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2 9 A D V A N C E D M A T E R I A L S & P R O C E S S E S | O C T O B E R 2 0 2 2 Shape Memory & Superelastic Technologies OCTOBER 2022 | VOL. 4 | ISSUE 2 7 10 QUANTIFYINGAND PROPAGATING UNCERTAINTY IN SUPERELASTICITY SIMULATION INPUTS EDITORIAL OPPORTUNITIES FOR SMST NEWSWIRE IN 2023 The editorial focus for the SMST NewsWire in 2023 reflects shape memory and superelasticity technologies for biomedical, actuator applications, and emerging markets. March | October To contribute an article, contact Joanne Miller at joanne.miller@asminternational.org. To advertise, contact Kelly Johanns at kelly.johanns@asminternational.org. ABOUT THE COVER Crystallographic orientation dependence of the Young’s modulus of a CoCr-based alloy calculated using the equations of elasticity. EDITOR Othmane Benafan MANAGING EDITOR Joanne Miller LAYOUT AND DESIGN Jan Nejedlik PRODUCTION MANAGER Allison Freeman ADVERTISING Kelly Johanns 440.671.3851 kelly.johanns@asminternational.org SHAPE MEMORY AND SUPERELASTIC SOCIETY EXECUTIVE COMMITTEE Ashley Bucsek, President Srinidhi Nagaraja, Vice President Othmane Benafan, Immediate Past President SMST NewswireTM is published twice a year by ASM International®, 9639 Kinsman Road, Materials Park, OH 44073, 440.338.5151; asminternational.org. Vol. 4, No. 2. Copyright © 2022 by ASM International®. All rights reserved. The acceptance and publication of manuscripts in SMST NewsWire does not imply that the editors or ASM International ® accept, approve, or endorse the data, opinions, and conclusions of the authors. Although manuscripts published in SMST Newswire are intended to have archival significance, author’s data and interpretations are frequently insufficient to be directly translatable to specific design, production, testing, or performance applications without independent examination and verification of their applicability and suitability by professionally qualified personnel. DEPARTMENTS 2 | EDITORIAL 3 | ASM SHAPE MEMORY AND SUPERELASTIC TECHNOLOGIES NEWS 14 | SMJ HIGHLIGHTS AN OFFICIAL PUBLICATION OF THE INTERNATIONAL ORGANIZATION ON SHAPE MEMORY AND SUPERELASTIC TECHNOLOGIES TOUGHYET FLEXIBLE SUPERELASTICALLOYS MEET BIOMEDICAL NEEDS 1

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