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ASME Y14.3 Multiview and Sectional View Drawings , 2003
- CONTENTS
- FOREWORD
- COMMITTEE ROSTER
- 1 GENERAL [Go to Page]
- 1.1 Scope
- 1.2 References
- 1.3 Definitions
- 1.4 Orthographic Projection
- 1.5 Orthographic View
- 1.6 Projection Systems [Go to Page]
- 1.6.1 Third Angle Projection
- 1.6.2 First Angle Projection
- 1.6.3 View Relationships [Go to Page]
- 1.6.3.1 Alternative Practice, Reference Arrow Method
- 1.6.4 Projection Symbols
- 1.7 Principal Views [Go to Page]
- 1.7.1 Placement and Orientation of Views
- 1.7.2 Removed Views
- 1.7.3 Identifying Removed Views
- 1.7.4 Removed Views Alternative Practice
- 1.7.5 Rotated Views
- 1.7.6 Rotated Views Alternative Practice
- 1.7.7 Cross-Referencing of Views
- 2 MULTIVIEW DRAWING APPLIED [Go to Page]
- 2.1 Purpose of Multiview Drawings
- 2.2 Choice of Views
- 2.3 Necessary Views
- 2.4 One View Drawings
- 2.5 Two View Drawings
- 2.6 Three View Drawings
- 2.7 Auxiliary Views [Go to Page]
- 2.7.1 Primary Auxiliary Views
- 2.7.2 Secondary Auxiliary Views
- 2.7.3 Alignment of Auxiliary Views
- 2.8 Partial Views
- 2.9 Details
- 2.10 Related Parts
- 3 SECTIONAL VIEWS [Go to Page]
- 3.1 Principles [Go to Page]
- 3.1.1 Sectional Views
- 3.1.2 Section View Location
- 3.1.3 Cross-Referencing of Sections
- 3.2 Cutting Plane [Go to Page]
- 3.2.1 Cutting Plane Location
- 3.2.2 Identifying Sections
- 3.2.3 Reference Arrow Method for Identifying Sections
- 3.2.4 Section View Arrangement
- 3.2.5 Showing Cutting Planes
- 3.3 Section Lining
- 3.4 Full Sections
- 3.5 Half Sections
- 3.6 Lines Behind the Cutting Plane [Go to Page]
- 3.6.1 Visible Lines
- 3.6.2 Hidden Lines
- 3.7 Offset and Aligned Sections [Go to Page]
- 3.7.1 Offset Sections
- 3.7.2 Aligned Sections
- 3.8 Removed Sections
- 3.9 Revolved Sections
- 3.10 Broken-Out Sections
- 3.11 Auxiliary Sections
- 4 CONVENTIONAL REPRESENTATION [Go to Page]
- 4.1 General
- 4.2 Conventional Representation Applied to Sections [Go to Page]
- 4.2.1 Sectioning Thin Elements
- 4.2.2 Sectioning Regular Features
- 4.3 Nonsectioned Items in the Cutting Plane [Go to Page]
- 4.3.1 Sectioning Assembled Items
- 4.3.2 Conventional Section Lining of View
- 4.4 Foreshortened and Aligned Features in Section and Exterior Views [Go to Page]
- 4.4.1 Rotation of Inclined Elements
- 4.4.2 Rotation of Features
- 4.5 Intersections in Section [Go to Page]
- 4.5.1 Simplified Representation of Small Details
- 4.5.2 Conventional Representation of Large Details
- 4.6 Conventional Representation Applied to Exterior Views [Go to Page]
- 4.6.1 Orders of Precedence Between Lines
- 4.6.2 Rotation of Features and Elements to Show True Shapes
- 4.6.3 Simplified Representation of Small Details
- 4.6.4 Conventional Representation of Large Details
- 4.6.5 Representation of Fillets and Rounds
- 4.6.6 Depictions of Fillets, Rounds, and Runouts
- 4.6.7 Conventional Representations of Breaks
- FIGURES [Go to Page]
- 1 Orthographic Projection to Form an Orthographic View
- 2 Space and Orthographic Arrangement of Views (Third Angle Projection)
- 3 Space and Orthographic Arrangement of Views (First Angle Projection)
- 4 Third Angle Projection Standard Arrangement of the Six Principal Orthographic Views
- 5 First Angle Projection Standard Arrangement of the Six Principal Orthographic Views
- 6 Arrow Method — Principal Views
- 7 Arrow Proportions
- 8 Projection Symbol
- 9 Removed View
- 10 Arrow Method — Removed View
- 11 Rotated View
- 12 Arrow Method — Rotated View
- 13 Rotation Arrow
- 14 Removed View on Multiple Sheet Drawing
- 15 One View Drawings
- 16 Two View Drawing
- 17 Three View Drawing of a Casting
- 18 Three View Drawing of a Stamping
- 19 Front View and Partial Auxiliary Views
- 20 Partial Auxiliary View
- 21 Partial Auxiliary View, Partial Front View, and Right Side View
- 22 Partial Primary and Secondary Auxiliary Views
- 23 Detail
- 24 Phantom Lines for Related Parts
- 25 Section Lining
- 26 Zone Referencing, Removed Section
- 27 Full Section, Cutting Plane Omitted
- 28 Half Section, Cutting Plane Omitted
- 29 Identifying Sections
- 30 Arrow Method — Identifying Sections
- 31 Bent and Offset Cutting Planes
- 32 Full Section
- 33 Half Section, Assembly
- 34 Omission of Visible Lines
- 35 Omission of Hidden Lines
- 36 Offset Section
- 37 Aligned Section
- 38 Removed Section
- 39 Removed Sections on Center Lines
- 40 Revolved Sections
- 41 Broken-Out Section
- 42 Auxiliary Section
- 43 Section Through Ribs
- 44 Conventional Representation of Ribs
- 45 True Geometry Through Ribs
- 46 Section Across Ribs
- 47 Section Through Shafts, Keys, Bolts, Nuts, and Like Items
- 48 Spokes in Section
- 49 Rotated Features
- 50 Conventional Representation of Rotated Features
- 51 Intersections in Section
- 52 Line Precedence
- 53 Rotated Features to Show True Shape
- 54 Small Intersections
- 55 Large Intersections
- 56 Conventional Representation, Filleted and Rounded Corners
- 57 Conventional Representation, Fillets, Rounds, and Runouts
- 58 Conventional Representation, Breaks in Elongated Features
- NONMANDATORY APPENDICES [Go to Page]
- A SPACE GEOMETRY [Go to Page]
- A1 DEFINITION
- A2 REFERENCE LINES AND NOTATION [Go to Page]
- A2.1 Reference Lines
- A2.2 Construction of Auxiliary Views
- A2.3 Identification of Views
- A2.4 Symmetrical Items
- A3 TRUE LENGTH VIEW OF A LINE [Go to Page]
- A3.1 True Length of a Line Segment
- A3.2 Oblique Lines
- A4 POINT VIEW OF A LINE
- A5 EDGE VIEW OF A PLANE
- A6 TRUE VIEW OF A PLANE
- B SPACE ANALYSIS AND APPLICATIONS [Go to Page]
- B1 GENERAL
- B2 CLEARANCE BETWEEN A POINT AND A LINE [Go to Page]
- B2.1 Point Method
- B2.2 Plane Method
- B3 CLEARANCE BETWEEN TWO LINES
- B4 CLEARANCE BETWEEN A POINT AND A PLANE
- B5 POINT OF INTERSECTION OF A LINE AND A PLANE
- B6 LINE OF INTERSECTION OF TWO PLANES
- B7 ANGLE BETWEEN TWO INTERSECTING LINES
- B8 ANGLE BETWEEN A LINE AND A PLANE
- B9 ANGLE BETWEEN TWO PLANES [Go to Page]