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Statistical Analyses of the Effects of Welding Processes on Load, Extension and Hardness Properties of Welded Mild Steel Plates

机译:焊接工艺对焊接温和钢板载荷,延伸和硬度特性影响的统计分析

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摘要

Mild steel plates of thicknesses 0.5 mm,0.6 mm,0.7 mm,0.8 mm,0.9 mm and 1.0 mm were prepared as test samples.After welding with the developed welding robot and manual electric arc welding machine these test samples were subjected to Tensile Strength and Hardness tests.All data obtained including hardness,load and extension were analyzed and the data produced from electric arc welding operations,the robot welding operations and un-welded plates(control)were compared with one another.The statistical analyses of hardness,load and extension tests for developed welding robot,manual electric arc welding and un-welded(control)mild steel plates of different thicknesses were carried out.The results revealed that for hardness,the developed robot welding has the highest mean value of 115.30,standard deviation value of 14.32 and variance value of 205.06.The descriptive statistics of the load showed that the developed robot welding samples collectively have the lowest mean value of 2,536.85,standard deviation value of 704.21 and variance value of 495,911.72.The descriptive statistics of the extension in which the developed robot welding samples collectively have the lowest mean value of 1.29,standard deviation value of 0.43 and variance value of 0.18 were also determined.The result for hardness showed homogeneity of variance among hardness tests of the samples,which implies variation in the hardness test among the tests of the samples since p-value is 0.038.While the result for loads shows homogeneity of variance among loads of the samples in which the result reveals that there is no variation in the loads among the tests of the samples since p-value is 0.322.The result for extension shows homogeneity of variance among extensions of the samples in which it revealed that there is variation in the extensions among the tests of the samples since p-value is 0.011.The analysis of variance(ANOVA)test result revealed that there is a significant difference in the hardness of the samples in which developed robot welding operation gave the highest hardness compared with electric arc welding and un-welded(CONTROL)since p-value is 0.028.The ANOVA test result for load revealed that there is no significant difference in the loads of the samples since p-value is 0.51.The ANOVA test result of the extension shows that there is a significant difference in the extension of the samples in which developed robot welding operation gave the lowest extension compared with electric arc welding and un-welded(CONTROL)since p-value is 0.001.The results of hardness also showed the mean difference of 16.48 between developed robot welding and un-welded(CONTROL)samples and 7.26 between developed robot welding and electric arc welding samples.Finally,for extension the mean difference of-5.28 between developed robot welding and un-welded(CONTROL)samples and-1.22 between developed robot welding and electric arc welding samples were established.
机译:制备厚度0.5mm,0.6mm,0.7mm,0.8mm,0.9mm和1.0mm的温和钢板作为试验样品。用发达的焊接机器人和手动电弧焊接机焊接地焊接这些试验样品抗拉强度和分析了硬度测试。分析了包括硬度,负载和扩展的数据,并彼此进行电弧焊接操作,机器人焊接操作和未焊接板(控制)产生的数据。硬度,负荷和负荷和开发焊接机器人的延长试验,手动电弧焊接和未焊接(控制)不同厚度的温和钢板。结果表明,对于硬度,开发的机器人焊接具有115.30的最高平均值,标准偏差值14.32和差异值为205.06.负荷的描述性统计显示,开发的机器人焊接样品共同具有2,536.85的最低平均值,突出D偏差值为704.21和方差值495,911.72.开发机器人焊接样品共同为1.29的最低平均值的扩展的描述性统计,也确定了0.43的标准差值和0.18的差异值。结果硬度显示出样品硬度试验之间的差异,这意味着样品的试验中的硬度测试变化,因为p值为0.038.当负载的结果显示出样品的负载之间的差异均匀性揭示了样品的测试中没有变化,因为p值为0.322。延伸结果显示了样本延伸的延伸之间的均匀性,其中揭示了在测试中存在延伸的变化由于p值的样品为0.011.方差分析(ANOVA)测试结果显示样品的硬度存在显着差异其中开发的机器人焊接操作与电弧焊接和未焊接(对照)相比提供了最高的硬度,因为P值为0.028。载荷的Anova测试结果显示,自P的样品的负载没有显着差异-Value是0.51.延伸的ANOVA测试结果表明,与电弧焊接和未焊接(控制)相比,所开发的机器人焊接操作的延伸的延伸延伸具有显着差异。值为0.001.硬度结果也显示出在发发的机器人焊接和未焊接(控制)样品之间的16.48的平均差异,并且在发达的机器人焊接和电弧焊样之间的7.26之间。最后,用于延伸 - 5.28之间的平均差异建立了开发的机器人焊接和未焊接(控制)样本和-1.22在开发的机器人焊接和电弧焊样之间。

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