Dynamic Mechanical Properties and Thermal Stability of Poly(lactic Acid) and Poly(butylene Succinate) Blends Composites
Year: 2013
Journal of Fiber Bioengineering and Informatics, Vol. 6 (2013), Iss. 1 : pp. 85–94
Abstract
The blend of poly(lactic acid) (PLA) and poly(butylene succinate) (PBS) were prepared and extruded with various compositions and their molded properties were examined. Thermogravimetric analysis showed that thermal stability of the blends was higher than that of pure PLA and the weight loss of PLA/PBS (40/60 wt%) was lower than neat polymers. Differential scanning calorimetry thermograms of blends indicated that the thermal properties of PLA did not change noticeably when blended with PBS. The tensile strength and modulus of blends decreased with the increasing PBS content. But impact strength has improved about two times compared to pure PLA. Rheological results revealed that the addition of 10% and 20% of PBS increased the storage modulus, loss modulus and viscosity of the blend at nearly all frequencies, and decreased viscosity with increasing shear stress. Dynamic mechanical properties results showed the lowering of storage modulus of all blended PLA which indicated the increase of molecular mobility by adding PBS due to lower glass transition.
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Journal Article Details
Publisher Name: Global Science Press
Language: English
DOI: https://doi.org/10.3993/jfbi03201308
Journal of Fiber Bioengineering and Informatics, Vol. 6 (2013), Iss. 1 : pp. 85–94
Published online: 2013-01
AMS Subject Headings:
Copyright: COPYRIGHT: © Global Science Press
Pages: 10
Keywords: PLA ⁄ PBS Blends
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https://doi.org/10.1002/pen.26626 [Citations: 7] -
The effect of poly(butylene succinate) content on the structure and thermal and mechanical properties of its blends with polylactide
Ostrowska, Justyna | Sadurski, Waldemar | Paluch, Magdalena | Tyński, Piotr | Bogusz, JakubPolymer International, Vol. 68 (2019), Iss. 7 P.1271
https://doi.org/10.1002/pi.5814 [Citations: 57] -
Foaming behavior of bio‐based blends based on thermoplastic gelatin and poly(butylene succinate)
Oliviero, Maria | Sorrentino, Luigi | Cafiero, Livia | Galzerano, Barbara | Sorrentino, Andrea | Iannace, SalvatoreJournal of Applied Polymer Science, Vol. 132 (2015), Iss. 48
https://doi.org/10.1002/app.42704 [Citations: 19] -
Exfoliated graphite/acrylic composite film as hydrophobic coating of 3D-printed polylactic acid surfaces
Pajarito, Bryan B. | Cayabyab, Carlo Angelo L. | Costales, Patrick Aldrei C. | Francisco, Jasmine R.Journal of Coatings Technology and Research, Vol. 16 (2019), Iss. 4 P.1133
https://doi.org/10.1007/s11998-019-00188-4 [Citations: 8] -
Biodegradable poly(lactic acid)/poly(butylene succinate)/wood flour composites: Physical and morphological properties
Chuayjuljit, Saowaroj | Wongwaiwattanakul, Chutima | Chaiwutthinan, Phasawat | Prasassarakich, PattarapanPolymer Composites, Vol. 38 (2017), Iss. 12 P.2841
https://doi.org/10.1002/pc.23886 [Citations: 48] -
Blends of Poly(butylene glutarate) and Poly(lactic acid) with Enhanced Ductility and Composting Performance
Holt, Apisata | Ke, Yutian | Bramhall, Jessica A. | Crane, Grant | Grubbs, Joe B. | White, Evan M. | Horn, Jessica | Locklin, JasonACS Applied Polymer Materials, Vol. 3 (2021), Iss. 3 P.1652
https://doi.org/10.1021/acsapm.1c00078 [Citations: 14] -
Polylactic acid blends: The future of green, light and tough
Hamad, Kotiba | Kaseem, Mosab | Ayyoob, Muhammad | Joo, Jinho | Deri, FawazProgress in Polymer Science, Vol. 85 (2018), Iss. P.83
https://doi.org/10.1016/j.progpolymsci.2018.07.001 [Citations: 490] -
Rosmarinic and Glycyrrhetinic Acid-Modified Layered Double Hydroxides as Functional Additives for Poly(Lactic Acid)/Poly(Butylene Succinate) Blends
Cicogna, Francesca | Passaglia, Elisa | Benedettini, Matilde | Oberhauser, Werner | Ishak, Randa | Signori, Francesca | Coiai, SerenaMolecules, Vol. 28 (2023), Iss. 1 P.347
https://doi.org/10.3390/molecules28010347 [Citations: 10] -
Development and application of a routine robust graphite/poly(lactic acid) composite electrode for the fast simultaneous determination of Pb2+ and Cd2+ in jewelry by square wave anodic stripping voltammetry
Silva, Ana Luísa | Corrêa, Matheus Millen | de Oliveira, Grasielli Correa | Michel, Ricardo Cunha | Semaan, Felipe Silva | Ponzio, Eduardo ArielNew Journal of Chemistry, Vol. 42 (2018), Iss. 24 P.19537
https://doi.org/10.1039/C8NJ03501F [Citations: 16] -
Biodegradable poly (lactic acid)/poly (butylene succinate) fibers with high elongation for health care products
Hassan, Elwathig AM | Elarabi, Salah Eldin | Wei, You | Yu, MuhuoTextile Research Journal, Vol. 88 (2018), Iss. 15 P.1735
https://doi.org/10.1177/0040517517708538 [Citations: 25] -
Poly(lactic acid)/thermoplastic polyurethane/wood flour composites: evaluation of morphology, thermal, mechanical and biodegradation properties
Pandey, Kalpana | Antil, Rohit | Saha, Sampa | Jacob, Josemon | Balavairavan, BMaterials Research Express, Vol. 6 (2019), Iss. 12 P.125306
https://doi.org/10.1088/2053-1591/ab5398 [Citations: 16] -
Preparation and foaming behavior of poly (lactic acid)/poly (butylene succinate)/cellulose fiber composite for hot cups packaging application
Vorawongsagul, Suwara | Pratumpong, Patcharee | Pechyen, ChiravootFood Packaging and Shelf Life, Vol. 27 (2021), Iss. P.100608
https://doi.org/10.1016/j.fpsl.2020.100608 [Citations: 35] -
Thermomechanical properties of alumina-filled plasticized polylactic acid: Effect of alumina loading percentage
Lule, Zelalem | Ju, Hyun | Kim, JooheonCeramics International, Vol. 44 (2018), Iss. 18 P.22767
https://doi.org/10.1016/j.ceramint.2018.09.066 [Citations: 37] -
Melt processing of biodegradable poly(butylene succinate) (PBS)—a critical review
Barletta, Massimiliano | Genovesi, Annalisa | Desole, Maria Pia | Gisario, AnnamariaClean Technologies and Environmental Policy, Vol. (2024), Iss.
https://doi.org/10.1007/s10098-024-03005-8 [Citations: 0] -
Biaxially-Stretched Poly(Lactic) Acid (PLA) and Rubber-Toughened PLA Films: Tensile and Physical Properties
Boonthamjinda, Lalintip | Petchwatana, Nawadon | Covavisaruch, Sirijutaratana | Chinsirikul, Wannee | Kerddonfag, NoppadonKey Engineering Materials, Vol. 659 (2015), Iss. P.363
https://doi.org/10.4028/www.scientific.net/KEM.659.363 [Citations: 2] -
Mechanical, morphological, and solid-state viscoelastic responses of poly(lactic acid)/ethylene-co-vinyl-acetate super-tough blend reinforced with halloysite nanotubes
Singla, Rajendra Kumar | Maiti, Saurindra N. | Ghosh, Anup K.Journal of Materials Science, Vol. 51 (2016), Iss. 22 P.10278
https://doi.org/10.1007/s10853-016-0255-3 [Citations: 27] -
Thermally conductive polybutylene succinate composite filled with Si-O-N-C functionalized silicon carbide fabricated via low-speed melt extrusion
Lule, Zelalem Chernet | Kim, JooheonEuropean Polymer Journal, Vol. 134 (2020), Iss. P.109849
https://doi.org/10.1016/j.eurpolymj.2020.109849 [Citations: 21] -
The effects of melt grafted maleated polybutylene succinate on the properties of poly(hydroxybutyrate‐co‐hydroxyhexanoate)/polybutylene succinate blends
Ahmad Thirmizir, Mohd Zharif | Mohd Ishak, Zainal Arifin | Mat Taib, Razaina | C. Kanapathi Pillai, K. Sudesh Kumar | Salim, Muhamad Saifuddin | Hassan, Aziz | Abu Bakar, Mohd BashreeJournal of Vinyl and Additive Technology, Vol. 27 (2021), Iss. 3 P.567
https://doi.org/10.1002/vnl.21828 [Citations: 11] -
Poly(lactic acid) (PLA)/Poly(butylene succinate-co-adipate) (PBSA) Compatibilized Binary Biobased Blends: Melt Fluidity, Morphological, Thermo-Mechanical and Micromechanical Analysis
Aliotta, Laura | Vannozzi, Alessandro | Canesi, Ilaria | Cinelli, Patrizia | Coltelli, Maria-Beatrice | Lazzeri, AndreaPolymers, Vol. 13 (2021), Iss. 2 P.218
https://doi.org/10.3390/polym13020218 [Citations: 55] -
Direct Compounding Injection Molding and Resulting Properties of Ternary Blends of Polylactide, Polybutylene Succinate and Hydrogenated Styrene Farnesene Block Copolymers
Hirsch, Patrick | Menzel, Matthias | Klehm, Jessica | Putsch, PeterMacromolecular Symposia, Vol. 384 (2019), Iss. 1
https://doi.org/10.1002/masy.201800167 [Citations: 5] -
Thermo-Mechanical Properties of Injection Molded Components Manufactured by Engineered Biodegradable Blends
Barletta, M. | Puopolo, M.Journal of Polymers and the Environment, Vol. 27 (2019), Iss. 10 P.2105
https://doi.org/10.1007/s10924-019-01500-4 [Citations: 9] -
Preparation and characterization of high-performance wood polymer nanocomposites using multi-walled carbon nanotubes
Kaymakci, Alperen | Ayrilmis, Nadir | Gulec, Turker | Tufan, MursitJournal of Composite Materials, Vol. 51 (2017), Iss. 9 P.1187
https://doi.org/10.1177/0021998316674265 [Citations: 11] -
Modification of PLA with Chain Extender
Elhassan, Ahmed S.M. | Saeed, Haroon A.M. | Eltahir, Yassir A. | Xia, Yu Min | Wang, Yan PingApplied Mechanics and Materials, Vol. 716-717 (2014), Iss. P.44
https://doi.org/10.4028/www.scientific.net/AMM.716-717.44 [Citations: 4] -
Baobab fruit powder promotes denitrifiers’ abundance and improves poly(butylene succinate) biodegradation for a greener environment
Tadda, Musa Abubakar | Gouda, Mostafa | Shitu, Abubakar | Yu, Qili | Zhao, Xin | Ying, Liu | Zhu, Songming | Liu, DezhaoJournal of Environmental Chemical Engineering, Vol. 11 (2023), Iss. 3 P.109654
https://doi.org/10.1016/j.jece.2023.109654 [Citations: 4] -
Development and characterization of environmentally friendly composites from poly(butylene succinate) (PBS) and almond shell flour with different compatibilizers
Liminana, P. | Garcia-Sanoguera, D. | Quiles-Carrillo, L. | Balart, R. | Montanes, N.Composites Part B: Engineering, Vol. 144 (2018), Iss. P.153
https://doi.org/10.1016/j.compositesb.2018.02.031 [Citations: 107] -
Development of Toughened Blends of Poly(lactic acid) and Poly(butylene adipate-co-terephthalate) for 3D Printing Applications: Compatibilization Methods and Material Performance Evaluation
Andrzejewski, Jacek | Cheng, Joyce | Anstey, Andrew | Mohanty, Amar K. | Misra, ManjusriACS Sustainable Chemistry & Engineering, Vol. 8 (2020), Iss. 17 P.6576
https://doi.org/10.1021/acssuschemeng.9b04925 [Citations: 82] -
Physical and mechanical properties of PLA, and their functions in widespread applications — A comprehensive review
Farah, Shady | Anderson, Daniel G. | Langer, RobertAdvanced Drug Delivery Reviews, Vol. 107 (2016), Iss. P.367
https://doi.org/10.1016/j.addr.2016.06.012 [Citations: 2201]