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  • 學位論文

拱形樑於端點受力矩時之折斷式挫曲理論與實驗

Experiment and Theory on the Snap-Through Buckling of a Pinned Half-Sine Arch under End Couples

指導教授 : 陳振山

摘要


本文以理論分析預測拱形樑於端點分別受到靜態與動態的力矩作用下,發生折斷式挫曲所需的臨界力矩,同時以數值方法模擬拱形樑受到步階形式力矩作用時的動態反應,並以實驗量測來驗証理論所求出的結果。在實驗量測方面,我們首先量測拱形樑於一端及兩端受到緩慢增加的力矩作用時,拱形樑中點高度的變化,之後我們量測拱形樑中點受到敲擊時振幅衰減的比例,用來估計拱形樑的阻尼係數,以及量測拱形樑於受力及未受力的情況下的自然頻率,最後我們量測拱形樑於一端及兩端受到步階形式力矩作用下發生折斷式挫曲時,中點高度隨時間變化的行為,並將實驗量得的數據與代入估計阻尼係數作數值模擬所得到的結果相互對照。

關鍵字

拱形樑

並列摘要


In this paper we investigate, both numerically and experimentally, both the static and dynamic case, the end couple is applied in the form of a step function with infinite duration. Attention is focused on the prediction of the snap-through buckling loads, both static and dynamic. The relations between the critical load with different initial heights are presented. In the experiment we examine the arch when one end and both ends are affected by moment increased slowly, the change of the height of mid point of the arch, later we amount examined the proportion that the amplitude decayed when the arch mid point was beaten, used for estimating the arch damping coefficient, and quantity examine the arch on strength and receive natural frequency of situation of strength, we amount finally examine the arch happen person who break at the song of frustrating until one end and both ends affect by steps form moment of the step, the behavior that the mid point highly changes over time, and the data won of the testing amount, with taking the place of and entering estimating that contrast each other in result that will be received of simulation of counting value of damping coefficient.

並列關鍵字

arch

參考文獻


[3] Humphreys, J.S., 1966, “On Dynamic Snap Buckling of Shallow
[4] Simitses, G.J., 1990, Dynamic Stability of Suddenly Loaded Structures,
Springer-Verlag, New York.
Shallow Arch under a Moving Mass-Dashpot-Spring System,” ASME
[1] Timoshenko,S.P., 1935,”Buckling of Flat Curved Bars and Slightly

被引用紀錄


張家瑋(2010)。利用有限元素分析受拘束拱梁在集中力矩作用下之穩定性〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2010.10103

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