ISO 18496:2020
Brazing — Fluxes for brazing — Classification and technical delivery conditions
Brazing — Fluxes for brazing — Classification and technical delivery conditions
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 9
- Дата публикации:
- 3 сентября 2020 г.
- Издание:
- ISO IS 18496 edition 1 version 1
- ICS:
- 25.160.50
This document specifies the classification of fluxes used for brazing metals and characterizes these fluxes on the basis of their properties and use, and gives technical delivery conditions and health and safety precautions. This document covers two classes of flux, FH and FL. Class FH is used for the brazing of heavy metals (steels, stainless steels, copper and its alloys, nickel and its alloys, precious metals, molybdenum and tungsten). Class FL is used for the brazing of aluminium and its alloys.
Abstract
Overview
ISO 18496:2020 - Brazing - Fluxes for brazing - Classification and technical delivery conditions defines a clear classification system and delivery requirements for brazing fluxes. The standard covers two main classes:
- Class FH: fluxes for brazing heavy metals (steels, stainless steels, copper and its alloys, nickel and its alloys, precious metals, molybdenum, tungsten).
- Class FL: fluxes for brazing aluminium and its alloys.
The document characterizes fluxes by effective temperature range, chemical basis, typical residues and removal method, and specifies technical delivery conditions, packaging/marking and health & safety precautions.
Key topics and requirements
- Flux classification and codes: Types FH10–FH40 and FL10–FL30, with descriptive codes (e.g., FH20) indicating intended use and properties.
- Effective temperature range: Mandatory determination for each product. Annex A provides an example test method for FH fluxes; manufacturers define methods for FL fluxes.
- Chemical basis and residues:
- FH fluxes often contain boron compounds, fluorides, chlorides, borates, phosphates or silicates. Residues can be corrosive (require washing/pickling) or non‑corrosive (may be removed mechanically).
- FL fluxes use hygroscopic chlorides/fluorides or non‑hygroscopic fluorides (some include caesium fluoroaluminates); residue behavior and alloy compatibility (e.g., up to 0.5 wt-% Mg for FL30) are specified.
- Forms of delivery: powder, paste, liquid (additional forms referenced in Annex B).
- Designation and marking: Standardized designation (e.g., “Flux ISO 18496 - FH20 B”), mandatory labeling items (supplier, trade name, batch number, net weight/volume, hazard warnings).
- Health & safety: Users must consult manufacturer Safety Data Sheets (SDS); national regulations may apply for transport, storage and disposal.
Applications and who uses it
ISO 18496:2020 is used by:
- Flux manufacturers for product classification, test documentation and correct labeling.
- Brazing engineers and metallurgists to select the right flux type for parent materials and brazing temperature ranges.
- Procurement and quality managers to specify fluxes in purchase orders and acceptance criteria.
- Fabrication shops and maintenance teams for safe handling, residue removal and compliance with technical delivery conditions.
Typical applications include brazing of steels, stainless steels, copper alloys, nickel alloys and aluminium components in automotive, aerospace, heat‑exchanger, and precision metalwork industries.
Related standards
- ISO 17672 (brazing filler metals) - referenced for related material codes and practices.
- ISO/TC 44 (Welding and allied processes) provides the technical committee context for brazing standards.
Keywords: ISO 18496:2020, brazing fluxes, flux classification, FH flux, FL flux, effective temperature range, flux residues, technical delivery conditions, brazing aluminium, brazing heavy metals.
Технические детали
- Технический комитет
- ISO/TC 44/SC 13 - Brazing materials and processes
- SKU
- ISO 18496:2020
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
BS EN ISO 18496:2021
ДействующийBrazing. Fluxes for brazing. Classification and technical delivery conditions.
BS EN ISO 17672:2024
ДействующийBrazing. Filler metals.
ISO 8212:1986
ОтменёнSoaps and detergents — Techniques of sampling during manufacture
Overview Standard Reference: ISO 8212:1986 Title: Soaps and detergents - Techniques of sampling during manufacture ISO 8212:1986 defines standardized techniques for taking representative samples of s…
ISO 20662:2020
ДействующийShips and marine technology — Hopper dredger supervisory and control systems
Overview ISO 20662:2020 - Ships and marine technology: Hopper dredger supervisory and control systems (HD‑SCS) - specifies the components, structure, general requirements, and functional requirements…
ISO 3021:2023
ДействующийAdventure tourism — Hiking and trekking activities — Requirements and recommendations
Overview ISO 3021:2023 - Adventure tourism: Hiking and trekking activities - Requirements and recommendations defines safety-focused requirements and recommendations for hiking and trekking offered a…
ISO 3826-2:2008
ДействующийPlastics collapsible containers for human blood and blood components — Part 2: Graphical symbols for use on l…
Overview ISO 3826-2:2008 - "Plastics collapsible containers for human blood and blood components - Part 2: Graphical symbols for use on labels and instruction leaflets" defines a system of internatio…
ISO/IEC 24730-1:2014
ДействующийInformation technology — Real-time locating systems (RTLS) — Part 1: Application programming interface (API)
Overview ISO/IEC 24730-1:2014 specifies the Application Programming Interface (API) for Real‑Time Locating Systems (RTLS). The standard defines a minimal, interoperable boundary that lets application…
ISO 8668-5:1992
ДействующийAircraft — Terminal junction systems — Part 5: Detail specification for type 3 system
Overview - ISO 8668-5:1992 (Aircraft terminal junction systems, Type 3) ISO 8668-5:1992 defines the detail specification for Type 3 Terminal Junction Systems (TJS) used in aircraft electrical install…