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In this research work, an epoxy polymer- Carbon Black composite has been prepared and characterized regarding the effects of adding carbon black to epoxy polymer on some structural properties such as polymerization behavior, cross-linking reaction time and yield and some properties e. g. glass transition temperature (Tg), Young modulus (E) and flexural strength (σ). The cross-linking reaction and glass transition temperature were studied by Differential Scanning Calorimetry (DSC), and the mechanical tests were done by Universal Testing Machine.
In this research project, the EPON 828 /Hardener 2512 epoxy resin coating has been prepared at the ambient laboratory temperature with different epoxy/ hardener ratio.
The present work covered the preparation and study of PP- LLDPE- Coconut shell powder composite materials, the determination of the optimal preparation conditions and the characterization of their physical and mechanical properties.
The aim of this work is to study the rheological and mechanical properties of Poly(lactic acid) and High density polyethylene and blends (PLA/HDPE) in the molten state with recpect to shear stress, temperature and blends compositions using brabender mixer.
The present research aims at preparing and characterizing of different formulations of NBR Krynac 3370F rubber with different contents loading amounts of three inorganic reinforcing fillers: conventional N330 carbon black, new nanometric aerosil 200 silica and micrometric volcanic tuff scoria.
The present research aims at preparing and characterizing different formulations of SBR1712 rubber with different loading amounts of two inorganic fillers: conventional N330 carbon black, new nanometric aerosil 200 fumed silica and local micrometric volcanic tuff.
This chapter addresses the grounds behind performing this work which could be summarized in identifying the technological processes to manufacture laboratory samples from unfilled Teflon and composite materials: Teflon+ Carbon Black and characterizin g these samples structurally , mechanically and electrically in order to master this powder based Teflon technology. This contributes to the transfer of this technology to the Syrian industrial and economical environment for the production of filled and unfilled PTFE parts and carbon black- PTFE composite materials meeting the required quality levels and establishing scientific and technological guidelines for this technology.
This chapter addresses the grounds behind performing this work which could be summarized in identifying the technological processes to manufacture laboratory samples from unfilled Teflon and composite materials: Teflon+ Carbon Black and characterizin g these samples structurally , mechanically and electrically in order to master this powder based Teflon technology. This contributes to the transfer of this technology to the Syrian industrial and economical environment for the production of filled and unfilled PTFE parts and carbon black- PTFE composite materials meeting the required quality levels and establishing scientific and technological guidelines for this technology.
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