Introduction to the Euronorm Standard Designation System

요약:

The creation of the EEC (European Economic Community) has made it necessary to establish common standards named "European Norms" (EN), therefore standardizing the common language across Europe. Since 1988 a new series of 'mandatory' European standards (EN) has been created, to replace national standards, such as BS, DIN, SS and NF, throughout 18 countries of Western Europe.

The main reason for Steel standardization is to ensure a common language between producers and customers of steel products. Since the beginning of the 20th century, countries have developed their own standards defining and classifying steel products. The creation of the EEC (European Economic Community) has made it necessary to establish common standards named "European Norms" (EN), therefore standardizing the common language across Europe. The official definition of a Standard is recorded as :

‘a document, established by consensus and approved by a recognized body, that provides, for common and repeated use, rules, guidelines or characteristics for activities of their results, aimed at the achievement of the optimum degree of order in given context’

Steel standards are used worldwide in many projects to determine steel type, strength, and properties. The European Committee for Standardization (CEN) is officially recognized as a European standards body by the European Union.

Since 1988 a new series of 'mandatory' European standards (EN) has been created, to replace national standards, such as BS, DIN, SS and NF, throughout 18 countries of Western Europe. Although it is accepted and effectively used in all European countries, “obsolete” national systems, such as the German DIN, British BS, French AFNOR and Italian UNI can steel often be found in many documents.

Another key fact is that European standards are commonly becoming international standards. Due to the close relationship between The CEN and the International Standards Organization (ISO), CEN standards are being fast-tracked as ISO standards and increasingly used worldwide. Included in the EN standards are the details concerning the delivery conditions, quality, dimensions and definitions of all products, raw materials, and processes of the iron and steel industry. Furthermore, the standards include product-specific test standards (as long as they are not excluded because of specific agreements with other standardization committees), and information for the determination of the chemical composition of iron and steel.

The EN standards cover a wide range of materials including hot and cold rolled carbon and alloy steels, plates, sheets and strips, spring steels, heat treatable steels, castings, stainless and heat resisting steels, electrical steels etc.

The EN is concerned with the standardization of the manufacture, chemical composition and mechanical characteristics of steel products. In the below tables you can find some examples of standards according to the different types of steels available.

German steel standards and specifications are represented by the letters EN or DIN and followed by an alphanumeric or a numeric code. Examples:

DIN 40NiCrMo66 or 1.6565 is a Ni-Cr-Mo steel that contains 0.35-0.45%C, 0.9-1.4%Cr, 0.5-0.7%Mn, 0.2-0.3%Mo, 1.4-1.7%Ni, 0.035%S;

DIN 17200 1.1149 or DIN 17200 Cm22 is a non-resulfurized carbon steel containing 0.17-0.245C, 0.3-0.6%Mn, 0.02-0.035% S and 0.4% max Si.

Below you can find further information about EN codes according to their chemical composition:



Figure 1: The Code designation according to chemical composition

Also within the EN code, is the specific information regarding the steel quality and is categorized as follows:

Example: EN 10 025 S355

  • The Norm number.
  • The Fe symbol.
  • The minimum guaranteed tensile strength expressed in N/mm2.

Some of the Classification of steels in accordance with their designated use are shown in table 1.

Table 1: The Classification of steels in accordance with their designated use

Designation Meaning Examples
S Steels for structural steel engineering S235JR; S355J0
P Steels for pressure vessel construction P265GH; P355M
L Steels for pipeline construction L360A; L360QB
E Engineering steels E295; E360
B Reinforcing steels B500A; B500B
Y Prestressing steels Y1770C; Y1230H
R Steel for rails R350GHT
H Cold rolled flat rolled steels with higher-strength drawing quality H400LA
D Flat products made of soft steels for cold reforming DC04; DD14



Figure 2: The EN Code designation system


Click on the below links to see lists of Euronorm standards covering the following material categories:

Structural and Constructional Steels: Part One

Structural and Constructional Steels: Part Two

Stainless Steels / Welding & Filler Materials

Electrical Steels / Coated Steels / Castings / Forgings

Introduction to Aluminium EN Materials

Aerospace Aluminium

Wrought, Castings, Ingots and Remelting

Copper Materials

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요약

Total Materia로, 금속 표준 규격 사양, 그것의 현 상태와 정의하는 자료에 대한 정보를 검색하는 것은 매우 간단합니다.

몇 초 이내에 Total Materia 규격 리스트에서 관련 세부 소재 특성 데이터 또는 등가 재질을 검색하는 것이 가능합니다.

시작하시려면, 메뉴 표시줄의 규격 리스트 버튼을 클릭합니다.


단순히 표준 개발 기구(SDO)를 선택하거나 표준 번호 또는 키워드를 입력하시기만 하면, 30,000 이상의 규격과 다국어 데이터베이스에서 즉각적으로 결과를 받을 수 있습니다.

예를 들어, 팝업에서 이 SDO를 선택하여 EN에 있는 모든 금속 규격을 검토할 수 있습니다.


결과 목록은 1000개의 재질, EN개의 금속 규격으로 구성되어 있습니다. 포함 정보: 규격 설명, 마지막 발행 해, 현재의 상태 (유효, 교체 등), 및 규격에 의해 정의된 재질들의 핫 링크로 구성되어 있습니다.


단순히 재질의 링크를 클릭하시면, 선택한 규격에 의해 정의된 금속 재질의 목록을 볼 수 있습니다.


재질의 목록에서, 각 재질의 자세한 특성과 등가물을 검토하실 수 있습니다.


Total Materia 데이터베이스를 사용해 보실 수 있는 기회가 있습니다. 저희는 Total Materia 무료 체험을 통해 150,000명 이상의 사용자가 이용하고 있는 커뮤니티로 귀하를 초대합니다.