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Grade: DuPont™ Kevlar® 49
Formula: Polyparaphenylene terephthalamide
Form: Fiber
Material: Polyaramid
Commodity: Polymers
Filament Diameter: 0.012mm
Number Of Filaments: 5000
Tex Number: 790

Kevlar® 49 Polyaramid Fiber (Polyparaphenylene terephthalamide)

Kevlar® 49 Polyaramid Fiber (Polyparaphenylene terephthalamide) is renowned for its high modulus, tensile strength, and resistance to thermal and chemical degradation, stemming from its extended-chain aromatic polyamide structure. Compared to Kevlar® 29, it offers greater stiffness, making it ideal for load-bearing and reinforcement applications. Industries such as aerospace, defense, and advanced composites rely on this fiber for structural integrity and reduced weight in critical systems. Specific uses include reinforcement in epoxy composites for aerospace panels, ballistic armor for defense applications, and high-performance cables requiring both strength and fatigue resistance. Research has focused extensively on its physicochemical behavior, impurity distribution, and deformation mechanisms, with findings revealing its sensitivity to UV exposure, water absorption, and interfacial adhesion with resins. In both industrial and scientific contexts, Kevlar® 49 Polyaramid Fiber is a cornerstone material, enabling the design of resilient, lightweight, and high-strength systems that push the boundaries of engineering performance.
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Tolerances

Fiber
Filament Diameter ±25%
Number Of Yarns ±10%
Number Of Filaments ±10%
Tex Number ±10%
Length +5% / -1%

Material Properties for Polymers

Chemical Resistance
Element Value
Acids - concentrated Poor
Acids - dilute Fair
Alcohols Good
Alkalis Good-Poor
Aromatic hydrocarbons Good
Greases and Oils Good
Halogenated Hydrocarbons Good
Halogens Good
Ketones Good
Physical Properties
Element Value
Resistance to Ultra-violet Fair
Water absorption( % ) 3.5
Water absorption - equilibrium( % ) 3.5
Density( gcm⁻³ ) 1.44
Thermal Properties
Element Value
Lower working temperature( C ) -200
Upper working temperature( C ) 180-245
Specific heat( J K⁻¹ kg⁻¹ ) 1400
Thermal conductivity( W m⁻¹ K⁻¹ ) 0.04@23°C
Coefficient of thermal expansion( x10⁻⁶ K⁻¹ ) -2Along Axis
Mechanical Properties
Element Value
Tensile modulus( GPa ) 59-124
Tensile strength( MPa ) 2760

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