SolidWorks Teacher Guide Lesson3 School’s Name Teacher’s Name Date.

Slides:



Advertisements
Similar presentations
Parametric Modeling Parametric Modeling
Advertisements

3D Modeling Features and Modeling Strategy Professor Name Course Name.
Constraint Based Modeling Geometric and Dimensional
SolidWorks Teacher Guide Lesson8 School’s Name Teacher’s Name Date.
SolidWorks Teacher Guide Lesson9 School’s Name Teacher’s Name Date.
SolidWorks This is a Powerful and User-friendly software to design 3D model of Mechanical parts and Assemblys,Drawings to manufacture and also FEM analysis,
Image courtesy of National Optical Astronomy Observatory, operated by the Association of Universities for Research in Astronomy, under cooperative agreement.
Image courtesy of National Optical Astronomy Observatory, operated by the Association of Universities for Research in Astronomy, under cooperative agreement.
Engineering H191 Engineering Fundamentals and Laboratory I
ENGINEERING GRAPHICS 1E9
SolidWorks Session 1 Ferdowsi University of Mashhad Dr. Behnam Moetakef Imani Winter 2011.
Tutorial: Pulley Chapter 1.
Engineering H191 Engineering Fundamentals and Laboratory I
• Open a new part file • Create Cylinder
First-Year Engineering Program 1 Isometric Pictorials Goals Creating an isometric sketch.
1 Chapter 6 – Pictorial Sketching Print handouts Select File, Print Edit the following selections to read: Select the OK button.
Creating Solid Models Parametric Modeling Concept
Copyright - Planchard 2012 SolidWorks Basic Concepts Stephen H. Simmons TDR 200.
CHAPTER 16 Engineering Drawings and Symbols
ES1050 – Introductory Engineering Design and Innovation Studio 1 Computer Aided Design (CAD) Part 3 Prof. Paul Kurowski.
SolidWorks: Extruded Cuts, Fillets, and Patterns Introduction to Robotics.
SOLIDWORKS: Lesson III – Patterns & Mirrors
1 Exercise Two The Digital Camera Helpful Notes 2004.
ISOMETRICS Isometric means “equal in measure” and refers to the fact that the three receding axes are tilted at 30°. Isometric drawings are constructed.
SolidWorks Teacher Guide Lesson2
Image courtesy of Innovation Engineering Inc. SolidWorks September 10, 2008.
Mechanical Engineering Dept., SJSU
Extrusion Rev: , AJP Extrude.
1 Ι © Dassault Systèmes Ι Confidential Information Ι Instructor’s Guide to Teaching SolidWorks Software Lesson 8 School’s Name Teacher’s Name Date.
Image courtesy of Innovation Engineering Inc. SolidWorks February 3, 2007.
Parametric Modeling. 3D Modeling Steps - Sketch Step 1 Sketch Geometry (use the “line” tool today) You are making a four-sided shape that is not necessarily.
SolidWorks Teacher Guide Lesson 10 School’s Name Teacher’s Name Date.
1 Ι © Dassault Systèmes Ι Confidential Information Ι Instructor’s Guide to Teaching SolidWorks Software Lesson 3 School’s Name Teacher’s Name Date.
ENTC 1110 OBLIQUE PICTORIALS.
Introduction to Projections Four Basic Types
Ken YoussefiIntroduction to Engineering – E10 1. Various Blade designs Ken YoussefiIntroduction to Engineering – E10 2.
Orthographic Drawing.
ASSIGNMENT D11 ADVANCED 3D TOOLS. ADVANCED TOOLS Sweep – Moving a cross-section through a path two form a three-dimensional object Needs a Cross-section.
Engineering Graphics with SolidWorks
This is what we want to draw Extrude Mirror Round Edges.
Make an isometric drawing of the cube structure below.
Lesson 7 Rectangular Objects. Rectangle Command Rectangles with Vertices on the Origin Start from the origin End at the origin.
Solidworks Exercise Modeling the piston (30 minutes) Open a new part file and Save as Piston.sldprt Create the Cylinder Click on Top Plane (or plane 2)
Engineering Graphics with SolidWorks Instructors Name Course Name.
1 Ι © Dassault Systèmes Ι Confidential Information Ι Instructor’s Guide to Teaching SolidWorks Software Lesson 2 School’s Name Teacher’s Name Date.
EF101 Analysis & Skills Module 1
Ken Youssefi Introduction to Engineering – E10 1 SolidWorks Select File.
This is the finished body RADIUS LOFT EXTRUDE. Creating the body taper Open the wing Click on new part in context.
Engineering Graphics with SolidWorks Instructors Name Course Name.
SANTANA DRAFTING MULTIVIEWS 1 An introduction Mr. Fitzgerald Rm
Image courtesy of National Optical Astronomy Observatory, operated by the Association of Universities for Research in Astronomy, under cooperative agreement.
The Lego Man Basic 3D Modelling. The Head Use the Revolve Tool to get the sketch from 2D to 3D.
Learning Objectives • Create sweep features. • Create lofted features.
1 Ι © Dassault Systèmes Ι Confidential Information Ι Instructor’s Guide to Teaching SolidWorks Software Lesson 9 School’s Name Teacher’s Name Date.
Fundamentals of Autodesk Inventor.  The basic unit of design is the sketch  They are not required to be precise, but it will make your life easier if.
Hosted by Ms. Hamby Constraints Lines ViewsSketches
3D Modeling Engineering II.
Two-Dimensional Sketching
Lecture 14 SolidWorks Basic Functionality
MULTIVIEWS 1 An introduction
Orthographic Projection
ISOMETRIC PROJECTION RATHER DRAWING
School’s Name Teacher’s Name Date
Orthographic Projection
In this chapter, you will learn the following:
Isometric and Orthographic Projections
3D Modeling Engineering II.
3D Modeling Engineering II.
Orthographic Projection
Presentation transcript:

SolidWorks Teacher Guide Lesson3 School’s Name Teacher’s Name Date

Features and Commands Base Feature The first feature that is created. The foundation of the part. The base feature geometry for the box is an extrusion. The extrusion is named Extrude1. Tip: Keep the base feature simple.

Sketch the 2D profile Extrude the sketch To Create an Extruded Base Feature: 1.Select a sketch plane. 2.Sketch a 2D profile. 3.Extrude the sketch perpendicular to sketch plane. Select the sketch plane Resulting base feature

Features Used to Build Tutor1 1.Base Extrude2.Boss Extrude3.Cut Extrude 4.Fillets5.Shell

Extruded Boss Feature –Adds material to the part. –Requires a sketch. Extruded Cut Feature –Removes material from the part. –Requires a sketch. Fillet Feature –Rounds the edges or faces of a part to a specified radius.

Shell Feature –Removes material from the selected face. –Creates a hollow block from a solid block. –Very useful for thin-walled, plastic parts. –You are required to specify a wall thickness when using the shell feature.

View Control Magnify or reduce the view of a model in the graphics area. Zoom to Fit – displays the part so that it fills the current window. Zoom to Area – zooms in on a portion of the view that you select by dragging a bounding box. Zoom In/Out – drag the pointer upward to zoom in. Drag the pointer downward to zoom out. Zoom to Selection – the view zooms so that the selected object fills the window.

Display Modes Illustrate the part in various display modes. Wireframe Hidden lines Visible Hidden Lines Removed ShadedShaded With Edges

Standard Views Isometric View Top View Back ViewLeft ViewFront ViewRight View Bottom View

View Orientation Front Right Bottom Isometric Top Left Back Normal To (selected plane or planar face) Changes the view display to correspond to one of the standard view orientations.

View Orientation The views most commonly used to describe a part are: –Top View –Front View –Right View –Isometric View

Default Planes –Front, Top, and Right Correspond to the standard principle drawing views: –Front = Front or Back view –Top = Top or Bottom view –Right = Right or Left view

Isometric View Displays the part with height, width, and depth equally foreshortened. –Pictorial rather than orthographic. –Shows all three dimensions – height, width, and depth. –Easier to visualize than orthographic views.

Section View Displays the internal structure of a model. Requires a section cutting plane. Section Plane Mouse over

The Status of a Sketch Under defined –Additional dimensions or relations are required. –Under defined sketch entities are blue (by default). Fully defined –No additional dimensions or relationships are required. –Fully defined sketch entities are black (by default). Over defined –Contains conflicting dimensions or relations, or both. –Over defined sketch entities are red (by default).

Geometric Relations Geometric relations are the rules that control the behavior of sketch geometry. Geometric relations help capture design intent. Example: The sketched circle is concentric with the circular edge of the extruded boss feature. In a concentric relation, selected entities have the same center point.

Geometric Relations The SolidWorks default name for circular geometry is an Arc#. SolidWorks treats circles as 360° arcs.