FIELD: technologies for testing properties of materials.
SUBSTANCE: method for determining composition of bi-nonary condensed type systems, in case of core sizes in fractions d1>d2>d3>…>d9>d10 and in case of core dimensions relations d2/d1,d3/d2,…,d10/d9 greater than 0.155 fractions volumes are determined from formulas for binary systems V1=1m3, Y1=1-d2/d1, V2=1m3·Y1·Ve1,m3, for ternary systems Vsm2=1m3, Y2=1-d3/d2av, V3=1m3·Y2·Vemp,m3, for quaternary systems Vsm3=1m3, Y3=1-d4/d3av, V4=1m3·Y3·Vemp3,m3, for quinary systems Vsm4=1m3, Y4=1-d5/d4av, V5=1m3·Y4·Vemp4,m3, for senary systems Vsm5=1m3, Y5=1-d6/d5av, V6=1m3·Y5·Vemp5,m, for septenary systems Vsm6=1m3, Y6=1-d7/d6av, V7=1m3·Y6·Vemp6,m3, for octuple systems Vsm7=1m3, Y7=1-d8/d7av, V8=1m3·Y7·Vemp7,m3, for nonary systems Vsm8=1m3, Y8=1-d9/d8av, V9=1m3·Y8·Vemp8,m3, where V1,V2…,V9 - piled up fraction volume with core sizes respectively d1,d2,…,d9,m3,Vsm2,Vsm3,…,Vsm8 - piled up volume of binary, ternary,…,octuple friable condensed type system, m3, Y1,Y2,…,Y8 - coefficient of condensation level of fraction with core size d1 by fraction with core size d2, condensation of binary friable system with average core size d2av by fraction with core size d3,…, condensations of octuple friable systems with average core size d8av by fraction with core size d9, Ve1 - emptiness of fraction with core size d1, Vemt2, Vemt3,…,Vemt8 - emptiness value for binary, ternary,…, octuple friable condensed type system.
EFFECT: lower laboriousness, higher effectiveness, possible optimization by utilizing computer means.
11 ex, 1 tbl
Authors
Dates
2005-01-20—Published
2003-05-12—Filed