High-Performance Internal Grooving Holder S25M-QC-R/L for the RT System
Machining complex workpiece contours requires reliable tooling. The internal grooving holder S25M-QC-R/L offers a well-thought-out solution for inside grooving and is precisely matched to the RT system. It securely holds grooving inserts from RT22R/L up to RT305. ATTENTION: Right boring bar = left grooving inserts - left boring bar = right grooving inserts. This specific design opens up versatile application possibilities in metal cutting and supports high precision on the lathe.
Technical data
- Grooving Holder: S25M-QC.. R/L
- Application: Inside Grooving
- Grooving System: RT-System
- Compatible Inserts: RT22R/L.. RT305
- Packaging Unit: 1 Pc.
| Grooving Holder |
S25M-QC.. R/L |
| Application |
Inside Grooving
|
| Grooving System |
RT-System |
| Grooving Insert |
RT22R/L.. RT305 |
| Packaging Unit |
1 Pc. |
Dimensions of Internal Grooving Holder - S25M-QCR/L -RT22
|
Art. Nr. |
D min |
d |
L |
f |
L1 |
Width |
Grooving Insert |
Screw |
| S25M-QC2215R-35 -RT22 |
1441145 |
35 |
25 |
150 |
18,2 |
15 |
1,0-2,3 |
RT22 |
IPM 5x13 |
| S25M-QC2215L-35 -RT22 |
1441148 |
35 |
25 |
150 |
18,2 |
15 |
1,0-2,3 |
RT22 |
IPM 5x13 |
| S25M-QC2225R-35 -RT22 |
1441146 |
35 |
25 |
150 |
18,2 |
20 |
2,3-3,3 |
RT22 |
IPM 5x13 |
| S25M-QC2225L-35 -RT22 |
1441149 |
35 |
25 |
150 |
18,2 |
20 |
2,2-3,3 |
RT22 |
IPM 5x13 |
| S25M-QC2235R-35 -RT22 |
1441147 |
35 |
25 |
150 |
18,2 |
20 |
3,3-4,8 |
RT22 |
IPM 5x13 |
| S25M-QC2235L-35 -RT22 |
1441150 |
35 |
25 |
150 |
18,2 |
20 |
3,3-4,8 |
RT22 |
IPM 5x13 |
Applications
This holder is geared towards professional use in machining production. It is highly suitable for inside grooving operations on both CNC and conventional lathes. Typical fields of application include mechanical engineering, toolmaking, and series production, where stable tool holders are required for precise grooving.
Special features
The established RT system convinces with stable clamping of the inserts, which noticeably supports process reliability during machining. The cross-allocation of right boring bars to left inserts (and vice versa) ensures that the cutting geometry is positioned correctly. This systematic approach creates excellent conditions for accurate grooves and supports smooth workflows in manufacturing.