Galvanized steel nipple 1/2" length 0.25m double-ended threaded 70.250.04V
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Galvanized steel nipple 1/2" length 0.25m double-ended threaded 70.250.04V
Double-ended threaded steel pipe nipple for hydraulic connections
A double-ended threaded steel pipe nipple with a length of 250 mm is suitable for water and sewage, heating, and gas installations. Made of galvanically zinc-plated steel, it ensures long-lasting resistance to corrosion and atmospheric factors.
Material and technical construction
The pipe nipple is made of steel with an outer diameter of 21,3 mm and a wall thickness of 2,3 mm, which guarantees adequate mechanical strength while maintaining optimal installation flexibility. The surface has been protected by an electro-galvanized process, which creates a protective layer that effectively protects against rust even in humid environments.
The element features threaded ends allowing for easy connection with other installation components according to international standards.
Application and compatibility
The pipe nipple finds wide application as an extension or connection transfer element in systems:
- Water and sewage installations,
- Central heating systems,
- Low-pressure gas installations,
- Compressed air networks,
- Industrial systems transporting chemically neutral media.
Thanks to the universal 1/2" thread dimensions, it is suitable for most standard domestic and industrial installations.
Technical parameters and quality standards
The product meets the requirements of the DIN EN 10241 standard, confirming its dimensional compliance of the threads. The base material is a steel pipe compliant with DIN EN 10255, ensuring the appropriate metallurgical structure for threading.
Threading was performed according to the ISO 7/1 standard, guaranteeing full international compatibility and the possibility of trouble-free tightening with standard tools.
The weight of one linear meter of the pipe nipple is approximately 1 kg, making it practical for transport while maintaining the structural solidity necessary for working under the operating pressure typical for sanitary and heating installations.
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