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Standard Specification for Copper and Copper-Alloy Seamless Condenser and Heat Exchanger Tubes With Integral Fins
Automaticky přeložený název:
Standardní specifikace pro mědi a slitin mědi Bezproblémová chladičem a výměník tepla s integrovaným ploutví
NORMA vydána dne 15.5.2015
Označení normy: ASTM B359/B359M-15
Poznámka: NEPLATNÁ
Datum vydání normy: 15.5.2015
Kód zboží: NS-590470
Počet stran: 11
Přibližná hmotnost: 33 g (0.07 liber)
Země: Americká technická norma
Kategorie: Technické normy ASTM
Keywords:
condenser, copper, copper alloys, heat exchanger, integral fins, seamless, tube, UNS No. C10100, UNS No. C10200, UNS No. C10300, UNS No. C10800, UNS No.C12000, UNS No.C12200, UNS No. C14200, UNS No. C19200, UNS No. C23000, UNS No. C44300, UNS No. C44400, UNS No. C44500, UNS No. C60800, UNS No. C68700, UNS No. C70400, UNS No. C70600, UNS No. C70620, UNS No. C71000, UNS No. C71500, UNS No. C71520, UNS No. C72200,, ICS Number Code 23.040.15 (Non-ferrous metal pipes)
1. Scope | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
1.1 This specification2 establishes the requirements for seamless copper and copper alloy tubing on which the external or internal surface, or both, has been modified by a cold-forming process to produce an integral enhanced surface for improved heat transfer. 1.2 The tubes are typically used in surface condensers, evaporators, and heat exchangers. 1.3 The product shall be produced of the following coppers or copper alloys, as specified in the ordering information.
Note 1: Designations listed in Classification B224.
1.4 Units—The values stated in either in-pound units or SI units are to be regarded separately as the standard. Within the text, the SI units are shown in brackets. The values stated in each system are not exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems could result in nonconformance with the specification. 1.5 Product produced in accordance with the Supplementary Requirements section for military applications shall be produced only to the inch-pound system of this specification. 1.6 The following safety hazard caveat
pertains only to the test methods described in this specification.
1.7 (
Standard Classification of Coppers Standard Classification for Temper
Designations for Copper and Copper Alloys´Wrought and Cast
(Includes all amendments and changes 10/24/2018). Standard Test Method for Mercurous
Nitrate Test for Copper Alloys Standard Test Method for Expansion (Pin
Test) of Copper and Copper-Alloy Pipe and Tubing Standard Test Method for Determination of
Oxygen in Copper and Copper Alloys by Inert Gas Fusion Standard Test Methods for Chemical
Analysis of Copper Alloys Standard Practice for Sampling Copper and
Copper Alloys for the Determination of Chemical Composition Standard Practice for Electromagnetic
(Eddy Current) Examination of Copper and Copper-Alloy Tubes Standard Test Methods for Chemical
Analysis of Copper-Chromium Alloys Standard Test Methods for Determining
Average Grain Size Standard Test Methods for Chemical
Analysis of Copper and Copper Alloys (Photometric Methods) Standard Test Method for Determination of
Copper in Unalloyed Copper by Gravimetry Standard Practice for Using Significant
Digits in Test Data to Determine Conformance with
Specifications Standard Test Methods for Tension Testing
of Metallic Materials Standard Guide for Preparation of
Metallographic Specimens Standard Specification for Corrugated and
Solid Fiberboard Sheet Stock (Container Grade) and Cut Shapes Standard Test Method for Flattening of
Copper and Copper-Alloy Pipe and Tube Standard Practice for Packaging of Copper
and Copper Alloy Mill Products for U.S. Government Agencies Standard Test Method for Ammonia Vapor
Test for Determining Susceptibility to Stress Corrosion Cracking in
Copper Alloys Standard Terminology for Copper and
Copper Alloys (Includes all amendments and changes 8/8/2019). Standard Specification for Oxygen-Free
Electrolytic Copper´Refinery Shapes |
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