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首页> 外文期刊>Forest Products Journal >Improved plywood strength and lowered emissions from soybean meal/melamine urea-formaldehyde adhesives.
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Improved plywood strength and lowered emissions from soybean meal/melamine urea-formaldehyde adhesives.

机译:胶合板强度提高,豆粕/三聚氰胺脲醛胶粘剂排放降低。

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The objective of this study was to improve the wet shear strength and reduce the formaldehyde emissions for the soybean meal/melamine urea-formaldehyde (MUF) adhesive-bonded plywood by optimizing the hot pressing parameters in plywood manufacturing. An L(44) experimental design was used. A dynamic mechanical analyzer (DMA) was used to study the curing process of the adhesive during hot pressing. The DMA results showed that the storage modulus (E') first decreased to a minimum at 72.9 degrees C and then increased as the temperature increased to a maximum at 157.2 degrees C. At temperatures higher than 157.2 degrees C, the storage modulus decreased as the temperature increased. The hot press temperature had a significant effect on both the wet shear strength and the formaldehyde emissions from 120 degrees C to 150 degrees C, while no significant effect was found by varying the hot press time from 50 to 80 s/mm and changing the pressure from 0.8 to 1.2 MPa. The adhesive spread rate had a significant effect on the formaldehyde emissions. No significant effect was found on the wet shear strength of plywood by varying the adhesive spread rate from 145 to 205 g/m2. The optimum hot pressing parameters were found: 150 degrees C hot press temperature, 70 s/mm in hot press time, 1.2 MPa in hot press pressure, and 165 g/m2 in adhesive spread rate. Under such optimum processing conditions, the wet shear strength of the plywood was improved by 24.2 percent from 0.95 to 1.18 MPa, while the formaldehyde emissions was reduced by 21.4 percent from 0.28 to 0.22 mg/liter, which met the type II plywood requirement for wet shear strength and the level E0 requirement for formaldehyde emissions described in the China National Standard GB/T 9846.3-2004.CAS Registry Numbers 108-78-1
机译:这项研究的目的是通过优化胶合板制造中的热压参数来提高豆粕/三聚氰胺脲醛(MUF)胶合板的湿剪切强度并减少甲醛排放。使用L(4 4 )实验设计。使用动态机械分析仪(DMA)研究热压过程中粘合剂的固化过程。 DMA结果表明,储能模量(E')首先在72.9摄氏度时降至最低,然后随着温度在157.2摄氏度时升高至最大值而增加。在高于157.2摄氏度的温度下,储能模量随着温度的升高而降低。温度升高。从120摄氏度到150摄氏度,热压温度对湿剪切强度和甲醛释放量均具有显着影响,而通过将热压时间从50 s / mm更改为80 s / mm并改变压力,则没有发现显着影响。从0.8到1.2 MPa。粘合剂的铺展速率对甲醛释放量有显着影响。通过将粘合剂铺展速率从145 g / m 2 改变,对胶合板的湿剪切强度没有显着影响。确定了最佳的热压参数:150摄氏度的热压温度,70 s / mm的热压时间,1.2 MPa的热压压力和165 g / m 2 的胶粘剂扩散速率。在这种最佳加工条件下,胶合板的湿剪切强度从0.95 MPa提高到1.18 MPa,提高了24.2%,甲醛释放量从0.28 mg / L降低了21.4%,满足了II型胶合板对湿的要求。剪切强度和甲醛释放量的E 0 要求符合中国国家标准GB / T 9846.3-2004.CAS注册号108-78-1

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