...
首页> 外文期刊>Journal of bridge engineering >Proposed Modification of AASHTO-LRFD for Computing Stress in Unbonded Tendons at Ultimate
【24h】

Proposed Modification of AASHTO-LRFD for Computing Stress in Unbonded Tendons at Ultimate

机译:AASHTO-LRFD的拟议修改,用于计算极限时无粘结筋的应力

获取原文
获取原文并翻译 | 示例

摘要

In 1998, AASHTO-LRFD adopted a new equation for evaluating the stress/ps in unbonded tendons at ultimate. In explaining the development and applicability of the new AASHTO-LRFD equation, some investigators concluded that the new equation is conservative and more rational when compared with the ACI building code approach for computing fps. However, in a comprehensive study carried out by the writer, it was found that while the AASHTO-LRFD equation is indeed more rational than the ACI building code approach because it accounts for continuous members, it still encounters significant scatter in predicting test data. Also, using conservative collapse mechanisms that involve loading a single span in a multispan member for all loading cases as proposed in AASHTO-LRFD leads to design inconsistencies. Based on the results of this assessment, supported by a large body of test data, an expression for evaluating the equivalent plastic-hinge length in unbonded members at ultimate was developed. The corresponding expression can be used in conjunction with the concept of a collapse mechanism for developing a general strain-compatibility model and a direct equation for evaluating fps in unbonded externally or internally posttensioned continuous members. This paper illustrates the development of the strain-compatibility model and the direct-design expression and proposes that they replace Eq. 5.7.3.1.2-1 of AASHTO-LRFD for computing/^. A design example is provided to illustrate the use of the proposed approach.
机译:1998年,AASHTO-LRFD采用了一个新的方程式来评估无粘结筋的极限应力/ ps。在解释新的AASHTO-LRFD方程的发展和适用性时,一些研究人员得出结论,与用于计算fps的ACI建筑代码方法相比,该新方程是保守且更合理的。但是,在作者进行的一项全面研究中,发现尽管AASHTO-LRFD公式确实比ACI建筑法规方法更合理,因为它考虑了连续的成员,但在预测测试数据时仍然遇到很大的分散。同样,使用保守的倒塌机制(如AASHTO-LRFD中所建议的那样,针对所有加载情况在多跨度构件中加载单个跨度)会导致设计不一致。基于该评估结果,在大量测试数据的支持下,开发了一种表达式,用于评估最终未粘结构件的等效塑性铰长度。可以将相应的表达式与塌陷机制的概念结合使用,以开发通用的应变兼容性模型,并使用直接方程式评估未粘结的外部或内部后张连续构件中的fps。本文说明了应变相容性模型和直接设计表达式的发展,并建议用它们代替方程式。 AASHTO-LRFD的5.7.3.1.2-1用于计算/。提供了一个设计示例来说明所提出方法的使用。

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