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PRODID:-//PHD in Industrial Engineering - ECPv6.15.20//NONSGML v1.0//EN
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X-WR-CALNAME:PHD in Industrial Engineering
X-ORIGINAL-URL:https://academics.dii.unipd.it/phd
X-WR-CALDESC:Events for PHD in Industrial Engineering
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X-PUBLISHED-TTL:PT1H
BEGIN:VTIMEZONE
TZID:UTC
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TZOFFSETFROM:+0000
TZOFFSETTO:+0000
TZNAME:UTC
DTSTART:20250101T000000
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BEGIN:VEVENT
DTSTART;TZID=UTC:20260904T080000
DTEND;TZID=UTC:20260905T170000
DTSTAMP:20260419T112141
CREATED:20260413T144246Z
LAST-MODIFIED:20260413T145935Z
UID:3255-1788508800-1788627600@academics.dii.unipd.it
SUMMARY:Powder flowability
DESCRIPTION:Course unit contentsThis course provides fundamental knowledge\, theory\, and practical insights for researchers addressing the complex challenges associated with particulate materials and powder flowability. The programme bridges the gap between microscopic particle properties and macroscopic flow behavior\, essential for optimizing industrial processes involving granular media. \nThe course is organized into two core modules. The first section examines the key physical properties and characterization methods for particulate materials\, including particle morphology\, size distribution\, apparent density\, and porosity. This includes a detailed analysis of solid-solid contact interactions and the definition of cohesion. The second section focuses on the mechanics of solids applied to powders\, introducing static and dynamic stress analysis and yield criteria through Mohr-Coulomb models. Students will investigate active and passive stress states and master the Jenike approach for the design of industrial storage units. This integrated approach ensures that doctoral candidates can translate theoretical yield criteria into robust engineering designs\, preventing flow-related failures in industrial handling and storage. \nLearning goalsThe primary objective is to equip PhD students with a deep understanding of powder flowability and the scientific principles governing granular flow. Participants will acquire the skills to measure and interpret flowability data accurately\, understanding the practical implications of these parameters in industrial applications. Furthermore\, the course aims to develop the capability to apply solid mechanics and stress analysis to the design and troubleshooting of powder storage and handling units. \nSuggested readings\nNedderman\, R. M. (1992). Statics and Kinematics of Granular Materials. Cambridge University Press.\nHoldich\, Richard G. (2002). Fundamentals of Particle Technology. Shepshed: Leicestershire\, Midland Information Technology & Publishing.\nSchulze\, D. (2008). Powders and Bulk Solids: Behavior\, Characterization\, Storage. Springer.\nBarletta\, D.\, Poletto\, M.\, & Santomaso\, A. C. (2019). Bulk Powder Flow Characterisation Techniques. In A. Hassanpour\, C. Hare\, & M. Pasha (Eds.)\, Powder Flow: Theory\, Characterisation and Application (pp. 64–146). Royal Society of Chemistry.
URL:https://academics.dii.unipd.it/phd/event/powder-flowability/
LOCATION:Sede-V\, via Venezia 1\, Padova\, Padova\, 35131\, Italy
CATEGORIES:Event
ATTACH;FMTTYPE=image/jpeg:https://academics.dii.unipd.it/phd/wp-content/uploads/sites/58/2026/04/CDII_powder_1-scaled.jpeg
ORGANIZER;CN="PhD Course in Industrial Engineering":MAILTO:dottorato.dii@unipd.it
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