Advanced Composite Materials By Lalit Gupta Pdf !FULL! Free Downloadl
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Resume : In this study, we report a novel type of biocomposite called biodegradable porous polymer/waste rubber/polymer composite (BPPC) by an in situ polymerization technique for the first time. The PBPPC was designed for applications in bone tissue engineering owing to its porous structure and porous distribution. The PBPPC was processed to a porous scaffold by freeze-drying, and a composite scaffold of the PBPPC and bioglass was prepared. The biocomposite scaffolds were characterized by scanning electron microscopy, nitrogen adsorption/desorption, and mercury intrusion porosimetry. The results show that the electrospun PBPPC had a porous structure and showed high water uptake. The porous PBPPC composites were characterized by bioglass incorporation, which increased the water uptake and porosity of the composite. The bioglass incorporation did not have a large influence on the composite mechanical properties. The bioglass incorporation was confirmed to have a significant effect on the composite degradation rate. The composite containing bioglass was shown to be suitable for osteoblast cell attachment and proliferation.
Resume : This study presents a new simple, scalable and inexpensive approach to fabricate a novel electrode for lithium ion batteries. It involves fabrication of a novel poly(ethylene vinyl acetate) (PEVA) composite and its lithium ion battery assembly. The PEVA composite is prepared by a solvent elimination process, which contains imine groups, hydroxyl groups and ether linkages. The imine group is a class of functional groups, including N-aminosulfonamide and N-alkylurea. The PEVA composite possesses high specific surface area and can absorb lithium ions, which prevents the aggregation of lithium ions. The lithium ion battery assembly is assembled using the PEVA composite as anode and activated carbon fiber (ACF) as an anode separator and cathode counterpart. The lithium ion battery shows a good rate capability and cycling performance. The investigations demonstrate the PEVA composite as a promising material for lithium ion battery applications.
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One of the drawbacks to this approach was that we needed to recompile every time we made even a small change to the code. This slowed everything else we were doing down and because we couldn't always have someone waiting for the application to finish building. 827ec27edc