Toughening polystyrene by core–shell grafting copolymer polybutadiene-graft-polystyrene with potassium persulfate as initiator
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference18 articles.
1. An electron microscope study of the microstructure of some rubber-reinforced polystyrenes
2. The effect of rubber particle size on the mechanical properties of high-impact polystyrene
3. Craze initiation and growth in high-impact polystyrene
4. Size effect of compliant rubbery particles on craze plasticity in polystyrene
5. Applications of microscopy to the deformation and fracture of rubber-toughened polymers
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1. Mechanical Properties and Deformation Mechanism of Bimodal-Rubber-Particle-Toughened Polyphenylene Ether/Polystyrene Blends;ACS Applied Polymer Materials;2022-11-08
2. Effect of Entanglement Density on Mechanical Properties and the Deformation Mechanism of Rubber‐Modified PPO/PS Blends;Macromolecular Materials and Engineering;2022-08-18
3. Influence of the structure of sub‐micrometer core‐shell rubber particles and matrix composition on the mechanical properties, morphological structure and deformation mechanism of rubber‐modified polyphenylene oxide/polystyrene blends;Journal of Applied Polymer Science;2022-08-15
4. Synthesis and applications of CaCO3/HPC core–shell composite subject to heavy metals adsorption processes;Heliyon;2019-08
5. Incorporation of a recycled rubber compound from the shoe industry in polystyrene: Effect of SBS compatibilizer content;Journal of Elastomers & Plastics;2019-01-13
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