Technical machining guide for Beryllium Copper C17200 (Precipitation-Hardenable Copper Alloy): optimal cutting speeds (60 - 120 m/min), feeds (0.05 - 0.12 mm/tooth), hardness (38-44 HRC), and precision manufacturing practices.
Technical machining guide for Brass C36000 (Free-Cutting) (Leaded Free-Cutting Brass): optimal cutting speeds (200 - 600 m/min), feeds (0.10 - 0.30 mm/tooth), hardness (65-80 HRB), and precision manufacturing practices.
Technical machining guide for Oxygen-Free High Conductivity Copper (C10100) (Pure Electronic Copper (99.99%)): optimal cutting speeds (80 - 180 m/min), feeds (0.05 - 0.15 mm/tooth), hardness (40-60 HB), and precision manufacturing practices.
Technical machining guide for Nitronic 60 (UNS S21800) (Austenitic Anti-Galling Stainless): optimal cutting speeds (40 - 70 m/min), feeds (0.06 - 0.14 mm/tooth), hardness (200-240 HB), and precision manufacturing practices.
Technical machining guide for 17-4 PH Stainless Steel (Condition H900 / H1150) (Precipitation-Hardening Stainless): optimal cutting speeds (60 - 110 m/min), feeds (0.06 - 0.16 mm/tooth), hardness (33-44 HRC), and precision manufacturing practices.
Technical machining guide for Tool Steel D2 (Cold Work Die Steel) (High-Carbon High-Chromium Cold Work Steel): optimal cutting speeds (35 - 70 m/min), feeds (0.04 - 0.10 mm/tooth), hardness (58-62 HRC (Hardened)), and precision manufacturing practices.
Technical machining guide for Tool Steel H13 (Hot Work Die Steel) (Chromium-Molybdenum Hot Work Steel): optimal cutting speeds (50 - 90 m/min), feeds (0.05 - 0.12 mm/tooth), hardness (46-52 HRC (Pre-hardened)), and precision manufacturing practices.
Brass C36000 (Free-Cutting Brass) is the global benchmark alloy for micro-scale turning and high-speed machining, delivering 100% machinability rating, excellent thermal conductivity, and burr-free microscopic finishes.
Aluminum 6061-T6 is a precipitation-hardened wrought alloy offering balanced machinability, high strength-to-weight ratio, excellent thermal conductivity, and superior surface finishing characteristics.