Jiangsu Trumps Chemical Fiber Technology Co., Ltd. is a modern enterprise integrating high-performance chemical fiber materials, nonwoven fabric manufacturing and functional application solutions. Its business scope covers R&D, production and sales of color masterbatches & functional masterbatches, nano materials, nonwoven fabrics and environmental protection adsorption products, serving multiple fields such as chemical fiber, nonwoven fabrics, medical and hygiene, and environmental emergency.
As a pioneering force in artificial fibre technology for advanced polymer processing, TRUMPS has consistently delivered precision-engineered solutions that power some of the world's most demanding spinning and nonwoven production environments. Our vertically integrated approach β from raw polymer formulation to finished functional fibre β ensures unmatched quality control at every stage.
Contact UsThe global synthetic and artificial fibre market is projected to exceed USD 115 billion by 2030, driven by surging demand in medical textiles, automotive composites, smart wearables, and high-performance filtration systems. Advanced polymer processing technologies β including melt spinning, bi-component extrusion, and nano-additive integration β are redefining what artificial fibres can achieve.
Color and functional masterbatches are the backbone of modern fibre processing. Advanced formulations ensure precise pigment dispersion, thermal stability, and compatibility with high-speed spinning lines operating above 6,000 m/min.
Spunbond-Meltblown-Spunbond (SMS) nonwoven lines demand masterbatches with ultra-fine particle size and zero agglomeration. TRUMPS products are specifically engineered for these extreme processing conditions.
Incorporating nano-scale additives β such as silver ions, graphene, and TiOβ β into polymer matrices enables fibres with antimicrobial, UV-blocking, and far-infrared functionalities for medical and technical textile applications.
The shift toward bio-based polymers, recycled PET, and low-VOC processing aids is accelerating. Functional masterbatches now play a critical role in maintaining fibre performance while meeting stringent environmental compliance standards.

Engineered for high-speed spinning lines β excellent dispersibility, high coloring rate, and extended spinneret plate replacement cycles.

Specialized formulations for SMS nonwoven lines β delivering stable light fastness, wash fastness, and consistent melt flow performance.

Nano-scale functional materials enabling antimicrobial, UV-resistant, and far-infrared properties in polymer-based artificial fibres.

Pre-dispersed pigment concentrates offering superior homogeneity and compatibility with PET, PP, and PA polymer processing systems.
Machine learning algorithms are being deployed to optimize masterbatch dosing, predict spinneret clogging, and reduce downtime in continuous fibre production lines β cutting waste by up to 22%.
PLA, PHA, and bio-PET are gaining traction as sustainable alternatives. Functional masterbatches must be reformulated to maintain performance in these lower-melt-temperature polymer matrices.
The integration of conductive carbon black, graphene, and metallic nano-particles into polymer fibres is enabling e-textile applications in healthcare monitoring, military, and sports performance sectors.
Recycled PET (rPET) fibre processing requires specialized masterbatch formulations that compensate for viscosity variation and colour inconsistency β a rapidly growing segment of the advanced polymer processing market.
Key Insight: Over 68% of global artificial fibre demand now comes from technical textile applications β including medical, filtration, automotive, and geotextile sectors β where functional performance requirements far exceed those of conventional apparel fibres.
Surgical gowns, N95 respirators, wound dressings, and disposable hygiene products require meltblown and spunbond nonwovens with precise barrier properties, antimicrobial functionality, and biocompatibility β all enabled by advanced masterbatch technology.
High-tenacity polyester and nylon fibres reinforced with nano-additives are replacing metal components in automotive interiors, tyre cord, and acoustic insulation panels β reducing vehicle weight and improving fuel efficiency.
Electrospun nanofibres and meltblown microfibre webs are critical components in air purification, water treatment, and industrial dust filtration systems. Functional masterbatches enhance electrostatic charge retention and chemical resistance.
UV-stabilized and thermally resistant polypropylene fibres are widely used in road construction, soil reinforcement, drainage systems, and erosion control β applications where long-term outdoor performance is paramount.
Moisture-wicking, quick-dry, and anti-odour functionalities in sportswear and outdoor gear are achieved through carefully formulated polymer additives integrated directly into the fibre spinning process.
Piezoelectric polymer fibres, conductive nonwovens, and thermally conductive fibre composites are emerging as key materials in flexible electronics, energy harvesting textiles, and battery separator applications.
PET, PP, PA, PLA β selecting the right base polymer and additive system for target fibre properties.
Precision twin-screw extrusion ensures homogeneous dispersion of pigments, functional additives, and nano-materials.
High-speed spinning lines convert polymer melts into continuous filaments or staple fibres with controlled denier and tenacity.
Post-spin drawing aligns polymer chains for enhanced tensile strength; texturing adds crimp and bulk for nonwoven applications.
Rigorous testing of colour fastness, mechanical properties, and functional performance against international standards.







Optimized for polypropylene spunbond lines with superior thermal stability and consistent colour output.
Designed for polyester continuous filament spinning at speeds exceeding 4,500 m/min with zero filter pressure build-up.
Silver-ion and zinc-based antimicrobial masterbatches for medical hygiene textiles, wound care, and protective apparel fibres.

HALS-based UV stabilizer masterbatches providing 10+ year outdoor durability for geotextile and agricultural fibre applications.

Halogen-free flame retardant masterbatches meeting EN 13501 and UL94 standards for automotive, construction, and protective fibre applications.

Nano-titanium dioxide masterbatches imparting photocatalytic self-cleaning and UV-blocking properties to polymer fibres and nonwovens.

Ultra-fine pre-dispersed pigment concentrates for fine denier and microfibre spinning with particle size D50 < 0.3 ΞΌm.

Functional nonwoven materials engineered for oil spill response, heavy metal adsorption, and industrial wastewater treatment applications.
The global chemical fibre industry produces over 100 million tonnes annually, with polyester accounting for 60%+ of output. China alone contributes 70% of global PET fibre production, making advanced masterbatch technology a strategic competitive differentiator.
Leading polymer processors are increasingly demanding vertically integrated masterbatch suppliers capable of providing technical support, custom formulation, and just-in-time delivery β reducing inventory costs and improving production consistency.
Demand for high-performance artificial fibre masterbatches is growing strongly in Southeast Asia, South Asia, the Middle East, and Eastern Europe β regions with rapidly expanding nonwoven and technical textile manufacturing capacity.




































With 27+ years of expertise, 36 production lines, and 15,000+ tonnes of annual output, TRUMPS is your trusted partner for high-performance masterbatch and functional fibre material solutions. Let's engineer the future together.
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