{"created":"2023-05-15T11:59:52.637936+00:00","id":6491,"links":{},"metadata":{"_buckets":{"deposit":"a72e5fae-c024-4640-9121-5a85fca7d186"},"_deposit":{"created_by":3,"id":"6491","owners":[3],"pid":{"revision_id":0,"type":"depid","value":"6491"},"status":"published"},"_oai":{"id":"oai:kyutech.repo.nii.ac.jp:00006491","sets":["8:9"]},"author_link":["799","27328","27333","1344","27326","27331","6646"],"item_21_alternative_title_18":{"attribute_name":"その他のタイトル","attribute_value_mlt":[{"subitem_alternative_title":"Solid piezoelectric - shell inverse piezoelectric partitioned analysis method for thin piezoelectric bimorph with conductor layers"}]},"item_21_biblio_info_6":{"attribute_name":"書誌情報","attribute_value_mlt":[{"bibliographicIssueDates":{"bibliographicIssueDate":"2019-09-28","bibliographicIssueDateType":"Issued"},"bibliographicPageEnd":"20190011-7","bibliographicPageStart":"20190011-1","bibliographicVolumeNumber":"2019","bibliographic_titles":[{"bibliographic_title":"日本計算工学会論文集"}]}]},"item_21_description_4":{"attribute_name":"抄録","attribute_value_mlt":[{"subitem_description":"アクチュエータやセンサに用いられる圧電バイモルフは,通常,薄く,かつ,電極やシム材といった導体が挿入されている.ゆえに,本研究では,導体層を有する薄い圧電バイモルフを対象とする.ソリッド要素は厚さ方向の任意の電位分布を表現することに適している.一方,シェル要素は薄い構造の解析に適している.ゆえに,ソリッド要素とシェル要素を,それぞれ,圧電解析と逆圧電解析に用い,それらを連成させるために,シェル要素とソリッド要素の間での変数変換を組み込んだブロックガウスザイデル法を用いる.導体層を有する圧電バイモルフを評価するために,逆圧電解析において,曲げ剛性と質量に対する材料の複合則を用い,圧電解析において,既存のプログラムを直接的に再利用可能な導体層の疑似圧電体評価法を提案する.構築した解析手法により,導体層を有する薄い圧電バイモルフのアクチュエータモード,および,センサーモードにおいて,従来の方法では困難な複雑な電位分布を正確に表現できて,従来の方法よりも効率的に解析できることを示す.","subitem_description_type":"Abstract"},{"subitem_description":"Piezoelectric bimorph for actuators and sensors is usually thin and includes conductor layers such as the electrode and the shim plate. Therefore, this study deals with the coupled piezoelectric and inverse-piezoelectric analysis of thin piezoelectric bimorph with the conductor layers. Solid elements can describe the various types of distributions of electric potential along the thickness, while shell elements are more appropriate to analyze the thin structures. Therefore, instead of using piezoelectric solid elements or piezoelectric shell elements for both the piezoelectric and inverse-piezoelectric analyses, the solid and shell elements are used to simulate the electrical and structural fields, respectively. The coupled algorithm is based on the block Gauss-Seidel method and the transformation method between the solid and shell variables. In the structural analysis, the rule of mixtures for the bending rigidity and the mass is used. A pseudo-piezoelectric evaluation method for the conductor is proposed in order to use the existing programs for the piezoelectric and inverse-piezoelectric analyses without any modification. Finally, it is demonstrated that the proposed method shows very accurate potential distributions in the actuator and sensor modes of the thin piezoelectric bimorph with the conductor layers.","subitem_description_type":"Abstract"}]},"item_21_description_60":{"attribute_name":"資源タイプ","attribute_value_mlt":[{"subitem_description":"Journal Article","subitem_description_type":"Other"}]},"item_21_full_name_3":{"attribute_name":"著者別名","attribute_value_mlt":[{"nameIdentifiers":[{"nameIdentifier":"27331","nameIdentifierScheme":"WEKO"}],"names":[{"name":"Takata, 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(〒820-8502飯塚市川津680-4)"},{"subitem_text_value":"九州工業大学大学院情報工学府 (〒820-8502飯塚市川津680-4)"},{"subitem_text_value":"九州工業大学大学院情報工学研究院 (〒820-8502飯塚市川津680-4)"},{"subitem_text_value":"九州工業大学大学院情報工学研究院 (〒820-8502飯塚市川津680-4)"}]},"item_21_text_63":{"attribute_name":"連携ID","attribute_value_mlt":[{"subitem_text_value":"8204"}]},"item_21_version_type_58":{"attribute_name":"著者版フラグ","attribute_value_mlt":[{"subitem_version_resource":"http://purl.org/coar/version/c_970fb48d4fbd8a85","subitem_version_type":"VoR"}]},"item_creator":{"attribute_name":"著者","attribute_type":"creator","attribute_value_mlt":[{"creatorNames":[{"creatorName":"高田, 黎"}],"nameIdentifiers":[{}]},{"creatorAffiliations":[{"affiliationNameIdentifiers":[],"affiliationNames":[{"affiliationName":""}]}],"creatorNames":[{"creatorName":"Ishihara, Daisuke","creatorNameLang":"en"},{"creatorName":"石原, 大輔","creatorNameLang":"ja"},{"creatorName":"イシハラ, 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Bimorph","subitem_subject_scheme":"Other"},{"subitem_subject":"Composite","subitem_subject_scheme":"Other"},{"subitem_subject":"Shell","subitem_subject_scheme":"Other"},{"subitem_subject":"Solid","subitem_subject_scheme":"Other"},{"subitem_subject":"Partitioned Iterative Method","subitem_subject_scheme":"Other"},{"subitem_subject":"Sensor","subitem_subject_scheme":"Other"},{"subitem_subject":"Actuator","subitem_subject_scheme":"Other"},{"subitem_subject":"Finite Element Method","subitem_subject_scheme":"Other"}]},"item_language":{"attribute_name":"言語","attribute_value_mlt":[{"subitem_language":"jpn"}]},"item_resource_type":{"attribute_name":"資源タイプ","attribute_value_mlt":[{"resourcetype":"journal 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