CONATHANE EN-1556

Harmonization Code : 3909.20.00.90 | Amino-resins, phenolic resins and polyurethanes, in primary forms : Melamine resins : Other

CONATHANE EN-1556

Main features

  • 100% Solids Polyurethane Encapsulation System
  • 100:33 Controlled Mixing
  • Room-Temperature Sealing Cure

Product Description

CONATHANE EN-1556 is an unfilled, two-component, 100% solids polyurethane system for potting and encapsulating electrical assemblies. Part A urethane prepolymer and Part B curative mix at 100:33 by weight or volume. The system supports room-temperature or elevated-temperature cure schedules and is used for harness breakouts, watertight connectors, electrical cables, and cable end seals. Documented applications include harness breakouts, watertight connectors, and cable end seals. Cast or inject the mixture.

Key features

  • Material system: 100% solids polyurethane system.
  • Mix ratio: 100:33 mix ratio by weight or volume.
  • Processing window: Room-temperature or elevated-temperature cure options.

Applications

  • Harness breakouts
  • Watertight connectors
  • Cable end seals
Product Family

CONATHANE EN-1556

Catalog Product

Unlike other products we offer, the products listed on this page cannot currently be ordered directly from the website.

TDS, SDS & Technical Documents

Technical Specifications

General Properties
Chemistry TypeChemistry Type
Urethane
ColorColor
Amber, Black
Component SystemComponent System
2 Part
Mix RatioMix Ratio
100:33
Specific GravitySpecific Gravity
1.05
Work life @25°CWork life @25°C
1 - 1.167 hours
Electrical Properties
Arc ResistanceArc Resistance
120 s

Additional Information

Potting, Encapsulants & Underfills

CONATHANE® EN-1556

Two-component polyurethane for potting, encapsulation, molding and casting

CONATHANE® EN-1556 is an unfilled, two-component, room-temperature-curing, 100% solids polyether-based polyurethane system supplied as EN-1556 Part A Urethane Prepolymer and EN-1556 Part B Curative. It is used for molding, potting and encapsulation of electrical assemblies and is also suitable for selected mechanical casting, molding and abrasion-resistant lining applications.

100:33 A:B by weight or volume 10,040 cP mixed viscosity at 25°C 60-70 min work life at 25°C Shore A 80 cured hardness 100% solids polyurethane
Product profile

Performance and processing characteristics

EN-1556 combines polyurethane elastomer properties with processing options for bench casting, meter-mix dispensing and vacuum potting or casting.

MIL-M-24041C conformity
The product is identified as conforming to MIL-M-24041C.
Environmental resistance
Features include hydrolytic stability, thermal-shock resistance and resistance to oils, gasoline, JP-4 fuel and seawater.
Non-MbOCA cure system
The two-component polyurethane system uses a non-MbOCA curing system.
Meter-mix and cartridge compatible
The 100:33 volumetric mix ratio supports a cartridge-friendly approximately 3:1 dispensing configuration.
As-supplied and mixed properties

Component and mixed-material properties

Part A, Part B and mixed-system values are kept separate to preserve component and process-state context.

Mix ratio
100:33
Part A:Part B by weight or volume.
Initial mixed viscosity
10,040 cP
At 25°C / 77°F.
Work life at 25°C
60-70 min
2 lb batch to 250,000 cP.
State Property Value Unit / basis Condition
Part A Viscosity 18,000 cP 25°C / 77°F
Part A Specific gravity 1.05 Dimensionless 25°C / 77°F
Part A Appearance Amber Visual As supplied
Part B Viscosity 3,000 cP 25°C / 77°F
Part B Specific gravity 1.03 Dimensionless 25°C / 77°F
Part B Appearance Amber or black Visual As supplied
Mixed system Mix ratio 100:33 A:B By weight or volume
Mixed system Initial viscosity 10,040 cP 25°C / 77°F
Mixed system Work life to 250,000 cP 60-70 minutes 2 lb batch at 25°C / 77°F
Mixed system Work life to 250,000 cP 15-20 minutes 2 lb batch at 60°C / 140°F

Values are typical and are not intended for specification use.

Processing

Mix, degas, cast or inject within the documented process window

EN-1556 may be processed by hand-mix bench potting or casting, meter-mix bench potting or casting, and meter-mix vacuum potting or casting. Ordinary casting and injection-molding techniques are supported.

Stage 1
Condition components
Mix each component thoroughly before use. Components may be preheated up to 60°C when lower viscosity is required.
Stage 2
Mix and degas
Combine Part A and Part B at 100:33 by weight or volume and mix until homogeneous. For hand mixing, degas at greater than 27 in. Hg vacuum before use.
Stage 3
Cast or inject
For most injection applications, use 40-120 psi. When injecting compound at 60-82°C, use the lower documented range of 10-30 psi to reduce air entrapment.
Stage 4
Control mold temperature and venting
Keep the part and mold approximately 5-10°C warmer than the injected compound. Injection holes are recommended at the bottom of the mold with air-bleed holes at the top.
Cure and demold

Room-temperature and accelerated heat-cure options

Cure times are measured after the unit reaches the specified temperature. The schedules are recommendations and should be optimized for the intended application.

Process Temperature Time Basis
Cure 25°C / 77°F 10-14 days Room-temperature cure option
Cure 82°C / 180°F 16 hours Accelerated cure option
Cure 100°C / 212°F 8-10 hours Accelerated cure option
Demold 25°C / 77°F 24 hours Recommended demold point
Demold 80°C / 176°F 60 minutes Recommended demold point
Demold 100°C / 212°F 30 minutes Recommended demold point
Processing aids

Primer and mold-release guidance

Primer selection depends on the substrate. A dedicated mold release is also identified for easier removal of cast parts.

Metals
CONAP® AD-1146 primer is recommended to improve adhesion to metals.
Neoprene
CONAP® PR-1167 primer is recommended for neoprene substrates.
Polyvinyl chloride
CONAP® AD-1161 primer is recommended for polyvinyl chloride.
Mold release
CONAP® MR-5002 Mold Release may be applied to molds to support removal of cast parts.
Storage and handling

Control temperature, moisture exposure and crystallization before processing

Storage temperature
Store at 20-30°C / 68-86°F in a dry, controlled environment out of direct sunlight.
Shelf life
The material is suitable for use for 12 months from shipment when stored in original sealed containers under the stated conditions. Cartridge packaging may adjust shelf life.
Moisture control
The product is sensitive to moisture and atmospheric humidity. After opening, use immediately or blanket remaining material with dry air or nitrogen before resealing.
Crystallization recovery
If Part A or Part B crystallizes during storage or shipment, heat the affected component to 60°C, mix thoroughly, then cool to room temperature before processing.
Final-state properties

Typical mechanical and environmental properties

These values apply to the mixed and cured EN-1556 system under the stated test methods and conditions.

Property Value Unit Method Condition
Appearance Amber or black Visual Visual 25°C / 77°F
Specific gravity 1.05 Dimensionless ASTM D792 25°C / 77°F
Shore hardness A 80 Shore A ASTM D2240 25°C / 77°F
Shore hardness after heat aging A 74 Shore A ASTM D2240 After 24 h at 135°C / 275°F
Compression set 35 % ASTM D395 Method B Typical cured material
Tensile strength 5,000 psi ASTM D412 25°C / 77°F
300% modulus 1,400 psi ASTM D412 25°C / 77°F
Ultimate elongation 400 % ASTM D412 25°C / 77°F
Tear strength 200 pli ASTM D624 25°C / 77°F
Volumetric shrinkage 3.6 % MIL-M-24041C Typical cured material
Moisture absorption 2.1 % MIL-M-24041C 24 h at 93°C / 200°F
Fungus resistance Non-nutrient Result MIL-E-5272C Tested cured system
Low-temperature flexibility No blistering, cracking or loss of adhesion Result MIL-M-24041C -54°C / -65°F cycles
Tensile-strength degradation after water immersion 28.6 % loss Tensile evaluation After 2 weeks immersion in water at 70°C / 158°F

Typical values are not intended for specification use. Test method, conditioning and product state should be preserved when comparing performance.

Electrical properties

Typical cured electrical performance

Electrical values apply to the cured EN-1556 system under the stated frequency, temperature, specimen and exposure conditions.

Property Value Unit Method Condition
Dielectric strength 350 V/mil ASTM D149 1/8 in. specimen at 25°C / 77°F
Dielectric constant 6.1 Dimensionless ASTM D150 1 kHz at 25°C / 77°F
Dielectric constant 5.1 Dimensionless ASTM D150 1 MHz at 25°C / 77°F
Dissipation factor 0.03 Dimensionless ASTM D150 1 kHz at 25°C / 77°F
Dissipation factor 0.06 Dimensionless ASTM D150 1 MHz at 25°C / 77°F
Volume resistivity 2.4 × 1012 ohm-cm ASTM D257 25°C / 77°F
Volume resistivity 9.6 × 1010 ohm-cm ASTM D257 121°C / 250°F
Surface resistivity 5.2 × 1013 ohms/sq. ASTM D257 25°C / 77°F
Surface resistivity 3.5 × 1010 ohms/sq. ASTM D257 121°C / 250°F
Insulation resistance 900,000 megohms MIL-M-24041C 25°C / 77°F
Insulation resistance 4,200 megohms MIL-M-24041C 121°C / 250°F
Insulation resistance 35,000 megohms MIL-M-24041C After 10 days at 95% RH
Arc resistance >120 seconds MIL-M-24041C 25°C / 77°F
High-potential resistance No breakdown Result MIL-M-24041C 2,000 V RMS at 60 Hz
Flame resistance No ignition Result MIL-M-24041C 55 A DC

Typical electrical values are not intended for specification use and should be evaluated under the stated test conditions.

Applications

Supported electrical and mechanical application areas

EN-1556 is primarily used as a molding, encapsulating and potting compound for electrical assemblies, with additional mechanical casting and abrasion-resistant lining applications.

Harness breakouts
Molding, potting and encapsulation of electrical harness breakout locations.
Watertight electrical connectors
Encapsulation and molding of electrical connectors requiring watertight construction.
Cables and cable end seals
Potting and encapsulation of electrical cables and cable end-seal assemblies.
Mechanical casting and molding
Casting and molding of mechanical parts using the two-component polyurethane system.
Abrasion-resistant linings
Lining applications for pumps, chutes and conveyors requiring abrasion resistance.
Next steps

Discuss CONATHANE® EN-1556 with Krayden

Review EN-1556 for your potting, encapsulation, molding or casting process with Krayden. Share your assembly geometry, substrate materials, dispensing method, processing temperature, cure requirements and target final-state properties to support a technically appropriate material evaluation.

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