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COATINGS FOR ENHANCED PASSIVE DAMPING

机译:增强无源阻尼的涂料

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The amplitude of vibration in a structure undergoing resonant vibration is governed by the total damping of the system. As the inherent damping of materials suitable for use in the fabrication of structures and machine components is often quite low, increasing the total system damping by including a dissipative material or mechanism can often provide significant reductions in the peak values of response (stress, strain, and displacement), enabling more efficient designs and enhanced performance. Available methodologies include active dampers and such passive techniques as friction and impact dampers and constrained layer treatments. It has also been found that metals and ceramics applied as free-layer hard coatings by plasma spray or electron beam physical vapor deposition add significant damping to vibrating members. In order to incorporate the influence of a damping coating in a prediction of system response during a preliminary design, it is essential that properties of the coating be known. The relevant damping characteristic is a measure of the energy dissipated by a homogeneous unit volume of material undergoing a completely reversed cycle of oscillation. A useful metric for this is the loss modulus. As all of these materials are inherently non-linear, as evidenced by amplitude-dependent measures of damping, determinations of properties must be made at the levels of strain appropriate to the application. Methods for determining the damping properties of materials are discussed, and comparisons are made of the damping of various classes of materials with those of ceramic coatings deposited by plasma spray or electron beam physical vapor deposition.
机译:经历共振振动的结构中的振动幅度由系统的总阻尼决定。由于适用于结构和机械部件制造的材料固有的阻尼通常非常低,因此通过包含耗散材料或机制来增加整个系统的阻尼通常可以显着降低响应峰值(应力,应变,和位移),从而可以实现更高效的设计并提高性能。可用的方法包括主动阻尼器以及诸如摩擦和冲击阻尼器以及约束层处理之类的被动技术。还已经发现,通过等离子喷涂或电子束物理气相沉积而用作自由层硬涂层的金属和陶瓷对振动构件具有显着的阻尼作用。为了在初步设计期间将阻尼涂层的影响纳入系统响应的预测中,至关重要的是要知道涂层的性能。相关的阻尼特性是对均匀单位体积的材料经历完全相反的振荡循环后所耗散的能量的度量。对此有用的度量是损耗模量。由于所有这些材料本质上都是非线性的,正如振幅相关的阻尼测量所证明的那样,必须在适合于应用的应变水平下确定性能。讨论了确定材料阻尼特性的方法,并对各种材料的阻尼与通过等离子喷涂或电子束物理气相沉积法沉积的陶瓷涂层的阻尼进行了比较。

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