← Design, Drawing & Safety · JKSSB Draftsman Civil

Chapter 2 of 4

Engineering Graphics

In the JKSSB Draftsman Civil syllabus under Design, Drawing & Safety · 2 parts

📑 Contents (21 sections)

Part 1 of 2

Orthographic Projection

Last reviewed 16 Sept 2026 · 7 min read

Projection

A projection is the representation of a three-dimensional object on a two-dimensional plane (the plane of projection) by drawing projectors (lines of sight) from points on the object to the plane.

Type Projectors Examples
Parallel projection — orthographic Parallel to each other and perpendicular to the plane Multi-view drawings, isometric (axonometric) projection
Parallel projection — oblique Parallel to each other but inclined to the plane Cavalier and cabinet projections
Central (conical) projection Converge to a point (eye) Perspective drawings

Orthographic projection

Orthographic (multi-view) projection shows an object by two or more views on mutually perpendicular planes, each showing true lengths and shapes of surfaces parallel to that plane.

Principal planes

  • Vertical plane (VP) — frontal plane; projection on VP = front view (elevation).
  • Horizontal plane (HP) — projection on HP = top view (plan).
  • Profile plane (PP) — perpendicular to both — side view (end view).
  • The line of intersection of VP and HP is the reference line XY.

Quadrants

VP and HP divide space into four quadrants:

Quadrant Position of object
First Above HP, in front of VP
Second Above HP, behind VP
Third Below HP, behind VP
Fourth Below HP, in front of VP

For drawing, the HP is rotated (about XY) to coincide with the VP. In the second and fourth quadrants, views overlap, so they are not used for projecting objects.

First-angle and third-angle projection

Feature First-angle projection Third-angle projection
Object position First quadrant Third quadrant
Arrangement Object between observer and plane Plane between observer and object (planes assumed transparent)
Top view Below the front view Above the front view
Left side view (viewed from left) Placed on the right of the front view Placed on the left of the front view
Right side view Placed on the left of the front view Placed on the right of the front view
Usage India (BIS SP 46), Europe USA, Canada

Projection symbols

The symbol is two views of a truncated cone (frustum): a front view (trapezium) and a side view (two concentric circles).

  • The two symbols differ only in the relative position of the circles and the trapezium. Each is drawn according to its own rule for placing views: the side view goes on the opposite side (first angle) or the same side (third angle) as the end from which the cone is viewed.
  • Learn the symbols from the standard figure in SP 46 rather than by memorising "left" or "right". The appearance depends on which end of the frustum is viewed.

The symbol must be shown in the title block.

Principal views

An object may be viewed from six directions: front, top, left, right, bottom and rear. Usually two or three views — front view, top view and one side view — are sufficient.

Choice of front view

  • The view showing the most characteristic shape and maximum details of the object.
  • The longest dimension placed horizontally; fewest hidden lines.
  • Natural/functional position (e.g. a building's main elevation).

Relations between views

  • Front view and top view share the same length (widths aligned vertically).
  • Front view and side view share the same height (aligned horizontally).
  • Top view and side view share the same depth (width from front to back) — transferred using a 45° mitre line or arcs.

Part 2 of 2

Isometric Projection

Last reviewed 16 Sept 2026 · 6 min read

Pictorial projections

Pictorial projections show an object in one view, displaying its three dimensions — easy to visualise but not ideal for exact dimensions of all features.

Type Features
Axonometric (orthographic pictorial) Object inclined to the plane; projectors perpendicular to the plane
— Isometric All three axes equally inclined to the plane — equal foreshortening
— Dimetric Two axes equally inclined
— Trimetric All three axes differently inclined
Oblique One face parallel to the plane (true shape); projectors inclined
Perspective Projectors converge — realistic appearance

Isometric axes, lines and planes

  • Isometric axes — three lines representing the edges of a cube meeting at a corner, 120° apart; one is vertical and two are at 30° to the horizontal.
  • Isometric lines — lines parallel to the isometric axes; measured along them.
  • Non-isometric lines — lines not parallel to the axes (e.g. inclined edges, diagonals); cannot be measured directly — located by their end points.
  • Isometric planes — planes parallel to any two isometric axes (top, front and side faces of the cube).
  • A cube in isometric view appears as a regular hexagon outline.

Isometric scale

When a cube is viewed along its body diagonal, all edges are equally foreshortened.

FormulaIsometric scale

Isometric lengths are about 81.6% of true lengths.

Construction of an isometric scale

  1. Draw a horizontal line; from a point draw lines at 45° (true lengths) and 30° (isometric lengths) above it.
  2. Mark true divisions on the 45° line.
  3. From each division, draw vertical lines down to meet the 30° line — these give isometric lengths.

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