• ASTM B 215 : 2015 : REDLINE

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

    Standard Practices for Sampling Metal Powders

    Available format(s):  PDF

    Superseded date:  13-11-2020

    Language(s):  English

    Published date:  01-10-2015

    Publisher:  American Society for Testing and Materials

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    Abstract - (Show below) - (Hide below)

    CONTAINED IN VOL. 02.05, 2017 Defines sampling methods used to collect a small quantity of metal powder that is as representative of the entire starting material as possible, and details the procedures that are recommended for reducing this quantity into smaller test portions on which chemical, physical, and mechanical property data may be determined.

    Scope - (Show below) - (Hide below)

    1.1These practices cover sampling methods used to collect a small quantity of metal powder that is as representative of the entire starting material as possible, and details the procedures that are recommended for reducing this quantity into smaller test portions on which chemical, physical, and mechanical property data may be determined.

    1.2Several sampling practices are described, depending on their applicability to the conditions of storage and transport of the sampled powders:

    1.2.1Practice 1A (Described in Section 6)—Applicable to sampling moving powders, as when being transferred from one container to another or to a process stream; or when falling from a conveyor; or in a moving process stream. This is the preferred practice for obtaining the several increments that are combined to form the gross sample.

    1.2.2Practice 1B (Described in Section 7)—Applicable to sampling powders that have already been packaged for transport, as in a bag or drum. A hollow tubular slot sampler is the recommended way to sample these packaged powders to obtain the increments (7.1.1). Alternatively, when other methods are not possible or available, a procedure specified here (7.1.2) may be used to randomly scoop samples from the powder, using a scoop of specified material and configuration.

    1.2.3Practice 2 (Described in Section 8)—Applicable to obtaining test portions from the composite sample. For larger quantities of powder, a chute splitter is generally used, while a spinning riffler is used for smaller quantities.

    1.3These practices apply to particulate materials or mixtures of particulates with particle sizes generally less than one millimetre and include mixtures containing lubricant, with or without other non-metallic additives, that are ready for compacting.

    1.4These practices do not cover the sampling of flake powders or pastes. For procedures on the sampling and testing of flake metal powders and pastes, refer to Test Methods D480.

    1.5The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

    1.6This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

    General Product Information - (Show below) - (Hide below)

    Committee B 09
    Document Type Redline
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By

    Standards Referenced By This Book - (Show below) - (Hide below)

    SAE AMS 5792 : 2012 POWDER, PLASMA SPRAY, 50 (88WC - 12CO) + 35 (70NI - 16.5CR - 4FE - 4SI - 3.8B) + 15 (80NI - 20AL), THREE-COMPONENT MIXTURE
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    ASTM B 527 : 2015 : REDLINE Standard Test Method for Tap Density of Metal Powders and Compounds
    ASTM B 213 : 2017 : REDLINE Standard Test Methods for Flow Rate of Metal Powders Using the Hall Flowmeter Funnel
    MIL-DTL-32495 Base Document:2014 ALUMINUM-BASED POWDERS FOR COLD SPRAY DEPOSITION
    MIL-DTL-382 Revision E:2014 Magnesium Powder - For Use In Ammunition
    ASTM B 703 : 2017 Standard Test Method for Apparent Density of Metal Powders and Related Compounds Using the Arnold Meter
    AASHTO PP 74 : 2013 : R2015 PRACTICE FOR DETERMINATION OF SIZE AND ROUNDNESS OF GLASS BEADS USED IN TRAFFIC MARKINGS BY MEANS OF COMPUTERIZED OPTICAL METHOD
    SAE AMS 7878 : 1987 TUNGSTEN CARBIDE POWDER, COBALT COATED
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    NASA MSFC SPEC 3717 : 2017 SPECIFICATION FOR CONTROL AND QUALIFICATION OF LASER POWDER BED FUSION METALLURGICAL PROCESSES
    ASTM D 7971 : 2015 Standard Guide for Measuring Roundness of Glass Spheres Using a Flowing Stream Digital Image Analyzer
    MIL-P-62680 Base Document:1992 POWDER, NICKEL-CHROMIUM/ALUMINUM COMPOSITE (METRIC)
    SAE AMS 7882 : 2013 TUNGSTEN CARBIDE-COBALT CHROME POWDER, AGGLOMERATED AND SINTERED
    SAE J 1993 : 2013 HIGH-CARBON CAST-STEEL GRIT
    ASTM D 7681 : 2011 : R2016 Standard Test Method for Measuring Gradation of Glass Spheres Using a Flowing Stream Digital Image Analyzer
    SAE AMS 5791 : 2015 COBALT ALLOY, POWDER, PLASMA SPRAY, 56.5CO - 25.5CR - 10.5NI - 7.5W
    SAE AMS 7002 : 2018 PROCESS REQUIREMENTS FOR PRODUCTION OF METAL POWDER FEEDSTOCK FOR USE IN ADDITIVE MANUFACTURING OF AEROSPACE PARTS
    ASTM B 925 : 2015 : REDLINE Standard Practices for Production and Preparation of Powder Metallurgy (PM) Test Specimens
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