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🦷 Optimal Statistical Methods for Dental CAD-CAM Composite Strength

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Manage episode 505021584 series 3477288
Content provided by thebusinessadvancedmanufacturingpodcast. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by thebusinessadvancedmanufacturingpodcast or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.

These sources collectively examine the strength and machinability of brittle materials, with a particular focus on dental CAD-CAM composites and ceramics. One key theme is the suitability of various statistical distributions, such as Weibull, normal, log-normal, and gamma, for accurately modeling the fracture behavior of these materials, questioning the exclusive reliance on Weibull distribution. The texts also address the impact of sample size on the reliability of statistical analyses and propose methods like leave-K-out cross-validation to enhance predictive power. Furthermore, research highlights the machinability differences between polymer-containing and ceramic-based CAD-CAM materials, noting that polymer composites generally exhibit faster milling rates and less chipping. Ultimately, the articles aim to identify optimal statistical approaches and material characteristics for better predicting and understanding the performance of these materials in structural and dental applications.

https://thebusinessofmanufacturingpodcast.podbean.com/

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101 episodes

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Manage episode 505021584 series 3477288
Content provided by thebusinessadvancedmanufacturingpodcast. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by thebusinessadvancedmanufacturingpodcast or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.

These sources collectively examine the strength and machinability of brittle materials, with a particular focus on dental CAD-CAM composites and ceramics. One key theme is the suitability of various statistical distributions, such as Weibull, normal, log-normal, and gamma, for accurately modeling the fracture behavior of these materials, questioning the exclusive reliance on Weibull distribution. The texts also address the impact of sample size on the reliability of statistical analyses and propose methods like leave-K-out cross-validation to enhance predictive power. Furthermore, research highlights the machinability differences between polymer-containing and ceramic-based CAD-CAM materials, noting that polymer composites generally exhibit faster milling rates and less chipping. Ultimately, the articles aim to identify optimal statistical approaches and material characteristics for better predicting and understanding the performance of these materials in structural and dental applications.

https://thebusinessofmanufacturingpodcast.podbean.com/

  continue reading

101 episodes

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