Recycling Polyester Waste: A Modern Approach to Needle Punch Manufacturing - Hardcover

Chauhan, Vinay Kumar; Singh, Jitendra Pratap; Debnath, Sanjoy; Navinbhai, Amin Hirenbhai

 
9781041217527: Recycling Polyester Waste: A Modern Approach to Needle Punch Manufacturing

Inhaltsangabe

This book examines polyester filter fabric technology focusing on virgin and recycled materials in needle-punched construction. It analyzes mechanical properties including tensile strength, bursting behavior, and air permeability and also includes:

  • Systematic study of tensile strength, bursting behavior, and air permeability characteristics in filter media
  • Examination of filtration efficiency and dust collection properties in industrial filter applications
  • Analysis of coating effects, calendering processes, and temperature variables on filter performance
  • Chemical treatment methods for enhancing dust resistance in polyester filter fabrics
  • Advanced modeling approaches using fuzzy logic for filter fabric behavior prediction

The research investigates filtration efficiency, dust collection properties, and optimization of manufacturing processes. Topics include coating effects, calendering parameters, chemical treatments for dust resistance, and fuzzy logic modeling for performance prediction in industrial filtration applications.

This title has been co-published with Woodhead Publishing India. Taylor & Francis does not sell or distribute the print edition in India, Sri Lanka, Nepal, Bangladesh, Pakistan, and Bhutan.

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Über die Autorin bzw. den Autor

Vinay Kumar Chauhan specializes in textile engineering and filter fabric technology with expertise in polyester material characterization and industrial filtration systems.

Jitendra Pratap Singh focuses on mechanical properties analysis and optimization of needle-punched fabrics in filtration applications.

Sanjoy Debnath conducts research in textile material science with emphasis on recycled fiber applications and sustainable filtration media.

Amin Hirenbhai Navinbhai works in advanced modeling techniques and fuzzy logic applications for textile performance prediction and optimization.

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