Invention Grant
US08828159B2 Steel material for automobile chassis parts superior in fatigue characteristics and method of production of automobile chassis parts using the same
有权
用于汽车底盘零件的钢材,疲劳特性优良,使用该材料的汽车底盘零件的生产方法
- Patent Title: Steel material for automobile chassis parts superior in fatigue characteristics and method of production of automobile chassis parts using the same
- Patent Title (中): 用于汽车底盘零件的钢材,疲劳特性优良,使用该材料的汽车底盘零件的生产方法
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Application No.: US12310033Application Date: 2007-08-08
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Publication No.: US08828159B2Publication Date: 2014-09-09
- Inventor: Hideyuki Nakamura , Isao Anai , Yasushi Yamamoto , Takaaki Fukushi , Izuru Yamamoto , Masaaki Kondo , Satoru Shimazu
- Applicant: Hideyuki Nakamura , Isao Anai , Yasushi Yamamoto , Takaaki Fukushi , Izuru Yamamoto , Masaaki Kondo , Satoru Shimazu
- Applicant Address: JP Tokyo JP Aichi
- Assignee: Nippon Steel & Sumitomo Metal Corporation,Toyota Jidosha Kabushiki Kaisha
- Current Assignee: Nippon Steel & Sumitomo Metal Corporation,Toyota Jidosha Kabushiki Kaisha
- Current Assignee Address: JP Tokyo JP Aichi
- Agency: Kenyon & Kenyon LLP
- Priority: JP2006-219737 20060811; JP2007-197348 20070730
- International Application: PCT/JP2007/065893 WO 20070808
- International Announcement: WO2008/018624 WO 20080214
- Main IPC: C21D9/08
- IPC: C21D9/08 ; C21D8/10

Abstract:
The present invention provides a steel material for automobile chassis parts which has high fatigue characteristics, does not require much cost for heat treatment, and further is superior in shapeability and a method of production of automobile chassis parts using this steel material, that is, one being a steel material to which Nb and Mo have been compositely added and having a difference 50 to 150 points between a Vicker's hardness of the center of plate thickness and a maximum value of Vicker's hardness within 0.5 mm from the surface after bending by a bending R of the plate outer surface of 2 to 5 times the plate thickness. The surface is high in hardness and the center part is low in hardness, so the fatigue characteristics and shapeability are superior. Note that if annealing under conditions giving a tempering parameter λ defined by λ=T(20+log(t)) of 14000 to 19000 (where T is the absolute temperature, t is the time (h), and the temperature rise is 660° C.), it is possible to relieve the internal stress and further improve the fatigue characteristics.
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