Material Profile: Cobalt-Chrome (CoCrMo, ASTM F75) for Binder Jetting
Binder Jetting Engineering Material Technical Report Series
Compiled from manufacturer technical datasheets and peer-reviewed literature
Abstract—Cobalt-chromium-molybdenum (CoCrMo, ASTM F75) is a biocompatible, wear-resistant, high-temperature superalloy used predominantly for orthopaedic and dental implants and gas-turbine components. It was qualified on the Desktop Metal Shop System as one of the first medical-targeted binder-jet alloys, enabling cost-effective production of patient-specific implants and dental crowns at much lower cost than laser PBF. The HCP ε-Co matrix provides exceptional wear resistance (the metal-on-metal hip joint baseline), while the 27–30 wt% Cr content provides corrosion resistance superior to even 316L stainless steel in body fluids. As-sintered binder-jet CoCrMo achieves UTS ≈ 900 MPa and yield ≈ 600 MPa; HIP at 1200 °C / 100 MPa is mandatory for fatigue-critical implants, raising UTS to ≈ 1100 MPa.
Index Terms—additive manufacturing, binder jetting, cobalt chrome, CoCrMo, ASTM F75, biomedical, dental, orthopaedic implant.
I. MATERIAL IDENTIFICATION
This section establishes the canonical names and commercial designations under which the material is supplied.
A. Designation
Trade names: Desktop Metal Cobalt Chrome (Shop System); ExOne CoCr; Digital Metal DM CoCr. Wrought / cast equivalents: ASTM F75-18 (cast CoCrMo for surgical implants), ASTM F1537 (wrought low-carbon CoCrMo), ASTM F1241 (CoCr for dental). UNS R30075. Common trade names: Vitallium®, Stellite® 21.
B. Full Chemical Name
Cobalt-chromium-molybdenum HCP/FCC dual-phase superalloy. Composition (wt%, ASTM F75): Cr 27.0–30.0, Mo 5.0–7.0, Ni ≤ 1.0, Fe ≤ 0.75, C 0.35 max (or ≤ 0.05 for low-carbon F1537), Mn ≤ 1.0, Si ≤ 1.0, W ≤ 0.20, P ≤ 0.020, S ≤ 0.010, N ≤ 0.25, Co — balance. Primary phase: HCP ε-Co at room temperature; transforms to FCC γ-Co above ~ 970 °C (martensitic-like transformation on cooling).
C. Aliases and Alternative Designations
|
Alias |
Origin / Usage |
|
CoCr / CoCrMo |
Cobalt-chromium-molybdenum shorthand |
|
UNS R30075 / R31537 |
Unified Numbering System (cast / wrought) |
|
ASTM F75 |
Cast CoCrMo for surgical implants |
|
ASTM F1537 |
Wrought low-carbon CoCrMo |
|
Vitallium® |
Original 1932 cobalt-chrome trademark (Stryker) |
|
Stellite® 21 |
Wear-resistant variant |
II. COMPOSITION AND MOLECULAR STRUCTURE
A. Empirical Chemical Formula
Co(balance, ≈ 60–65%) — Cr(27–30%) — Mo(5–7%) — minor (Ni, Mn, Si, C, Fe, W). Primary phase: HCP ε-Co + FCC γ-Co dual; carbides M₆C (CoMo₂C) and M₂₃C₆ (Cr-rich) at grain boundaries.

Fig. 1. Repeating unit / structural schematic of the polymer matrix.

Fig. 2. Schematic of the single-phase polymer (no reinforcement).
B. Composition Breakdown
TABLE I
COMPOSITIONAL BREAKDOWN OF COBALT-CHROME (DESKTOP METAL SHOP SYSTEM) (TYPICAL / PER SUPPLIER DATASHEET)
|
Constituent |
Mass fraction |
Function |
|
Cobalt (matrix) |
≈ 60–65 wt% (balance) |
HCP ε-Co + FCC γ-Co dual-phase; wear and biocompatible backbone |
|
Chromium |
27.0–30.0 wt% |
Cr₂O₃ passive layer; chloride-immune in body fluids |
|
Molybdenum |
5.0–7.0 wt% |
Solid-solution strengthening; pitting resistance; carbide formation |
|
Carbon |
≤ 0.35 wt% (cast) / ≤ 0.05 wt% (wrought) |
Forms carbides; controls hardness vs ductility trade-off |
|
Other (Ni, Mn, Si, Fe, W) |
≤ 4 wt% combined |
Trace; controlled to ensure biocompatibility |
|
Total |
100 wt% |
— |
III. MECHANICAL PROPERTIES — XY BUILD DIRECTION (HORIZONTAL)
In the XY orientation the tensile load is applied parallel to the powder-bed plane. Binder-jetted (BJ) parts in the as-sintered state generally show modest in-plane vs build-axis anisotropy because sintering occurs near the solidus and re-distributes the porosity left by the binder-removal step. For metal BJ, post-sintering treatments (HIP, solution-anneal, age) are commonly applied to bring properties to wrought-equivalent and to eliminate residual closed porosity.
TABLE II
MECHANICAL PROPERTIES — XY ORIENTATION (COBALT-CHROME (DESKTOP METAL SHOP SYSTEM))
|
Property |
Value (XY) |
Test method / source |
|
Density (sintered) |
≈ 8.30 g/cm³ (~98 % theoretical) |
ASTM B962 |
|
Density (HIP'd) |
≈ 8.40 g/cm³ (~99.5 %) |
ASTM B962 after HIP |
|
Tensile strength, UTS — as-sintered |
≈ 900 MPa |
ASTM E8 / ASTM F75 |
|
Tensile strength, UTS — HIP'd |
≈ 1100 MPa |
ASTM E8 |
|
Yield strength (Rp 0.2 %), as-sintered |
≈ 600 MPa |
ASTM E8 |
|
Yield strength (Rp 0.2 %), HIP'd |
≈ 670 MPa |
ASTM E8 |
|
Tensile (Young's) modulus |
≈ 230 GPa |
ASTM E111 — high modulus typical of Co alloys |
|
Elongation at break, as-sintered |
≈ 12 % |
ASTM E8 |
|
Elongation at break, HIP'd |
≈ 15 % |
ASTM E8 |
|
|