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ASTM E 1169 : 2002

Superseded
Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by
superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Guide for Conducting Ruggedness Tests
Available format(s)

Hardcopy , PDF

Superseded date

11-11-2014

Language(s)

English

Published date

10-10-2002

1.1 In studying a test method, it is necessary to consider the effect of environmental factors on the results obtained using the test method. If this effect is not considered, the results from the original developmental work on the test method may not be as accurate as expected.The purpose of a ruggedness test is to find the variables (experimental factors) that strongly influence the measurements provided by the test method, and to determine how closely these variables need to be controlled. Ruggedness tests do not determine the optimum conditions for the test method.

1.2 The experimental designs most often used in ruggedness testing are the so called "Plackett-Burman" designs (1). Other experimental designs also can be used. This guide, however, will restrict itself to Plackett-Burman designs with two levels per variable because these designs are particularly easy to use and are efficient in developing the information needed for improving test methods. The designs require the simultaneous change of the levels of all of the variables, and allow the determination of the separated effects of each of the variables on the measured results. In ruggedness tests the two levels for each variable are set so as not to be greatly different. For such situations, the calculated effect for any given variable is generally not greatly affected by changes in the level of any of the other variables. A detailed example involving glass electrode measurements of the pH of dilute acid solutions is used to illustrate ruggedness test procedures. A method is presented for evaluating the experimental uncertainties.

1.3 The information in this guide is arranged as follows:

Section
Scope1
Referenced Documents2
Terminology3
Summary of Guide4
Significance and Use5
Plackett-Burman Designs Applied to Ruggedness Tests6
Plackett-Burman Design Calculations7
Plackett-Burman Design Considerations8
Interpretation of Results9
Example10
Testing Effects from Repeated (pH) Experiments11
Controllable versus Uncontrollable Factors12
Additional Information13
Tables
Figures
Appendixes
Additional Plackett-BurmanAppendix X1.
DesignsShort-Cut CalculationsReferencesX1.3.

1.4 This 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.

Committee
E 11
DocumentType
Guide
Pages
7
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

ASTM E 2653 : 2015 Standard Practice for Conducting an Interlaboratory Study to Determine Precision Estimates for a Fire Test Method with Fewer Than Six Participating Laboratories
ASTM D 7778 : 2015 Standard Guide for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
ASTM E 1323 : 2015 Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
ASTM D 3670 : 1991 : R2014 Standard Guide for Determination of Precision and Bias of Methods of Committee D22
ASTM E 3097 : 2017 Standard Test Method for Mechanical Uniaxial Constant Force Thermal Cycling of Shape Memory Alloys
ASTM E 3098 : 2017 Standard Test Method for Mechanical Uniaxial Pre-strain and Thermal Free Recovery of Shape Memory Alloys
ASTM E 1601 : 2012 Standard Practice for Conducting an Interlaboratory Study to Evaluate the Performance of an Analytical Method
ASTM F 2394 : 2007 : R2017 Standard Guide for Measuring Securement of Balloon Expandable Vascular Stent Mounted on Delivery System
ASTM D 2777 : 2013 Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water
ASTM G 156 : 2017 Standard Practice for Selecting and Characterizing Weathering Reference Materials
ASTM D 8064 : 2016 Standard Test Method for Elemental Analysis of Soil and Solid Waste by Monochromatic Energy Dispersive X-ray Fluorescence Spectrometry Using Multiple Monochromatic Excitation Beams
ASTM E 691 : 2018 Standard Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method
ASTM C 1067 : 2012 Standard Practice for Conducting a Ruggedness Evaluation or Screening Program for Test Methods for Construction Materials

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