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Esstech DSS Silanated Glass Overview

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View this presentation to learn more about silanated fillers, their role in composites and what makes Esstech DSS Silanated Glass the ideal material.

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Esstech DSS Silanated Glass Overview

  1. 1. Esstech Inc. 48 Powhattan Avenue Essington, PA 19029 610-521-3800 / 1-800-245-3800 www.esstechinc.com
  2. 2. What is DSS™ Silanated Glass? <ul><li>Recognizing the wide-spread use of silane-treated silicate glass in the Dental Restorative Industry, Esstech has responded with a product line that improves upon traditionally available materials. </li></ul><ul><ul><li>The DSS Advantage: </li></ul></ul><ul><ul><ul><ul><li>Ideal hydrophobicity </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Targeted monolayer of silane </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Reproducible silane content </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Large batch sizes for lot-to-lot consistency </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Competitive pricing </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Established inventory and quick turn-around </li></ul></ul></ul></ul><ul><ul><ul><ul><li>Flexible process with customized capabilities </li></ul></ul></ul></ul>
  3. 3. Esstech DSS™ Silanated Glasses * These materials are commonly used to match the Refractive Index of traditional BisGMA/TEGDMA composite systems. Chemistry Esstech Product Line Particle Size Refractive Index Thermal Expansion (ppm/C) Status Coming Soon Now Available * Aluminosilicate V-115 11 microns 1.540 -2.3  Barium Silicate V-116 13 microns 1.580 6.7    * Barium Borosilicate V-117 0.7 microns 1.553 5.6  (33% barium oxide) 1.0 microns  * Barium Borosilicate V-258 0.7 microns 1.541 5.2    (30% barium oxide) 1.0 microns    * Barium Borosilicate V-119 2.0 microns TBD TBD  (25% barium oxide) Strontium Borosilicate V-124 1 micron 1.500 3.3   11 microns   
  4. 4. Analysis of coupling agent <ul><li>Traditional analysis reports silane levels as the calculated amount of silane added in the initial formulation. Esstech uses both quantitative and qualitative methods of measuring the actual silane that is bound to the glass surface. </li></ul><ul><li>Quantitative: </li></ul><ul><ul><li>Thermogravimetric Analysis (TGA) measures bound silane while differentiating from residual moisture via thermal cycling of the sample. </li></ul></ul><ul><li>Qualitative: </li></ul><ul><ul><li>The “Float” test demonstrates that all glass particles have been coated. Properly treated particles will remain hydrophobic and float on the water surface </li></ul></ul><ul><ul><ul><li>Failure indicates incomplete surface coverage &/or bonding failure, which will translate into composite properties </li></ul></ul></ul>
  5. 5. The DSS Advantage <ul><li>The correct application of silane to dental glass goes beyond preventing settling and improving ease of mixing. When properly bound, silane coupling agents transfer strength between your glass and polymer phases thereby improving the mechanical strength of your composite. </li></ul><ul><ul><li>Avoid over- or under-silanated materials, long lead-times and discontinued product lines… </li></ul></ul><ul><ul><li>And contact us , to receive materials that are made to match your needs. </li></ul></ul><ul><ul><li>Samples for evaluation are available, email [email_address] to request yours today. </li></ul></ul>

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