针对特殊情况下飞机座舱内部振动噪声过大的实际情况 ,本文对其进行了振动噪声被动控制实验研究。以某飞机座舱模型为研究对象 ,应用粘弹阻尼材料成功实现了一套飞机座舱模型振动噪声被动控制系统。同时利用比利时 L MS国际公司的 Cada-...针对特殊情况下飞机座舱内部振动噪声过大的实际情况 ,本文对其进行了振动噪声被动控制实验研究。以某飞机座舱模型为研究对象 ,应用粘弹阻尼材料成功实现了一套飞机座舱模型振动噪声被动控制系统。同时利用比利时 L MS国际公司的 Cada- X L MS结构动力学分析系统建立了一套完整的振动噪声控制性能测试系统 ,可广泛应用于各种被动、主动控制系统的振动噪声控制性能测试。最后利用该测试系统对上述飞机座舱模型振动噪声被动控制系统进行了控制性能测试实验 ,结果表明控制效果良好 ,说明了此方法可以用于飞机座舱的振动噪声控制。展开更多
To improve the performance of traditional mechanical shock absorber, a new type of high molecular polymer is formulated and applied to overloaded vehicle shock absorber. According to the operating principle of high-pe...To improve the performance of traditional mechanical shock absorber, a new type of high molecular polymer is formulated and applied to overloaded vehicle shock absorber. According to the operating principle of high-performance viscoelastic material shock absorber, the geometrical structure of shock absorber is designed and machined. Then its theoretical model is derived by using analytical method, and the impact test is carried out on high-performance viscoelastic material shock absorber. The results show that experimental and theoretical damping force curves have good agreement, which validates the credibility of theoretical model. The investigation provides a potential way to enhance damping performance and increase vehicle load.展开更多
文摘针对特殊情况下飞机座舱内部振动噪声过大的实际情况 ,本文对其进行了振动噪声被动控制实验研究。以某飞机座舱模型为研究对象 ,应用粘弹阻尼材料成功实现了一套飞机座舱模型振动噪声被动控制系统。同时利用比利时 L MS国际公司的 Cada- X L MS结构动力学分析系统建立了一套完整的振动噪声控制性能测试系统 ,可广泛应用于各种被动、主动控制系统的振动噪声控制性能测试。最后利用该测试系统对上述飞机座舱模型振动噪声被动控制系统进行了控制性能测试实验 ,结果表明控制效果良好 ,说明了此方法可以用于飞机座舱的振动噪声控制。
基金National Natural Science Foundation of China(No.51476150)Funds for International Joint Research Program of Shanxi Province(No.2014081028)Scientific and Technologial Innovation Programs of Higher Education Institutions of Shanxi Province
文摘To improve the performance of traditional mechanical shock absorber, a new type of high molecular polymer is formulated and applied to overloaded vehicle shock absorber. According to the operating principle of high-performance viscoelastic material shock absorber, the geometrical structure of shock absorber is designed and machined. Then its theoretical model is derived by using analytical method, and the impact test is carried out on high-performance viscoelastic material shock absorber. The results show that experimental and theoretical damping force curves have good agreement, which validates the credibility of theoretical model. The investigation provides a potential way to enhance damping performance and increase vehicle load.