Dynamic Mechanical Properties and Thermal Stability of Poly(lactic Acid) and Poly(butylene Succinate) Blends Composites

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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  3. Physical blends of PLA with high vinyl acetate containing EVA and their rheological, thermo-mechanical and morphological responses

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  4. Rigid filler toughening in PLA-Calcium Carbonate composites: Effect of particle surface treatment and matrix plasticization

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  5. Tough and degradable photopolymers derived from alkyne monomers for 3D printing of biomedical materials

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    https://doi.org/10.1039/C6PY01132B [Citations: 91]
  6. Simultaneous plasticization and blending of isolate soy protein with poly[(butylene succinate)‐co‐adipate] by one‐step extrusion process

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    https://doi.org/10.1002/app.46442 [Citations: 4]
  7. High‐Performance Materials from Bio‐based Feedstocks

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  8. Characterization of poly(butylene succinate)/poly(lactic acid) blends with in-situ sub-micron fibers and intercalation structure manufacturing by volumetric pulsating elongation flow

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    https://doi.org/10.1016/j.polymertesting.2019.05.005 [Citations: 21]
  9. Role of sonication time on thermal behaviour and dynamic mechanical analysis of NiZn ferrite incorporated PLA/LNR nanocomposite

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    https://doi.org/10.1007/s12034-019-1782-8 [Citations: 18]
  10. Fabrication and evaluation of a biopolymer-based nanocomposite membrane for oily wastewater treatment

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  11. Thermal Properties of Bio-based Polymers

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  12. Effect of Crosslinking Agent and Branching Agent on Morphological and Physical Properties of Poly(Butylene succinate) Foams

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    https://doi.org/10.1177/026248931703600603 [Citations: 17]
  13. Engineering Solutions for Sustainability

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  14. Fabrication of poly(lactic acid), poly(butylene succinate), and poly(hydroxybutyrate) bio‐based and biodegradable blends for application in fused filament fabrication‐based 3D printing

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  16. Slow relaxations in semicrystalline poly(butylene succinate) below and aboveTg

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    https://doi.org/10.1002/pen.24027 [Citations: 13]
  17. Investigation of Eggshell Powder as Inorganic Filler of Bio-Blended between Polylactic Acid (PLA) and Polybutylene Succinate (PBS)

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    https://doi.org/10.4028/p-F9eTHK [Citations: 0]
  18. Manufacturing and compatibilization of binary blends of polyethylene and poly(bulylene succinate) by injection molding

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    https://doi.org/10.4995/jarte.2021.15727 [Citations: 4]
  19. Porous Electrospun Nanofiber from Biomass-Based Polyester Blends of Polylactic Acid and Polybutylene Succinate

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  20. Poly(l-lactide) and poly(butylene succinate) immiscible blends: From electrospinning to biologically active materials

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  22. A comprehensive review of PLA-blended biocomposites and their application in biomedical and food packagings

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  23. Characterization of Natural Composites Fabricated from Abutilon-Fiber-Reinforced Poly (Lactic Acid)

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  24. Studies on Preparation of Poly(3,4-Dihydroxyphenylalanine)-Polylactide Copolymers and the Effect of the Structure of the Copolymers on Their Properties

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  25. Millefeuille‐like cellular structures of biopolymer blend foams prepared by the foam injection molding technique

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  26. Improvement of Poly(Lactic Acid) Properties by Ethylene-Octene Copolymer and Organoclay

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  27. Biobased Multifunctional Poly(lactic acid) Nanofiber Membranes for Efficient Personal Thermal Management

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  28. Mechanical and degradation properties in alkaline solution of poly(ethylene carbonate)/poly(lactic acid) blends

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  29. A review on processing techniques of bast fibers nanocellulose and its polylactic acid (PLA) nanocomposites

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  30. Novel Biodegradable Thermoplastic Elastomer Based on Poly(butylene succinate) and Epoxidized Natural Rubber Simple Blends

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  31. A Review on Properties and Application of Bio-Based Poly(Butylene Succinate)

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    https://doi.org/10.3390/polym13091436 [Citations: 221]
  32. Crystallization behavior of biodegradable poly(L-lactic acid) (PLLA)/poly(butylene succinate) (PBS) blends based on in situ simultaneous wide-angle x-ray diffraction/small-angle x-ray scattering techniques and thermal analyses

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  33. A Critical Review of the Performance and Soil Biodegradability Profiles of Biobased Natural and Chemically Synthesized Polymers in Industrial Applications

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  34. Impacts of Baobab (Adansonia digitata) Powder on the Poly(Butylene Succinate) Polymer Degradability to Form an Eco-Friendly Filler-Based Composite

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  35. Rheological behavior and morphology of poly(lactic acid)/low‐density polyethylene blends based on virgin and recycled polymers: Compatibilization with natural surfactants

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  36. Mechanical Properties and Thermal Stability of Poly(butylene succinate)/Acrylonitrile Butadiene Rubber Blend

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  38. Surface Modification of Aluminum Nitride to Fabricate Thermally Conductive poly(Butylene Succinate) Nanocomposite

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  40. Enhancing crystallization, miscibility, and processability of bio‐based polybutylene succinate/polypropylene blended composites via coffee husk reinforcement

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  42. Effect of micro-lamellar talc on dimensional accuracy and stability in injection molding of PLA/PBSA blends

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  43. Effect of Thermoplastic Elastomer on Melt Rheological and Fracture Behavior of Poly(Lactic Acid)

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  44. Improving the ductility and heat deflection temperature of injection molded Poly(lactic acid) products: A comprehensive review

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  45. Influence of the degree of crystallinity and the surface free energy on the adhesion properties of different PLA/PBS blends in multicomponent injection molding

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  46. Accelerated thermal ageing behaviour of bagasse fibers reinforced Poly (Lactic Acid) based biocomposites

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  48. Preparation of poly(butylene succinate)/polyvinylpyrrolidone blend membrane for pervaporation dehydration of acetone

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  49. Spin-coating: A new approach for improving dispersion of cellulose nanocrystals and mechanical properties of poly (lactic acid) composites

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    https://doi.org/10.1016/j.carbpol.2018.02.069 [Citations: 54]
  50. Crystallization behavior analysis and reducing thermal shrinkage of poly(lactic acid) miscibilized with poly(butylene succinate) film for food packaging

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    https://doi.org/10.1002/app.53915 [Citations: 5]
  51. Compatibilization of poly(lactic acid)/epoxidized natural rubber blend with maleic anhydride

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  52. Engineering Solutions for Sustainability

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  53. Fabrication of green composite fibers from ground tea leaves and poly(lactic acid) as eco-friendly textiles with antibacterial property

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  54. Softened and flexible biodegradable poly(lactic acid) and its electromechanical properties for actuator application

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    https://doi.org/10.1016/j.jmbbm.2016.07.024 [Citations: 7]
  55. Blending poly(butylene succinate) with poly(lactic acid): Ductility and phase inversion effects

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    https://doi.org/10.1016/j.eurpolymj.2015.08.029 [Citations: 153]
  56. Gum Rosin as a Size Control Agent of Poly(Butylene Adipate-Co-Terephthalate) (PBAT) Domains to Increase the Toughness of Packaging Formulations Based on Polylactic Acid (PLA)

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  57. Investigating the Structure–Property Relationships of Paramylon Ester/PBAT Blends for Sustainable Packaging

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  58. Structure and performance of poly(lactic acid)/poly(butylene succinate-co-L-lactate) blend reinforced with rice husk and coconut shell filler

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  59. Poly(butylene succinate) (PBS): Materials, processing, and industrial applications

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  60. Sustainable Polymer Composites and Nanocomposites

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  62. Multiwalled carbon nanotube promotes crystallisation while preserving co-continuous phase morphology of polycarbonate/polypropylene blend

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    https://doi.org/10.1016/j.polymertesting.2017.09.026 [Citations: 20]
  63. Poly(lactic acid) and Its Blends for Packaging Application: A Review

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  65. Preparation and properties of binary green blends from poly(butylene succinate-co-adipate) and β-(1,3)-d-glucan ester derivative

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  66. The effect of polyethylene glycol sorbitan monostearate on the morphological characteristics and performance of thermoplastic starch/biodegradable polyester blend films

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  67. Electrospun cellulose Nano fibril reinforced PLA/PBS composite scaffold for vascular tissue engineering

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  68. Poly(Lactic Acid)

    BLENDS

    Kathuria, Ajay | Detyothin, Sukeewan | Jaruwattanayon, Waree | Selke, Susan E. M. | Auras, Rafael

    2022

    https://doi.org/10.1002/9781119767480.ch14 [Citations: 0]
  69. Isothermal and non-isothermal crystallization kinetics of PLA/PBS blends with talc as nucleating agent

    Somsunan, Runglawan | Mainoiy, Narinya

    Journal of Thermal Analysis and Calorimetry, Vol. 139 (2020), Iss. 3 P.1941

    https://doi.org/10.1007/s10973-019-08631-9 [Citations: 27]
  70. Tuning Biodegradation of Poly (lactic acid) (PLA) at Mild Temperature by Blending with Poly (butylene succinate-co-adipate) (PBSA) or Polycaprolactone (PCL)

    Van de Perre, Dimitri | Serbruyns, Lynn | Coltelli, Maria-Beatrice | Gigante, Vito | Aliotta, Laura | Lazzeri, Andrea | Geerinck, Ruben | Verstichel, Steven

    Materials, Vol. 17 (2024), Iss. 22 P.5436

    https://doi.org/10.3390/ma17225436 [Citations: 0]
  71. A review on polylactic acid‐based blends/composites and the role of compatibilizers in biomedical engineering applications

    Srivastava, Alok | Bhati, Pooja | Singh, Shweta | Agrawal, Mohit | Kumari, Nisha | Vashisth, Priya | Chauhan, Pankaj | Bhatnagar, Naresh

    Polymer Engineering & Science, Vol. 64 (2024), Iss. 3 P.1003

    https://doi.org/10.1002/pen.26626 [Citations: 7]
  72. 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, Jakub

    Polymer International, Vol. 68 (2019), Iss. 7 P.1271

    https://doi.org/10.1002/pi.5814 [Citations: 57]
  73. 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, Salvatore

    Journal of Applied Polymer Science, Vol. 132 (2015), Iss. 48

    https://doi.org/10.1002/app.42704 [Citations: 19]
  74. 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]
  75. Biodegradable poly(lactic acid)/poly(butylene succinate)/wood flour composites: Physical and morphological properties

    Chuayjuljit, Saowaroj | Wongwaiwattanakul, Chutima | Chaiwutthinan, Phasawat | Prasassarakich, Pattarapan

    Polymer Composites, Vol. 38 (2017), Iss. 12 P.2841

    https://doi.org/10.1002/pc.23886 [Citations: 48]
  76. 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, Jason

    ACS Applied Polymer Materials, Vol. 3 (2021), Iss. 3 P.1652

    https://doi.org/10.1021/acsapm.1c00078 [Citations: 14]
  77. Polylactic acid blends: The future of green, light and tough

    Hamad, Kotiba | Kaseem, Mosab | Ayyoob, Muhammad | Joo, Jinho | Deri, Fawaz

    Progress in Polymer Science, Vol. 85 (2018), Iss. P.83

    https://doi.org/10.1016/j.progpolymsci.2018.07.001 [Citations: 490]
  78. 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, Serena

    Molecules, Vol. 28 (2023), Iss. 1 P.347

    https://doi.org/10.3390/molecules28010347 [Citations: 10]
  79. 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 Ariel

    New Journal of Chemistry, Vol. 42 (2018), Iss. 24 P.19537

    https://doi.org/10.1039/C8NJ03501F [Citations: 16]
  80. Biodegradable poly (lactic acid)/poly (butylene succinate) fibers with high elongation for health care products

    Hassan, Elwathig AM | Elarabi, Salah Eldin | Wei, You | Yu, Muhuo

    Textile Research Journal, Vol. 88 (2018), Iss. 15 P.1735

    https://doi.org/10.1177/0040517517708538 [Citations: 25]
  81. 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, B

    Materials Research Express, Vol. 6 (2019), Iss. 12 P.125306

    https://doi.org/10.1088/2053-1591/ab5398 [Citations: 16]
  82. Preparation and foaming behavior of poly (lactic acid)/poly (butylene succinate)/cellulose fiber composite for hot cups packaging application

    Vorawongsagul, Suwara | Pratumpong, Patcharee | Pechyen, Chiravoot

    Food Packaging and Shelf Life, Vol. 27 (2021), Iss. P.100608

    https://doi.org/10.1016/j.fpsl.2020.100608 [Citations: 35]
  83. Thermomechanical properties of alumina-filled plasticized polylactic acid: Effect of alumina loading percentage

    Lule, Zelalem | Ju, Hyun | Kim, Jooheon

    Ceramics International, Vol. 44 (2018), Iss. 18 P.22767

    https://doi.org/10.1016/j.ceramint.2018.09.066 [Citations: 37]
  84. Melt processing of biodegradable poly(butylene succinate) (PBS)—a critical review

    Barletta, Massimiliano | Genovesi, Annalisa | Desole, Maria Pia | Gisario, Annamaria

    Clean Technologies and Environmental Policy, Vol. (2024), Iss.

    https://doi.org/10.1007/s10098-024-03005-8 [Citations: 0]
  85. Biaxially-Stretched Poly(Lactic) Acid (PLA) and Rubber-Toughened PLA Films: Tensile and Physical Properties

    Boonthamjinda, Lalintip | Petchwatana, Nawadon | Covavisaruch, Sirijutaratana | Chinsirikul, Wannee | Kerddonfag, Noppadon

    Key Engineering Materials, Vol. 659 (2015), Iss. P.363

    https://doi.org/10.4028/www.scientific.net/KEM.659.363 [Citations: 2]
  86. 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]
  87. Thermally conductive polybutylene succinate composite filled with Si-O-N-C functionalized silicon carbide fabricated via low-speed melt extrusion

    Lule, Zelalem Chernet | Kim, Jooheon

    European Polymer Journal, Vol. 134 (2020), Iss. P.109849

    https://doi.org/10.1016/j.eurpolymj.2020.109849 [Citations: 21]
  88. 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 Bashree

    Journal of Vinyl and Additive Technology, Vol. 27 (2021), Iss. 3 P.567

    https://doi.org/10.1002/vnl.21828 [Citations: 11]
  89. 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, Andrea

    Polymers, Vol. 13 (2021), Iss. 2 P.218

    https://doi.org/10.3390/polym13020218 [Citations: 55]
  90. 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, Peter

    Macromolecular Symposia, Vol. 384 (2019), Iss. 1

    https://doi.org/10.1002/masy.201800167 [Citations: 5]
  91. 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]
  92. Preparation and characterization of high-performance wood polymer nanocomposites using multi-walled carbon nanotubes

    Kaymakci, Alperen | Ayrilmis, Nadir | Gulec, Turker | Tufan, Mursit

    Journal of Composite Materials, Vol. 51 (2017), Iss. 9 P.1187

    https://doi.org/10.1177/0021998316674265 [Citations: 11]
  93. Modification of PLA with Chain Extender

    Elhassan, Ahmed S.M. | Saeed, Haroon A.M. | Eltahir, Yassir A. | Xia, Yu Min | Wang, Yan Ping

    Applied Mechanics and Materials, Vol. 716-717 (2014), Iss. P.44

    https://doi.org/10.4028/www.scientific.net/AMM.716-717.44 [Citations: 4]
  94. 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, Dezhao

    Journal of Environmental Chemical Engineering, Vol. 11 (2023), Iss. 3 P.109654

    https://doi.org/10.1016/j.jece.2023.109654 [Citations: 4]
  95. 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]
  96. 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, Manjusri

    ACS Sustainable Chemistry & Engineering, Vol. 8 (2020), Iss. 17 P.6576

    https://doi.org/10.1021/acssuschemeng.9b04925 [Citations: 82]
  97. Physical and mechanical properties of PLA, and their functions in widespread applications — A comprehensive review

    Farah, Shady | Anderson, Daniel G. | Langer, Robert

    Advanced Drug Delivery Reviews, Vol. 107 (2016), Iss. P.367

    https://doi.org/10.1016/j.addr.2016.06.012 [Citations: 2201]