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Effect of processing parameters on the electromagnetic radiation emission during plastic deformation and crack propagation in copper-zinc alloys

机译:工艺参数对铜锌合金塑性变形和裂纹扩展过程中电磁辐射的影响

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This paper presents some investigations on the effect of processing parameters on the emission of electromagnetic radiation (EMR) during plastic deformation and crack propagation in copper-zinc alloys. Timing of the EMR emissions, maximum stress during crack instability, stress-intensity factor, elastic strain energy release rate, maximum EMR amplitude, RMS value of EMR amplitude, EMR frequency and electromagnetic energy release rate were analysed for the effect of rolling directions at different percentage of zinc content in Cu-Zn alloy specimens. The same parameters were also analysed for 68-32 Cu-Zn alloy specimens at different annealing temperatures and at different angles θ, to the rolling direction. EMR emissions are observed to be highly anisotropic in nature. At θ = 45° to 60°, marked changes in mechanical and electromagnetic parameters were observed. Specimens annealed at 500℃, just above the recrystallization temperature, and at 700℃, when grain-size growth is rapid, EMR responses have been found to have well-defined patterns.
机译:本文对铜锌合金塑性变形和裂纹扩展过程中工艺参数对电磁辐射(EMR)发射的影响进行了一些研究。分析了不同方向下轧制方向的影响,分析了EMR的排放时间,裂纹失稳时的最大应力,应力强度因子,弹性应变能释放速率,最大EMR幅度,EMR幅度的RMS值,EMR频率和电磁能释放速率。 Cu-Zn合金样品中锌含量的百分比。还对68-32 Cu-Zn合金试样在不同的退火温度和相对于轧制方向的不同角度θ时分析了相同的参数。观察到EMR排放本质上是高度各向异性的。在θ= 45°至60°时,观察到机械和电磁参数的明显变化。样品在刚好高于再结晶温度的500℃和700℃退火,当晶粒尺寸快速增长时,已发现EMR响应具有明确的模式。

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