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June 3, 2026Materials0 citationsOpen Access

Industrial-Scale Injection Moulding Validation of Recycled Fiber-Reinforced Polypropylene: Processability and Manufacturing Feasibility

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ECElena Picazo CamiloRBRaúl Carrillo BeltránGTGriselda Elisabeth Perea Toledo

Key Points

  • Evaluate the feasibility of industrial-scale injection moulding of recycled polypropylene composites reinforced with recycled fibers.
  • Conducted injection moulding trials in four independent industrial companies in Andalusia and three case studies in Slovenia under real production conditions.
  • Characterized the extrusion process for stability and operational efficiency, focusing on automated dosing and stable material flow.
  • Assessed injection processing parameters including cycle stability, part quality, and defect formations.
  • Confirmed continuous operation with stable material flow and process stability.
  • Observed strong cycle repeatability and consistent operations under industrial conditions.
  • Provided critical insights into the scalability of recycled natural fiber-reinforced polypropylene composites.

Abstract

This study evaluates the industrial-scale feasibility of injection moulding of a recycled polypropylene composite reinforced with recycled fibers derived from an industrial waste stream. Although previous laboratory-scale research has demonstrated the potential of natural fiber-reinforced thermoplastics, their large-scale industrial implementation remains limited due to uncertainties related to processability, reproducibility, and manufacturing robustness. In this work, the composite material is validated through injection moulding trials carried out in four independent industrial companies located in Andalusia (Spain) and three industrial case studies across different industrial sectors in Slovenia, operating under real production conditions. The extrusion process was characterized in terms of process stability, confirming continuous operation with automated dosing and stable material flow without interruptions under industrial conditions. Injection processing parameters, cycle stability, part quality, and defect formations are also considered important when assessing the manufacturing feasibility. The multi-site validation approach enables the evaluation of reproducibility across different injection moulding systems and mould geometries, providing critical insights into the scalability and technological readiness level of recycled natural fiber-reinforced polypropylene composites. Although direct energy consumption measurements were not systematically recorded, the observed processing stability and cycle repeatability indicate a consistent and energy-efficient operation under industrial processing conditions. The results contribute to bridging the gap between laboratory-scale material development and real industrial implementation.

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Cite This Study

Camilo et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc6f7dee9eb8c0dce7ca6https://doi.org/10.3390/ma19112314
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