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Product code: 14723

Polyethylene clamping tee PN 6 bar, d. 75 x 2" x 75 (female)

1
301 mdl
269 mdl
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Installment is possible for physical and legal entities
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Free delivery throughout Republic of Moldova
Payment by card is possible:
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Installment plan for 0% for individuals and legal entities
Product Description

The bore compression tee is a key element of piping infrastructure, known for its effectiveness in controlling and directing fluid flows.

Main characteristics:

Type: Compression tee with passage.
Inlet diameter: 75 mm.
Outlet diameter: 2 inches.
Pressure: 6 bar.
Internal thread.
Material: Polyline.

Important aspects:

Hydraulic Efficiency: The bore compression tee is designed to provide smooth and continuous fluid flow, helping to optimize overall system performance.

Durability: Made from polythene, this tee resists corrosion and wear, providing long life and reliable performance in a variety of environmental conditions.

Flexibility: The tee design and material allows for easy adaptation to a variety of pipe configurations, simplifying installation and maintenance.

Versatility: Thanks to its bore compression capability, this tee is suitable for a wide range of applications including water systems, agricultural irrigation, sewer systems and more.

Compatibility: The internal threads of the tee provide reliable and leak-free connections to other system components, allowing for easy and reliable integration.

Pressure Performance: Capable of operating at pressures up to 6 bar, this tee is suitable for moderate to high pressure applications, providing stable and safe performance.

Easy Maintenance: Thanks to its durable materials and simple design, the tee requires minimal maintenance effort, reducing costs and time associated with maintenance.

The Through Compression Tee is the ideal solution for a variety of piping system needs, providing the optimal combination of performance, durability and versatility. Regardless of the specific application, this tee is an excellent choice for ensuring smooth and efficient flow in hydraulic infrastructure.