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Characterization and modeling of static recovery process of brass (Copper Zinc) alloy

机译:黄铜(铜锌)合金静态恢复过程的表征与建模

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摘要

Static recovery process is a process of restoration of material properties back to original state. This process only occurs just below recrystallization temperature. In static recovery condition the dislocation of material is annihilated so the internal stress of material could be released. To obtain fraction of recovery, brass will be pre strain in various amount of value before go through annealing process in various static recovery temperature. This experimental process starts with machining the specimens by using manual lathe machining. Then all the specimens will be annealed in recrystallization temperature which is 570˚C. Next process is pre strain in various pre strain performed by compression and tensile test machine. After that process, specimens will be annealed in recovery temperature which is below 290˚C. Then final pre strain will be performed to obtain yield strength of recovered material. Finally based on the experimental data Friedel’s model is used to acquire activation energy. From the calculation some of the activation energy value could be acquire such as -30 kJ/mol, 516 kJ/mol, 276 kJ/mol and 349 kJ/mol. These values of activation energy are compared with value obtained by using same method that used by Martinez which is in range of 216-357 kJ/mol. From the comparison percent of difference can be acquire. Since this percent of difference could be acquired, the significant value can be obtained and this is how Friedel’s model is validated.
机译:静态恢复过程是将材料属性恢复到原始状态的过程。该过程仅发生在重结晶温度以下。在静态恢复条件下,材料的位错被消除,因此可以释放材料的内部应力。为了获得回收率,在进行各种静态回收温度下的退火处理之前,会对黄铜进行各种值的预应变。该实验过程首先通过使用手动车床加工来加工样品。然后将所有样品在570˚C的再结晶温度下进行退火。下一个过程是通过压缩和拉伸测试机执行的各种预应变中的预应变。之后,样品将在低于290°C的恢复温度下退火。然后将执行最终的预应变以获得回收材料的屈服强度。最后,根据实验数据,使用Friedel模型获取活化能。通过计算,可以获得一些活化能值,例如-30kJ / mol,516kJ / mol,276kJ / mol和349kJ / mol。将这些活化能的值与通过使用Martinez所使用的相同方法在216-357 kJ / mol范围内获得的值进行比较。从比较中可以获取差异百分比。由于可以获取此百分比差异,因此可以获得显着价值,这就是Friedel模型得到验证的方式。

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