Engineering Drawing Lesson 3-Orthogonal Projections

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Drawing Orthogonal Projections Producing assembly drawings in first or third angle projection glmoyo

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Engineering drawing drafting - Orthogonal projections, 3rd third angle and 1st first angle projection

Transcript of Engineering Drawing Lesson 3-Orthogonal Projections

Page 1: Engineering Drawing Lesson 3-Orthogonal Projections

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Drawing Orthogonal Projections

Producing assembly drawings in first or third angle projection

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Projections: Four Basic Types

Isometric

Oblique Perspective

Orthographic

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Drawing paper

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Drawing paper

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Drawing paper

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Drawing lines

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Construction LinesConstruction lines When a drawing is rendered, basic faint lines are drawn to provide a framework for the completion of the projection.

Although not part of the object, these lines provide the framework to construct the drawing of the object.

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Height

Depth

Width

Front View

Top View

Right Side View

Dimension LinesDimension Lines display precise information about the size of the object.

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Height

Depth

Width

Front View

Top View

Right Side View

Front View

Top View

Right

Side

View

Object LinesObject Lines Represent features that are only visible in the current view.

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Hidden lines

Front View

Top View

Right Side View

ALL Hidden or internal details must be included.

What does the inside of this block look like?

Hidden Lines represent features that cannot be seen in the current view. We show these unseen details, with dashed lines.

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Center Lines

Front View

Top View

Right Side View

Center lines represent symmetry and mark the center of circles, the axes of cylinders, and the axes of symmetrical parts, such as bolts.

Again, though not part of the object, these lines are important elements of the objects dimension and construction.

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Sectioning of a view

A A

A

A

Section Lines Are used to represent where the object is to be “cut” or sectioned to reveal interior details. This is used when other views may not adequately reveal information about the object.

Sectional view A:A

The section line labeled A:A shows the arrows pointing in the direction to which you are observing the “cut” or section.

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Hidden Lines – represent features that cannot be seen in the current view. They are as dark as the object lines.

Center lines – represent symmetry and mark the center of circles, the axes of cylinders, and the axes of symmetrical parts, such as bolts

Object Lines – represent visible features for an object. They are the darkest and most present.

Types of Lines in Orthographic ProjectionsConstruction lines - Basic faint lines which are drawn to provide a framework

for the completion of the projection.

Dimension Lines display precise information about the size of the object.

10cm

Section Lines Are used to represent where the object is to be “cut” or sectioned to reveal interior details. This is used when other views may not adequately reveal information about the object.

A A

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Review: Major views used in orthographic projections.

1. Object

2. Hidden3. Center

Isometric View

4. Sectional

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Line Type and Weight

• Line type and line weight provide valuable information to the print reader.

• For example, line type and weight can answer the following questions.– Is the feature visible or hidden from view?– Is the line part of the object or part of a

dimension?– Is the line indicating symmetry?

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Line Type and Weight

• There are four commonly used line types; – continuous – hidden – center – phantom

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Line Type and Weight

• Some lines are more important than others. Importance is indicated by line weight or thickness.– The thicker the line, the more important it is.

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Line Types

• Visible lines: – Visible lines represent visible edges and boundaries. – Continuous and thick (0.5 - 0.6 mm).

• Hidden lines: – Hidden lines represent edges and boundaries that

cannot be seen. – Dashed and medium thick (0.35 - 0.45

mm).

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Line Types

• Center lines:– Represent axes of symmetry.– Long dash – short dash and thin (0.3 mm).

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Line Types

• Phantom line: – Phantom lines are used to indicate imaginary

features. • alternate positions of moving parts • adjacent positions of related parts

– The line type is long dash – short dash – short dash and the line weight is usually thin (0.3 mm).

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Line Types

• Dimension and Extension lines: – Dimension and extension lines are used to show

the size of an object. • In general, a dimension line is placed between two

extension lines and is terminated by arrowheads, which indicates the direction and extent of the dimension.

– The line type is continuous and the line weight is thin (0.3 mm).

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Line Types

• Cutting Plane line: – Cutting plane lines are used to show where an

imaginary cut has been made through the object in order to view interior features.

– The line type is phantom and the line weight is very thick (0.6 to 0.8 mm).

– Arrows are placed at both ends of the cutting plane line to indicate the direction of sight.

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Line Types

• Section line: – Section lines are used to show areas that have

been cut by the cutting plane. – Section lines are grouped in parallel line patterns

and usually drawn at a 45 angle. – The line type is usually continuous and the line

weight is thin (0.3 mm).

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Line Types

• Break line:– Break lines are used to show imaginary breaks in

objects. – A break line is usually made up of a series of

connecting arcs. – The line type is continuous and the line weight is

usually thick (0.5 – 0.6 mm).

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Rules for Line Creation and Use

• The following rules will help us create lines that communicate effectively.– CAUTION! Due to computer automation, some of

the rules may be hard to follow.

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Using Hidden Lines

• Hidden lines represent edges and boundaries that cannot be seen.

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Creating Hidden Lines

• Rule 1:– The length of the hidden line dashes may vary

slightly as the size of the drawing changes.

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Creating Hidden Lines• Rule 2:

– Hidden lines should always begin and end with a dash,

– Exception: When the hidden line begins or ends at a parallel visible or hidden line.

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Creating Hidden Lines• Rule 3:

– Dashes should join at corners.

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Using Center Lines

• Center lines represent axes of symmetry.– They are important for interpreting cylindrical

shapes.

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Using Center Lines

– They are also used to indicate circle of centers, and paths of motion.

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Creating Center Lines

• Rule 1:– Center lines should start and end with long

dashes.

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Creating Center Lines

• Rule 2:– Center lines should intersect by crossing either the

long dashes or the short dashes.

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Creating Center Lines

• Rule 3:– Center lines should extend a short distance

beyond the object or feature.

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Creating Center Lines

• Rule 4:– Center lines may be connected within a single

view to show that two or more features lie in the same plane.

• CAUTION! Center lines should not extend through the space between views .

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Using Phantom Lines

• Phantom lines uses:– They may also be used to indicate adjacent

positions of related parts.

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Using Phantom Lines

• Phantom lines uses:– Used to indicate repeated detail.

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Using Phantom Lines

• Phantom lines uses:– They are also used to show a change in surface

direction produced by fillets and rounds.

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Using Phantom Lines

• Phantom lines uses:– Used to indicate alternate positions of moving

parts.

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Creating Phantom Lines

• Rule 1:– Phantom lines should start and end with a long

dash.

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Using Break Lines

• Break lines are used to show imaginary breaks in an object.

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Creating Break Lines

• There are two types of break lines. – If the distance to traverse is short the series of

connecting arcs is used.

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Creating Break Lines

• There are two types of break lines. – If the distance is long the thin straight line with a

jog is used.

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Line Precedence

• If two lines occur in the same place, the line that is considered to be the least important is omitted.

• Lines in order of precedence/importance are as follows; – Cutting plane line– Visible line– Hidden line– Centerline

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Use of drawing tools

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Orthographic Projection

• Orthographic projection is a system of drawing to represent 3D objects by using multipleview drawings

• Ortho – right (for right angle or straight )• the 3D object is projected perpendicularly

onto a projection plane with parallel projectors

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Introduction

• Orthographic projection = 2-D representation of a 3-D object.

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Introduction

• An orthographic projection represents different sides of an object.

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3D object projected orthogonally on plane

Object

Projected side

Plane

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Projection Systems

Plane comes first then image and object

Object

Projected image

Plane

Object comes first then then image and plane

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Projection Systems

Hold the planes or mirrors towards the object

Hold the object and project to the screen or mirrors at the back

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Basic Views - Six orthogonal views

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Coming with the three plans in your hands the shadow of the objects fall on them

From inside the box the image of the object falls on three surfaces

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Basic Views - Six orthogonal views

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Bottom is background (dotted) Top side is background (dotted)

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First and third angle projection

When you hold the mirrors (three

planes) towards the object – 3rd angle

project

When you hold the object towards a

mirror – first angle project

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Projection symbols

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Bottom is background (dotted) Top side is background (dotted)

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How do I draw this symbol?

• The recommended proportions for the symbol are as follows

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Drawing paper

Front View Side view

Plan View

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Creating an Orthographic Projection

• Draw the visible features of the front view.

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Creating an Orthographic Projection

• Draw projectors off of the front view.

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Creating an Orthographic Projection

• Draw the top view.

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Creating an Orthographic Projection

• Project back to the front view.

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Creating an Orthographic Projection

• Draw a 45 projector off the front view.

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Creating an Orthographic Projection

• Draw projectors over to the 45 line and down.

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Creating an Orthographic Projection

• Draw the right side view.

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Creating an Orthographic Projection

• Project back if needed.

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Creating an Orthographic Projection

• Draw centerlines where necessary.

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Creating an Orthographic Projection

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Drawing Bolts• D represents the major diameter.• Nuts are drawn in a similar fashion.