- Home
- Books
- Advanced Materials for Emerging Applications (Innovations, Improvements, Inclusion and Impact)
- Chapter
Critical Parameters Influencing High-Strain Rate Deformation of Materials Using the Split-Hopkinson Pressure Bar Apparatus: A Review
- Authors: P. S. Dhanush1, Anil Chandra Adamane Ramesh2, T. K. Nikhil Vyas3, Anuradha Nayak Majila4, Chandru D. Fernando5, S. Seetharamu6
-
View Affiliations Hide AffiliationsAffiliations: 1 Department of Mechanical Engineering, B.M.S. College of Engineering, Bengaluru, Karnataka560019, India 2 Department of Mechanical Engineering, B.M.S. College of Engineering, Bengaluru, Karnataka560019, India 3 Department of Mechanical Engineering, B.M.S. College of Engineering, Bengaluru, Karnataka560019, India 4 Gas Turbine Research Establishment, Defense Research and Development Organization, Bengaluru, Karnataka 560093, India 5 Gas Turbine Research Establishment, Defense Research and Development Organization, Bengaluru, Karnataka-560093, India 6 National Design and Research Forum, The Institution of Engineers (India), Bengaluru, India
- Source: Advanced Materials for Emerging Applications (Innovations, Improvements, Inclusion and Impact) , pp 550-575
- Publication Date: May 2024
- Language: English
Critical Parameters Influencing High-Strain Rate Deformation of Materials Using the Split-Hopkinson Pressure Bar Apparatus: A Review, Page 1 of 1
< Previous page | Next page > /docserver/preview/fulltext/9789815196771/chapter-17-1.gifStrength and ductility of materials at high strain rate of deformation are important for design engineers working in a wide range of industries, especially in gas turbine engine blades. Split Hopkinson pressure bar (SHPB) apparatus is a popular method of characterizing the high strain rate behaviour of materials. The results from the split-Hokinson pressure bar tests are further used in mathematical models such as Johnson-Cook model, Zerelli - Armstrong model and so on for correlation purposes. Split-Hopkinson pressure bar tests take place in a very short duration of time (less than a second) but require significant effort in arranging the apparatus (several hours to days) and replications could be a daunting task. The present review work focuses on some of the critical test parameters that influence the test results. Specimen dimensions, its alignment in the split-Hopkinson pressure bar apparatus and location of strain gauges are critical parameters to be checked before the test (pre-testing) while selecting the accurate signal data processing technique (post-testing) to filter the noise which is critical to get meaningful test results. This review work focuses on the effect of three pre-testing parameters and signal data processing techniques on the high strain rate test results and summarizes the salient findings.
-
From This Site
/content/books/9789815196771.chapter-17dcterms_subject,pub_keyword-contentType:Journal105