2017The Proceedings of Ibaraki District ConferenceOpen access

A basic study on buckling evaluation method for plate structures

Takashi Yamaguchi

Open full text 0 citations

Abstract

A buckling evaluation method without buckling tests or simulations for plate structures with corner dimension was proposed. The buckling strength is given as the product of Euler’s buckling force and buckling coefficient. In the previous study, a buckling coefficient for flat plates was derived, and an evaluation method for that was proposed. In this study, we extended the buckling coefficient for the flat plates to that for plates with corner dimensions at the both ends. Next, buckling analyses were executed to solve buckling forces for the plates under the conditions of various corner dimensions, and then an effective buckling length factor was derived to predict the buckling coefficients and the buckling forces. By comparing the buckling forces between the buckling analyses and the proposed method, it was found that buckling forces of the plates can be predicted within an error of 2.48 %, and the established method is available for buckling evaluation for the plate structures with the corner dimension.

About this research paper

What this paper is about

A buckling evaluation method without buckling tests or simulations for plate structures with corner dimension was proposed. The buckling strength is given as the product of Euler’s buckling force and buckling coefficient. In the previous study, a buckling coefficient for flat plates was derived, and an evaluation method for that was proposed. In this study, we extended the buckling coefficient for the flat plates to that for plates with corner dimensions at the both ends. Next, buckling analyses were executed to solve buckling forces for the plates under the conditions of various corner dimensions, and then an effective buckling length factor was derived to predict the buckling coefficients and the buckling forces. By comparing the buckling forces between the buckling analyses and the proposed method, it was found that buckling forces of the plates can be predicted within an error of 2.48 %, and the established method is available for buckling evaluation for the plate structures with the corner dimension.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A buckling evaluation method without buckling tests or simulations for plate structures with corner dimension was proposed. The buckling strength is given as the product of Euler’s buckling force and buckling coefficient. In the previous study, a buckling coefficient for flat plates was derived, and an evaluation method for that was proposed. In this study, we extended the buckling coefficient for the flat plates to that for plates with corner dimensions at the both ends. Next, buckling analyses were executed to solve buckling forces for the plates under the conditions of various corner dimensions, and then an effective buckling length factor was derived to predict the buckling coefficients and the buckling forces. By comparing the buckling forces between the buckling analyses and the proposed method, it was found that buckling forces of the plates can be predicted within an error of 2.48 %, and the established method is available for buckling evaluation for the plate structures with the corner dimension.

Key concepts: Buckling, Structural engineering, Materials science, Engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
A basic study on buckling evaluation method for plate structures — Research Paper | ScholarLens