DOWSIL RSN-0997

Harmonization Code : 3910.00.00.90 | Silicones in Primary Forms; Others

DOWSIL RSN-0997

Main features

  • Silicone Impregnating Resin for Windings
  • 90 to 120 cP Viscosity Range
  • 2,000 V/mil Dry Dielectric Strength

Product Description

DOWSIL RSN-0997 Resin is a dark-brown, solvent-based silicone impregnating resin used to electrically insulate motor, generator, solenoid, and transformer windings. The resin is formulated for dip impregnation with controlled viscosity, staged drying, and thermal cure. Its cured electrical properties are documented both before and after distilled-water immersion conditioning. Documented applications include motor stator coils, generator coils and solenoids, and transformer windings. RSN-0997 is used as an impregnation resin rather than a bulk potting material.

Key features

  • Flow and dispensing: Dark-brown silicone impregnating resin with typical 90-120 cP viscosity at 25 deg C and 50% nonvolatile content.
  • Key characteristic: Documented winding process uses 150-200 deg C pre-bake, cooling to about 80 deg C, and 3-5 minute dip impregnation.
  • Electrical performance: After 6 h at 200 deg C, dielectric strength is 2000 V/mil under Condition A and 1500 V/mil after 24 h distilled-water immersion.

Applications

  • Motor stator coils
  • Generator coils and solenoids
  • Transformer windings
Product Family

DOWSIL RSN-0997

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
ColorColor
Dark Brown
Specific GravitySpecific Gravity
1.0
Physical Properties
ViscosityViscosity
90-120 mPa.s
Electrical Properties
Volume ResistivityVolume Resistivity
2E14 Ohms⋅cm

Additional Information

Electrical Insulating Resins

Silicone impregnation resin for coils and windings

DOWSIL RSN-0997 Resin is a dark-brown, solvent-based silicone impregnating resin used to electrically insulate motor, generator, solenoid, and transformer windings. The resin is formulated for dip impregnation with controlled viscosity, staged drying, and thermal cure. Its cured electrical properties are documented both before and after distilled-water immersion conditioning.

90-120 cP at 25 deg C50% nonvolatile contentDip impregnationThermal cureElectrical insulation

As-Supplied Properties

Liquid resin properties before impregnation

As-supplied viscosity and solids content are important to penetration of windings and control of the dip process.

Property Typical Value Unit / Condition State
Color Dark brown - As supplied
Nonvolatile content 50 % after 3 h at 135 deg C As supplied
Specific gravity 1.00 at 25 deg C As supplied
Viscosity 90-120 cP at 25 deg C As supplied
Drying time 3 h at 200 deg C Applied resin
Solvent Xylene - As supplied

Processing

Prepare the equipment, impregnate, dry, and thermally cure

RSN-0997 is used as an impregnation resin rather than a bulk potting material. The documented process emphasizes moisture removal, controlled immersion time, staged drying, and cure temperature appropriate to the equipment.

  1. Pre-bake:Thoroughly clean the equipment and pre-bake at 150-200 deg C to drive out moisture and cure new insulating components.
  2. Cool before dipping:Allow the equipment to cool to about 80 deg C before immersion.
  3. Impregnate:Dip in RSN-0997 for 3-5 minutes, or until most bubbling stops. Do not exceed 10 minutes of immersion.
  4. Build the coating:Air dry and partially cure the first coat, then cool to about 80 deg C before a further impregnation. Two dips will usually provide sufficient resin build-up.
  5. Cure:Select the cure according to equipment size, desired film properties, and oven behavior. For maximum bond strength, use a final cure at 250 deg C for at least 6 h.

Storage & Handling

Long unopened-container usable life at 25 deg C

When stored at or below 25 deg C in the original unopened container, the product has a documented usable life of 36 months from the date of production.

Technical Guidance

Maintain penetration and control resin build-up

Dip-tank viscosity, film build, and cure temperature are key process controls for impregnation performance.

Maintain dip-tank viscosity

If resin viscosity rises above 200 centistokes, penetration into windings may be reduced and air spaces can remain. Check viscosity and add suitable thinner only when needed.

Avoid excessive build

Excessive resin build-up may lead to crazing. If dip-tank resin becomes too thick or deteriorates, it should be removed from service rather than forced through the process.

Set cure relative to service

Set the final cure temperature at least 20 deg C above the maximum operating temperature of the impregnated equipment.

Final-State Properties

Electrical properties after a 6 h cure at 200 deg C

Condition D represents specimens after 24 h immersion in distilled water. The comparison preserves the conditioning basis reported in the product data.

Property Condition A Condition D Unit / Test Condition
Dielectric strength 2000 1500 V/mil; 2 in electrodes
Dissipation factor 0.010 0.020 at 25 deg C, 100 Hz
Dissipation factor 0.007 0.010 at 25 deg C, 100 kHz
Dielectric constant 3.10 3.20 at 25 deg C, 100 Hz
Dielectric constant 2.98 3.10 at 25 deg C, 100 kHz
Surface resistivity 1 x 10^14 1 x 10^13 ohm
Volume resistivity 2 x 10^14 1 x 10^14 ohm-cm

Performance Evidence

Thermal-life data from the curved-electrodes method

Thermal-life testing reports time-to-endpoint values at three elevated temperatures for glass cloth impregnated with RSN-0997 Resin.

250 deg C

4000 h

Reported aging time to the defined dielectric-strength endpoint.

275 deg C

1500 h

Reported aging time to the defined dielectric-strength endpoint.

300 deg C

350 h

Reported aging time to the defined dielectric-strength endpoint.

Test endpoint: hours of aging required to reduce dielectric strength of glass cloth impregnated with RSN-0997 Resin to 300 V/mil when the resin film is elongated 2%.

Applications

Electrical winding impregnation

The product is documented as an electrical insulating impregnant for several coil and winding types.

Motor stator coils

Impregnation of motor stator coils to form an electrically insulating cured resin film around the winding system.

Generator coils and solenoids

Electrical insulation of generator coil and solenoid winding assemblies using the documented dip-and-cure process.

Transformer windings

Dip impregnation and thermal cure of transformer windings where a silicone insulating resin is required.

Technical support for DOWSIL RSN-0997 Resin

Need help translating the RSN-0997 dip process into a winding-impregnation trial? Krayden can help review pre-bake temperature, cooling before immersion, dip time, resin-viscosity control, film build, drying sequence, and final cure conditions for the specific motor, generator, solenoid, or transformer assembly.

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