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Sensing behavior of ferromagnetic shape memory Ni-Mn-Ga

机译:铁磁形状记忆Ni-Mn-Ga的感测行为

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Due to their large magnetic field induced strains and fast response potential, ferromagnetic shape memory alloys have mainly been studied from the perspective of actuator applications. This paper presents characterization measurements on a commercial Ni-Mn-Ga alloy with a goal to investigate its feasibility as a deformation sensor. Experimental determination of flux density as a function of quasistatic strain loading and unloading at various fixed magnetic fields gives the bias field needed for maximum recoverable flux density change. This bias field is shown to mark the transition from irreversible (quasiplastic) to reversible (pseudoelastic) stress-strain behavior. A reversible flux density change of 145 mT is observed over a range of 5.8 % strain and 4.4 MPa stress at a bias field of 368 kA/m. The alloy investigated therefore shows potential as a high-compliance, high-displacement deformation sensor.
机译:由于它们的大磁场诱导株和快速响应电位,主要从致动器应用的角度研究了铁磁性形状记忆合金。本文介绍了商业Ni-Mn-Ga合金的表征测量,其中目标是研究其作为变形传感器的可行性。各种固定磁场卸载和卸载作为函数的磁通密度的实验确定给出了最大可回收磁通密度变化所需的偏置场。该偏置字段显示为从不可逆转(Quasiasastic)到可逆(伪弹性)应变行为的过渡。在368ka / m的偏置场上观察到可逆磁通密度变化145mt和4.4MPa应力。因此,所研究的合金显示出作为高符合性,高位移变形传感器的潜力。

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