QuanπyreTM
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Quanπyre X is a high-efficiency technology designed for demanding rubber applications requiring improved formulation efficiency, processing control and long-term durability.
With a high surface area platform, Quanπyre X enables efficient interaction within elastomer systems, allowing compounders to optimise formulations at reduced addition levels while targeting application-specific performance requirements.
Quanπyre X provides a high-efficiency platform for rubber manufacturers developing advanced elastomer compounds.
Its high surface area technology enables efficient interaction within rubber formulations, giving compounders greater flexibility to optimise loading levels, processing behaviour and final product performance.
KEY ADVANTAGES
High-efficiency performance at low addition levels
Supports advanced elastomer formulation
Enables optimised loading strategies
Improves formulation flexibility
Supports thermal and chemical resistance requirements
Designed for demanding industrial rubber applications & advanced elastomer systems
PACKAGE | PRICE
R&D PACK
25 grams (0.88 oz.) | 2,500 €
DEV PACK
100 grams (3.5 oz) | 9,800 €
PILOT PACK
1 kg (2.2 lb) | 96,000 €
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended dose for performance optimisation: 0.5–2.0 phr
Quanπyre X is designed for aerospace rubber components requiring reliable performance under extreme operating conditions.
Potential performance benefits:
Supports high-temperature compound development
Enhances formulation efficiency
Improves long-term performance potential
Supports chemical resistance requirements
Enables advanced sealing compound optimisation
Typical applications:
Aerospace seals
High-temperature gaskets
Hydraulic components
Critical sealing systems
Recommended dose for performance optimisation: 0.5–2.0 phr
Designed for automotive elastomer applications requiring durability, thermal stability and long service life.
Potential performance benefits:
Improved compound optimisation
Enhanced ageing resistance potential
Supports compression performance
Improved formulation flexibility
Typical applications:
Engine seals
Oil-resistant components
Transmission seals
Under-hood rubber parts
Recommended dose for performance optimisation: 0.5–2.0 phr
Designed for industrial rubber products exposed to heat, pressure and chemical environments.
Potential performance benefits:
Supports durable sealing performance
Improves thermal stability potential
Enhances formulation efficiency
Supports long-term mechanical retention
Typical applications:
Hydraulic seals
Industrial gaskets
Pumps and valves
Process equipment seals
Recommended dose for performance optimisation: 0.5–2.5 phr
Designed for rubber compounds operating under elevated temperatures and demanding conditions.
Potential performance benefits:
Supports heat-resistant compound development
Improves performance retention potential
Enables advanced formulation strategies
Supports long-term durability
Typical applications:
Thermal seals
Heat-resistant components
Specialty industrial rubber products
Recommended dose for performance optimisation: 0.5–3.0 phr
Designed for elastomer systems requiring resistance to aggressive environments.
Potential performance benefits:
Supports chemical resistance requirements
Improves compound stability potential
Enables formulation optimisation
Supports demanding service conditions
Typical applications:
Chemical seals
Process industry components
Protective rubber products
Recommended dose for performance optimisation: 0.5–2.5 phr
Designed for applications requiring durability, flexibility and mechanical performance.
Potential performance benefits:
Supports mechanical property optimisation
Improves durability potential
Enhances formulation flexibility
Supports long service-life development
Typical applications:
Industrial belts
Hoses
Vibration components
Heavy-duty rubber products
Recommended dose for performance optimisation: 0.25–2.0 phr
Designed for advanced rubber formulations where compounders require greater control over processing and final properties.
Potential performance benefits:
Improved formulation efficiency
Enhanced processing control
Optimised property balance
Reduced loading strategies
Typical applications:
Specialty rubber goods
Advanced polymer systems
Custom industrial compounds
Performance optimisation versus conventional systems
Quanπyre X is designed to help manufacturers optimise elastomer performance through efficient formulation design.
Evaluation areas include:
Cure behaviour
Tensile strength
Modulus
Elongation
Tear resistance
Hardness
Compression set
Heat ageing retention
Chemical resistance
Fatigue performance
Quanπyre I is a high-efficiency rubber additive technology designed to help manufacturers optimise elastomer performance using significantly lower addition levels than conventional systems. Designed for demanding applications including aircraft tyres, racing tyres, industrial belts, seals and gaskets.
KEY ADVANTAGES
Ultra-low dosage technology
Supports formulation efficiency
Enables optimisation of strength, elasticity and durability
Supports lower compound density strategies
Compatible with established rubber processing methods
PACKAGE | PRICE
R&D PACK
25 grams (0.88 oz.) | 3,750 €
DEV PACK
100 grams (3.5 oz) | 10,000 €
PILOT PACK
1 kg (2.2 lb) | 98,000 €
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended evaluation dose: 0.20–0.40 phr
Compared with conventional ZnO systems, Quanπyre I enables a substantial reduction in additive loading.
At the recommended dosage range, Quanπyre I is designed to support:
Tensile strength: ≥24 MPa
Modulus at 300%: 9–13 MPa
Elongation at break: 450–510%
Tear strength: >35 N/mm
Hardness: 60–70 IRHD
Reduced compound density
Demonstrated evaluation:
0.20 phr addition level
Elongation at break: 455%
Specific gravity: 1.060
Recommended evaluation dose: 0.15–0.40 phr
Designed for performance compounds requiring a balance of flexibility, strength and durability.
Performance optimisation:
Controlled modulus development
Improved elasticity-strength balance
Efficient cure performance
Reduced additive loading
RUBBER GLOVES
Recommended evaluation dose: 0.05–0.15 phr
Designed for flexible elastomer products requiring controlled mechanical properties.
Performance optimisation:
High elongation retention
Improved flexibility
Efficient cure behaviour
Reduced material loading
Improved formulation efficiency
INDUSTRIAL BELTS
Recommended evaluation dose: 0.20–0.50 phr
Designed for heavy-duty rubber products requiring durability and long service life.
Performance optimisation:
Improved tensile performance
Enhanced wear resistance potential
Balanced modulus development
Improved fatigue resistance potential
Reduced additive loading
SEALS & GASKETS
Recommended evaluation dose: 0.10–0.30 phr
Designed for sealing applications requiring reliable long-term performance.
Performance optimisation:
Improved elasticity balance
Controlled hardness development
Enhanced sealing performance potential
Improved formulation efficiency
Quanπyre II is a high-efficiency rubber additive technology designed for advanced elastomer formulations where performance balance, material efficiency and reduced additive loading are important. Designed for aircraft tyres, racing tyres, industrial belts, seals and gaskets.
KEY ADVANTAGES
Ultra-low dosage technology
Supports advanced compound optimisation
Enables improved flexibility-performance balance
Supports reduced material loading
Designed for high-performance elastomer applications
PACKAGE | PRICE
R&D PACK
25 grams (0.88 oz.) | 3,815 €
DEV PACK
100 grams (3.5 oz) | 10,800 €
PILOT PACK
1 kg (2.2 lb) | 103,000 €
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended evaluation dose: 0.10–0.25 phr
At the recommended dosage range, Quanπyre II is designed to support:
Tensile strength: ≥24 MPa
Modulus at 300%: 9–13 MPa
Elongation at break: 500–550%
Tear strength: >35 N/mm
Hardness: 60–70 IRHD
Reduced compound density
Demonstrated evaluation:
0.08 phr addition level
Elongation at break: 545%
Approximately 11% improvement versus reference compound
Specific gravity: 1.063
Recommended evaluation dose: 0.10–0.30 phr
Designed for high-performance compounds requiring advanced flexibility and durability balance.
Potential performance optimisation:
Improved elasticity-performance balance
Enhanced fatigue resistance potential
Optimised cure response
Reduced additive loading
RUBBER GLOVES
Recommended evaluation dose: 0.05–0.15 phr
Designed for flexible elastomer applications requiring high extensibility and controlled mechanical properties.
Performance optimisation:
Improved elongation balance
Enhanced flexibility
Efficient formulation design
Reduced material loading
Recommended evaluation dose: 0.15–0.40 phr
Designed for demanding industrial rubber applications requiring mechanical durability.
Performance optimisation:
Improved strength-performance balance
Enhanced fatigue resistance potential
Durable compound development
Advanced formulation flexibility
Recommended evaluation dose: 0.10–0.30 phr
Designed for sealing applications requiring reliable long-term elastomer performance.
Performance optimisation:
Improved flexibility
Controlled hardness balance
Enhanced sealing reliability potential
Reduced formulation loading
High-efficiency technology for advanced elastomer performance
Quanπyre III is a high-efficiency technology designed for demanding rubber applications requiring improved formulation efficiency, processing stability and long-term durability.
Developed on a high surface area platform, Quanπyre III enables compounders to optimise formulations at reduced addition levels while supporting consistent processing and application-specific performance.
Quanπyre III provides a high-efficiency platform for compounders developing advanced elastomer formulations for demanding industrial applications. Its high surface area technology supports efficient interaction within rubber compounds, enabling optimisation of loading levels while maintaining targeted processing and performance characteristics.
KEY ADVANTAGES
High-efficiency performance at low addition levels
Supports advanced elastomer formulation
Improves processing consistency
Enables optimised loading strategies
Supports thermal and environmental stability
Designed for demanding industrial rubber applications & advanced elastomer systems
PACKAGE | PRICE
R&D PACK
25 grams (0.88 oz.) | 2,365 €
DEV PACK
100 grams (3.5 oz) | 8,800 €
PILOT PACK
1 kg (2.2 lb) | 85,000 €
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended dose for performance optimisation: 0.25–1.5 phr
Potential performance benefits:
Improved formulation efficiency
Enhanced processing consistency
Supports long-term durability
Supports high-temperature compound development
Enables optimisation of critical sealing compounds
Typical applications:
Aerospace seals
Hydraulic sealing systems
High-temperature gaskets
Precision elastomer components
Recommended dose for performance optimisation: 0.25–2.0 phr
Potential performance benefits:
Improved formulation stability
Enhanced ageing resistance potential
Supports durable sealing performance
Improved production consistency
Typical applications:
Engine seals
Transmission components
Under-bonnet rubber parts
Oil-resistant sealing systems
Recommended dose for performance optimisation: 0.25–2.0 phr
Potential performance benefits:
Improved durability potential
Enhanced thermal stability
Supports demanding service environments
Improves formulation flexibility
Typical applications:
Industrial gaskets
Pumps and valves
Hydraulic seals
Process equipment
Recommended dose for performance optimisation: 0.5–2.0 phr
Potential performance benefits:
Improved formulation consistency
Enhanced environmental stability
Supports long-term material performance
Improved processing control
Typical applications:
Cable insulation
Protective polymer systems
Electrical components
Recommended dose for performance optimisation: 0.5–2.5 phr
Potential performance benefits:
Improved processing efficiency
Enhanced mechanical consistency
Supports durable compound development
Improved long-term performance potential
Typical applications:
Industrial belts
Rubber hoses
Vibration control components
Heavy-duty rubber products
Recommended dose for performance optimisation: 0.25–2.0 phr
Potential performance benefits:
Improved formulation efficiency
Enhanced compound optimisation
Better processing control
Greater flexibility in compound design
Typical applications:
Custom elastomer formulations
High-performance rubber goods
Technical mouldings
Advanced industrial components
Performance optimisation versus conventional systems
Quanπyre III is designed to enable manufacturers to optimise compound performance while reducing formulation complexity.
Evaluation areas include:
Processing consistency
Cure behaviour
Mechanical property retention
Thermal stability
Environmental resistance
Ageing performance
Long-term durability
Advanced 2D technology for high-performance elastomer formulations
Quanπyre IV is a high-efficiency 2D technology developed for demanding rubber and polymer applications requiring enhanced formulation efficiency, processing consistency and multifunctional performance.
Its high surface area platform enables efficient interaction within elastomer systems, allowing compounders to optimise formulations at reduced addition levels while maintaining demanding application requirements.
Quanπyre IV combines a high-surface-area 2D architecture with efficient formulation performance, giving compounders greater flexibility to optimise processing, mechanical properties and long-term durability.
Its advanced structure is designed for demanding applications where consistency, efficiency and performance are critical.
KEY ADVANTAGES
Advanced 2D technology
High-efficiency performance at low addition levels
High surface area for improved formulation efficiency
Supports consistent processing
Enables advanced compound optimisation
Designed for demanding industrial applications & advanced elastomer systems
PACKAGE | PRICE
R&D PACK
25 grams (0.88 oz.) | 4,125 €
DEV PACK
100 grams (3.5 oz) | 11,500 €
PILOT PACK
1 kg (2.2 lb) | 112,000 €
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended dose for performance optimisation: 0.10–0.50 phr
Potential performance benefits:
Supports advanced compound optimisation
Improves formulation efficiency
Enhances processing consistency
Supports long-term durability
Enables lightweight formulation strategies
Typical applications:
Aerospace seals
Vibration isolation components
High-performance gaskets
Technical elastomer components
Recommended dose for performance optimisation: 0.10–0.40 phr
Potential performance benefits:
Supports compound consistency
Improves strength-to-weight optimisation
Enhances durability potential
Supports demanding dynamic performance
Typical applications:
Motorsport tyres
Competition rubber components
High-performance suspension components
Recommended dose for performance optimisation: 0.25–1.00 phr
Potential performance benefits:
Supports multifunctional compound development
Enables advanced formulation design
Improves performance consistency
Supports specialised engineering applications
Typical applications:
EMI shielding gaskets
Electronic seals
Technical mouldings
Industrial electronics
Recommended dose for performance optimisation: 0.10–0.75 phr
Potential performance benefits:
Improved formulation efficiency
Supports durable sealing performance
Enhances long-term reliability
Supports demanding service environments
Typical applications:
Hydraulic seals
Pumps and valves
Industrial gaskets
Chemical process equipment
Recommended dose for performance optimisation: 0.10–0.75 phr
Potential performance benefits:
Supports mechanical consistency
Enhances fatigue resistance potential
Improves compound optimisation
Supports long service life
Typical applications:
Conveyor belts
Industrial rollers
Vibration control components
Heavy-duty rubber products
Recommended dose for performance optimisation: 0.05–0.50 phr
Potential performance benefits:
Supports advanced formulation design
Improves processing consistency
Enables reduced loading strategies
Provides greater formulation flexibility
Typical applications:
Technical rubber goods
Custom elastomer formulations
Advanced industrial components
Performance optimisation versus conventional systems
Quanπyre IV is designed to help manufacturers optimise compound performance while reducing formulation loading.
Evaluation areas include:
Processing consistency
Cure behaviour
Tensile strength
Modulus
Elongation
Tear resistance
Fatigue performance
Heat ageing
Long-term durability
Flagship nanotube technology for next-generation elastomer performance
Quanπyre V – NEUTRON is the flagship technology within the Quanπyre portfolio, engineered for elastomer applications where conventional additives approach their performance limits. Its ultra-high aspect ratio nanotube architecture enables efficient interaction throughout the elastomer matrix, allowing compounders to explore exceptionally low addition levels while targeting enhanced reinforcement, durability and formulation efficiency.
Quanπyre V – NEUTRON represents the most advanced reinforcement platform within the Quanπyre portfolio. Its ultra-high aspect ratio nanotube architecture is engineered to maximise interaction within elastomer systems, enabling compounders to explore addition levels measured in hundredths of a part per hundred rubber while targeting substantial improvements in reinforcement efficiency and compound durability.
Developed for manufacturers pushing the boundaries of elastomer performance, Quanπyre V – NEUTRON provides a platform for lighter, stronger and longer-lasting rubber compounds across aerospace, motorsport and advanced industrial applications.
KEY ADVANTAGES
Flagship nanotube technology
Ultra-low loading potential from 0.01 phr
Ultra-high aspect ratio architecture (up to 100:1)
Supports advanced elastomer formulation
Improves processing consistency
Enables lightweight compound development
Supports demanding dynamic applications
Designed for next-generation engineered rubber products
TECHNICAL PROFILE
Nanotube architecture
Average diameter: approximately 5 nm
Length: up to 500 nm
Aspect ratio: up to 100:1
Engineered for advanced elastomer systems
IDEAL APPLICATIONS
It's ideally suited to manufacturers developing:
Aircraft tyres
Racing and motorsport tyres
Aerospace elastomer components
Industrial belts
Conveyor systems
High-performance seals and gaskets
Rubber hoses
Protective gloves
Vibration isolation systems
Defence elastomer components
Heavy-duty industrial rubber products
PACKAGE | PRICE
R&D PACK
5 grams (0.17 oz.) | € 8,450
DEV PACK
50 grams (1.76 oz.) | € 83,000
PILOT PACK
250 grams (17.63 oz.) | € 415,000
BULK ORDER RATES : From 1 Tonne | CONTACT trade@nanoarc.org
Recommended dose: 0.02–0.15 phr
Expected performance benefits:
Increased tensile strength potential
Improved tear resistance potential
Enhanced fatigue resistance
Improved crack initiation and crack growth resistance
Improved durability under repeated loading
Supports lightweight tyre formulations
Recommended dose: 0.02–0.10 phr
Expected performance benefits:
Enhanced dynamic mechanical performance
Improved high-speed durability
Reduced heat build-up potential
Improved crack growth resistance
Improved strength-to-weight optimisation
Supports advanced motorsport compound development
Recommended dose: 0.05–0.20 phr
Expected performance benefits:
Improved tensile performance
Enhanced fatigue resistance
Improved abrasion resistance potential
Increased service life
Improved load-bearing capability
Recommended dose: 0.02–0.15 phr
Expected performance benefits:
Improved mechanical durability
Enhanced tear resistance
Improved compression performance potential
Increased reliability in demanding environments
Supports high-performance sealing applications
Recommended dose: 0.03–0.15 phr
Expected performance benefits:
Improved burst resistance potential
Enhanced flexibility
Improved fatigue performance
Increased durability under pressure cycling
Supports extended service life
Recommended dose: 0.01–0.08 phr
Expected performance benefits:
Increased tear resistance potential
Improved puncture resistance potential
Maintains flexibility
Improved durability
Supports lightweight, high-performance glove formulations
Advanced functional nanotechnology for protective elastomer performance
Quanπyre γ – AEGIS is an advanced high-surface-area technology designed for specialised elastomer applications requiring enhanced protection, durability and functional performance. Its nanoscale architecture enables efficient interaction within rubber formulations, allowing compounders to develop advanced materials with improved formulation flexibility, optimised loading strategies and application-specific performance.
Quanπyre γ – AEGIS expands the Quanπyre portfolio into advanced functional elastomer technologies. Its high surface area nanoscale platform enables efficient integration within rubber compounds, providing compounders with greater flexibility to develop specialised materials for demanding environments.
Designed for applications where protection, reliability and advanced functionality are critical, Quanπyre γ – AEGIS provides a pathway towards next-generation elastomer solutions.
KEY ADVANTAGES
Advanced nanoscale technology
High surface area for efficient compound interaction
Supports functional elastomer development
Enables optimised loading strategies
Improves formulation flexibility
Supports high-performance protective applications
Designed for demanding industrial environments & advanced elastomer systems
IDEAL APPLICATIONS
Quanπyre γ – AEGIS is suited for manufacturers developing:
Radiation-shielding elastomers
Protective rubber products
Aerospace components
Industrial seals and gaskets
High-density rubber components
Vibration-control systems
Technical elastomer products
Specialised industrial materials
Recommended dose for performance optimisation: 2–10 phr
Designed for flexible protective rubber systems requiring enhanced shielding capability while maintaining elastomer performance.
Performance benefits:
Supports radiation attenuation performance
Enables more uniform filler distribution
Supports flexible shielding compound design
Improves formulation flexibility
Enables advanced protective elastomer development
Typical applications:
Medical shielding products
Radiation protection equipment
Nuclear industry seals
Aerospace protection components
Recommended dose for performance optimisation: 1–8 phr
Designed for protective elastomer products requiring a balance between functionality, flexibility and durability.
Performance benefits:
Supports protective performance
Maintains elastomer flexibility
Enables thinner material design strategies
Improves compound optimisation potential
Supports durable protective products
Typical applications:
Medical protective equipment
Industrial protective gloves
Flexible shielding materials
Specialist protective products
Recommended dose for performance optimisation: 0.5–5 phr
Designed for specialised sealing applications requiring enhanced environmental stability and functional performance.
Performance benefits:
Supports long-term sealing performance
Improves formulation flexibility
Enhances compound consistency
Supports demanding operating conditions
Typical applications:
Industrial seals
Process equipment gaskets
Chemical-resistant components
Engineered rubber products
Recommended dose for performance optimisation: 1–10 phr
Designed for engineered rubber components where controlled density and specialised mechanical performance are required.
Performance benefits:
Enables high-density elastomer design
Supports vibration control applications
Improves formulation versatility
Enables advanced engineering solutions
Typical applications:
Vibration mounts
Isolation systems
Precision industrial components
Engineered rubber products
Recommended dose for performance optimisation: 0.25–5 phr
Designed for advanced rubber formulations requiring specialised functionality and improved compound design flexibility.
Performance benefits:
Supports customised elastomer development
Enables advanced material design
Improves formulation efficiency
Supports next-generation technical rubber products
Typical applications:
Aerospace elastomer components
Defence applications
Advanced industrial components
Specialty rubber goods
Performance optimisation
Quanπyre γ – AEGIS is designed for elastomer applications where functional performance is required alongside mechanical durability.
Potential optimisation areas include:
Functional filler efficiency
Compound uniformity
Mechanical property retention
Environmental resistance
Long-term durability
Application-specific performance
Recommended doses are starting points for performance optimisation and should be adjusted according to polymer type, formulation design, processing conditions and final application requirements.
Recommended doses are starting points for performance optimisation and may be adjusted depending on polymer type, formulation design, processing conditions and final application requirements.