A Review of the Split Hopkinson Pressure Bar : Techniques, Advances, and Applications
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Bibliographic Record
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- Material Type
- 記事
- Author/Editor
- Takashi YOKOYAMA
- Author Heading
- Periodical title
- Advanced experimental mechanics / Editorial board for advanced experimental mechanics [編]
- No. or year of volume/issue
- 10:2025.8
- Volume
- 10
- Pages
- 3-26
- Publication date of volume/issue (W3CDTF)
- 2025-08
- ISSN (Periodical Title)
- 2189-4752
- ISSN-L (Periodical Title)
- 2189-4752
- Publication (Periodical Title)
- Niigata : The Japanese Society for Experimental Mechanics
- Place of Publication (Country Code)
- JP
- Text Language Code
- eng
- Subject Heading
- NDLC
- Target Audience
- 一般
- Holding library
- 国立国会図書館
- Call No.
- Z63-D560
- Data Provider (Database)
- 国立国会図書館 : 国立国会図書館雑誌記事索引
- Bibliographic ID (NDL)
- 034429774
- Bibliographic Record Category (NDL)
- 632
- Summary, etc.
- <p>This review provides a comprehensive overview of experimental studies using the split Hopkinson pressure bar (SHPB) for evaluating the high strain rate properties of materials. It outlines key design guidelines and considerations for SHPB setups and describes data analysis methods across its four loading modes. Specialized versions of SHPB techniques and their novel applications are also introduced. A categorized summary of SHPB studies – organized by loading mode and material type – is presented in tabular form. Finally, the review discusses future developments and the potential for broad applications of SHPB techniques across various fields.</p>
- DOI
- 10.11395/aem.25-0008
- Access Restrictions
- インターネット公開
- Data Provider (Database)
- 科学技術振興機構 : J-STAGE
- Summary, etc.
- <p>This review provides a comprehensive overview of experimental studies using the split Hopkinson pressure bar (SHPB) for evaluating the high strain rate properties of materials. It outlines key design guidelines and considerations for SHPB setups and describes data analysis methods across its four loading modes. Specialized versions of SHPB techniques and their novel applications are also introduced. A categorized summary of SHPB studies – organized by loading mode and material type – is presented in tabular form. Finally, the review discusses future developments and the potential for broad applications of SHPB techniques across various fields.</p>
- DOI
- 10.11395/aem.25-0008
- Related Material (URI)
- Data Provider (Database)
- 国立情報学研究所 : CiNii Research
- Original Data Provider (Database)
- Japan Link Center雑誌記事索引データベース
- Bibliographic ID (NDL)
- 034429774