MSS SP-110-2010 Ball Valves Threaded Socket-Welding Solder Joint Grooved and Flared Ends (Incorporating Errata August 23 2010)《螺纹 承插焊 软钎焊 带槽和扩口球阀 包含勘误表 2010年8月23日》.pdf
《MSS SP-110-2010 Ball Valves Threaded Socket-Welding Solder Joint Grooved and Flared Ends (Incorporating Errata August 23 2010)《螺纹 承插焊 软钎焊 带槽和扩口球阀 包含勘误表 2010年8月23日》.pdf》由会员分享,可在线阅读,更多相关《MSS SP-110-2010 Ball Valves Threaded Socket-Welding Solder Joint Grooved and Flared Ends (Incorporating Errata August 23 2010)《螺纹 承插焊 软钎焊 带槽和扩口球阀 包含勘误表 2010年8月23日》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、 MSS SP-110-2010 Ball Valves Threaded, Socket-Welding, Solder Joint, Grooved and Flared Ends Standard Practice Developed and Approved by the Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. 127 Park Street, NE Vienna, Virginia 22180 Phone: (703) 281-6613 Fax: (703) 281-
2、6671 e-mail: infomss-hq.org www.mss-hq.org MSS STANDARD PRACTICE SP-110iThis MSS Standard Practice was developed under the consensus of the MSS Technical Committee 401 and the MSS Coordinating Committee. The content of this Standard Practice is the result of the efforts of competent and concerned vo
3、lunteers to provide an effective, clear, and non-exclusive specification that will benefit the industry as a whole. This MSS Standard Practice 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 in itsel
4、f preclude the manufacture, sale, or use of products not conforming to the Standard Practice. Mandatory conformance is established only by reference in a code, specification, sales contract, or public law, as applicable. “Other standards documents referred to herein are identified by the date of iss
5、ue that was applicable to this Standard Practice at the date of issue of this Standard Practice. See Annex A. This Standard Practice shall remain silent on the applicability of those other standards of prior or subsequent dates of issue even though applicable provisions may not have changed. Referen
6、ces contained herein which are bibliographic in nature are noted as supplemental in the text.” Unless otherwise specifically noted in this MSS SP, any standard referred to herein is identified by the date of issue that was applicable to the referenced standard(s) at the date of issue of this MSS Sta
7、ndard Practice (See Annex A). In this Standard Practice all notes, annexes, tables, and figures are construed to be essential to the understanding of the message of the standard, and are considered part of the text unless noted as “supplemental“. All appendices, if included, that appear in this docu
8、ment are construed as “supplemental“. Supplemental information does not include mandatory requirements for this Standard Practice. U.S. customary units in this Standard Practice are the standard; metric (SI) units are for reference only. Substantive changes in this 2010 edition are “flagged” by para
9、llel bars as shown on the margins of this paragraph. The specific detail of the change may be determined by comparing the material flagged with that in the previous edition. Non-toleranced dimensions in this Standard Practice are nominal, and, unless otherwise specified, shall be considered “for ref
10、erence only”. Any part of this Standard Practice may be quoted. Credit lines should read Extracted from MSS SP-110- 2010 with permission of the publisher, the Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. Reproduction prohibited under copyright convention unless writ
11、ten permission is granted by the Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. Originally Approved: May 1992 Copyright , 1992, 1996, 2010 by Manufacturers Standardization Society of the Valve and Fittings Industry, Inc. Printed in U.S.A. MSS STANDARD PRACTICE SP-110i
12、iTABLE OF CONTENTS SECTION PAGE 1 SCOPE. . 1 2 PRESSURE-TEMPERATURE RATINGS. . 1 3 MATERIALS. . 2 4 DESIGN. . 2 5 DIMENSIONS 3 6 MARKING 4 7 TESTING 4 TABLE 1 Port Sizes for Ball Valves . 6 2 Shell Test Duration (Visual Test Methods) 7 3 Seat Test Duration 7 FIGURE 1 Examples of Valve Types . 8 2 Ty
13、pical Nomenclature for Ball Valve Parts 9 ANNEX A Referenced Standards and Applicable Dates . 10 MSS STANDARD PRACTICE SP-110iiiMSS 127 Park Street, NE Vienna, VA 22180-4602 703-281-6613 FAX 703-281-6671 www.mss-hq.org e-mail:infomss-hq.org EXECUTIVE DIRECTOR: Robert F. ONeill ERRATA SHEET FOR MSS S
14、P-110-2010 BALL VALVES THREADED, SOCKET-WELDING, SOLDER JOINT, GROOVED AND FLARED ENDS August 23, 2010 Note the following correction: 1. Page 2, Section 3.3, Other Parts. Under “Caution for Users,” the second sentence should read “For guidance, see ASME B31.3, Appendix F.” This Errata Sheet is inclu
15、ded in the Standard Practice. Future printing of the Standard Practice will include this revised data. PRESIDENT: J.V. Ballun Val-Matic Valve not to exceed 20,000 psi. For non-listed bolt materials, the allowable bolt stress shall be taken as 25% of the yield strength, not to exceed 20,000 psi. 4.2.
16、3.2 Threaded bonnet or cover joints shall have a thread shear area that satisfies the following: P(Ag/As) .6Sa where: P = Valve cold working pressure, psig. MSS STANDARD PRACTICE SP-1103Ag = Area bounded by the effective outside periphery of a gasket or O-ring, or other seal effective periphery, exc
17、ept that in the case of a ring-joint, the bounded area is defined by the pitch diameter of the ring, square inches. As = Total effective thread shear area, square inches. Sa = Allowable minimum body/bonnet stress, from ASME Boiler and Pressure Vessel Code, Section VIII, Division 1, not to exceed 20,
18、000 psi. For non-listed materials, the allowable stress shall be the lesser of 25% of the minimum tensile strength, or 67% of the minimum yield strength, not to exceed 20,000 psi. 4.2.4 Valves having flanged body joints which split the valve either perpendicular to or at an angle with the piping are
19、 subject to piping loads. Bolting in these cases shall be such that a direct tensile stress shall not exceed 7/9of the allowable stress listed in ASME Boiler and Pressure Vessel Code, Section VIII, Division 1, not to exceed 20,000 psi. For non-listed bolting materials, the allowable bolt stress shal
20、l be taken as 25% of the yield strength not to exceed 20,000 psi. 4.2.5 Valves of a one-piece end entry type shall be designed so that the body insert is sufficient to withstand the full differential pressure permissible for the valve. 4.2.6 Threaded body joints exposed to piping loads shall satisfy
21、 the following thread shear area requirements: P(Ag/As) .47Sa where: P, Ag, As, and Sa are as defined in Section 4.2.3.2. 4.3 End Connections 4.3.1 Threaded pipe ends shall have taper pipe threads in accordance with ASME B1.20.1. 4.3.2 Socket dimensions of socket welding ends shall be in accordance
22、with ASME B16.11. 4.3.3 Solder cup dimensions of solder joint ends shall be in accordance with ASME B16.18. 4.3.4 Grooved ends shall have groove dimensions in accordance with MIL-P-11087G. 4.3.5 Flared ends shall be in accordance with ASME B16.26. 4.4 Stems 4.4.1 To prevent removal of the stem while
23、 the valve is pressurized, the valve shall be designed so that the stem seal retainer assembly (gland) alone does not retain the stem. 4.4.2 In those cases where service conditions require electrical continuity between the stem and body, the purchaser must so specify. 4.5 Stem Packing 4.5.1 The valv
24、e shall have provisions for adjustment of a gland or packing nut in order to obtain a seal at the stem packing. The exception is for valves with elastomeric stem seals, where adjustment is not possible. 4.6 Position Indication 4.6.1 The valve shall have a positive means of indication of ball port po
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