Reliable Internal Tool Holder for Precise Profiling
The SVJBR/L internal boring bar with a 93° approach angle is specifically designed for demanding internal machining and profiling tasks. Its geometry allows for the flexible turning of internal contours and navigating hard-to-reach sections within the workpiece. Equipped with a secure screw clamping mechanism, it ensures a tight fit for compatible VB.. 1604... inserts, establishing excellent conditions for consistent cutting performance and efficient workflows in professional manufacturing environments.
Technical data
- System: SVJBR/L
- Approach angle: 93°
- Compatible inserts: VB.. 1604...
- Clamping method: Screw Clamping
- Primary application: Profiling
- Packaging unit: 1 Pc.
| Boring Bar |
SVJBR/L |
| Cutting Angle |
93°
|
| Insert |
VBMT 1604... |
| Main application |
Profiling |
| Clamping |
Screw Clamping |
| Packaging unit |
1 Pc. |
Dimensions of Internal Tool Holder - SVJBR/L (93°)
|
Item Nr. |
d |
h |
L |
f |
Dmin |
Insert |
Screw |
Shim |
Shim Screw |
| S25S SVJBR-16-S |
SM49505 |
25 |
23 |
250 |
19,5 |
≥32 |
VBMT 1604.. |
SSV M3,5x10 |
BAX-VB16
|
SBV5 M5x0,5 A3,5x9 |
| S25S SVJBL-16-S |
SM49499 |
25 |
23 |
250 |
19,5 |
≥32 |
VBMT 1604.. |
SSV M3,5x10 |
BAX-VB16
|
SBV5 M5x0,5 A3,5x9 |
| S32T SVJBR-16 |
SM08564 |
32 |
30 |
300 |
24 |
≥40 |
VBMT 1604.. |
SSV M3,5x14 |
BAX-VB16
|
SBV5 M5x0,5 A3,5x11 |
| S32T SVJBL-16 |
SM08571 |
32 |
30 |
300 |
24 |
≥40 |
VBMT 1604.. |
SSV M3,5x14
|
BAX-VB16
|
SBV5 M5x0,5 A3,5x11
|
| S40U SVJBR-16 |
SM08618 |
40 |
37 |
350 |
30 |
≥50 |
VBMT 1604.. |
SSV M3,5x14
|
BAX-VB16 |
SBV5 M5x0,5 A3,5x11
|
| S40U SVJBL-16 |
SM08625 |
40 |
37 |
350 |
30 |
≥50 |
VBMT 1604.. |
SSV M3,5x14
|
BAX-VB16
|
SBV5 M5x0,5 A3,5x11
|
Applications
This turning tool is highly suitable for internal profiling and shaping operations. The 93-degree angle offers practical clearance for longitudinal turning and contouring of complex workpieces in small to medium bore diameters.
Special features
The holder system stands out with its robust screw clamping that securely fastens the indexable insert, minimizing vibrations during the cut. This promotes reliable handling and supports smooth chip evacuation, thereby enhancing the overall stability of the machining process.