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1.
以大豆胶竹刨花板的静曲强度、弹性模量、内结合强度、2 h吸水厚度膨胀率作为考察指标,探究了刨花板密度、热压温度、热压时间、表层施胶量、防水剂用量等工艺参数对板材性能的影响。结果表明:大豆胶竹刨花板的力学强度随着刨花板密度的增大而增大,最佳密度为740 kg/m3;随着表层施胶量的增大,刨花板的力学强度也随之增大,表层施胶量应12%;随着热压温度的升高和热压时间的延长,刨花板的力学性能也得到了加强,最佳热压温度和时间为210℃和5 min。防水剂的加入能够显著降低刨花板的2 h吸水厚度膨胀率,加入量以0.4%为最佳。  相似文献   

2.
纯稻壳板制造工艺与性能研究   总被引:1,自引:0,他引:1  
为充分利用稻壳资源,以纯稻壳为原料,改性酚醛树脂为胶黏剂,研究了热压温度、热压时间、单位压力以及施胶量对稻壳板性能的影响,结果表明:稻壳板的内结合强度、静曲强度与弹性模量随热压温度、热压时间、单位压力的增加而增加,24 h吸水厚度膨胀率、甲醛释放量相应减低;随着施胶量的增加,内结合强度、静曲强度与弹性模量、甲醛释放量随之增加,24 h吸水厚度膨胀率相应降低。当热压温度采用150℃、热压时间72 s/mm、单位压力1.2 MPa、施胶量为绝干稻壳质量的20%,设计密度0.85 g/cm~3时,10 mm厚稻壳板的物理力学性能指标达到P6型刨花板要求,甲醛释放量满足GB18580—2017标准要求。  相似文献   

3.
连续平压法生产低密度纤维板的工艺研究   总被引:1,自引:0,他引:1  
在连续平压法生产线上进行制备低密度纤维板试验,分别探讨板材密度、二次加压区热压温度对板材主要力学性能的影响,并通过正交试验分析板材密度、二次加压区热压压力、施胶量、钢带运行速度4个因素对低密度纤维板主要性能的影响,结果表明:各因素对板的内结合强度与静曲强度影响大小顺序为:板材密度、二次加压区热压压力、施胶量、热压时间;其中,密度对板材性能的影响极显著。采用二次加压区热压压力0.4 MPa,施胶量16%,热压时间10.5 s·mm-1,二次加压区热压温度190℃的工艺组合采用连续平压法生产厚度18 mm的低密度纤维板,密度为563.56 kg·m-3、内结合强度为0.46 MPa、静曲强度为24.5 MPa、弹性模量为2356 MPa、吸水厚度膨胀率为10.8%,达到GB/T 11718—2009中干燥状态下使用的普通型中密度纤维板性能要求。  相似文献   

4.
研究了刨花板密度、施胶量、施胶后含水率、增黏剂用量等参数对大豆胶刨花板各项性能的影响。结果表明:大豆胶刨花板的弹性模量和静曲强度随着密度的增大而增大;随着施胶量的增大,静曲强度、弹性模量和内结合强度呈上升趋势,而2h吸水厚度膨胀率基本没有变化;随着表层施胶后含水率的增大,静曲强度、弹性模量和内结合强度呈上升趋势,而2h吸水厚度膨胀率变小;增黏剂的加入显著改善了刨花板制备时的预成型性,提升了力学强度。  相似文献   

5.
利用蒿秆刨花代替部分木质刨花生产刨花板,试验采用正交试验方法,以刨花板的吸水厚度膨胀率、内结合强度、表面结合强度、静曲强度及握螺钉力等力学性能为评价指标,优化木质刨花与蒿秆刨花混合刨花板的制备工艺。正交试验结果表明,木质刨花与蒿杆刨花原料配比5:5,热压工艺为:热压温度155℃,热压时间40s/mm,施胶量12%。所制备的板材的吸水厚度膨胀率6.31%、静曲强度32.1MPa、握螺钉力1.84kN、内结合强度0.92MPa、表面结合强度0.82MPa。  相似文献   

6.
采用正交试验法对竹丝模压刨花板制造工艺与产品质量进行优化试验,探讨施胶量、热压温度、热压时间、板坯含水率工艺因素对竹丝模压刨花板物理力学性能的影响,并得到了较优的工艺参数.试验结果表明利用纤维状竹丝可以压制出高质量的竹丝模压刨花板.产品的主要物理力学性能为:密度0.8 g/cm3,弹性模量6 745.7 MPa,静曲强度54.39 MPa,内结合强度0.53 MPa,吸水厚度膨胀率11.3%.  相似文献   

7.
轻质豆秸刨花板工艺的研究   总被引:2,自引:0,他引:2  
从UF胶制造轻质豆秸刨花板的初步研究,分析了板的密度、施胶量、热压时间等工艺因子对板性能的影响。试验结果表明,利用豆秸制造轻质刨花板是完全可行的,其产品主要物理力学性能为:密度0.483 g/cm 3、吸水厚度膨胀率11.2 % 、内结合强度0.303 MPa、静曲强度8.98 MPa,均达到日本JISA 5908 的技术指标。  相似文献   

8.
研究热压温度、板材密度和施胶量3个生产工艺参数对薄长刨花板静曲强度、弹性模量、内结合强度及吸水厚度膨胀率的影响,得出最佳生产工艺条件。经过对实验数据进行分析,得出热压温度、板材密度和施胶量对刨花板各项物理力学性能均有一定的影响,其中板材密度和热压温度对板材各项物理力学性能影响最大。高密度刨花板最佳工艺条件为:热压温度155℃,板材密度0.88g/cm^3,施胶量12%  相似文献   

9.
地质聚合物具有强度高、固化快等特点,作为新型无机胶凝材料在人造板制备中具有巨大的应用潜力。以玉米秸秆皮碎料为原料,偏高岭土基地质聚合物为胶黏剂,均匀组坯后经热压制备地质聚合物-玉米秸秆皮复合碎料板,重点探究了热压时间、热压温度、施胶量及密度对板材力学、耐水、导热及阻燃性能的影响。结果表明:当热压时间为120 s/mm、热压温度为170℃、密度为0.9 g/cm3、施胶量为40%时,所得板材静曲强度、弹性模量、内结合强度分别达到9.20、1 902.50、0.36 MPa,24 h吸水厚度膨胀率达到24.2%,烟密度等级(SDR)达到12.46,静曲强度和内结合强度符合GB/T 24312—2009《水泥刨花板》中合格品要求。  相似文献   

10.
采用均匀设计方法,以稻壳和木质剩余物为主要原料制备复合板,并进行2h吸水厚度膨胀率的测试。对测试结果进行逐步回归分析,讨论密度、芯层比例、表层施胶量、芯层施胶量、固化剂用量、热压温度、热压压力和热压时间对复合板2 h吸水厚度膨胀率的影响。在实验研究范围内,除热压时间外,其他因素对复合板2h吸水厚度膨胀率都有不同程度的影响。通过择优选择制备工艺,可在低成本的条件下,降低复合板的2h吸水厚度膨胀率。  相似文献   

11.

In Scandinavia, moose (Alces alces L.) sometimes cause severe browsing damage to economically-important pine. Moose-vehicle accidents have spurred construction of fences along roads, and these may interfere with moose migration between summer and winter ranges, or the road alone may be a barrier. If this happens and moose build up along roads, landowners may suffer economically. Therefore, this study investigated whether roads, fences or other factors influence the use of young pine stands by moose. Eighty stands along roads in northern Sweden were evaluated in which individually-browsed branches were counted on 9972 pines. Moose browsing was not significantly related to birch (Betula pendula Roth, B. pubescens Ehrh.) density, nor did it differ between pines (Pinus contorta Douglas or P. sylvestris L.). However, increased pine density, site productivity and proximity to a highway were associated with increased browsing. Further large-scale studies are needed to understand moose habitat selection and the effects of roads.  相似文献   

12.

The root systems of 2-yr-old Picea glauca, Picea mariana and Pinus banksiana seedlings were submitted to various frost temperatures during an artificial frost to induce different levels of root damage. Frost-damaged and control seedlings were placed in a greenhouse under high and low soil moisture regimes. Seedling growth and physiology were evaluated periodically. Seedling survival was reduced when root damage reached levels of 60-80%. Root systems of all three species showed partial to total recovery by the end of the experiment. In general, root freezing damage caused reductions in seedling growth, with these reductions becoming less significant over time. Root damage had little to no effect on black spruce and jack pine seedling physiology, while white spruce CO 2 uptake decreased with increasing root damage. Shoot nitrogen content of all three species decreased slightly with increasing root damage.  相似文献   

13.

This study investigated the stand structure in pine, spruce and deciduous forests in the border district of Finland and Russia. A total of 46 mature forest stands was selected as pairs, the members of each pair being as similar as possible with respect to their forest site type, age, moisture and topography. The stands were then compared between the two countries by means of basal areas and number of stems. The proportions of dominating tree species were 2-12% lower, and correspondingly the proportions of secondary tree species higher, in Russian forests. The density of the forest stock was also higher in each forest type in Russia. The forests in the two countries differed most radically in terms of the abundance of dead trees. The amount was two to four times higher in Russian deciduous and spruce forests, and in pine forests the difference was 10-fold. The stand structures indicated that Russian coniferous stands, in particular, were more heterogeneous than intensively managed pine and spruce stands in Finland.  相似文献   

14.

The root collar diameter and the height:diameter ratio are of particular importance in container-grown seedlings where a high density in the containers may produce spindly seedlings. Temperature regimes and light quality are known to affect plant growth. The aim of this study was to identify responses in Picea abies (L.) Karst. seedlings grown with light providing different red:far-red ratios and under temperature regimes with alternating day (DT) and night temperature (NT) from negative (DT < NT) to positive (DT > NT) difference (DIF) between DT and NT. Experiments were conducted in controlled environment chambers and in a daylight phytotron. Only limited thermoperiodic responses appeared in P . abies seedlings with respect to seedling height and dry weight accumulation. The formation of terminal buds, however, was clearly delayed in seedlings grown at negative DIF. The results indicate a requirement for day extension light that is high in far-red, to prevent terminal bud formation under natural short-day conditions. An extended study should be conducted to clarify the minimum level of light intensity and the optimal light quality needed to prevent terminal bud formation under natural short-day conditions.  相似文献   

15.
本文分析了CAD在设计中引起的正面和负面影响,并进行了系统的阐述,从而使设计者在应用中能够保持客观的态度。  相似文献   

16.

The effects of soil scarification (mounding), slash removal and clear-cut age on the natural regeneration in clear-cuts was evaluated using data from four sites in southern Sweden. The treatments were carried out during a good seed and establishment year for birch ( Betula pubescens Ehrh. and B. pendula Roth). Scarification had the strongest positive effect on the density of naturally regenerated seedlings, especially in birch, but also in pine ( Pinus sylvestris L.) and spruce [ Picea abies (L.) Karst]. Slash removal had a positive effect on birch density. No statistically significant effect of clear-cut age was found. In addition, no statistically significant interactions between clear-cut age and scarification or slash removal were found. The ingrowth of field vegetation was the fastest in areas that were not scarified, less rapid in areas scarified on old clear-cuts, and the slowest after scarification in fresh clear-cuts. In conclusion, it may be possible to control the density of birch during a good establishment year for birch. If birch is desired, the best combination of treatments is to remove the slash and scarify; otherwise, these treatments should be avoided.  相似文献   

17.
18.

Based on an enquiry, risk perception among non-industrial private forest owners is described in relation to climate change and forestry hazards. Of the respondents, 11% took action to remedy the effects of climate change. Out of a given set, hazards were ranked according to each respondent's experience of recent substantial financial loss to the estate and in relation to his or her willingness to make investments aimed at risk reduction. For each hazard, the respondent assessed the risk in four classes ranging from very high to negligible risk. Six hazards were considered most problematic in all three aspects: browsing damage, falling timber prices, damage by wind, spruce bark beetle, root rot and pine weevil. A majority of the respondents claimed to take action to reduce the risk associated with at least one hazard, while 35% did not know whether they did. Excluding climate change, the need for decision support was the largest in relation to damage by wind owing to a combination of perceived high risk and a high level of ignorance in relation to whether risk-reducing measures were taken.  相似文献   

19.
In situ produced plant residues contain a mixture of different plant components of varying quality. To assess synergistic or antagonistic interactions occurring during the decomposition and mineralization of such mixtures, individual plant parts (stems, leaves, leaf litter and roots) or the mixture of stems, leaves and leaf litter of the agroforestry species pigeonpea (Cajanus cajan) or of crop residues of peanut (Arachis hypogaea) or of the weed hairy indigo (Indigofera hirsuta) were incubated in pots for 19 weeks. Periodically, remaining plant residues were sieved out (>2 mm), weighed and N content as well as soil mineral N determined. Above- and below-ground residues of peanut decomposed fastest and showed the largest N release in agreement with their high N concentration and low-acid detergent fibre (ADF) : N ratio. Hairy indigo was hypothesized to be of lower quality than pigeonpea because of its high-polyphenol content. However, it decomposed faster than pigeonpea, largely because of the higher N and lower lignin concentration of its components. Ranking of individual plant components for N mineralization resulted in the following pattern, leaves > leaf litter > roots > stems. In mixtures of the different plant components a similar species order in decomposition was obtained, e.g. peanut > hairy indigo > pigeonpea. The amount of N released from the mixture was dominated by stem material that comprised 46–61% of the mixture. The interactions in mixtures were relatively small for peanut (generally high-quality components) as well as for pigeonpea (low proportion of high-quality components, i.e. N rich leaf material). However, a positive interaction occurred during later stages of N mineralization in the mixture of hairy indigo as it had a significant proportion of N rich components and absence of highly reactive polyphenols. Thus, for plants with low to intermediate chemical quality attributes, manipulating plant composition (e.g. by varying harvest age, affecting stem and leaf proportions) will be important to obtain significant interactions during decomposition when its components are mixed.  相似文献   

20.
The use of organic waste materials such as milk sewage as an organic fertilizer could have the dual advantages of organic-waste disposal and reduced dependence on inorganic fertilizers. The effects of fertilization with (1) conventional mineral fertilization, (2) milk sewage sludge at 40 kg N ha−1 target rate and (3) no fertilization on pasture production and tree growth were examined in an experiment consisting of two pasture mixtures under a one-year-old Pinus radiata plantation with a density of 2500 trees ha−1. The two pasture mixtures were: (1) Dactylis glomerata L. var. saborto (25 kg ha−1) + Trifolium repens L. group Ladino (4 kg ha−1) + Trifolium pratense L. var. Marino (1 kg ha−1); (2) Lolium perenne L. var. Tove (25 kg ha−1) + Trifolium repens L. group Ladino (4 kg ha−1) + Trifolium pratense L. var. Marino (1 kg ha−1). The experiment began in the spring of 1995 using a randomized block design with three replicates in Castro Riberas de Lea (Lugo, Galicia, north-western Spain). Plot size was 12 × 8 m2, with a 1 m buffer strip between plots. Two-year data showed that fertilization with either material had a positive effect on pasture production, with no significant difference between the two fertilization treatments. Tree growth in the milk sewage sludge plot was significantly higher than in the control plots. Inorganic fertilization increased pasture production, but affected tree growth negatively. The results show that milk sewage sludge could be used as a fertilizer in silvo-pastoral systems. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

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