首页> 外文会议>ASME international mechanical engineering congress and exposition >INNOVATIVE DESIGNS FOR THE SUSPENSION SYSTEM OF HORIZONTAL-AXIS WASHING MACHINES: SECONDARY SUSPENSIONS AND TUNED MASS DAMPERS
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INNOVATIVE DESIGNS FOR THE SUSPENSION SYSTEM OF HORIZONTAL-AXIS WASHING MACHINES: SECONDARY SUSPENSIONS AND TUNED MASS DAMPERS

机译:水平轴洗衣机悬挂系统的创新设计:二次悬挂和调谐式阻尼器

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Cabinet vibrations during spinning cycles of washing machines are often perceived negatively by customers, both in acoustic and visual terms. Therefore, in a market that is more and more oriented towards customer satisfaction and appliance efficiency, reducing cabinet vibrations and noise is a very attractive target. Previous experimental campaigns have highlighted that currently installed dry-friction dampers have highly non-linear characteristics and they are the main source of broadband forcing on the cabinet panels. To overcome these negative effects, two innovative designs for the suspension system have been studied and are here presented: the first solution is a secondary suspension system, designed to filter out the high frequency force components introduced by the dampers and therefore to mitigate panel vibrations; the second solution is more radical and it consists in removing the existing dampers and to substitute them with a tuned mass damper (TMD), directly fixed to the oscillating group. These solutions are a compromise between cost and efficiency, since a linear oil damper would impact excessively on the final cost of the appliance. The secondary suspension system has been designed to meet the very strict requirements of the manufacturer: low cost (which implies small mass) and applicable to the existing machine without any modification of any part other than the dampers themselves. The desired results have been achieved increasing the mass of the damper rod and introducing a fixed-fixed (or hinged-hinged) beam spring. The prototype of the secondary suspension has been tested independently and assembled in the washing machine, and the vibratory and acoustic results will be reported. The introduction of a TMD and the contextual removal of the dry-friction dampers, on the contrary, requires the modification of the oscillating group in order to work efficiently. As a matter of fact, a principle for the design of oscillating groups is the space optimization, which usually leads to asymmetric distributions of mass of the oscillating group, that in their turn lead to asymmetrically coupled mode shapes. This dynamic characteristic does not suit the design of a simple and compact TMD, with a limited number of degrees of freedom. We show that careful mass distribution and a specifically designed 2-dofs TMD can efficiently substitute the original dampers. An elemental prototype of the so defined TMD has been tested on a shaking table, and it seems an effective alternative to classical suspension systems.
机译:在声学和视觉方面,客户经常在洗衣机旋转周期中出现橱柜振动的负面印象。因此,在越来越关注客户满意度和设备效率的市场中,减少机柜振动和噪音是非常有吸引力的目标。先前的实验活动已经强调,当前安装的干摩擦阻尼器具有高度非线性的特性,并且它们是在机柜面板上施加宽带的主要来源。为了克服这些负面影响,已经对悬架系统进行了两种创新设计的研究,并在此提出:第一种解决方案是次级悬架系统,其设计用于滤除阻尼器引入的高频力分量,从而减轻面板振动。第二种解决方案更为激进,它包括删除现有的阻尼器,并用直接固定在振动组上的调谐质量阻尼器(TMD)代替它们。这些解决方案是成本与效率之间的折衷方案,因为线性油闸会严重影响设备的最终成本。辅助悬挂系统的设计满足了制造商的严格要求:低成本(意味着质量轻),适用于现有机器,无需对减震器本身进行任何改动。已获得期望的结果,增加了阻尼杆的质量并引入了固定固定(或铰链铰接)的梁弹簧。辅助悬架的原型已经过独立测试,并已在洗衣机中组装,并将报告振动和声学结果。相反,TMD的引入和干摩擦阻尼器的实际应用需要对振荡基团进行修改才能有效地工作。实际上,振荡组的设计原理是空间优化,这通常会导致振荡组的质量分布不对称,进而导致振荡模态形状不对称。这种动态特性不适合具有有限数量的自由度的简单紧凑的TMD设计。我们表明,仔细的质量分配和专门设计的2-dofs TMD可以有效地替代原始阻尼器。如此定义的TMD的基本原型已经在振动台上进行了测试,这似乎是传统悬架系统的有效替代方案。

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