Javascript must be enabled to continue!
Fundamentals of Polymer Additives
View through CrossRef
AbstractPolymer materials are key building blocks of the modern world, commonly used in packaging, automobiles, building materials, electronics, telecommunications, and many other industries. These commercial applications of polymeric materials would not be possible without the use of additives. This article is divided into five sections: mechanical property modifiers, physical property modifiers, biological function modifiers, processing aids, and colorants. It describes three classes of additives that are used to inhibit biological activity, six classes of mechanical property modifiers, three classes of physical property modifiers, and two classes of both colorants and processing aids.
Title: Fundamentals of Polymer Additives
Description:
AbstractPolymer materials are key building blocks of the modern world, commonly used in packaging, automobiles, building materials, electronics, telecommunications, and many other industries.
These commercial applications of polymeric materials would not be possible without the use of additives.
This article is divided into five sections: mechanical property modifiers, physical property modifiers, biological function modifiers, processing aids, and colorants.
It describes three classes of additives that are used to inhibit biological activity, six classes of mechanical property modifiers, three classes of physical property modifiers, and two classes of both colorants and processing aids.
Related Results
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Drag reduction (DR) under a turbulent boundary layer implies the suppression of turbulent momentum flux to the wall, a large-eddy phenomenon. Our hypothesis is that the essential m...
Mangala Polymer Flood Performance: Connecting the Dots Through in Situ Polymer Sampling
Mangala Polymer Flood Performance: Connecting the Dots Through in Situ Polymer Sampling
Abstract
The paper describes the in-situ polymer sampling in Mangala which helped explain the performance of a large polymer flood in Mangala field in India.
...
Polymer EOR Assessment Through Integrated Laboratory and Simulation Evaluation for an Offshore Middle East Carbonate Reservoir
Polymer EOR Assessment Through Integrated Laboratory and Simulation Evaluation for an Offshore Middle East Carbonate Reservoir
Abstract
A laboratory study was performed to identify a robust chemical EOR solution for a complex low-permeability carbonate reservoir. The study consisted of two p...
Offshore Large Scale Polymer Flood Implementation at Chengdao Field
Offshore Large Scale Polymer Flood Implementation at Chengdao Field
Abstract
The number of polymer injection projects has greatly increased worldwide in the past decade, with more and more full-field implementations. More recently, t...
Practice of the Early Stage Polymer Flooding on LD Offshore Oilfield in Bohai Bay of China
Practice of the Early Stage Polymer Flooding on LD Offshore Oilfield in Bohai Bay of China
Abstract
Literature survey shows that polymer flooding was generally conducted during high water-cut stage (WCT>80%-90%). Even the first China Offshore polyme...
Polymer Brushes Derived from Polymer Single Crystals
Polymer Brushes Derived from Polymer Single Crystals
Polymer brushes are polymer chains densely tethered to substrates or interfaces. Different from free polymer chains, these tethered brushes exhibit unique chain conformations and b...

