3M MR283FO75

Harmonization Code : 3910.00.00.90 | Silicones in Primary Forms; Others

3M MR283FO75

Main features

  • Filled, semi-flexible epoxy system
  • Low mixed viscosity
  • Multiple oven-cure

Product Description

3M™ Scotchcast™ Electrical Resin MR283FO75 is a two-part, oven-curing, filled epoxy electrical resin developed for impregnating and encapsulating coils, transformers, motors and other electrical or electronic components. The semi-flexible cured resin combines Class B or Class F temperature capability with thermal-shock resistance, hydrolytic stability and electrical insulation. Its filler system is designed to reduce cure shrinkage and stress while increasing thermal conductivity and supporting dimensional stability.

Key features

  • Filled, semi-flexible epoxy system: Designed to reduce shrinkage and component stress while supporting thermal and mechanical shock resistance.
  • Low mixed viscosity: A typical mixed viscosity of 6,800 cP at 25°C supports impregnation and encapsulation processes.
  • Multiple oven-cure schedules: Cure options range from 36–48 hours at 75°C to 3–4 hours at 120°C.
  • Electrical insulation: Provides a typical dielectric strength of 372 V/mil on a 3.175 mm specimen.
  • Class B or F temperature capability: Documented for temperature classes from 130°C to 155°C.

Suitable for

  • Impregnation and encapsulation of coils and transformers
  • Moisture-proofing and insulating motors, armatures and stators
  • Insulating bus bars, toroidal cores and electrical assemblies

Relevant resource

Product Family

3M MR283FO75

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
Mix RatioMix Ratio
Wt 5:1 Vol. (%) 36.3 : 10
SolidsSolids
100 %
Specific GravitySpecific Gravity
A:1.59/B: 1.16
Physical Properties
Viscosity (Part B)Viscosity (Part B)
150 mPa.s
Thermal Properties
Flash PointFlash Point
>150 °C
Glass Transition Temperature (Tg)Glass Transition Temperature (Tg)
22 °C
Thermal ConductivityThermal Conductivity
0.463 W/m.K
Mechanical Properties
ElongationElongation
12 %
Electrical Properties
Dielectric StrengthDielectric Strength
372 kV/mm
Volume ResistivityVolume Resistivity
`1.25 x 10¹⁵ Ohms⋅cm

Additional Information

Filled electrical insulation resin

3M™ Scotchcast™ Electrical Resin MR283FO75

3M™ Scotchcast™ Electrical Resin MR283FO75 is a two-part, oven-curing, filled epoxy resin for impregnating and encapsulating electrical and electronic components. Its semi-flexible cured state, thermal-shock resistance and Class B or F temperature capability support applications involving coils, transformers, motors and related assemblies.

Two-part epoxy Oven cure Filled Semi-flexible Class B or F
3M Scotchcast Electrical Resin MR283FO75 Part A and Part B containers

Two-part, oven-curing electrical-grade epoxy resin for impregnation and encapsulation.

As supplied and mixed

Handling and processing properties

Part A contains the filled resin component and must be thoroughly remixed before proportioning. Part A and Part B differ substantially in viscosity and specific gravity, so the documented ratio and component order must be preserved.

Mix ratio by weight
5:1
Part A to Part B by weight.
Mix ratio by volume
36.3:10
Part A to Part B by volume.
Mixed viscosity
6,800 cP
Typical at 25°C.
Gel time
30 min
Typical at 121°C.
Typical component and mixed-material properties
Property Part A Part B Test condition
Viscosity 115,000 cP 150 cP Measured at 25°C
Specific gravity 1.59 1.16 Measured at 25°C
Flash point > 150°C > 150°C 302°F
Mixed viscosity 6,800 cP Measured at 25°C
Mixed viscosity after 18 hours 69,000 cP Measured at 25°C

Values are typical and are not minimum, maximum or guaranteed specification limits.

Processing

Preheating, mixing and de-aeration

Thorough mixing is critical because Part A contains filler that may settle during storage. Incomplete remixing or failure to scrape the container can create soft or sticky areas, reducing physical and electrical performance.

Preheat Part A: Part A may be preheated to 50–60°C to reduce viscosity and assist mixing. Avoid prolonged heating above this range.
Remix Part A: Thoroughly redistribute settled filler and other ingredients before adding Part B.
Proportion accurately: Combine the components at the documented ratio within ±2% by weight or volume.
Power mix: Mix for 4–6 minutes using a high-shear mixer. Scrape the sides and bottom of the container into the bulk material several times.
Remove entrained air: De-aerate for 5–15 minutes at 5–10 mm Hg absolute pressure. Warming the mixture to 60°C can aid air removal.

 

Processing

Casting, impregnation and oven cure

Preheating the resin and component lowers viscosity and can improve penetration into windings and voids. The selected cure schedule should account for the time required for the resin mass and assembly to reach the specified cure temperature.

Resin and component preheat
50–100°C
Recommended range for reducing viscosity during impregnation.
Vacuum impregnation
5–15 min
At 5–10 mm Hg absolute pressure.
Optional post-cure
8–16 h
At 110–120°C to optimize physical and electrical properties.
Published oven-cure guidance
Cure temperature Cure time Processing consideration
75°C 36–48 hours Lower-temperature cure for reduced stress and improved shock resistance
95°C 8–10 hours Intermediate oven-cure schedule
120°C 3–4 hours Shorter high-temperature cure schedule

Cure time begins after the resin and assembly reach the required cure temperature. Assembly mass, oven loading and heat-transfer conditions may require additional time.

Cured resin

Physical and thermal properties

The cured resin combines hardness and mechanical strength with 12% elongation and increased thermal conductivity from its filled construction. Values characterize laboratory-prepared cured resin specimens.

Typical cured physical and thermal data
Property Typical value Test Method 
Hardness 80 Shore D -
Cured specific gravity 1.55 ASTM D792
Compressive strength at 10% compression 5,500 psi/ 38 MPa ASTM D695
Ultimate tensile strength 3,700 psi/ 25.5 MPa MIL-I-16923G
Elongation at break 12% ASTM D638
Flexural strength at 5% 3,500 psi/ 24.1 MPa ASTM D790
Thermal conductivity 0.463 W/(m·K) At 29°C; ASTM D2440
Glass-transition temperature 22°C -
Linear thermal expansion below Tg 0.57 × 10−4/°C ASTM D696
Linear thermal expansion above Tg 1.65 × 10−4/°C ASTM D696
Flame response Self-extinguishing MIL-I-22266C
Fungus resistance Rating 2 MIL-STD-810G Method 508.6
Electrical performance

Dielectric and resistivity properties

Electrical values depend on temperature, frequency and specimen thickness. The temperature-dependent data below should not be reduced to a single universal electrical rating.

Dielectric strength
372 V/mil
ASTM D149 on a 3.175 mm specimen.
Dielectric constant
3.9
Typical at 23°C and 1 kHz.
Volume resistivity
1.2 × 1015 Ω·cm
Typical at 23°C using ASTM D257.
Typical dielectric constant, ASTM D150
Temperature 100 Hz 1 kHz
23°C 4.0 3.9
55°C 4.7 4.5
75°C 5.2 4.8
100°C 6.4 5.2
125°C 7.5 5.7
150°C Not reported 6.9
Typical volume resistivity, ASTM D257
Temperature Volume resistivity
23°C 1.2 × 1015 Ω·cm
55°C 6.4 × 1012 Ω·cm
75°C 1.3 × 1011 Ω·cm
100°C 3.9 × 1010 Ω·cm
125°C 6.7 × 109 Ω·cm
150°C 2.2 × 109 Ω·cm
Performance evidence

Properties after 1,000 hours of thermal aging

The TDS reports weight loss, hardness change and electrical measurements after prolonged thermal aging. These laboratory results support evaluation of temperature capability but are not universal service-life predictions.

Typical results after 1,000 hours
Property 136°C 155°C 180°C
Weight loss 0.95% 3.43% 4.56%
Hardness change 4 6 8
Dissipation factor at 100 Hz 0.0186 0.0151 0.0153
Dielectric constant at 100 Hz 3.93 4.15 4.28

The TDS identifies the product temperature class as 130–155°C.

Applications

Electrical impregnation and encapsulation applications

MR283FO75 is intended for electrical insulation processes where thermal conductivity, shock resistance, moisture protection and penetration into windings or voids are important considerations.


Coils and transformers

The mixed resin can be heated and vacuum processed to improve penetration into coil windings and internal voids.


Motors, armatures and stators

The resin is documented for moisture-proofing and insulating motor components requiring thermal and mechanical shock resistance.


Bus bars and toroidal cores

The cured epoxy provides electrical insulation and environmental protection for supported electrical assemblies.

Product resource

3M Scotchcast OEM resin selection guide

This supplier guide provides broader information about Scotchcast electrical liquid resins, including cure type, filler selection, flexibility, temperature class, processing considerations and comparative product data.

Tough, Reliable Protection: 3M™ Scotchcast™ OEM Resins

Selection and application guidance for electrical-grade epoxy and polyurethane liquid resins used to insulate and protect electrical and electronic assemblies.

View the 3M Scotchcast resin guide
Next steps

Evaluate 3M™ Scotchcast™ MR283FO75 for your electrical insulation process

Contact Krayden to review mixing, vacuum de-aeration, impregnation, oven capacity, cure scheduling, temperature-class requirements and application-specific electrical, thermal or mechanical testing.

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