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2篇 您的检索式:作者名="Manfred Kohl"
    题名 作者 年代 出处 被引量
1TiNiHf/SiO_(2)/Si shape memory film composites for bidirectional micro actuation显示文摘The martensitic phase transformation in Ti_(40.4)Ni_(48)Hf_(11.6) shape memory alloys is leveraged for bi-directional actuation with TiNiHf/SiO_(2)/Si com-posites.The shape memory properties of magnetron sputtered Ti_(40.4)Ni_(48)Hf_(11.6) films annealed at 635℃-5 min are influenced by film thickness and the underlying substrate.Decreasing TiNiHf film thick-ness from 21μm to 110 nm results in the reduction of all characteristic transformation temperatures until a critical thickness is reached.Particularly,Ti_(40.4)Ni_(48)Hf_(11.6) thin films as low as 220 nm show transfor-mations above room temperature when deposited on SiO_(2) buffer layer,which is of great interest in nano-actuation.In comparison,220 nm films on Si substrates are austenitic at room temperature,and thus not suitable for actuation.Thermal fatigue tests on TiNiHf/SiO_(2)/Si bimorphs demonstrate better functional fatigue characteristics than freestanding films,with an average reduction of 15℃ after 125 cycles,with tempera-ture stabilization subsequently.Experimental bi-directional actuation results are promising in the development of bistable actuators within a PMMA/TiNiHf/Si trimorph composite,whereby the additional PMMA layer undergoes a glass transition at 105℃.With the aid of constitutive modeling,a route is elaborated on how bistable actuation can be achieved at micro-to nanoscales by showing favorable thickness combinations of PMMA/TiNiHf/Si composite.Sabrina M.Curtis Marian Sielenkamper Gowtham Arivanandhan Duygu Dengiz Zixiong Li Justin Jetter Lisa Hanke Lars Bumke Eckhard Quandt Stephan Wulfinghoff Manfred Kohl 2022International Journal of Smart and Nano Materials2022,13,2:0
2Shape memory alloy film damping for smart miniature systems显示文摘This paper presents a dynamic analysis of the free and forced vibration of a free-standing bridge of superelastic shape memory alloy TiNiCuCo film with ultra-low fatigue properties and evaluates its versatility for novel miniature scale damping applications.A thermodynamics-based finite element model is used to simulate the evolution of martensite phase fraction during load-induced martensitic phase transformation.The effects of pre-strain,strain rate and excitation load on the hysteresis of stress-strain characteristics are investigated in order to assess damping energies.The analysis is performed under non-isothermal conditions taking into account heat transfer and rate-dependence of release and absorption of latent heat.We show that damping energy can be maximized by applying an optimum pre-strain.A maximum damping capacity of 0.17 is determined for the case of complete stressstrain hysteresis loop during phase transformation.Shahabeddin Ahmadi Kiran Jacob Frank Wendler Manfred Kohl 2018International Journal of Smart and Nano Materials2018,9,3:0
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