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Measurement of local strain and heat propagation during high-temperature testing in a split-Hopkinson tension bar system

机译:在分体式霍普金森张力杆系统中进行高温测试期间的局部应变和热传播的测量

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Aluminium alloys are commonly used by the industry due to their good mechanical properties and their relatively low density. An accurate prediction of the behaviour of aluminium alloys under a wide range of temperatures and strain rates is important in numerical simulations of forming processes or applications involving adiabatic heating like penetration and crash situations. Several tests are needed at low, medium and high strain rates to study this behaviour. This paper will focus on the high strain rate test rig, which is a split- Hopkinson tension bar system (SHTB), the acquisition system for strain measurements, and a thermal analysis of the bars due to heating of the sample. A new way of doing local measurements with a high-speed camera will be presented. The thermal boundary conditions of the tests have been measured and simulated, and the results indicate that the stress wave propagation in the bars is not significantly affected by a local heating of the part of the bars which is closest to the sample.
机译:铝合金由于其良好的机械性能和相对较低的密度而在工业上被普遍使用。在涉及绝热加热(例如渗透和碰撞情况)的成形过程或应用的数值模拟中,准确预测铝合金在各种温度和应变速率下的行为非常重要。在低,中和高应变速率下,需要进行一些测试来研究这种行为。本文将重点介绍高应变率测试设备,该设备是霍普金森分体式拉杆系统(SHTB),用于应变测量的采集系统以及由于样品加热而引起的杆热分析。将介绍使用高速相机进行本地测量的新方法。测试和模拟了测试的热边界条件,结果表明,应力波在钢筋中的传播不受最靠近样品的钢筋局部加热的影响不大。

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