http://www.cadfamily.com/a/CAD_CAID/CATIA/Repair-of-Wood-Piles-Using-Prefabricated-Fiber-Reinforced-Po_3201.html
Introduction
Scope and Objective
No effective method for both protection and structural restoration
of wood piles in waterfront facilities is discussed in the literature,
nor is such a method available in practice. Understanding the
cause and characterizing the extent of wood pile deterioration is
the first step in designing a repair method for damaged piles, as
well as in devising a protection strategy to prevent further attack
from marine organisms (Lopez-Anido et al. 2004c). The objective
of the study described in this paper is to survey the available
methods for wood pile protection and structural restoration with
the intent of developing an effective repair method.
Attaining this objective required both a literature review and a
field inspection of a harbor. A wood pile repair method that utilizes fiber-reinforced polymer (FRP) composite prefabricated
shells, shear connectors, and grouting material is proposed to address both the protection and the structural restoration needs. This
repair system provides shear transfer capability between the wood
pile and the encasing FRP composite shells, which strengthens the
damaged pile portion (Lopez-Anido et al. 2003, 2004a). The FRP
composite repair system can also reduce the rate of future deterioration by introducing a barrier that protects the wood pile from
marine borer attack. In this method, prefabricated shells are
bonded together in situ with an underwater-curing epoxy adhesive
to form the FRP composite shield or jacket that encases the wood
pile specimen. The performance of the underwater-curing epoxy
after exposure to freezing and thawing cycles was investigated
(Lopez-Anido et al. 2004b).
Two fabrication methods for the FRP composite shells are presented and compared based on the experience gained fabricating
laboratory prototypes. Then a step-by-step procedure amenable
for field installation is proposed, and a preliminary cost analysis is
conducted to assess the feasibility of the proposed system.
3/09/2015
Teilprojekt FEM in CATIA V5 von Stefan Graß
http://www.cadfamily.com/a/CAD_CAID/CATIA/Teilprojekt-FEM-in-CATIA-V5-von-Stefan-Gra_3204.html
Vorwort
In dieser Ausarbeitung wird die FEM- Analyse in CATIA V5 an einfachen Bauteilen und Baugruppen beschrieben. Seit Herbst 2001 steht CATIA V5 in der MES zur Ausbildung von Maschinenbau- Technikern zur Verfügung. In mehreren Projekten machten sich beteiligte Lehrer und Studierende der Fachschule mit dem Programm schrittweise vertraut.
Im Rahmen der Projektarbeit der Technikerklasse FV4a wurde das Modul „Analyse & Simulation“ in CATIA V5 erarbeitet. Das Projekt umfasst den letzten Ausbildungsabschnitt der Klasse. Das Thema des Projektes lautet CATIA V5. Die Studierenden wurden in kleine Gruppen unterteilt und jeder Gruppe wurde ein Modul in CATIA V5 zugewiesen. Sinn dieses Projektes ist es, die Kenntnisse und den Umgang mit der Software zu verbessern und die Ergebnisse der Max- Eyth- Schule und somit auch nachfolgenden Semestern zu Verfügung zu stellen.
Die Finite-Elemente-Methode (FEM) in CATIA V5 hat sich zu einem Standardverfahren für
Simulation und Analyse von Bauteilen und -gruppen entwickelt. Es ist möglich, bereits in der Entwurfsphase des Konstruktionsprozesses eine Vordimensionierung der Bauteile vorzunehmen, um ein den Anforderungen gerechtes und kostenoptimiertes Produkt zu entwickeln. Die FEM ermöglicht jedoch auch, Bauteile oder Baugruppen, die bereits konstruiert worden sind, zu berechnen und zu optimieren. Dieses Verfahren wird nicht nur in großen, sondern zunehmend auch in kleineren, mittelständischen Unternehmen eingesetzt. Vorwort
Im Rahmen der Projektarbeit der Technikerklasse FV4a wurde das Modul „Analyse & Simulation“ in CATIA V5 erarbeitet. Das Projekt umfasst den letzten Ausbildungsabschnitt der Klasse. Das Thema des Projektes lautet CATIA V5. Die Studierenden wurden in kleine Gruppen unterteilt und jeder Gruppe wurde ein Modul in CATIA V5 zugewiesen. Sinn dieses Projektes ist es, die Kenntnisse und den Umgang mit der Software zu verbessern und die Ergebnisse der Max- Eyth- Schule und somit auch nachfolgenden Semestern zu Verfügung zu stellen.
Die Finite-Elemente-Methode (FEM) in CATIA V5 hat sich zu einem Standardverfahren für
Simulation und Analyse von Bauteilen und -gruppen entwickelt. Es ist möglich, bereits in der Entwurfsphase des Konstruktionsprozesses eine Vordimensionierung der Bauteile vorzunehmen, um ein den Anforderungen gerechtes und kostenoptimiertes Produkt zu entwickeln. Die FEM ermöglicht jedoch auch, Bauteile oder Baugruppen, die bereits konstruiert worden sind, zu berechnen und zu optimieren. Dieses Verfahren wird nicht nur in großen, sondern zunehmend auch in kleineren, mittelständischen Unternehmen eingesetzt. Vorwort
In dieser Ausarbeitung wird die FEM- Analyse in CATIA V5 an einfachen Bauteilen und Baugruppen beschrieben. Seit Herbst 2001 steht CATIA V5 in der MES zur Ausbildung von Maschinenbau- Technikern zur Verfügung. In mehreren Projekten machten sich beteiligte Lehrer und Studierende der Fachschule mit dem Programm schrittweise vertraut.
Im Rahmen der Projektarbeit der Technikerklasse FV4a wurde das Modul „Analyse & Simulation“ in CATIA V5 erarbeitet. Das Projekt umfasst den letzten Ausbildungsabschnitt der Klasse. Das Thema des Projektes lautet CATIA V5. Die Studierenden wurden in kleine Gruppen unterteilt und jeder Gruppe wurde ein Modul in CATIA V5 zugewiesen. Sinn dieses Projektes ist es, die Kenntnisse und den Umgang mit der Software zu verbessern und die Ergebnisse der Max- Eyth- Schule und somit auch nachfolgenden Semestern zu Verfügung zu stellen.
Die Finite-Elemente-Methode (FEM) in CATIA V5 hat sich zu einem Standardverfahren für
Simulation und Analyse von Bauteilen und -gruppen entwickelt. Es ist möglich, bereits in der Entwurfsphase des Konstruktionsprozesses eine Vordimensionierung der Bauteile vorzunehmen, um ein den Anforderungen gerechtes und kostenoptimiertes Produkt zu entwickeln. Die FEM ermöglicht jedoch auch, Bauteile oder Baugruppen, die bereits konstruiert worden sind, zu berechnen und zu optimieren. Dieses Verfahren wird nicht nur in großen, sondern zunehmend auch in kleineren, mittelständischen Unternehmen eingesetzt.
Im Rahmen der Projektarbeit der Technikerklasse FV4a wurde das Modul „Analyse & Simulation“ in CATIA V5 erarbeitet. Das Projekt umfasst den letzten Ausbildungsabschnitt der Klasse. Das Thema des Projektes lautet CATIA V5. Die Studierenden wurden in kleine Gruppen unterteilt und jeder Gruppe wurde ein Modul in CATIA V5 zugewiesen. Sinn dieses Projektes ist es, die Kenntnisse und den Umgang mit der Software zu verbessern und die Ergebnisse der Max- Eyth- Schule und somit auch nachfolgenden Semestern zu Verfügung zu stellen.
Die Finite-Elemente-Methode (FEM) in CATIA V5 hat sich zu einem Standardverfahren für
Simulation und Analyse von Bauteilen und -gruppen entwickelt. Es ist möglich, bereits in der Entwurfsphase des Konstruktionsprozesses eine Vordimensionierung der Bauteile vorzunehmen, um ein den Anforderungen gerechtes und kostenoptimiertes Produkt zu entwickeln. Die FEM ermöglicht jedoch auch, Bauteile oder Baugruppen, die bereits konstruiert worden sind, zu berechnen und zu optimieren. Dieses Verfahren wird nicht nur in großen, sondern zunehmend auch in kleineren, mittelständischen Unternehmen eingesetzt.
Kolbenmotor als parametrisch assoziative Konstruktion auf Ba
http://www.cadfamily.com/a/CAD_CAID/CATIA/Kolbenmotor-als-parametrisch-assoziative-Konstruktion-auf-Ba_3207.html
1. Grundlagen: Bauteil übergreifende Parametrik
1.1. CCP-Links
1.2. Import - Links
1.3. KWE – Links
1.4. Assembly Constrains
2. Anwendung der Grundlagen auf das Projekt
2.1. Konstruieren mit Adapterpart
2.2. Positionieren mit dem Working Product
2.3. Endergebnis
1.2. Import – Links in Verbindung mit veröffentlichter
Geometrie
- ermöglicht eine Verlinkung der Geometrie und der Position
Was sind Veröffentlichungen?
- Geometrie zu veröffentlichen bedeutet, dass nur
vordefinierte Elemente die Erlaubnis haben ihre
geometrischen Informationen an andere Parts zu übertragen
1. Grundlagen: Bauteil übergreifende Parametrik
1.1. CCP-Links
1.2. Import - Links
1.3. KWE – Links
1.4. Assembly Constrains
2. Anwendung der Grundlagen auf das Projekt
2.1. Konstruieren mit Adapterpart
2.2. Positionieren mit dem Working Product
2.3. Endergebnis
1.2. Import – Links in Verbindung mit veröffentlichter
Geometrie
- ermöglicht eine Verlinkung der Geometrie und der Position
Was sind Veröffentlichungen?
- Geometrie zu veröffentlichen bedeutet, dass nur
vordefinierte Elemente die Erlaubnis haben ihre
geometrischen Informationen an andere Parts zu übertragen
Ship Structure Detail Design
http://www.cadfamily.com/a/CAD_CAID/CATIA/Ship-Structure-Detail-Design_3210.html
Welcome to the Ship Structure Detail Design User's Guide. This guide is intended for users who need to become
quickly familiar with the Ship Structure Detail Design Version 5 product.
This overview provides the following information:
●Ship Structure Detail Design in a nutshell
●Before reading this guide
●Getting the most out of this guide
●Accessing sample documents
●Conventions used in this guide
Ship Structure Detail Design in a Nutshell
Version 5 Ship Structure Detail Design provides a set of tools for structure designers who must complete
their functional design and carry out their detailed design.
The overall ship design project goes through a number of different phases from conceptual design through
functional and detail design to extraction of deliverables. This product addresses detail design requirements for
the shipbuilding industry. In particular, it lets you:
●Split your functional design into blocks
●Add secondary structures
●Capture functional connectivity and physically implement connections by means of piece parts and joints
●Create design features such as endcuts, slots, cutouts, etc.
●Capture weld joint locations and efficiency
●Generate plates and shapes to initiate the manufacturing view.
Ship Structure Detail Design makes wide-scale use of knowledgeware capabilities to implement connections and
create design features. It includes tools that speed up the design process, such as the ability to rapidly copy
small repetitive assemblies or to quickly subdivide a large part into the separate plates from which it would be
fabricated as well as sample catalogs of slots, endcuts and small assemblies.
All Ship Structure Detail Design commands share a consistent Windows graphical interface which reduces
training time and greatly increases ease of use.
As a scalable product, Ship Structure Detail Design can be used with other Version 5 products such as
Generative Shape Design, Generative Drafting and knowledgeware products.
Welcome to the Ship Structure Detail Design User's Guide. This guide is intended for users who need to become
quickly familiar with the Ship Structure Detail Design Version 5 product.
This overview provides the following information:
●Ship Structure Detail Design in a nutshell
●Before reading this guide
●Getting the most out of this guide
●Accessing sample documents
●Conventions used in this guide
Ship Structure Detail Design in a Nutshell
Version 5 Ship Structure Detail Design provides a set of tools for structure designers who must complete
their functional design and carry out their detailed design.
The overall ship design project goes through a number of different phases from conceptual design through
functional and detail design to extraction of deliverables. This product addresses detail design requirements for
the shipbuilding industry. In particular, it lets you:
●Split your functional design into blocks
●Add secondary structures
●Capture functional connectivity and physically implement connections by means of piece parts and joints
●Create design features such as endcuts, slots, cutouts, etc.
●Capture weld joint locations and efficiency
●Generate plates and shapes to initiate the manufacturing view.
Ship Structure Detail Design makes wide-scale use of knowledgeware capabilities to implement connections and
create design features. It includes tools that speed up the design process, such as the ability to rapidly copy
small repetitive assemblies or to quickly subdivide a large part into the separate plates from which it would be
fabricated as well as sample catalogs of slots, endcuts and small assemblies.
All Ship Structure Detail Design commands share a consistent Windows graphical interface which reduces
training time and greatly increases ease of use.
As a scalable product, Ship Structure Detail Design can be used with other Version 5 products such as
Generative Shape Design, Generative Drafting and knowledgeware products.
Utilisation du logiciel CATIA V5 La pièce coudée
3 - Création d’un angle de dépouille
Les dépouilles servent à démouler plus
facilement les pièces obtenues en
fonderie.
• Cliquez sur l’icône Dépouille
• Sélectionnez la face latérale du
cylindre comme face à dépouiller
• Dans la zone Elément neutre –
Sélection, choisissez la face du
cylindre située dans le plan YZ
• Cliquez sur la flèche orange pour
l’inverser si besoin est (elle doit être
dirigée vers l’intérieur du cylindre)
• Imposez un angle de dépouille de 3
degrés et faites un aperçu
• Cliquez OK pour créer la dépouille si
c’est bien celle à obtenir (la pièce
doit s’affiner vers le haut)
4 – Création d’une seconde extrusion
Il faut tout d’abord dessiner le profil qui
servira à cette extrusion.
• Sélectionnez le plan YZ
• Cliquez sur l’icône Sketcher
• Tout en maintenant le bouton gauche de
la souris enfoncé, cliquez sur le petit
triangle noir sous l’icône Rectangle
• Relâchez le bouton gauche sur l’icône
Contour oblong
• Dessinez ensuite le profil oblong de la
manière suivante :
o Sélectionnez le point d’origine
o Sélectionnez un second point
arbitraire comme indiqué, pour
définir la longueur du profil
o Sélectionnez un troisième point
arbitraire pour définir la largeur
du profil
o Sélectionnez et supprimez la
contrainte de parallélisme ou de
distance qui apparaît
http://www.cadfamily.com/a/CAD_CAID/CATIA/Utilisation-du-logiciel-CATIA-V5-La-pi-ce-coud-e_3212.html
Les dépouilles servent à démouler plus
facilement les pièces obtenues en
fonderie.
• Cliquez sur l’icône Dépouille
• Sélectionnez la face latérale du
cylindre comme face à dépouiller
• Dans la zone Elément neutre –
Sélection, choisissez la face du
cylindre située dans le plan YZ
• Cliquez sur la flèche orange pour
l’inverser si besoin est (elle doit être
dirigée vers l’intérieur du cylindre)
• Imposez un angle de dépouille de 3
degrés et faites un aperçu
• Cliquez OK pour créer la dépouille si
c’est bien celle à obtenir (la pièce
doit s’affiner vers le haut)
4 – Création d’une seconde extrusion
Il faut tout d’abord dessiner le profil qui
servira à cette extrusion.
• Sélectionnez le plan YZ
• Cliquez sur l’icône Sketcher
• Tout en maintenant le bouton gauche de
la souris enfoncé, cliquez sur le petit
triangle noir sous l’icône Rectangle
• Relâchez le bouton gauche sur l’icône
Contour oblong
• Dessinez ensuite le profil oblong de la
manière suivante :
o Sélectionnez le point d’origine
o Sélectionnez un second point
arbitraire comme indiqué, pour
définir la longueur du profil
o Sélectionnez un troisième point
arbitraire pour définir la largeur
du profil
o Sélectionnez et supprimez la
contrainte de parallélisme ou de
distance qui apparaît
http://www.cadfamily.com/a/CAD_CAID/CATIA/Utilisation-du-logiciel-CATIA-V5-La-pi-ce-coud-e_3212.html
CATIA V5 R12 By Tony Harris
http://www.cadfamily.com/a/CAD_CAID/CATIA/CATIA-V5-R12-By-Tony-Harris_3213.html
1. Introduction
A cautionary note before you begin to use CatiaV5. Catia can sometimes freeze the system on some computers, it can
also crash if you are unlucky, so it is advisable to save your work regularly during work sessions.
The CATIA V5 package consists of modules which contain various workbenches (eg Part Design, under Mechanical
Design in Start menu) containing icons which access menu operations. The most commonly used workbenches are the
Part Design workbench for creating solids, Generative Shape Design workbench (under Shape in Start menu) for
creating so called open bodies which are surfaces and Assembly Design workbench to assemble part bodies and open
bodies. Solids and open bodies are saved as CATIAParts and assemblies are saved as CATIAproducts. When creating
your design it is best to arrange it to be an assembly of relatively simple parts. You can then open the product and
work on each part in the context of the assembly. Hence you can create wing rib parts from a wing shape where the
wing surface is one part and the rib another part in the same assembly. The kinematic example in this tutorial shows
how to assemble parts using the DMU Kinematics workbench. This is very similar to using the Assembly Design
workbench..
Start CatiaV5 by double clicking the shortcut – wait for it to start, this can take a minute or so. The first time you do
this you will probably get a window requiring you to select the licence required. Select the box and OK, then restart
CATIA. If you save and recover your settings as in the next section you will not have to do this again. Having started
CATIA, check out the available modules by selecting Start and drag to each module. You will then see the
workbenches under each module. For example Mechanical Design module has workbenches Part Design, Assembly
Design, Sketcher, Structure Design, Drafting, Sheet Metal Design and Wireframe and Surface Design.
CATIA V5 provides extensive online help with tutorial exercises as well as explanations of operational procedures.
There are various ways of selecting help, each gives you different types of information. The following sections will
lead you through the help facility and give you a start. There are then some examples of part design, surface design
and machining.
Before you start here is a brief description of how to use the catia interface.
You will be asked to select menu icons. These are usually on the right vertical menu. Place your cursor on each icon
in the menu to get a description of its function. If you can’t find an icon it is sometimes easier to use Insert on the top
menu and find it there. Always use the left button for these selections.
1. Introduction
A cautionary note before you begin to use CatiaV5. Catia can sometimes freeze the system on some computers, it can
also crash if you are unlucky, so it is advisable to save your work regularly during work sessions.
The CATIA V5 package consists of modules which contain various workbenches (eg Part Design, under Mechanical
Design in Start menu) containing icons which access menu operations. The most commonly used workbenches are the
Part Design workbench for creating solids, Generative Shape Design workbench (under Shape in Start menu) for
creating so called open bodies which are surfaces and Assembly Design workbench to assemble part bodies and open
bodies. Solids and open bodies are saved as CATIAParts and assemblies are saved as CATIAproducts. When creating
your design it is best to arrange it to be an assembly of relatively simple parts. You can then open the product and
work on each part in the context of the assembly. Hence you can create wing rib parts from a wing shape where the
wing surface is one part and the rib another part in the same assembly. The kinematic example in this tutorial shows
how to assemble parts using the DMU Kinematics workbench. This is very similar to using the Assembly Design
workbench..
Start CatiaV5 by double clicking the shortcut – wait for it to start, this can take a minute or so. The first time you do
this you will probably get a window requiring you to select the licence required. Select the box and OK, then restart
CATIA. If you save and recover your settings as in the next section you will not have to do this again. Having started
CATIA, check out the available modules by selecting Start and drag to each module. You will then see the
workbenches under each module. For example Mechanical Design module has workbenches Part Design, Assembly
Design, Sketcher, Structure Design, Drafting, Sheet Metal Design and Wireframe and Surface Design.
CATIA V5 provides extensive online help with tutorial exercises as well as explanations of operational procedures.
There are various ways of selecting help, each gives you different types of information. The following sections will
lead you through the help facility and give you a start. There are then some examples of part design, surface design
and machining.
Before you start here is a brief description of how to use the catia interface.
You will be asked to select menu icons. These are usually on the right vertical menu. Place your cursor on each icon
in the menu to get a description of its function. If you can’t find an icon it is sometimes easier to use Insert on the top
menu and find it there. Always use the left button for these selections.
CATIA V5 Tutorial
http://www.cadfamily.com/a/CAD_CAID/CATIA/CATIA-V5-Tutorial_3213.html
1. Introduction
A cautionary note before you begin to use CatiaV5. Catia can sometimes freeze the system on some computers, it can
also crash if you are unlucky, so it is advisable to save your work regularly during work sessions.
The CATIA V5 package consists of modules which contain various workbenches (eg Part Design, under Mechanical
Design in Start menu) containing icons which access menu operations. The most commonly used workbenches are the
Part Design workbench for creating solids, Generative Shape Design workbench (under Shape in Start menu) for
creating so called open bodies which are surfaces and Assembly Design workbench to assemble part bodies and open
bodies. Solids and open bodies are saved as CATIAParts and assemblies are saved as CATIAproducts. When creating
your design it is best to arrange it to be an assembly of relatively simple parts. You can then open the product and
work on each part in the context of the assembly. Hence you can create wing rib parts from a wing shape where the
wing surface is one part and the rib another part in the same assembly. The kinematic example in this tutorial shows
how to assemble parts using the DMU Kinematics workbench. This is very similar to using the Assembly Design
workbench..
Start CatiaV5 by double clicking the shortcut – wait for it to start, this can take a minute or so. The first time you do
this you will probably get a window requiring you to select the licence required. Select the box and OK, then restart
CATIA. If you save and recover your settings as in the next section you will not have to do this again. Having started
CATIA, check out the available modules by selecting Start and drag to each module. You will then see the
workbenches under each module. For example Mechanical Design module has workbenches Part Design, Assembly
Design, Sketcher, Structure Design, Drafting, Sheet Metal Design and Wireframe and Surface Design.
CATIA V5 provides extensive online help with tutorial exercises as well as explanations of operational procedures.
There are various ways of selecting help, each gives you different types of information. The following sections will
lead you through the help facility and give you a start. There are then some examples of part design, surface design
and machining.
Before you start here is a brief description of how to use the catia interface.
You will be asked to select menu icons. These are usually on the right vertical menu. Place your cursor on each icon
in the menu to get a description of its function. If you can’t find an icon it is sometimes easier to use Insert on the top
menu and find it there. Always use the left button for these selections.
http://www.cadfamily.com/a/CAD_CAID/CATIA/CATIA-V5-Tutorial_3213.html
1. Introduction
A cautionary note before you begin to use CatiaV5. Catia can sometimes freeze the system on some computers, it can
also crash if you are unlucky, so it is advisable to save your work regularly during work sessions.
The CATIA V5 package consists of modules which contain various workbenches (eg Part Design, under Mechanical
Design in Start menu) containing icons which access menu operations. The most commonly used workbenches are the
Part Design workbench for creating solids, Generative Shape Design workbench (under Shape in Start menu) for
creating so called open bodies which are surfaces and Assembly Design workbench to assemble part bodies and open
bodies. Solids and open bodies are saved as CATIAParts and assemblies are saved as CATIAproducts. When creating
your design it is best to arrange it to be an assembly of relatively simple parts. You can then open the product and
work on each part in the context of the assembly. Hence you can create wing rib parts from a wing shape where the
wing surface is one part and the rib another part in the same assembly. The kinematic example in this tutorial shows
how to assemble parts using the DMU Kinematics workbench. This is very similar to using the Assembly Design
workbench..
Start CatiaV5 by double clicking the shortcut – wait for it to start, this can take a minute or so. The first time you do
this you will probably get a window requiring you to select the licence required. Select the box and OK, then restart
CATIA. If you save and recover your settings as in the next section you will not have to do this again. Having started
CATIA, check out the available modules by selecting Start and drag to each module. You will then see the
workbenches under each module. For example Mechanical Design module has workbenches Part Design, Assembly
Design, Sketcher, Structure Design, Drafting, Sheet Metal Design and Wireframe and Surface Design.
CATIA V5 provides extensive online help with tutorial exercises as well as explanations of operational procedures.
There are various ways of selecting help, each gives you different types of information. The following sections will
lead you through the help facility and give you a start. There are then some examples of part design, surface design
and machining.
Before you start here is a brief description of how to use the catia interface.
You will be asked to select menu icons. These are usually on the right vertical menu. Place your cursor on each icon
in the menu to get a description of its function. If you can’t find an icon it is sometimes easier to use Insert on the top
menu and find it there. Always use the left button for these selections.
http://www.cadfamily.com/a/CAD_CAID/CATIA/CATIA-V5-Tutorial_3213.html
Subscribe to:
Posts (Atom)