CoreLine – Thread milling insert – GZG GZG M MF 60° NT APMX INSL S W1 R/L R/L Ti500 Ti500 Solid carbide Solid carbide IH IH INSL TP W1 APMX S NT 50 887 ... 50 885 ... mm mm mm mm mm 14,5 0,50 10,0 13,50 3,18 28 50885350 0,75 10,0 13,50 3,18 19 50885352 1,00 10,0 13,00 3,18 14 50887304 50885354 1,25 10,0 12,50 3,18 11 50885356 1,50 10,0 12,00 3,18 9 50887308 50885358 1,75 10,0 12,25 3,18 8 50885360 2,00 10,0 12,00 3,18 7 50887312 50885362 2,50 10,0 10,00 3,18 5 50885364 2,50 10,0 10,00 3,18 5 50885366 1) 15,0 3,00 10,5 12,00 3,18 5 50885370 2) 3,50 10,5 10,50 3,18 4 50885372 2) 21,0 1,00 10,0 19,00 3,18 20 50885380 1,50 10,0 19,50 3,18 14 50885382 1,50 10,0 18,00 3,18 13 50887320 2,00 10,0 18,00 3,18 10 50885384 26,0 1,50 15,0 24,00 5,0 17 50885390 2,00 15,0 24,00 5,0 13 50885392 3,00 15,0 21,00 5,0 8 50885396 3,50 15,0 20,00 5,0 7 50885398 4,00 15,0 20,00 5,0 6 50885400 P ● ● M ● ● K ● ● N ● ● S H O 1) M20x2,5 – profile corrected 2) Without chamfer → Here you will find the cutting data standard values. 142 → Here you will find the formulas for calculating the cutting data. 148 When calculating the feedrate for circular milling it is important to know whether contour feed vf or feed on the center path vfm is used. Circular and Thread Milling GZG
Tooling a Sustainable Future
eCatalog 2026 - EN-INT
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