data structure file for HDF5
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<?xml version="1.0"?>
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<?xml version="1.0"?>
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<h5ds xmlns='https://damask.mpie.de'>
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<h5ds>
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<inc>
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<type>attr</type>
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<h5path></h5path>
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<category></category>
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<description></description>
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</inc>
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<ip>
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<type>scalar</type>
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<h5path>/ip</h5path>
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<category></category>
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<description></description>
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</ip>
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<node>
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<type>scalar</type>
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<h5path>/node</h5path>
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<category></category>
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<description></description>
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</node>
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<pos>
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<type>vector</type>
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</pos>
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<elem>
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<type>integer</type>
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<h5path>/elem</h5path>
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<category></category>
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<description></description>
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</elem>
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<phase>
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<type>integer</type>
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<h5path>/phase</h5path>
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<category>Crystallite</category>
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<description></description>
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</phase>
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<texture>
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<type>integer</type>
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<h5path>/texture</h5path>
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<category>Crystallite</category>
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<description></description>
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</texture>
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<volume>
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<type>scalar</type>
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<h5path>/volume</h5path>
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<category>Crystallite</category>
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<description></description>
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</volume>
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<orientation>
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<type>vector</type>
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<h5path>/orientation</h5path>
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<category>Crystallite</category>
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<description></description>
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</orientation>
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<eulerangles>
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<type>vector</type>
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<h5path>/eulerangles</h5path>
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<category>Crystallite</category>
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<description>Bunnge Euler angles in degrees</description>
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</eulerangles>
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<grainrotation>
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<type>vector</type>
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<h5path>/grainrotation</h5path>
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<category>Crystallite</category>
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<description></description>
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</grainrotation>
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<f>
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<f>
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<type>tensor</type>
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<type>tensor</type>
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<h5path>/f</h5path>
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<h5path>/f</h5path>
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<category>Crystallite</category>
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<description>deformation gradient (F)</description>
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<description>deformation gradient (F)</description>
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</f>
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</f>
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<p>
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<type>tensor</type>
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<h5path>/p</h5path>
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<category>Crystallite</category>
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<description>Pikola Kirkhoff stress</description>
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</p>
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<resistance_slip>
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<type>vector</type>
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<h5path>/resistance_slip</h5path>
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<category>Constitutive</category>
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<description></description>
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</resistance_slip>
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<shearrate_slip>
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<type>vector</type>
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<h5path>/shearrate_slip</h5path>
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<category>Constitutive</category>
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<description></description>
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</shearrate_slip>
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<resolvedstress_slip>
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<type>vector</type>
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<h5path>/resolvedstress_slip</h5path>
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<category>Constitutive</category>
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<description></description>
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</resolvedstress_slip>
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<totalshear>
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<type>scalar</type>
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<h5path>/totalshear</h5path>
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<category>Constitutive</category>
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<description></description>
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</totalshear>
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<accumulatedshear_slip>
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<type>vector</type>
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<h5path>/accumulatedshear_slip</h5path>
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<category>Constitutive</category>
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<description>vector contains accumulated shear per slip system</description>
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</accumulatedshear_slip>
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<Cauchy>
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<Cauchy>
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<type>tensor</type>
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<type>tensor</type>
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<h5path>/Cauchy</h5path>
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<h5path>/Cauchy</h5path>
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<category>Derived</category>
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<description>Cauchy stress tensor</description>
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<description>Cauchy stress tensor</description>
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</Cauchy>
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</Cauchy>
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<lnV>
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<type>tensor</type>
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<h5path>/lnV</h5path>
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<category>Derived</category>
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<description></description>
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</lnV>
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<MisesCauchy>
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<type>scalar</type>
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<h5path>/MisesCauchy</h5path>
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<category>Derived</category>
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<description>von Mises equivalent of Cauchy stress</description>
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</MisesCauchy>
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<MiseslnV>
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<type>scalar</type>
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<h5path>/MiseslnV</h5path>
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<category>Derived</category>
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<description>left von Mises strain</description>
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</MiseslnV>
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</h5ds>
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</h5ds>
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