Development of a New Method for Evaluating Effects of Tramp Elements on Surface Hot Shortness in Steels
Development of a New Method for Evaluating Effects of Tramp Elements on Surface Hot Shortness in Steels
批准号:
07555514
负责人:
SHIBATA Koji
金额:
$1.22万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
1995
资助国家:
日本
项目状态:
已结题
起止时间:
1995 至 1996
中文摘要
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英文摘要
The feasibility of a new method for evaluating the susceptibility of steels to surface hot shortness due to Cu and Sn derived from iron scrap was examined. Steels used are IF steels containing 0.1-0.2%Cu and a small amount of Sn and 0.1%C-0.4%Cu steels. Chemical compositions of the IF steels were controlled with the purpose of being as similar as possible to those of steels of which the susceptibility was previously examined by a visual method in a practical rolling process at Nippon Steel Corporation. Tensile tests were carried out at 1100゚C after heating a specimen in air or Ar gas. The total elongation and maximum load were measured from a load-elongation curve. By dividing the difference between the total elongations or maximum loads obtained in air and Ar gas by the total elongation or maximum load in Ar gas, the parameters Ee or Ep were calculated. By considering the reduction in specimen diameter due to oxidation, the Ep corrected, Ep', was calculated. The Ee, Ep and Ep' of the … More IF steels corresponded to the degree of the penetration of surface cracks observed in the practical rolling process. Surface cracks stop growing along the depth direction at the earlier stage of deformation when the amount of Cu-enriched phase is the smaller at steel-scale interface. Tensile tests using specimens having artificial round cracks clarified that the Ee and Ep' increased with an increase in the crack depth and that, in contrast, the Ep' increased slightly and the Ee decreased with an increase in the number of cracks. The parameter Ee and Ep' showed a maximum value at a strain rate of around 3X10^<-2>s^<-1>, and the difference in their values among the steels is largest around this strain rate. Therefore it is possible to know sensitively the effects of any factors like alloying or impurity elements on surface hot shortness at around this strain rate although this strain rate is much slower than those of hot workings. Using the new method of evaluating susceptibility to surface hot shortness, effects of some elements on the shortness were examined and many fruitful results were obtained. Less
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Soek-Jomg Seo,Kentaro Asakura and Koji Shibata: "Evaluation of Susceptibility to surtace Hot Shortness in Cu-Containing steels by Tensile Test" ISIJ International. 37,3. 232-239 (1997)
Soek-Jomg Seo、Kentaro Asakura 和 Koji Shibata:“通过拉伸试验评估含铜钢表面热脆性的敏感性”ISIJ International。
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通讯作者:
Seok-Jong Seo,Kentaro Asakura and Koji Shibata: "Effects of Allaying Elements on surface Hot Shortness of Cu Bearing Steels" Proc.for 38th Mechanical Working and Steel processing Conference,Cleveland,1996. (in print). (1997)
Seok-Jong Seo、Kentaro Asakura 和 Koji Shibata:“缓和元素对含铜轴承钢表面热脆性的影响”,第 38 届机械加工和钢材加工会议,克利夫兰,1996 年。
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Koji Shibata, Seok-Jong Seo and Kentaro Asakura: "Evaluation of Susceptibility to Surface Hot Shortness in Cu-Containing Steels by Tensile Test" Proc.for Symposium on Effects of Tramp Elements on Steel Properties, ISIJ,Tokyo. 156-157 (1997)
Koji Shibata、Seok-Jong Seo 和 Kentaro Asakura:“通过拉伸试验评估含铜钢表面热脆性的敏感性”,杂质元素对钢性能影响研讨会论文集,ISIJ,东京。
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Seok-Jong Seo, Kentaro Asakura and Koji Shibata: "Effects of Alloying Elements on Surface Hot Shortness of Copper Bearing Steels" Proc.for 38th Mechanical Working and Steel Processing Conference, Cleveland. (in print). (1996)
Seok-Jong Seo、Kentaro Asakura 和 Koji Shibata:“合金元素对含铜轴承钢表面热脆性的影响”,克利夫兰第 38 届机械加工和钢材加工会议论文集。
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S.J.Seo et al.: "Evaluation of Susceptibility to Surface Hot Shorthness in Cu Containing Steels by Tensile Test" ISIJ International. 37,No3. 232-239 (1997)
S.J.Seo 等人:“通过拉伸试验评估含铜钢表面热脆性的敏感性”ISIJ International。
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