MSS SP-143-2012 Live-Loaded Valve Stem Packing Systems《活负载阀杆填料系统》.pdf
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1、 MSS SP-143-2012 Live-Loaded Valve Stem Packing Systems Standard Practice Developed and Approved by the Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. 127 Park Street, NE Vienna, Virginia 22180-4602 Phone: (703) 281-6613 Fax: (703) 281-6671 E-mail: standardsmss-hq.org
2、 MSS www.mss-hq.org MSS STANDARD PRACTICE SP-143 i This MSS Standard Practice was developed under the consensus of the MSS Technical Committee 308 and the MSS Coordinating Committee. The content of this Standard Practice is the resulting efforts of competent and experienced volunteers to provide an
3、effective, clear, and non-exclusive standard that will benefit the industry as a whole. This MSS Standard Practice describes minimal requirements and is intended as a basis for common practice by the manufacturer, the user, and the general public. The existence of an MSS Standard Practice does not i
4、n itself preclude the manufacture, sale, or use of products not conforming to the Standard Practice. Mandatory conformance to this Standard Practice is established only by reference in other documents such as a code, specification, sales contract, or public law, as applicable. MSS has no power, nor
5、does it undertake, to enforce or certify compliance with this document. Any certification or other statement of compliance with the requirements of this Standard Practice shall not be attributable to MSS and is solely the responsibility of the certifier or maker of the statement. “Unless indicated o
6、therwise within this MSS Standard Practice, other standards documents referenced to herein are identified by the date of issue that was applicable to this Standard Practice at the date of approval of this MSS Standard Practice (see Annex A). This Standard Practice shall remain silent on the validity
7、 of those other standards of prior or subsequent dates of issue even though applicable provisions may not have changed.” By publication of this Standard Practice, no position is taken with respect to the validity of any potential claim(s) or of any patent rights in connection therewith. MSS shall no
8、t be held responsible for identifying any patent rights. Users are expressly advised that determination of patent rights and the risk of infringement of such rights are entirely their responsibility. In this Standard Practice, all text, notes, annexes, tables, figures, and references are construed t
9、o be essential to the understanding of the message of the standard, and are considered normative unless indicated as “supplemental”. All appendices, if included, that appear in this document are construed as “supplemental”. Note that supplemental information does not include mandatory requirements.
10、U.S. customary units in this Standard Practice are the standard; (SI) metric units are for reference only. Non-toleranced dimensions in this Standard Practice are nominal and, unless otherwise specified, shall be considered “for reference only”. Excerpts of this Standard Practice may be quoted with
11、permission. Credit lines should read Extracted from MSS SP-143-2012 with permission of the publisher, Manufacturers Standardization Society of the Valve and Fittings Industry. Reproduction and/or electronic transmission or dissemination is prohibited under copyright convention unless written permiss
12、ion is granted by the Manufacturers Standardization Society of the Valve and Fittings Industry Inc. All rights reserved. Originally Approved: February 2012 Originally Published: March 2012 MSS is a registered trademark of Manufacturers Standardization Society of the Valve and Fittings Industry, Inc.
13、 Copyright 2012 by Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. Printed in U.S.A. MSS STANDARD PRACTICE SP-143 ii FOREWORD This Standard Practice was developed by a cooperative effort of representatives of valve and packing manufacturers. This Standard Practice is i
14、ntended primarily to be an aid in the design and application of live-loaded packing systems. This Standard Practice represents the consensus input from a broad spectrum of industry representatives. This Standard Practice should not be construed to be effective for all pressures and types of services
15、 expected of ASME B16.34 valves. MSS STANDARD PRACTICE SP-143 iii TABLE OF CONTENTS SECTION PAGE 1 SCOPE . 1 2 DEFINITIONS . 1 3 APPLICATION GUIDELINES . 2 4 DESIGN GUIDELINES 2 5 PACKING LOAD DETERMINATION 4 6 SPRING SELECTION . 6 7 PACKING INSTALLATION 9 8 PRE-LOADING LIVE-LOADED SYSTEMS 9 TABLE 1
16、 Packing Factor 5 2 Typical Spring Material Properties 8 FIGURE 1 General Arrangement for Live-Loaded Packing System Using Belleville Springs . 2 2 Packing Chamber Details . 4 3 Belleville Spring Arrangements . 6 4 Belleville Dimensional Details 7 ANNEX A Referenced Standards and Applicable Dates 10
17、 MSS STANDARD PRACTICE SP-143 1 1. SCOPE This Standard Practice establishes the minimum requirements for the application, design and installation of live-loaded stem packing systems for valves designed in accordance with ASME B16.34, having rising and/or rotating stems. It applies to valves with fle
18、xible graphite, polytetrafluoroethylene (PTFE), or other packing stem seal material, regardless of frequency of operation. This Standard Practice does not apply to valves that include a lantern ring(s) as part of its packing system or to self-energized packing. 2. DEFINITIONS 2.1 See MSS SP-96 for d
19、efinitions of terms used in this Standard Practice. 2.2 The following definitions are unique to this Standard Practice: a. Live-loading System A system designed to provide a continuous compression sealing load on a valves packing system and has a build-in deflection feature to maintain the packing s
20、ealing load to overcome negative packing volumetric changes (relaxation, consolidation, shrinkage or wear) that may occur during a valves service life. b. Coil Spring A spring made by winding a wire around a cylinder or conical shape (volute spring) that has a near linear force/defection curve. c. B
21、elleville Spring, Belleville Disc Spring, Disc Spring, or Conical Compression Washer A conical shaped disc that will deflect (flatten) at a given rate. The spring rate is usually very high, allowing the deflective spring to produce a very large compressive load while occupying a very small space. It
22、 can be dimensionally defined by its outside diameter (O.D.), inside diameter (I.D.), material thickness (t), overall height (H) and flat deflection (h) capability. d. Sleeve Tubular device that fits over either Belleville O.D. or I.D. packing gland bolting to prevent lateral movement for stack of B
23、elleville disc springs having a larger I.D. than gland bolt, thickness less than gland bolt pitch, or to limit torque that can be applied to the disc spring stack. e. Wave and Nested Wave Springs Produced from flat spring stock in a washer style but waves are pressed in the washer perimeter, which p
24、rovides a deflection mechanism. They can be series stacked or parallel stacked like disc springs to meet load and deflection requirements. f. Gland Plates Designed to act like cantilever springs, providing load characteristics across a narrow deflection range. g. Packing “K” Factor A multiplier of t
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