Strenx® 1100 E/F

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General Product Description

Strenx® 1100 E/F is a structural steel with a high yield strength at a minimum of 159 ksi.

Typical applications include demanding load-bearing structures. Despite its strength, the material is surprisingly easy to weld and bend.

Strenx® 1100 E/F benefits include:

  • Superior bendability and surface quality
  • Weldability with excellent HAZ strength and toughness
  • Exceptional consistency within a plate guaranteed by close tolerances
  • High impact toughness which provides for good resistance to fractures

Dimension Range

 Strenx® 1100 E/F is available in plate thicknesses of 0.157" – 1.575". Strenx 1100 E/F is available in widths up to 125.98" and lengths up to 575.983" depending on thickness. More detailed information on dimensions is provided in the dimension program.

Mechanical Properties

Thickness
(inmm)
Thickness
(inmm)
0.157 - 0.1934.0 - 4.9
Yield strength Rp0.2
(min ksiMPa)
1601100
Tensile strength Rm
(ksiMPa)
181 - 2241250 - 1550
Elongation A5
(min %)
8
Thickness
(inmm)
Thickness
(inmm)
0.197 - 1.5755.0 - 40.0
Yield strength Rp0.2
(min ksiMPa)
1601100
Tensile strength Rm
(ksiMPa)
181 - 2241250 - 1550
Elongation A5
(min %)
10

For transverse test pieces.

Impact Properties

Grade
Grade
Strenx® 1100 E
Product
Strenx® 1100 E
Min impact energy, transverse test,
Charpy V 0.393x0.393" test specimen 1)
20 ft-lbs / -40 °F27 J / -40 °C
Grade
Grade
Strenx® 1100 F
Product
Strenx® 1100 F
Min impact energy, transverse test,
Charpy V 0.393x0.393" test specimen 1)
20 ft-lbs / -76 °F27 J / -60 °C

1) Unless otherwise agreed, transverse impact testing according to EN 10025-6 option 30 will apply. For thicknesses between 0.236" - 0.469", sub-size Charpy V-specimens are used. The specified minimum value is then proportrional to the cross-sectional area of the specimen compared to a full-size specimen (0.393x0.393").

Chemical Composition (heat analysis)

C *)
(max %)
C *)
(max %)
0.21
Si *)
(max %)
0.50
Mn*)
(max %)
1.40
P
(max %)
0.020
S
(max %)
0.005
Cr*)
(max %)
0.80
Cu*)
(max %)
0.30
Ni*)
(max %)
3.0
Mo*)
(max %)
0.70
B*)
(max %)
0.005

The steel is grain refined. *) Intentional alloying elements.

Carbon Equivalent CET(CEV)

Strenx® 1100 E

Thickness (inmm)
Max CET(CEV)
0.157 - 0.1934.0 - 4.9
0.37 (0.57)
0.197 - 0.3155.0 - 8.0
0.38 (0.58)
0.319 - 0.5918.1 - 15.0
0.39 (0.62)
0.594 - 1.57515.1 - 40.0
0.42 (0.73)

Strenx® 1100 F

Thickness (inmm)
Max CET(CEV)
0.157 - 0.1934.0 - 4.9
0.197 - 0.3155.0 - 8.0
0.40 (0.70)
0.319 - 0.5918.1 - 15.0
0.40 (0.70)
0.594 - 1.57515.1 - 40.0
0.42 (0.73)

Tolerances

More details are given in SSAB’s brochure Strenx® Guarantees.

Thickness

Tolerances according to Strenx® Thickness Guarantees.

Strenx® Guarantees meet the requirements of EN 10029 Class A, but offers narrower tolerances.

Length and Width

According to SSAB’s dimension program. Tolerances conforms with EN 10 029. 

Shape

Tolerances according to EN 10029.

Flatness

Tolerances according to Strenx® Flatness Guarantee Class D, which are more narrow than EN 10029 Class N.

Surface Properties

According to EN 10163-2 Class A, Subclass 3.

Delivery Conditions

The delivery condition is Quenched and Tempered. The plates are delivered with sheared or thermally cut edges. Untrimmed edges after agreement.

Delivery requirements can be found in SSAB’s brochure Strenx® Guarantees or on www.ssab.com.

Fabrication and Other Recommendations

Welding, bending and machining

Recommendations are found in SSAB’s brochures at www.ssab.com or consult Tech Support.

Strenx® 1100 E/F has bending guarantees according to Strenx® Bending Guarantees Class C.

Strenx® 1100 E/F has obtained its mechanical properties by quenching, and at our discretion, subsequent tempering. The properties of the delivery condition cannot be retained after exposure to temperatures in excess of 392ºF.

Appropriate health and safety precautions must be taken when welding, cutting, grinding or otherwise working on this product. Grinding, especially of primer coated plates, may produce dust with a high particle concentration.

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