| 50% Alumina | 48–55% | 2.20–2.35 | Approximately 1,450–1,550°C | General furnace linings, furnace doors, backup linings, non-ferrous melting units, and moderate-temperature repairs | Balanced cost, workability, thermal insulation, and resistance to routine abrasion | Not the preferred choice for severe slag attack, intense abrasion, or continuous temperatures above its design range |
| 60% Alumina | 58–65% | 2.30–2.50 | Approximately 1,550–1,650°C | Boiler areas, heat-treatment furnaces, kiln zones, incinerators, and moderate-duty burner surrounds | Higher refractoriness and better abrasion resistance than medium-alumina grades | Requires controlled water addition and proper dry-out to limit cracking and explosive spalling |
| 70% Alumina | 68–75% | 2.45–2.65 | Approximately 1,600–1,700°C | High-temperature furnace walls, rotary kiln transition areas, industrial boilers, and abrasion-prone linings | Good combination of hot strength, abrasion resistance, and thermal stability | Higher density increases heat storage and may increase structural load compared with insulating castables |
| 80% Alumina | 78–85% | 2.60–2.85 | Approximately 1,700–1,800°C | Steel reheating furnaces, ladle impact zones, high-wear floors, burner quarls, and severe abrasion locations | High hot strength, improved resistance to slag penetration, and strong wear performance | Usually costs more and demands careful mixing, vibration or placement, curing, and staged dry-out |
| 90% Alumina | 88–95% | 2.85–3.05 | Approximately 1,750–1,850°C | Critical hot-face linings, high-temperature kiln furniture supports, steel-treatment equipment, and severe chemical or mechanical attack zones | Very high refractoriness, strong abrasion resistance, and relatively low impurity content when specified correctly | High material cost, high thermal mass, and greater sensitivity to installation defects and thermal shock |
| Low-Cement High Alumina | 60–90%, depending on grade | 2.45–3.00 | Approximately 1,600–1,800°C | Steel ladles, burner blocks, kiln linings, high-wear transfer areas, and monolithic repairs requiring high strength | Lower porosity and higher strength than conventional castables when correctly installed | Less forgiving of excess water, poor vibration, inadequate curing, and rapid heating |
| Ultra-Low-Cement High Alumina | 70–95%, depending on grade | 2.60–3.10 | Approximately 1,700–1,850°C | Severe-duty steelmaking zones, impact pads, slag lines, high-temperature burner areas, and dense hot-face linings | Very low open porosity, high mechanical strength, and improved resistance to penetration and erosion | Requires experienced installation and a carefully controlled drying schedule to avoid steam-related damage |
| Low-Cement or Insulating High Alumina | 50–80% | 1.60–2.30 | Approximately 1,300–1,650°C | Backup linings, furnace roofs, heat shields, kiln insulation layers, and areas where reduced heat loss is important | Lower thermal conductivity and reduced heat storage compared with dense castables | Lower resistance to direct impact, abrasion, molten-metal contact, and aggressive slag attack |