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Effect Of Strain Ageing In Welded And Non Welded Low Carbon Steel

机译:焊接和非焊接低碳钢的应变时效影响

摘要

Low carbon steels are susceptible to strain ageing as a result of which there is an increase in yield strength at the cost of ductility. These steels are used for structural applications, in which welding is used as a method of joining. There are certain regions away from the weldment which pass through the temperature range of 80 to 2500c during cooling after welding. Since in many of the structures like ship building these steels are welded in deformed condition thus the above said regions are subjected to straining and ageing, thus leading to strain ageing.udIn the present study an attempt has been made to study the effect of strain ageing in welded low carbon steel and the results are compared with those obtained after strain ageing of the same steel in the non welded condition. The parameters used were : (1) % The extent of pre-strain of pre-strain used was 6 ± 2 %.(2)The temperature of ageing used was 150 ±300c.(3)The time of ageing used was 4 ± 2 hrs. Using the method of Statistical Design Of Experiments the results were analysed to develop regression equations for welded as well as non welded steels. The equations developed are shown in eqn(1) and eqn(2) respectively.udFor non welded: ΔY = 24.04 - 2.18X1 + 4.9 X2 + 1.4 X3 – 0.03X1X2 – 0.018X1X3 + 35X2X3 - 0.28X1X2X3
机译:低碳钢易于应变时效,结果是屈服强度的增加以延展性为代价。这些钢用于结构应用,其中焊接被用作连接方法。在焊接后的冷却过程中,有一些远离焊件的区域会通过80至2500c的温度范围。由于在诸如造船的许多结构中,这些钢在变形状态下被焊接,因此上述区域经受应变和时效,从而导致应变时效。 ud在本研究中,已经尝试研究应变的影响。将低碳钢焊接后的时效进行比较,并将结果与​​相同钢在非焊接状态下进行时效时的结果进行比较。使用的参数为:(1)%使用的预应变的预应变程度为6±2%。(2)使用的老化温度为150±300c。(3)使用的老化时间为4± 2小时使用实验统计设计的方法,对结果进行了分析,以开发焊接和非焊接钢的回归方程。已开发的方程式分别在eqn(1)和eqn(2)中显示。 ud对于非焊接:ΔY= 24.04-2.18X1 + 4.9 X2 + 1.4 X3 – 0.03X1X2 – 0.018X1X3 + 35X2X3-0.28X1X2X3

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