Plastic Fiber Scrap Recycling Using an HTM Extruder
This article presents validation results for recycling plastic fiber scrap using an HTM twin-screw extruder, addressing low bulk density feeding challenges and degassing performance.
CTE is an extrusion machinery manufacturer built on its patented counter-rotating, non-intermeshing twin-screw technology.
Even in challenging applications such as high-filler compounds, recycled materials, biodegradable resins, and WPC,
our extruders deliver efficient and stable production.
CTE’s patented twin-screw technology ensures efficient compounding, superior degassing, and low-temperature processing.
CTE provides recycling solutions, maintenance services, import sales, and conical extruders through global partnerships.
CTE is a plastic extruder manufacturer with over 30 years of history. Our technology supports complex compounding and high-quality applications worldwide.
We deliver precise, reliable processes that ensure high-quality recycling and upcycling of plastics.
Fast maintenance and flexible support, including equipment modifications to enhance efficiency.
One-stop solutions for importing, selling, warranty, and maintenance of extruders and peripherals.
In partnership with global manufacturers, we provide sales and maintenance of conical extruders with full support.
Technical insights into extrusion, compounding, and recycling technologies.
This article presents validation results for recycling plastic fiber scrap using an HTM twin-screw extruder, addressing low bulk density feeding challenges and degassing performance.
An overview of high-filler compounding, explaining why high filler loading is used, what challenges it creates, and how processing conditions affect dispersion and stability.
This article explains how an HTM tandem twin-screw extruder enables stable, high-output PVC compounding through controlled mixing and effective degassing.
An overview of PET sheet recycling challenges in Southeast Asia, focusing on low-bulk-density materials, feeding stability, and processing considerations.
A technical comparison of non-intermeshing and intermeshing twin-screw extruders, focusing on how design differences influence mixing behavior and processing stability.
A technical overview of extrusion process optimization for fine talc high-filler compounds, focusing on dispersion behavior and processing stability.