DOWSIL LPA-4000

Harmonization Code : 3910.00.00.90 | Silicones in Primary Forms; Others

DOWSIL LPA-4000

Main features

  • One-Part Non-Slumping RTV Silicone
  • Spray, Trowel, Brush, or Roller Application
  • Thermally Conductive Coating

Product Description

DOWSIL LPA-4000 Sprayable RTV Ablative Silicone is a one-part, non-slumping silicone elastomer for aerospace thermal-protection applications. It can be applied by airless spray, trowel, brush, roller, or pressure-gun methods as an ablative coating and thermal barrier for launch structures exposed to indirect rocket blast. The material has approximately 20 minutes workable time at 25 deg C and 50% RH, with about 150 mil cure depth within 24 hours. Documented uses include strongback protection, gantry and flame-tunnel protection, and sacrificial recoating.

Key features

  • Application fit: One-part non-slumping RTV silicone for spray, trowel, brush or roller application.
  • Final performance:: Cured material has 0.42 W/(m.K) thermal conductivity and Shore A 55 hardness.
  • Key characteristic: Documented exposure capability from -55 to 200 C for extended periods and up to 3,300 C for several seconds.

Applications

  • Strongback protection
  • Gantry and flame-tunnel protection
  • Sacrificial recoating

Technical Specifications

No specifications available.

Additional Information

Protective Coatings

Sprayable one-part RTV silicone for sacrificial ablative thermal protection

DOWSIL LPA-4000 Sprayable RTV Ablative Silicone is a one-part, non-slumping silicone elastomer developed for aerospace thermal-protection applications. It can be applied by airless spray, trowel, brush or roller as an ablative coating and thermal barrier for launch structures exposed to indirect rocket blast.

One-part RTV36,000 mPa.s at 25 C0.42 W/(m.K)Spray or manual apply

As-Supplied Properties

Application-ready coating properties

The product is supplied as a white, viscous, one-part material. Values below are typical.

Property Typical Value Method / Condition
Consistency Viscous liquid As supplied
Color White As supplied
Viscosity 36,000 mPa.s ASTM D1084 / CTM 0050, 25 deg C, CPE-52 at 10 rpm
Relative density 1.51 ASTM D722 / CTM 0022, 25 deg C
Tack-free time 18 minutes 25 deg C
Cure time <24 hours 25 deg C

Typical values are not intended for preparing specifications.

Processing

Surface preparation and application

A clean surface is required for maximum adhesion and product performance. The coating can be sprayed with conventional airless equipment or applied manually.

  1. Remove loose material, dust, dirt, scale and oily residue from the surface.
  2. Wash cleaned surfaces with high-pressure water. Stubborn oils and grease may require a compatible solvent cleaning step.
  3. Apply with airless spray equipment, or use a spatula, trowel, pressure gun, low-nap roller or paint brush.
  4. When spraying, use hoses and fittings rated for the pressure required to atomize the material.

Working and cure window

  • Workable for approximately 20 minutes at about 25 deg C and 50% RH.
  • Cures in depth to approximately 150 mils within 24 hours at about 25 deg C and 50% RH.
  • Typical spray pressure required to aerosolize the material is 4,000-5,000 psi.
  • Masking tape should be removed before a surface skin forms.

Storage and Handling

Store sealed material at or below 32 C

When stored in the original unopened container at or below 32 deg C, the product has a usable life of 6 months from the date of manufacture.

  • The product is moisture curing, so keep unused material protected from ambient exposure.
  • Standard packaging is a 225 kg open-head, straight-sided steel drum.
  • Clean and prepare previously ablated surfaces before recoating.

Technical Guidance

Substrate preparation and recoating considerations

The material supports several application methods, but adhesion and coating performance remain dependent on surface condition and substrate.

Typical unprimed substrates

Typical substrates include structural steel, concrete, cured silicone rubber, silicone resin laminates, stainless steel, titanium and aluminum.

Substrate limitations

The material may not adhere well to polyethylene, certain plastics or organic materials that bleed or exude plasticizers. Evaluate adhesion on the actual prepared surface.

Recoating ablative surfaces

Previously ablated silicone surfaces can be power-washed to remove residual char and oxidized silica before reapplication.

Final-State Properties

Cured physical and thermal properties

The physical properties below were measured after 7 days of cure at room temperature unless otherwise noted.

Property Typical Value Method / Condition
Tensile strength 1.2 MPa ASTM D412 / CTM 0137A
Elongation at break 138% ASTM D412 / CTM 0137A
Durometer hardness Shore A 55 ASTM D2240 / CTM 0099
Thermal conductivity 0.42 W/(m.K) Cured
Specific heat 1.09 J/g/ deg C 25 deg C
Oxy-acetylene torch char retention Fair 3,500 deg C test

Temperature exposure is stated from -55 deg C to 200 deg C for extended periods and up to 3,300 deg C for several seconds. Keep the brief-duration boundary at the extreme.

Applications

Aerospace ablative coating applications

The product is used for sacrificial thermal protection of launch infrastructure exposed to indirect rocket blast.

Strongback protection

Apply as an ablative coating or thermal barrier on prepared launch-structure strongbacks.

Gantry and flame-tunnel protection

Launch-structure applications include gantry and flame-tunnel surfaces exposed to indirect rocket blast.

Sacrificial recoating

The coating can be applied to bare substrates or to prepared surfaces that were previously coated with ablative silicone.

Review coating build and application equipment

Krayden can help review DOWSIL LPA-4000 surface preparation, spray-equipment pressure capability, application method, working time, cure depth and cured thermal-property requirements for an aerospace ablative coating process. Krayden can also help review the documented processing conditions and evaluation criteria before testing.

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