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- W2941628127 abstract "The importance of polycarbonate/acrylonitrile butadiene styrene (PC/ABS) alloy is increasing day by day in today’s world. In this work, we have analyzed and compiled the ABS substrate both qualitatively and quantitatively in various fields like doping, surface modification, polymerization, conductivity, and electroplate decomposition. Also, an in-depth overview of the mechanical behavior, thermal properties, metallization, and modulus of materials has been investigated here. ABS plates with nickel and copper serve good in industrial applications. Apart from this, their widespread applications in automobiles, communication instruments, electrical and electronics equipment, injection molding, and fused deposition modeling were studied to analyze the mechanical behavior of virgin ABS because of its user-friendly behavior and simplicity for machinery actions. The degeneration of ABS substrate caused due to less amount of nitrogen obtained from the paralysis of DABS has been discussed thoroughly. Quasi-static mechanical properties of FDM–ABS materials were also taken into account. In order to improve flame retardancy, it was advised to promote char formation using tin- and zinc-based Lewis acid salts as charging additives on ABS during combustion. Also, flame-retardant properties in ABS were observed by the reaction of hexachlorophosphazene with phenol and catechol. ABS rubber resin and fumed hydrophobic silica nanoparticles were dispersed together to get the best wear abrasion resistant polymer, Taguchi method was introduced to calculate signal-to-noise (S/N) ratio. Later, the study on laser transmission welding of polymer joints by two ABS sheets has also been taken into consideration. The emphasis on production of innovative models using ABS waste has been laid. The discussion on the tribological behavior of composites has also been studied. Boiling effects of ABS fraction on glassy transition temperature and strain rate on deformation behavior of PC, ABS alloy are theoretically concluded in this work." @default.
- W2941628127 created "2019-05-03" @default.
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- W2941628127 date "2019-01-01" @default.
- W2941628127 modified "2023-09-27" @default.
- W2941628127 title "Characterization of ABS Material in Hybrid Composites: A Review" @default.
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- W2941628127 doi "https://doi.org/10.1007/978-981-13-6469-3_57" @default.
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