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Friday, May 3, 2024

KTML installs Loepfe yarn clearer technology to improve the appearance of yarns

Kohinoor Textile Mills (KTML) in Pakistan and the first 1,112 of the company’s winding units are now being installing the latest YarnMaster Prisma yarn clearer generation to improve the appearance of yarns. About 5,500 Loepfe yarn clearers are already integrated into the spinning operations. KTML has nine separate spinning operations with 180,000 spindles covering the complete range of coarse and fine count yarn from natural to man-made fibers and is known for its consistent yarn quality.

With the Prisma units, KTML is achieving a new yarn quality level due to a unique four-sensor technology combined with an intelligent clearing algorithm. The additional fine classes of SFI/D (surface variation) and OffCount clearing are important for the company’s compact ring yarn production. The refined matrices simplify the settings and allow the clearing curve to all market needs, ensuring compact spinning operatives are given the best yarn structure.

Mr. Muhammad Irfan, General Manager of the Gujar Khan plant and Mr. M. Jahanzaib Baloch, General Manager of the Rawalpindi plant and Mr. Martin Bace Service Manager Loepfe

The new YarnMaster yarn clearer generation PRISMA astonishes everyone with its innovative fusion of sensor technologies. The YarnMaster PRISMA world has a newly integrated function: the MillMaster TOP management system for analyzing and optimizing yarn quality. YarnMaster PRISMA combines established sensor technologies for the first time in one device:
• Optical Infrared ( D )
•
Mass ( M )
•
Optical RGB ( F )
•
Triboelectric ( P )

This world-first sets the benchmark and increases productivity and efficiency. KTML uses the unique feature based on the continuous monitoring length of 80 meters for SFI/D clearing and 50 meters for OffCount clearing. Removing long faults in one piece delivers significant advantages, including certainty in yarn quality since no remnants are further processed. Other yarn clearer models cut longer faults on their set curve and can; as a result, slice faults into pieces.

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