刀钝度对家禽加工操作人员工作效率的影响及周期性刀钢的有效性。

R. Szabó, R. Radwin, C. J. Henderson
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引用次数: 34

摘要

本文描述了一种新的程序,用于建立家禽和肉类加工操作的刀钢计划,该计划基于由于重复使用而引起的刀钝而增加的力,以尽量减少操作员的劳动和与工作相关的肌肉骨骼疾病相关的身体压力。刀钝度是量化使用一种新的仪器在这篇文章中描述的测量面积切割成卡拉胶凝胶靶刀柄控制动态载荷。研究了一家家禽加工厂的两种肉类清洗工作。一项工作比另一项工作需要更多的力量和更多的削减。8名经验丰富的操作员参与了这项研究。每个操作员随机使用四把刚磨过的磨刀进行4,45,75或125次切割循环,测量钝度,并使用钢磨刀棒进行修复。建立了刀具钝化和修整的经验模型,并预测了不同切削和修整频率下相应的力增加。该模型显示,高强度和低强度作业分别需要57次和125次切割循环,才能将目标表面积减少30%。与使用应变片测量的新磨过的刀相比,在卡拉胶凝胶中进行相同切割所需的力增加了相似的百分比。该方法可用于肉类加工厂,以确定有效的修复计划,减少操作人员的工作量,对质量和生产率的影响最小。
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The influence of knife dullness on poultry processing operator exertions and the effectiveness of periodic knife steeling.
A novel procedure is described to establish knife steeling schedules for poultry and meat- processing operations based on increased force due to knife dullness from repetitive use to minimize operator exertions and physical stress associated with work-related musculoskeletal disorders. Knife dullness was quantified using a novel apparatus described in this article that measures the area cut by a knife into a carrageenan gel target for a controlled dynamic load at the knife handle. Two meat-cleaning jobs in a poultry-processing plant were studied. One job required significantly more force and a greater number of cuts than the other. Eight experienced operators participated in the study. Four freshly ground and honed knives were randomly used by each operator for 4, 45, 75, or 125 cutting cycles, measured for dullness and reconditioned by the operator using a steel sharpening rod. An empirical model for knife dulling and reconditioning was developed, and the corresponding increase in force was predicted for various cutting and reconditioning frequencies. The model showed that it took 57 and 125 cutting cycles for the high- and low-force jobs, respectively, to achieve a similar reduction in target surface area of 30%. This reduction in target surface area corresponded to a similar percentage increase in force needed for the same cut in carrageenan gel as compared to a freshly honed knife as measured using strain gages. This method may be used in meat processing plants for determining effective reconditioning schedules that reduce operator exertions with minimum effect on quality and productivity.
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