Litcius/Paper detail

Hybrid Battery Thermal Management System with NiTi SMA and Phase Change Material (PCM) for Li-ion Batteries

Mohammad Joula, Savaş Dilibal, Gonca Mafratoglu, Josiah Owusu Danquah, Mohammad Alipour

2022Energies25 citationsDOIOpen Access PDF

Abstract

Poor heat dissipation and thermal runaway are most common in batteries subjected to fast charge or discharge and forced to work in hot or subzero ambient temperatures. For the safe operation of lithium-ion batteries throughout their lifecycle, a reliable battery thermal management system (BTMS) is required. A novel hybrid BTMS with a nickel-titanium (NiTi) shape memory alloy (SMA) actuated smart wire and phase change material (PCM) with expanded graphite (EG) is proposed in this study. A lumped electrochemical-thermal battery model is developed to analyze the efficiency of the proposed hybrid BTMS. The multiphysics BTMS is investigated by discharging at various electrical currents in both off-modes (inactivated SMA) and on-modes (activated SMA). Under on-mode BTMS operation, temperature elevation is reduced by 4.63 °C and 6.102 °C during 3 C and 5 C discharge, respectively. The proposed hybrid BTMS can be considered a competitive alternative for use in electrical vehicles due to its smart, compact, safe, and efficient performance in both cold and hot environments.

Topics & Concepts

Materials scienceBattery (electricity)SMA*MultiphysicsPhase-change materialShape-memory alloyNickel titaniumThermalNuclear engineeringComposite materialComputer scienceStructural engineeringFinite element methodEngineeringThermodynamicsAlgorithmPhysicsPower (physics)Advanced Battery Technologies ResearchAdvanced Battery Materials and TechnologiesAdvancements in Battery Materials