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In such cases it is important that differences in the meshes do not influence the results. Easily selected meshing rules appropriate to the target discipline: Each simulation discipline has its own mesh requirements to produce high-quality results with an acceptable number of elements.

With Rules Based Meshing, you can easily select the appropriate set of rules for the target simulation discipline, such as noise vibration harshness NVH , durability, and crash.

CATIA V5 Essentials - Assembly Design Basics

It is subject to controlled availability in this release. Nested assembly export: Large assemblies can be exported in multiple STEP files, with one file for each product. There are two possible options, global and partial. Supports validation properties: A global parts and assembly level offers center of gravity, volume, and area.

New validation properties target part shape, such as faces and edges. Isolating a feature breaks any links with its inputs so that the feature becomes a datum feature that cannot be updated.

This productivity enhancement eliminates the need to copy the geometry of the feature and then replace the feature with the copy. Repetition GSD mechanism: This release adds a relative mode for the creation of repetition features. It allows you to create repeated features in an absolute existing or relative new mode.

You can create repeated features relatively so that every repeated feature refers to the parameters of the previously created feature.

Repetition GSD mechanism with datum mode on: This enhancement adds the capability of using the repetition mechanism with the datum mode on. It lets you use the Repeat after OK command with the datum mode on, increasing the usability of the command. Point on curve along a direction: This new option in the Point command enables you to create a point on a curve along a direction and an offset distance in the direction specified.

Multiselection mechanism enhancements: This enhancement of the data model for the MultiSel mechanism lets you aggregate all the common features of the multiselection function directly on the generated MultiOutPut feature. This enhancement makes the understanding of the multiselection data model clearer.

Integration of functional tolerancing and annotation FTA elements selection in 2D mode: This enhancement to the 2D mode architecture enables you to select non-geometrical elements such as FTA as support.

You can now select a 3D annotation, such as text or a flag note, as an input plane to the 2D mode. Extrude and cylinder--mirror extent: This enhancement provides a check button on the Extrude, Volume Extrude, and Cylinder panels.

When selected, it allows you to create mirrored symmetrical about the input profile extruded volume or extruded cylinder features. CATIA - Healing Assistant 1 HA1 This release introduces a compare and review function that can be used to support a review and approval process for design geometric changes. It speeds the approval process for a new revision of part geometry and makes it easier to understand the impact of part modifications to downstream processes such as tooling, machining, analysis, and inspection.

This capability enhances the level of compliancy with both ISO and JIS norms when drawings contain annotations that include western characters. It also makes it easier to make sure that any partner will be able to display such drawings in an identical way on their machine without the need for exchange and installation of a specific font because DS ISO 1 is provided by default. True type collection and font linking: Enhancements in this release support True Type Collection fonts and font linking.

Individual fonts present in True Type Collection fonts are available for use. For example, if Batang.

If a certain glyph is missing from a font file, this glyph is displayed using an associated font, if found from the Windows registry. Other enhancements include: Enhanced angle designation when sketching a line Enhanced Line Normal to Curve command 2D Layout for 3D Design LO1 Section and auxiliary view callouts: Within a 3D master process, this function enables you to natively get a normalized representation of callouts in layouts, rather than in drawings only.

Callout representations corresponding to auxiliary views, section views, section cuts and multi-plane section views can be added to existing design views.

This can be done while creating such views or afterwards, using the same styles and properties as the drafting callouts that are created in drawings when generating the corresponding layout view. Multi-plane section views: Offset and aligned section views or section cuts can be created in layouts, rather than in drawings only.

Such multi-plane views can be created either from an FTA view or capture or from a polyline located in an existing layout view. In offset section views, parts are cut by several parallel staggered planes, to display a hole silhouette in a cylinder head for instance.

In aligned section views, the part is cut by secant planes and is drawn as if this cutting surface was unfolded. The 3D model is displayed according to the cutting profile, using 2D layout view filters to insure proper display of both 3D geometry and annotations. Boundary objects can be created and edited to obtain the relevant display of cutting profile corners in the multi-plane view. These multi-plane views can be generated to drawings.

Catia V5 Books

It is also makes it easier to make sure that any partner will be able to display such drawings in an identical way on their machine without the need for exchange and installation of a specific font because DS ISO 1 is provided by default.

This insures a faster path for moving to a 2D-3D approach while performing such tasks as conceptual design and plant layout reusing legacy, supplier, or customer data.

View geometry upgrade: This function allows you to benefit from state-of-the art geometry creation and editing performance on previously created views by selectively upgrading the definition of 2D geometry to the current CATIA release level. For example, geometry shape might be modified by upgrade process, while other features annotations, dimensions, and dress-up are not upgraded.

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Because upgrade availability is administrated through a dedicated option, access should be granted only to experienced users or administrators. Default rendering style: A new option lets you set the default rendering style to be applied when creating a new layout.

This rendering style is then stored within the created layout to insure consistency of the display when exchanged with suppliers or other external users.

Other enhancements include: End points management when exporting geometry to the layout view Enhanced angle designation when sketching a line A hide option for 3D status in the specification tree View orientation improvements Improvements to the Line Normal to Curve command CATIA - Structure Design 1 SR1 Extrapolation offset for the Nibbling command: This enhancement adds the ability to specify an extrapolation offset at creation, providing the capability of filling the gap of 5mm between operating and operated nibbling elements.

Piece Part command: Extrapolation offset support is added for Nibbling, providing better control over the result.

SDNF is designed to be expandable to meet future needs and capabilities. It also provides the capability to import a valid SDNF file with structure information and to use it to create structures under a specified product.

These first steps will help you to get proficient on the manipulation on any kind of assemblies and products on CATIA V5. So let's get started with the key points on this module. On this getting started module, I will begin with a quick overview of the assembly design workbench main elements showing you how to set up and customize your own workspace for a faster reach of the needed tools, as well as a detailed description on how to use these tools for a fully-constrained assembly.

Then, we're going to start a first product assembly file by placing the first and main part. This is a crucial action as the rest of the assembly will be a reference to it.

And finally, we will be manipulating parts in the 3D space, applying multiple methods to pan a real data along different referring axes by using specific tools that will help us identify potential errors while manipulating the upcoming parts and how they interfere with other to achieve an accurate and time efficient process.

On the Assembly Technique's module, I will present many specifics related to found manipulation, the practical use of constraint, as well as some techniques that will potentially save you some time while creating or modifying an assembly.

CATIA V5 - kurz und bündig: Grundlagen für Einsteiger

So let's go ahead and take a look at the summary of this module. To begin with, we'll see how to modify the properties of an assembly file, how to rename it, and properly save it. We will continue on the application of constraints on the office desk assembly making a practical use of the knowledge learned on the getting started module by completing the leg and top supports of assemblies. Finally, I will present some techniques to be more efficient at the time of creating an assembly consisting in multiple repeated elements, as well as how to properly exploit the symmetries to reduce the manipulation if changes are needed in the product.

On the Working with Assemblies module, I will demonstrate the use and explain the basic capabilities of some advanced tools used for completing assemblies.

These tools will help you to achieve accurate measurements between elements, analyze their relative position, as well as visualize it in an exploded state for two-dimensional drafts and manufacturing plans.CATIA facilitates the design of electronic, electrical, and distributed systems such as fluid and HVAC systems, all the way to the production of documentation for manufacturing.

In such cases it is important that differences in the meshes do not influence the results. First, you'll learn the fundamental tools and toolboxes from the Assembly Design workbench in CATIA V5, as well as how they are manipulated in 3D space on a product file.

Duration: 40 hrs. About the author Bruno Giuntoli About the author Bruno is an aerospace manufacturing engineer with an MSc in composite materials design.

AeroExpert addresses both engineering and aeronautical needs by generating high-quality smooth but simple surfaces while respecting strict engineering tolerance requirements.

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