00:00:00 | PVC Characterization Technology Package GPC + DSV |
00:01:09 | PVC Characterization Technology Package GPC + DSV |
00:01:32 | Malvern Polymer Characterization Technology Packages: A Six Part 2012 Webinar Series |
00:01:54 | Polymer Life Cycle From Cradle to Grave and Beyond |
00:04:17 | Introduction |
00:05:07 | SEC/GPC Separation Process |
00:06:45 | GPC of T1 |
00:08:19 | Mark-Houwink Overlays |
00:09:08 | Summary of GPC Results |
00:10:04 | GPC Results |
00:11:41 | What is Dilute Solution Viscosity (DSV)? |
00:12:22 | Traditional Measurement |
00:13:01 | Nomenclature for Solution Viscosity |
00:13:18 | Huggins/Kraemer Plot |
00:14:00 | How Does The Two Capillary Viscometer Work? |
00:15:01 | Dilute Solution Viscometer (DSV) System |
00:15:17 | Summary of PVC DSV IV Data |
00:16:16 | PVC DSV IV Data Comparison |
00:16:36 | Summary of PVC DSV K-Value Data |
00:16:55 | PVC DSV K-Value Comparison |
00:17:38 | High MW Aggregation of PVC in THF |
00:18:22 | Solvent Enhanced Light Scattering (SELS) |
00:20:12 | High MW Aggregation |
00:20:53 | Summary of GPC Results |
00:21:30 | Summary of Sample MW (Da) When Dissolved in THF vs. Cyclohexanone |
00:22:12 | Final Conclusions |
00:22:45 | Malvern Polymer Characterization Technology Packages: A Six Part 2012 Webinar Series |
00:22:59 | Contact Information |
To help precisely control the physical properties of PVC, manufacturers have turned to Gel Permeation Chromatography, Flow Injection Polymer Analysis and Dilute Solution Viscosity for characterization of the molecular weight and structure