题名

鋼筋混凝土樁帽剪力強度之評估

并列篇名

SHEAR STRENGTH PREDICTION FOR REINFORCED CONCRETE PILE CAPS

作者

李東明(Tung-Ming Lee);呂文堯(Wen-Yao Lu);林國禎(Guo-Zhen Lin)

关键词

鋼筋混凝土 ; 樁帽 ; 剪力強度 ; 軟化壓-拉桿 ; reinforced concrete ; pile cap ; shear strength ; softened strut-and-tie

期刊名称

技術學刊

卷期/出版年月

36卷1期(2021 / 03 / 01)

页次

13 - 26

内容语文

繁體中文

中文摘要

由樁帽及基樁所構成之樁基礎,係藉由基樁穿越軟弱土層而將建築物之載重傳遞到深層之堅硬土壤以確保結構安全。鋼筋混凝土樁帽之設計,除了須具有足夠的厚度以避免剪力破壞外,並須配置適量的撓曲鋼筋以確保樁帽不會發生撓曲破壞。本研究根據軟化壓-拉桿模型,建議一簡化分析方法來計算鋼筋混凝土樁帽之剪力強度。藉由試驗值和分析值之比對,以探討分析方法之精確性,經由試驗數據之測試比對發現,美國ACI規範斷面法及本研究所建議之分析方法,皆能均勻地預測鋼筋混凝土樁帽之剪力強度,惟美國ACI規範斷面法對於剪力跨度與有效深度比值較小之樁帽會得到不保守地剪力強度預測。

英文摘要

The pile foundation consisting of pile caps and piles transfers the load of the building to the deep hard soil by means of piles that pass through the soft soil layers to ensure structural safety. The design of the reinforced concrete pile caps should provide sufficient thickness to avoid shear failure as well as an appropriate amount of flexural reinforcement to avoid flexural failure. In this study, a simplified analytical method was proposed based on the softened strut-and-tie model to calculate the shear strength of reinforced concrete pile caps. The prediction precision of the proposed analytical method and the section method of the ACI Code are verified by comparing the experimental and analytical values. According to the experimental verification, it is found that both methods can obtain uniform predictions for the shear strength of the reinforced concrete pile caps. However, the section method of the ACI Code may be non-conservative for pile caps with relative low shear span-to-depth ratios.

主题分类 工程學 > 工程學綜合
参考文献
  1. ACI Committee(2014).Building Code Requirements for Structural Concrete (ACI 318-14) and Commentary (ACI 318R-14).Farmington Hills, MI:American Concrete Institute.
  2. Adebar, P.,Zhou, L.(1996).Design of Deep Pile Caps by Strut-and-Tie Models.ACI Structural Journal,93(4),437-448.
  3. Gogate, A. B.,Sabnis, G. M.(1980).Design of Thick Pile Caps.ACI Journal,77(1),18-22.
  4. Hwang, S. J.,Lee, H. J.(2002).Strength Prediction for Discontinuity Regions Failing in Diagonal Compressions by Softened Strut-And-Tie Model.Journal of Structural Engineering,128(12),1519-1526.
  5. Hwang, S. J.,Lu, W. Y.,Lee, H. J.(2000).Shear Strength Prediction for Reinforced Concrete Corbels.ACI Structural Journal,97(4),543-552.
  6. Hwang, S. J.,Lu, W. Y.,Lee, H. J.(2000).Shear Strength Prediction for Deep Beams.ACI Structural Journal,97(3),367-376.
  7. Lu, W. Y.,Lin, I. J.,Hwang, S. J.,Lin, Y. H.(2003).Shear Strength of High-Strength Concrete Dapped-End Beams.Journal of Chinese Institute of Engineers,26(5),671-680.
  8. Meléndez-Gimeno, C.,Sagaseta, J.,Sosa, P. F. M.,Pallarés Rubio, L.(2019).Refined Three-Dimensional Strutand-Tie Model for Analysis and Design of Four-Pile Caps.ACI Structural Journal,116(4),15-29.
  9. Ohtsuki, K.,Suzuki, K.(1996).Experimental Study on Bending Ultimate Strength of Four Pile Caps.Journal of Structural and Construction Engineering,61(482),93-102.
  10. Park, J.,Kuchma, D.,Souza, R.(2008).Strength Predictions of Pile Caps by a Strut-and-Tie Model Approach.Canadian Journal of Civil Engineering,35(12),1399-1413.
  11. Suzuki, K.,Otsuki, K.(2002).Experimental Study on Corner Shear Failure of Pile Caps.Transactions of the Japan Concrete Institute,23,303-310.
  12. Suzuki, K.,Otsuki, K.,Tsubata, T.(1999).Experimental Study on Four-Pile Caps with Taper.Transactions of the Japan Concrete Institute,21(3),571-576.
  13. Suzuki, K.,Otsuki, K.,Tsubata, T.(1999).Influence of Bar Arrangement on Ultimate Strength of Four-Pile Caps.Transactions of the Japan Concrete Institute,20,195-202.
  14. Suzuki, K.,Otsuki, K.,Tsuchia, T.(2001).Influence of Edge Distance on Failure Mechanism of Pile Caps.Transactions of the Japan Concrete Institute,22,361-368.