ТТ7К12 · grade
ТТ7К12 SHIP
Properties of the SHIP condition, compared with the other ТТ7К12 tempers.
Pick the pressure-assisted sinter-HIP condition with near-zero porosity when maximum transverse rupture strength and chipping life are needed for heavy interrupted cuts and large tool bodies.
What is ТТ7К12 SHIP?
ТТ7К12 SHIP is ТТ7К12 in the SHIP grade — pick the pressure-assisted sinter-HIP condition with near-zero porosity when maximum transverse rupture strength and chipping life are needed for heavy interrupted cuts and large tool bodies. ТТ7К12 SHIP has a tensile strength of 1,150 MPa (167 ksi), stronger than 90% of ceramic grades. Elongation at break is 0.2% and the elastic modulus is 520 GPa (75.4 Msi). ТТ7К12 SHIP has a density of 13.2 g/cm³ (0.477 lb/in³), heavier than 88% of ceramic grades. It melts at 1,300°C (2,372 °F). VS is the default condition FabDigit quotes; SHIP is available on request or by drawing note.
Advantages
- Tough — resists crack growth — 14.5 MPa·√m (13.2 ksi·√in), better than 97% of ceramic grades
- Ductile — tolerates forming and impact — 0.2%, better than 83% of ceramic grades
- Stiff — 520 GPa (75.4 Msi), better than 81% of ceramic grades
Limitations
- Needs corrosion protection — 45/100, worse than 90% of ceramic grades
- Heavy — 13.2 g/cm³ (0.477 lb/in³), worse than 88% of ceramic grades
- High embodied carbon — 28 kg CO₂/kg, worse than 83% of ceramic grades
ТТ7К12 SHIP properties
Typical room-temperature values for ТТ7К12 SHIP — 6 properties are specific to this condition; the rest are grade-level values shared by every ТТ7К12 temper. Each bar shows where the value sits among the ceramic grades in FabDigit's library — further right is higher.
Physical3
ТТ7К12 SHIP has a density of 13.2 g/cm³ (0.477 lb/in³), heavier than 88% of ceramic grades. It melts at 1,300°C (2,372 °F).
Mechanical12
ТТ7К12 SHIP has a tensile strength of 1,150 MPa (167 ksi), stronger than 90% of ceramic grades. Elongation at break is 0.2% and the elastic modulus is 520 GPa (75.4 Msi).
Thermal5
ТТ7К12 SHIP is rated for continuous service to 800°C (1,472 °F). It conducts heat at 30 W/m·K (17.3 BTU/hr·ft·°F), better than 60% of ceramic grades. Thermal expansion is 6.5 µm/m·K (3.61 µin/in·°F).
Electrical1
ТТ7К12 SHIP has an electrical resistivity of 2×10⁻⁷ Ω·m.
Chemical & Environmental2
Corrosion resistance is fair (45/100), worse than 90% of ceramic grades.
Sustainability4
Producing a kilogram of ТТ7К12 SHIP takes about 320 MJ of energy and emits 28 kg of CO₂ — more than 77% of ceramic grades. Typical recycled content is 25%.
Manufacturability3
ТТ7К12 SHIP's machinability is not recommended (5/100, worse than 58% of ceramic grades).
Values are nominal handbook figures for design screening. Certified mill or lot data ships with every FabDigit order on request.
Other ТТ7К12 tempers and conditions
ТТ7К12 is also supplied in 2 other conditions. The full side-by-side table is on the ТТ7К12 overview.
- VSDefaultUse the conventional vacuum liquid-phase sintered blank or insert as the general choice for heavy-duty steel turning and planing.1,200 HV
- SHIPPick the pressure-assisted sinter-HIP condition with near-zero porosity when maximum transverse rupture strength and chipping life are needed for heavy interrupted cuts and large tool bodies.1,230 HV
Working with ТТ7К12 SHIP
Is ТТ7К12 easy to machine?
Shaping after sintering is limited to diamond wheel grinding, EDM or laser machining; conventional cutting tools cannot be used, and grinding needs generous coolant to avoid thermal cracking.
Can ТТ7К12 be welded?
Not fusion weldable; braze to steel bodies with silver-copper fillers (Ag-Cu-Zn, BAg-1) by vacuum or induction brazing, controlling the heating rate to limit thermal stress.
Can ТТ7К12 be formed, bent or molded?
Powder pressing or extrusion followed by vacuum liquid-phase sintering at about 1450 °C; linear shrinkage is roughly 18–20% and compacts must be sized for it.
What surface finishes work on ТТ7К12?
Diamond lapping and polishing gives a mirror finish; CVD/PVD coatings (TiCN, Al₂O₃, TiAlN) increase wear resistance. Electroplating and anodising are not applicable.
ТТ7К12 chemical composition (wt %)
Limits by weight percent from the governing specification, written the way the spec states them — a single maximum for impurities, a range for alloying elements, and the base element as balance. Nominal is the typical mid-range value.
| Element | Spec limit (wt %) | Nominal |
|---|---|---|
| Cobinder phase | 11 – 13 | 12 |
| TiCTiC + TaC total about 7 % | 3 – 5 | 4 |
| TaCincludes a small amount of NbC | 2 – 4 | 3 |
| WC | balance | — |
ТТ7К12 SHIP — frequently asked
What is ТТ7К12 SHIP used for?
ТТ7К12 SHIP is typically used for heavy roughing of steel/forgings, impact-resistant tooling and mining and construction tools. In short: toughest steel-cutting carbide; triple-carbide shock grade; roughing over speed.
What is the tensile strength of ТТ7К12 SHIP?
ТТ7К12 SHIP has a typical tensile strength of 1,150 MPa (167 ksi) — stronger than 90% of ceramic grades. Strength varies by condition: see the 3 listed tempers.
Is ТТ7К12 SHIP easy to machine?
Not especially — machinability is rated not recommended (5/100, worse than 58% of ceramic grades). Shaping after sintering is limited to diamond wheel grinding, EDM or laser machining; conventional cutting tools cannot be used, and grinding needs generous coolant to avoid thermal cracking.
Can ТТ7К12 SHIP be welded?
Not fusion weldable; braze to steel bodies with silver-copper fillers (Ag-Cu-Zn, BAg-1) by vacuum or induction brazing, controlling the heating rate to limit thermal stress.
What surface finishes work on ТТ7К12 SHIP?
Diamond lapping and polishing gives a mirror finish; CVD/PVD coatings (TiCN, Al₂O₃, TiAlN) increase wear resistance. Electroplating and anodising are not applicable.
Can ТТ7К12 SHIP be formed, bent or molded?
Powder pressing or extrusion followed by vacuum liquid-phase sintering at about 1450 °C; linear shrinkage is roughly 18–20% and compacts must be sized for it.
What is the maximum service temperature of ТТ7К12 SHIP?
ТТ7К12 SHIP is rated for continuous use to about 800°C (1,472 °F). Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.
Sources
- ГОСТ 3882 Сплавы твердые спеченные — марки — Госстандарт (1974)
- ASM Handbook Vol. 2 — Properties of Cemented Carbides — ASM International (1990)
Property data is compiled from published supplier and standards handbooks and normalised for comparison. Nothing on this page is a certification — request mill certs, CoC or material test reports with your order.
