GN 214.6

Code
d1 -0.1
l1 +0.4
a
b
d2
d3
d4
d5
l2
l3
Load in kN ≈
(Double sided
shear force)
see information
6
16
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
20
6
20
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
21
6
25
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
23
6
30
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
24
6
35
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
25
6
40
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
26
6
45
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
27
6
50
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
28
6
60
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
30
6
70
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
34
6
80
2.3
0.5
7.5 +0.5
5.9
12
23
7
38
17
37
8
16
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
24
8
20
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
25
8
25
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
27
8
30
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
29
8
35
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
31
8
40
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
33
8
45
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
35
8
50
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
37
8
60
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
43
8
70
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
45
8
80
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
50
8
90
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
55
8
100
2.8
0.6
10 +0.5
7.9
12
23
8.4
38
35
56
10
15
3.3
1
12 +1
9.9
16
28
9.8
42
47
49
10
20
3.3
1
12 +1
9.9
16
28
9.8
42
47
49
10
25
3.3
1
12 +1
9.9
16
28
9.8
42
47
52
10
30
3.3
1
12 +1
9.9
16
28
9.8
42
47
55
10
35
3.3
1
12 +1
9.9
16
28
9.8
42
47
58
10
40
3.3
1
12 +1
9.9
16
28
9.8
42
47
61
10
45
3.3
1
12 +1
9.9
16
28
9.8
42
47
64
10
50
3.3
1
12 +1
9.9
16
28
9.8
42
47
67
10
60
3.3
1
12 +1
9.9
16
28
9.8
42
47
74
10
70
3.3
1
12 +1
9.9
16
28
9.8
42
47
78
10
80
3.3
1
12 +1
9.9
16
28
9.8
42
47
84
10
90
3.3
1
12 +1
9.9
16
28
9.8
42
47
90
10
100
3.3
1
12 +1
9.9
16
28
9.8
42
47
96
10
110
3.3
1
12 +1
9.9
16
28
9.8
42
47
102
10
120
3.3
1
12 +1
9.9
16
28
9.8
42
47
108
12
20
3.8
1
14 +1
11.9
16
28
11.3
42
75
58
12
25
3.8
1
14 +1
11.9
16
28
11.3
42
75
61
12
30
3.8
1
14 +1
11.9
16
28
11.3
42
75
65
12
35
3.8
1
14 +1
11.9
16
28
11.3
42
75
70
12
40
3.8
1
14 +1
11.9
16
28
11.3
42
75
73
12
45
3.8
1
14 +1
11.9
16
28
11.3
42
75
79
12
50
3.8
1
14 +1
11.9
16
28
11.3
42
75
82
12
60
3.8
1
14 +1
11.9
16
28
11.3
42
75
91
12
70
3.8
1
14 +1
11.9
16
28
11.3
42
75
99
12
80
3.8
1
14 +1
11.9
16
28
11.3
42
75
108
12
90
3.8
1
14 +1
11.9
16
28
11.3
42
75
116
12
100
3.8
1
14 +1
11.9
16
28
11.3
42
75
125
12
110
3.8
1
14 +1
11.9
16
28
11.3
42
75
134
12
120
3.8
1
14 +1
11.9
16
28
11.3
42
138
142
16
30
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
119
16
35
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
128
16
40
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
135
16
45
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
143
16
50
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
151
16
60
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
166
16
70
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
183
16
80
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
197
16
90
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
213
16
100
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
228
16
110
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
244
16
120
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
259
16
130
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
274
16
140
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
290
16
150
4.8
1.2
19 +1
15.9
20
32
14.2
46.5
138
305

Pin

Stainless Steel AISI 303

Slide / Push button

Stainless Steel AISI 303

Pawl

Stainless Steel sheet metal AISI 304

Lifting ring

Stainless Steel AISI 301

Spring

Stainless Steel AISI 301

Stainless Steel-Locking pins with axial lock GN 214.6 are used for quick fixing, connecting and locking of various jig and fixture systems. A typical application is location pins which have to be often removed and re-placed again.

The rectangular pawls made of Stainless Steel sheet metal keep the locking pin in an axial position in the bore. It can be retracted by pressing the button, once released it returns the pressure spring into its locking position.

The version with swivelling lifting ring is ideal for the use in confined spaces.

The load values given in the above table at shear stress are theoretically obtained and indicative only. They are non-binding recommended values and rule our any liability. They constitute no general warranty of quality and condition. The user must determine from case to case whether a product is suitable for the intended use.

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