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The Delft Sand, Clay & Rock Cutting Model, 2019a

The Delft Sand, Clay & Rock Cutting Model, 2019a

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<strong>The</strong> <strong>Delft</strong> <strong>Sand</strong>, <strong>Clay</strong> & <strong>Rock</strong> <strong>Cutting</strong> <strong>Model</strong>.<br />

Distance between equilibrium positions m<br />

λa Strain rate factor adhesive force -<br />

λc Strain rate factor cohesive force -<br />

λs Strain rate factor average adhesion and cohesion (usually 2) -<br />

λ1 Acting point factor on shear plane -<br />

λ2 Acting point factor on blade -<br />

λHF Horizontal cutting force coefficient Flow Type -<br />

λVF Vertical cutting force coefficient Flow Type -<br />

λHT Horizontal cutting force coefficient Tear Type -<br />

λVT Vertical cutting force coefficient Tear Type -<br />

λHC Horizontal cutting force coefficient Curling Type -<br />

λVC Vertical cutting force coefficient Curling Type -<br />

d/dt Strain rate 1/s<br />

d0/dt Frequency (material property) 1/s<br />

Shear stress kPa<br />

a, a Adhesive shear strength (strain rate dependent) kPa<br />

c, c Cohesive shear strength (strain rate dependent) kPa<br />

y Shear strength (yield stress, material property) kPa<br />

ya Adhesive shear strength (material property) kPa<br />

yc Cohesive shear strength (material property) kPa<br />

0 Dynamical shearing resistance factor (material property) kPa<br />

e Effective stress kPa<br />

n Normal stress kPa<br />

N1 Normal stress on shear plane kPa<br />

N2 Normal stress on blade kPa<br />

t Tensile strength kPa<br />

Angle of internal friction rad<br />

Soil/steel friction angle rad<br />

Page 240 of 454 TOC Copyright © Dr.ir. S.A. Miedema

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