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Database: 365,228(8 Aug 2026)

liquidus temperature

liquidus temperature, Total:28 items.

The international standard classification for "liquidus temperature" includes: Glass in general , Chemical analysis of metals .

The Chinese standard classification for "liquidus temperature" includes: Ceramic and glass in general , Metal physical property test method .


General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 6526-1986 Self-fluxing alloy powders--Determination of solidus-liquidus temperature range
  • GB/T 44753-2024 Test method for liquidus temperature of ultra-thin glass

Professional Standard - Non-ferrous Metal

  • YS/T 533-2025 Determination of solidus-liquidus temperature range for self-fluxing alloy powder
  • YS/T 533-2006 Self-fluxing alloy powders-Determination of solidus-Liquidus temperature range

Society of Automotive Engineers (SAE)

  • SAE AMS4787F-2000 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au 18Ni, 1740°F (949°C) Solidus-Liquidus Temperature
  • SAE AMS4787G-2017 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au 18Ni, 1740°F (949°C) Solidus-Liquidus Temperature
  • SAE AMS4787C-1990 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni 1740°F (949°C) Solidus-Liquidus Temperature (UNS P00820)
  • SAE AMS4787B-1984 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni@ 1740°F (950°C) Solidus-Liquidus Temperature (UNS P00820)
  • SAE AMS4787D-1992 Gold-Nickel Alloy Brazing Filler Metal@ High Temperature 82Au - 18Ni 1740 Degrees F (949 Degrees C) Solidus- Liquidus Temperature
  • SAE AMS4787A-1978 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni 1740°F (950°C) Solidus-Liquidus Temperature (UNS P00820)
  • SAE AMS4787C Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787F Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787E-1999 Gold-Nickel Alloy@ Brazing Filler Metal@ High Temperature 82Au - 18Ni 1740 Degrees F (949 Degrees C) Solidus-Liquidus Temperature (UNS P00820)
  • SAE AMS4787G Gold-Nickel Alloy, Brazing Filler Metal, High Temperature 82Au - 18Ni 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787H-2022 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature 82Au - 18Ni 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787H Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787B Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787F-2008 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature 82Au - 18Ni 1740 °F (949 °C) Solidus-Liquidus Temperature
  • SAE AMS4787A Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au - 18Ni, 1740 °F (949 °C) Solidus-Liquidus Temperature

American Society for Testing and Materials (ASTM)

  • ASTM C829-81(2015) Standard Practices for Measurement of Liquidus Temperature of Glass by the Gradient Furnace Method
  • ASTM C829-81(2022) Standard Practices for Measurement of Liquidus Temperature of Glass by the Gradient Furnace Method
  • ASTM C829-81(2000) Standard Practices for Measurement of Liquidus Temperature of Glass by the Gradient Furnace Method
  • ASTM C829-81(1995)e1 Standard Practices for Measurement of Liquidus Temperature of Glass by the Gradient Furnace Method
  • ASTM C1720-21 Standard Test Methods for Determining Liquidus Temperature of Waste Glasses and Simulated Waste Glasses
  • ASTM C1720-17 Standard Test Method for Determining Liquidus Temperature of Waste Glasses and Simulated Waste Glasses
  • ASTM C1720-17e1 Standard Test Method for Determining Liquidus Temperature of Waste Glasses and Simulated Waste Glasses
  • ASTM C1720-11e1 Standard Test Method for Determining Liquidus Temperature of Immobilized Waste Glasses and Simulated Waste Glasses