Hajizadeh Roohalah, Ghiasvand Fatemeh, Azimi Pirsaraei Seyed Reza, Khani Fouzia, Feiz-Arefi Maryam, Beheshti Mohammad Hosein
Department of Occupational Health Engineering, School of Public Health, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Zanjan Student Research Center, School of Public Health, Zanjan University of Medical Sciences, Zanjan, Iran.
Work. 2024;79(1):267-275. doi: 10.3233/WOR-230421.
Vibration is one of the harmful factors for forklift drivers. The use of non- standard seats and not paying attention to how the seats are maintained can be affected by the amount of vibration transmitted to the person.
This study investigates the amount of vibration transmitted from the forklift and the effect of different types of polyurethane foam in reducing the vibration transmitted from the forklift seat.
This descriptive-analytical study was performed on 38 forklifts in 4 diesel models with the same weight class. The amount of vibration transmitted from forklift seats according to ISO2631 standard, taking into account the effect of various factors such as foam type (hot and cold), thickness (6-12 cm), load and year Function was measured. The amount of vibration caused by the forklift on the seat and under the seat was evaluated using ISO7096 standard.
The average total vibration of the whole body in all foams in no-load mode is more than with load. The transmission vibration of cold polyurethane foam is less than that of hot polyurethane foam. With increasing thickness, the efficiency of cold polyurethane foam increases by 12 cm and in the loaded state 40.63% and in the unloaded state 49.58% in reducing the vibration transmitted to drivers.
The results of this study show that cold foam has better effectiveness and efficiency than hot polyurethane foam. Also, the thicker the foam, the less vibration is transmitted to the driver.
振动是叉车司机的有害因素之一。使用非标准座椅以及不注意座椅的维护方式会影响传递到人体的振动量。
本研究调查了从叉车传递的振动量以及不同类型的聚氨酯泡沫在减少从叉车座椅传递的振动方面的效果。
本描述性分析研究对 4 种柴油模型中的 38 台叉车进行了研究,这些叉车属于同一重量级别。根据 ISO2631 标准测量了从叉车座椅传递的振动量,同时考虑了泡沫类型(热和冷)、厚度(6-12cm)、负载和年份等各种因素的影响。使用 ISO7096 标准评估了叉车在座椅和座椅下方引起的振动。
在空载模式下,所有泡沫中的全身总振动均大于负载模式。冷聚氨酯泡沫的传递振动小于热聚氨酯泡沫。随着厚度的增加,冷聚氨酯泡沫的效率在负载状态下提高了 12cm,为 40.63%,在空载状态下提高了 49.58%,从而减少了传递给驾驶员的振动。
本研究的结果表明,冷泡沫比热聚氨酯泡沫具有更好的效果和效率。此外,泡沫越厚,传递给驾驶员的振动就越少。