ISO 28017:2026

International Standard   Current Edition · Approved on 26 February 2026

Rubber hoses and hose assemblies, wire or textile reinforced, for dredging applications — Specification

ISO 28017:2026 Files

English 18 Pages
Current Edition
BHD 47.23

ISO 28017:2026 Scope

This document specifies requirements for two types, seven classes and three grades of wire- or textile-reinforced dredging hoses with nominal sizes ranging from 100 to 1 300. Such hoses are suitable for the delivery or suction of seawater or freshwater mixed with silt, sand, coral and small stones with a specific gravity in the range from 1,0 to 2,3 at ambient temperature ranging from -10 °C to +40 °C or for low-temperature hoses (designated -LT) ranging from -20 °C to +40 °C.

This document covers two types of hose, as follows:

  • type 1: floating type, for delivery only, which includes flotation material to give the hose buoyancy;
  • type 2: submarine type for delivery and suction.

Best Sellers

GSO 150-2:2013
 
Gulf Standard
Expiration dates for food products - Part 2 : Voluntary expiration dates
BH GSO 150-2:2015
GSO 150-2:2013 
Bahraini Standard
Expiration dates for food products - Part 2 : Voluntary expiration dates
GSO 9:2022
 
Gulf Technical Regulation
Labeling of prepackaged food stuffs
BH GSO 9:2023
GSO 9:2022 
Bahraini Technical Regulation
Labeling of prepackaged food stuffs

Recently Published

ISO/TS 4966:2026
 
International Standard
Nanotechnologies — Silica nanomaterials — Specification of characteristics and measurement methods for nanoporous silica microparticles applied in liquid chromatography
ISO/TS 44005:2026
 
International Standard
Collaborative business relationship management system — Guidance on leadership for collaborative working
ISO 10325:2026
 
International Standard
Fibre ropes — High modulus polyethylene — 8-strand braided ropes, 12-strand braided ropes and covered ropes
ISO/IEC TS 42112:2026
 
International Standard
Information technology — Artificial intelligence — Guidance on machine learning model training efficiency optimization