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Using Organofunctional Silanes And Silane Modified Polymers For Improved properties In various applications

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Description

Functional silanes are key ingredients in optimizing the interphase properties that control adhesion, water and corrosion protection, strength and durability and other performance parameters. Silane reaction mechanisms were not entirely understood and there exist several theories for bonding mechanism for silanes and substrates. Nowadays formulators are incorporating organofunctional silanes in many high-performance targeted applications like adhesives and sealants, coatings, filled elastomer systems, reinforced plastics etc. to achieve key performance enhancements.

If silanes most well-known role is as adhesion promoters, they can also be used as crosslinkers to improve thermal, solvent and environment resistances, to improve mechanical properties and give them the right visco-elastic behavior once the formulation is cured. Since many silanes react readily with water, it is also possible to take advantage of this latter property to use silanes as moisture scavengers. To obtain the expected properties, it is important to thoroughly understand silane chemistry and to know the parameters that govern reactivity in the pot as well as after the application of the formulation.

Silanes functionalities like cross linking, adhesion promotions, coupling and dispersions make them formulations choice for use in numerous applications. As an illustration of the multi-functionality of silanes, we will study organofunctional silanes and silane modified technology. It is labeled as such because it consists of attaching a non-organic functionality (the silane) to an organic backbone.

Why you should not miss this training?

Experts recommended training which every chemist/chemical engineer/formulator should have in his/her technical skills achievement. Attending this training, you will come across new ideas on how to improve existing and new formulations including sealant or adhesive that meets your expectations in terms of rheology, reactivity, mechanical properties, adhesion profile on different substrates, reactivity, shelf life.

You will be sound enough to make your working strategies to make it possible to synthesize silane-terminated polymers, and to incorporate them into a formulation of a targeted application that shows improved adhesion and UV resistance compared to fully organic equivalents. The details of a typical hybrid-based formulation will be studied, and the role of each ingredient will be described.

Who should attend this training?

Recommended training for R&D chemists, developers, formulators and most important for all those industry professionals who are working with or want to start with silanes in continuation with their standard routine formulation strategies.

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Your Training Expert

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Patrice LEHMANN

Technology expert

Patrice Lehmann has been immersed in silane chemistry since 1990 when he began to use them in various applications: hot melt adhesives, water-based formulations, foundry resins, glass fiber, engine coolants, pipes, wire and cable. Then he specialized his developments in the use of silanes for adhesives and sealants; this is when he developed the polymers called SPUR, standing for silylated PolyURethanes. To understand the advantages of this technology, he also developed different formulations to reach a broad range of mechanical properties and studied all the ingredients that can be used in such recipes and the impact of them. Since 2010, he is busy as technical service consultant to explain users how to get the most of this technology.

  • Training Expert: Patrice LEHMANN
  • Duration: 120 min
  • Industry: Core Chemical Industry
  • Training level: Formulation
  • Registration: Closed

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Training Outline

  • During this training following topics will be discussed in detail:
    1. Quick introduction and silane chemistry
    2. How silanes work, how they are added in system?
    3. Hydrolysis and condensation 
    4. Important factors affecting reactivity
    5. Silane selection
      • - vs. intended role
      • - vs. system chemistry
      • - vs. reactivity parameters
    6. Organofunctional silanes, silane modified polymers; application based illustrations:
      • - Polymer synthesis
      • - Standard formulations
      • - Role of each formulation ingredient
      • - How it influence the final properties
    7. Formulation strategy for targeted applications 
    8. Main formulations areas you can consider and examples
    9. Important tips for success while working with silanes 
    10. Conclusions followed by Q&A session

    Further areas you will be able to explore easily after this trainings: broad range of hybrid silanes, silane selections, silane modified polymers, silane related application areas, hybrid silane crosslinking polymers, crosslinker and polymer modifier, adhesion promoter, hybrid formulations, organofunctional silanes, crosslinking agent, moisture curing mechanism, polymers for sealants, silane coupling agent, silane coupling, hybrid polymer sealant, hybrid polymer adhesive, ms polymer vs silicone etc.

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