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  • Summary & Details

A Novel Method to Nondestructively Measure the Shear Edge Properties for Edge Cracking Evaluation with Advanced High Strength Steels

先進高強度鋼での端部亀裂評価に対するせん断端部特性を非破壊的に測定するための新しい方法

Detailed Information

Category(E)[Materials and Lightweighting] Sheet Metal Forming Technology
Author(E)1) Nikky Pathak, 2) Jiahui Gu, 3) Hyunok Kim
Affiliation(E)1) EWI Forming Center, 2) EWI Forming Center, 3) EWI Forming Center
Abstract(J)DP980鋼のせん断端部品質における変動を特性化するための渦電流センサをベースにした実時間モニタリング非破壊評価技術を検討した.材料の厚さの5%と25%の間の種々のクリアランスでせん断した端部を走査するのに適用した.開発した方法は,特に先進高強度鋼のブランクプロセスあるいはスタンパーに対する打ち抜き作業,穿孔作業に影響する.

Translation

Abstract(E)Nondestructive Evaluation (NDE) techniques are widely used in the manufacturing industry to control the quality of materials or final products. In the automotive industry, eddy current (EC) testing is one of the most extensively used NDE techniques for automatic in-line inspection of ferrous materials such as advanced high strength steels (AHSS). In addition, shearing is a very common forming operation in the automotive industry. With the increase of shearing clearance, the sheared-edge experiences significant work-hardening that normally decreases the formability of the sheared edge. In this paper, a novel, real-time monitoring NDE method based on the EC sensor was developed to characterize variations in shear edge quality for a DP980 steel. The developed NDE method was applied to scan the edges sheared at various clearances between 5% and 25% of the material thickness. The signal received was correlated with pre-straining introduced during the shearing process at various clearances. Microhardness measurements were taken to compare the trends obtained from the NDE tool with the hardness values. To evaluate the edge formability, half-specimen dome testing (HSDT) was conducted for the edges sheared at various clearances. A digital image correlation (DIC) system was used to record deformation during the HSDT. The failure strain of sheared edges was correlated with the NDE measurements for each clearance to assess the application of an NDE measurement in determining edge quality. The developed NDE method has great potential for significant financial and technical impact on blanking and piercing operations for blank processors or stampers, particularly for AHSS.

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