MECHANICAL DRAWING MULTIVIEW DRAWINGS.

Slides:



Advertisements
Similar presentations
Drafting – Product Design & Architecture
Advertisements

Drafting – Product Design & Architecture
Technical Sketching and Shape Description
Orthographic Projection – Multi-View Drawing
Section 2 Drafting Techniques and Skills
Orthographic Projection
Auxiliary Views – An Overview
AutoCAD 2D_I Module 5: Orthographic Projection. Module Objectives identify surfaces in two-dimensional views from a given three-dimensional views. Demonstrate.
Multi-View Drawing (Text Chapter 8)
Multiview Drawing 5.00 Demonstrate orthographic projection techniques and principles as they apply to multiview drawings.
Orthographic Projection Chapter 4. 2 Technical Drawing 13 th Edition Giesecke, Mitchell, Spencer, Hill Dygdon, Novak, Lockhart © 2009 Pearson Education,
Multi-View Sketching Washington Technology Magnet IED
Engineering Graphics II Projection Theory and Multiview Drawings
Orthographic Drawing.
Orthographic Drawings
CHAPTER 8 Multiviews. Learning Objectives Select appropriate views for presentation Prepare single- and multiview drawings Create detail views Draw view.
Multiview Drawing A multiview drawing is one that shows two or more two-dimensional views of a three- dimensional object. Multiview drawings provide the.
Lecture 2: 2-D Transformation and Projection Multi-view Drawing
MEMB Multiview Projection Drawing. adzlyanuar © 2004 MEMB113 | Dept. of Mechanical Engineering | UNITEN | MULTIVIEW PROJECTION DRAWING Content.
Multiview Sketching Multiview Sketching
Prepared by: Nor Helya Iman Kamaludin Prepared by: Nor Helya Iman Kamaludin Lecture 4: Multiple Views 1 PTT 105/3: Engineering Graphics.
Multiview Drawings. Multiview Drawing A multiview drawing is one that shows two or more two-dimensional views of a three- dimensional object. Multiview.
Unit 5 Shap Description (Orthographic Projection) نظرية الأسقاط.
SANTANA DRAFTING MULTIVIEWS 1 An introduction Mr. Fitzgerald Rm
Auxiliary Views.
Multi-View Sketching. Learning Objectives Understand using the ‘Glass Box’ to help define orthographic projections. Be able to define Multi-View Drawing,
Sketching Multiview Drawings
Multi-view Projection Drawing
Creating Orthographic Projection Sketches TEC
Engineering Graphics II Projection Theory and Multiview Drawings Prof. Paul Kurowski October 10, 2012.
Orthographic Projection Review: -Projections -Orthographic projections Home work: -Glass Box Unfolded -Multiview Projection Simple (duplicate) - Lettering.
Which is best Isometric view
9 Multiview Drawings Permission granted to reproduce for educational use only. © Goodheart-Willcox Co., Inc. Understand the principles of orthographic.
North Carolina State University Spring What You Will Learn:  Define Orthographic Projection.  Correctly label the placement of the six standard.
Drafting I – Coach Pennington
Orthographic Drawings
Multi-View Sketching Multi-View Sketching
Multiview Sketching & Projection Chapter 5 Print handouts
MULTIVIEWS 1 An introduction
Multiview Sketching Multiview Sketching
Multiview Sketching Multiview Sketching
Orthographic Projection
Orthographic Projection
Multiview Sketching Multiview Sketching
Forging new generations of engineers
Multi-View Sketching Multi-View Sketching
Forging new generations of engineers
Projections Orthographic drawings – drawings where three views of an object are drawn in perpendicular planes to one another.
Multi-View Sketching STEM Foundations Multi-View Sketching
Multi-View Drawings.
Multi-View Sketching Multi-View Sketching
Perspective Sketching
Orthographic Projection of Inclined and Curved Surfaces
Forging new generations of engineers
Multi-View Sketching Multi-View Sketching
Multiview drawings.
Forging new generations of engineers
Sketching Multiview Drawings
Multi-View Sketching Multi-View Sketching
Multi-View Sketching Multi-View Sketching
Forging new generations of engineers
Multiview Sketching Multiview Sketching
Forging new generations of engineers
Orthographic Projection
Sketching Multiview Drawings
Sketching Multiview Drawings
Projections Orthographic drawings – drawings where three views of an object are drawn in perpendicular planes to one another.
Orthographic Projection
Multi-View Sketching Multi-View Sketching
Forging new generations of engineers
Presentation transcript:

MECHANICAL DRAWING MULTIVIEW DRAWINGS

Different views of an object Objects may be drawn in different ways Multiview Pictorial Better for showing true size and shape Each view only shows two dimensions Better for visualizing the object All three dimensions shown on a single view

Multiview Drawing

Multiview Drawing A multiview drawing is one that shows two or more two-dimensional views of a three-dimensional object. Multiview drawings provide the shape description of an object. When combined with dimensions, multiview drawings serve as the main form of communication between designers and manufacturers.

Multiview Drawing Another name for orthographic projection is multiview drawing Involves visualization and implementation Ability to see clearly in the mind’s eye an object Process of drawing the object

Angles of Projection First-angle projection Used by many European countries Object is projected onto planes from the first angle or quadrant Front view projected to vertical plane Top view projected to horizontal plane Left-side view projected to profile plane

Angles of Projection Third-angle projection Standard for the United States Third quadrant is used for projection Front view projected to vertical plane Top view projected to horizontal plane Right-side view projected to profile plane

Choosing Views Most commonly used views Front View Top View Right Side View Most descriptive view is typically designated as the Front View

Choosing Views Complex objects require three views to describe its shape Simple objects can be described with two views Ex: Soda Can Thin objects can be described with only one view Depth is given in a note Ex: Erasing Shield

Placement of Views Views should be visually balanced within the working space

Steps for Centering a Drawing Draw border and title block using light construction lines Draw diagonal lines from corners of border

Layout of Views

Steps for Centering a Drawing Add: Length 5.13 Space 1.50 Width 2.00 Horizontal 8.63 Height 3.00 Space 1.50 Width 2.00 Vertical 6.50

Steps for Centering a Drawing Draw a box the size of all views Measure from the center: Half the width Half the height

Steps for Centering a Drawing Draw in views using light construction lines

Adding Details Add holes and features Transfer horizontal and vertical features Use miter line to transfer depth

Straight Edges Edges that are parallel to a plane of projection appear as lines Edges that are inclined to a plane of projection appear as foreshortened lines

Curved Edges Curved edges project as straight lines on the plane to which they are perpendicular Curved edges project as curved lines on the planes to which they are parallel or inclined

Normal Surfaces Normal surfaces appear as an edge in two opposite principal views, and appear a surface in all other principal views.

Inclined Surfaces Inclined surfaces appear as an edge in two opposite principal views, and appear foreshortened (not true size) in all other principal views.

Oblique Surfaces Oblique surfaces do not appear either as an edge or true size in any principal view.

Intersections & Tangencies Where a curved surface is tangent to a plane surface, no line should be shown where they join

Intersections & Tangencies Where a plane surface intersects a curved surface, an edge is formed

What is Multiview drawing? Drawing more than one orthographic view of an object on the same page Ortho (straight) + graphic (drawing) An orthographic view is drawn looking straight at one side of the object (at 90° to it) Line of sight Projection plane Object

Orthographic Projection Orthographic projection is a technique that is used to create multiview drawings. Orthographic projection is any projection of the features of an object onto an imaginary plane of projection. The projection of the features of the object is made by lines of sight that are perpendicular to the plane of projection.

Orthographic Projection The best way to understand orthographic projection is to imagine an object contained inside a glass box.

Orthographic Projection There is a total of six glass walls surrounding the object. Each wall represents a projection plane onto which a two- dimensional object view will be created.

Projection Plane A projection plane, also referred to as a plane of projection or picture plane, is an imaginary surface that exists between the viewer and the object. The projection plane is the surface onto which a two-dimensional view of a three-dimensional object is projected and created.

Orthographic Projection Start by focusing only on the front projection plane. A person standing in front of the object would see only the five corners identified in black. 2 3 1 4 line of sight at 90° angle to projection plane 5

Orthographic Projection Projection lines are used to project each corner outward until they reach the projection plane.

Projection Lines A projection line is an imaginary line that is used to locate or project the corners, edges, and features of a three-dimensional object onto an imaginary two-dimensional surface.

Orthographic Projection The visible edges of the object are then identified on the projection plane by connecting the projected corners with object lines.

Orthographic Projection The orthographic projection process is then repeated on the other projection planes.

A Question… Each of the blocks to the right have the same overall dimensions and colors. What else to they have in common?

They all have identical top views! Answer …. They all have identical top views!

HIDDEN LINES MUTLIVIEW DRAWINGS We place hidden lines in a drawing to do the following things: Show hidden features 2. Clarify the position and shape of features 3. Make the “plate” more readable (NOTE: The term “plate” refers to a finished drawing.)

Cubes (like these dice) have 6 sides How many views? Cubes (like these dice) have 6 sides Since each side of the die will have its own view… Front then there must be SIX possible orthographic views!

Cubes (like these dice) have 6 sides How many views? Cubes (like these dice) have 6 sides Top Since each side of the die will have its own view… then there must be SIX possible orthographic views! Front

Cubes (like these dice) have 6 sides How many views? Cubes (like these dice) have 6 sides Since each side of the die will have its own view… Right Side then there must be SIX possible orthographic views! Front Top

Cubes (like these dice) have 6 sides How many views? Cubes (like these dice) have 6 sides Since each side of the die will have its own view… then there must be SIX possible orthographic views! Front Back Top Bottom The Front, Top, and Right Side are the views that are usually drawn. Right Side Left Side

All the views MUST be arranged correctly Where do the views go? All the views MUST be arranged correctly Imagine “unfolding” the cube to get proper view alignment. The back view can be placed in any of these four locations.

How does this work on other objects? Place the object in a glass box Then “unfold” the box Front view is always central Top view goes above R.Side view goes to the right

What about details you can’t see? Hidden lines show details that are not seen in all views Project from hidden detail to the other views Draw hidden lines (dashed) to show the detail

ANIMATED EXAMPLES http://dossin.weebly.com/3-multi--view-orthographic-projection-drawing.html

Multiview Drawing REVIEW An orthographic view is drawn looking straight at one side of the object (at 90° to it) There are 6 possible orthographic views: Front, Back, Top, Bottom, Left Side, Right Side The Front, Top, and R.Side views are usually all that are drawn Hidden lines show details you can’t see in all views

Centering a Multiview Drawing Review Make a sketch of the views needed for the drawing. The space between the views is 1 ½” What are the measurements needed to center the drawing? What is the overall size of the box for the views?

Centering a Multiview Drawing Review 3.50 1.5 6.75 1.75 6.50 1.5 3.50 11.50

Layout of the 6 Views Sketch the layout of the 6 views of this object and label the views. TOP REAR L. SIDE FRONT R. SIDE BOTTOM