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首页> 外文期刊>International Journal of Industrial Ergonomics >Fingers vibration transmission performance of vibration reducing gloves
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Fingers vibration transmission performance of vibration reducing gloves

机译:振动减速手套的手指振动传输性能

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摘要

Vibration attenuation performance of vibration reducing (VR) gloves is, invariably, measured at the palm using the method described in ISO 10819 (2013). The standardized method, however, does not address the glove performance in terms of fingers vibration, which is substantially different from that of the palm. An investigation was conducted to enhance the understanding of fingers vibration transmission properties of 4 different types of VR gloves (air, gel, hybrid and leather) using 4 male subjects in the laboratory. Three different finger adapters, each containing a miniature three-axis accelerometer, were designed and assessed for measurements of vibration responses at the fingers of the gloved hand. Vibration responses of the VR gloves were measured at the middle phalanges of the index and middle fingers using two Velcro finger adapters under the standardized vibration spectra and the spectra of 3 different hand tools, namely a road breaker, a nutrunner and an orbital sander. Vibration transmissibility of the gloves was also measured at the palm using the standardized palm adapter. The frequency response functions (FRF) obtained for the fingers of the gloved hand were used to estimate vibration transmission performances of the gloves at the index and middle fingers. The results show that only the air and hybrid VR gloves provide some attenuation of vibration transmitted to the index finger compared to the bare hand, while nearly all the gloves amplify vibration of the middle finger. The vibration attenuation was evident at the palm for the air and hybrid gloves above 40 Hz. The gel and leather gloves revealed nearly unity transmissibility in most of the frequency range. Only the hybrid glove passed the criteria of ISO 10819 (2013) to be designated as an anti-vibration (AV) glove, although it amplified vibration transmitted to the middle finger, particularly in the H-frequency range (200-1250 Hz). Fairly good agreements (-11%-13%) were obtained between the measured and estimated fingers vibration responses for all the gloves using the FRF method under the vibration spectra of the selected tools.
机译:使用ISO 10819(2013)中描述的方法,因此,振动减少(VR)手套的振动衰减性能是不变的,在手掌上测量。然而,标准化方法在手指振动方面没有解决手套性能,这与手掌基本上不同。进行了调查,以提高使用4名男性受试者在实验室中使用4种不同类型VR手套(空气,凝胶,杂种和皮革)的手指振动传动特性的认识。设计并评估了三种不同的手指适配器,每个手指适配器含有微型三轴加速度计,用于测量手套的手指处的振动响应。在标准化振动光谱和3个不同手动工具的光谱下,使用两个魔术贴调整器,即3种不同的手动工具的光谱,即道路断路器,螺母和轨道砂光机测量VR手套的振动响应。使用标准化的手掌适配器在手掌上测量手套的振动传动性。用于手套的手指获得的频率响应函数(FRF)用于估计指数和中指的手套的振动传输性能。结果表明,与裸露的手相比,只有空气和混合动力VR手套才能提供传递到食指的振动的一些衰减,而几乎所有手套放大中指的振动。在40Hz以上的空气和混合手套的手掌上显而易见的振动衰减。凝胶和皮革手套在大多数频率范围内揭示了几乎没有统一的传播性。只有混合手套通过ISO 10819(2013)的标准,以指定为抗振(AV)手套,尽管它被扩展到中指的振动,特别是在H频率范围(200-1250Hz)中。在所选工具的振动光谱下,在测量和估计的手指振动响应的测量和估计的手指振动响应之间获得了相当良好的协议(-11%-13%)。

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