It is standardized with a specified impact strength of 27 j at a few different temperatures but en10027 gives guidelines how to extend the designation.
S355 steel data sheet.
S355 grade steel is a medium tensile low carbon manganese steel which is readily weldable and possesses good impact resistance also in sub zero temperatures.
Commonly supplied in the as rolled condition it is used widely in the construction manufacturing and offshore industries.
With minimum yield of 50 000 ksi it meets requirements in chemistry and physical properties similar to astm a572 709.
All data sheet of din en 10025 2 is the same as bs en 10025 2 and other eu member states.
It also contains the use of s355 such as it is commonly used in bars sheet plates steel coils steel pipes forged and other materials application.
Structural steel grade 235 product standard grade plates sections and seamless tubulars en 10 025 s 235 jr g2 scope this mds specifies the selected options in the referred standard and modified requirements which shall supersede the corresponding requirements in the referred standard.
En 10025 s275 steel properties composition and equivalent materials can be found in the following datasheet.
Below are the tables to show the steel grade s355 datasheet including chemical composition yield strength tensile strength and elongation etc.
All data sheet of din en 10025 2 is the same as bs en 10025 2 and other eu member states.
1 type of material.
Material data sheet mds y01 rev.
S355 grade steel is a medium tensile low carbon manganese steel which is readily weldable and possesses good impact resistance also in sub zero temperatures.
General information s355 is a structural micro alloyed grade used for a great variety of applications.
S355 is a low carbon steel grade often used for application which require better mechanical properties than that of s275 grade.
This page is mainly introduced the s355 datasheet including chemical information mechanical properties physical properties mechanical properties heat treatment and micro structure etc.