Lecture 4 Flashcards

1
Q

Gamma (unreacted)

A

is the strongest phase – gamma 2 is weakest phase.

In low copper, you have Ag3SN – gamma 2 is SnHg.

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2
Q

Gamma 2 has an

A

interconnected framework – it is a mesh. If you have corrosion at the surface, it will be within the restoration as well.

Has high creep (permanent deformation over constant cyclic loading). Creep causes flash, which starts to chip.

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3
Q

Copper replaces

A

Sn, reduces amount of gamma 2 tremendously

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4
Q

N’ – etta prime

A

Much stronger, prevents sliding of gamma 1, minimizes creep and marginal breakdown.

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5
Q

More mercury is

A

more expansion

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6
Q

Zn forms a

A

hydrogen gas when in contact with water

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7
Q

Sulfides and chlorides are what

A

discolor teeth by amalgams

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8
Q

Seal smear layer, use varnish

A

otherwise it will continue to release fluids

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9
Q

Varnish/resin

A

disintegrates after awhile, so etta prime corrosion fills it in.

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10
Q

Wedging

A

compensates for thickness of bands

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11
Q

Lathe cut (irregular shavings of Ag3-Sn)

A

low packing density: more spaces
 higher condensation forces required
tight contact
 higher surface area: more Hg & more expansion 

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12
Q

Spherical (spheroidal Ag-Cu particles)

A

pack more efficiently & slide easily (less voids & higher strength) 
 difficult to achieve proximal contact 
 Large diameter condenser for proper condensation pressure

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13
Q

II- High copper amalgam:

A

) Cu6Sn5 (η′ phase ) stronger & more corrosion resistant than γ2 less
prone to pitting.
b) Formation of eta phase prevents sliding of γ1 thus minimizing creep & marginal breakdown.

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14
Q

Admixed

A

2 step reaction (1 particle type is 1 step)

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15
Q

> 0.01%

A

Zn containing if moisture contamination cause delayed expansion

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16
Q

Band & restore adjacent Class II preps simultaneously

A

do not do:

Several limitations
• Excessive wedging
• High chance of open contact

17
Q

Correction of the proximal contour of 1st restoration

(overcontoured) is feasible with

A

abrasive strip/hollenback