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首页> 外文期刊>Journal of Physics: Conference Series >Dynamic testing and characterization of advanced materials in a new experiment at CERN HiRadMat facility
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Dynamic testing and characterization of advanced materials in a new experiment at CERN HiRadMat facility

机译:Cern Hiradmat设施新实验中先进材料的动态测试与特征

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摘要

An innovative and comprehensive experiment (named "Multimat") was successfully carried out at CERN HiRadMat facility on 18 different materials relevant for Collimators and Beam Intercepting Devices. Material samples, tested under high intensity proton pulses of 440 GeV/c, exceeding the energy density expected in HL-LHC, ranged from very light carbon foams to tungsten heavy alloys, including novel composites as graphite/carbides and metal/diamond without and with thin-film coatings. Experimental data were acquired relying on extensive integrated instrumentation (strain gauges, temperature sensors, radiation-hard camera) and on laser Doppler vibrometer. This allows investigating relatively unexplored and fundamental phenomena as dynamic strength, internal energy dispersion, nonlinearities due to inelasticity and inhomogeneity, strength and delamination of coatings and surfaces. By benchmarking sophisticated numerical simulations against these results, it is possible to establish or update material constitutive models, which are of paramount importance for the design of devices exposed to interaction with particle beams in high-energy accelerators such as the HL-LHC or FCC-hh.
机译:创新和全面的实验(名为“Multimat”)在Cern Hiradmat设施上成功开展了18种不同材料,用于准直器和光束拦截设备。在440 gev / c的高强度质子脉冲下测试的材料样品超过HL-LHC中预期的能量密度,从非常轻的碳泡沫到钨重合金,包括新颖的复合材料,如石墨/碳化物和金属/金刚石,没有薄膜涂层。获得实验数据依赖于广泛的集成仪器(应变计,温度传感器,辐射相机)和激光多普勒振动计。这允许研究由于无弹性和不均匀性,强度和分层引起的动态强度,内部能量分散,非线性的相对未探明和基本的现象。通过对这些结果进行复杂的数值模拟,可以建立或更新材料本构模型,这对于暴露于与高能量加速器(例如HL-LHC或FCC)的粒子束接触的设备的设计至关重要HH。

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