| Standard clay-graphite | Approximately 25–40% by mass | About 1,200–1,400 °C, depending on design and atmosphere | Good when preheated correctly | Basic glaze or protective coating; graphite must be shielded from prolonged air exposure | Aluminum, copper, brass, and other nonferrous alloys | Low to medium; sensitive to overheating, impact, and rapid temperature changes | 1.00 × baseline | High for intermittent, moderate-duty melting |
| High-density clay-graphite | Approximately 30–50% by mass | About 1,300–1,500 °C, depending on formulation and furnace conditions | Very good; lower porosity helps reduce penetration and cracking | Usually supplied with a more protective glaze or coating | Frequent aluminum, copper, brass, and bronze production | Medium to high under controlled charging and heating | 1.20–1.60 × baseline | Very high when reduced replacement frequency matters |
| Silicon-carbide-reinforced clay-graphite | Graphite and silicon-carbide content varies by formulation | About 1,400–1,600 °C in suitable furnace conditions | Excellent; designed for repeated heating and cooling cycles | Typically uses a high-temperature coating; oxidation control remains necessary | High-throughput aluminum, copper alloys, brass, and bronze | High under continuous or demanding production conditions | 1.50–2.20 × baseline | High for high utilization and severe thermal cycling |
| Heavy-wall production crucible | Formulation varies; generally optimized for mechanical strength | Usually about 1,200–1,500 °C, subject to the manufacturer’s rating | Very good after gradual drying and preheating | Coating quality and furnace atmosphere are critical | Large-batch nonferrous melting where physical handling loads are high | Medium to high; added mass increases heat-up time | 1.30–1.90 × baseline | High when impact resistance and service life are priorities |
| Small-capacity laboratory crucible | Approximately 20–40% by mass | About 1,100–1,400 °C, depending on size and furnace type | Good because of the small thermal mass; still requires gradual heating | Protective coating recommended for repeated use | Small samples of aluminum, copper, brass, and precious-metal alloys | Low to medium; small dimensions make handling damage more likely | 0.60–1.10 × baseline | High for testing, sampling, and low-volume work |