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Biomedical subjects

D R Beech

Publications and source records attributed to D R Beech.

34 records · Page 2Linked to original sources

Evaluation of 50 low and high copper amalgams according to Standards.

The content and rationale of Standards for Dental Amalgam Alloys are discussed. The properties of amalgams made from 50 alloys used in Australia were determined according to methods in the Standards and the results are presented to enable comparison between low and high copper amalgams. The limits for the physical tests are discussed in the light of the range of values obtained. In general, the high copper amalgams showed higher one hour compressive strengths, lower creep and plastic deformation than low copper amalgams. No difference in dimensional change was found.

Chemical Phenomena↗

High copper alloys for dental amalgam.

The nature, physical properties and clinical performance of amalgams made from alloys containing copper in excess of 6 per cent by weight are reviewed. There are two basic types of high copper alloy: (a) mixtures of 'spherical' silver/copper or silver/tin/copper particles with low copper low copper lathe-cut or 'spherical' and (b) single composition silver/tin/copper spherical or lathe-cut particles. Copper contents range from 8.5 per cent to 30 per cent. In amalgams made from high copper alloys the soft corrodible gamma 2 (Sn7Hg) phase is reduced or eliminated by preferential formation of the eta (Cu6Sn5) phase. Improved clinical performance (less marginal breakdown) has been related to low creep, little or no gamma 2 phase and the presence of zinc. The possible roles played by these factors in the mechanism of marginal breakdown are discussed. Physical properties are not a reliable guide to the clinical performance of amalgams. Although high copper amalgams as a group show 'superior' physical properties and clinical performance to low copper amalgams, a high copper content does not necessarily mean improved clinical performance. Indeed, certain well-manipulated low copper amalgams can show clinical results comparable with some high copper amalgams, but not as good as the best high copper amalgams. In most clinical studies the silver/copper plus lathe-cut (dispersed phase) alloys and some of the single composition high copper alloys show the greatest clinical durability. The most significant factor in clinical performance is the choice of alloy.

Chemical Phenomena↗

Bonding of polymers to enamel: influence of deposits formed during etching, etching time and period of water immersion.

A technique for measuring the shear bond strength of composites to etched enamel was developed. The importance of thorough washing of the enamel surface to remove deposits formed during etching was demonstrated by measurements of bond strength and by scanning electron microscopy. One of three orthodontic adhesive systems showed a highly significant increase in bond strength after immersion in water for three months. Etching times as short as five seconds gave a bond strength not significantly different from that obtained after a one-minute etch.

Acid Etching, Dental↗

Mechanism of adhesion of polymers to acid-etched enamel. Effect of acid concentration and washing on bond strength.

The tensile bond strengths of composites to enamel etched with various concentrations of phosphoric acid have been shown to correlate closely with the phase diagram for the system Ca(OH)2/H3PO4/H2O. Bond strengths were independent of the adhesive used and were a maximum when using approximately 20% phosphoric acid as etchant. High bond strengths were obtained with 2% phosphoric acid etchant without 'tag' formation, after short term water immersion. Washing the enamel for 60 s instead of 15 s after etching significantly increased the bond strengths obtained with 16 and 30% acid but not with 2%. Etching enamel with phosphoric acid results in deposition of calcium phosphates, which must be removed to give optimal bonding.

Acid Etching, Dental↗