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KOMPOSISI AMALGAM Endanus Harijanto
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Amalgam Alloy Composition
ANSI/ADA Spec. #1 (ISO 1559) requires that amalgam alloys be predominantly silver (Ag) and tin (Sn). containing Zn > 0.01% “Zinc Containing” containing Zn < 0.01% “nonzinc”
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Classification Low-copper (Conventional) amalgam alloy
(at least 65 wt% Ag, 29 wt% Sn, < 6 wt% Cu) lathe-cut (irregular) powder or spherical particles or mixed Ag-Sn High-copper amalgam alloy (6-60 wt% Cu) (1) Admixed (Ag-Sn + Ag-Cu) A mixture of irregular and spherical particles of different or same composition (2) Unicomposition or Single composition (Ag-Sn-Cu) All spherical particles
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Classification Admixed amalgams containing 10% to 15% indium (In) in the mercury Newly developed Decreases the amount of Hg needed decreases the Hg vapor during and after setting Low creep and lower early-compressive strengths, but higher final strengths
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Composition
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Lathe-cut v.s. Spherical
Irregular or Lathe-cut Spherical
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Phases in Amalgam Alloys and Set Dental Amalgams
Symbols of Phases Phases in Amalgam Alloys and Set Dental Amalgams Formula g Ag3Sn g1 Ag2Hg3 g2 Sn7-8Hg b Ag4Sn (silver-rich) e Cu3Sn h Cu6Sn5 Silver-copper eutectic Ag-Cu
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Silver-Tin (Ag-Sn) System (1)
Most commercial alloys fall within the limited composition range of B to C. (b + g) and g If Sn > 26.8 wt% g + Sn-rich phase is formed. Sn-Hg phase (g2) in the final product which lacks corrosion resistance and is the weakest component.
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Silver-Tin (Ag-Sn) System (2)
4 wt% to 5 wt% Cu is substituted for Ag. Hardens and strengthens the Ag-Sn alloy Zinc = Deoxidizer: a scavenger (O2) during melting formation of oxides Can cause an abnormal expansion if the amalgam is condensed in the presence of moisture.
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