RT Journal Article SR Electronic T1 Deformation of experimentally shocked biotite JF American Journal of Science JO Am J Sci FD American Journal of Science SP 1213 OP 1229 DO 10.2475/ajs.267.10.1213 VO 267 IS 10 A1 Friedrich Horz A1 Thomas J. Ahrens YR 1969 UL http://www.ajsonline.org/content/267/10/1213.abstract AB Shock experiments (10-40 kb) on lepidomelane show that kinking occurs at pressures as low as 9 kb; the intensity is related to peak pressure and shock pulse duration (0.7-0.3mu sec.), and is produced by shocks propagated along [hk0] and not along [001]. The shock-induced kinks have a wider range of their angle of external rotation (19-121 degrees ) than their static counterparts (40-60 degrees ). The ratio of the kink angles, epsilon and delta , scatters widely, indicating shock induced kinking is highly asymmetrical. A marked decrease of 2V from 24 to 7 degrees with increasing pressure is observed. Laue transmission patterns show that permanent angular rotations as great as 4.4 degrees are induced by shock pressures of 37.5 kb. In individual samples the increase in permanent angular rotations and decrease in 2V can be closely correlated.