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The use of recycled low-density polyethylene films from protective prepreg for the development of nanocomposites with bentonite clay
Authors:Pamela Rodrigues Passos Severino  Natália Ferreira Braga  Guilherme Ferreira de Melo Morgado  Juliano Marini  Orestes Ferro  Fábio Roberto Passador  Larissa Stieven Montagna
Affiliation:1. Department of Materials Engineering, Federal University of São Paulo (UNIFESP), Institute of Science and Technology, Polymer and Biopolymer Technology Laboratory (TecPBio), São José dos Campos, São Paulo, Brazil;2. Department of Materials Engineering, Federal University of São Carlos (UFSCar), São Carlos, São Paulo, Brazil;3. ALLTEC, Materiais Compostos Ltda, São José dos Campos, São Paulo, Brazil
Abstract:Prepreg is a pre-impregnated composite fiber where a thermoset polymer matrix material is present. Before being used, these materials are kept at low temperatures and have a low-density polyethylene (LDPE) film for your protection. The increase in the use of structural composites based on prepregs causes an increase in the amount of protective LDPE film. This material is usually discarded or incinerated and can cause great damage to the environment. Thus, the present work aimed to study the feasibility of recycling up to 100% of protective LDPE (rLDPE) to develop blends-based nanocomposites with rLDPE/virgin LDPE (60/40, 70/30, 80/20, 90/10 and 100/0) with the addition of 5 wt% of compatibilizer agent (maleic anhydride grafted LDPE, LDPE-g-MA), and 1 wt% of bentonite (BNT) using a co-rotational twin-screw extruder, followed by hot pressing in a hydropneumatic press and die-cutting. Water absorption test, thermal aging resistance, morphological characterization by scanning electron microscopy, mechanical properties by Izod impact strength and tensile tests, and differential scanning calorimetry were performed. By the results, it was possible to verify the viability of 100% of the recycling of rLDPE. The results showed a good distribution of 1 wt% of BNT in the matrix, better mechanical properties when compared with virgin LDPE. Furthermore, the thermal properties, water absorption test, and thermal aging resistance showed no statistical differences between the samples. These results confirm the effectiveness and the environmental gain in the use of the recycled material.
Keywords:differential scanning calorimetry  extrusion  microscopy  recycling  thermoplastics
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