改进的坐式磨床减少了肌肉骨骼疾病的投诉,工作量,并提高了印度尼西亚巴厘岛塔巴南摄政铁匠的工作效率

I. A. M. S. Arjani, Cokorda Dewi Widhya Hana Sundari, Nyomam Mastra, I. Mahayana, I. G. A. M. Aryasih, Ni Made Marwati, I. G. A. Swastini
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引用次数: 0

摘要

背景:铁匠是塔巴南县古布格村正在发展的小型工业之一。在制造小刀、大刀、镰刀和砍刀等家用器具的过程中,其中一个工序将面临磨床。在这个过程中,工人手持重达1.5公斤以上的振动研磨机。在重负荷下工作和长时间暴露在振动中是一个额外的负担,会导致肌肉骨骼疾病,以及工人的雷诺综合征、腱鞘炎和腕管综合征等疾病。本研究旨在探讨坐磨改良对古布塔巴南村铁匠减少肌肉骨骼疾病(MSDs)投诉、工作量和提高工作效率的影响。方法:本研究采用受试者设计的实验研究。人口是40人,来自10个行业。样本选择采用简单的随机抽样与随机数字表。使用科尔顿公式计算最小样本数,确定样本量为16人。数据处理与分析:受试者状况数据的描述性检验包括年龄、体重、身高、体质指数。对数据进行正态性检验;A)物理环境包括空气温度、湿度和噪音),b)肌肉骨骼疾病;c)工作负载;d)工作效率。处理1和处理2对正态分布数据采用参数统计检验(不同检验配对样本t检验,显著性水平= 0.05)对肌肉骨骼抱怨、工作量和工作效率数据进行差异检验,如果数据不正态分布,则进行非参数统计检验(Wilcoxon差异检验,显著性水平= 0.05)。结果:受试者平均年龄39.00±8.52岁,体重65.31±6.7.57 kg,身高164.69±4.40 cm,体质指数23.94±2.05。kg / m2。空气温湿度无差异,噪声降低0.81%。肌肉骨骼疾病的投诉减少了0.15%,工作量减少了0.19%,生产力提高了1.06%。结论:使用改良坐式磨床前后,肌肉骨骼投诉、工作量、噪音均显著降低(p<0.05),工作效率显著提高(p<0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modified sitting grinder reduces complaints of musculoskeletal disorders, workload, and increases work productivity of blacksmiths in Tabanan Regency, Bali-Indonesia
Background: Blacksmith is one of the small industries that is developing in Gubug Village, Tabanan Regency. One of the processes in manufacturing household utensils in the form of small knives, large knives, sickles, and machetes will be faced with a grinder. In this process, the worker holds a vibrating grinder weighing more than 1.5 kg. Working with heavy loads and being exposed to vibration for a long time is an additional burden that will cause musculoskeletal complaints, as well as diseases such as Raynaud's Syndrome, Tenosynovitis, and Carpal Tunnel Syndrome in workers. This study aimed to determine the effect of Sitting Grinding Modification on Reducing Complaints of Musculoskeletal Disorders (MSDs), Workload, and Increasing Work Productivity of Blacksmiths in Gubug Tabanan Village. Methods: This research is an experimental study with treatment by subject design. The population is 40 people from 10 industries. Sample selection by simple random sampling with a table of random numbers. The minimum number of samples was calculated using the Colton formula to determine the sample size to be 16 people. Data processing and analysis: Descriptive test for subject condition data includes age, weight, height, and body mass index. Normality test was performed on the data; a) physical environment includes air temperature, humidity, and noise), b). musculoskeletal complaints; c) workload; and d) work productivity. Difference test for data on musculoskeletal complaints, workload, and work productivity using parametric statistical tests (different test paired samples t-test at significance level = 0.05) in treatment I and treatment II on data that is normally distributed, and if it is not normal, non-parametric statistical tests were performed (Wilcoxon's difference test at significance level = 0.05). Results: The mean age of the subjects was 39.00±8.52 years, body weight was 65.31±6.7.57 kg, height was 164.69±4.40 cm and the body mass index was 23.94±2.05. kg/m2. There is no difference in air temperature and humidity, there is a decrease in noise of 0.81%. There was a decrease in musculoskeletal complaints by 0.15%, a decrease in workload by 0.19%, an increase in productivity by 1.06%. Conclusion: There is a significant decrease between musculoskeletal complaints, workload and noise before and after the use of the seated grinder (p<0.05), and there is a significant increase between work productivity before and after using modified sitting grinder.
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