Insulated Pipe Support – Heavy Duty with Load Bearing Plate – A7000

Insulated Pipe Support - Heavy Duty with Load Bearing Plate - A7000 - Details

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General Dimensions & Specifications

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Hardware Sold Separately – Note: For higher load ratings, see A7200. The load ratings represent average values obtained in accordance with accepted methods and are subject to normal manufacturing variations. Dimensions and ratings are subject to change without notice.

To develop maximum load rating, width of support surface should be at least 1/2 of dimension “B” in Table I.

Compact
Easy Installation
Eliminates welding to pipe
Overlapping galvanized sheet metal jacket
Insulating structural inserts for load transfer
Minimizes heat loss and/or condensation
Load distribution plate integral with bottom jacket
Copper tubing sizes available
Other I.D.’s and/or O.D.’s available on request

Performance Test Results on File: Available upon request.

A7000: Applicable PSI spec. doc.: No. 205
Insulation: Calcium Silicate asbestos-free, treated with water repellant.
Jackets: Galvanized Steel ASTMA-527
Load Distribution Plate: Carbon Steel ASTM A-36
Coating: Primer coated or hot-dip galvanized
Glue: Industrial contact adhesive

Formal Submittal Sheets Available

Model A7000 is designed for use on:

  • Cold Water
  • Hot Water
  • Dual Temperature
  • Chilled Water
  • Vacuum
  • Steam
  • Gas
  • Air

Intended for Installation on:

  • Flat Surfaces
  • Pipe Rolls, see A8000
  • Clevis hangers, see A9000

Temperature Range:

  • Standard: +40°F to +1200°F CalSil Insulation
    Note: Up to 1800°F available upon request.
  • Cryogenic: -275°F to +275°F Urethane Insulation.
    Add U after the model number (i.e., A7000U)
Pipe SizeMaximum Load Rating (lb.)ABC
On Flat Surface (a)
2 1/2250631/4
3300631/4
3 1/2350631/4
4400631/4
5500631/4
6550631/4
8700631/4
10875963/8
121600963/8
141650963/8
161850961/2
182000961/2
202100961/2
242300963/4
302500963/4
362500963/4
422500963/4
TABLE I
Oper. Temp°FMult. Factor "F"
5000.9
7500.75
10000.5
12000.3
Table II
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