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Evaluating the Effectiveness of a Lodengraf Damping Approach for String Trimmers

机译:评估Lodengraf阻尼方法对弦调器的有效性

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Reducing the magnitude of the vibrations transmitted to a user's hands through the loop handle and grip of a string trimmer is a priority for maintaining both health and comfort. Prior work on internal-combustion (IC) powered string trimmers has indicated that Lodengraf damping may be effective in reducing vibration amplitude at both the loop handle and grip. Lodengraf damping utilizes lightweight, low-density particles added to a vibrating device, either as a fill in existing cavities or as a wrap surrounding the device. The mechanism for the damping is that vibrations generated by the device are absorbed into the Lodengraf particles, where the energy of the vibrations is converted to heat and released before they can be transmitted to the user. In this set of experiments performed on battery-powered string trimmers, the effectiveness of applying Lodengraf particles using specially designed 3D printed loop handles as well as a clam-shell shaft enclosure, all comprised from ABS is explored. The 3D printed parts were designed to be hollow, forming cavities to accommodate the Lodengraf materials. The Lodengraf was found to be effective at frequencies above 200 Hz. Both trimmers have a first fundamental frequency that falls below the cutoff frequency for effective Lodengraf damping, but the approach effectively reduced the amplitude of higher frequency harmonics generated.
机译:通过环形手柄减少传输到用户手中的振动的大小,并且串修剪器的握把是保持健康和舒适性的优先级。在内燃(IC)上的工作中的工作表明,Lodengraf阻尼可以有效地减少环路手柄和握把的振动幅度。 Lodengraf阻尼利用重量轻的低密度颗粒加入振动装置,也可以作为填充在现有腔中或作为装置周围的包裹物。阻尼机构是由装置产生的振动被吸收到Lodengraf颗粒中,其中振动的能量被转换成热量并在它们可以传递给用户之前释放。在该组实验中,在电池供电的弦弦剪裁器上进行,探讨了使用专门设计的3D印刷环形手柄以及蛤壳轴外壳应用Lodengraf粒子的有效性,所有这些都是由ABS组成的。 3D印刷部件设计为空心,形成空腔以适应Lodengraf材料。发现LodenGraf在200 Hz以上的频率下有效。两个Trimmers都具有下降到低于截止频率的第一种基本频率,以实现有效的Lodengraf阻尼,但该方法有效地降低了所生成的较高频率谐波的幅度。

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