S-6810K623 0.546" ID x 27/32" OD ASTM D1784, NSF/ANSI 61 CPVC Pipe for Hot Water

CPVC Pipe for Hot Water

1511FA00115 CPVC Pipe for Hot Water
1511FA00115 CPVC Pipe for Hot Water

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

Part No.
Part No. 1511FA00115
Equivalent to mcmaster :
6810K623

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 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 Both Ends
Connection Type Pipe
Connection Style Threaded
Thread Type NPT
Gender Male

Dimension Parameters

Pipe Size 1/2
OD 27/32"
ID 0.546"
Wall Thickness 0.147"
Lg. 3 ft.

Pressure & Temperature Parameters

Maximum Temperature 200°F
Maximum Pressure 420 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

Adhesive Parameters

Flexibility Rigid
Comparable To Corzan
Technical Drawings No drawings available at the moment, will be launched soon
In Stock
Price available upon request. Our sales team will respond within 24 hours with a competitive quote tailored to your requirements.
REQUEST A QUOTE
  • Fast delivery
  • Enjoy discounts on bulk purchases
  • Secure Payment
  • Fast Global Shipping

Key Features & Benefits at a Glance

  • Superior chemical resistance for handling aggressive media including sulfuric acid, hydrochloric acid, and sodium hydroxide without degradation
  • High-pressure capability withstanding up to 420 psi at 72°F for reliable performance in demanding industrial applications
  • Food-grade compliance with NSF/ANSI 61 certification ensuring safety for drinking water and food processing applications
  • Dual male NPT threading on both ends for secure, leak-resistant connections in threaded piping systems
  • Rigid CPVC construction maintains structural integrity under thermal stress with a maximum temperature rating of 200°F
  • Full vacuum compatibility handling up to 29 inches of mercury for versatile application in various pressure conditions
  • Industry-standard compliance meeting ASTM D1784 material specifications and RoHS 3 environmental directives

Professional Applications & Engineering Value

This Schedule 80 CPVC pipe delivers exceptional value in chemical processing and food industry applications where corrosion resistance is critical. The rigid CPVC material provides outstanding durability against a wide range of aggressive chemicals including sulfuric acid (75%), hydrochloric acid (25%), and sodium hydroxide (50%), eliminating concerns about pipe degradation and system contamination. With male NPT threads on both ends, installation becomes straightforward while maintaining leak-free performance in high-pressure environments up to 420 psi. The NSF/ANSI 61 certification ensures compliance with drinking water standards, making it ideal for food processing facilities where both chemical resistance and potable water safety are mandatory requirements. The 3-foot length provides flexibility in system layout while maintaining the structural integrity needed for industrial piping networks.

Specification Summary & Compliance

This 1/2" Schedule 80 CPVC pipe features precise NPT threading on both ends with dimensions of 0.546" ID and 27/32" OD, manufactured to ASTM D1784 material standards. The product is certified to NSF/ANSI 61 for drinking water applications and complies with RoHS 3 (2015/863/EU) environmental directives. Designed for Class 150 flange systems, it maintains dimensional accuracy throughout its 3-foot length with a wall thickness of 0.147" to ensure reliable performance in both pressure and vacuum service conditions.

🔍
Cancel