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Materiale per la prototipazione: acciaio

Investment Casting and CNC Milling

Below are the characteristics of the most common steels used for small production runs through steel investment casting:

  • C40 (for simple mechanical design);
  • C45 (for medium-stress mechanical constructions);
  • AISI 304 (for constructions requiring good mechanical and chemical resistance);
  • AISI 316 (for constructions requiring excellent mechanical and chemical resistance);
  • WCB (for objects under significant pressure and temperature stress);

and many others…

Average Data for Steel Casting Materials

In prototyping, the combination of material and manufacturing technique for steel structure design is one of the most complex choices. Creating a prototype almost always requires evaluations, so for technical purposes, we provide the average characteristics of materials obtained through prototype construction. These can be used to get an idea of technical and functional compliance.

Appliance
  • Grids
  • Caps
  • Knobs
  • Burners
  • Wok Supports
  • Tanks
  • Distributors
  • Shut-off valves
  • Control valves
  • Pump body
  • Motor lantern
  • Nozzles
  • Valves
  • Grinders
  • Open Impellers
  • Closed Impellers
  • Single-channel Impellers
  • Diffusers
  • Circulators
  • Supports
  • Motor shields
  • Inverter boxes
  • Casings
  • Finned masses
  • Street lamps
  • Racing components
  • Aluminum frames
  • Engine cylinders
  • Cylinder heads
  • Brake calipers
  • Clutch cases
  • Engine cases
  • Gearboxes
  • Frame elements
  • Forks
CATEGORIES CORRESPONDING STANDARDS CHEMICAL ANALYSIS MECHANICAL PROPERTIES
UNI AISI C% Mn% Si% Cr% Ni% Mo% R N/mm² Rs N/mm² A% min. Hardness
CASE HARDENING STEELS C10 1010 0.07÷0.12 0.3÷0.7 <1,00 (490) (883) (=294) (12) HRC 55-62
18NiCrMo5 0.15÷0.21 0.6÷0.9 <1,00 0.7÷1.0 1.2÷1.5 0.15÷0.25 (1230) (1520) (=980) (8) HRC 55-65
QUENCHED AND TEMPERED STEELS C40 1040 0.37÷0.44 0.5÷0.8 <1,00 (700) (840) (=490) (15) HRC 205-245
39NiCrMo15 0.30÷0.38 0.3÷0.8 <0,75 1.5÷1.8 3.5÷4.0 0.2÷0.4 (1717) (1962) (=1275) (7) HRC 50-55
BEARING STEELS 100Cr6 52100 0.95÷1.10 0.3÷0.5 <0,75 1.4÷1.65 HRC =60
STAINLESS STEELS X5CrNi1810 304 <0,08 <1,50 <2,00 18÷21 8÷11 481 min. 206 min. 35 HRB 90max
X2CrNi1811 304L <0,03 <1,50 <2,00 17÷21 8÷12 446 min. 192 min. 35 HRB 86max
X5CrNiMo1712 316 <0,08 <1,50 <2,00 18÷21 9÷12 2÷3 481 min. 206 min. 30 HRB 90max
X2CrNiMo1712 316L <0,03 <1,50 <1,50 17÷21 9÷13 2÷3 481 min. 206 min. 30 HRB 86max
X12Cr13 410 0.05÷0.15 <1,00 <1,50 11.5÷14 <1,00 <0,50 652 min. 515 min. 8 HRB 90-140
X30Cr13 420 0.2÷0.4 <1,00 <1,50 11.5÷14 <1,00 <0,50 (785) (980) (590) min. (12) HRC 21-30
X8Cr17 430 <0,1 <1,00 <1,00 16÷18 (440) (640) (245) min. (18) HB 192max

Scroll right to view the entire table.

Types of Steel

There are various types of steel, each with specific properties that make them more suitable for certain industrial uses. In prototyping and custom component production, it’s essential to choose the most suitable alloy based on mechanical strength, workability, vibration absorption, and tensile behavior. Here’s a list of the main types of steel with their fundamental technical characteristics.

Stainless Steelcharacteristics and applications of stainless steel

Bearing Steelscharacteristics and applications of bearing steels

Case Hardening Steelcharacteristics and applications of case hardening steel

Quenched and Tempered Steelscharacteristics and applications of quenched and tempered steels

Case study

Discover how we transform ideas into functional industrial components through prototyping.