Transcription of TECHNICAL HANDBOOK - | Fluid Sealing Association
1 TECHNICAL HANDBOOK PIPING SYSTEMS Non-Metallic expansion Joints NON-METALLIC expansion joint DIVISION Fluid Sealing Association Telephone: (610) 971-4850 994 Old Eagle School Road, Suite 1019, Wayne, PA 19087 Facsimile: (610) 971-4859 Copyright 1970, 1995, 2008, 2013 by Fluid Sealing Association . Printed In United States of America. All rights reserved. this HANDBOOK or parts thereof may not be reproduced in any form without permission of the copyright owner. Edition 2013 For current Members and Associate Members, please go to the Piping Division section of the Fluid Sealing Association website: Acknowledgements The FSA is pleased to recognize the cooperation of Member Companies of the Non-Metallic Piping expansion joint Division in the preparation of this document.
2 Without their support, this document would not have been possible. TECHNICAL Committee members who have made a particularly significant contribution to this publication include: Jim Richter The Metraflex Company Bruce Stratton Garlock Sealing Technologies Hans Vemb Hansen KE-Burgmann Ed Marchese Proco Products Rick DiGiovanni General Rubber Corp. Ted White Unaflex Table of Contents Members of the Division Regular Members.
3 1 Associate Members .. 1 Foreword .. 3 Chapter I - Product Description of Rubber expansion Joints A. Definitions .. 4 B. Functions .. 4 C. Advantages .. 4 D. Construction Details .. 5 Chapter II - Types of Rubber expansion Joints and Connectors A. Arch Type .. 6 B. Reducer Type: Taper .. 7 C. Custom Type .. 7 D. Sleeve Type .. 7 E. Special Flange Type .. 7 F. Designs for Reduction of Turbulence And Abrasion .. 8 G. Rectangular with Arch Type .. 8 H. U Type .. 8 I. Belt Dogbone Type.
4 9 J. Spherical Molded Type .. 9 K. Rubber Flanged Pipe, Fittings, Pipe Elbows .. 10 L. Unions .. 10 M. Fan Connectors .. 10 N. Retaining Rings and Control Units .. 10 O. expansion joint Protective Shields and Covers .. 10 Chapter III - Definition of Performance Characteristics A. expansion joint Motions .. 11 B. Sound Limiting Characteristics .. 11 C. Pressure Characteristics .. 11 D. Resistance to Fluids .. 11 E. Force Pounds and Spring Rates .. 12 F. Hydrostatic Testing.
5 12 G. Seismic Testing .. 12 H. Cycle Life .. 12 Chapter IV - Installation and Maintenance A. Anchoring and Guiding the Piping System .. 15 B. Control Units .. 15 C. Other Installations .. 16 D. Installation Instructions for Non-Metallic expansion Joints .. 17 E. Inspection Procedure for expansion Joints in Service .. 18 Chapter V - Flexible Rubber Pipe Connectors Foreword .. 19 A. Definition .. 19 B. Performance Characteristic .. 19 C. Construction Details .. 19 D. Types of Pipe Connectors.
6 19 E. Anchoring and Control Units .. 19 F. Installation and 20 Chapter VI - All Fluoroplastic Couplings, expansion Joints, Bellows Foreword .. 21 A. Construction Details .. 21 B. Performance Characteristics .. 21 C. Construction Detail .. 21 D. Dimensions .. 21 E. Types of Connectors .. 21 F. Anchoring .. 22 G. Installation and Maintenance .. 22 Tables I. Maximum Temperature Ratings .. 4 II. List of Elastomers Used in expansion Joints and Rubber Pipes .. 5 III. Comparison of Acoustical Impedances.
7 11 IV. Pressure Characteristics of Rubber expansion Joints .. 11 V. Typical Narrow Arch expansion joint Movement/ Spring Rate Capabilities .. 13 VI. Typical Wide Arch Movement/Spring Rate Capabilities .. 14 VII. Rubber Pipe Connectors .. 20 VIII. Coupling, 2 Convolution .. 22 IX. expansion joint , 3 Convolution .. 22 X. Bellows, 5 Convolution .. 22 Figures 1. Cross Section View of Standard expansion joint .. 3 2. 2A to 2T, Types of expansion Joints .. 6-10 3. 3A to 3F, Types of Movements .. 11 4. Thrust Formula .. 14 5. 5A to 5F, Piping Layout with Use of expansion Joints.
8 14-16 6. Assembly of Control Rods .. 15 7. 7A to 7C, Types of Rubber Pipe Connectors .. 18 8. Cross Section View of Rubber Pipe Connectors .. 19 9. 9A to 9C, Types of Fluoroplastic Connectors .. 20 10. Fluoroplastic expansion joint Flange .. 21 Appendixes A. Dimension Inspection Procedure .. 20 B. Common Flange Dimensions/Drilling Chart .. 23 C. Control Unit Dimensions and Ratings .. 24 D. Mating Flange Thickness .. 24 E. Glossary of Terms .. 25 F. Noise and Vibration Transmitted Through the Hydraulic Media Reduced with the Installation of expansion Joints .. 28 G.
9 Mechanical Vibration in a Steel Piping System Reduced with the Installation of Pipe Connectors or expansion Joints .. 29 H. Pressure Terminology .. 30 I. List of Specifications .. 30 J. Bibliography of Rubber expansion joint Articles .. 30 K. Would a Rubber or Metal expansion joint Better Suite my Application .. 31 FOREWORD: Rubber expansion joints have been specified and used for many years by consulting engineers, mechanical contractors, pressure vessel designers, plant engineers and turn-key construction firms. They are installed to accommodate movement in piping runs, protect piping from expansion and contraction and insure efficient and economical on-stream operations.
10 Rubber expansion joints provide time-tested ways to accommodate pressure loads, relieve movement stresses, reduce noise, isolate vibration, compensate for misalignment after plants go on stream and prolong the life of motive equipment. Rubber expansion joints, designed by engineers and fabricated by skilled craftsmen, are used in all systems conveying fluids under pressure and/or vacuum at various temperatures: Air Conditioning, heating and ventilating systems* in commercial and institutional buildings, schools, apartments, stores, hospitals, motels, hotels and aboard ships Central and ancillary power-generating stations in communities, factories, buildings and aboard ships.