness decrease was observed longitudinally compare to AISI 1018 base metal specimen at heat-affected zone (HAZ) and from heat-affected zone through weld zone, respectively. For welded AISI 4140 specimen, 26.3% reduction of hardness value was observed compare to AISI 4140 base metal through heat-affected zone for longitudinal analysis. Moreover, fracture surface analysis was performed on the welded and non-welded specimens to understand the fracture behavior.
机译:由于多轴疲劳负荷和扭转,对焊接结构的疲劳失效发生。在目前的研究工作中,在AISI 1018钢和AISI 4140钢上分析了扭转弯曲疲劳负荷的频率效应。为了进行焊接和未焊接标本的旋转弯曲扭转疲劳试验,设计和制造了一个单元。气体钨弧(GTA)焊接在AISI 1018钢和AISI 4140钢的圆形条上进行,使用ER70-S2填充金属焊接用于焊接标本。后来,在基础金属和焊接结构上分析扭转频率对扭转旋转弯曲的影响。扭转频率施加在标本上为-500周期,1000个循环,1500周期,2000周期和2500周期。根据分析,当在不同频率下施加扭转时,AISI 1018和AISI 4140基础金属样品(旋转弯曲和扭转)的疲劳寿命不会受到影响。然而,焊接AISI 1018和AISI 4140标本的疲劳行为受到扭转频率的高度影响。对于在每500个循环中施加的扭转,对于AISI 1018焊接标本相对于AISI 1018基础金属标本,观察到疲劳寿命的83.8%。此外,扭转施加每1000,1500,2000和2500次循环;对于AISI 1018焊接标本,观察到疲劳寿命的81.9%,80%,77.1%和72.4%分别与AISI 1018基础金属标本进行比较。焊接AISI 4140标本经历了疲劳寿命的变化较少,与焊接AISI 1018标本相比。对于在每500个循环中施加的扭转,对于焊接AISI 4140标本,观察到与AISI 4140基础金属样品相比,焊接AISI 4140标本的疲劳寿命减少73.9%。对于在每1000,1500,2000和2500次循环中施加的扭转;焊接AISI 1018样本发生65.2%,60.8%,50%和43.5%疲劳寿命减少。此外,纵向执行AISI 4140和AISI 1018的焊接标本的硬度测量。对于焊接AISI 1018,将纵向与AISI 1018基础金属样品分别观察到14.8%和9.7%的硬度降低,分别观察到AISI 1018基础金属样品和通过焊接区域的热影响区域。对于焊接AISI 4140试样,通过热影响区域与AISI 4140基金金属相比,观察到硬度值的26.3%降低,用于纵向分析。此外,对焊接和非焊接标本进行断裂表面分析,以了解裂缝行为。

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