ARADUR 30 XWM 55 is an epoxy curing agent based on an isolated aliphatic polyamine adduct supplied in solvent solution.
ARADUR 30 XWM 55 is designed to react with epoxy resins to form crosslinked thermoset polymer networks with good chemical resistance and flexibility.
ARADUR 30 XWM 55 is produced by Huntsman Advanced Materials as a hardener component for epoxy coating systems.
CAS Number: 53764-99-1
Molecular Formula: C11H9F3O2
Molecular Weight: 230.18
Synonyms: 53764-99-1, 4,4,4-Trifluoro-1-(m-tolyl)butane-1,3-dione, 4,4,4-Trifluoro-1-(3-methylphenyl)-1,3-butanedione, 4,4,4-trifluoro-1-(3-methylphenyl)butane-1,3-dione, MFCD11849497, 1,1,1-Trifluoro-4-(3'-methylphenyl)butane-2,4-dione, Moxifloxacin Impurity 14, Moxifloxacin Impurity 55, 7QCX472V3H, SCHEMBL1924595, 1,3-Butanedione, 4,4,4-trifluoro-1-(3-methylphenyl)-, DTXSID10595230, AKOS010562227, DS-5289, SY111109, DB-331810, CS-0153229, 3-(3-Methylbenzoyl)-1,1,1-trifluoroacetone, EN300-76380, 4,4,4-Trifluoro-1-(m-tolyl)-1,3-butanedione, F322112, 1-(3-methyl-phenyl)-4,4,4-trifluoro-butane-1,3-dione, 1-(3-Methylphenyl)-4,4,4-trifluorobutane-1,3-dione, 1-(m-Tolyl)-4,4,4-trifluorobutane-1,3-dione, 4,4,4-trifluoro-1 - (m-methylphenyl) butane-1,3-dione;1,3-Butanedione, 4,4,4-trifluoro-1-(3-methylphenyl)-;4,4,4-trifluoro-1-(3-methylphenyl)butane-1,3-dione;Celecoxib Impurity 30(Moxifloxacin Impurity 55);4,4,4-Trifluoro-1-(3-methylphenyl)-1,3-butanedione;3-(3-Methylbenzoyl)-1,1,1-trifluoroacetone;4,4,4-trifluoro-1-(M-tolyl)butane-1,3-dione
ARADUR 30 XWM 55 contains modified aliphatic amine chemistry that provides controlled reactivity with epoxy functional groups.
The amine groups react with epoxy rings through ring-opening reactions, creating a three-dimensional polymer structure.
ARADUR 30 XWM 55 crosslinking process transforms liquid epoxy formulations into durable solid materials.
ARADUR 30 XWM 55 is supplied as a clear liquid solution containing an amine adduct dissolved in organic solvents.
The formulation contains solvents such as xylene, n-butanol, and methoxypropanol to control viscosity and processing behavior.
The solvent-based nature allows easier formulation and application in coating systems.
ARADUR 30 XWM 55 is an aliphatic polyamine adduct designed for cold-curing epoxy systems.
It provides high reactivity while maintaining a relatively long working time before gelation.
ARADUR 30 XWM 55 balance allows easier processing while still achieving effective epoxy crosslinking.
ARADUR 30 XWM 55 reacts with epoxy resins through amine–epoxy addition reactions without producing small molecular by-products.
The reaction forms stable covalent bonds between the curing agent and epoxy resin molecules.
ARADUR 30 XWM 55 creates a dense polymer network responsible for the final mechanical and chemical properties.
ARADUR 30 XWM 55 provides a combination of high reactivity and flexibility in cured epoxy systems.
The aliphatic amine structure allows efficient curing while reducing excessive brittleness compared with some highly rigid epoxy systems.
ARADUR 30 XWM 55 suitable for formulations requiring a balance between toughness and resistance.
ARADUR 30 XWM 55 has a relatively long pot life depending on the epoxy resin used in the formulation.
The extended processing time allows mixing, application, and coating operations before significant curing occurs.
After application, the system continues curing to form a solid protective epoxy network.
ARADUR 30 XWM 55 provides good chemical resistance after complete curing because of the formation of a stable crosslinked epoxy structure.
The network reduces molecular mobility and limits penetration of many chemicals.
The final resistance depends on the epoxy resin type, formulation ratio, and curing conditions.
ARADUR 30 XWM 55 has an amine value of approximately 98–114 mg KOH/g and a viscosity range around 1800–2600 mPa·s at 25 °C.
These properties describe its reactive amine content and flow behavior during formulation.
The exact values may vary depending on production specifications.
ARADUR 30 XWM 55 is compatible with different epoxy resin chemistries, including semi-solid, solid, and multifunctional epoxy resins.
The combination of resin type and curing agent determines the final balance of hardness, flexibility, and chemical resistance.
This allows formulation adjustment for different performance requirements.
ARADUR 30 XWM 55 contributes to good adhesion properties because the cured epoxy network can strongly interact with various substrates.
The system can form strong bonding with surfaces such as metals, concrete, minerals, and wood.
ARADUR 30 XWM 55 characteristic is related to both the epoxy chemistry and the polar nature of the cured polymer.
ARADUR 30 XWM 55 is designed for solvent-containing epoxy formulations and provides controlled film formation during curing.
The solvent system influences viscosity, application behavior, and coating appearance before evaporation and final crosslinking.
This allows preparation of coatings with uniform surface characteristics.
ARADUR 30 XWM 55 differs from simple amine hardeners because the amine groups are modified into an adduct structure.
The adduct formation reduces excessive immediate reactivity while maintaining the ability to cure epoxy resins.
ARADUR 30 XWM 55 improves handling characteristics compared with some unmodified amines.
ARADUR 30 XWM 55 requires controlled storage because it contains reactive amine components and organic solvents.
It should be stored in sealed containers under recommended temperature conditions to maintain product stability.
Protection from contamination and excessive heat helps preserve curing performance.
ARADUR 30 XWM 55 is an important epoxy hardener for developing durable coating and thermoset systems.
Its combination of aliphatic polyamine chemistry, flexibility, reactivity, and chemical resistance provides balanced performance.
ARADUR 30 XWM 55 makes it a specialized curing component in advanced epoxy material formulations.
Boiling point: 270.2±35.0 °C(Predicted)
Density: 1.252±0.06 g/cm3(Predicted)
storage temp.: Sealed in dry,Room Temperature
solubility: Chloroform (Slightly), DMSO (Slightly), Methanol (Slightly)
pka: 5.73±0.23(Predicted)
form: Oil
color: Pale Brown
ARADUR 30 XWM 55 is an isolated aliphatic polyamine adduct supplied in an organic solvent mixture.
It is formulated by modifying aliphatic amine chemistry to provide controlled curing behavior when combined with epoxy resins.
The product is supplied as a clear liquid and is designed to provide balanced reactivity and processing properties.
ARADUR 30 XWM 55 contains an amine-based adduct structure rather than a simple free amine compound.
The adduct formation reduces excessive initial amine reactivity while maintaining the ability to react with epoxy groups.
ARADUR 30 XWM 55 provides improved handling characteristics compared with some highly reactive unmodified amine hardeners.
ARADUR 30 XWM 55 reacts with epoxy groups through nucleophilic ring-opening reactions.
The active hydrogen atoms associated with the amine functionality attack epoxy rings and create new covalent bonds.
Repeated reactions between epoxy resin molecules and the curing agent generate a three-dimensional crosslinked polymer network.
ARADUR 30 XWM 55 forms thermoset structures because the curing reaction creates permanent chemical crosslinks.
After complete curing, the polymer network cannot be melted and reshaped like thermoplastic materials.
The crosslinked structure provides stability against mechanical and environmental stresses.
ARADUR 30 XWM 55 has a relatively high flexibility compared with some highly rigid epoxy curing systems.
The modified aliphatic amine structure provides a balance between network formation and molecular mobility.
ARADUR 30 XWM 55 helps reduce excessive brittleness in cured epoxy materials.
ARADUR 30 XWM 55 provides high chemical resistance after curing because the epoxy network limits molecular movement and penetration of external substances.
The resistance depends on the epoxy resin chemistry, crosslink density, and curing conditions.
Multifunctional epoxy systems can further increase the chemical resistance of the final material.
ARADUR 30 XWM 55 has controlled curing speed because the amine adduct structure moderates the reaction between hardener and epoxy resin.
The curing rate depends on temperature, resin type, mixing ratio, and environmental conditions.
ARADUR 30 XWM 55 allows formulation designers to balance working time and final performance.
ARADUR 30 XWM 55 provides a long pot life in properly formulated epoxy systems.
The material remains workable for a period of time before significant gelation occurs.
This characteristic is influenced by the selected epoxy resin and processing conditions.
ARADUR 30 XWM 55 contains organic solvents that influence viscosity and application behavior.
The solvent mixture includes xylene, n-butanol, and methoxypropanol, which help control flow and processing characteristics.
The presence of solvents also requires consideration of evaporation and handling conditions.
ARADUR 30 XWM 55 has a viscosity of approximately 1800–2800 mPa·s at 25 °C and an amine value of approximately 98–114 mg KOH/g.
These parameters describe the flow behavior and reactive amine content of the curing agent.
The exact values may vary depending on product specifications and production conditions.
ARADUR 30 XWM 55 has an active hydrogen equivalent weight of approximately 370 g/eq.
ARADUR 30 XWM 55 value represents the amount of curing agent required to react with a specific amount of epoxy functionality.
It is an important parameter for calculating epoxy-to-hardener formulation ratios.
ARADUR 30 XWM 55 is designed to cure epoxy systems under ambient temperature conditions.
The aliphatic polyamine structure allows curing without requiring extremely high temperatures.
ARADUR 30 XWM 55 provides flexibility in processing conditions and formulation design.
ARADUR 30 XWM 55 develops non-tacky cured films when properly formulated and cured.
The complete reaction between epoxy resin and amine hardener reduces the amount of remaining reactive components.
ARADUR 30 XWM 55 contributes to improved surface quality of the final epoxy material.
ARADUR 30 XWM 55 has good compatibility with different epoxy resin structures because of its modified amine chemistry.
The interaction between curing agent and epoxy resin determines the final network structure and performance.
Selection of the correct resin–hardener combination is important for achieving desired properties.
ARADUR 30 XWM 55 requires controlled mixing because incorrect ratios can affect curing efficiency and final material properties.
An excess or deficiency of curing agent may leave unreacted groups within the polymer network.
ARADUR 30 XWM 55 can influence hardness, chemical resistance, and long-term stability.
ARADUR 30 XWM 55 is sensitive to storage conditions because it contains reactive amine components and organic solvents.
The product should be stored in sealed original containers under recommended temperature conditions.
Protection from moisture, contamination, and direct sunlight helps maintain product quality.
ARADUR 30 XWM 55 represents a specialized epoxy hardener designed to provide a combination of reactivity, flexibility, and chemical resistance.
Its modified aliphatic polyamine chemistry allows controlled epoxy network formation.
ARADUR 30 XWM 55 makes it an important component in advanced epoxy formulation systems.
Uses Of ARADUR 30 XWM 55:
ARADUR 30 XWM 55 is used as a curing agent for epoxy resin systems where good mechanical performance and chemical resistance are required.
It reacts with epoxy resins to form crosslinked thermoset structures with improved durability and stability.
ARADUR 30 XWM 55 suitable for two-component epoxy formulations requiring controlled curing behavior.
ARADUR 30 XWM 55 is used in epoxy coating systems to produce protective and durable polymer films.
The cured epoxy network provides resistance against environmental exposure, chemicals, and mechanical stress.
ARADUR 30 XWM 55 suitable for industrial coating formulations requiring long-term surface protection.
ARADUR 30 XWM 55 is used in protective coatings for metal surfaces because it provides strong adhesion and corrosion-resistant epoxy networks.
The cured system can form a stable barrier between the metal substrate and external environments.
ARADUR 30 XWM 55 makes it suitable for applications where surface durability and protection are important.
ARADUR 30 XWM 55 is used in epoxy primers because its amine-based chemistry promotes strong bonding with various substrates.
The curing reaction creates a stable polymer layer that improves coating adhesion.
This makes it useful as part of multi-layer coating systems.
ARADUR 30 XWM 55 is used in epoxy adhesives for producing strong structural bonds.
The crosslinked epoxy network provides mechanical strength and resistance to environmental conditions.
ARADUR 30 XWM 55 suitable for bonding applications involving metals, composites, concrete, and other materials.
ARADUR 30 XWM 55 is used in composite materials as a hardener component for epoxy matrices.
ARADUR 30 XWM 55 enables the formation of a rigid polymer network that transfers loads between reinforcing materials.
This makes it suitable for fiber-reinforced composite production.
ARADUR 30 XWM 55 is used in glass fiber reinforced epoxy composites to improve matrix performance.
The cured epoxy provides adhesion between the resin phase and glass reinforcement.
This improves the structural stability and mechanical reliability of composite materials.
ARADUR 30 XWM 55 is used in carbon fiber composite systems where a balance between strength and toughness is required.
The epoxy matrix formed after curing provides support for carbon fiber structures.
This makes it useful in advanced composite material formulations.
ARADUR 30 XWM 55 is used in epoxy flooring systems because it produces hard and chemically resistant surfaces.
The cured polymer network provides durability against mechanical wear and environmental exposure.
ARADUR 30 XWM 55 suitable for industrial floor coatings.
ARADUR 30 XWM 55 is used in industrial repair compounds based on epoxy technology.
Its curing ability allows the preparation of strong repair materials with good adhesion and stability.
This makes it suitable for maintenance and restoration applications.
ARADUR 30 XWM 55 is used in epoxy casting systems for producing solid polymer components.
The liquid resin–hardener mixture can be converted into dimensionally stable cured parts.
ARADUR 30 XWM 55 makes it suitable for applications requiring precise shapes and durable polymer structures.
ARADUR 30 XWM 55 is used in epoxy laminates where strong bonding between layers is required.
The curing reaction creates a stable matrix that holds different layers together.
This makes it suitable for producing reinforced laminated materials.
ARADUR 30 XWM 55 is used in tooling and mold-making epoxy systems because it provides good dimensional stability after curing.
The resulting thermoset structure maintains its shape under repeated mechanical conditions.
This makes it suitable for producing durable tooling materials.
ARADUR 30 XWM 55 is used in electrical and electronic encapsulation materials based on epoxy resins.
The cured epoxy provides mechanical protection and resistance to environmental influences.
ARADUR 30 XWM 55 makes it useful for protective polymer systems around sensitive components.
ARADUR 30 XWM 55 is used in solvent-based epoxy formulations because its liquid form allows controlled processing and application.
The solvent-containing formulation provides suitable viscosity for coating and resin preparation processes.
This makes it suitable for systems requiring easier handling during manufacturing.
ARADUR 30 XWM 55 is used in epoxy formulations where ambient-temperature curing is preferred.
Its aliphatic polyamine chemistry allows effective crosslinking without requiring high-temperature curing conditions.
ARADUR 30 XWM 55 makes it suitable for processes where heat treatment is limited.
ARADUR 30 XWM 55 is used in specialty epoxy systems requiring a balance between flexibility and mechanical strength.
The modified amine structure helps reduce excessive brittleness compared with some highly rigid epoxy systems.
This makes it valuable in formulations requiring toughness and durability.
ARADUR 30 XWM 55 is used in research and development of advanced epoxy materials.
It is combined with different epoxy resins, fillers, and modifiers to study and optimize polymer performance.
ARADUR 30 XWM 55 makes it important in the development of customized thermoset materials.
ARADUR 30 XWM 55 is used in industrial epoxy applications because it provides controlled curing, good adhesion, and durable crosslinked structures.
Its modified polyamine chemistry allows formulation of epoxy materials with balanced performance characteristics.
ARADUR 30 XWM 55 makes it a versatile curing component in epoxy resin technology.**
ARADUR 30 XWM 55 is used in epoxy protective systems where resistance against moisture, chemicals, and mechanical stress is required.
The cured epoxy network creates a dense barrier structure that limits penetration of external substances.
This makes it suitable for formulations requiring long-term surface protection.
ARADUR 30 XWM 55 is used in industrial maintenance coatings because it provides reliable curing at practical processing conditions.
The ability to cure under ambient conditions allows easier application on large structures and equipment.
ARADUR 30 XWM 55 useful in repair and maintenance-oriented epoxy coating systems.
ARADUR 30 XWM 55 is used in concrete protection systems based on epoxy chemistry.
The cured polymer layer improves surface durability and resistance to chemical exposure.
This makes it suitable for epoxy formulations applied on mineral-based substrates.
ARADUR 30 XWM 55 is used in epoxy sealants and filling materials where strong adhesion and durability are required.
The amine-cured epoxy network provides mechanical stability after hardening.
ARADUR 30 XWM 55 useful for formulations designed to fill gaps, cracks, and surface imperfections.
ARADUR 30 XWM 55 is used in high-performance adhesive systems requiring good substrate bonding.
The cured epoxy structure provides strong intermolecular interactions and mechanical anchoring.
This makes it suitable for bonding different material types in demanding environments.
ARADUR 30 XWM 55 is used in epoxy systems containing mineral fillers to produce modified composite materials.
The curing agent allows fillers to be incorporated into a stable polymer matrix.
This improves the ability to design materials with adjusted mechanical and processing characteristics.
ARADUR 30 XWM 55 is used in epoxy-based construction materials because it provides durable crosslinked structures.
The cured material shows improved resistance against mechanical loading and environmental conditions.
This makes it suitable for specialized building and infrastructure-related formulations.
ARADUR 30 XWM 55 is used in epoxy coatings requiring good adhesion to difficult surfaces.
The amine-based curing chemistry supports strong interaction between the cured polymer and substrate.
This makes it useful for coating systems applied on metals, minerals, and composite surfaces.
ARADUR 30 XWM 55 is used in epoxy-based composite repair systems because it provides controlled curing and good mechanical stability.
The resulting polymer network restores structural integrity when combined with reinforcement materials.
ARADUR 30 XWM 55 useful in composite maintenance applications.
ARADUR 30 XWM 55 is used in formulations where flexibility is needed compared with highly rigid epoxy hardeners.
The modified aliphatic amine structure allows a balance between toughness and crosslink density.
This makes it suitable for epoxy systems requiring reduced brittleness.
ARADUR 30 XWM 55 is used in epoxy systems exposed to changing environmental conditions.
The cured network provides stability against temperature variation, humidity, and chemical exposure.
This makes it suitable for durable polymer formulations.
ARADUR 30 XWM 55 is used in epoxy-based protective layers for industrial equipment and components.
The cured coating provides mechanical protection and resistance against aggressive environments.
This makes it useful in applications requiring extended service life.
ARADUR 30 XWM 55 is used in epoxy resin formulations requiring good processing characteristics before curing.
Its liquid form and controlled reactivity allow easier mixing and application compared with some faster-reacting hardeners.
ARADUR 30 XWM 55 suitable for manufacturing processes requiring sufficient working time.
ARADUR 30 XWM 55 is used in epoxy systems where a combination of hardness, adhesion, and toughness is required.
The final properties can be adjusted by selecting different epoxy resins and additives.
This makes it a flexible component for customized epoxy formulations.
ARADUR 30 XWM 55 is used in research and development of modified epoxy materials containing additives, fillers, and reinforcement phases.
Its curing behavior allows researchers to evaluate different epoxy network structures.
ARADUR 30 XWM 55 useful in advanced polymer formulation studies.
ARADUR 30 XWM 55 is used in industrial epoxy applications requiring reliable two-component resin systems.
The separate resin and hardener components provide controlled storage and processing before mixing.
This makes it suitable for professional epoxy manufacturing processes.
ARADUR 30 XWM 55 is used in epoxy-based materials where long-term mechanical performance is important.
The crosslinked polymer network maintains structural integrity after curing.
This makes it valuable in applications requiring durable thermoset materials.
ARADUR 30 XWM 55 is used as a versatile amine curing agent for developing epoxy materials with balanced performance characteristics.
ARADUR 30 XWM 55s modified aliphatic polyamine chemistry provides controlled reaction behavior and stable cured structures.
Safety Profile Of ARADUR 30 XWM 55:
ARADUR 30 XWM 55 is an amine-based epoxy curing agent that may cause health hazards through skin contact, eye contact, inhalation, or accidental ingestion.
Its hazards are mainly associated with reactive amine components and the presence of organic solvents in the formulation.
ARADUR 30 XWM 55 makes proper handling procedures, ventilation, and personal protective equipment important during use.
ARADUR 30 XWM 55 is hazardous to the skin because direct contact may cause irritation, redness, and possible allergic sensitization.
Amine-based curing agents can penetrate the skin and may trigger sensitization after repeated exposure.
This makes chemical-resistant gloves and protective clothing necessary during handling.
ARADUR 30 XWM 55 is hazardous to the eyes because contact may cause severe irritation and potential eye damage.
The reactive amine components can affect sensitive eye tissues and cause burning, tearing, and redness.
ARADUR 30 XWM 55 makes safety goggles or face protection important during mixing and transfer operations.
ARADUR 30 XWM 55 is hazardous by inhalation because vapors from the organic solvent components may irritate the respiratory system.
Exposure may cause coughing, throat irritation, headache, dizziness, or breathing discomfort.
This makes adequate ventilation necessary, especially during application or processing in enclosed areas.
ARADUR 30 XWM 55 is hazardous if swallowed because ingestion may cause irritation of the mouth, throat, and digestive tract.
The amine compounds and solvent components may produce harmful effects after accidental intake.
This makes proper labeling, storage, and prevention of accidental ingestion essential.
ARADUR 30 XWM 55 is hazardous because repeated skin exposure may lead to allergic contact dermatitis.
Individuals who become sensitized may experience stronger reactions even after exposure to small amounts.
ARADUR 30 XWM 55 makes minimizing skin contact and maintaining good industrial hygiene important.
ARADUR 30 XWM 55 is hazardous because it contains organic solvents that can contribute to flammability risks.
The solvent vapors may form combustible mixtures with air under suitable conditions.
ARADUR 30 XWM 55 makes keeping the material away from ignition sources, sparks, and excessive heat important.