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1.
为解决冷压工艺生产周期长和能量消耗大的问题,采用梯度降压的热压法制备竹篾层积材,并分析工艺参数对其性能的影响.结果表明:热压温度对板材的弹性模量、静曲强度、吸水厚度膨胀率和水平剪切强度影响显著;热压时间和密度对板材的吸水厚度膨胀率影响较大.在密度1.0 g/cm3、热压时间1.5 min/mm、温度145~155℃的条件下,板材性能达到LY/T 1072-2002《竹篾层积材》和GB/T 20241-2006《单板层积材》的要求.  相似文献   

2.
对杨木单板层积材与木材层积塑料复合制造非对称结构胶合板的制备工艺进行探索,为客车车厢底板用非对称结构胶合板的制备提供技术参数.采用了热压和冷压两种工艺进行复合,并测定其抗弯性能、尺寸稳定性和吸水率等物理力学性能.结果表明,热压组复合板材的力学性能及尺寸稳定性表现均优于冷压组.  相似文献   

3.
用低分子量酚醛树脂胶对意杨旋切单板进行浸渍处理,采用单因素试验法,探讨了热压压力对产品性能的影响,分析各压力水平下板材的密度、含水率、顺/横纹抗弯弹性模量、冲击韧性等物理力学性能,得出符合要求的热压工艺参数。结果表明:在热压单位压力3.5 MPa,热压温度150℃,热压时间5 min/mm条件下,板材的力学性能和尺寸稳定性能最佳。  相似文献   

4.
以自制低分子量酚醛树脂为胶黏剂,采用热压工艺对杉木单板进行密实化试验,研究干燥温度、压缩率、热压温度和热压时间对密实型杉木单板层积材力学性能的影响.结果表明:压缩率对层积材力学性能影响最大,其次是干燥温度、热压温度和热压时间;随着压缩率和热压温度的提高,板材的MOE、MOR都有不同程度的提高;随着干燥温度的提升和热压时间的延长,板材的MOE、MOR都呈先增大后减小的趋势;综合考虑,确定密实型杉木单板层积材的最佳热压工艺为:干燥温度60℃、压缩率35%、热压温度145℃、热压时间1.0 min/mm,在此热压工艺条件下制得的板材,其MOE和MOR分别达到了GB/T 20241-2006《单板层积材》120E级和180E优级.  相似文献   

5.
以麦秸、木材碎料和无机胶黏剂制备麦秸/木材三层结构刨花板。研究麦秸与木材配比、板材密度、热压时间和温度对板材性能的影响。结果表明:随麦秸配比增加,板材抗弯性能降低,内结合强度增大,吸水厚度膨胀率(TS)减小;随密度增加和热压时间延长,板材力学性能增大,TS降低;随热压温度升高,板材力学性能先增大后减小,TS呈相反趋势。优化制板工艺为:碎料配比5:5,密度1.2g/cm~3,热压时间30min,温度100℃。  相似文献   

6.
以毛竹为实验材料,研究了竹重组材在生产过程中冷压工艺和热压工艺的关键技术参数对竹重组材性能的影响。结果表明:1)采用冷压工艺时,用胶量对产品的胶合强度和膨胀率影响明显,用胶量为10%时生产的竹重组材具有较好胶合强度和吸水膨胀性能;竹束含水率为12%时其产品力学强度最好;竹重组材的密度越高,其各项性能指标就越好;加热温度为135℃时,产品的各项性能最佳;加热时间选择15 h较为合适。2)采用热压工艺时,较优热压工艺条件为单位压力2.0 MPa、热压温度145℃、热压时间1.7 min/mm;此工艺流程大大提高了生产效率,降低了生产能耗。  相似文献   

7.
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   

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.
探讨了以竹材为主要原料的竹重组板材热压工艺的优化,研究了热压工艺对竹重组板材力学性能的影响,讨论分析了热压压力、热压时间、热压温度对竹重组板材吸水厚度膨胀率、耐沸水性、静曲强度、弹性模量、耐磨性、耐化学腐蚀性、浸渍剥离率和甲醛释放量等性能的影响。通过正交试验,得出的优化热压工艺为:①热压压力2.0MPa、热压温度145℃、热压时间1.7min/mm,热压压力对竹重组板材耐酸性、静曲强度和弹性模量等影响显著,对耐沸水性、耐碱性、耐盐性、耐磨性和浸渍剥离率等影响不显著。②热压时间对竹重组板材静曲强度有显著影响,对其他试验指标影响不显著。③热压温度对竹重组板材各试验检测指标均有一定的影响,但不显著。  相似文献   

10.
探讨了偶联剂、热压工艺对竹材玻纤布复合生产集装箱底板材力学性能的影响,分析了偶联剂种类、用量,以及热压压力、热压时间、热压温度对竹材玻纤布复合生产的集装箱底板产品静曲强度、弹性模量、耐磨性、内胶合强度、浸渍剥离等性能的影响。通过正交试验,得出优化的热压工艺为:①偶联剂R1和R2均适合作玻纤布表面处理的偶联剂。②偶联剂需用酒精稀释,较佳的稀释配比为1:2或者1:3。③热压压力2.6 MPa、热压温度150℃、热压时间1.1 min/mm。④热压压力对竹材玻纤布复合集装箱底板产品物理力学性能指标的影响均不显著;热压温度对竹材玻纤布复合集装箱底板的纵向MOE和内结合强度影响显著,对竹材玻纤布复合集装箱底板的横向MOE影响较显著;热压时间对竹材玻纤布复合集装箱底板内结合强度影响较显著。  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.
Contour hedgerows of multipurpose tree species in the sloping tea lands of Sri Lanka are expected to reduce soil erosion and also add significant amounts of plant nutrients to the soil via periodic prunings. The objective of this experiment was to characterize the biomass decomposition pattern and quantify the amount of nutrients added through prunings of six tree species (Calliandra calothyrsus, Senna spectabilis, Euphatorium innulifolium, Flemingia congesta, Gliricidia sepium and Tithonia diversifolia) currently being used in hedgerows associated with tea. Withered leaf and stem prunings (50 g) were enclosed in 2-mm litter bags, placed at 5-cm depth and retrieved after one, three, six, nine and 12 weeks. Loss of initial dry weight, N, P and K was measured. Single exponential decay function adequately described both dry weight and nutrient loss. Tree species differed significantly in their rate of breakdown with decomposition constants (k) varying from 0.0299 to 0.2006 week−1 for leaves and from 0.0225 to 0.0633 week−1 for stems. Gliricidia showed the highest k for leaves with the rest in the following descending order: Senna > TithoniaEuphatorium > Calliandra > Flemingia. A similar pattern was observed for loss of all nutrients with Calliandra and Flemingia always having lower k values than the rest. Although N immobilization was not observed, immobilization of P and K was observed during the first week of incubation in some species, particularly in stem prunings. Annual biomass of prunings differed significantly between tree species in the following descending order: Calliandra > Senna > Flemingia > Tithonia > Gliricidia > Euphatorium. Calliandra added the greatest amount of nutrients annually to the soil with Euphatorium adding the least. Calliandra prunings provided the annual total K requirement and 49% of the N requirement of mature tea. However, none of the species provided more than 5% of the P requirement. It is concluded that among the tree species tested, Calliandra and Flemingia are the most suitable for contour hedgerows in tea plantations of this agroclimatic region because of their higher soil nutrient enrichment capacity and slower decomposition rates which would minimize leaching losses. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

14.

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   

15.

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   

16.
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   

17.

The effects of seed weight and seed type on seedling growth of Pinus sylvestris (L.) were studied by seeding individually weighed orchard and stand seed in different mixtures under harsh (direct seeding in field) and optimal (seeding in nursery) conditions. In the nursery experiment an increase in the seed weight from 3 to 7 mg increased the seedling height by 10-27% and total weight by 27-113%, and decreased the height/diameter ratio by 5-6% after 2 yrs. With elimination of seed weight effects, orchard seedlings were 2% taller than stand seedlings in year 2. Without elimination of seed weight effects, orchard seedlings were 7-13% taller. In the field experiment an increase in the seed weight from 3 to 7 mg increased seedling height by 18-65%, stem volume by 81-274% and the number of top-buds by 23-34% in year 5. After elimination of seed weight effects, orchard seedlings were 7-13% taller than stand seedlings and without elimination of seed weight effects 20-21% taller after 5 yrs. Even after elimination of both seed weight and genetic effects orchard seedlings were 3-9% larger than stand seedlings in the field experiment. In conclusion, the influence of seed weight and seed type on growth traits and slenderness is highly significant and the influence seems to be greater in harsh conditions.  相似文献   

18.
Heterobasidion parviporum and Heterobasidion annosum are widely distributed root‐rot fungi that infect conifers throughout Europe. Infection of conifer stumps by spores of these pathogens can be controlled by treating fresh stumps with a competing non‐pathogenic fungus, Phlebiopsis gigantea. In this study, growth of three Latvian strains of P. gigantea and the biological control agent ‘Rotstop’ strain was evaluated in stem pieces of Norway spruce, Scots pine, lodgepole pine, Douglas‐fir, Weymouth pine, Siberian larch and Sitka spruce. The growth rates of one H. parviporum and one H. annosum isolate were also measured in the same stem pieces. The growth rate of P. gigantea varied greatly in wood of different conifer species. It was higher in the three pine species, lower in Norway spruce and lowest in Sitka spruce and Siberian larch, and in Douglas‐fir, this fungus did not grow. The largest area of wood occupied by P. gigantea was in lodgepole pine. Growth of Latvian isolates of P. gigantea in the wood of Pinus and Picea species was comparable to that of the Rotstop isolate. Consequently, stump treatment with local P. gigantea isolates should be recommended. However, our results suggest that Douglas‐fir stump treatment against Heterobasidion by P. gigantea may be ineffective and other stump treatment methods should be considered.  相似文献   

19.
Baobab leaves form an important part of the local diet in Sahel countries and elsewhere in Africa. Existing leaf nutritional data and agroforestry performance information are based solely on Adansonia digitata L., the baobab of continental Africa. The introduction potential of Adansonia species from the center of diversity in Madagascar and from Australia remains untapped. To assess this potential, the mineral contents and B1 and B2 vitamin levels of dried baobab leaves were determined for five-year old trees of A. digitata, A. gibbosa (A. Cunn.) Guymer ex D. Baum, A. rubrostipa Jum. & H. Perrier (syn. A. fony Baill.), A. perrieri Capuron and A. za Baill. grown in an introduction trial in Mali. Nutritional data were evaluated against survival and vigor to identify promising germplasm. Leaf vitamin and crude protein contents were highest in the Madagascar species, especially A. rubrostipa (B1 88 mg 100 g−1, B2 187 mg 100 g−1, protein 20.7% dry weight). However, the local species far outperformed the introductions in survival, tree height, basal diameter and resistance to termites. We suggest grafting as a way of harnessing the vigor of well-adapted local baobab varieties to the superior nutritional profiles of A. rubrostipa and others. Cross-species grafting tests in Adansonia were successful, thus creating new agroforestry possibilities with different scion/rootstock combinations.  相似文献   

20.
Abstract

Wood in general and wooden studs in particular are often distorted owing to uneven shrinkage during the drying process in the sawmill. Twist is often the most detrimental of all types of distortion, and it is caused by spiral grain in combination with variations in moisture content. For sawmills, the objective is to produce dried, straight boards, and one method of dealing with boards with excessive spiral grain is to sort them out and then dry them in a pretwisted position to obtain straight boards after drying. A model using the finite element (FE) method for the simulation of drying twist distortions was first calibrated against laboratory experiments in which boards were dried with and without restraints and pretwists. After the calibration, the FE results were compared with industrial test results for boards that were dried without restraints or with restraints with zero pretwist, i.e. straight restraints. The FE model used an elastic–ideally plastic material model to obtain permanent deformations. The calibration was to set the yield stresses so that there was a good match between FE results and results from the laboratory experiments. The comparison between the industrial test results and the FE results showed that the FE model is capable of realistic simulations of drying boards with and without restraints and presumably also pretwists.  相似文献   

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