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Prediction of plane-strain specimen geometry to efficiently obtain a forming limit diagram by Marciniak test 被引量:1

Prediction of plane-strain specimen geometry to efficiently obtain a forming limit diagram by Marciniak test
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摘要 Plane-strain forming limit strain (also known as FLD0) is an important data point on a forming limit diagram (FLD). The effects of friction coefficients and material parameters on the specimen width associated with the FLDo (W FLD0) in Marciniak test were studied by finite element simulation. WFLD0 was expressed as a function of the Lankford coefficients, n-value, k-value and sheet thickness and validated with various sheet materials. The determination of W FLD0 is of significance not only to reduce iterative attempts to accurately obtain FLDo, but also to obtain a full valid FLD with the least number of test specimens, which largely increases the efficiency and reduces cost to experimentally measure valid FLDs. Plane-strain forming limit strain (also known as FLD0) is an important data point on a forming limit diagram (FLD). The effects of friction coefficients and material parameters on the specimen width associated with the FLDo (W FLD0) in Marciniak test were studied by finite element simulation. WFLD0 was expressed as a function of the Lankford coefficients, n-value, k-value and sheet thickness and validated with various sheet materials. The determination of W FLD0 is of significance not only to reduce iterative attempts to accurately obtain FLDo, but also to obtain a full valid FLD with the least number of test specimens, which largely increases the efficiency and reduces cost to experimentally measure valid FLDs.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2018年第5期539-545,共7页
关键词 Forming limit test ·Sheet metal· Plane-strain state· Marciniak test Forming limit test ·Sheet metal· Plane-strain state· Marciniak test
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