Nec Code Quandaries 0120 Pr

Stumped by the Code?

Jan. 16, 2020
Question: What uses are not permitted for PVC conduit by the National Electrical Code (NEC)?
All questions and answers are based on the 2017 NEC.

Q. What uses are not permitted for PVC conduit by the NEC?

A. PVC conduit is not permitted to be used in the following locations:

Hazardous locations — PVC conduit isn’t permitted to be used in:

• Hazardous locations except as permitted by Sec. 501.10(A)(1)(a), Exception; Sec. 503.10(A); Sec. 504.20; Sec. 514.8, Exception No. 2; and Sec. 515.8.

• Class I, Division 2 locations, except as permitted in Sec. 501.10(B)(7) [Sec. 352.12(A)]

Support of luminaires — PVC conduit isn’t permitted to be used for the support of luminaires or other equipment not described in Sec. 352.10(H) [Sec. 352.12(B)]. PVC conduit can support conduit bodies in accordance with Sec. 314.23(E), Exception.

Physical damage — PVC conduit isn’t permitted to be installed if subject to physical damage, unless identified for the application (Figure).

Schedule 40 PVC conduit is not identified for use where subject to physical damage. PVC Schedule 80 conduit is identified for use in areas subject to physical damage [Sec. 352.10(F) Informational Note].

Ambient temperature — PVC conduit isn’t permitted to be installed if the ambient temperature exceeds 50°C (122°F) [Sec. 352.12(D)].

Q. What uses are permitted for polyvinyl chloride (PVC) conduit by the NEC? 

A. Some common uses for Type PVC conduit include:

Concealed — PVC conduit can be concealed within walls, floors, or ceilings, directly buried or embedded in concrete in buildings of any height [Sec. 352.10(A)].

Corrosive influences — PVC conduit is permitted in areas subject to severe corrosion for which the material is specifically approved by the authority having jurisdiction (AHJ) [Sec. 352.10(B)]. If exposed to chemical solvents, vapors, splashing, or immersion, materials or coatings must either be inherently resistant to chemicals based upon their listing or be identified for the specific chemical reagent [Sec. 300.6(C)(2)].

Wet locations — PVC conduit is permitted in wet locations such as dairies, laundries, canneries, car washes, and other areas frequently washed or in outdoor locations. Support fittings, such as straps, screws, and bolts, must be made of corrosion-resistant materials or be protected with a corrosion-resistant coating, in accordance with Sec. 300.6(A) [Sec. 352.10(D)].

Dry and damp locations — PVC conduit is permitted in dry and damp locations, except where limited in Sec. 352.12 [Sec. 352.10(E)].

Exposed — PVC conduit is permitted to be used for exposed work. PVC conduit used in an area subject to physical damage must be identified for the application [Sec. 352.10(F)]. Schedule 40 PVC conduit is permitted for exposed locations where not subject to physical damage. Schedule 80 PVC conduit is identified for use in areas subject to physical damage.

Underground — PVC conduit installed underground must comply with the burial requirements of Sec. 300.5 [Sec. 352.10(G)].

Support of conduit bodies — PVC conduit can support nonmetallic conduit bodies that aren’t larger than the largest trade size of an entering raceway. These conduit bodies can’t support luminaires or other equipment, and are not permitted to contain devices other than splicing devices permitted by Sec. 110.14(B) and Sec. 314.16(C)(2) [Sec. 352.10(H)].

Informational Note: In extreme cold, PVC conduit can become brittle and is more susceptible to physical damage.

These materials are provided to us by Mike Holt Enterprises in Leesburg, Fla. To view Code training materials offered by this company, visit www.mikeholt.com/code

About the Author

Mike Holt

Mike Holt is the owner of Mike Holt Enterprises (www.MikeHolt.com), one of the largest electrical publishers in the United States. He earned a master's degree in the Business Administration Program (MBA) from the University of Miami. He earned his reputation as a National Electrical Code (NEC) expert by working his way up through the electrical trade. Formally a construction editor for two different trade publications, Mike started his career as an apprentice electrician and eventually became a master electrician, an electrical inspector, a contractor, and an educator. Mike has taught more than 1,000 classes on 30 different electrical-related subjects — ranging from alarm installations to exam preparation and voltage drop calculations. He continues to produce seminars, videos, books, and online training for the trade as well as contribute monthly Code content to EC&M magazine.

Voice your opinion!

To join the conversation, and become an exclusive member of EC&M, create an account today!

Sponsored Recommendations

Chapter 9 of the NEC — Part 5

Calculating voltage drop with help from Table 8.

How to Calculate Labor Costs

Most important to accurately estimating labor costs is knowing the approximate hours required for project completion. Learn how to calculate electrical labor cost.

8 Types of Electrical Conduit and Their Uses

Electrical conduit is a tube or raceway used to house and protect electrical wires within a building or structure. From data centers to underground subways to ports and bridges...

Champion Strut Catalog

Champion Fiberglass is the most advanced manufacturing facility of fiberglass conduit, fiberglass bridge drain and fiberglass strut systems in the world. Its well-trained and ...