Das B, Jongkol P, Ngui S
Department of Industrial Engineering, Dalhousie University, Halifax, Nova Scotia, Canada.
Ergonomics. 2005 Jan;48(1):78-97. doi: 10.1080/00140130410001686366.
Based on the ergonomics evaluation of existing non-powered hacksaws with original/horizontal and conventional/market handles, ergonomically designed hacksaw handles are proposed. To accommodate the entire male and female populations, the hand dimensions are categorized into three groups: small, medium and large. The proposed handles give special emphasis to hand size, length, cross-section dimension and curvature. The three-sized handles for both the preferred (rear) and non-preferred (front) hands are interchangeable to suit the individual hand size. Thus, the concept of 'snap-on-handles' with a fixed hacksaw (blade) can be promoted. The ergonomically designed hacksaw handles were tested/compared with original/horizontal and conventional/market hacksaw handles, in terms of performance or productivity (depth of cut), muscular effort or strain (EMG) and subjective scores (acceptance/comfort). The experimental results conclusively proved that the ergonomically designed hacksaw handles were significantly better than the other handles in terms of the stated criteria. The performance or productivity improvements of the ergonomically designed handles were about 25 and 148%, when compared with the conventional/market and original/horizontal handles, respectively. Furthermore, when the ergonomically designed handle was not matched with the proper or appropriate hand size, there was a significant reduction in performance or productivity, increase in muscular effort and decrease in subjective scores of acceptance/comfort.
基于对现有采用原始/水平和传统/市场手柄的手动钢锯进行的人体工程学评估,提出了符合人体工程学设计的钢锯手柄。为了适应全体男性和女性人群,手部尺寸被分为三组:小、中、大。所提出的手柄特别强调手部大小、长度、横截面尺寸和曲率。用于优势手(后部)和非优势手(前部)的三种尺寸的手柄可互换,以适应个人手部大小。因此,可以推广带有固定钢锯(锯条)的“卡扣式手柄”概念。对符合人体工程学设计的钢锯手柄与原始/水平和传统/市场钢锯手柄在性能或生产率(切割深度)、肌肉用力或劳损(肌电图)以及主观评分(接受度/舒适度)方面进行了测试/比较。实验结果确凿地证明,在上述标准方面,符合人体工程学设计的钢锯手柄明显优于其他手柄。与传统/市场手柄和原始/水平手柄相比,符合人体工程学设计的手柄的性能或生产率提高分别约为25%和148%。此外,当符合人体工程学设计的手柄与不合适的手部大小不匹配时,性能或生产率会显著降低,肌肉用力增加,接受度/舒适度的主观评分下降。