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DTSTART;TZID=America/New_York:20260902T173000
DTEND;TZID=America/New_York:20270303T193000
DTSTAMP:20260623T155911Z
CREATED:20260623T155911Z
LAST-MODIFIED:20260623T155911Z
UID:2309-1788370200-1804102200@www.rubber.org
SUMMARY:TLARGI Basic Rubber Technology Course 2026/2027
DESCRIPTION:$850 before Aug. 1 / $950 after Aug. 1 \nCLICK HERE TO REGISTER. \nPrice Includes: Book\, handouts\, 1 year TLARGI membership\, Oktoberfest Technical & Social Meeting (lunch & dinner included)\, graduation dinner with guest\, certificate of completion \nLocation: WARCO\, 1337 W. Braden Ct.\, Orange\, CA 92868 \nClass Times: Wednesdays\, 5:30 p.m. – 7:30 p.m. \nClass Dates: \n\nFall: Sept. 2\, 9\, Oct. 14\, 28\nSpring: Jan. 6\, 20\, Feb. 3\, 17\, Mar. 3\n\nGraduation Dinner: Tentatively Mar. 10\, 6-9 p.m.\, location TBD \nSubjects: History\, Polymer Types\, TPEs\, Compounding\, Mixing\, Extrusion\, Molding\, Bonding\, Testing\, Standards\, Callouts \nStyles: Interactive\, listening\, reading\, homework\, tests\, teamwork\, show-and-tell\, networking \nGuest Speakers: Two planned – Bonding and Urethanes \nOptional Tours: Two+ locations (mixing\, molding\, mold making\, extrusion\, splicing\, calendaring\, LSR) \nBook: R. J. Del Vecchio (Ed.)\, Fundamentals of Rubber Technology \nSnacks: Provided each class \nWho Should Attend: \nAnyone new to rubber but also those wanting to expand their knowledge even after decades – operators\, admins\, buyers\, engineers\, managers\, directors\, sales\, quality and others \nAttendance / Requirements: \nIn order to receive a certificate of completion\, students must participate in quizzes\, group activities\, homework\, discussions and attend at least eight out of ten classes. \nInstructor: Sam Porter\, Rheologix \nSam Porter brings over 30 years of exploration\, discovery\, and problem-solving in the elastomer industry to his role as Area Director for the Rubber Division of the American Chemical Society. A graduate of The University of Akron in Chemical Engineering (Polymer Specialized)\, Sam combines rigorous technical training with lifelong curiosity – fueled by books\, seminars\, technical papers\, and hands-on experimentation. His mantra\, “It’s not black magic – it’s Rubber Science!” reflects his drive to uncover answers\, reveal correlations\, and empower others to do the same.  Sam volunteers as Education Committee Chairman for both the ACS Rubber Division and The Los Angeles Rubber Group Inc.\, and has taught the Basic Rubber Technology Course for TLARGI for the past three years. As founder of Rheologix\, he consults across the elastomer industry – spanning automotive\, medical\, oil & gas\, and aerospace/defense – leveraging best practices to bridge R&D and real-world manufacturing. He has mastered balancing the three pillars of elastomer success: compounding\, tooling\, and processing.
URL:https://www.rubber.org/event/tlargi-basic-rubber-technology-course-2026-2027/
LOCATION:WARCO\, 1337 W. Braden Ct.\, Orange\, CA\, 92868\, United States
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BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261008T110000
DTEND;TZID=America/New_York:20261008T120000
DTSTAMP:20260602T190841Z
CREATED:20260602T185708Z
LAST-MODIFIED:20260602T190841Z
UID:2282-1791457200-1791460800@www.rubber.org
SUMMARY:Webinar: Optimizing Rubber Molding Process through Advanced Simulations
DESCRIPTION:Webinar Description: In this webinar\, attendees will learn how simulating the behavior of rubber\, silicones and LSRs during injection\, transfer and compression molding process can help understand the root cause of various molding issues like imbalances\, air\, uneven curing\, flashing\, etc. Continuous improvements in part design\, mold design and molding process are essential for maintaining a competitive edge in the ever-expanding rubber molding market. By using advanced CAE simulation technologies\, design phases can be shortened\, molding process can be predicted and molded parts can be optimized. \nObjectives & What Will Be Covered: \n\nUse of simulation of rubber materials to accurately predict flow behavior and shear-induced heating effects\nNew fully automatic BLM (Boundary Layer Mesh) technology used to create accurate mesh density in required areas\nLearn how high shear rates in thin film or pin gates and thin wall thicknesses can cause shear-induced heat which influences viscosity\, flow behavior and flow-induced premature scorch and cure effects.\n\nIn this webinar\, several real-life production examples will demonstrate how advanced mesh technologies can be used to better predict shear-induced material flow behavior though the transfer molding process. In addition\, how the shot size and process condition will affect flow length and vent location will be presented. \nPrice: Free for Members / $99 Non-members \nCLICK HERE TO REGISTER. \nInstructor: Harshal Bhogesra\, Moldex3D \nBio: Harshal Bhogesra has over 9 years of combined experience in molding and customer and supplier development. He is passionate about optimizing product design\, tool development\, molding processes and quality. Harshal is currently working with rubber\, LSR\, silicone and plastic molding companies to help them eliminate their complex molding challenges like air entrapment\, filling imbalances\, knit lines\, uneven curing\, shrinkage\, etc. \nThrough Moldex3D technology\, he has helped clients reduce engineering time and cost in various industries including defense\, automotive\, medical\, aerospace\, electronics\, consumer products\, etc. who are concerned by the trial and errors on the production floor. \nOutside of work\, he enjoys traveling\, interior designing\, NFL\, and adventure sports. \nAbout Moldex3D: Moldex3D is the world-leading CAE simulation platform for injection molding that enables engineers to virtually simulate flow\, curing\, cooling\, and complex material behavior in 3D. It helps identify molding defects\, optimize gate and mold design\, reduce trial-and-error and shorten development cycles. With support for plastics\, silicones\, LSR\, and elastomers\, Moldex3D bridges design and production to deliver higher quality parts faster.
URL:https://www.rubber.org/event/webinar-optimizing-rubber-molding-process-through-advanced-simulations-2/
CATEGORIES:Training
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BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261013T120000
DTEND;TZID=America/New_York:20261013T203000
DTSTAMP:20260724T201753Z
CREATED:20251212T162418Z
LAST-MODIFIED:20260724T201753Z
UID:2075-1791892800-1791923400@www.rubber.org
SUMMARY:Los Angeles Rubber Group Oktoberfest
DESCRIPTION:Click here for details.
URL:https://www.rubber.org/event/los-angeles-rubber-group-oktoberfest/
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261014T120000
DTEND;TZID=America/New_York:20261014T160000
DTSTAMP:20260605T173519Z
CREATED:20251117T205808Z
LAST-MODIFIED:20260605T173519Z
UID:2014-1791979200-1791993600@www.rubber.org
SUMMARY:Course: Carbon Blacks Manufacturing\, Properties & Applications in Rubber Compounds
DESCRIPTION:October 14\, 2026; 12 p.m. – 4 p.m. ET \nCEUs: 0.38 (To receive the CEUs\, attendees must attend the course live and promptly complete the survey evaluation after the course.) \nLocation: This course is available online only. It can be taken from the comfort of your home or office – remotely from any tablet\, laptop or computer. \nCourse Overview: Centered around carbon black\, this course was designed to be advantageous for both technical and non-technical personnel working in the rubber industry. These topics will be covered: \n\nCB types and the related manufacturing processes\nPresent status of the global CB industry\, CB classification\, grades and standards\nCB morphology\, characteristics and their effects on properties of rubber compounds\nSelection of CB for various rubber processes\, as extrusion\, molding\, etc.\nCompounding with CB to rationalize raw materials\, minimize costs and optimize final properties of rubber goods\nEnvironmental effects of CB applications and recovered CB\n\nPrice: $395 Members / $495 Non-members / Free for Undergraduate Student Members / $50 for Other Student Members \nCLICK HERE TO REGISTER. \nInstructor: Dr. Irene Yurovska \nIrene Yurovska was born and raised in Moscow\, Russia. After completing her BS in Chemistry\, MS in Chemical Engineering (Rubber Technology) and PhD in Physical Chemistry of Polymers\, she worked as a scientist for the Rubber Industry Institute and for the Institute of Aircraft Technology in Moscow. \nIrene moved with her family to the US in 1991. For ten years\, she lived in Rhode Island\, working as a plant rubber chemist for Teknor Apex and completing her MBA in Bryant University. Irene moved to Massachusetts to be employed for 14 years as a scientist\, technical service and applications specialist by Cabot Corporation in Billerica\, MA. In 2016-2017\, Dr. Yurovska worked as a Global Innovation Market Development Manager for Addivant Corporation (now SI Group) in CT. \nCurrently\, after completing the long and successful career as a global rubber industry professional; having hands-on experience with rubber compounding\, processing and technical service\, and with carbon black and antioxidants manufacturing and properties\, Dr. Irene Yurovska lives in TX\, recently being employed in India as VP of Himadri Specialty Chemicals (technical service in carbon black for rubbers) and currently developing a private consulting business for the global rubber industry. \nHer scientific interests include relationships between individual characteristics of ingredients and application properties of rubber products. Dr. Yurovska is the author and co-author of several patents and numerous articles in peer-reviewed and industrial publications. \nDr. Yurovska is an active member of the US rubber industry community\, being on several Rubber Division\, ACS committees\, she served as a Chair of the New England Rubber and Plastics Group and she is on the Board of NERPG and is also a member of the Energy Polymer Group. \nIrene has two children and one grandchild. She enjoys spending time with her family\, world travel\, swimming\, and classic opera.
URL:https://www.rubber.org/event/course-carbon-blacks-manufacturing-properties-applications-in-rubber-compounds/
CATEGORIES:Training
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261015T100000
DTEND;TZID=America/New_York:20261015T120000
DTSTAMP:20260602T190903Z
CREATED:20260602T185850Z
LAST-MODIFIED:20260602T190903Z
UID:2283-1792058400-1792065600@www.rubber.org
SUMMARY:Webinar: Basics of Polymer Testing & Processing
DESCRIPTION:October 15\, 2026; 10 a.m. – 12 p.m. ET \nWebinar Overview: This webinar is designed to be an introduction to the rubber industry for employees who have very little or no understanding of how rubber or plastic parts are manufactured and tested. It introduces some basic terminology used in the rubber and plastic industries. Several types of testing will be introduced\, and practical examples will be shared to illustrate why parts/products are tested. Lastly\, this webinar provides an overview of the rubber mixing process\, as well as a few processing and curing methods commonly used in this industry. \nThis webinar will give new employees a big picture view of the different departments within ARDL\, will illustrate how those departments work together in the big picture of the rubber industry and will emphasize why each aspect of our company is so important to rubber and plastic products that we use every day. \nPrice: Free for Members / $149 Non-members \nCLICK HERE TO REGISTER. \nInstructor: Paul Merda\, ARDL\nPaul Merda is the Education Coordinator & Technical Advisor at ARDL. He has previous experience as a Lab Technician\, Polymer Adhesives Chemist & High School Science Teacher with 18 years in industry and 13 teaching. \nAbout ARDL: Akron Rubber Development Laboratory\, Inc. (ARDL) is an internationally recognized independent testing laboratory specializing in rubber\, plastic\, and latex materials. With over six decades of experience\, ARDL offers comprehensive services including material testing\, product development\, process optimization\, and failure analysis. Their state-of-the-art facilities and expert team provide solutions across various industries such as automotive\, aerospace\, medical\, and industrial applications. ARDL is committed to advancing innovation and ensuring quality in polymer products\, making them a trusted partner for companies seeking reliable and accurate testing services.
URL:https://www.rubber.org/event/webinar-basics-of-polymer-testing-processing/
CATEGORIES:Training
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20261016
DTEND;VALUE=DATE:20261017
DTSTAMP:20251203T185538Z
CREATED:20251203T185538Z
LAST-MODIFIED:20251203T185538Z
UID:2056-1792108800-1792195199@www.rubber.org
SUMMARY:Mexico Rubber Group Course: Rubber Compounding Part I – Chemical Reaction Mechanism
DESCRIPTION:Course: Rubber Compounding Part I – Chemical Reaction Mechanism \nInstructor: Soul Leonides \nRubber Chamber Facilities Location:\nHegel 153-101 Col. Polanco CP 11560\nMiguel Hidalgo\, CDMX \nMore Information:\nMiguel Bernal miguelbernals@cnih.org.mx\nJose Gazano antogua@prodigy.net.mx
URL:https://www.rubber.org/event/mexico-rubber-group-course-rubber-compounding-part-i-chemical-reaction-mechanism/
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261020T100000
DTEND;TZID=America/New_York:20261020T120000
DTSTAMP:20260811T163737Z
CREATED:20260615T124743Z
LAST-MODIFIED:20260811T163737Z
UID:2299-1792490400-1792497600@www.rubber.org
SUMMARY:Webinar: Gear Pump Technology in Rubber Applications
DESCRIPTION:Webinar: Gear Pump Technology in Rubber Applications \nOctober 20\, 2026; 10 a.m. – 12 p.m. ET \nWebinar Overview: This webinar focuses on the benefit of gear pump extruders for rubber processing and their specific characteristics. A gear pump\, due to its volumetric transport characteristics\, is predestined for applications such as precise extrusion and high-pressure operations\, as well as precise dosing applications. By combining different extruder technologies with a gear pump\, it becomes a modular system for different applications in rubber processing.  \nWebinar Objectives: This webinar focuses on the gear pump technology in well-known rubber processes in mixing and extrusion lines and it will include the following topics: \n\nIntroduction and history\nFunction principal basics of gear pumps\nProcess technological basics\nWaste reduction and quality improvement\n\nStraining within the straining cell\nStraining within the mixing line\nStraining within the extrusion line\nStraining within the rework line\n\n\nGear pump technology for precise extrusion\n\nRubber extrusion lines\nHigh pressure applications for wire\, fiber and yarn\n\n\nGear pump technology in continuous mixing (dosing)\nGear pump technology in silicone compounding\nFuture applications and outlook\nSummary\n\nWho Should Take This Webinar: The webinar is designed for mechanical and chemical engineers in the rubber industry. Centered around process techniques in mixing and extrusion\, it is the perfect training for individuals working in engineering\, R&D or quality improvement. \nPrice: Free for Members / $149 Non-members \nCLICK HERE TO REGISTER. \nInstructor: Julia Uth (M.Eng.)\, UTH \nBio: Julia Uth is Chief Technology Officer (CTO) at UTH GmbH (Germany) – a machine manufacturer highly specialized in gear pump technology and fine mesh straining applications. After completing her master’s degree in engineering\, Julia joined UTH GmbH. As a mechanical engineer\, she is highly committed to the development of cutting-edge straining and mixing solutions for rubber processing that achieve more quality and sustainability while reducing costs. \nAbout UTH GmbH: UTH GmbH is a global leader in gear pump technology and fine mesh straining systems for rubber and silicone processing. Known for precision\, reliability and innovative engineering\, UTH develops equipment that improves extrusion accuracy\, reduces waste and enhances material quality across mixing and compounding lines. Their modular solutions support high-pressure\, high-performance applications and are trusted worldwide for advancing efficiency in modern rubber production.
URL:https://www.rubber.org/event/webinar-gear-pump-technology-in-rubber-application/
CATEGORIES:Training
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20261022
DTEND;VALUE=DATE:20261023
DTSTAMP:20251201T203319Z
CREATED:20251201T203319Z
LAST-MODIFIED:20251201T203319Z
UID:2039-1792627200-1792713599@www.rubber.org
SUMMARY:Detroit Rubber Group Fall Technical Meeting
DESCRIPTION:Details Forthcoming
URL:https://www.rubber.org/event/detroit-rubber-group-fall-technical-meeting-2/
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20261022
DTEND;VALUE=DATE:20261023
DTSTAMP:20260812T195323Z
CREATED:20260812T195323Z
LAST-MODIFIED:20260812T195323Z
UID:2383-1792627200-1792713599@www.rubber.org
SUMMARY:Quebec Rubber Group Technical & Commercial Dinner
DESCRIPTION:Details: www.aeq-qeg.info
URL:https://www.rubber.org/event/quebec-rubber-group-technical-commercial-dinner/
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20261029T090000
DTEND;TZID=America/New_York:20261029T170000
DTSTAMP:20260824T195613Z
CREATED:20251120T201629Z
LAST-MODIFIED:20260824T195613Z
UID:2031-1793264400-1793293200@www.rubber.org
SUMMARY:Course: Thermoplastic Elastomers - From Fundamentals to Novel Applications
DESCRIPTION:October 29\, 2026; 9 a.m. – 5 p.m. ET \nCEUs: 0.76 (To receive the CEUs\, attendees must attend the course live and promptly complete the survey evaluation after the course.) \nLocation: This course is available virtually only. It can be taken from the comfort of your home or office – remotely from any tablet\, laptop or computer. \nCourse Overview: With growing global concern regarding the increasing level of solid waste due to polymeric materials and interest in material recycling\, thermoplastic elastomers (TPEs) provide an attractive alternative to conventional elastomers. This class of materials relies on combining thermoplastic and elastomeric properties into single macromolecules\, along with physical\, rather than chemical\, crosslinking to introduce elasticity. While a wide range of TPEs is commercially available\, most TPEs rely on a block copolymer in which macromolecules consist of three or more long\, contiguous sequences of dissimilar chemical species. Due to thermodynamic incompatibility between these sequences\, these molecules self-assemble into mesoscale morphologies and form a flexible molecular network that is stabilized by rigid microdomains that serve as physical crosslinks. This course will introduce participants to different types and contemporary uses of TPEs\, in addition to the molecular design\, synthesis and characteristics of TPEs derived from block copolymers. Thermodynamic considerations regarding network formation and bridging metrics in TPEs will be addressed by experimental observations\, theoretical predictions and computer simulations. Blends of TPEs and their uses in conventional and emerging applications will be described\, as will the chemical functionalization of TPEs for specialized technologies (e.g.\, designer additives\, organic photovoltaics\, soft actuators\, separation membranes and antimicrobial materials). \nLearning Objectives:\n– Distinguish and classify the different families of TPEs that are presently available\n– Identify commercial applications that benefit from the properties afforded by TPEs\n– Differentiate between physical and chemical crosslinking in terms of network formation\n– Relate network formation to microphase separation in TPEs based on block copolymers\n– Discuss the effects of molecular characteristics on structure-property relationships\n– Design TPE-containing blends with polymers for targeted morphologies and properties\n– Compare mechanical and electromechanical properties of selectively solvated TPEs\n– Modify TPEs either physically or chemically to introduce stimuli-responsiveness\n– Functionalize TPEs for use in environment-\, energy- and health-related applications\n– Choose (un)functionalized TPEs as compatibilizing agents in biphasic polymer blends \nTopical Outline:\n– Different classes of TPEs as physically-crosslinked elastomers\n– Block copolymers differing in molecular characteristics as TPEs\n– Self-assembly and network formation in block copolymer TPEs\n– Network characteristics of TPEs varying in molecular characteristics\n– Structure-property relationships of TPE-containing polymer blends\n– Selectively-solvated TPEs as an emerging class of tunably soft materials\n– Viscoelasticity and network characteristics in TPE gels for targeted applications\n– Introduction to electroactive and other stimuli-responsive TPE systems\n– Functional TPEs with photoresponsive\, separation and antimicrobial properties\n– Native/functional TPEs for toughening\, compatibilization and novel purposes \nPrice: $745 Members / $845 Non-members / Free for Undergraduate Student Members / $100 for Other Student Members \nCLICK HERE TO REGISTER. \nInstructor: Richard J. Spontak\, North Carolina State University \nBio: Dr. Richard J. Spontak is a Distinguished Professor and Alumni Distinguished Graduate and Undergraduate Professor in the Departments of Chemical & Biomolecular Engineering and Materials Science & Engineering at North Carolina State University in Raleigh. He received his B.S. degree in Chemical Engineering (with honors/high distinction) from the Pennsylvania State University in 1983 and was later awarded the Ph.D. degree in Chemical Engineering from the University of California at Berkeley in 1988. He then pursued post-doctoral research in Materials Science & Metallurgy at the University of Cambridge (U.K.) and Condensed Matter Physics at the Institute for Energy Technology (Norway) before joining the Corporate Research Division of the Procter & Gamble Company in 1990. In 1992\, he accepted a faculty position at North Carolina State University\, where he supervises the Macromolecular Materials & Morphology Group. Since that time\, Spontak has published over 280 peer-reviewed journal papers and over 30 scholarly works as book chapters and invited monographs\, and his work has been featured on 29 journal covers and cited over 12\,000 times according to Google Scholar. Although active in a diverse range of disciplines\, his primary research interests relate to the phase behavior and morphology/property development of nanostructured polymers\, polymer nanocomposites and coatings\, electron microscopy and stimuli-responsive soft materials. In recognition of his fundamental and applied research endeavors\, he is the recipient of numerous honors and awards such as the Alcoa Foundation Engineering Achievement and Distinguished Engineering Research Awards\, Alexander von Humboldt and Tewkesbury fellowships\, the North Carolina State University Alumni Outstanding Research and Global Engagement Awards\, the 2006 American Chemical Society (PMSE Division) Cooperative Research Award in Polymer Science & Engineering\, the 2007 German Society for Electron Microscopy Ernst Ruska Prize\, the 2008 American Chemical Society (Rubber Division) Chemistry of Thermoplastic Elastomers Award\, the 2011 Institute of Materials\, Minerals and Mining (IOM3) Colwyn Medal\, the 2012 Norwegian University of Science & Technology Lars Onsager Medal and the 2015 Society of Plastics Engineers International Award. An elected fellow of the American Physical Society\, IOM3 and the Royal Society of Chemistry\, he is or has been on the editorial advisory board of more than 20 international journals and holds editorial positions on three of them. He has been recognized as a 2007 Outstanding Scholar Alumnus and a 2012 Alumni Fellow by the Pennsylvania State University\, and he is a member of the Norwegian Academy of Technological Sciences and the North Carolina State University Research Leadership\, Global Engagement and Outstanding Teaching Academies. Spontak is also a highly acclaimed educator and academic mentor. For his instructional effectiveness employing cooperative and active learning pedagogies in the classroom and his widespread efforts to promote interdisciplinary engineering design and undergraduate research\, he has received college- and alumni-level Outstanding Teaching Awards\, as well as the university-level Board of Governor’s Award for Excellence in Teaching\, the highest institutional honor bestowed by the University of North Carolina system. He has also received the 2006 International Network for Engineering Education & Research Recognition Award and the 2009 American Society for Engineering Education Southeast Region Outstanding Mid-Career Teaching Award\, and he has served as a Fulbright Senior Specialist and an Erasmus Fellow. He resides in Raleigh\, North Carolina\, with his wife Josie and has two children\, Danielle and Joshua.
URL:https://www.rubber.org/event/course-thermoplastic-elastomers-from-fundamentals-to-novel-applications/
CATEGORIES:Training
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