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1.
Am J Optom Physiol Opt ; 56(1): 39-47, 1979 Jan.
Article in English | MEDLINE | ID: mdl-484703

ABSTRACT

Static load tests were conducted on heat-tempered and chemtempered plano white crown glass lenses from five different optical laboratories. With both ball-on-ring and ring-on-ring loading, chemtempered lenses considerably thinner than 2.0 mm were found to be as failure resistant as 2.0-mm-thick heat-tempered lenses. A similar result was obtained previously using the drop-ball test. It is shown that the theory of brittle fracture can be used to relate the results of different tests and provides a rational basis for comparing the relative performance of chemtempered and heat-tempered lenses.


Subject(s)
Eyeglasses/standards , Lenses/standards , Humans , Stress, Mechanical
2.
Am J Optom Physiol Opt ; 55(12): 801-6, 1978 Dec.
Article in English | MEDLINE | ID: mdl-753106

ABSTRACT

Failure heights were measured in drop-ball tests for both chemtempered and heat-tempered plano, white crown glass lenses from five different optical laboratories. It was found that (1) failure height was proportional to the square of the lens thickness, (2) chemtempered lenses substantially thinner than 2.0 mm are as resistant to breakage as 2.0-mm-thick heat-tempered lenses, and (3) a close correlation existed between results of single-drop and multiple-drop tests and between results of tests using rigid and compliant mounts.


Subject(s)
Eyeglasses/standards , Humans , Stress, Mechanical
3.
Am J Optom Physiol Opt ; 55(11): 751-9, 1978 Nov.
Article in English | MEDLINE | ID: mdl-752266

ABSTRACT

An analysis of different tests used or proposed for evaluation of the resistance of ophthalmic lenses to breakage is presented. The tests considered subject the lenses to different strain rates, areas under stress, and energy losses. The analysis examines effects of these variables as well as effects of differences in lens-failure stress and lens thickness on test results.


Subject(s)
Eyeglasses/standards , Glass/standards , Humans , Stress, Mechanical , Tensile Strength
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