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    Modeling the Effects of Pressure on Solid-State Lithium–Sulfur Batteries

    Source: ASME Letters in Dynamic Systems and Control:;2026:;volume( 006 ):;issue:001::page 269
    Author:
    Cleary, Timothy P.
    ,
    Wang, Daiwei
    ,
    Wang, Donghai
    ,
    Fathy, Hosam K.
    ,
    Rahn, Christopher D.
    DOI: 10.1115/1.4069755
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Abstract. All-solid-state lithium–sulfur batteries (ASLSBs) offer a superior alternative to traditional lithium-ion batteries, given their potential for higher energy densities and enhanced safety. This article explores ASLSBs under controlled stress and constant-strain scenarios, develops data-driven models that predict cell voltage given input current, and correlates observations with cell states. The empirical data collected under varying operational pressure conditions are used to perform system identification of equivalent circuit model parameters that account for variations in the externally applied force resulting from dynamic operational pressure. Cell capacity fades rapidly, but analysis reveals correlations between usable energy, cell impedance, and applied pressure. Most notable are observations of capacity recovery, which show that reduced capacity due to operations at lower pressure is reversible. This work also demonstrates that variations in battery stress over time in a constant volume provide a means to estimate the cell’s state of charge. This study highlights the crucial role of pressure in enhancing the performance of ASLSBs.
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      Modeling the Effects of Pressure on Solid-State Lithium–Sulfur Batteries

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    contributor authorCleary, Timothy P.
    contributor authorWang, Daiwei
    contributor authorWang, Donghai
    contributor authorFathy, Hosam K.
    contributor authorRahn, Christopher D.
    date accessioned2026-08-23T07:58:52Z
    date available2026-08-23T07:58:52Z
    date copyright2026/01/01
    date issued2026
    identifier issn2689-6117
    identifier otheraldsc-25-1051.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4315894
    description abstractAbstract. All-solid-state lithium–sulfur batteries (ASLSBs) offer a superior alternative to traditional lithium-ion batteries, given their potential for higher energy densities and enhanced safety. This article explores ASLSBs under controlled stress and constant-strain scenarios, develops data-driven models that predict cell voltage given input current, and correlates observations with cell states. The empirical data collected under varying operational pressure conditions are used to perform system identification of equivalent circuit model parameters that account for variations in the externally applied force resulting from dynamic operational pressure. Cell capacity fades rapidly, but analysis reveals correlations between usable energy, cell impedance, and applied pressure. Most notable are observations of capacity recovery, which show that reduced capacity due to operations at lower pressure is reversible. This work also demonstrates that variations in battery stress over time in a constant volume provide a means to estimate the cell’s state of charge. This study highlights the crucial role of pressure in enhancing the performance of ASLSBs.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleModeling the Effects of Pressure on Solid-State Lithium–Sulfur Batteries
    typeJournal Paper
    journal volume6
    journal issue1
    journal titleASME Letters in Dynamic Systems and Control
    identifier doi10.1115/1.4069755
    journal fristpage269
    journal lastpage271
    page3
    treeASME Letters in Dynamic Systems and Control:;2026:;volume( 006 ):;issue:001
    contenttypeFulltext
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