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39NiCrMo3 is a nickel-chromium-molybdenum alloy steel used when a CNC machined part needs high strength, toughness, and reliable heat-treatment response. It is not a general-purpose mild steel. It is usually selected for mechanical parts that carry load, transmit torque, resist repeated stress, or require a stronger core than plain carbon steels can provide. For buyers comparing CNC machining materials, 39NiCrMo3

Learn what 25CrMo4 steel is, how it performs in CNC machining, where it is used, and how it compares with maraging steel for precision machined parts. What Is 25CrMo4 Steel? 25CrMo4 is a chromium-molybdenum alloy steel used when a part needs higher strength and toughness than plain carbon steel can normally provide. In European material systems it is often listed

X12Cr13 is often selected when a CNC machined part needs a balance of moderate corrosion resistance, heat-treatable strength, magnetic response, and acceptable cost. It is not the same type of material as maraging steel, although both can appear in discussions about strong machined steel parts. X12Cr13 belongs to the martensitic stainless steel family, while maraging steel is a low-carbon, high-nickel

X10CrNi18-8 is often selected when a stainless CNC part needs corrosion resistance, elasticity, thin-section strength, or reliable forming history. Maraging steel is selected for a different reason: it gives extremely high strength after aging while remaining relatively machinable before heat treatment. This guide explains both materials from a CNC machining perspective, with attention to part design, material properties, machining risks,

5005 Aluminum is often selected when a part needs light weight, corrosion resistance, clean anodized appearance, and moderate strength rather than extreme load capacity. In CNC machining, it is not usually chosen for heavy structural duty, but it can be a strong option for covers, panels, brackets, housings, decorative components, and precision parts where surface quality matters. This guide explains

36NiCrMo16, also known as 1.6773 or 35NCD16 in some markets, is a nickel-chromium-molybdenum alloy steel designed for quenched and tempered high-strength applications. For CNC machining projects, it is usually selected when the part must combine toughness, fatigue resistance, deep hardenability, and reliable performance in loaded mechanical systems. This guide explains the material in practical manufacturing terms, including composition, properties, part

Learn what X46Cr13 stainless steel is, when it is used for CNC machining, how it compares with maraging steel, and how to manage hardness, surface finish, heat treatment, and inspection risks for custom precision parts. What Is X46Cr13 Stainless Steel? X46Cr13 is a European martensitic stainless steel commonly identified by material number 1.4034. It belongs to the 13% chromium stainless

Learn what X20Cr13 stainless steel is, how it performs in CNC machining, which parts it is used for, and how its machinability compares with maraging steel for precision components. What Is X20Cr13 Stainless Steel? This section builds the material background needed before discussing CNC machining parameters, part design decisions, and the comparison with maraging steel. Understanding the grade first helps

What Is Titanium Grade 3? Titanium Grade 3 is a commercially pure titanium grade used when a part needs better strength than softer pure titanium grades while still keeping excellent corrosion resistance and a clean metallic surface. In CNC machining, it is often selected for components exposed to chemicals, moisture, salt-containing environments, cleaning cycles, or weight-sensitive equipment. It is not

CuCr1Zr is a chromium-zirconium copper alloy used for CNC machined conductive and heat-resistant parts. Learn its composition, properties, applications, machining challenges, and comparison with maraging steel. What Is CuCr1Zr? CuCr1Zr is a precipitation-hardenable copper alloy strengthened mainly by chromium and zirconium. It is also known in many markets as CW106C or C18150, depending on the standard system used by the

20MnCr5 is a chromium-manganese case-hardening steel used when a component needs a hard wear-resistant surface and a tougher core. In CNC machining projects, it is often selected for gears, shafts, sleeves, pins, rollers, couplings, and transmission parts that will be carburized or carbonitrided after machining. Its value does not come from machining alone. The final quality depends on the full

Learn what X30Cr13 stainless steel is, how it performs in CNC machining, where it is used, how it compares with maraging steel, and how to control machining risks, heat treatment and surface quality for precision parts. What Is X30Cr13 Stainless Steel? Before discussing X30Cr13 CNC machining, it is important to define the material clearly. Many engineers see X30Cr13, 1.4028 and

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