Produkt ähnlich wie:
Wendeschneidplatten für Rodeka™ IC 10 • RNGJ10T3-LD/-LDJ
Wendeschneidplatten RN.J10..
Material Nummer5152563
ISO Katalog NummerRNGJ10T3M0FLDJANSI Katalog NummerRNGJ10T3M0FLDJ
- N NE-Metalle
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Material Nummer | 5152563 |
ISO Katalog Nummer | RNGJ10T3M0FLDJ |
ANSI Katalog Nummer | RNGJ10T3M0FLDJ |
Sorte | KC422M |
[D] Wendeschneidplatten-Größe (Inkreis) | 10 mm |
[D] Wendeschneidplatten-Größe (Inkreis) | .3937 in |
[S] Dicke der Wendeschneidplatte | 3.931 mm |
[S] Dicke der Wendeschneidplatte | .1548 in |
Mittlere Spandicke [HM] | 0.038 mm |
Mittlere Spandicke [HM] | .0015 in |
Wendeschneidplatte Anzahl der Schneidkanten | 8 |
Werkstoffe
- NE-Metalle
Grades
KC422M
Die PVD-TiB2-Beschichtung ist überaus verschleißfest. In Verbindung mit der harten Beschichtung und dem zähen Substrat eignet sie sich ausgezeichnet für die mittlere Bearbeitung und das Schruppen von Aluminium mit <10% Silizium und von anderen NE-Metallen.
Features and benefits
- -LD-Geometrie ist die erste Wahl für die Bearbeitung von nicht rostendem Stahl und Titan mit niedrigeren Schnittkräften.
Lösung erstellen, um Vorschübe und Geschwindigkeiten zu berechnen
Nachdem Sie eine Lösung erstellt haben, wählen Sie einfach das Symbol für Vorschübe und Geschwindigkeiten und unser System gibt Ihnen Empfehlungen. Sie können die Informationen anpassen, indem Sie Ihre Maschine und Spezifikationen hinzufügen oder Anpassungen mithilfe der Schieberegler vornehmen.
Insert Selection
Werkstoffgruppe | Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung | |||
– | (Leicht schneidende Geometrie) | – | (Stabile Geometrie) | |||
– | Verschleiß- festigkeit | Zähigkeit | ||||
– | Geometrie | Sorte | Geometrie | Sorte | Geometrie | Sorte |
P1–P2 | .E..LDJ | KC725M | .S..GD | KCPM40 | .S..HD | KCPM40 |
P3–P4 | .S..GD | KCPK30 | .S..HD | KCPK30 | .S..HD | KCPM40 |
P5–P6 | .E..LDJ | KC725M | .S..GDJ | KC725M | .S..HD | KC725M |
M1–M2 | .E..LDJ | KC522M | .E..LDJ | KCSM40 | .S..GDJ | KC522M |
M3 | .E..LDJ | KCSM40 | .S..GD | KCPM40 | .S..HD | KCPM40 |
K1–K2 | .S..HD | KC520M | .S..HD | KC520M | .S..HD | KCK15 |
K3 | .S..HD | KC520M | .S..HD | KCK15 | .S..HD | KCPK30 |
N1–N2 | .F..LDJ | KC422M | .F..LDJ | KC422M | .S..GD | KC510M |
N3 | – | – | – | – | – | – |
S1–S2 | .E..LDJ | KC725M | .S..GDJ | KC725M | .S..HD | KC725M |
S3 | .E..LDJ | KCSM40 | .S..GD | KCPM40 | .S..HD | KCPM40 |
S4 | .E..LDJ | KC522M | .E..LDJ | KCSM40 | .S..GDJ | KC522M |
H1 | .S..GD | KC510M | .S..GD | KC510M | – | – |
Feeds
Bei einer axialen Schnitttiefe von 5,00 (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.F..LDJ | 0,12 | 0,40 | 0,72 | 0,09 | 0,29 | 0,51 | 0,07 | 0,21 | 0,38 | 0,06 | 0,19 | 0,33 | 0,05 | 0,17 | 0,30 | .F..LDJ |
.E..LDJ | 0,12 | 0,44 | 0,76 | 0,09 | 0,32 | 0,54 | 0,07 | 0,24 | 0,41 | 0,06 | 0,21 | 0,35 | 0,05 | 0,19 | 0,32 | .E..LDJ |
.E..LD | 0,12 | 0,44 | 0,76 | 0,09 | 0,32 | 0,54 | 0,07 | 0,24 | 0,41 | 0,06 | 0,21 | 0,35 | 0,05 | 0,19 | 0,32 | .E..LD |
.S..GDJ | 0,24 | 0,53 | 0,82 | 0,17 | 0,38 | 0,59 | 0,13 | 0,28 | 0,44 | 0,11 | 0,25 | 0,38 | 0,10 | 0,23 | 0,35 | .S..GDJ |
.S..GD | 0,24 | 0,53 | 0,82 | 0,17 | 0,38 | 0,59 | 0,13 | 0,28 | 0,44 | 0,11 | 0,25 | 0,38 | 0,10 | 0,23 | 0,35 | .S..GD |
.S..HD | 0,24 | 0,53 | 0,83 | 0,17 | 0,38 | 0,59 | 0,13 | 0,29 | 0,44 | 0,11 | 0,25 | 0,38 | 0,10 | 0,23 | 0,35 | .S..HD |
Bei einer axialen Schnitttiefe von 2,00 (ap)
Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung |
Bei einer axialen Schnitttiefe von 1,00 (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40%–100% | ||||||||||||
.F..LDJ | 0,15 | 0,50 | 0,90 | 0,11 | 0,36 | 0,64 | 0,08 | 0,27 | 0,48 | 0,07 | 0,23 | 0,42 | 0,07 | 0,21 | 0,38 | .F..LDJ |
.E..LDJ | 0,15 | 0,56 | 0,96 | 0,11 | 0,40 | 0,68 | 0,08 | 0,30 | 0,51 | 0,07 | 0,26 | 0,44 | 0,07 | 0,24 | 0,40 | .E..LDJ |
.E..LD | 0,15 | 0,56 | 0,96 | 0,11 | 0,40 | 0,68 | 0,08 | 0,30 | 0,51 | 0,07 | 0,26 | 0,44 | 0,07 | 0,24 | 0,40 | .E..LD |
.S..GDJ | 0,29 | 0,67 | 1,04 | 0,21 | 0,48 | 0,74 | 0,16 | 0,35 | 0,55 | 0,14 | 0,31 | 0,48 | 0,13 | 0,28 | 0,44 | .S..GDJ |
.S..GD | 0,29 | 0,67 | 1,04 | 0,21 | 0,48 | 0,74 | 0,16 | 0,35 | 0,55 | 0,14 | 0,31 | 0,48 | 0,13 | 0,28 | 0,44 | .S..GD |
.S..HD | 0,29 | 0,67 | 1,04 | 0,21 | 0,48 | 0,74 | 0,16 | 0,36 | 0,55 | 0,14 | 0,31 | 0,48 | 0,13 | 0,28 | 0,44 | .S..HD |
Bei einer axialen Schnitttiefe von 0,50 (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40%–100% | ||||||||||||
.F..LDJ | 0,29 | 0,93 | 1,71 | 0,21 | 0,66 | 1,19 | 0,15 | 0,49 | 0,88 | 0,13 | 0,43 | 0,76 | 0,12 | 0,39 | 0,70 | .F..LDJ |
.E..LDJ | 0,29 | 1,04 | 1,83 | 0,21 | 0,74 | 1,27 | 0,15 | 0,55 | 0,93 | 0,13 | 0,48 | 0,81 | 0,12 | 0,44 | 0,74 | .E..LDJ |
.E..LD | 0,29 | 1,04 | 1,83 | 0,21 | 0,74 | 1,27 | 0,15 | 0,55 | 0,93 | 0,13 | 0,48 | 0,81 | 0,12 | 0,44 | 0,74 | .E..LD |
.S..GDJ | 0,55 | 1,25 | 1,98 | 0,39 | 0,88 | 1,37 | 0,29 | 0,65 | 1,01 | 0,25 | 0,57 | 0,87 | 0,23 | 0,52 | 0,80 | .S..GDJ |
.S..GD | 0,55 | 1,25 | 1,98 | 0,39 | 0,88 | 1,37 | 0,29 | 0,65 | 1,01 | 0,25 | 0,57 | 0,87 | 0,23 | 0,52 | 0,80 | .S..GD |
.S..HD | 0,55 | 1,26 | 1,99 | 0,39 | 0,89 | 1,38 | 0,29 | 0,66 | 1,01 | 0,25 | 0,57 | 0,88 | 0,23 | 0,52 | 0,80 | .S..HD |
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40%–100% | ||||||||||||
.F..LDJ | 0,21 | 0,67 | 1,22 | 0,15 | 0,48 | 0,86 | 0,11 | 0,36 | 0,64 | 0,10 | 0,31 | 0,55 | 0,09 | 0,29 | 0,51 | .F..LDJ |
.E..LDJ | 0,21 | 0,75 | 1,30 | 0,15 | 0,53 | 0,92 | 0,11 | 0,40 | 0,68 | 0,10 | 0,35 | 0,59 | 0,09 | 0,32 | 0,54 | .E..LDJ |
.E..LD | 0,21 | 0,75 | 1,30 | 0,15 | 0,53 | 0,92 | 0,11 | 0,40 | 0,68 | 0,10 | 0,35 | 0,59 | 0,09 | 0,32 | 0,54 | .E..LD |
.S..GDJ | 0,39 | 0,89 | 1,40 | 0,28 | 0,64 | 0,99 | 0,21 | 0,47 | 0,73 | 0,18 | 0,41 | 0,63 | 0,17 | 0,38 | 0,58 | .S..GDJ |
.S..GD | 0,39 | 0,89 | 1,40 | 0,28 | 0,64 | 0,99 | 0,21 | 0,47 | 0,73 | 0,18 | 0,41 | 0,63 | 0,17 | 0,38 | 0,58 | .S..GD |
.S..HD | 0,39 | 0,90 | 1,41 | 0,28 | 0,64 | 0,99 | 0,21 | 0,48 | 0,73 | 0,18 | 0,41 | 0,64 | 0,17 | 0,38 | 0,58 | .S..HD |
At .200 Axial Depth of Cut (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.F..LDJ | .005 | .016 | .028 | .004 | .011 | .020 | .003 | .008 | .015 | .002 | .007 | .013 | .002 | .007 | .012 | .F..LDJ |
.E..LDJ | .005 | .017 | .030 | .004 | .013 | .021 | .003 | .009 | .016 | .002 | .008 | .014 | .002 | .008 | .013 | .E..LDJ |
.E..LD | .005 | .017 | .030 | .004 | .013 | .021 | .003 | .009 | .016 | .002 | .008 | .014 | .002 | .008 | .013 | .E..LD |
.S..GDJ | .009 | .021 | .032 | .007 | .015 | .023 | .005 | .011 | .017 | .004 | .010 | .015 | .004 | .009 | .014 | .S..GDJ |
.S..GD | .009 | .021 | .032 | .007 | .015 | .023 | .005 | .011 | .017 | .004 | .010 | .015 | .004 | .009 | .014 | .S..GD |
.S..HD | .009 | .021 | .033 | .007 | .015 | .023 | .005 | .011 | .017 | .004 | .010 | .015 | .004 | .009 | .014 | .S..HD |
At .070 Axial Depth of Cut (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.F..LDJ | .006 | .021 | .037 | .005 | .015 | .027 | .003 | .011 | .020 | .003 | .010 | .017 | .003 | .009 | .016 | .F..LDJ |
.E..LDJ | .006 | .023 | .040 | .005 | .016 | .028 | .003 | .012 | .021 | .003 | .011 | .018 | .003 | .010 | .017 | .E..LDJ |
.E..LD | .006 | .023 | .040 | .005 | .016 | .028 | .003 | .012 | .021 | .003 | .011 | .018 | .003 | .010 | .017 | .E..LD |
.S..GDJ | .012 | .027 | .043 | .009 | .019 | .030 | .007 | .014 | .022 | .006 | .013 | .019 | .005 | .012 | .018 | .S..GDJ |
.S..GD | .012 | .027 | .043 | .009 | .019 | .030 | .007 | .014 | .022 | .006 | .013 | .019 | .005 | .012 | .018 | .S..GD |
.S..HD | .012 | .028 | .043 | .009 | .020 | .031 | .007 | .015 | .023 | .006 | .013 | .020 | .005 | .012 | .018 | .S..HD |
At .040 Axial Depth of Cut (ap)
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.F..LDJ | .011 | .037 | .067 | .008 | .026 | .047 | .006 | .019 | .034 | .005 | .017 | .030 | .005 | .015 | .027 | .F..LDJ |
.E..LDJ | .011 | .041 | .072 | .008 | .029 | .050 | .006 | .021 | .037 | .005 | .019 | .032 | .005 | .017 | .029 | .E..LDJ |
.E..LD | .011 | .041 | .072 | .008 | .029 | .050 | .006 | .021 | .037 | .005 | .019 | .032 | .005 | .017 | .029 | .E..LD |
.S..GDJ | .021 | .048 | .077 | .015 | .034 | .053 | .011 | .025 | .039 | .010 | .022 | .034 | .009 | .020 | .031 | .S..GDJ |
.S..GD | .021 | .048 | .077 | .015 | .034 | .053 | .011 | .025 | .039 | .010 | .022 | .034 | .009 | .020 | .031 | .S..GD |
.S..HD | .021 | .049 | .078 | .015 | .035 | .054 | .011 | .026 | .040 | .010 | .022 | .034 | .009 | .020 | .031 | .S..HD |
At .020 Axial Depth of Cut (ap)
Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung |
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.F..LDJ | .008 | .026 | .048 | .006 | .019 | .034 | .004 | .014 | .025 | .004 | .012 | .022 | .004 | .011 | .020 | .F..LDJ |
.E..LDJ | .008 | .029 | .051 | .006 | .021 | .036 | .004 | .016 | .027 | .004 | .014 | .023 | .004 | .012 | .021 | .E..LDJ |
.E..LD | .008 | .029 | .051 | .006 | .021 | .036 | .004 | .016 | .027 | .004 | .014 | .023 | .004 | .012 | .021 | .E..LD |
.S..GDJ | .015 | .035 | .054 | .011 | .025 | .038 | .008 | .018 | .028 | .007 | .016 | .025 | .007 | .015 | .023 | .S..GDJ |
.S..GD | .015 | .035 | .054 | .011 | .025 | .038 | .008 | .018 | .028 | .007 | .016 | .025 | .007 | .015 | .023 | .S..GD |
.S..HD | .015 | .035 | .055 | .011 | .025 | .039 | .008 | .019 | .029 | .007 | .016 | .025 | .007 | .015 | .023 | .S..HD |
Speeds
Empfohlene Startwerte für Schnittgeschwindigkeiten [m/min]
Werkstoffgruppe | KC422M | KC510M | KCK15 | KC520M | KCPM20 | KC522M | KC725M | KCMP30 | KCPK30 | |||||||||||||||||||
P | 1 | – | – | – | – | – | – | – | – | – | – | – | – | 660 | 580 | 535 | 395 | 345 | 325 | 315 | 275 | 255 | 545 | 475 | 440 | 545 | 475 | 440 |
2 | – | – | – | – | – | – | – | – | – | – | – | – | 410 | 370 | 330 | 330 | 290 | 240 | 260 | 230 | 195 | 335 | 305 | 275 | 335 | 305 | 275 | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | 370 | 330 | 305 | 305 | 255 | 215 | 240 | 205 | 170 | 305 | 275 | 250 | 305 | 275 | 250 | |
4 | – | – | – | 295 | 240 | 200 | – | – | – | – | – | – | 275 | 255 | 230 | 270 | 225 | 180 | 215 | 180 | 145 | 225 | 210 | 190 | 225 | 210 | 190 | |
5 | – | – | – | – | – | – | – | – | – | – | – | – | 330 | 300 | 275 | 225 | 200 | 180 | 180 | 160 | 145 | 310 | 275 | 255 | 310 | 275 | 255 | |
6 | – | – | – | – | – | – | – | – | – | – | – | – | 230 | 200 | 175 | 200 | 150 | 120 | 160 | 120 | 95 | 190 | 165 | - | 190 | 165 | – | |
M | 1 | – | – | – | – | – | – | – | – | – | – | – | – | 270 | 240 | 205 | 245 | 215 | 200 | 205 | 180 | 165 | 250 | 220 | 190 | 250 | 220 | 190 |
2 | – | – | – | – | – | – | – | – | – | – | – | – | 245 | 215 | 190 | 225 | 190 | 160 | 185 | 160 | 130 | 225 | 195 | 170 | 225 | 195 | 170 | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | 195 | 175 | 150 | 170 | 145 | 115 | 140 | 120 | 95 | 175 | 160 | 140 | 175 | 160 | 140 | |
K | 1 | – | – | – | 350 | 315 | 285 | 505 | 460 | 410 | 325 | 295 | 260 | 435 | 390 | 350 | 275 | 250 | 220 | – | – | – | – | – | – | – | – | – |
2 | – | – | – | 275 | 250 | 230 | 400 | 355 | 330 | 255 | 225 | 215 | 345 | 310 | 280 | 215 | 195 | 180 | – | – | – | – | – | – | – | – | – | |
3 | – | – | – | 235 | 205 | 190 | 335 | 300 | 275 | 215 | 190 | 170 | 290 | 255 | 240 | 180 | 160 | 145 | – | – | – | – | – | – | – | – | – | |
N | 1 | 1285 | 1135 | 1050 | 770 | 685 | 630 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – |
2 | 1135 | 1050 | 915 | 695 | 640 | 585 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | |
S | 1 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 50 | 45 | 35 | 45 | 35 | 30 | 45 | 35 | 30 | 45 | 35 | 30 |
2 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 50 | 45 | 35 | 45 | 35 | 30 | 45 | 35 | 30 | 45 | 35 | 30 | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 60 | 50 | 35 | 55 | 45 | 30 | 55 | 45 | 30 | 55 | 45 | 30 | |
4 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 85 | 60 | 45 | 75 | 55 | 35 | 75 | 55 | 35 | 75 | 55 | 35 | |
H | 1 | – | – | – | 190 | 155 | 110 | – | – | – | – | – | – | 170 | 140 | 115 | 145 | 110 | 85 | – | – | – | – | – | – | – | – | – |
2 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – |
Recommended Starting Speeds [SFM]
Werkstoffgruppe | KC422M | KC510M | KCK15 | KC520M | KCPM20 | KC522M | KC725M | KCMP30 | KCPK30 | |||||||||||||||||||
P | 1 | – | – | – | – | – | – | – | – | – | – | – | – | 2170 | 1910 | 1760 | 1300 | 1130 | 1060 | 1030 | 900 | 840 | 1780 | 1560 | 1450 | 1780 | 1560 | 1450 |
2 | – | – | – | – | – | – | – | – | – | – | – | – | 1340 | 1210 | 1090 | 1080 | 950 | 790 | 860 | 760 | 640 | 1100 | 1000 | 900 | 1100 | 1000 | 900 | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | 1210 | 1090 | 1000 | 1000 | 840 | 700 | 790 | 670 | 550 | 1000 | 900 | 820 | 1000 | 900 | 820 | |
4 | – | – | – | 960 | 780 | 660 | – | – | – | – | – | – | 910 | 840 | 760 | 890 | 730 | 590 | 710 | 590 | 470 | 740 | 690 | 620 | 740 | 690 | 620 | |
5 | – | – | – | – | – | – | – | – | – | – | – | – | 1090 | 980 | 900 | 730 | 660 | 590 | 590 | 530 | 470 | 1020 | 910 | 830 | 1020 | 910 | 830 | |
6 | – | – | – | – | – | – | – | – | – | – | – | – | 760 | 660 | 570 | 650 | 490 | 400 | 520 | 400 | 310 | 620 | 540 | – | 620 | 540 | – | |
M | 1 | – | – | – | – | – | – | – | – | – | – | – | – | 880 | 790 | 680 | 800 | 710 | 650 | 670 | 590 | 540 | 820 | 720 | 620 | 820 | 720 | 620 |
2 | – | – | – | – | – | – | – | – | – | – | – | – | 800 | 700 | 620 | 730 | 620 | 520 | 610 | 520 | 430 | 730 | 640 | 550 | 730 | 640 | 550 | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | 640 | 570 | 490 | 550 | 480 | 370 | 460 | 400 | 310 | 570 | 520 | 460 | 570 | 520 | 460 | |
K | 1 | – | – | – | 1150 | 1040 | 940 | 1660 | 1510 | 1340 | 1060 | 960 | 850 | 1420 | 1280 | 1150 | 900 | 820 | 720 | – | – | – | – | – | – | 1160 | 1050 | 940 |
2 | – | – | – | 910 | 820 | 760 | 1310 | 1170 | 1090 | 830 | 740 | 700 | 1130 | 1010 | 920 | 710 | 640 | 590 | – | – | – | – | – | – | 920 | 830 | 760 | |
3 | – | – | – | 770 | 680 | 620 | 1100 | 980 | 900 | 700 | 620 | 560 | 950 | 840 | 780 | 590 | 530 | 480 | – | – | – | – | – | – | 770 | 690 | 640 | |
N | 1 | 4220 | 3720 | 3440 | 2520 | 2240 | 2060 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – |
2 | 3720 | 3440 | 3000 | 2280 | 2100 | 1920 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | |
S | 1 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 160 | 140 | 110 | 140 | 120 | 100 | 140 | 120 | 100 | – | – | – |
2 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 160 | 140 | 110 | 140 | 120 | 100 | 140 | 120 | 100 | – | – | – | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 200 | 160 | 110 | 180 | 140 | 100 | 180 | 140 | 100 | – | – | – | |
4 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | 280 | 200 | 140 | 240 | 180 | 120 | 240 | 180 | 120 | – | – | – | |
H | 1 | – | – | – | 630 | 510 | 360 | – | – | – | – | – | – | 550 | 460 | 370 | 470 | 360 | 280 | – | – | – | – | – | – | – | – | – |
2 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | |
3 | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – |
Anwendungsdaten
Maximalwerte für lineare und spiralförmige Interpolation in das volle Material
Katalognummer | Max. Tauchwinkel | max. Eintauchtiefe | min. Bohrungs- durchmesser (DH min) | min. Flachbohrungs- durchmesser (DH1 min) | max. Flachbohrungs- durchmesser |
32E03R045M16RP12 | 6,0° | 1,65 | 43,95 | 52 | 64 |
40E04R045M16RP12 | 9,0° | 3,50 | 57,24 | 68 | 80 |
32A03R040B32RP12 | 6,0° | 1,65 | 43,95 | 52 | 64 |
32A03R040A32RP12L190 | 6,0° | 1,65 | 43,95 | 52 | 64 |
40A04RS90RP12 | 9,0° | 3,50 | 57,24 | 68 | 80 |
42A04RS90RP12 | 9,6° | 4,20 | 60,68 | 72 | 84 |
50A04RS90RP12 | 10,8° | 6,00 | 76,04 | 88 | 100 |
50A05RS90RP12 | 7,9° | 4,40 | 76,50 | 88 | 100 |
52A05RS90RP12 | 10,2° | 6,00 | 80,05 | 92 | 104 |
63A05RS90RP12 | 7,7° | 6,00 | 102,02 | 114 | 126 |
63A07RS90RP12 | 2,6° | 2,10 | 105,08 | 114 | 126 |
66A06RS90RP12 | 6,6° | 5,50 | 108,14 | 120 | 132 |
80A06RS90RP12 | 5,1° | 5,50 | 136,04 | 148 | 160 |
80A08RS90RP12 | 4,1° | 4,40 | 136,58 | 148 | 160 |
100B07RS90RP12 | 4,0° | 5,70 | 176,04 | 188 | 200 |
100B09RS90RP12 | 3,1° | 4,40 | 176,55 | 188 | 200 |
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