You’re invited to meet our team of Product Experts, R&D Leaders and Research Consultants to learn how Solstice Titan™ can help you:
Meet your sustainability goals
Bitumen modified with Solstice Titan can be produced, mixed, transported, and paved at lower temperatures, resulting in lower emissions throughout the paving process.
Enhance pavement performance and durability
Solstice Titan provides superior rutting resistance by increasing the lubricity at the bitumen-aggregate interface, facilitating better mixing and compaction. It enhances binder flexibility and adhesion, helping minimize cracking and water-induced damage.
Drive cost savings
Solstice Titan impacts cost at multiple stages of the paving process. While lower production and compaction temperatures reduce fuel consumption, reduced roller passes decrease labor, equipment usage, and project timelines. Adding Solstice Titan to the mix eliminates the need for antistripping, cross-linkers and compaction aids. Using fewer components leads to streamlined formulation, in addition to cost savings.
Boost operational efficiency
Unlike traditional modifiers, asphalt containing Solstice Titan remains workable at significantly lower temperatures, allowing for greater flexibility and efficiency during production and paving. Asphalt production can be spread evenly over twelve months, avoiding over-capacity plant design to meet peak season demands, resulting in more efficient resource allocation and reduced capital expenditure.
“Enhancing PMB Performance Through Functionalized Low-Molecular-Weight Polymers”
Be a part of this discussion, where Dr. Ruan will discuss how functional low-molecular-weight polymers can be used alongside SBS to enhance the performance, stability, and sustainability of polymer-modified bitumen (PMB). Drawing on recent developments in high-modulus asphalt mixtures, he will present research comparing conventional SBS-modified binders with hybrid SBS–Solstice Titan formulations. Attendees will learn how hybrid PMB systems can achieve equivalent performance at significantly lower storage temperatures, reducing oxidation, improving storage stability, and minimizing property degradation during production, transportation, and extended storage. The session will also highlight the operational, economic, and environmental benefits of lower-temperature PMB technologies for delivering more durable and reliable asphalt pavements.
Schedule a meeting