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BS EN 1778:2000

Current

Current

The latest, up-to-date edition.

Characteristic values for welded thermoplastics constructions. Determination of allowable stresses and moduli for design of thermoplastics equipment

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

15-03-2000

€303.84
Excluding VAT

Defines a methodology for determining characteristic values needed for designing welded constructions, eg vessels and tanks, ventilation ducting, containers and apparatus.

Committee
WEE/3
DevelopmentNote
Supersedes 95/120964 DC (08/2004)
DocumentType
Standard
Pages
56
PublisherName
British Standards Institution
Status
Current
Supersedes

Standards Relationship
SN EN 1778 : 1999 Identical
NF EN 1778 : 2000 Identical
EN 1778:1999 Identical
NS EN 1778 : 1ED 2000 Identical
NEN EN 1778 : 1999 Identical
UNE-EN 1778:2000 Identical
NBN EN 1778 : 2000 Identical
UNI EN 1778 : 2001 Identical
I.S. EN 1778:2000 Identical
DIN EN 1778:1999-12 Identical

ISO 1163-1:1995 Plastics Unplasticized poly(vinyl chloride) (PVC-U) moulding and extrusion materials Part 1: Designation system and basis for specifications
ISO 1873-1:1995 Plastics Polypropylene (PP) moulding and extrusion materials Part 1: Designation system and basis for specifications
ISO 899-2:2003 Plastics — Determination of creep behaviour — Part 2: Flexural creep by three-point loading
ISO 8584-1:1990 Thermoplastics pipes for industrial applications under pressure Determination of the chemical resistance factor and of the basic stress Part 1: Polyolefin pipes
ISO 1872-1:1993 Plastics Polyethylene (PE) moulding and extrusion materials Part 1: Designation system and basis for specifications
ISO/TR 8584-2:1993 Thermoplastics pipes for industrial applications under pressure Determination of the chemical resistance factor and of the basic stress Part 2: Pipes made of halogenated polymers
ISO 1043-1:2011 Plastics — Symbols and abbreviated terms — Part 1: Basic polymers and their special characteristics
ISO/TR 9080:1992 Thermoplastics pipes for the transport of fluids — Methods of extrapolation of hydrostatic stress rupture data to determine the long-term hydrostatic strength of thermoplastics pipe materials

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