...
首页> 外文期刊>International Journal of Technology >Study on the Alteration of Geometrical Dimensions of Tee Stiffeners Concerning the Ultimate Strength Characteristics under a Vertical Bending Load
【24h】

Study on the Alteration of Geometrical Dimensions of Tee Stiffeners Concerning the Ultimate Strength Characteristics under a Vertical Bending Load

机译:三通加劲肋的几何尺寸在垂直弯曲荷载下关于极限强度特性的变化研究

获取原文

摘要

The midship section in oil tankers has become a major concern for the maximum bending moment during operational conditions. The section is assembled by a top deck structure, side structure, and bottom structure, which is usually supported by a stiffened panel, that is, a panel with an attached stiffener. This study elaborated on the conventional tee stiffener profile on the midship section of an oil tanker structure. Ultimate strength analysis was carried out using the finite element method for all the stiffeners with various geometrical dimensions according to the International Association of Classification Societies. This included the calculation of the section’s modulus and mass as related variables, using an analytical approach. The results showed that the ultimate strength, section modulus, and mass were influenced by the alteration of web length and plate thickness. For example, an increase of 10 mm in web length gave an additional value of 2.22% for the ultimate strength, 2.8% for the section modulus, and 0.61% for the mass. In contrast, 1 mm of additional plate thickness increased the ultimate strength by 48.57%, section modulus by 6.91%, and mass by 3.68%.
机译:油船的中段已经成为操作条件下最大弯矩的主要关注点。该部分由顶板结构,侧部结构和底部结构组装而成,这些结构通常由加劲的面板支撑,也就是带有附加的加劲肋的面板。这项研究详细阐述了油轮结构中部部分的传统三通加劲肋轮廓。根据国际船级社协会,使用有限元方法对所有具有各种几何尺寸的加劲肋进行了极限强度分析。其中包括使用分析方法计算断面的模量和质量作为相关变量。结果表明,腹板长度和板厚的变化会影响极限强度,截面模量和质量。例如,腹板长度增加10 mm,极限强度的附加值为2.22%,截面模量的附加值为2.8%,质量的附加值为0.61%。相反,增加1毫米的板厚可以使极限强度提高48.57%,截面模量提高6.91%,质量提高3.68%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号