Pressure testing of ophthalmic safety lenses: the effects on different materials.

S J Dain
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引用次数: 6

Abstract

The procedure of applying pressure to a lens until fracture occurs and the use of the fracture pressure as a measure of lens strength has been proposed as a quantitative alternative to the drop ball test. The fracture pressure or pressure resistance of untempered, thermally tempered, and chemically tempered glass lenses and CR39 lenses were compared. The results for the glass lenses were consistent with workplace experience and previous studies using the drop ball test. The results for glass and CR39 lenses showed the reverse to what was expected. In order to investigate the basis of this difference, a second procedure was followed in which the annulus supporting the lens and the steel ball applying the pressure to the lens were systematically changed. Glass lenses showed a highly statistically significant change in fracture pressure with decreasing ball size and a small but statistically significant change with annulus size. CR39 lenses showed no statistically significant change in fracture pressure with changing ball size but a highly statistically significant increase in fracture pressure with increasing annulus size. The mechanism of fracture is known to differ in the glass and plastics materials and it is concluded that this method should not be used to compare the performance of different materials.

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眼科安全镜片的压力测试:对不同材质的影响。
对晶状体施加压力直至发生断裂的过程,并使用断裂压力作为晶状体强度的衡量标准,已被提议作为落球试验的定量替代方法。比较了非钢化、热钢化、化学钢化玻璃镜片和CR39镜片的断裂压力或耐压性能。玻璃镜片的结果与工作经验和先前使用落球测试的研究一致。玻璃和CR39透镜的结果与预期相反。为了研究这种差异的基础,采用了第二种方法,系统地改变了支撑透镜的环空和对透镜施加压力的钢球。玻璃晶状体骨折压力随晶状体球体大小的减小而有高度统计学意义的变化,随环隙大小的减小而有微小但统计学意义的变化。CR39晶状体骨折压力随球体大小的变化无统计学意义,但随环空大小的增加,骨折压力有高度统计学意义。已知玻璃和塑料材料的断裂机制不同,因此不应采用这种方法来比较不同材料的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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