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Slave surface assembly__t0_part-1-1_sn is a node-based surface used with surface to surface approach. In order to obtain improved stress accuracy with this approach, an element-based surface should be used instead.
If significant clearance/overclosure exists between surface pair (assembly__t0_part-1-1_sn,assembly__t0_part-1-1_m) and the master surface does not have rotational degrees of freedom, adjustment is recommended for correct enforcement of the tie constraint
Slave surface assembly__t1_part-1-1_sn is a node-based surface used with surface to surface approach. In order to obtain improved stress accuracy with this approach, an element-based surface should be used instead.
If significant clearance/overclosure exists between surface pair (assembly__t1_part-1-1_sn,assembly__t1_part-1-1_m) and the master surface does not have rotational degrees of freedom, adjustment is recommended for correct enforcement of the tie constraint
Slave surface assembly__t2_part-1-1_sn is a node-based surface used with surface to surface approach. In order to obtain improved stress accuracy with this approach, an element-based surface should be used instead.
If significant clearance/overclosure exists between surface pair (assembly__t2_part-1-1_sn,assembly__t2_part-1-1_m) and the master surface does not have rotational degrees of freedom, adjustment is recommended for correct enforcement of the tie constraint
Slave surface assembly__t3_part-1-1_sn is a node-based surface used with surface to surface approach. In order to obtain improved stress accuracy with this approach, an element-based surface should be used instead.
If significant clearance/overclosure exists between surface pair (assembly__t3_part-1-1_sn,assembly__t3_part-1-1_m) and the master surface does not have rotational degrees of freedom, adjustment is recommended for correct enforcement of the tie constraint
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