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Effect of Transverse Oscillation on Tensile Properties of Mild Steel Weldments

机译:横向振荡对低碳钢焊缝拉伸性能的影响

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In this paper an attempt has been made to study the effects of frequency and amplitude of transverse oscillation on yield strength, ultimate tensile strength, breaking strength and percentage of elongation of weldments. The weldments were prepared under different oscillatory conditions. The frequency and amplitude of transverse oscillations during experimentation were varied form 0 to 400 Hz and 0 to 40 um respectively. The tensile properties of the weldments prepared under oscillatory conditions are improved whereas the percentage of elongation reduced when compared with the stationary welded test specimens. It has been observed that increase in frequency of transverse oscillation results in the improved tensile properties of the weldments except the percentage of elongation which decreases with increase in frequency of oscillation. At 80 Hz frequency higher amplitude show greater value of tensile strength than lower amplitude. But at higher frequencies (300 Hz and 400 Hz) lower amplitudes show a significant increase in tensile strength value than higher amplitudes. The increase in tensile strength under oscillatory condition is due to the grain refinement which is caused by dendrite fragmentation and grain detachment mechanism.
机译:本文尝试研究横向振荡的频率和幅度对屈服强度,极限抗拉强度,断裂强度和焊缝延伸率的影响。焊件是在不同的振荡条件下制备的。实验期间横向振荡的频率和幅度分别在0至400 Hz和0至40 um之间变化。与固定的焊接试样相比,在振荡条件下制备的焊件的拉伸性能得到了改善,而伸长率却降低了。已经观察到,横向振动频率的增加导致焊件的拉伸性能得到改善,除了伸长百分数随振动频率的增加而降低。在80 Hz频率下,较高的振幅显示出比较低的振幅更大的拉伸强度值。但是在较高的频率(300 Hz和400 Hz)下,较低的振幅显示的拉伸强度值比较高的振幅显着增加。振荡条件下抗拉强度的增加是由于晶粒细化,这是由枝晶碎裂和晶粒分离机制引起的。

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