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- W2740806720 abstract "ABSTRACT Smart materials such as shape memory alloys have intrigued the scientific community for decades. They exhibit mechanical properties that other, more conventional alloys do not as they can undergo super-elasticity. Namely, this paper is focused on analyzing the performance of an active compression bandage (ACB) analytically. This ACB, which is capable of actively applying an altering external pressure on the lower limbs, has been prototyped using smart alloy technology. The ACB actuated by shape memory alloy (SMA) wires was designed and prototyped for potentially being used in future clinical studies to prevent or mitigate symptoms of lower extremity disorders. The prototyped ACB can apply an initial compression comparable to the one applied by commercial compression stockings by wrapping around the patient’s calf. Then the pressure can be increased based on the activation of the shape memory alloys by running current through them. In this work, a parametric study was conducted using a previously developed analytical model of the bandage based on a shape memory alloy constitutive model. This study evaluates the performance of the bandage for different diameters and numbers of wires, as well as the initial wrapping pressure. Results show a significant increase of actuation pressure due to an increase in the number of SMA wires for the same amount of applied electrical current. Furthermore, the initial pressure can have an effect on the actuation pressure after the martensite phase transformation. A larger diameter of the SMA wires results in a larger actuation pressure and also increases the required electrical current for starting the martensite to austenite phase transformation." @default.
- W2740806720 created "2017-08-08" @default.
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- W2740806720 date "2015-01-01" @default.
- W2740806720 modified "2023-09-26" @default.
- W2740806720 title "PARAMETRIC STUDY ON AN ACTIVE COMPRESSION BANDAGE PERFORMANCE" @default.
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