SAE International Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques 2016-01-0420

Description
It is well known that manufacturing operations produce material conditions that can either enhance or debit the fatigue life of production components. One of the most critical aspects of material condition that can have a significant impact on fatigue life is residual stress (RS) [ 1 , 2 ]. When springs are manufactured, the spring stock may undergo several operations during production. Additional operations may also be introduced for the purpose of imparting the spring with beneficial surface RS to extend its fatigue life and increase its ability to execute the task it was designed to perform. The resultant RS present in production springs as a result of the various fabrication and processing operations applied can be predicted and modeled, however, RS measurements must be performed in order to quantify the RS state with precision. X-ray diffraction (XRD) techniques can be used to determine the RS state of such components precisely, thus enabling manufacturers the ability to accurately and quantitatively characterize and control the effects of their production processes [ 3 ].
Description
It is well known that manufacturing operations produce material conditions that can either enhance or debit the fatigue life of production components. One of the most critical aspects of material condition that can have a significant impact on fatigue life is residual stress (RS) [ 1 , 2 ]. When springs are manufactured, the spring stock may undergo several operations during production. Additional operations may also be introduced for the purpose of imparting the spring with beneficial surface RS to extend its fatigue life and increase its ability to execute the task it was designed to perform. The resultant RS present in production springs as a result of the various fabrication and processing operations applied can be predicted and modeled, however, RS measurements must be performed in order to quantify the RS state with precision. X-ray diffraction (XRD) techniques can be used to determine the RS state of such components precisely, thus enabling manufacturers the ability to accurately and quantitatively characterize and control the effects of their production processes [ 3 ].

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Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques - 2016-01-0420 - SAE International
Warrendale, PA, United States
Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques
2016-01-0420
Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques 2016-01-0420
It is well known that manufacturing operations produce material conditions that can either enhance or debit the fatigue life of production components. One of the most critical aspects of material condition that can have a significant impact on fatigue life is residual stress (RS) [ 1 , 2 ]. When springs are manufactured, the spring stock may undergo several operations during production. Additional operations may also be introduced for the purpose of imparting the spring with beneficial surface RS to extend its fatigue life and increase its ability to execute the task it was designed to perform. The resultant RS present in production springs as a result of the various fabrication and processing operations applied can be predicted and modeled, however, RS measurements must be performed in order to quantify the RS state with precision. X-ray diffraction (XRD) techniques can be used to determine the RS state of such components precisely, thus enabling manufacturers the ability to accurately and quantitatively characterize and control the effects of their production processes [ 3 ].

It is well known that manufacturing operations produce material conditions that can either enhance or debit the fatigue life of production components. One of the most critical aspects of material condition that can have a significant impact on fatigue life is residual stress (RS) [ 1 , 2 ]. When springs are manufactured, the spring stock may undergo several operations during production. Additional operations may also be introduced for the purpose of imparting the spring with beneficial surface RS to extend its fatigue life and increase its ability to execute the task it was designed to perform. The resultant RS present in production springs as a result of the various fabrication and processing operations applied can be predicted and modeled, however, RS measurements must be performed in order to quantify the RS state with precision. X-ray diffraction (XRD) techniques can be used to determine the RS state of such components precisely, thus enabling manufacturers the ability to accurately and quantitatively characterize and control the effects of their production processes [ 3 ].

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  SAE International
Product Category Standards and Technical Documents
Product Number 2016-01-0420
Product Name Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques
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