Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mechanical Properties of Recycled Polyethylene Terephthalate/ Polycarbonate/ Methylene Diphenyl Diisocyanate (r-PET/PC/MDI) Composite

View through CrossRef
The present study aimed to investigate the mechanical properties of recycled Polyethylene Terephthalate (r-PET) and Polycarbonate (PC) composites, with the incorporation of Methylene Diphenyl Diisocyanate. The primary objective was to identify the optimal composition for achieving superior mechanical performance. The composition under examination comprises four ratios, namely r-PET/PC1 (20/80), r-PET/PC2 (40/60), r-PET/PC3 (60/40), and r-PET/PC4 (80/20), expressed as weight percentages. The concentration of MDI utilized in the experiment was maintained at a constant level of 0.9% based on weight. The r-PET/PC/MDI composite underwent blending using a Brabender Plastograph prior to being introduced into the injection moulding process for sample production. The mechanical properties can be ascertained through the analysis of data acquired through mechanical testing, encompassing Tensile tests, Flexural tests, and Impact tests. The findings indicate that there is an inverse relationship between the percentage of r-PET in the blend and the tensile strength, with an increase in r-PET resulting in a decrease in tensile strength. Conversely, there is a positive relationship between the percentage of r-PET and Young's modulus, with an increase in r-PET leading to an increase in Young's modulus. The flexural strength and flexural modulus exhibit variations as the r-PET content increases in the r-PET/PC/MDI blend. Lastly, it can be observed that the impact strength reduces as the proportion of r-PET in the blend increases. The findings of this experiment indicate that the composition of r-PET/PC1 yielded the most favourable results. The composition under investigation demonstrated the greatest recorded tensile strength, measuring 22.30 MPa, as well as the second highest flexural strength, measuring 119.77 MPa. However, the impact strength of r-PET/PC1 exhibited the greatest value compared to the other samples, measuring 0.32J. In summary, the findings indicate that the mechanical characteristics of the r-PET/PC/MDI mix can be improved through the optimization of PC content, hence enhancing the features of r-PET.
Title: Mechanical Properties of Recycled Polyethylene Terephthalate/ Polycarbonate/ Methylene Diphenyl Diisocyanate (r-PET/PC/MDI) Composite
Description:
The present study aimed to investigate the mechanical properties of recycled Polyethylene Terephthalate (r-PET) and Polycarbonate (PC) composites, with the incorporation of Methylene Diphenyl Diisocyanate.
The primary objective was to identify the optimal composition for achieving superior mechanical performance.
The composition under examination comprises four ratios, namely r-PET/PC1 (20/80), r-PET/PC2 (40/60), r-PET/PC3 (60/40), and r-PET/PC4 (80/20), expressed as weight percentages.
The concentration of MDI utilized in the experiment was maintained at a constant level of 0.
9% based on weight.
The r-PET/PC/MDI composite underwent blending using a Brabender Plastograph prior to being introduced into the injection moulding process for sample production.
The mechanical properties can be ascertained through the analysis of data acquired through mechanical testing, encompassing Tensile tests, Flexural tests, and Impact tests.
The findings indicate that there is an inverse relationship between the percentage of r-PET in the blend and the tensile strength, with an increase in r-PET resulting in a decrease in tensile strength.
Conversely, there is a positive relationship between the percentage of r-PET and Young's modulus, with an increase in r-PET leading to an increase in Young's modulus.
The flexural strength and flexural modulus exhibit variations as the r-PET content increases in the r-PET/PC/MDI blend.
Lastly, it can be observed that the impact strength reduces as the proportion of r-PET in the blend increases.
The findings of this experiment indicate that the composition of r-PET/PC1 yielded the most favourable results.
The composition under investigation demonstrated the greatest recorded tensile strength, measuring 22.
30 MPa, as well as the second highest flexural strength, measuring 119.
77 MPa.
However, the impact strength of r-PET/PC1 exhibited the greatest value compared to the other samples, measuring 0.
32J.
In summary, the findings indicate that the mechanical characteristics of the r-PET/PC/MDI mix can be improved through the optimization of PC content, hence enhancing the features of r-PET.

Related Results

SEMANA DE ENFERMAGEM E SEUS ASPECTOS SOCIAIS NA VALORIZAÇÃO PROFISSIONAL: UM RELATO DE EXPERIÊNCIA DO GRUPO PET-ENFERMAGEM
SEMANA DE ENFERMAGEM E SEUS ASPECTOS SOCIAIS NA VALORIZAÇÃO PROFISSIONAL: UM RELATO DE EXPERIÊNCIA DO GRUPO PET-ENFERMAGEM
A enfermagem é o pilar da assistência pois está na linha de frente do cuidado holístico, todavia esta é estigmatizada e desvalorizada, assim como não possui reconhecimento consider...
Mechanical Properties of Recycled PET/PC/MDI Composite Fabricated by 3D Printing
Mechanical Properties of Recycled PET/PC/MDI Composite Fabricated by 3D Printing
The environmental pollution of plastic bottles is a serious dilemma among the scientist and researcher nowadays. One of the solutions that can reduce the pollution of plastic bottl...
BIODEGRADABILITY OF POLYETHYLENE TEREPHTHALATE USING POLYETHYLENE TEREPHTHALATE DEPOLYMERASE PRODUCED BY Enterobacter aerogenes BFS8
BIODEGRADABILITY OF POLYETHYLENE TEREPHTHALATE USING POLYETHYLENE TEREPHTHALATE DEPOLYMERASE PRODUCED BY Enterobacter aerogenes BFS8
Plastic debris in great quantity and its persistence in the surroundings may disrupt ecological balance of the earth because plastics are difficult to degrade. This study was aimed...
New mechanisms in diisocyanate-mediated allergy/toxicity: are microRNAs in play?
New mechanisms in diisocyanate-mediated allergy/toxicity: are microRNAs in play?
Purpose of review To describe recent findings of diisocyanate-mediated mechanisms in allergy and toxicology by addressing the role of microRNA (miR) in immune responses...
Comparative study of total-body PET and PET/MR in the diagnosis of liver metastases
Comparative study of total-body PET and PET/MR in the diagnosis of liver metastases
ObjectiveTo compare the diagnostic differences between total-body PET/CT (positron emission tomography/computed tomography) and PET/MR (positron emission tomography/magnetic resona...

Back to Top