How Structural Mild steel Angle Iron UnEqual Angle Can Strengthen Your Construction Projects

When it comes to construction projects, structural mild steel angle iron and unequal angle can be a great way to strengthen your project. Not only are they incredibly strong and durable, but they also provide a great aesthetic look to any project.
One of the most common uses for structural mild steel angle iron and unequal angle is in the construction of frames. Whether you’re building a house, a bridge, or a large commercial building, these materials can provide the strength and stability you need. They’re also incredibly versatile, so you can use them in a variety of ways to create the perfect frame for your project. Another great use for structural mild steel angle iron and unequal angle is in the construction of walls. These materials are incredibly strong and can provide the support needed to keep your walls standing strong. They’re also great for creating a unique look to your walls, as they can be cut into different shapes and sizes to create a unique design. Oil tube chinese best manufacturer,oil tube Chinese high-quality wholesaler,casing Pipe china best company,Finally, structural mild steel angle iron and unequal angle can be used to create a variety of other structures. From gazebos to trellises, these materials can provide the strength and stability needed to create a beautiful and functional structure. No matter what type of construction project you’re working on, structural mild steel angle iron and unequal angle can be a great way to strengthen your project. Not only are they incredibly strong and durable, but they also provide a great aesthetic look to any project. So if you’re looking for a way to strengthen your construction project, consider using structural mild steel angle iron and unequal angle.

The Benefits of Using Structural Mild Steel Angle Iron UnEqual Angle in Your Construction Projects

Tensile and Hardness Requirements
grade  Yield Strength MPaTensile StrengthHardness a,cSpecified Wall ThicknessAllowable Hardness Variation b
 TypeTotal Elongation Under Load min MPamax  
   minmax HRCHBWmmHRC
12345678910
H400.5276552414
J550.5379552517
K550.5379552655
N8010.5552758689
N80Q0.5552758689
R950.5655758724
L80 L8010.555265565523241
L809Cr 13Cr0.555265565523241
  0.555265565523241
C9010.562172468925.4255£12.703
        12.71 to 19.044
        19.05 to 25.395
        ³ 25.406
T9510.565575872425.4255£12.703
        12.71 to 19.044
        19.05 to 25.395
        ³ 25.406
C1100.775882879330286£12.703
        12.71 to 19.044
        19.05 to 25.395
        ³ 25.406
P1100.6758965862
Q12510.658621034931b£12.703
        12.71 to 19.04 19.054
         5
a In case of dispute, laboratory Rockwell C hardness testing shall be used as the referee method.
b No hardness limits are specified, but the maximum variation is restricted as a manufacturing control in accordance with 7.8 and 7.9.
c For through-wall hardness tests of Grades L80 (all types), C90, T95 and C110, the requirements stated in HRC scale are for maximum mean hardness number.

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