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BEGIN:VEVENT
DTSTART;TZID=America/New_York:20200507T140000
DTEND;TZID=America/New_York:20200507T150000
DTSTAMP:20200501T204106Z
CREATED:20200501T204106Z
LAST-MODIFIED:20200501T204106Z
UID:3965-1588860000-1588863600@uvebtech.com
SUMMARY:Effects of Structure and Composition on Mechanical Properties of UV Systems
DESCRIPTION:Dr. Paul Share\, Advanced Materials Design \nThe formulation of UV curable compositions for 3D printing requires the simultaneous optimization of opposing properties. Increases in cure speed\, desirable for manufacturing throughput\, can lead to brittleness\, curling\, and storage instability. Increases in tensile strength and impact resistance\, desirable for structural components\, can lead to poor flexibility and low elongation. Increases in elongation\, desirable for elastomers\, can lead to surface tackiness and poor tear resistance. There is also a limited range of acceptable formulation viscosities unique to each 3D printing technology which further confines the optimization space. In this presentation\, a systematic synthesis and statistical mixture design study of the effects of oligomer structure and monomer formulation composition on the resulting mechanical properties of UV cured systems will be described.
URL:https://uvebtech.com/event/effects-of-structure-and-composition-on-mechanical-properties-of-uv-systems/
CATEGORIES:Webinar
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20200507T140000
DTEND;TZID=America/New_York:20200507T150000
DTSTAMP:20200501T204106Z
CREATED:20200501T204106Z
LAST-MODIFIED:20200501T204106Z
UID:13611-1588860000-1588863600@uvebtech.com
SUMMARY:Effects of Structure and Composition on Mechanical Properties of UV Systems
DESCRIPTION:Dr. Paul Share\, Advanced Materials Design \nThe formulation of UV curable compositions for 3D printing requires the simultaneous optimization of opposing properties. Increases in cure speed\, desirable for manufacturing throughput\, can lead to brittleness\, curling\, and storage instability. Increases in tensile strength and impact resistance\, desirable for structural components\, can lead to poor flexibility and low elongation. Increases in elongation\, desirable for elastomers\, can lead to surface tackiness and poor tear resistance. There is also a limited range of acceptable formulation viscosities unique to each 3D printing technology which further confines the optimization space. In this presentation\, a systematic synthesis and statistical mixture design study of the effects of oligomer structure and monomer formulation composition on the resulting mechanical properties of UV cured systems will be described.
URL:https://uvebtech.com/event/effects-of-structure-and-composition-on-mechanical-properties-of-uv-systems-2/
CATEGORIES:Webinar
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20200513T110000
DTEND;TZID=America/New_York:20200513T120000
DTSTAMP:20200501T204442Z
CREATED:20200501T204442Z
LAST-MODIFIED:20200501T204442Z
UID:3968-1589367600-1589371200@uvebtech.com
SUMMARY:High-Performance UV Curable Resin for Automotive Coatings
DESCRIPTION:Marcus Hutchins\, allnex \nLight weighting\, reduced carbon footprint\, throughput\, and sustainability are just some of the more common buzzards original equipment manufacturers (OEM) are using. They are looking for this advantage in not only the assembly process but every part and coating aspect that goes into that assembly. Going hand and hand with the challenges to improve the assembly process is the need to meet more stringent performance requirements. We have developed a number innovative UV curable products that can be used in automotive refinish\, films\, conformal coatings\, and glazing applications that maximize throughput and coating performance. This paper will discuss a variety of UV curable resins that can be used in a variety of automotive applications such as film and sheets used in IMD/IML\, metallization\, conformal coatings\, structural adhesives and automotive refinish applications allowing formulators and finishers to capitalize on the intrinsic values of UV curable chemistry such as rapid throughput and excellent chemical and abrasion resistance.
URL:https://uvebtech.com/event/high-performance-uv-curable-resin-for-automotive-coatings/
CATEGORIES:Webinar
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/New_York:20200513T110000
DTEND;TZID=America/New_York:20200513T120000
DTSTAMP:20200501T204442Z
CREATED:20200501T204442Z
LAST-MODIFIED:20200501T204442Z
UID:13612-1589367600-1589371200@uvebtech.com
SUMMARY:High-Performance UV Curable Resin for Automotive Coatings
DESCRIPTION:Marcus Hutchins\, allnex \nLight weighting\, reduced carbon footprint\, throughput\, and sustainability are just some of the more common buzzards original equipment manufacturers (OEM) are using. They are looking for this advantage in not only the assembly process but every part and coating aspect that goes into that assembly. Going hand and hand with the challenges to improve the assembly process is the need to meet more stringent performance requirements. We have developed a number innovative UV curable products that can be used in automotive refinish\, films\, conformal coatings\, and glazing applications that maximize throughput and coating performance. This paper will discuss a variety of UV curable resins that can be used in a variety of automotive applications such as film and sheets used in IMD/IML\, metallization\, conformal coatings\, structural adhesives and automotive refinish applications allowing formulators and finishers to capitalize on the intrinsic values of UV curable chemistry such as rapid throughput and excellent chemical and abrasion resistance.
URL:https://uvebtech.com/event/high-performance-uv-curable-resin-for-automotive-coatings-2/
CATEGORIES:Webinar
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20200520T110000
DTEND;TZID=America/Chicago:20200520T120000
DTSTAMP:20200501T204755Z
CREATED:20200501T204755Z
LAST-MODIFIED:20200501T204755Z
UID:3970-1589972400-1589976000@uvebtech.com
SUMMARY:Enabling Energy Curable Adhesion Through Polymer Design
DESCRIPTION:Dr. William Miles\, Penn Color\, Inc. \nEnergy curable systems are outstanding options for many different applications\, but have limits because of difficulty achieving adhesion on low energy substrates. This presentation outlines the properties of a novel branched polymer that can be solubilized into UV monomers to enhance wetting – and thus adhesion – of energy curable coatings across a broad variety of substrates. This effect is achieved using a mechanism that relies on polymer architecture rather than surface tension. Results demonstrate that branched polymers can greatly enhance the work of adhesion of an energy curable system with a mechanism that is decoupled from interfacial attraction and surface energy measurements.
URL:https://uvebtech.com/event/enabling-energy-curable-adhesion-through-polymer-design/
CATEGORIES:Webinar
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20200520T110000
DTEND;TZID=America/Chicago:20200520T120000
DTSTAMP:20200501T204755Z
CREATED:20200501T204755Z
LAST-MODIFIED:20200501T204755Z
UID:13613-1589972400-1589976000@uvebtech.com
SUMMARY:Enabling Energy Curable Adhesion Through Polymer Design
DESCRIPTION:Dr. William Miles\, Penn Color\, Inc. \nEnergy curable systems are outstanding options for many different applications\, but have limits because of difficulty achieving adhesion on low energy substrates. This presentation outlines the properties of a novel branched polymer that can be solubilized into UV monomers to enhance wetting – and thus adhesion – of energy curable coatings across a broad variety of substrates. This effect is achieved using a mechanism that relies on polymer architecture rather than surface tension. Results demonstrate that branched polymers can greatly enhance the work of adhesion of an energy curable system with a mechanism that is decoupled from interfacial attraction and surface energy measurements.
URL:https://uvebtech.com/event/enabling-energy-curable-adhesion-through-polymer-design-2/
CATEGORIES:Webinar
END:VEVENT
END:VCALENDAR