COOLTHERM EP-636

Harmonization Code : 3910.00.00.90 | Silicones in Primary Forms; Others

COOLTHERM EP-636

Main features

  • 205 deg C Staged-Cure Encapsulation
  • 18.3 kV/mm Dielectric Strength
  • 50,000 cP Mixed Viscosity

Product Description

CoolTherm® EP-636 Epoxy Encapsulant is a two-component, ultra-high-temperature epoxy system for encapsulating electric motor stator assemblies used in downhole oil pumps and other harsh-environment electrical applications. The white resin and black hardener mix at a standard 100:1 ratio by weight to form a grey material with a typical 50,000 cP viscosity at 25°C, 30-minute gel time at 93°C, and one-to-two-day working life at 25°C. The documented cure is 16–24 hours at 50–65°C, followed by two hours each at 95°C, 150°C, and 205°C. Typical cured properties include 0.7 W/m·K thermal conductivity, 180°C glass transition temperature, 95 Shore D hardness, and 18.3 kV/mm dielectric strength.

Key features

  • Ultra-high-temperature epoxy encapsulation system
  • High-temperature electrical-insulation positioning for harsh environments
  • Standard 100:1 resin-to-hardener ratio by weight
  • Typical mixed viscosity of 50,000 cP at 25°C
  • Long one-to-two-day working life at 25°C
  • Staged cure through 205°C for final high-temperature properties
  • Typical 180°C Tg, 35 ppm/°C CTE, and 18.3 kV/mm dielectric strength

Applications

  • Electric motor stator assemblies used in downhole oil pumps
  • High-temperature electrical and electronic encapsulation
  • Large-mass castings requiring validated ratio, void control, and staged cure
Product Family

COOLTHERM EP-636

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
AppearanceAppearance
Resin (A): White Liquid | Hardener: (B) Black Liquid | Mixed: Gray Liquid
Physical Properties
Viscosity (Part A)Viscosity (Part A)
86000 mPa.s
Viscosity (Part B)Viscosity (Part B)
3500 mPa.s
Electrical Properties
Dielectric StrengthDielectric Strength
18.3 kV/mm
Volume ResistivityVolume Resistivity
5.6 x 10^15 Ohms⋅cm
Thermal Properties
Thermal ConductivityThermal Conductivity
0.7 W/m.K

Additional Information

Ultra-high-temperature epoxy encapsulant

CoolTherm® EP-636 Epoxy Encapsulant

A two-component epoxy system designed for high-temperature electrical encapsulation, including motor stator assemblies used in downhole oil pumps. The system combines long working time, controlled viscosity, vacuum-compatible processing, and a staged cure that develops a rigid, high-Tg electrical-insulation material.

Two-component epoxy 100:1 by weight 50,000 cP mixed 180°C Tg Staged cure to 205°C
CoolTherm EP-636 white resin and black hardener packaging

Insert a verified image showing the EP-636 white resin and black hardener or approved kit packaging.

As supplied and mixed

Component and mixed-material properties

The white resin and black hardener form a grey mixed encapsulant. Values below are typical and are not specification limits.

Property EP-636 resin EP-636 hardener Mixed material
Appearance White liquid Black liquid Grey liquid
Viscosity at 25°C 86,000 cP 3,500 cP 50,000 cP
Specific gravity at 25°C 1.61 1.00 1.58
Gel time at 93°C 30 minutes
Working life at 25°C 1–2 days
Processing

Premix both components, meter the ratio, minimise voids, dispense, and complete the staged cure

Thoroughly mix each component separately, then combine 100 parts EP-636 resin with 1 part EP-636 hardener by weight until the colour is uniform. Automatic meter/mix/dispense equipment may be used for high-volume production.

  • Large-mass castings may require 100:0.75 by weight; determine the optimal ratio by testing before production use.
  • Use closed-chamber mixing where possible, or vacuum processing for high-voltage and other critical applications where void minimisation is important.
  • Apply using handheld cartridges or automatic meter/mix/dispense equipment.
  • Cure for 16–24 hours at 50–65°C, then two hours each at 95°C, 150°C, and 205°C.
  • Alternate cure cycles require consultation with Parker LORD.
Mixpac™ Dispensing Systems for Parker Lord Two Component System

Mixpac™ Dispensing Systems for Parker Lord Two Component System

1. Premix components

Restore both resin and hardener to a uniform state before metering.

2. Meter and mix

Use 100:1 by weight unless a validated large-mass process uses 100:0.75.

3. Minimise air

Use closed-chamber mixing or vacuum where electrical or reliability requirements justify it.

4. Dispense and cure

Complete the initial 50–65°C hold and all three two-hour high-temperature stages.

Storage and handling

The resin has a one-year shelf life and the hardener has a two-year shelf life when stored at 25°C in their original unopened containers. Periodically rotate the resin container because settling will occur. If hardener crystals appear after storage or shipment, gently warm the hardener to 50–65°C until the crystals melt before mixing. Review the current regional SDS and product labels before use.

Final cured state

Thermal, mechanical, and electrical properties

These typical values are tied to the full documented cure of 24 hours at 65°C plus two hours each at 95°C, 150°C, and 205°C. Do not assume equivalent final properties from the initial low-temperature stage alone.

Property Typical value Context
Thermal conductivity 0.7 W/m·K Bulk cured-material property.
Coefficient of linear thermal expansion 35 ppm/°C Typical bulk cured value.
Glass transition temperature by TMA 180°C Tested after the full staged cure.
Hardness 95 Shore D Rigid cured epoxy.
Tensile strength 42.75 MPa (6,200 psi) ASTM D638 bulk tensile property.
Volume resistivity at 25°C 5.6 × 1015 ohm-cm ASTM D257.
Dielectric strength 18.3 kV/mm (464 V/mil) ASTM D149; not a finished-system working-voltage rating.
Dielectric constant 3.62 at 1 MHz and 25°C ASTM D150.
Dissipation factor 0.023 at 1 MHz and 25°C ASTM D150.
Applications

High-temperature stator and electrical encapsulation

The directly supported application is encapsulation of electric motor stator assemblies used on downhole oil pumps. Broader high-temperature electrical use requires validation of voltage, section size, cure uniformity, thermal cycling, fluids, pressure, and the complete operating environment.

Downhole oil pump electric motor stator encapsulated with high-temperature epoxy

Downhole motor stators

Recommended for encapsulating electric motor stator assemblies used on downhole oil pumps.

High-temperature electrical winding encapsulated in rigid grey epoxy

High-temperature electrical insulation

May be evaluated for electrical devices requiring a rigid high-Tg encapsulant and a completed staged cure.

Large-mass electrical casting with vacuum-assisted epoxy encapsulation

Large-mass and critical castings

Large-volume applications may require a validated 100:0.75 ratio and enhanced void-control measures.

Product resource

Potting & Encapsulation Materials Catalogue — PC3002

The catalogue identifies EP-636 as a grey, two-component, thermally conductive, ultra-high-temperature epoxy encapsulant with 50,000 cP viscosity, a 100:1 mix ratio, 95 Shore D hardness, 18.3 kV/mm dielectric strength, and 0.7 W/m·K conductivity.

Use the current technical datasheet for processing and property details. The catalogue is intended for portfolio comparison.

Open the Potting & Encapsulation Materials Catalogue

Validate EP-636 for your high-temperature encapsulation process

Krayden can help review batch size, large-mass ratio evaluation, mixing, vacuum processing, dispensing, staged cure, void control, electrical insulation, Tg, CTE, and environmental qualification for CoolTherm® EP-636.

Contact Krayden Technical Support

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