ABSTRACT
Fatigue calculations of thin parts subjected to caulking and shearing forces lead to the conclusion that their life time can be significantly increased by providing sufficient prestressing prior to screwing. There is currently no reliable prediction method available. However, experimental results be they full-size or tests on test-pieces have allowed for the elaboration of a simple method facilitating the evaluation of the prestress force to be applied. The distribution of stresses between assembly fasteners, the issue of the stability of a screw-nut system or the loss of adherence under the heads and in the threads are parameters which can also cause loosening.
Read this article from a comprehensive knowledge base, updated and supplemented with articles reviewed by scientific committees.
Read the article
INTRODUCTION
In the first part of
[BM 5 564]
, we presented the dimensioning at failure of connections working in shear. We also discussed the calculation of load transfer between the rows of fasteners in a joint bar, showing the complexity of the problem when bolt tightening is significant and the resulting frictional load transfer is no longer negligible.
In this second part, we focus on the fatigue calculation of assemblies working in mat-shear, then show that service life can be considerably increased by installing sufficient prestressing. At present, little is known about this essential problem, and there is no proven method of prediction. On the other hand, recent experimental results clearly show that service life can be increased tenfold, or even a hundredfold, by applying appropriate bolt tightening, and we propose a simple method for determining the prestressing force to be installed.
To complete this presentation, we deal with the calculation of load distribution between fasteners in the case of any arrangement and loading, and with the problem of assembly stability.
You do not have access to this resource.
Exclusive to subscribers. 97% yet to be discovered!
Already subscribed?
Log in!
Ongoing reading
Calculating screw-mount assemblies - Assembling thin layers of flat parts. Part 2