Quick Search

PRODUCTS

ARADUR 39

ARADUR 39, used as a hardener component in two-component epoxy resin systems.
ARADUR 39 reacts with epoxy resins to form cross-linked thermosetting polymers with high mechanical strength, chemical resistance, and durability.
ARADUR 39 is designed for applications requiring reliable curing performance, good adhesion, and durable epoxy networks.

CAS Number: 68953-36-6
EINECS Number: 273-201-6

Synonyms: Fatty acids, tall-oil, reaction products with tetraethylenepentamine;Fettsuren, Talll-, Reaktionsprodukte mit Tetraethylenpentamin

ARADUR 39 important in epoxy formulation and composite technologies.
ARADUR 39 functions as a curing agent that converts liquid epoxy resins into solid thermoset materials.
It improves hardness, strength, adhesion, and resistance to environmental exposure.

ARADUR 39 important in thermosetting polymer production.
It is used in structural epoxy adhesives where ARADUR 39 provides strong bonding between metals, composites, ceramics, plastics, and other substrates.

The cured adhesives offer high mechanical stability and long-term durability.
ARADUR 39 important in industrial bonding applications.

It is used in protective epoxy coatings where ARADUR 39 cures coatings that protect surfaces against corrosion, abrasion, moisture, and chemicals.
It helps produce durable coating films with excellent substrate adhesion.
ARADUR 39 important in industrial surface protection.

It is used in anti-corrosion coating systems where ARADUR 39 forms highly cross-linked epoxy networks that protect steel and concrete structures.
It improves resistance against water, chemicals, and aggressive environmental conditions.
ARADUR 39 important in corrosion prevention technologies.

It is used in industrial flooring systems where ARADUR 39 cures epoxy floors with high hardness and wear resistance.
ARADUR 39 supports durable surfaces for factories, warehouses, workshops, and laboratories.
ARADUR 39 important in industrial flooring applications.

It is used in fiber-reinforced composites where ARADUR 39 cures epoxy matrices containing glass, carbon, or aramid fibers.
It improves fiber adhesion, composite strength, and dimensional stability.
ARADUR 39 important in composite manufacturing.

It is used in carbon fiber reinforced polymer (CFRP) materials where ARADUR 39 provides the cured epoxy matrix surrounding carbon fibers.
ARADUR 39 supports lightweight structures with high stiffness and mechanical performance.
ARADUR 39 important in high-performance composite engineering.

It is used in glass fiber reinforced polymer (GFRP) materials where ARADUR 39 improves resin wetting and bonding with glass reinforcement.
ARADUR 39 contributes to durable composite components with improved mechanical properties.
ARADUR 39 important in fiberglass applications.

It is used in composite repair systems where ARADUR 39 cures epoxy repair materials for damaged composite structures.
It provides strong adhesion and mechanical reinforcement.
ARADUR 39 important in maintenance and repair technologies.

It is used in construction repair applications where ARADUR 39 cures epoxy systems for concrete repair, crack filling, and structural reinforcement.
It improves adhesion and strength of repaired structures.
ARADUR 39 important in civil engineering applications.

It is used in epoxy grouts where ARADUR 39 cures high-strength epoxy materials used for machinery foundations and structural installations.
It provides excellent mechanical stability and resistance to vibration.
ARADUR 39 important in industrial construction.

It is used in electrical insulation systems where ARADUR 39 cures epoxy materials used to protect electrical components.
ARADUR 39 provides electrical insulation, mechanical protection, and environmental resistance.
ARADUR 39 important in electrical engineering.

It is used in electronic encapsulation and potting systems where ARADUR 39 cures epoxy compounds that protect electronic assemblies.
It helps protect components from moisture, vibration, and mechanical damage.
ARADUR 39 important in electronic manufacturing.

It is used in tooling and mold production where ARADUR 39 cures epoxy tooling systems for molds, fixtures, and prototypes.
It provides dimensional stability and rigidity during repeated manufacturing operations.
ARADUR 39 important in industrial tooling.

It is used in casting applications where ARADUR 39 cures epoxy casting materials to produce rigid polymer components.
ARADUR 39 enables production of parts with good mechanical strength and dimensional accuracy.
ARADUR 39 important in epoxy casting technologies.

It is used in marine composite applications where ARADUR 39 cures epoxy systems exposed to moisture and marine environments.
It contributes to durable structures with good environmental resistance.
ARADUR 39 important in marine engineering.

It is used in automotive composite applications where ARADUR 39 supports the production of lightweight epoxy-based components.
ARADUR 39 improves durability and mechanical performance of vehicle parts.
ARADUR 39 important in automotive material technologies.

It is used in aerospace composite applications where ARADUR 39 contributes to epoxy systems requiring high mechanical reliability.
It supports lightweight structures with good strength and long-term performance.
ARADUR 39 important in aerospace engineering.

It is used in research and development of epoxy thermosets where ARADUR 39 is studied for curing behavior, crosslink formation, mechanical properties, and chemical resistance.
ARADUR 39 supports the development of advanced epoxy-based materials.
ARADUR 39 important in polymer and composite materials research.

It is used in wind turbine blade composite systems where ARADUR 39 cures epoxy matrices used with glass and carbon fiber reinforcements.
It contributes to high-strength composite structures capable of withstanding repeated mechanical loading and environmental exposure.
ARADUR 39 important in renewable energy composite manufacturing.

It is used in filament winding applications where ARADUR 39 cures epoxy resin systems around continuous fibers to produce cylindrical composite structures.
It enables manufacturing of pressure vessels, pipes, and storage tanks with high mechanical strength.
ARADUR 39 important in filament-wound composite technologies.

It is used in resin transfer molding (RTM) where ARADUR 39 provides controlled epoxy curing during closed-mold composite processing.
It supports production of components with accurate dimensions, low void content, and consistent mechanical properties.
ARADUR 39 important in advanced composite manufacturing.

It is used in pultrusion processes where ARADUR 39 cures epoxy systems used to manufacture continuous fiber-reinforced profiles.
ARADUR 39 helps produce lightweight structural components with high stiffness and durability.
ARADUR 39 important in pultruded composite applications.

It is used in prepreg composite manufacturing where ARADUR 39 contributes to the curing of epoxy-based fiber prepreg materials.
It supports the production of high-performance laminates with excellent strength and dimensional stability.
ARADUR 39 important in aerospace and industrial composites.

It is used in sandwich panel structures where ARADUR 39 cures epoxy adhesives and matrices used to bond lightweight cores with composite skins.
It improves structural rigidity while maintaining low weight.
ARADUR 39 important in lightweight construction.

It is used in sports equipment manufacturing where ARADUR 39 cures epoxy composites used in bicycles, skis, snowboards, rackets, and protective equipment.
It provides lightweight structures with high strength and impact resistance.
ARADUR 39 important in sporting goods production.

It is used in railway composite components where ARADUR 39 supports the production of durable epoxy-based structural parts.
It provides resistance to fatigue, vibration, and repeated mechanical loading.
ARADUR 39 important in railway engineering.

It is used in automotive repair compounds where ARADUR 39 cures epoxy materials for bonding, filling, and reinforcement applications.
It provides strong adhesion and resistance to mechanical and environmental stress.
ARADUR 39 important in automotive maintenance.

It is used in battery and energy storage component protection where ARADUR 39 cures epoxy encapsulation and bonding materials.
It helps protect components against vibration, moisture, and mechanical damage.
ARADUR 39 important in energy storage technologies.

It is used in battery module adhesives where ARADUR 39 contributes to epoxy bonding systems used for structural fixation and protection of battery components.
It improves mechanical stability and durability of assembled systems.
ARADUR 39 important in advanced battery manufacturing.

It is used in robotics and automation equipment where ARADUR 39 cures epoxy adhesives and composite materials for precision components.
It supports lightweight structures requiring stiffness and dimensional accuracy.
ARADUR 39 important in automation engineering.

It is used in machinery repair materials where ARADUR 39 cures epoxy compounds for restoring damaged industrial equipment.
It provides durable repairs with good adhesion and mechanical resistance.
ARADUR 39 important in industrial maintenance.

It is used in pump, valve, and fluid-handling equipment coatings where ARADUR 39 cures epoxy protective layers resistant to chemicals and wear.
It improves component lifetime in demanding operating conditions.
ARADUR 39 important in process engineering.

It is used in oil and gas infrastructure coatings where ARADUR 39 cures epoxy protective systems for pipelines, tanks, and equipment.
It improves resistance against corrosion, chemicals, and harsh environments.
ARADUR 39 important in energy infrastructure.

It is used in offshore structures where ARADUR 39 contributes to epoxy coatings and composite materials exposed to saltwater and weathering.
It provides durable protection and long-term material performance.
ARADUR 39 important in offshore engineering.

It is used in laboratory and scientific equipment coatings where ARADUR 39 cures epoxy systems requiring chemical resistance and surface protection.
It supports durable surfaces used in demanding laboratory environments.
ARADUR 39 important in scientific equipment applications.

It is used in prototype development where ARADUR 39 cures epoxy materials used for functional prototypes and engineering models.
It provides dimensional stability and mechanical properties suitable for testing.
ARADUR 39 important in product development.

It is used in 3D printed composite post-processing where ARADUR 39 may be used in epoxy-based reinforcement and coating systems.
It improves strength, surface protection, and durability of polymer structures.
ARADUR 39 important in advanced manufacturing research.

It is used in polymer and materials research where ARADUR 39 is evaluated for epoxy curing kinetics, crosslink density, thermal stability, fracture behavior, and mechanical performance.
ARADUR 39 supports the development of improved thermosetting polymer systems.
ARADUR 39 important in polymer science and composite engineering research.

Uses:
ARADUR 39 acts as the curing agent for epoxy resins.
It reacts with epoxy groups to form cross-linked thermoset polymers with improved strength, hardness, and chemical resistance.
ARADUR 39 important in epoxy resin technologies.

It is used in structural adhesive systems where ARADUR 39 cures epoxy adhesives for bonding metals, composites, plastics, and other engineering materials.
ARADUR 39 provides strong adhesion and durable joints under mechanical stress.
ARADUR 39 important in industrial bonding applications.

It is used in industrial assembly adhesives where ARADUR 39 provides reliable bonding performance for manufactured components.
It supports applications requiring high mechanical strength and long service life.
ARADUR 39 important in manufacturing industries.

It is used in protective epoxy coatings where ARADUR 39 cures coatings that protect surfaces from corrosion, chemicals, moisture, and abrasion.
It helps produce durable protective layers with excellent substrate adhesion.
ARADUR 39 important in surface protection systems.

It is used in anti-corrosion coating applications where ARADUR 39 forms chemically resistant epoxy networks on metal surfaces.
It helps protect steel structures, machinery, and industrial equipment from environmental damage.
ARADUR 39 important in corrosion protection.

It is used in industrial flooring systems where ARADUR 39 cures epoxy floor coatings with high hardness and wear resistance.
It provides durable flooring solutions for factories, warehouses, laboratories, and production areas.
ARADUR 39 important in industrial flooring applications.

It is used in fiber-reinforced composite materials where ARADUR 39 cures epoxy matrices containing glass, carbon, or aramid fibers.
ARADUR 39 improves fiber adhesion, laminate strength, and structural performance.
ARADUR 39 important in composite manufacturing.

It is used in carbon fiber reinforced polymer (CFRP) composites where ARADUR 39 provides the epoxy matrix surrounding carbon fibers.
It enables lightweight structures with high stiffness, strength, and fatigue resistance.
ARADUR 39 important in high-performance composite applications.

It is used in glass fiber reinforced polymer (GFRP) composites where ARADUR 39 improves resin bonding and mechanical stability.
It supports production of durable fiberglass components.
ARADUR 39 important in fiberglass composite technologies.

It is used in composite repair systems where ARADUR 39 cures epoxy repair materials for damaged composite parts.
It provides strong bonding and reinforcement for maintenance applications.
ARADUR 39 important in composite repair technologies.

It is used in construction repair materials where ARADUR 39 cures epoxy systems for concrete repair, crack filling, and structural reinforcement.
It improves adhesion and mechanical durability of repaired structures.
ARADUR 39 important in civil engineering applications.

It is used in epoxy grouting systems where ARADUR 39 cures high-strength epoxy grout materials used for machinery foundations and structural installations.
ARADUR 39 provides resistance to compression, vibration, and mechanical loading.
ARADUR 39 important in industrial construction.

It is used in electrical insulation systems where ARADUR 39 cures epoxy materials used for protecting electrical components.
It provides electrical insulation, mechanical protection, and environmental resistance.
ARADUR 39 important in electrical engineering.

It is used in electronic encapsulation and potting materials where ARADUR 39 cures epoxy compounds that protect electronic assemblies.
It helps protect components from moisture, vibration, and mechanical stress.
ARADUR 39 important in electronics manufacturing.

ARADUR 39 cures epoxy tooling materials for molds, fixtures, and prototypes.
It provides dimensional stability and rigidity during repeated manufacturing cycles.
ARADUR 39 important in tooling applications.

It is used in casting applications where ARADUR 39 cures epoxy casting resins to produce rigid polymer components.
It enables production of parts with good mechanical properties and dimensional accuracy.
ARADUR 39 important in epoxy casting technologies.

ARADUR 39 is used in marine composite applications where ARADUR 39 cures epoxy systems exposed to moisture and marine conditions.
It contributes to durable boat structures, marine equipment, and composite components.
ARADUR 39 important in marine engineering.

It is used in automotive applications where ARADUR 39 cures epoxy adhesives, coatings, and composite materials used in vehicles.
It supports lightweight construction and durable component design.
ARADUR 39 important in automotive material technologies.

It is used in aerospace composite applications where ARADUR 39 contributes to epoxy systems requiring high mechanical reliability.
It supports lightweight structures with good strength and fatigue resistance.
ARADUR 39 important in aerospace engineering.

It is used in wind energy composite manufacturing where ARADUR 39 cures epoxy systems used in wind turbine blades and structural components.
ARADUR 39 provides resistance to long-term cyclic loading and environmental exposure.
ARADUR 39 important in renewable energy applications.

It is used in research and development of epoxy materials where ARADUR 39 is evaluated for curing behavior, crosslink density, thermal performance, and mechanical properties.
It supports the development of advanced thermosetting polymers.
ARADUR 39 important in polymer and composite materials research.

It is used in filament winding composite manufacturing where ARADUR 39 cures epoxy resin systems around continuous fibers to produce strong cylindrical composite structures.
ARADUR 39 enables the production of pressure vessels, pipes, and storage tanks with high mechanical strength and durability.
ARADUR 39 important in filament-wound composite technologies.

It is used in resin transfer molding (RTM) where ARADUR 39 provides controlled curing of epoxy systems inside closed molds.
It supports the production of composite components with accurate dimensions, uniform properties, and reduced defects.
ARADUR 39 important in advanced composite processing.

It is used in pultrusion applications where ARADUR 39 cures epoxy matrices used for continuous fiber-reinforced profiles.
It helps manufacture lightweight structural materials with excellent stiffness and mechanical performance.
ARADUR 39 important in pultruded composite production.

It is used in prepreg composite systems where ARADUR 39 contributes to curing epoxy-based fiber prepreg materials.
It supports the production of high-performance laminates with excellent strength and dimensional stability.
ARADUR 39 important in aerospace and industrial composite manufacturing.

It is used in sandwich panel manufacturing where ARADUR 39 cures epoxy adhesives and matrices used to bond lightweight cores with composite skins.
ARADUR 39 improves stiffness, structural integrity, and weight efficiency.
ARADUR 39 important in lightweight structural designs.

It is used in sports equipment composites where ARADUR 39 cures epoxy systems used in bicycles, skis, snowboards, helmets, and other high-performance equipment.
It provides lightweight structures with good strength and impact resistance.
ARADUR 39 important in sporting goods production.

It is used in railway composite components where ARADUR 39 cures epoxy systems for structural and interior railway parts.
It provides durability against vibration, fatigue, and repeated mechanical loading.
ARADUR 39 important in railway material applications.

It is used in automotive repair compounds where ARADUR 39 cures epoxy fillers, bonding materials, and reinforcement systems.
It provides durable repairs with strong adhesion and mechanical stability.
ARADUR 39 important in automotive maintenance.

It is used in battery pack bonding systems where ARADUR 39 contributes to epoxy adhesives used for fixing and protecting battery components.
It improves structural stability, vibration resistance, and component durability.
ARADUR 39 important in energy storage manufacturing.

It is used in electric vehicle component manufacturing where ARADUR 39 cures epoxy adhesives and composite materials used in lightweight vehicle structures.
It supports durable and weight-efficient designs.
ARADUR 39 important in electric mobility applications.

It is used in robotics and automation components where ARADUR 39 cures epoxy adhesives and composite materials for precision structures.
It provides dimensional stability and mechanical strength required for accurate movement.
ARADUR 39 important in automation engineering.

It is used in machinery repair systems where ARADUR 39 cures epoxy compounds used to restore damaged industrial components.
It provides resistance to mechanical stress, chemicals, and wear.
ARADUR 39 important in industrial maintenance.

It is used in pump and valve protection coatings where ARADUR 39 cures epoxy layers exposed to abrasive fluids and chemicals.
ARADUR 39 helps extend equipment lifetime and improve operational reliability.
ARADUR 39 important in fluid handling industries.

It is used in oil and gas pipeline coatings where ARADUR 39 cures epoxy protective materials for corrosion prevention.
It improves resistance against moisture, chemicals, and harsh operating conditions.
ARADUR 39 important in energy infrastructure protection.

ARADUR 39 is used in storage tank lining systems where ARADUR 39 cures epoxy coatings that protect tanks from corrosion and chemical attack.
It provides durable internal and external protective surfaces.
ARADUR 39 important in industrial storage applications.

It is used in offshore composite structures where ARADUR 39 contributes to epoxy systems exposed to saltwater, humidity, and environmental stress.
It supports long-lasting composite structures in marine environments.
ARADUR 39 important in offshore engineering.

It is used in laboratory equipment coatings where ARADUR 39 cures epoxy materials requiring chemical resistance and surface protection.
It supports durable surfaces in demanding laboratory environments.
ARADUR 39 important in scientific equipment manufacturing.

It is used in prototype manufacturing where ARADUR 39 cures epoxy systems used for functional models and engineering prototypes.
It provides mechanical properties suitable for testing and evaluation.
ARADUR 39 important in product development.

It is used in rapid tooling applications where ARADUR 39 cures epoxy materials for short-run manufacturing tools and fixtures.
It provides good dimensional accuracy and resistance to repeated use.
ARADUR 39 important in advanced manufacturing.

ARADUR 39 is used in polymer research laboratories where ARADUR 39 is studied for epoxy curing kinetics, network formation, thermal stability, fracture behavior, and mechanical performance.
It supports development of improved thermosetting polymer systems.
ARADUR 39 important in materials science research.

Safety Profile:
ARADUR 39 is considered a polyamine-based epoxy curing agent used in two-component epoxy systems.
The uncured material contains reactive amine groups that may cause irritation, corrosive effects, and sensitization risks during handling.
ARADUR 39 important to handle with appropriate chemical safety measures.

It is hazardous in skin contact situations where ARADUR 39 may cause irritation, redness, burning sensations, dryness, or chemical burns.
Prolonged exposure may damage the skin barrier and increase the risk of allergic reactions.
ARADUR 39 important to handle with protective gloves and suitable protective clothing.

It is hazardous in skin sensitization situations where repeated exposure to amine-containing curing agents may cause allergic contact dermatitis.
Symptoms may include itching, swelling, redness, rash, or delayed allergic reactions after exposure.
ARADUR 39 important to minimize direct skin contact.

It is hazardous in eye exposure situations where ARADUR 39 may cause severe eye irritation or serious eye damage.
Contact may result in pain, redness, tearing, blurred vision, or injury to eye tissues.
ARADUR 39 important to use with safety goggles and face protection.

ARADUR 39 is hazardous in inhalation exposure situations where vapors, aerosols, or mist generated during mixing and processing may irritate the respiratory tract.
Exposure may cause coughing, throat irritation, nasal discomfort, and breathing difficulties.
ARADUR 39 important to use with proper ventilation.

It is hazardous in high vapor concentration situations where prolonged inhalation may affect the respiratory system and mucous membranes.
Workers should avoid breathing airborne droplets or vapors generated during processing.
ARADUR 39 important to control workplace exposure.


 

  • Share !
E-NEWSLETTER