Description

Knauf Redi-Klad 1000° Pipe Insulation with ECOSE® Technology is a multi-purpose, pre-molded, heavydensity, one-piece insulation bonded with ECOSE Technology. Knauf Redi-Klad comes with factory applied 5-ply weather and abuse resistant jacketing with self-sealing lap. Redi-Klad is designed for indoor or outdoor installation on mechanical piping systems with operating temperatures ranging from 0°F to 1000°F (-18°C to 538°C). Properly installed, Redi-Klad provides a zero permeability rating. Redi-Klad is produced in convenient 3' lengths. The installed product offers a finished appearance comparable to embossed aluminum. A matching 4" butt strip is furnished for each 3' section.

ECOSE Technology

ECOSE Technology is a revolutionary new binder based on rapidly renewable bio-based materials rather than non-renewable petroleum-based chemicals such as phenol, formaldehyde or acrylics. ECOSE Technology reduces Knauf binder embodied energy and contains no phenol, formaldehyde, acrylics or artificial colors found in traditional fiber glass insulation.

Application

Knauf Redi-Klad 1000°F Pipe Insulation with ECOSE Technology is designed for indoor and outdoor installation on industrial and commercial mechanical systems piping. Typical applications include, but are not limited to steam, condensate, process, chilled, and domestic water piping for new or retrofit power generation, petro-chemical, pulp and paper, institutional, and educational construction projects.

Features & Benefits

Energy Conservation

Low-Cost Installation

Zero Permeability

Easy Size Identification

Specification Compliance

Fiber Glass Pipe Insulation

In U.S.:

Venture Clad Jacket and Tape

In U.S.:

Technical Data—Fiber Glass Pipe Insulation

Surface Burning Characteristics

Temperature Range

Corrosiveness (ASTM C 665)

Corrosion (ASTM C 1617)

Alkalinity (ASTM C 871)

Microbial Growth (ASTM C 1338)

Water Vapor Sorption (ASTM C 1104)

Linear Shrinkage (ASTM C 356)

Technical Data—Venture Clad Jacket and Tape

Surface Burning Characteristics

Surface Temperature Range

Water Vapor Permeability (ASTM E 96-05)

Puncture Resistance (ASTM D 1000)

Tear Strength (ASTM D 624)

Thickness

Tensile (PSTC-31)

Redi-Klad Product Forms and Sizes

Produced in 3' (914 mm) sections:

Packaging

Precautions

Hot Pipe

Cold Pipe

Redi-Klad

Fittings and Hangers

Additional Precautions

Application Guidelines

Storage

Preparation

General Guidelines

Recommended Thicknesses ASHRAE 90.1-1989

The minimum thicknesses are based on ASHRAE 90.1-1989 standards and do not necessarily represent the Economic Thickness of Insulation or the thickness required for proper condensation control. Rather, they serve as minimum recommendations for commercial applications. For recommended Economic Thickness, install according to Knauf or NAIMA 3E Plus programs or as specified.

Fiber Glass and Mold

Fiber glass insulation will not sustain mold growth. However, mold can grow on almost any material when it becomes wet and contaminated. Carefully inspect any insulation that has been exposed to water. If it shows any sign of mold it must be discarded. If the material is wet but shows no evidence of mold, it should be dried rapidly and thoroughly. If it shows signs of facing degradation from wetting, it should be replaced.

Notes

The chemical and physical properties of Knauf Redi-Klad 1000° Pipe Insulation™with ECOSE Technology represent typical average values determined in accordance with accepted test methods. The data is subject to normal manufacturing variations. The data is supplied as a technical service and is subject to change without notice. References to numerical flame spread ratings are not intended to reflect hazards presented by these or any other materials under actual fire conditions. Check with your Knauf sales representative to assure information is current.

 

THERMAL EFFICIENCY (ASTM C 335)

Mean

Temperature

Mean

Temperature (SI)

k k (SI)
75°F 24°C 0.23 0.033
100°F 38°C 0.24 0.035
200°F 93°C 0.28 0.040
300°F 149°C 0.34 0.049
400°F 204°C 0.42 0.061
500°F 260°C 0.51 0.074
600°F 316°C 0.62 0.089