Download Pipe Drafting and Design by Roy A. Parisher PDF

By Roy A. Parisher

  • "Parisher (engineering layout photos, San Jacinto collage principal, Texas) and Rhea stroll pipe designers, drafters, and scholars throughout the steps of constructing circulate diagrams, piping association, and isometric drawings. They clarify the correct drawing of symbols for fittings, flanges, valves, and mechanical apparatus discovered on a variety of different types of piping drawings. targeted to their textbook, they are saying, is the systematic construction and association of drawings that starts with the advance of a move diagram then progresses to the format of the structural and gear foundations of a piping facility. additionally they describe constructing a 3- dimensional version and using third-dimensional software program instruments from which elevation, part, and isometric drawings and money owed of fabric are extracted. First released in 1995 and revised the following from the 2001 version. Gulf expert Publishing is an imprint of Elsevier."--Reference and examine booklet information, October 2012


Content:
Front-matter

, Pages i-iii
Dedication

, Page ii
Copyright

, Page iv
Preface

, Page vii
Acknowledgments

, Page ix
About the Authors

, Page xi
Chapter 1 - evaluation of Pipe Drafting and Design

, Pages 1-3
Chapter 2 - metal Pipe

, Pages 4-12
Chapter three - Pipe Fittings

, Pages 13-55
Chapter four - Flange Basics

, Pages 56-78
Chapter five - Valves

, Pages 79-111
Chapter 6 - Mechanical Equipment

, Pages 112-133
Chapter 7 - circulation Diagrams and Instrumentation

, Pages 134-153
Chapter eight - Codes and Specifications

, Pages 154-169
Chapter nine - gear Layout

, Pages 170-185
Chapter 10 - Piping association Drawings, Sections, and Elevations

, Pages 186-241
Chapter eleven - common Piping Details

, Pages 242-258
Chapter 12 - Piping Systems

, Pages 259-268
Chapter thirteen - Piping Isometrics

, Pages 269-306
Chapter 14 - development 3D Piping Models

, Pages 307-340
Chapter 15 - venture Coordination

, Pages 341-406
Appendix A - Dimensional Data

, Pages 408-447
Appendix B - Alphabet of Lines

, Page 448
Appendix C - assessment of Math

, Page 449
Appendix D - Use of the Calculator

, Pages 450-452
Appendix E - Architect’s Scale

, Page 453
Glossary

, Pages 454-460
Index

, Pages 461-463

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Extra info for Pipe Drafting and Design

Example text

Welding one fitting directly to another is called fitting make-up. 51. In most situations, the erection of the piping system will require the designer to use pipes of various lengths between the fittings. In these cases, the pipe is cut to the required length and then beveled in preparation for welding to a fitting. 49 10  8 Eccentric reducer (FOB)—AutoCAD step-by-step drafting procedure. Step 1. 53mm lineweight. Step 2. Draw a horizontal LINE perpendicular and to the right measuring 7” (H dimension from Welded Fittings-Flanges chart), which will represent the length of the reducer.

For example, a 150# forged steel flange is rated to perform at 150# PSIG at 500 °F. If the temperature were decreased to 100 °F, this same flange could be used for 275# PSIG. However, if the temperature were increased to 750 °F, the flange could only be used for 100# PSIG. As you can see, the pressure/temperature relationship is important. When temperature decreases, the allowable pressure increases, and vice versa. Pound ratings are also used to establish the outside diameter and thickness of a flange.

Step 5. Draw vertical and 45° weld lines from arc’s centerpoint. Trim and darken the weld lines. Step 6. Change the middle arc to a “Center” linetype. PIPE DRAFTING AND DESIGN 23 24 3. 20 45° Elbow. Alternative manual step-by-step drafting procedure. Step 1. Draw intersecting 45° construction lines as shown. Step 2. Using the B dimension for a 14 45° elbow from the Welded Fittings–Flanges Chart, measure this length along each construction line beginning at the point of intersection. Step 3. Determine one-half of the pipe’s diameter (7) and mark this distance on each side of each construction line.

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