grain refining master alloy
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Aluminum Silicon Master Alloy (Waffle) (Model: AlSi12, AlSi20, AlSi30, AlSi50)
MODEL SI% BALANCE SHAPE AlSi12 12 Auminum piglet, waffle AlSi13 13 Auminum piglet, waffle AlSi20 20 Auminum piglet, waffle AlSi30 30 Auminum waffle AlSi40 40 Auminum waflfe AlSi50 50 Auminum waffle Application: Used for the Si element additive or grain refining of aluminum alloys in the course of smelting with low temperature and accurate composition control. Package and Storage: Appearance: white metal. Waffle: 7-9kg/waffle, 1mt/pallet. Piglet: 250g/pc, 25kg/carton, 1mt
Aluminum Titanium Boron (Coil) (Model: AlTi5B1, AlTi3B1, AlTi5B0.2)
Products Al-Ti-B Master Alloy (Chemical Composition %) Ti B Fe Si V Impurities (total) Al AlTi5B1 4.5-5.5% 0.8-1.2% 0.30%max 0.20%max 0.20%max 0.10%max Balance AlTi5B0.2 4.5-5.5% 0.15-0.25% 0.30%max 0.20%max 0.20%max 0.10%max Balance AlTi3B1 2.5-3.5% 0.8-1.2% 0.30%max 0.20%max 0.20%max 0.10%max Balance 1. Properties Features (1) A lot of dispersed TiB2, TiAl3, AlB2 and TiC corpuscles with high melting point are produced in the molten Aluminum as foreign crystalline cores when
Aluminum Boron Master Alloy (Model: AlB3, AlB5)
1.Properties & Application: (1). Boron content: 2.53.5% for AlB3, 4.55.5% for AlB5, 7.58.5% for AlB8 . Used for adding boron element to Al alloy or grain refining of pure aluminum or aluminum alloy in the course of smelting. (2). A lot of dispersed AlB2 corpuscles with high melting point are produced in the process as foreign crystalline cores when these corpuscles coagulate, notably refining the crystalline configuration of the cast ingots, improving the mechanic,
Aluminum Titanium Boron (Stick) (Model: AlTi5B1, AlTi3B1, AlTi5B0.2)
Products Al-Ti-B Master Alloy (Chemical Composition %) Ti B Fe Si V Impurities (total) Al AlTi5B1 4.5-5.5% 0.8-1.2% 0.30%max 0.20%max 0.20%max 0.10%max Balance AlTi5B0.2 4.5-5.5% 0.15-0.25% 0.30%max 0.20%max 0.20%max 0.10%max Balance AlTi3B1 2.5-3.5% 0.8-1.2% 0.30%max 0.20%max 0.20%max 0.10%max Balance 1. Properties Features (1) A lot of dispersed TiB2, TiAl3, AlB2 and TiC corpuscles with high melting point are produced in the molten Aluminum as foreign crystalline cores when