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Experimental Identification of the Degree of Deformation of a Wire Subjected to Bending

机译:经过弯曲的电线变形程度的实验识别

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摘要

This study provides experimental verification of analytical results on maximum strain epsilon(max) in elements fabricated by bending a stainless steel wire around a cylinder with given dimensions. The method of measuring the thermal electromotive force (TEMF) of a thermocouple formed by joining the deformed metal specimen to a copper (Cu) conductor showed an increase in the thermal electromotive force coefficient (TEMFC) during heating with increasing degree of plastic deformation. For known values of plastic deformation produced by straining X5CrNi1810 stainless steel wire specimens of empty set2.8 mm diameter, the TEMF was determined as a function of the extent of deformation of the thermocouple consisting of the deformed steel wire specimen and the copper conductor. Based on the correlation (calibration curve), it was shown that the relative strain of the element fabricated by bending the same wire (made of X5CrNi1810 stainless steel, empty set2.8 mm in diameter) around the cylinder of empty set10 mm diameter is 23.8%.
机译:该研究提供了通过在具有给定尺寸的圆筒周围弯曲的不锈钢线而制造的最大菌株ε(MAX)的分析结果的实验​​验证。通过将变形金属样品连接到铜(Cu)导体形成的热电偶的热电电动势(温度)的方法显示,在加热过程中随着塑性变形程度的增加,热电动势系数(Temfc)的增加。对于通过应变X5CrNi1810的塑性变形值,通过应变2.8mm直径的不锈钢线标本产生的塑性变形,Temf被确定为由变形的钢丝样本和铜导体组成的热电偶变形程度的函数。基于相关性(校准曲线),表明通过弯曲相同的电线(由X5Crni1810不锈钢制成,直径为X5Crni1810不锈钢制成,直径为空SET2.8mm的直径)的相对应变为23.8 %。

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