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439-211 Schedule 40 PVC Threaded Reducer Bushing, 1-1/2" x 1"

Brand: PVC
Save 25%
Original Price $5.30
Current Price $3.98
SKU 439211
In Stock (115)

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The 439-211 Schedule 40 PVC threaded reducer bushing adapts a 1-1/2 inch male pipe thread (MIPT) to a 1 inch female pipe thread (FIPT). Molded from rigid Schedule 40 PVC, this flush-style reducing bushing is built for irrigation and general plumbing use where reliable, corrosion-resistant connections are required.

  • Nominal size: 1-1/2" x 1" (reducing bushing)
  • Connection type: MIPT (1-1/2") to FIPT (1") — male-to-female threaded
  • Material & schedule: Schedule 40 PVC (white), molded PVC compound for long service life
  • Standards & suitability: NSF-listed for potable water applications; manufactured to common PVC standards (ASTM/NSF) and suitable for typical irrigation and cold-water systems
  • Temperature & limitations: Max service temperature approximately 140°F; not recommended for compressed air or gases

Use this reducer bushing to downsize threaded connections in sprinkler systems, PVC irrigation runs, or other Schedule 40 PVC assemblies. For threaded joints, use an appropriate PTFE thread tape or approved pipe thread sealant on the male threads and tighten until snug; avoid over-tightening. Choose individual or case quantities depending on project needs—this listing includes single and 25-count case variants by SKU.

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Frequently Asked Questions

What sizes and thread types does this bushing fit?
Adapts 1-1/2" male pipe thread (MIPT) to 1" female pipe thread (FIPT). Use with Schedule 40 PVC threaded fittings and compatible nipples.
How should I install and seal the threaded bushing?
Apply PTFE (thread) tape or approved pipe thread sealant to the male threads, hand-start then tighten with a wrench until snug. Do not over-tighten; avoid use on compressed air systems.
Is this bushing suitable for potable water and what is the temperature limit?
Yes—NSF-listed for potable water use. Service temperature rating is about 140°F; follow manufacturer guidance for system limits.