Cationic-Blended · Curly
MCT-1782
Premium curly fancy yarn at 3500 Denier (2.6 Nm metric count). MCT-1782 is a premium heavy-weight polyester-55% / cationic-45% curly yarn.
Composition
Polyester-55%
Texture
Curly
Denier
3500 Dn
Metric count
2.6 Nm
Material
Polyester
Origin
Surat, Gujarat
Specified for
Technical story
The build.
MCT-1782 is a premium heavy-weight polyester-55% / cationic-45% curly yarn manufactured by Citius Textiles at 3500 Denier (2.6 Nm). This Polyester-55% / Cationic-45% fancy yarn is precision-engineered for professional textile manufacturing, offering the strength, texture, and consistency demanded by India's leading fabric houses and international home furnishing brands.
Curly yarn features a continuous spiral crimp pattern that gives the yarn a coiled, springy texture. This crimp structure creates fabrics with exceptional bulk-to-weight ratio, excellent recovery from compression, and a soft, voluminous hand-feel. Curly yarns are ideal for upholstery textiles, cushion fills, and decorative fabrics where loft and resilience are important performance characteristics.
At 3500 Denier, MCT-1782 is classified as a heavy-weight yarn, positioning it for sofa coverings, sectional upholstery, and seating fabrics requiring high abrasion resistance; luxury interior fabrics for high-end residential and hospitality projects; textured furnishing fabrics with visual depth and tactile richness. The 2.6 Nm metric count indicates the yarn's linear density, a critical specification for warp and weft calculations in power loom weaving.
MCT-1782 is manufactured at our facility in Sachin, Surat, Gujarat under strict quality control protocols. Every production lot is tested for denier consistency, tensile strength, elongation at break, and colour uniformity before dispatch.
Curly yarn carries a tight spiral crimp that gives the finished fabric loft and bounce. It springs back from compression, useful for high-traffic seating.
A heavier construction designed for high-traffic upholstery and contract use. Maintains hand-feel through abrasion testing.
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