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Effect of combined microwave heating and impinging hot-air on rubberwood drying

机译:混合微波加热和撞击热空气对橡皮木干燥的影响

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Applying microwave heating and impinging hot-air is one of the most interesting methods to increase the higher drying rates of rubberwood drying based on acceptable quality. A maximum microwave power level of 200W at a frequency of 2.45GHz with maximum working temperature of 70°C, only hotair (70°C) and combined microwave (200W) - hotair (70°C) were choosed to evaluate the effect of rubberwood drying by different width sizes (1, 2, 3 and 4 in.) by 46 in. length by 1 in. thick. In all cases, the drying time is reduced significantly from 168 h to less than N-15 h in various wood widths and resulted in saving to an extent of about 91% of drying time from initial moisture content ranges of 73%-49% to 15% percent of moisture level. Drying stresses from prong test no found during drying and total color of rubberwood changed after high temperature drying is a natural surface when compared to fresh wood. The values of six strength compared to the reference values are concentrated in the ranges of 16.9-23.9 (11.0)MPa for shearing strength parallel to grain, 4291.1-6701.6 (4350)N for hardness, 73.3-110.2 (66.0)MPa for MOR, 7059.5-12856.7 19240.0) MPa for MOE, 27.2-14.3 (5.0)MPa for compressive strength perpendicular to grain and (0.6-35.7 (32.0)MPa for compression strength parallel to grain. These results show that it is possible lo develop a drying process for rubberwood using microwave-hot air in investigating further in this r.rea.
机译:应用微波加热和撞击热空气是基于可接受的质量提高橡胶木干较高的干燥率的最有趣的方法之一。最大微波功率电平为200w,频率为2.45GHz,最大工作温度为70°C,仅为HotaIr(70°C)和组合微波(200W) - Hotair(70°C)进行了选择评估橡胶木材的效果通过不同的宽度尺寸(1,2,3和4英寸)干燥46英寸。长度为1英寸。厚。在所有情况下,干燥时间在各种木材宽度下从168小时降低到小于N-15 H,导致从初始水分含量为73%-49%的初始水分含量的干燥时间的程度为约91%。含量的15%的水分。与新鲜木材相比,在干燥期间,在干燥期间发现的干燥胁迫NO在干燥期间未发现,橡皮擦高温干燥是天然的表面。与参考值相比的六个强度的值集中在16.9-23.9(11.0)MPa的范围内,用于平行于谷物的剪切强度,4291.1-6701.6(4350)N用于硬度,73.3-110.2(66.0)MPa用于MPa, 7059.5-12856.7 19240.0)用于MOE的MPA,27.2-14.3(5.0)MPa用于垂直于晶粒的压缩强度和(0.6-35.7(32.0)MPa平行于谷物的压缩强度。这些结果表明它是可以发育干燥过程对于使用微波热空气的橡胶,在该R.rea进一步研究。

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