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DTSTART:20180503T130000
DTEND:20180503T140000
SUMMARY:DCAMM Seminar - A general overview on multiple necking and fragmentation problems in ductile solids subjected to high strain rates
DESCRIPTION:<p style="text-align: left;">A DCAMM seminar&nbsp;will be presented by </p>\n<p align="center" style="text-align: center;"><strong><span>Associate Professor Jos&eacute; A. </span></strong><span><strong>Rodr&iacute;guez-Mart&iacute;nez</strong></span><strong><span><br>\nDepartment of Continuum Mechanics and Structural Analysis<br>\nUniversity Carlos III of Madrid, Spain<br>\n</span></strong></p>\n<br>\n<p align="center" style="text-align: center; margin-bottom: 0pt;"><strong><span>\n</span></strong>\n<strong style="text-align: justify;"></strong></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><strong style="text-align: justify;">Abstract</strong><span style="text-align: justify;">:&nbsp;</span><strong>&nbsp;<br>\n<br>\n<span></span></strong><span>Understanding the fragmentation of ductile solids and structures subjected to high velocity impacts or blast loadings has importance in aerospace industry, military applications, civil engineering and geophysical applications. Meteoric cratering, explosive behaviour of projectiles or orbital debris impact on spacecraft structures are examples of events subjected to strain rates within the range &gt;10<sup>4</sup> s<sup>-1</sup>. From the early studies in this area &ndash; dating in the late 18<sup>th</sup> century &ndash; to the present time, an intense debate on the causes which reside behind the fragmentation of ductile solids has been carried out. In this seminar we will discuss canonical problems of rings (bars) and cylinders (plates) subjected to dynamic radial expansion. The principal advantage of the rapidly expanding ring and cylinder tests is that, due to the symmetry of the problems, the effects of wave propagation are nearly eliminated before flow localization occurs in the form of multiple necks which ultimately lead to the fragmentation of the sample. <br>\n<br>\nWithin this framework, we have developed a combined analytical / numerical methodology based on linear stability analyses and finite element calculations that provides new insights into the critical factors that control the processes of multiple necking and fragmentation. Our results suggest that the combination of inertia and stress multiaxiality effects inside a necked section lead to the promotion of a finite number of wavelengths that, at sufficiently high strain rates, determine/control, at least up to some extent, the neck spacing and fragments size. These results argue for the inclusion of a deterministic component within the fragmentation mechanisms and thus complement/enrich the statistical fragmentation theory developed by Mott in the 40s.</span></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><span>&nbsp;\n<span style="text-align: left;">&nbsp; <br>\n</span><span style="text-align: left;">Danish pastry, coffee and tea will be served 15 minutes before the seminar starts.<br>\n<br>\n</span></span></p>\n<p style="text-align: justify;">\nAll interested persons are invited.<br>\n<br>\n</p>
X-ALT-DESC;FMTTYPE=text/html:<p style="text-align: left;">A DCAMM seminar&nbsp;will be presented by </p>\n<p align="center" style="text-align: center;"><strong><span>Associate Professor Jos&eacute; A. </span></strong><span><strong>Rodr&iacute;guez-Mart&iacute;nez</strong></span><strong><span><br>\nDepartment of Continuum Mechanics and Structural Analysis<br>\nUniversity Carlos III of Madrid, Spain<br>\n</span></strong></p>\n<br>\n<p align="center" style="text-align: center; margin-bottom: 0pt;"><strong><span>\n</span></strong>\n<strong style="text-align: justify;"></strong></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><strong style="text-align: justify;">Abstract</strong><span style="text-align: justify;">:&nbsp;</span><strong>&nbsp;<br>\n<br>\n<span></span></strong><span>Understanding the fragmentation of ductile solids and structures subjected to high velocity impacts or blast loadings has importance in aerospace industry, military applications, civil engineering and geophysical applications. Meteoric cratering, explosive behaviour of projectiles or orbital debris impact on spacecraft structures are examples of events subjected to strain rates within the range &gt;10<sup>4</sup> s<sup>-1</sup>. From the early studies in this area &ndash; dating in the late 18<sup>th</sup> century &ndash; to the present time, an intense debate on the causes which reside behind the fragmentation of ductile solids has been carried out. In this seminar we will discuss canonical problems of rings (bars) and cylinders (plates) subjected to dynamic radial expansion. The principal advantage of the rapidly expanding ring and cylinder tests is that, due to the symmetry of the problems, the effects of wave propagation are nearly eliminated before flow localization occurs in the form of multiple necks which ultimately lead to the fragmentation of the sample. <br>\n<br>\nWithin this framework, we have developed a combined analytical / numerical methodology based on linear stability analyses and finite element calculations that provides new insights into the critical factors that control the processes of multiple necking and fragmentation. Our results suggest that the combination of inertia and stress multiaxiality effects inside a necked section lead to the promotion of a finite number of wavelengths that, at sufficiently high strain rates, determine/control, at least up to some extent, the neck spacing and fragments size. These results argue for the inclusion of a deterministic component within the fragmentation mechanisms and thus complement/enrich the statistical fragmentation theory developed by Mott in the 40s.</span></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><span>&nbsp;\n<span style="text-align: left;">&nbsp; <br>\n</span><span style="text-align: left;">Danish pastry, coffee and tea will be served 15 minutes before the seminar starts.<br>\n<br>\n</span></span></p>\n<p style="text-align: justify;">\nAll interested persons are invited.<br>\n<br>\n</p>

URL:http://www.dcamm.dk/da/Kalender/2018/05/Seminar_No_724
DTSTAMP:20260921T163900Z
UID:{BA6AFE32-A02B-42C8-949F-F01987DC4AD3}-20180503T130000-20180503T130000
LOCATION: Building 414, room 025, Technical University of Denmark, , , , 
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