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AVEVA Hull Detailed Design 12.0

Options

A number of additional options are available to increase the power and productivity of Hull Detailed Design.

AVEVA Hull Panel Line Control

The Panel Line Control module is used to nest assembly parts onto large raw plates and produce NC information for blasting, marking, burning and text labelling. This option supports the following activities:

  • Automatic creation of large assembly parts
    and the individual piece parts
  • Automatic nesting of assembly parts on the raw plate
  • Nesting of other non-panel line plate parts
    to minimise scrap
  • Parallel blasting, marking and burning
    (including bevel cutting)
  • Text labelling
  • Raster marking
  • Automatic mounting of profiles
  • NC data and sketches

AVEVA Hull Genauigkeit –
GSD Marking Triangles

For any shipyard using automatic marking equipment, Hull Genauigkeit increases assembly accuracy without extra design time by making the alignment of parts easier. This is achieved by automatically creating marking triangles and lines during parts generation, with an option to add more triangles manually.
The concept here is that the component represents its own workshop drawing.

  • Accuracy Control. Even if the primary use is in the assembly of parts, marking triangles may also be used for accuracy control.
  • Alignment of Parts. Better than traditional alignment lines, marking triangles 'lock' the parts to be connected in all three directions. The triangles are generated on both mating parts in butt and fillet joints, and on plates as well as profiles. The positions of the triangles allow for expected bevel gaps in butt welding, and weld shrinkage compensation. Hull Genauigkeit is supported for both the planar hull and the curved hull in the shell of the ship.


Using marking triangles


   

AVEVA Hull Dotori –
Variable Bevelling

Hull Detailed Design has an advanced feature for the set-up and control of fillet weld joint bevel standards with fixed angles. The Hull Dotori option extends this to situations where the bevel angles vary, wherever there is a dependence on the connection angle between the mating parts and/or their material thickness. Hull Dotori can be used to calculate bevels in many situations:
  • At plate edges
  • In the lugs of cutouts
  • Along profile traces
    (shell and planar)
  • In profile ends
  
  • At bracket edges
  • In holes
  • In flange ends
  • In clips

The Hull Dotori option adjusts the part geometry as necessary to generate highly accurate production parts, automatically creating data to control the angle of the cutting heads according to rules specified by the customer.


An example of Hull Dotori in a cutout and lug

AVEVA Hull Profile Cutting Interface

This option enables the transfer of profiles, nested or not, to profile cutting robots for manufacturing.

AVEVA Hull Plate Cutting Interface

This option enables the transfer of plate parts to external systems for manufacturing.

AVEVA Robot Interface

This option enables the transfer of the hull model in a volume format, suitable for processing by an offline programming system for welding robot facilities.

AVEVA Robot Interface 2

This option is a variant of the Robot Interface. It exports part geometry and welding data based on the assembly structure and the results from AVEVA Hull Weld Planning.

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18 November 2008
11 November 2008
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