Handbook of nucleating agents

"Handbook of Nucleating Agents is the most extensive monograph on the subject ever written. In addition to the Handbook, Databook of Nucleating Agents is simultaneously published to give readers comprehensive information on this important subject. The second editions of these books contain upda...

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Bibliographic Details
Main Author Wypych, George (Author)
Format Electronic eBook
LanguageEnglish
Published Toronto : ChemTec Publishing, 2021.
Edition2nd edition.
Subjects
Online AccessFull text
ISBN9781927885826
1927885825
9781927885819
1927885817
Physical Description1 online resource

Cover

Table of Contents:
  • Cover image
  • Title page
  • Table of Contents
  • Copyright
  • List of Illustrations
  • Chapter 1: INTRODUCTION
  • Chapter 2: CHEMICAL ORIGIN OF NUCLEATING AGENTS
  • 2.1 ACIDS
  • 2.2 AMIDES
  • 2.3 CARBON NANOTUBES
  • 2.4 GRAPHENE DERIVATIVES
  • 2.5 HYDRAZIDES
  • 2.6 INORGANIC MATERIALS
  • 2.6.1 BORON NITRIDE
  • 2.6.2 CALCIUM CARBONATE
  • 2.6.3 HYDROXIDES AND OXIDES
  • 2.6.4 SILICA
  • 2.6.5 TALC
  • 2.6.6 OTHERS
  • 2.7 MASTERBATCH
  • 2.8 PHOSPHATE SALTS
  • 2.9 POLYMERIC
  • 2.10 PROPRIETARY NUCLEATING AGENTS
  • 2.11 RENEWABLE RESOURCE
  • 2.12 SALTS OF CARBOXYLIC ACIDS
  • 2.13 SORBITOL DERIVATIVES
  • 2.14 XYLAN ESTERS
  • 2.15 OTHER NUCLEATING AGENTS
  • Chapter 3: POLYMER CRYSTALLIZATION WITH AND WITHOUT NUCLEATING AGENTS
  • Chapter 4: PARAMETERS OF CRYSTALLIZATION
  • Chapter 5: WHAT INFLUENCES NUCLEATION?
  • 5.1 CONCENTRATION
  • 5.2 SOLUBILITY OF THE NUCLEATING AGENT IN THE POLYMER
  • 5.3 SHEAR RATE AND TIME
  • 5.4 FORM OF NUCLEATING AGENT
  • 5.5 MIXTURES OF NUCLEATING AGENTS
  • Chapter 6: NUCLEATION EFFICIENCY MEASURES
  • 6.1 NUCLEI DENSITY
  • 6.2 NUCLEATION ACTIVITY AND CONSTANT
  • 6.3 NUCLEATION EFFICIENCY
  • 6.4 ACTIVATION ENERGY
  • Chapter 7: MECHANISMS OF CRYSTALLIZATION
  • Chapter 8: DISPERSION OF NUCLEATING AGENTS
  • Chapter 9: NUCLEATING AGENTS IN DIFFERENT PROCESSING METHODS
  • 9.1 BLOW MOLDING
  • 9.2 BLOWN FILM EXTRUSION
  • 9.3 CALENDERING
  • 9.4 COMPRESSION MOLDING
  • 9.5 DIP COATING
  • 9.6 EXTRUSION
  • 9.7 FOAMING
  • 9.8 HOT-MELT COATING
  • 9.9 INJECTION MOLDING
  • 9.10 MICRO-INJECTION MOLDING
  • 9.11 POWDER INJECTION MOLDING
  • 9.12 PULTRUSION
  • 9.13 REACTION INJECTION MOLDING
  • 9.14 ROTATIONAL MOLDING
  • 9.15 SHEET MOLDING
  • 9.16 SPINNING
  • 9.17 THERMOFORMING
  • 9.18 WELDING AND MACHINING
  • 9.19 WIRE COATING
  • 10.17 POLYETHERETHERKETONE
  • 10.18 POLYETHERKETONEKETONE
  • 10.19 POLY(ETHYLENE OXIDE)
  • 10.20 POLY(ETHER SULFONE)
  • 10.21 POLY(ETHYLENE TEREPHTHALATE)
  • 10.22 POLYETHYLENE, SILANE-CROSSLINKED
  • 10.23 POLY(GLYCOLIC ACID)
  • 10.24 POLY(3-HYDROXYBUTYRATE)
  • 10.25 POLY(3-HYDROXYBUTYRATE-CO-3-HYDROXYVALERATE)
  • 10.26 POLYIMIDE
  • 10.27 POLY(LACTIC ACID)
  • 10.28 POLYOXYMETHYLENE
  • 10.29 POLYPROPYLENE
  • 10.30 POLYPHTHALAMIDE
  • 10.31 POLY(P-PHENYLENE SULFIDE)
  • 10.32 POLYSTYRENE
  • 10.33 POLY(TRIMETHYLENE TEREPHTHALATE)
  • 10.34 POLYURETHANE
  • 10.35 POLY(VINYL ALCOHOL)