避雷針法蘭節點高強螺栓風振疲勞性能
首發時間:2023-07-31
摘要:為研究風荷載對避雷針結構法蘭節點高強螺栓疲勞性能的影響,采用雙向流固耦合方法對其進行三維數值風洞模擬,基于雨流計數法與等效應力幅公式,結合M24高強螺栓常幅疲勞試驗數據,預測不同風速工況下的高強螺栓疲勞壽命。結果表明:風環境場內法蘭節點迎風駐點處高強螺栓應力最大,且應力集中位置與常幅疲勞試驗斷口位置基本吻合;高強螺栓位移響應易與結構前4階頻率產生共振,尤其在0.40 Hz和1.96 Hz頻率下的響應較為顯著;不同風速組合工況對高強螺栓疲勞壽命影響較大,其中組合風速差值為10 m/s工況下所計算的等效應力幅增長率是組合風速差值為5 m/s工況下的2.8倍,對結構二階效應更為明顯。
關鍵詞: 雙向流固耦合 高強螺栓 三維數值風洞模擬 法蘭節點 風振疲勞
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Study on the wind-induced fatigue behavior of high strength bolt of lightning rod flange joint
Abstract:In order to study the influence of wind load on the fatigue performance of high-strength bolts at the flange joints of framed lightning rod structure, this paper adopts a two-way fluid-structure coupling method to conduct three-dimensional numerical wind tunnel simulation of framed lightning rod structure and flange joints. Based on the combination of the rain-flow counting method, the equivalent stress amplitude formula and the constant amplitude fatigue test data of M24 high-strength bolts, the fatigue life of high strength bolts with flange joints is predicted under different wind speeds. The analysis results show that the stress concentration position of the high-strength bolt used for flange joints is obviously affected by the wind environment field, and the stress concentration position of the high-strength bolt at the windward stationary point is the largest. Moreover, the stress concentration position is basically consistent with the fracture position of the constant amplitude fatigue test. The transverse and downwind displacement responses of high-strength bolts are easily resonant with the first four frequencies of the structure, especially at frequencies of 0.40 Hz and 1.96 Hz. Different wind speed combinations have great influence on the fatigue life of high-strength bolts. The equivalent stress amplitude growth rate calculated under the combined wind speed difference of 10 m/s is 2.8 times larger than that under the combined wind speed difference of 5m/s, and the second-order effect on the structure is more obvious.
Keywords: bidirectional fluid-structure coupling high strength bolt three-dimensional numerical wind tunnel simulation flange joint the wind vibration fatigue
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