metamorphic textures. crack recrystallization: minimization of interfacial free energy by minimizing...

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Metamorphic Textures

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Page 1: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Metamorphic Textures

Page 2: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Crack

Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area

Cement

Sandstone Quartzite

Crack Crack

Recrystallization

Page 3: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Recrystallization of a Bi-minerallic Rock

a) interfacial free energy of AA = AB; dihedral angle () is thus 120o

b) interfacial free energy of AA > AB; dihedral angle decreases to decrease surface area of AA

Plagioclase

Cpx

Page 4: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Recrystallization of Quartz-Mica Rock

Interfacial free energy of Quartz-Mica >> Quartz-Quartz Interfacial angle increases from 120o to 180o

Page 5: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Decussate Texture

Aggregate of mica grains in which most interfaces are parallel to {001}. This occurs because the surface energy of the {001} face is substantially lower than that of other faces, e.g. {110}. The texture may also be developed by other minerals.

Page 6: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Granoblastic/Decussate Textures (Characteristic of Contact or Thermal Metamorphism)

Page 7: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Porphyroblast development

Nucleation of new crystals requires excess free energy If the nucleation energy is high, growth is favoured and porphyroblasts form

Porphyroblasts will be euhedral if their faces have high energy

Page 8: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Crystalloblastic Series

Most Euhedral1. Titanite, rutile, pyrite, spinel2. Garnet, sillimanite, staurolite, tourmaline3. Epidote, magnetite, ilmenite4. Andalusite, pyroxene, amphibole5. Mica, chlorite, dolomite, kyanite6. Calcite, vesuvianite, scapolite7. Feldspar, quartz, cordierite Least Euhedral

Page 9: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Textural Effects of Differential StressStressed grains store strain energy released during metamorphism by clearing defects and dislocations (polygonization)

Undulose extinction

Subgrain development

Page 10: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Defects Dislocations and Deformation

Defects

Dislocation

Page 11: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Deformation by Dislocation

Page 12: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Pressure Solution

Differential stress produces serated grain boundaries

Page 13: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Foliation Development

S1

S1

S2

1

Schistocity S1 flattened around garnet porphyroblasts

Crenulation cleavage S2 developed by folding S1

Page 14: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Pressure Shadows

Chlorite in shadow around garnet

Quartz in shadow around staurolite

Page 15: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Pressure Fringes

Staurolite

SillimanitePyrite

Muscovite

Page 16: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Metamorphic Mineral Growth Relative to Deformation

Page 17: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Pre-tectonic Textures

Undulose extinctionPressure shadows

Pressure fringes Crenulation cleavage

Micro-boudinage Deformation twins

Page 18: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Syn-tectonic Texture

Page 19: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Snowball Garnet with Pressure Shadows

Page 20: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Post-tectonic Textures

Helicitic folds

Post-tectonic Textures

Randomly oriented crystals Polygonal arc

Chiastolite Overgrowth on snowball Pseudomorph

Page 21: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Polymetamorphism

Page 22: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Stages in Polymetamorphism (S0, S1)

Page 23: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Stages in Polymetamorphism (S2)

Page 24: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Stages in Polymetamorphism (S3)

Page 25: Metamorphic Textures. Crack Recrystallization: Minimization of Interfacial Free Energy by Minimizing Surface Area Cement Sandstone Quartzite Crack Recrystallization

Corona Textures