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首页> 外文期刊>Journal of occupational health. >The influence of the thermal modification of pine (Pinus sylvestris L.) wood on the creation of fine dust particles in plane milling
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The influence of the thermal modification of pine (Pinus sylvestris L.) wood on the creation of fine dust particles in plane milling

机译:松树(松木Sylvestris L.)木材热改性对平面研磨中细粉尘颗粒的影响的影响

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摘要

Objectives : The aim of the study was to determine the effect of parameters of the thermal modification process and machining on the size distribution of dust particles of Scots pine ( Pinus sylvestris L.) generated during lengthwise milling. Method : Unmodified wood and thermally modified wood at temperatures of 130, 160, 190, and 220°C were milled lengthwise at cutting depths of 0.5 and 2?mm. Particle size analysis was done using the sieving method. The content of the finest particles was measured using the laser diffraction method. Results : The results indicate that at smaller cutting depths, more smaller particles were formed regardless of the wood modification temperature. Thermal treatment of wood does not cause significant differences in the general particle size distribution of dust. However, the content of the finest dust particles depends on the temperature of wood modification. When machined, wood thermally modified at higher temperatures results in the formation of more dust particles that may pose health risks to employees. This is particularly noticeable at a smaller cutting depth. Conclusion : With the increase of the temperature of the modification, the share of the finest dust particles, which are a potential threat to the health of employees, increases. To reduce dust emissions during milling of thermally modified wood, the highest possible cutting depth should be used.
机译:目的:该研究的目的是确定热改性过程和加工参数对纵向研磨期间产生的苏格兰松树(松素Sylvestris L.)的粉尘颗粒尺寸分布的影响。方法:在130,160,190和220℃的温度下,在切割深度为0.5和2Ω·mm的温度下,未改性木材和热改性木材。使用筛分方法进行粒度分析。使用激光衍射法测量最优选颗粒的含量。结果:结果表明,在较小的切削深度下,无论木材改性温度如何,都形成了更小的颗粒。木材的热处理不会引起灰尘的一般粒度分布的显着差异。然而,最好的粉尘颗粒的含量取决于木材改性的温度。当机加工时,在较高温度下热改性木材导致更多的粉尘颗粒,可能对员工构成健康风险。这在较小的切削深度处特别明显。结论:随着修饰温度的增加,最精尘颗粒的份额,这对员工健康的潜在威胁增加了。为了减少铣削热改性木材过程中的粉尘排放,应使用最高的切割深度。

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