| Standard Clay-Graphite Crucible | Graphite flakes combined with refractory clay and aluminosilicate bonding phases | Approximately 1,200–1,400 °C, depending on construction and atmosphere | Good when preheated and handled correctly | Graphite gradually oxidizes in air at elevated temperature; avoid unnecessary open-air holding | Aluminium, copper, brass, bronze and other non-ferrous alloys | Balanced cost, thermal conductivity and general-purpose performance |
| High-Graphite Clay-Graphite Crucible | Higher proportion of natural or synthetic graphite with a reduced ceramic fraction | Approximately 1,200–1,500 °C, subject to grade and furnace conditions | Very good thermal conductivity and rapid heat transfer; avoid sudden temperature changes | More graphite generally means greater sensitivity to oxidation if the surface is exposed to air for long periods | High-throughput aluminium and copper-alloy melting | Faster heating and improved resistance to localized thermal stress |
| Silicon-Carbide-Reinforced Clay-Graphite Crucible | Clay-graphite body reinforced with silicon carbide particles or aggregates | Approximately 1,300–1,600 °C, depending on grade and furnace atmosphere | Very good resistance to abrasion, erosion and repeated heating cycles | Graphite still requires oxidation control; silicon carbide improves durability but does not eliminate oxidation | Copper alloys, brass, bronze, aluminium alloys and demanding non-ferrous foundry service | Longer service potential where mechanical wear and repeated cycling are significant |
| Glazed Clay-Graphite Crucible | Clay-graphite body with a protective ceramic glaze on the external or internal surface | Approximately 1,200–1,400 °C, depending on glaze and crucible grade | Good, provided the glaze is not chipped or subjected to severe thermal shock | The glaze can reduce surface oxidation and metal penetration, but it must remain intact | Aluminium, zinc-containing alloys, copper alloys and applications requiring cleaner release | Improved surface protection and easier cleaning after suitable use |
| Rotary-Furnace Clay-Graphite Crucible | Thicker-wall clay-graphite construction with reinforced rim, base and sidewall geometry | Typically up to about 1,400–1,500 °C, subject to furnace design and loading method | Very good resistance to mechanical vibration and rotating-furnace handling | Use suitable burner adjustment and minimize prolonged direct flame impingement | Large-batch aluminium, copper and brass melting | Better structural support for high-capacity and mechanically demanding operation |
| Lift-Out Clay-Graphite Crucible | Reinforced body designed for tongs, lifting yokes or mechanical handling | Approximately 1,200–1,500 °C, depending on grade and operating cycle | Good when lifting forces are evenly distributed and the crucible is preheated | Protect from direct oxidation during heating, holding and transfer | Batch melting in gas, oil or electric furnaces | Flexible furnace integration and straightforward pouring workflow |