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Constitutive equation for hardened SKD11 steel at high temperature and high strain rate using the SHPB technique

机译:使用SHPB技术在高温高应变率下硬化SKD11钢的组成方程

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In this present work, dynamic tests have been performed on hardened SKD11 steel (62 Rockwell C hardness) specimens by means of a high temperature split Hopkinson pressure bar (SHPB) test system. Effects of temperature as well as those of strain and strain rate for the hardened steel are taken into account by using two ellipsoidal radiant heating reflectors with two halogen lamps and magnetic valve. The result obtained at high stain rates were compared with those at low strain rates under the different temperature. It was seen that the flow stress curves are found to include a work hardening region and a work softening region and the mechanical behavior of the hardened steel is highly sensitive to both the strain rate and the temperature. To determine the true flow stress- true strain, temperature relationship, specimens are tested from room temperature to 1073K at a strain rate form 0.01 s~(-1) to 104s~(-1): The parameters for a Johnson–Cook constitutive equation and a modified Johnson–Cook constitutive equation are determined from the test results by fitting the data from both quasi-static compression and high temperature-dynamic compression tests. The modified Johnson–Cook constitutive equation is more suitable for expressing the dynamic behavior of the hardened SKD 11 steel above the vicinity of the recrystallization temperature.
机译:在本工作中,通过高温拆分霍普金森压力棒(SHPB)测试系统,已经在硬化的SKD11钢(62罗克韦尔C硬度)样本上进行了动态测试。通过使用具有两个卤素灯和磁性阀的两个椭圆形辐射加热反射器考虑了温度和应变率和硬化钢的应变速率的影响。将在高染色率下获得的结果与在不同温度下以低应变速率的结果进行比较。可以看出,发现流量曲线包括工作硬化区域和工作软化区域,并且硬化钢的机械特性对应变速率和温度非常敏感。为了确定真正的流量应变 - 真菌应变,温度关系,以应变速率形式从室温测试到1073k,以0.01 s〜(-1)至104s〜(-1):Johnson-Cook本构方程的参数并且通过从准静态压缩和高温动态压缩测试中拟合数据,从测试结果确定改进的Johnson-cook组成方程。改进的Johnson-Cook本构式方程更适合于表达硬化的SKD 11钢的动态行为在重结晶温度附近的高于。

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