Zurück zu den Ergebnissen
Bibliografischer Datensatz · Ansicht und Zugriff
Artículo

Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods

Tatsuo Nishina et al · Society for Science and Technology · 2022

Open Access verfügbar
Schnellübersicht. Prüfen Sie die grundlegenden Angaben und öffnen Sie den Inhalt über die Hauptschaltfläche. Die Seite zeigt nur die Informationen, die zum Identifizieren, Zitieren und Öffnen des Werks nötig sind.

Zugriff auf die Ressource

Öffnen Sie den Inhalt über die Hauptoption oder wählen Sie eine andere verfügbare Quelle.

DOAJ DOAJ Articles
Entrar por DOAJ
Hauptzugriff

Open Access verfügbar

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Ressource öffnen

Übersicht

Descripción general del contenido del recurso.

The correlation between the current interrupted transient response and the cycle deterioration of a commercially available lithium-ion secondary battery have been analyzed by applying a two-stage distributed constant circuit. It was better to take cycle deterioration by elapsed time rather than the charge/discharge cycles. The capacity deterioration rate depends on the upper limit of SOC. The capacity deterioration rate of SOC = 0-70 % and 0-90 % was similar but increased at SOC = 0-100 %. In the transient response analysis, the iR jump and the overvoltage at the composite electrode was similar for SOC = 50 % charge, 100 % charge, and 50 % discharge, but the iR jump at SOC = 0 % discharge was 1.7 times larger, and the overvoltage of the composite electrode was about 6 times larger. Contrary to the hypothesis that the overvoltage at both of the composite electrode and of iR jump increases with the capacity deterioration, only the conductance as the reciprocal of the iR jump showed good linear correlation to deterioration. The conductance of iR jump became the half of the initial value, the capacity loss became 25 %. On the other hand, there was no correlation with the overvoltage and conductance of the composite electrode. From these results, it was concluded that it was recommended to adopt the conductance of iR jump as the control item of BMS.

Zitieren

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, T. N. E. (2022). Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods. https://doi.org/10.11425/sst.11.101

MLA

al, Tatsuo Nishina et. "Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods." 2022. https://doi.org/10.11425/sst.11.101.

Chicago

al, Tatsuo Nishina et. 2022. "Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods.". https://doi.org/10.11425/sst.11.101.

Harvard

al, T. N. E. 2022, Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods, Society for Science and Technology, available at: https://doi.org/10.11425/sst.11.101 [Accessed 5 Aug. 2026].

Teilen und drucken

Speichern Sie den Datensatz, kopieren Sie den Permalink oder drucken Sie ihn als PDF.

Referenz exportieren

Exportieren Sie den Datensatz in gängigen Formaten für Literaturverwaltungsprogramme.

Ressourcendetails

Bibliografische Angaben zur Prüfung, ob es sich um das richtige Material handelt.

Titel
Analysis on cycle degradation of lithium-ion secondary batteries by applying current interruption methods
Autor / Mitwirkende
Tatsuo Nishina et al
Verlag
Society for Science and Technology
Erscheinungsjahr
2022
ISSN
2186-4942
ISSN
2186-4942
Sprache
Inglés
Kopiert