Advanced High Strength Steels for Automobile Body Structures

Author:

Takahashi M.1,Uenishi A.1,Yoshida H.1,Kuriyama H.1

Affiliation:

1. Nippon Steel Corporation

Abstract

There has been a big demand for increased vehicle safety and weight reduction of auto-bodies. An extensive use of high strength steels is one of the ways to answer the requirement. Since the crashworthiness is improved by applications of higher strength steels to crashworthiness conscious structural components, various types of advanced high strength steels have been developed. The crash energy during frontal collisions is absorbed by the buckling and bending deformations of thin wall tube structures of the crushable zone of auto-bodies. In the case of side collision, on the other hand, a limited length of crushable zone requires the components to minimize the deformation during the collision. The lower the strength during press forming, the better the press formability is expected. However, the higher the strength at a collision event, the better the crashworthiness can be obtained. It can, therefore, be concluded that steels with higher strain rate sensitivities are desired. Combinations of soft ferrite phase and other hard phases were found to improve the strain rate sensitivity of flow stresses. Bake hardening is also one of the ways to improve the strain rate sensitivity of flow stresses.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference11 articles.

1. A. Uenishi, M. Suehiro, Y. Kuriyama, M. Usuda, IBEC'96, Automotive Body Interior & Safety Systems, Automotive Technology Group Inc., Michigan USA, (1996), p.89.

2. A. Uenishi, H. Yoshida, Y. Kuriyama and M. Takahashi: Nippon Steel Corporation Technical Report, 378 (2003), p.21.

3. M. Takahashi, A. Uenishi, H. Yoshida and Y. Kuriyama: Proc. of JSAE meeting, No. 106-02 (2002), p.1.

4. K. Fukui, K. Yamamoto, N. Mizui, Y. Hirose and N. Kojima: Proc. of JSAE meeting, No. 976 (1997), p.255.

5. JDDRG: Handbook on Sheet Metal Forming Serverity (2nd edition), Nikkan Kogyo Shinbunsha, (1997), 423.

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