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EQUAL ANGLE BAR

EQUAL ANGLE BAR

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Mild Steel Equal Angle Bar: Versatile Structural Solution

Introduction

The Mild Steel Equal Angle Bar is a fundamental component in construction and fabrication. Its L-cross shaped section, with equal-length legs forming a 90-degree angle, makes it indispensable for various applications. Let’s delve into its features, benefits, and potential uses.

Features & Benefits

  1. Sturdy Construction: Crafted from hot-rolled mild steel, this angle bar ensures durability and resilience.
  2. Uniform Dimensions: Equal legs guarantee consistent measurements, simplifying assembly and alignment.
  3. Inside Radius Corners: Smooth edges enhance safety during handling and installation.
  4. Cost-Effective: An economical choice for structural projects without compromising quality.

Applications

The Mild Steel Equal Angle Bar finds widespread use in:
  • Industrial Maintenance: Supporting machinery, frames, and structures.
  • Agricultural Implements: Reinforcing farm equipment and structures.
  • Transportation Equipment: Strengthening trailers, chassis, and railings.
  • General Fabrication: Welding, bracing, and constructing load-bearing frameworks.
Dasignaaon aixs         Thickness
Mass Per Metre
Radius Root          Toe
Area Of SacBon
Distance centre
Of Gravity
Second Moment of Area
Radius Of Gyratlon
EIaat1c Modulus
AxA
t
r,
z,
C
B¥sd Cy
x-x, y
M•IZ
Ys’
x-x, y-y
u•u
y-V
X-x, y-y
mm
mm
kg/m
mm
mm
crrP
cm
ern*
cm‘
cm’
cm.
cm
im
ern
20×20
3
0.885
3.5
2.4
1.11
0.593
0.381
0.601
0.160
0.585
0.735
0.380
0.271
25×25
3
1.12
5.5
2.4
1.41
0.718
0.784
1.24
0.328
0.745
0.938
0.481
0.440
4
1.45
3.5
2.4
1.84
0.758
1,00
1.58
0.422
0.737
0.026
0.479
0.574
5
1.71
3.5
2.4
2.25
0.796
1.19
1.87
0.516
0.728
0.912
0.478
0.701
30X30
3
1.36
5
2.4
1.74
ß.838
1.41
2.23
0.590
0.901
1.13
0.582
0.652
<
1.7g
s
2.4
2.27
0.879
1.81
2.88
0.758
0.883
1.12
0.57B
0.853
5
2.16
5
2.4
2.78
0.618
2.17
3.42
0.021
0.884
1.11
0.578
1.04
35xss
g
1.e5
5
2.4
3.87
1.08
4.13
8.51
1.78
1.03
1.50
0.674
1.71
38×58
3
1.72
8
2.4
2.Z4
1.03
2.86
4.72
1.25
1.15
1.45
0.746
1.08
4
2.36
6
2.4
2.03
1.07
3.as
g.10
1.61
1.15
1.44
0.741
1.41
5
2.79
8
2.4
3.80
1.12
4.86
7.38
1.05
1.14
1.43
0.736
1.73
6
3.M
6
2.5
4.25
1.15
5.4D
8.51
2.29
1.13
1.41
D.733
2.04
40×40
3
1.83
6
2.4
2.30
1.08
3.51
5.55
1.47
1.22
1.S3
0.789
II
4
2.42
6
2.4
3.09
1.12
4.53
7.18
1.89
1.21
1.52
0.782
1.58
5
2.95
6
2.4
3.80
1.17
5W
8.68
2J9
1.20
1.51
0.778
1.94
6
3.52
6
2.4
4.48
1.20
6.37
10.1
2.69
1.19
1.50
0.773
218
45X45
4
2.74
7
2.4
3.52
1.24
6.55
10.4
2.75
1.37
1.72
0.884
2.02
5
3.38
7
2.4
4.3B
1.20
7.99
12.8
3.34
1.38
1.71
0.878
2.49
6
3.99
7
2.4
5.12
1.33
9.51
14.7
3.9D
1.35
1.69
0.873
2.03
50M0
3
2.33
7
2.4
2.B9
1.32
7.06
11.1
2.B7
1.54
1.93
0.967
1.92
4
3.08
7
2.4
5.92
1.37
9.17
14.5
3.82
1.53
1.02
0.987
2.52
4.5
3.40
7
2.4
4.38
1.39
10.2
18,1
4W
1.52
1.02
0.984
2.82
5
3.77
7
2,4
4.83
1.41
11.2
17.7
4.64
1.52
1.91
0.980
3.11
6
4.43
7
2.4
5.72
1.e
13.o
zo.g
s.rv
1.51
1.90
0.974
3.67
8
5.78
7
2.4
7.rv
1.sa
tg.s
zs.e
e.B7
1.49
1.87
0.968
4.74
60×60
5
g
4.55
8
2.4
5.86
1.65
19.8
31.4
8.24
1.84
3.31
1.19
4.56
s.‹2
8
2.4
8.95
1.70
23.2
30.8
9.6s
1.83
2.30
1.18
5.40
63X83
5
4.75
8
2.4
6.16
1.73
23.1
36.6
8.ö0
1.93
2.44
1.25
5.05
6
5.71
8
2.4
7.31
1.77
27.1
42.9
11.2
1.92
2.42
1.24
5.88
8
7.42
8
2.4
9,M
1.85
s i.s
s‹.g
14.4
1.00
2.38
1.23
7.76
65×65
5
5.0ß
8
2.4
8.40
1.77
25.5
40.5
10.8
2.00
2.51
1.2S
5.39
6
5.91
9
2.4
7.5B
1.B2
29.9
47.4
12.4
1.98
z.50
1.za
g.sa
8
7.68
9
2.4
9.01
1.80
38J
60.4
15.9
1.90
2.47
1J7
8.29
8
8.55
9
2.4
11.0
1.94
42.0
66.4
17.6
1.95
2.45
1.26
9.21
70×70
8
6.3B
9
2.4
8.19
1.04
37.7
59.8
15.7
2.1fi
2.70
1.38
7W
7
7.58
9
2.4
9.48
1.BB
43.1
88.3
17.9
2.13
2.80
1.3.8
8.59
8
8.43
9
2.4
10.71
2.02
48.3
78.5
20.1
2.12
2.87
1.37
9.70
75x7s
s
s.gs
1o
4.8
7.37
2.00
38.7
81.2
18.2
2.20
2.88
1.48
7.02
6
6.85
10
4.8
8.78
2.04
45.7
72.4
19.0
2.28
2.88
1.47
8.38
8
9.03
10
4.8
11.5
2.13
59.0
93.5
24.6
2.27
2.85
1.48
11.0
8
9.08
10
4.8
12.8
2.17
65,3
’103
27.2
2.26
2.84
1.46
12.3
10
10.69
10
4.8
14.1
2.21
71J
1‘I3
29.8
2.25
2.83
‘ILS
13.5
12
13.00
10
4.8
18.7
2.20
82.7
130
M.0
2.2S
2.80
1.45
15.9
80×80
6
7,34
10
4.8
8.36
2.17
58.0
88.7
Z3.2
2.45
3.08
1.58
9.8
8
9,66
10
4.8
12.3
2.28
72.4
115
30.0
2.43
3.06
1.56
12.6
10
11.8
10
4.8
15.1
2.34
B7.7
139
30.5
2.41
3.03
1.55
15.5
80×00
6
8.30
11
4.8
10.6
2.41
BI.0
128
33.7
2.76
3.48
1.78
12.3
7
9.81
11
4.8
12.3
2.46
93.2
168
38.7
2.76
3.47
1.77
14.3
8
10.90
11
4.8
13.9
2.50
105
187
43.5
2.75
3.48
1.77
161
9
12.20
11
4.8
15.6
2.54
117
185
48J
2.74
S.45
1.78
18.0
10
13.40
11
4.8
17.2
2.58
128
202
52.0
2.73
3.43
1.78
19.8
12
15.60
11
4.8
20.3
2.66
1J9
235
62.1
2.70
3.40
1.75
23.5
13
17.00
11
4.8
21.9
2.70
150
251
66.8
2.69
3.38
1.74
25.2
Radlus af
Elastlc Modulua
AxA
I
f,
r,
,.and Cy
Axlà x•x, y
Axls un
Axla V v
Axfs x-x„y
Axls u-M
Axlc v-v
Axls x-x, y•y
rrim
mm
Ag/m
mm
mm
srrP
cm
cm‘
cm’
cm•
cm
cm
cm
crn•
100×100
6
8.20
12
4.8
11.s
z.gs
i1a
178
47.0
3.08
3.88
1.BB
15.3
7
10.70
12
4.8
13.7
2.70
130
208
53.0
3.08
3.87
1.98
17.8
8
12.20
12
4.8
15.8
2.75
148
232
60.6
3.07
3.86
1.97
20.2
10
15.00
12
4.8
18.2
2.B3
178
283
75.8
3.05
3.84
1.06
24.8
12
17.80
12
4.8
22.8
2.91
208
330
88.5
3.02
3.81
1.95
26.4
13
18.10
12
4.8
24.5
2.95
222
352
92.8
3.01
3.79
1.95
31.5
IS
21.00
12
4.8
28.0
3.02
250
595
105
2.09
3.78
1.94
35.8
12Ox12O
8
14.70
13
4.8
18.8
3.24
259
4.11
107
3.71
4.87
2.38
2B.5
10
18.2D
1a
4.B
23.3
3.sz
a1fs
so2
130
3.69
4.64
2.37
36,4
12
21.60
13
4.8
27.6
3.41
371
588
153
3.86
4.62
2.36
43.1
15
26.60
13
4.8
34.0
3.52
448
710
186
3.63
4.5?
2.34
52.B
125×125
8
14.00
14
4.8
18.7
3.30
2B4
480
122
3.87
4.87
2.49
32.2
10
19.09
14
4.8
24.3
3.44
36¢I
570
149
3.84
4.84
2.47
39.7
12
Z2.g7
14
4.8
28.9
3.53
422
809
174
S.82
4.81
2.40
47.0
130×130
8
1.90
14
4.8
20.S
3.48
332
527
138
4.03
5.07
2.5B
34.B
9
17.90
14
4.8
22.8
3.53
370
566
153
4.02
5.08
2.58
38.0
10
19.70
14
4.8
25.3
3.57
408
845
168
4.01
5.05
2.57
43.1
12
23.50
14
4.8
30.1
3.B5
477
758
197
3.08
5.02
2.66
51.1
15
28.80
14
4.8
37.1
3.77
578
918
240
3.B5
4.67
2.54
62.8
16
30.70
14
4.8
39.4
3.81
610
86B
253
3:94
4.95
2.S4
66.3
150×150
8
18.D0
16
4.8
23.8
3.B7
518
820
215
4.ag
s.s7
3.01
46.9
10
23.00
16
4.8
29.5
4.08
835
1008
263
4.64
5.85
2.99
58.0
12
27.50
16
4.8
35.0
4.14
748
1187
309
4.02
5.82
2.97
88.9
15
33.80
16
4.8
43.2
4.36
900
1442
375
4.59
5.78
2.85
84.8
16
35.70
16
4.8
45.9
4.90
980
1523
3B7
4.57
5.76
2.94
89,8
tB
40.10
18
4.8
51.2
4.38
1060
1880
440
4.55
5.73
2.93
90.8
18
41.90
16
4.8
53.8
4.42
1109
1756
462
4.54
5.71
2.83
105
175×175
12
31.80
16.
4.8
41.0
4.77
1208
1620
487
5.43
6.84
3.48
04.9
15
36,a
1s
4.a
s0.7
<.se
1474
2542
eo6
s.sa
g.ao
aag
‹17
200×200
12
36.55
18
4.8
47.2
5.38
1829
2906
753
8.23
7.85
4.00
125
13
39.48
18
4.8
50.9
5.42
10G7
3128
809
6.22
7.84
3.9B
135
15
45.30
18
4.8
58.3
5.50
M37
3555
919
8.18
7.81
3.B7
154
16
48.50
18
4.8
62.0
5.54
2300
3765
083
f:Ï.18
7.79
3.90
104
18
54.20
18
4.8
89.4
5.82
2027
4174
1080
6.15
7.76
3.95
185
20
5B.90
18
4.8
76.8
5.70
2877
4569
hgs
.‹s
7.72
a.ea
cel
24
71.10
18
4.8
90.8
5.85
3357
M22
13B1
6.08
7.85
3.91
237
25
73.80
18
4.8
94.3
5.86
3472
5502
1442
8.O7
7.64
3.91
248
28
78.B0
18
4.B
07.8
5.03
3588
5680
1492
8.05
7.62
3.91
255
35Ox250
25
93.70
20
4.8
120
7.14
7030
11170
2891
7.87
B.87
4.92
394
28
104,00
20
4.B
133
7.25
7741
12290
3195
7.83
9.61
4.00
436
32
118.00
20
4.8
151
7.40
8650
13710
3593
7.58
9.54
4.88
491
35
128.00
20
4.8
164
7.51
9305
14720
3887
7.54
9.49
4.88
532
300×300
35
1M.00
24
1B
1B7
8.71
18300
25800
8690
9.09
11.50
5.82
768
350x5s0
35
182.00
24
18
232
9.90
26600
4230O
10800
10.70
13.50
8.83
1O8D

=============================================================================================

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