Baliga, B. R., et al. “Thermal Modeling of Polymerizing Polymethylmethacrylate, Considering Temperature-Dependent Heat Generation”. Journal of Biomechanical Engineering, vol. 114, no. 2, 1992, pp. 251-9, https://doi.org/10.1115/1.2891379.

Genre

  • Journal Article
Contributors
Author: Baliga, B. R.
Author: Rose, Patricia L.
Author: Ahmed, A. M.
Date Issued
1992
Abstract

A methodology for the modeling of unsteady heat conduction in polymethylmethacrylate (PMMA) during its exothermic polymerization is presented. The emphasis is on the formulation of a model for the volumetric rate of heat generation, including its temperature-dependent characteristics. Three parameters appear in the proposed model. The empirical determination of these parameters using Differential Scanning Calorimetry is demonstrated. The incorporation of the proposed model into finite volume methods is also demonstrated, in the context of unsteady, one-dimensional, radial heat conduction in cylindrical coordinates. In addition, the application of the proposed model to two test problems is presented and discussed. The results are encouraging, and the proposed methodology appears to be applicable to the thermal modeling of exothermic polymerization processes in general.

Note

Department of Mechanical Engineering, McGill University, Montreal, Quebec, Canada.

UNITED STATES

LR: 20061115; PUBM: Print; JID: 7909584; 0 (Bone Cements); 0 (Methylmethacrylates); ppublish

Source type: Electronic(1)

Language

  • English

Subjects

  • Models, Theoretical
  • Bone Cements/chemistry
  • TEMPERATURE
  • Materials Testing
  • Methylmethacrylates/chemistry
Page range
251-259
Host Title
Journal of Biomechanical Engineering
Host Abbreviated Title
J.Biomech.Eng.
Volume
114
Issue
2
ISSN
0148-0731

Department