ARI 760-2007 PERFORMANCE RATING OF SOLENOID VALVES FOR USE WITH VOLATILE REFRIGERANTS.pdf
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1、 2007 STANDARD for 4100 N. FAIRFAX DR., SUITE 200 ARLINGTON, VIRGINIA 22203 PERFORMANCE RATING OF SOLENOID VALVES FOR USE WITH VOLATILE REFRIGERANTS Standard 760 Copyright Air-Conditioning and Refrigeration Institute Provided by IHS under license with ARI Not for ResaleNo reproduction or networking
2、permitted without license from IHS-,-,-Price $15.00 (M) $30.00 (NM) Printed in U.S.A. Copyright 2007, by Air-Conditioning and Refrigeration Institute Registered United States Patent and Trademark Office IMPORTANT SAFETY DISCLAIMER ARI does not set safety standards and does not certify or guarantee t
3、he safety of any products, components or systems designed, tested, rated, installed or operated in accordance with this standard/guideline. It is strongly recommended that products be designed, constructed, assembled, installed and operated in accordance with nationally recognized safety standards a
4、nd code requirements appropriate for products covered by this standard/guideline. ARI uses its best efforts to develop standards/guidelines employing state-of-the-art and accepted industry practices. ARI does not certify or guarantee that any tests conducted under its standards/guidelines will be no
5、n-hazardous or free from risk. Note: This standard supersedes ARI Standard 760-2001. Copyright Air-Conditioning and Refrigeration Institute Provided by IHS under license with ARI Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-TABLE OF CONTENTS SECTION PAGE Section
6、 1. Purpose 1 Section 2. Scope .1 Section 3. Definitions .1 Section 4. Test Requirements.2 Section 5. Rating Requirements .2 Section 6. Minimum Data Requirements for Published Ratings4 Section 7. Marking and Nameplate Data4 Section 8. Conformance Conditions.4 TABLES Table 1. Standard Rating Conditio
7、ns.3 APPENDICES Appendix A. References - Normative.5 Appendix B. References - Informative .5 Appendix C. Method of Testing for Rating Solenoid Valves for Maximum Operating Pressure Differential (MOPD) - Normative 6 TABLES FOR APPENDICES Table C1. Pressure-tap Hole Diameters and Lengths 8 FIGURES FOR
8、 APPENDICES Figure C1. Typical System Piping for Solenoid Valve MOPD Test with Gas or Liquid .7 Figure C2. Typical Electrical Test Apparatus for an Alternating Current Solenoid Valve 9 Figure C3. Typical Electrical Test Apparatus for a Direct Current Solenoid Valve.10 Copyright Air-Conditioning and
9、Refrigeration Institute Provided by IHS under license with ARI Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-This page is intentionally blank. Copyright Air-Conditioning and Refrigeration Institute Provided by IHS under license with ARI Not for ResaleNo reproduct
10、ion or networking permitted without license from IHS-,-,-ARI STANDARD 760-2007 1 PERFORMANCE RATING OF SOLENOID VALVES FOR USE WITH VOLATILE REFRIGERANTS Section 1. Purpose 1.1 Purpose. The purpose of this standard is to establish for Solenoid Valves: definitions; test requirements; rating requireme
11、nts; minimum data requirements for Published Ratings; marking and nameplate data; and conformance conditions. 1.1.1 Intent. This standard is intended for the guidance of the industry, including manufacturers, engineers, installers, contractors and users. 1.1.2 Review and Amendment. This standard is
12、subject to review and amendment as technology advances. Section 2. Scope 2.1 Scope. This standard applies to Solenoid Valves for use with Volatile Refrigerants as defined in Section 3. Section 3. Definitions All terms in this document follow the standard industry definitions in the current edition o
13、f ASHRAE Terminology of Heating, Ventilation, Air Conditioning and Refrigeration unless otherwise defined in this section. 3.1 Bubble Point. Refrigerant liquid saturation temperature at a specified pressure. 3.2 Dew Point. Refrigerant vapor saturation temperature at a specified pressure. 3.3 Main. T
14、ubing or piping by which the Solenoid Valve is connected to the apparatus. 3.4 Maximum Operating Pressure Differential (MOPD). The maximum pressure difference between the solenoid valve inlet and the solenoid valve outlet at which the Solenoid Valve will operate, psi kPa. 3.5 Pressure Drop. The pres
15、sure difference between the solenoid valve inlet and the solenoid valve outlet with the main port (orifice) open, psi kPa. 3.6 Published Rating. A statement of the assigned values of those performance characteristics, under stated Rating Conditions, by which a unit may be chosen to fit its applicati
16、on. These values apply to all units of like nominal size and type (identification) produced by the same manufacturer. The term Published Rating includes the rating of all performance characteristics shown on the unit or published in specifications, advertising or other literature controlled by the m
17、anufacturer, at stated Rating Conditions. 3.6.1 Application Rating. A rating based on tests performed at application Rating Conditions (other than Standard Rating Conditions). 3.6.2 Standard Rating. A rating based on tests performed at Standard Rating Conditions. 3.7 Rating Conditions. Any set of op
18、erating conditions under which a single level of performance results and which causes only that level of performance to occur. 3.7.1 Standard Rating Conditions. Rating Conditions used as the basis of comparison for performance characteristics. 3.8 “Shall“ or “Should.“ “Shall“ or “should“ shall be in
19、terpreted as follows: Copyright Air-Conditioning and Refrigeration Institute Provided by IHS under license with ARI Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-ARI STANDARD 760-2007 2 3.8.1 Shall. Where “shall“ or “shall not“ is used for a provision specified,
20、that provision is mandatory if compliance with the standard is claimed. 3.8.2 Should. “Should“ is used to indicate provisions which are not mandatory but which are desirable as good practice. 3.9 Solenoid Valve. A valve which is actuated by the magnetic action of an electrically energized coil. The
21、opposite action is accomplished by gravity, pressure or spring action. 3.9.1 Direct-Action Solenoid Valve. A valve in which the magnetic power of an electrically energized coil moves the main port (orifice) closure member. 3.9.2 Normally Closed Solenoid Valve. A valve which is closed when de-energiz
22、ed. When the coil is electrically energized, the closure member is moved away from and off the port (orifice) to cause the opening action. 3.9.3 Normally Open Solenoid Valve. A valve which is open when de-energized. When the coil is electrically energized, the closure member is moved toward and onto
23、 the port (orifice) to cause the closing action. 3.9.4 Pilot-Operated Solenoid Valve. A valve in which the motion of a direct-acting member allows a pressure difference to occur across the main port (orifice) closure member, causing it to move. 3.10 Solenoid Valve Capacity. The mass flow rate of a f
24、luid through the Solenoid Valve, equated to tons of refrigeration kW at the specified conditions. Section 4. Test Requirements 4.1 Capacity Tests. All capacity tests shall be in accordance with the test procedure outlined in ANSI/ASHRAE Standard 158.1. 4.2 MOPD Tests. All MOPD tests shall be in acco
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