ReleaseStrength

- V1.1

Active

Property attributes in the data dictionary, per EN ISO 23386

GUID e95772face954fdbbf3824e4a16ac509
URI https://pdts.pt/uri/0.1/prop/ResistenciaParaLiberacao
Version: https://pdts.pt/uri/0.1/prop/ResistenciaParaLiberacao/v1
Name Release strength
Name (code form) ReleaseStrength
Definition The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Units MPa
Visual representation
Status Active
Reference document n/a
Date of creation 2024-12-02
Date of activation 2024-12-02
Date of last change 2024-12-02
Date of revision 2024-12-02
Date of version 2024-12-02
Version 1
Revision 1
Replaced properties
Replacing properties
Relation to other data dictionaries (https://identifier.buildingsmart.org/uri/buildingsmart/ifc/4.3/prop/ReleaseStrength, bsdd.buildingsmart.org) IFC Logo
Creator’s language pt-PT
Country of use PT
Country of origin PT
Physical quantity Mega Pascal | en.EN
Dimension
Data type String
Dynamic property FALSE
Parameters of the dynamic property
Names of the defining values
Defining values
Tolerance
Digital format
Text format (UTF-8, 32)
List of possible values in language n
Boundary values
Deprecation explanation
Deprecation date

This property appears in:

Data template Property description
Ramp V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Column V1.1 The minimum required compressive strength of the concrete when the tendon stress is released.Ex. 25 MPa
Slab V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Ramp flight V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Footing V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Stair V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Wall V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Stair flight V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Member V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Chimney V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Plate V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa
Pile V1.1 The minimum required compressive strength of the concrete when the tendon stress is released. This ensures that the concrete has achieved sufficient strength to bear the load after the pre-stressing forces are removed. Ex. 30 Mpa