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Linear shafts / stepped on both sides, internal thread

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Back to Linear Shaft Category

Technical Drawing - Linear Shafts

 

Both Ends Stepped and Tapped/Both Ends Stepped:Related Image

 

Basic Properties (e.g. material, hardness, coating, tolerance) - Linear Shafts

 

TypeMaterialHardness
Surface Treatment
Both Ends Stepped and Tapped
Both Ends Stepped
D Tol. g6D Tol. h5D Tol. f8D Tol. g6D Tol. h5D Tol. f8
SFAHSFUH-SFAJSFUJ-EN 1.3505 Equiv.Effective Hardened Depth of Induction Hardening >>P.112
EN 1.3505 Equiv. 58HRC~
EN 1.4037 Equiv. 56HRC~
-
SSFAHSSFUH-SSFAJSSFUJ-EN 1.4037 Equiv.
PSFAHPSFUH-PSFAJPSFUJ-EN 1.3505 Equiv.Hard Chrome Plating
Plating Hardness: HV750 ~
Plating Thickness: 5µ or More
PSSFAHPSSFUH-PSSFAJPSSFUJ-EN 1.4037 Equiv.
RSFAH--RSFAJ--EN 1.3505 Equiv.LTBC Plating
--PSFGH--PSFGJEN 1.1191 Equiv.-Hard Chrome Plating
Plating Hardness: HV750 ~
Plating Thickness: 10µ or More
--PSSFGH--PSSFGJEN 1.4301 Equiv.

 

D Tol.
Dg6h5f8
8-0.005
-0.014
0
-0.006
-0.013
-0.035
10
12-0.006
-0.017
0
-0.008
-0.016
-0.043
13
15
16
18
20-0.007
-0.020
0
-0.009
-0.020
-0.053
25
30
35-0.009
-0.025
0
-0.011
-0.025
-0.064
40
50

Further specifications can be found under the tab More Information.

 

Composition of a Product Code - Linear Shafts

 

Part Number-L-F-P-M-T
SSFAH18
SFAH20
SFAJ20
-
-
-
200
400
400
-
-
-
F20
F25
F25
-
-
-
P15
P16
P16
-
-
 
M8
M10
 
-
-
-
T20
T20
T20

 

Alterations - Linear Shafts

 

Both Ends Stepped and Tapped/Both Ends Stepped:Related Image

You find further options in detail under Option Overview.

 

Artikelnummerlista

Antal artiklar
Artikelnummer

Shaft end Shape (Left)

Shaft end Shape (Right)

[D] Diameter (Shaft)

(mm)

[L] Length (Shaft)

(mm)

Material

Heat Treatment

Surface Treatment

ISO Tolerance

Hardness

[MD] Size (thread - depth 3xM)

(mm)

[F] Length (stud - offset - front side)

(mm)

[P] Diameter (stepped - front side)

(mm)

[T] Length (stud - stepped - back side)

(mm)

[M] Size (thread - depth 2xM)

(mm)

RoHS?Minsta beställningsantal
Internal thread
Internal thread
8
25 ~ 996
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 24
6
2 ~ 24
3
10
1 stycken
Internal thread
Internal thread
10
25 ~ 996
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 32
6 ~ 8
2 ~ 32
3 ~ 5
10
1 stycken
Internal thread
Internal thread
12
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 40
6 ~ 10
2 ~ 40
3 ~ 6
10
1 stycken
Internal thread
Internal thread
13
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 44
6 ~ 11
2 ~ 44
3 ~ 8
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 52
6 ~ 13
2 ~ 52
3 ~ 10
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
6 ~ 10
2 ~ 52
6 ~ 13
2 ~ 52
-
10
1 stycken
Internal thread
Internal thread
16
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 56
6 ~ 14
2 ~ 56
3 ~ 10
10
1 stycken
Internal thread
Internal thread
18
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 64
8 ~ 16
2 ~ 64
4 ~ 12
10
1 stycken
Internal thread
Internal thread
20
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 68
8 ~ 17
2 ~ 68
4 ~ 12
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 88
8 ~ 22
2 ~ 88
4 ~ 16
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
6 ~ 16
2 ~ 88
8 ~ 22
2 ~ 88
-
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 108
9 ~ 27
2 ~ 108
5 ~ 24
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
6 ~ 20
2 ~ 108
9 ~ 27
2 ~ 108
-
10
1 stycken
Internal thread
Internal thread
35
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 128
9 ~ 32
2 ~ 128
5 ~ 24
10
1 stycken
Internal thread
Internal thread
40
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 148
11 ~ 37
2 ~ 148
6 ~ 30
10
1 stycken
Internal thread
Internal thread
50
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (58HRC~)
-
2 ~ 188
11 ~ 47
2 ~ 188
6 ~ 30
10
1 stycken
Internal thread
Internal thread
8
25 ~ 796
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 24
6
2 ~ 24
3
10
1 stycken
Internal thread
Internal thread
10
25 ~ 796
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 32
6 ~ 8
2 ~ 32
3 ~ 5
10
1 stycken
Internal thread
Internal thread
12
25 ~ 996
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 40
6 ~ 10
2 ~ 40
3 ~ 6
10
1 stycken
Internal thread
Internal thread
13
25 ~ 996
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 44
6 ~ 11
2 ~ 44
3 ~ 8
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 52
6 ~ 13
2 ~ 52
3 ~ 10
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
6 ~ 10
2 ~ 52
6 ~ 13
2 ~ 52
-
10
1 stycken
Internal thread
Internal thread
16
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 56
6 ~ 14
2 ~ 56
3 ~ 10
10
1 stycken
Internal thread
Internal thread
18
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 64
8 ~ 16
2 ~ 64
4 ~ 12
10
1 stycken
Internal thread
Internal thread
20
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 68
8 ~ 17
2 ~ 68
4 ~ 12
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 88
8 ~ 22
2 ~ 88
4 ~ 16
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
6 ~ 16
2 ~ 88
8 ~ 22
2 ~ 88
-
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 108
9 ~ 27
2 ~ 108
5 ~ 24
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
6 ~ 20
2 ~ 108
9 ~ 27
2 ~ 108
-
10
1 stycken
Internal thread
Internal thread
35
25 ~ 1496
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 128
9 ~ 32
2 ~ 128
5 ~ 24
10
1 stycken
Internal thread
Internal thread
40
25 ~ 1496
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 148
11 ~ 37
2 ~ 148
6 ~ 30
10
1 stycken
Internal thread
Internal thread
50
25 ~ 1496
[Unalloyed Steel] EN 1.1191 Equiv.
No Treatment
Hard Chrome Plating
f8
No Induction Hardening
-
2 ~ 188
11 ~ 47
2 ~ 188
6 ~ 30
10
1 stycken
Internal thread
Internal thread
8
25 ~ 996
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 24
6
2 ~ 24
3
10
1 stycken
Internal thread
Internal thread
10
25 ~ 996
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 32
6 ~ 8
2 ~ 32
3 ~ 5
10
1 stycken
Internal thread
Internal thread
12
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 40
6 ~ 10
2 ~ 40
3 ~ 6
10
1 stycken
Internal thread
Internal thread
13
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 44
6 ~ 11
2 ~ 44
3 ~ 8
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 52
6 ~ 13
2 ~ 52
3 ~ 10
10
1 stycken
Internal thread
Internal thread
16
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 56
6 ~ 14
2 ~ 56
3 ~ 10
10
1 stycken
Internal thread
Internal thread
18
25 ~ 1396
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 64
7 ~ 16
2 ~ 64
4 ~ 12
10
1 stycken
Internal thread
Internal thread
18
25 ~ 1396
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
6 ~ 12
2 ~ 64
7 ~ 16
2 ~ 64
-
10
1 stycken
Internal thread
Internal thread
20
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 68
8 ~ 17
2 ~ 68
4 ~ 12
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 88
8 ~ 22
2 ~ 88
4 ~ 16
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 108
9 ~ 27
2 ~ 108
5 ~ 24
10
1 stycken
Internal thread
Internal thread
35
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 128
9 ~ 32
2 ~ 128
5 ~ 24
10
1 stycken
Internal thread
Internal thread
40
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 148
11 ~ 37
2 ~ 148
6 ~ 30
10
1 stycken
Internal thread
Internal thread
50
25 ~ 1496
[Alloyed Steel] EN 1.3505 Equiv.
Induction Hardened
Hard Chrome Plating
h5
Induction Hardening (58HRC~)
-
2 ~ 188
11 ~ 47
2 ~ 188
6 ~ 30
10
1 stycken
Internal thread
Internal thread
8
25 ~ 996
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 24
6
2 ~ 24
3
10
1 stycken
Internal thread
Internal thread
10
25 ~ 996
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 32
6 ~ 8
2 ~ 32
3 ~ 5
10
1 stycken
Internal thread
Internal thread
12
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 40
6 ~ 10
2 ~ 40
3 ~ 6
10
1 stycken
Internal thread
Internal thread
13
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 44
6 ~ 11
2 ~ 44
3 ~ 6
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 52
6 ~ 13
2 ~ 52
3 ~ 6
10
1 stycken
Internal thread
Internal thread
15
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
6 ~ 10
2 ~ 52
6 ~ 13
2 ~ 52
-
10
1 stycken
Internal thread
Internal thread
16
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 56
6 ~ 14
2 ~ 56
3 ~ 6
10
1 stycken
Internal thread
Internal thread
18
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 64
8 ~ 16
2 ~ 64
4 ~ 12
10
1 stycken
Internal thread
Internal thread
20
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 68
8 ~ 17
2 ~ 68
4 ~ 8
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 88
8 ~ 22
2 ~ 88
4 ~ 16
10
1 stycken
Internal thread
Internal thread
25
25 ~ 1196
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
6 ~ 16
2 ~ 88
8 ~ 22
2 ~ 88
-
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 108
9 ~ 27
2 ~ 108
5 ~ 24
10
1 stycken
Internal thread
Internal thread
30
25 ~ 1496
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
6 ~ 20
2 ~ 108
9 ~ 27
2 ~ 108
-
10
1 stycken
Internal thread
Internal thread
35
25 ~ 1496
[Stainless Steel (martensitique)] EN 1.4037 Equiv.
Induction Hardened
Hard Chrome Plating
g6
Induction Hardening (56HRC~)
-
2 ~ 128
9 ~ 32
2 ~ 128
5 ~ 24
10
1 stycken
Enhetspris (exklusive MOMS)(Enhetspris inklusive MOMS)
Standardavsändningsdatum
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
6 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
4 arbetsdagar
-
( - )
7 arbetsdagar

Detaljerad information

Grundläggande information

Försiktighet

  • SFAH has been localized according to European needs and requirements. Please have a look on the EU version SFAHEU. SFAHEU is available in EN 1.1213 (Cf53) and h6 / h7.

Skiss och specifikationer

Back to Linear Shaft Category

Technical Drawing - Linear Shafts

 

Both Ends Stepped and Tapped/Both Ends Stepped:Related Image

 

Specification Tables - Linear Shafts

 

Overview of the shaft designs as PDF

 

Part Number1mm IncrementM (Coarse)
Selection
(Y)Max.RC
TypeDLF, TP
Both Ends Stepped and Tapped
(D Tolerance g6)
SFAH
SSFAH
PSFAH
PSSFAH
RSFAH

(D≤30, L≤500)
(D Tolerance f8)
PSFGH
PSSFGH
(D Tolerance h5)
SFUH
SSFU
H
PSFUH

PSSFUH


 
Both Ends Stepped
(D Tolerance g6)
SFAJ
SSFAJ
PSFAJ
PSSFAJ
RSF
AJ
(D≤30, L≤500)
(D Tol. f8)
PSFGJ
PSSFGJ
(D Tolerance h5)
SFUJ
SSFUJ
PSFUJ
PSSFUJ



 
825~7962≤F≤Px4

2≤T≤Px4
63          8000.3 or Less0.5 or Less
1025~7966~8345        800
1225~9966~103456       1000
1325~9966~1134568      1000
1525~9966~133456810     1000
1625~11966~143456810     1200
1825~11968~16 45681012    1200
2025~11968~17 45681012    12001.0 or Less
2525~11968~22 4568101216   1200
3025~14969~27  5681012162024 1500
3525~14969~32  5681012162024 15000.5 or Less
4025~149611~37   681012162024301500
5025~149611~47   681012162024301500
• Both Ends Tapped P dimensions require M+3≤P. When (Mx2.5+4)x2≥(Y), tap pilot hole may go through.

 

Alterations - Linear Shafts


Both Ends Stepped and Tapped/Both Ends Stepped:Related Image

You find further options in detail under Option Overview.

Surface Limits / Hardness - Linear Shafts

 

Limits of hardness and hardening depth

The linear shafts are processed after the base material has undergone inductive hardening. Therefore, the processed surfaces may result in a deviating hardness.
In the following example, you can view the affected areas of the linear shaft, which may be affected after processing by e.g. threads, level surfaces, key surfaces and transverse bores.

 

Limitation of linear shaft induction hardening

 

Cause for deviating hardness

The raw material of the linear shaft is treated via thermal induction before grinding. Thus, a configured linear shaft can be custom-made not only cost-effectively, but also with short delivery times. The linear shaft is hardened at the boundary layer (boundary layer hardening) of the liner shaft. The depth of the hardened boundary layer depends on the material used and the diameter of the linear shaft. The following table shows the hardening depth of linear shafts.
Coatings and plating are applied to the raw material after hardening and grinding. For more information, see Coatings of the Linear Shaft.

 

Boundary layer hardening of a linear shaft

Figure of boundary layer hardening: hardened boundary layer in light gray

 

Effective hardening depth of linear shafts

Outside diameter (D)Effective hardening depth
EN 1.1191 equiv.EN 1.3505 equiv.EN 1.4125 equiv.EN 1.4301 equiv.
3-+0.5+0.5Without induction hardening
4-
5-
6 - 10+0.3
12 - 13+0.5+0.7+0.5
15 - 20+0.7
25 - 50+0.8+1

Overview of the effective hardening depth as PDF

 

Coatings of the linear shaft

The surface coating is applied to the raw material before machining the linear shaft. Thanks to their coating, the usable surface or work surface of the linear shaft is not only protected against corrosion but also against wear.
Machined positions of the linear shafts, such as plane surfaces or threads, may be uncoated, as they are added afterwards. This can lead to the machined surfaces being corroded in a linear shaft made of steel. If the linear shaft is used in a corrosive environment, it is recommended to use a stainless steel linear shaft.
The following figure shows the areas of the linear shaft that are coated (crosshatched). 

 

Surface coating after processing the linear shaft

Figure: Coating of linear shafts

 

You can find further information on surface treatment and hardness in this PDF .

 

General Information - Linear Shafts

 

Linear Shaft Selection Details

- Material: steel, stainless steel

- Coating/plating: uncoated, hard chrome plated, LTBC coated, chemically nickel-plated

- Heat treatment: untreated, inductively hardened

- ISO tolerances: h5, k5, g6, h6, h7, f8

- Precision classes: perpendicularity 0.03, concentricity (with thread and increments) Ø0.02, perpendicularity 0.20, concentricity (thread and stepper) Ø0.10

- Linearity/roundness: depends on diameter, here for the PDF

 

 

Description / basics of the linear shaft

Linear shafts are steel shafts that perform guiding tasks in combination with linear bearings, such as plain bearing bushings or linear ball bushings. Linear shaft holding functions can be adopted from shaft holders or linear ball bearing adapters. Most linear shafts are heat-treated (induction hardened) solid shafts. A special design of linear shafts is the hollow shaft, which is also called tubular shaft. Inductively hardened linear shafts have a high surface hardness and a tough core. The achievable surface hardness is approx. 55-58 HRC (see information on hardening depth). Linear shafts made of stainless steels can generally not be hardened. Therefore, these steel shafts should be chrome plated to protect them from wear.

 

Materials

Linear shafts are mainly hardened steel shafts. In addition to the selected heat treatment, the steel used in particular imparts its properties to the linear shaft, although it is a hollow shaft or a solid shaft. Therefore, special aspects such as hardness, corrosion and wear must be considered when selecting the shaft steel.

 

Coatings

To protect linear shafts from corrosion, the surface can be chemically nickel-plated. As an alternative to chemical nickel-plating, steel shafts can also be coated with LTBC. The LTBC coating is an anti-corrosive surface coating and it is a low-reflection coating, made of a 5 μm thick film of fluoropolymer, which in essence is a black film. In addition, the LTBC coating is resistant to bursting pressure by extreme or repeated bending. LTBC-coated linear shafts are thus particularly suitable for locations where corrosion or light reflections are undesirable. Linear shafts that require particularly high surface hardness and wear resistance can be hard chrome plated.

 

Function

The form and function of linear shafts differ from linear guiderails. Linear guiderails are square rails that work in combination with carriers (rotary elements, carriages) according to the rolling or sliding principle. Linear shafts on the other hand are precision-ground round steel shafts that take on a linear guide function in conjunction with linear ball bushings or plain bearing bushings (maintenance-free bushings).

 

Areas of Application

Linear shafts are intended for axial motion. Whether horizontal or vertical linear motion, all linear motions can be implemented with linear shafts. Common applications are stroke mechanisms and other applications with high demands on smoothness, precision and service life. Linear shafts can therefore be used in almost all industries of plant construction and mechanical engineering. Linear shafts are often found in 3D printers, metering equipment, measuring devices, positioning devices, alignment devices, bending devices and sorting equipment.

 

Instructions for Use / Installation  - Linear Shafts

 

For product selection, please observe the linear shaft tolerances (e.g. h5, k5, g6, h6, h7, f8) in conjunction with the diameter tolerance of the plain bearing bushing (sliding bearing) after pressing in or the running circle diameter of the linear ball bearing (ball bushing).

 

Diameter change of linear ball bushings after pressing  Inner diameter of linear ball bushings or ball bushings

 

Shaft Fasteners

 

Application Example of a Linear Shaft - Linear Shafts with Linear Ball Bushings - Linear Shafts with Shaft Holder
Application Example of a Linear Shaft Application Example - Linear Shaft with Linear Ball Bearings - Linear Ball Bearings with an Adjusting Ring
Application Example of a Linear Shaft - Linear Shaft with Shaft Holder
Application Example of a Linear Shaft - Linear Shaft with Circlip Groove - Linear Shaft with Circlip
Application Example of a Linear Shaft - Linear Shaft with Holding Washer
Application Example of a Linear Shaft - Linear Thread - Outer Threaded Linear Shaft - Linear Threaded with inner and outer threads
Application Example of a Linear Shaft - Cross Bore Linear Shaft - Inner Thread Linear Shaft
Application Example of a Linear Shaft - Cross Bore Linear Shaft - Outer Thread Linear Shaft

   

Supplementary Article

 

Shaft holder

Product range of shaft holders

 

Adjusting rings/clamping rings

Product range of adjusting rings - product range of clamping rings

 

Linear ball bearing

Product range of linear ball bearings - product range of ball sleeves - linear ball bearing with housing

 

Plain bearing bushings

Product range of sliding bearing bushings - plain bearing with housing

 

Ball guides

Ball guide product range

 

Industrial Applications

 

3D printer industry
3D printer industry
Automotive industry
Automotive industry
Pharmaceutical industry
Pharmaceutical industry
Packaging industry
Packaging industry