ASTM E262-17 PDF

ASTM E262-17 PDF

Name:
ASTM E262-17 PDF

Published Date:
08/01/2017

Status:
Active

Description:

Standard Test Method for Determining Thermal Neutron Reaction Rates and Thermal Neutron Fluence Rates by Radioactivation Techniques

Publisher:
ASTM International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

SKU:

Choose Document Language:
$24.9
Need Help?

1.1 The purpose of this test method is to define a general procedure for determining an unknown thermal-neutron fluence rate by neutron activation techniques. It is not practicable to describe completely a technique applicable to the large number of experimental situations that require the measurement of a thermal-neutron fluence rate. Therefore, this method is presented so that the user may adapt to their particular situation the fundamental procedures of the following techniques.

1.1.1 Radiometric counting technique using pure cobalt, pure gold, pure indium, cobalt-aluminum, alloy, gold-aluminum alloy, or indium-aluminum alloy.

1.1.2 Standard comparison technique using pure gold, or gold-aluminum alloy, and

1.1.3 Secondary standard comparison techniques using pure indium, indium-aluminum alloy, pure dysprosium, or dysprosium-aluminum alloy.

1.2 The techniques presented are limited to measurements at room temperatures. However, special problems when making thermal-neutron fluence rate measurements in high-temperature environments are discussed in 9.2. For those circumstances where the use of cadmium as a thermal shield is undesirable because of potential spectrum perturbations or of temperatures above the melting point of cadmium, the method described in Test Method E481 can be used in some cases. Alternatively, gadolinium filters may be used instead of cadmium. For high temperature applications in which aluminum alloys are unsuitable, other alloys such as cobalt-nickel or cobalt-vanadium have been used.

1.3 This test method may be used to determine the equivalent 2200 m/s fluence rate. The accurate determination of the actual thermal neutron fluence rate requires knowledge of the neutron temperature, and determination of the neutron temperature is not within the scope of the standard.

1.4 The techniques presented are suitable only for neutron fields having a significant thermal neutron component, in which moderating materials are present, and for which the average scattering cross section is large compared to the average absorption cross section in the thermal neutron energy range.

1.5 Table 1 indicates the useful neutron-fluence ranges for each detector material.

Foil Material

Form

Useful Range (neutrons/cm 2)

Indium

pure or alloyed with aluminum

103 to 1012

Gold

pure or alloyed with aluminum

107 to 1014

Dysprosium

pure or alloyed with aluminum

103 to 1010

Cobalt

pure or alloyed with aluminum

1014 to 1020


File Size : 1 file , 170 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 11
Published : 08/01/2017
Redline File Size : 2 files , 330 KB

History

ASTM E262-17(2024)e1
Published Date: 05/01/2024
Standard Test Method for Determining Thermal Neutron Reaction Rates and Thermal Neutron Fluence Rates by Radioactivation Techniques
$20.7
ASTM E262-17
Published Date: 08/01/2017
Standard Test Method for Determining Thermal Neutron Reaction Rates and Thermal Neutron Fluence Rates by Radioactivation Techniques
$24.9
ASTM E262-13
Published Date: 01/01/2013
Standard Test Method for Determining Thermal Neutron Reaction Rates and Thermal Neutron Fluence Rates by Radioactivation Techniques
$20.1
ASTM E262-08
Published Date: 11/01/2008
Standard Test Method for Determining Thermal Neutron Reaction Rates and Thermal Neutron Fluence Rates by Radioactivation Techniques
$18
ASTM E262-03
Published Date: 02/10/2003
Standard Method for Determining Thermal Neutron Reaction and Fluence Rates by Radioactivation Techniques
$18
ASTM E262-97
Published Date: 06/10/1997
Standard Method for Determining Thermal Neutron Reaction and Fluence Rates by Radioactivation Techniques
$17.4

Related products

ASTM E822-92(2023)
Published Date: 05/01/2023
Standard Practice for Determining Resistance of Solar Collector Covers to Hail by Impact with Propelled Ice Balls
$17.1
ASTM E910-24
Published Date: 05/01/2024
Standard Test Method for Application and Analysis of Helium Accumulation Fluence Monitors for Reactor Vessel Surveillance
$20.7
ASTM E1328-05
Published Date: 04/01/2005
Standard Terminology Relating to Photovoltaic Solar Energy Conversion (Withdrawn 2012)
$15
ASTM E1892-15(2021)
Published Date: 02/01/2021
Standard Guide for Preparing Characterization Plans for Decommissioning Nuclear Facilities
$13.8

Best-Selling Products