S-6810K554 0.742" ID x 1 3/64" OD ASTM D1784, NSF/ANSI 61 CPVC Pipe for Hot Water

CPVC Pipe for Hot Water

1511FA00086 CPVC Pipe for Hot Water
1511FA00086 CPVC Pipe for Hot Water

Image may differ from product. See technical specification for details.

Part No.
Part No. 1511FA00086
Equivalent to mcmaster :
6810K554

Basic Information

For Use With Acetic Acid (10%), Calcium Chloride, Deionized Water, Drinking Water, Hydrochloric Acid (25%), Nitric Acid (10%), Phosphoric Acid (85%), Salt Water, Sodium Hydroxide (50%), Sulfuric Acid (75%), Water
Shape Straight
Type Adapter, Pipe
Schedule 80
Material CPVC Plastic
Specifications Met ASTM D1784, NSF/ANSI 61
RoHS RoHS 3 (2015/863/EU) Compliant

Connection Parameters

Threading Threaded on One End
Connection Type Pipe
Connection Style Threaded Male × Socket Connect Male
Thread Type NPT

Dimension Parameters

Pipe Size 3/4
OD 1 3/64"
ID 0.742"
Wall Thickness 0.154"
Lg. 12"

Pressure & Temperature Parameters

Maximum Temperature 200°F
Maximum Pressure 340 psi @ 72° F
Maximum Vacuum 29 in. of Hg @ 72° F
Vacuum Rating Standard
Minimum Temperature Not Rated
Environment Food Industry

Material & Accessories Parameters

For Fitting Material CPVC Plastic
For Flange Material CPVC Plastic
For Flange Class 150
For Fitting Schedule 80
Color Light Gray

Installation Parameters

Socket Connect Type Cement

Adhesive Parameters

Flexibility Rigid
Comparable To Corzan
Technical Drawings No drawings available at the moment, will be launched soon
In Stock
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Key Features & Benefits at a Glance

  • Exceptional chemical resistance ensures reliable performance with aggressive substances like sulfuric acid, hydrochloric acid, and sodium hydroxide, minimizing corrosion risks in demanding environments.
  • High-pressure and temperature tolerance supports operation up to 340 psi and 200°F, providing durability in hot water and chemical processing systems.
  • Food-grade compliance with NSF/ANSI 61 certification guarantees safety for drinking water and food industry applications, preventing contamination.
  • Robust CPVC material construction offers rigidity and long-term stability, reducing maintenance needs and downtime in industrial settings.
  • Easy installation with threaded male and socket connect ends allows for secure, leak-free connections using standard CPVC cement, saving time during assembly.
  • Vacuum-rated design handles up to 29 in. of Hg, ensuring reliability in systems requiring pressure control without performance loss.
  • RoHS 3 compliance meets environmental regulations, supporting sustainable and safe usage in global industrial operations.

Professional Applications & Engineering Value

This CPVC Schedule 80 pipe adapter is engineered to address critical challenges in the food industry and chemical handling sectors, where exposure to corrosive agents like acetic acid, sulfuric acid, and hydrochloric acid can degrade lesser materials. Made from rigid CPVC plastic, it combines high chemical resistance with structural integrity, preventing leaks and failures in drinking water systems and aggressive fluid transport. The threaded male × socket connect design, compatible with NPT threads and cement joining, ensures quick, reliable installations that withstand high-pressure and temperature fluctuations up to 200°F. By adhering to ASTM D1784 and NSF/ANSI 61 standards, it delivers consistent performance in applications from acid processing to potable water lines, reducing downtime and enhancing operational safety.

Specification Summary & Compliance

This adapter features precise NPT threading on one end with standard Class 2A tolerances for secure fittings, and it is manufactured to Schedule 80 dimensions (3/4" size, 0.742" ID, 1 3/64" OD) to ensure compatibility with industrial piping systems. It complies with ASTM D1784 for material properties and NSF/ANSI 61 for drinking water safety, alongside full RoHS 3 (2015/863/EU) adherence for environmental responsibility. The product is rated for maximum pressure of 340 psi at 72°F and vacuum up to 29 in. Hg, confirming its reliability in varied operational conditions.

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