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It shall be noted that this software is much better platform than any of the predecessors - it is more robust and user-friendly in comparison to the previous release. The overall functionality of this release is quite similar to the one of the SC so there is no any need for additional training; in the meantime, the performance of the program has been significantly improved.
There are also some new modules under development at the moment - they are being released or planned for release in the nearest future. Please also note that the system requirements for this release are slightly higher than for the previous one. However, two versions of the software, say and , can be run at the same time.
We introduce the new 3. Create a Standard Part Edit a Standard Part Rename a Standard Part View Standard Part Usage Drawing Templates Import a Hull Model Use a Hull Model from the Hull Module Unit Setup Create Units Delete Units Product Hierarchies Setting Up Multiple Product Hierarchies Set Up Product Hierarchy Drawings Set Up Assembly Levels Set Up User-Defined Attributes Set Up Assemblies Assign Parts, Spools, or Assemblies to Assemblies Renaming Parts Planar Groups Create a Planar Group Drawing Template Create Planar Group Drawings Create Curved Model Drawings Edit Planar Group Properties Delete a Planar Group Activate a UCS Select a UCS Viewpoint Structural Modeling Layers Activate a Layer Deactivate a Layer Copy Objects from One Layer to Another Move Objects from One Layer to Another Object Display Hide or Show Objects Conceptual Design Stage Construction Line Management General Use Tips Structural Modeling Construction Lines Structure Part Relationships Updating Mirrored and Identical Parts Mark Group Intersections Plate Parts Plate Part Creation Copy a Plate Mirror a Plate Move a Plate Detail a Plate Stiffener Creation Stiffener Edit Stiffener Trimming Stiffener Cutouts Stiffener Attach to Plate Part Stiffener Moldline Stiffener Moving Twisted Stiffeners Twisted Stiffener Edit Twisted Stiffener Trimming Twisted Stiffener Cutouts Twisted Stiffener Moldline Twisted Stiffener Moving Twisted Stiffener Clean Geometry Faceplate Creation Faceplate Edit Faceplate Trimming Faceplate Cutouts Faceplate Moldline Faceplate Moving Corrugated Plates Corrugated Plate Creation Corrugated Plate Edit Curved Plates Curved Plate Creation Curved Plate Edit Curved Plate Production Information Planks Creation Planks Edit Splitting Plank Collections Deleting Plank Collections Standard Parts Standard Brackets Attached to Stiffeners Mirror Parts Mirror Parts About the Centerline Mirror Catamaran Hulls Changing a Piecemark Size Change a Piecemark Position Part User-Defined Attributes Check Interferences Create an Interference Drawing Checking Interferences Check Local Interferences Replicate Objects to Other Planar Groups Transfer Objects to another Planar Group Miscellaneous Geometry Tasks Dihedral Angle Convert a 3D Object to a 2D Object Project Shapes Reduce the Number of Vertices on Polylines Convert an Ellipse or Spline to a Polyline Set Up Snapping Invalid Parts Check Product Hierarchy Check a Unit Update Model and System Drawings Start FlyThrough Create an Approval Drawing Template Create an Approval Drawing Insert a Planar Group into an Approval Drawing Save a Bound Approval Drawing Set Up Assembly Drawings Set Up an Assembly Drawing Template Relabel All Relabel from a selected BOM Relabel from Parts Select Predefined Templates Generate Assembly Drawings Set Up the Keymap Drawing Generating Assembly Drawings Edit Assembly Drawings Update Parts in an Assembly Drawing Updating an Existing Assembly Drawing Insert Keywords into an Assembly Drawing Update All Keywords BOM Tables Update BOMs Viewport Display Options List only Visible Insert an Orientation Icon into an Assembly Drawing Change the View in an Assembly Drawing Rotate an Assembly in an Assembly Drawing Manual Labeling from BOM Plot Assembly Drawings Plot an Assembly Drawing Inspect a Plotted Assembly Drawing Nesting Setup Set Up Nest Options and Colors Set Up a Nest Naming Convention Set Up Stocks for Nesting Set Up Nest Templates Set Up Nest Drawings and Nests Create a Nest Folder Create a Nest Drawing Re-create a Nest Drawing Insert a Nest into a Nest Drawing Insert Parts into a Nest Remove Parts from a Nest Re-nest a Nest Updating Parts in a Nest Assign or Unassign Parts to a Nest Move or Rotate Parts within a Nest Finding Parts in a Nest Drawing Labelling Parts List Un-nested Parts in an Assembly Position Parts Next to each other Insert Keywords into a Nest Edit the Stock Plate of a Nest Delete a Nest Find a Nest Set Up Bridges Assign to NC-Machine Insert a Bridge Delete Bridges Set Up Remnants Create a Remnant Edit a Remnant Delete a Remnant Check and Fix Nests Check Nests for Collisions Re-insert Parts Into a Nest Generate NC Code for Nests Export Nests to NC-Pyros Export Parts to Individual Drawings Import Cutting Paths Into Nests Update Nest BOMs Plot Nests Generate Nest Reports Prepare Work Package Set Up Profile Plot Templates Profile Plot Drawing Template Profile Sheet Template Profile Plot Template Create a Profile Plot Drawing Set Up Profile Plots Updating Profile Plots Print Profile Plots Check Profile Plots Set Up Profile Stocks Select an Assembly and Stock for Profile Nesting Create or Delete Profile Nests or Remnants Create Empty Profile Nests or Remnants Delete a Profile Nest or Remnant Add and Remove Parts to and from Profile Nests Manually Add Parts to Profile Nests Remove Parts From Profile Nests Issue and Un-issue Profile Nests Issue Profile Nests Un-issue Profile Nests Generate Profile Nest Reports Generate a Summary Report or Detailed Report Generate a Stock Usage Report Set Profile Nests to Cut or Un-cut EMBED for wordpress.
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Quadra St. The project consists of two units called U11 and U U11 is a virtually complete unit except for one missing twisted stiffener that will be created during the demo. One of the most time-consuming parts of the production preparation process is the detail drafting and definition of all individual parts.
For the purpose of this demo we have finished most of the parts to allow you to carry out all further steps, even if you decide not to spend time to detail any more parts. However, we suggest that you work through all portions of the tutorial in order to get a good understanding of the program. If you are running older versions of AutoCAD your toolbars and menus will have a different style.
ShipConstructor Structure Tutorial Tutorial 1. The program modules covered in this tutorial are: Structure - 3D structural modeling of the ship, assembly drawing generation, profile plots and more. Nest - manual and automatic plate nesting. Profile Nest nesting of profile parts. Manager Stock and standards library, user permission management, reporting. During this chapter you will explore the supplied demo files and: Investigate different display options of a 3D unit drawing. Learn about planar group drawings.
Learn about parts. Have a quick look at a nest drawing. AutoCAD proficient people are abundant, and a company can utilize the knowledge of existing staff. There is no need to invest in exotic hardware or expensive training. A common misconception is that it takes longer to generate a 3D model than drawing the conventional 2D way. All of our customers have proven that it is faster to model in 3D than to draft in 2D.
Using ShipConstructor s advanced techniques, 3D modeling is not only faster than drafting in 2D, you will also save time in production, prevent rework and improve the quality of your product. ShipConstructor provides many functions to automate repetitive drafting tasks. To put it simply, using GT you group together identical or similar tasks into small work packages. This allows you to perform similar or identical work on a group of production items.
A single person or small group carries out the tasks described in the work package. It is a common misconception that large investments into robot assembly or panel lines are required to achieve significant savings during assembly. Simple but thoughtful reorganization of work contents, work areas, tools and good planning will achieve significant savings and improved product quality without investing large sums of money. Of course, you may choose to take the next step and automate some of the production processes.
Build Strategy At some point during the detailing process, you have to plan your build strategy. The build strategy is the sequence of steps that have to be carried out to go from a single part through several assembly levels to a complete product. This process is usually done top down, meaning that you start with the ship and break it down into units. Each unit is then further broken down into stages, assemblies, panels, and minor assemblies.
ShipConstructor helps you simplify this task by giving you full flexibility of the number of assembly levels and the names you give each level. Using each of the assembly levels, an assembly tree is easily designed. A designer or planner can then assign each of the CAD parts to any of the assembly tree items to build a complete logical product model.
All that is left to do is work out a time schedule for each item in the assembly tree. A good example is producing stiffeners for a panel. Many shipyards still provide traditional 2D workshop drawings to production with several frames, decks, and bulkheads on each large size drawing. The drawings also contain a lot of dimensions, references to details, and more.
A worker reads the drawing, drags an uncut profile from the storage area to the setup area, puts it into place, marks up the length, drags it back to a cutting place, cuts it to length, looks up the drawing again to see what end cuts to use, applies the end cuts and then drags the stiffener back to the setup area to fit it into place. Work Packages save Time and Money Using ShipConstructor you create a work package consisting of a booklet 20 pages or less of small size 11x17 or A3 or smaller 3D assembly drawings, stiffener plots and cut lists for just the current stage of production.
The stiffener plots and stiffener cut lists provide all information required to produce the stiffeners for the given assembly or a few assemblies. Thus it is easy to get the right tools and gadgets in place, pull the required raw stock, cut several profiles to length, apply the end cuts and place them in a little transport container neatly arranged. When all stiffeners have been created for the assembly the container is moved to the panel area for easy assembly.
This is done for your information only. You do not have to know the detailed information given here, since ShipConstructor keeps track of all files and folders ShipConstructor Structure Tutorial Exploring 5. However, you might be exploring the content of your hard drive and wonder what all these files are doing on it. Construction projects generally involve several designers, engineers, planners and drafters. Most companies use a PC network with a file server and several workstations to perform the many tasks involved in completing a project.
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