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2026-01-15
RDMW/RDET R5R6 Rounded Corner Milling Inserts—Material Machining
Lizhou RDMW/RDET R5R6 rounded-corner milling inserts, suitable for materials such as steel, stainless steel, and die steel. Available in multi-groove designs with optional coatings, these inserts offer excellent wear resistance, chipping resistance, and smooth chip evacuation. They ensure more stable profiling and contour machining, reducing downtime and rework.
2026-01-13
CCMT/CNMG Turning Inserts Carbide Tungsten Steel CNC Cutting Blades
Lizhou CCMT and CNMG turning inserts are suitable for machining steel, stainless steel, and cast iron. They feature enhanced chipping resistance, more stable tool life, and smooth chip evacuation. These inserts support multi-groove designs and can be supplied in bulk quantities.
2026-01-09
LBC15S Carbide Round Bars—General-Purpose Cutting and Wear-Resistant Substrate
The LBC15S cemented carbide round bar features a tungsten-cobalt alloy matrix with a high-cobalt formulation of approximately 10%. It is produced via dry bag isostatic pressing, striking an optimal balance between hardness and toughness. This round bar is ideal for manufacturing cutting tools, die components, and wear-resistant parts, making it a versatile choice with broad applicability and high stability.
2026-01-09
LBC12 / LBC12S Carbide Round Bars—Stainless Steel Machining Base Material
The LBC12 and LBC12S cemented carbide round bars are manufactured using high-quality raw materials and a dry bag isostatic pressing process, resulting in a dense and stable microstructure. The LBC12 offers a balance of wear resistance and impact toughness, making it suitable for machining hardened steels with an HRC rating of 50 or higher. The LBC12S boasts even higher impact toughness, delivering more stable performance when machining stainless steels and titanium alloys, and is ideally suited for the production of long-life cutting tools.
2026-01-09
LBC09 Carbide Round Bars—Tungsten Steel Round Bar Substrates for High-Hardness Tool Materials
LBC09 cemented carbide round bars are made from ultrafine-grain materials and produced using a dry bag isostatic pressing process. The resulting matrix is dense and stable, offering both high hardness and toughness, making it ideal as a substrate for solid cemented carbide end mills and other cutting tools. These bars can be used for high-speed machining of hardened steels and a variety of difficult-to-machine materials, helping to extend tool life and improve machining stability.