Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"The Effect of Annealing Treatments on Spherulitic Morphology and Physical Ageing on Glass Transition of Poly Lactic Acid (PLLA)"
written by El-Hadi Ahmed Mohamed,
published by Materials Sciences and Applications, Vol.2 No.5, 2011
has been cited by the following article(s):
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[1] Thermal analysis and polarized light microscopy as methods to study the increasing of the durability of PLA designed for 3D printing
2021
[2] Role of lubricant with a plasticizer to change the glass transition temperature as a result improving the mechanical properties of poly (lactic acid) PLLA
2020
[3] Influence of Annealing and Biaxial Expansion on the Properties of Poly(l-Lactic Acid) Medical Tubing
Polymers, 2019
[4] The Influence of Low Shear Microbore Extrusion on the Properties of High Molecular Weight Poly(l-Lactic Acid) for Medical Tubing Applications
Polymers, 2019
[5] The Influence of Low Shear Microbore Extrusion on the Properties of High Molecular Weight Poly (l-Lactic Acid) for Medical Tubing Applications
2019
[6] Influence of Annealing and Biaxial Expansion on the Properties of Poly (l-Lactic Acid) Medical Tubing
2019
[7] Long-and short-term stability of plasticized poly (lactic acid): effects of plasticizers type on thermal, mechanical and morphological properties
Polymer Bulletin, 2018
[8] Miscibility of Crystalline/Amorphous/Crystalline Biopolymer Blends from PLLA/PDLLA/PHB with Additives
Polymer-Plastics Technology and Engineering, 2018
[9] The New Generation from Biomembrane with Green Technologies for Wastewater Treatment
Polymers, 2018
[10] Crystallization of itaconic anhydride grafted poly (lactic acid) during annealing
Journal of applied polymer science, 2017
[11] Increase the elongation at break of poly (lactic acid) composites for use in food packaging films
Scientific Reports, 2017
[12] Effect of PHB on the properties of biodegradable PLA blends
Chemical Papers, 2016
[13] Modification of poly (lactic acid) using itaconic anhydride by reactive extrusion
European Polymer Journal, 2015
[14] 聚乳酸/纳米 SiO2 复合材料的非等温冷结晶行为
塑料科技, 2014
[15] Development of novel biopolymer blends based on poly(l‐lactic acid), poly((R)‐3‐hydroxybutyrate), and plasticizer
Polymer Engineering & Science, 2014
[16] Development of novel biopolymer blends based on poly (l‐lactic acid), poly ((R)‐3‐hydroxybutyrate), and plasticizer
Polymer Engineering & Science, 2014
[17] The effect of additives interaction on the miscibility and crystal structure of two immiscible biodegradable polymers
Polímeros, 2014
[18] Enhancing the crystallization and orientation of electrospinning poly (lactic acid)(PLLA) by combining with additives
Journal of Polymer Research, 2014
[19] 聚乳酸/纳米 SiO_2 复合材料的非等温冷结晶行为
塑料科技, 2014
[20] Tough, biodegradable poly (L-lactic acid) polymer blends
A El-Hadi - 4spepro.org, 2013
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