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Noise and vibration improvements in vibratory feeders by analytical models and experimental analysis

机译:通过分析模型和实验分析振动饲养器噪声和振动改善

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Vibratory feeders are employed in a wide range of industrial process for the motion of slight elements. The oscillating motion of the feeders may lead to unacceptable vibrations that induce high noise levels and structural failures. In this context, the present work gives a mathematical model for the evaluation of the dynamic behavior of linear vibratory feeders, based on the Eksergian's equation of motion. The proposed approach is generic being suitable for the use of arbitrary input data in order to provide a tool for the NVH improvement of this type of machine. An extended experimental campaign has been carried out on a real vibratory feeder in order to characterize the mechanical system in terms of torsional oscillations and translational vibrations also. The model verification has been performed by means of the experimental data considering different working conditions. The validity of the simulated results has been achieved in all the tested conditions with a satisfactory accuracy level. Moreover, as a further proof of the model reliability, the simulation results have been exploited for the improvement of the dynamic behavior of a real vibratory feeder.
机译:振动进料器用于各种工业过程中,用于轻微的元素的运动。进纸器的振荡运动可能导致诱导高噪声水平和结构故障的不可接受的振动。在这种情况下,本作基于EKSERGIAN的运动方程,给出了用于评估线性振动馈线的动态行为的数学模型。所提出的方法是适合使用任意输入数据的通用,以便为这种类型的机器提供NVH改进的工具。在真正的振动馈线上进行了扩展的实验活动,以便在扭转振荡和平移振动方面表征机械系统。通过考虑不同的工作条件的实验数据,已经进行了模型验证。在所有测试条件下,仿真结果的有效性具有令人满意的精度。此外,作为模型可靠性的进一步证明,仿真结果已被利用用于改善真实振动送料器的动态行为。

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