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被動(dòng)隔振體的非線性振動(dòng)分析

時(shí)間:2024-08-06 12:38:48 數(shù)學(xué)畢業(yè)論文 我要投稿
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被動(dòng)隔振體的非線性振動(dòng)分析

被動(dòng)隔振體的非線性振動(dòng)分析
 
摘要:本文獲得了隔振材料的結(jié)構(gòu)阻尼的數(shù)學(xué)表達(dá)式;利用變形的3次多項(xiàng)式函數(shù)表征了隔振材料的非線性剛度;根據(jù)被動(dòng)隔振體的拉格朗日原理導(dǎo)出了由地基振動(dòng)激勵(lì)的計(jì)及剛度非線性和結(jié)構(gòu)阻尼的被動(dòng)隔振體的非線性動(dòng)力學(xué)方程;利用諧波平衡法研究了非線性動(dòng)力響應(yīng),得出了非線性方程的周期解;并對(duì)解的穩(wěn)定性進(jìn)行了分析,得出了方程周期解的穩(wěn)定和不穩(wěn)定區(qū)域的分界線方程;對(duì)系統(tǒng)進(jìn)行了頻率響應(yīng)分析,得出了頻響方程;利用Matlab軟件繪出了穩(wěn)定和不穩(wěn)定區(qū)域的分界線方程的曲線圖和頻率響應(yīng)曲線圖;獲得了在進(jìn)行隔振設(shè)計(jì)和隔振效果時(shí)應(yīng)該注意的3點(diǎn)結(jié)論:
(1) 只有系統(tǒng)的參量位于穩(wěn)定區(qū)范圍時(shí),才有穩(wěn)定的周期解,在這個(gè)區(qū)域進(jìn)行隔振效果比較好;
(2) 被動(dòng)隔振的剛度非線性和材料阻尼非線性使被動(dòng)隔振體的頻率響應(yīng)特性曲線呈硬特性效應(yīng),被動(dòng)隔振體的振動(dòng)除了存在 的主共振外,還存在 的超諧共振;
(3) 考慮剛度非線性和材料阻尼非線性的被動(dòng)隔振體的振動(dòng)產(chǎn)生突跳和滯后現(xiàn)象,當(dāng) 時(shí)其振幅不1定是最大點(diǎn)。

關(guān)鍵詞:隔振;結(jié)構(gòu)阻尼;非線性;諧波平衡法

 An Analysis on the Nonlinear Oscillation of Passive Vibration  Isolator
 
Abstract: In this essay, the mathematical expression of vibration isolators’ structure damping has been obtained. By using the three-cubed multinomial function, a nonlinear rigidity of vibration isolator has been presented. On the ground of Lagrange Principle, meter and nonlinear rigidity prompted by ground vibration are calculated and the nonlinear kinetic formula is concluded. A research on nonlinear kinetic response has been done by using the method of harmonic balance and gets a periodic result of nonlinear formula. Through an analysis of the stability of the result, a bound equation of stable and instable periodic results of the nonlinear formula is found. A frequency response formula is drawn out by analyzing frequency response of the system. With the help of software Matlab, the curve charts of the bound equation and the frequency response are made. A conclusion as following is drawn with regard to vibration isolation plan and vibration isolation effects.
(1)Only when the parameter of the system is located in the stable bound, can a stable periodic result be attained and only in such a case can a sound effect of vibration isolation be found.
        (2)The rigid nonlinearity of the passive vibration isolator and the nonlinearity of the damping make the frequency response curve of passive vibration isolator takes on a rigid characteristic. The main resonance of the passive vibration isolator can be expressed as  . Apart from this, there are still superharmonic resonance, including 
(3)Given the nonlinear rigidity and the nonlinearity of the damping, which may cause sudden leaps or delay in the vibration, the oscillation amplitude is not necessarily at the highest point even when 

Keywords: Vibration isolation; Structural damping; Nonlinear; Method of harmonic balance
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