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Journal articles on the topic 'Wood/bamboo materials'

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1

Qanytah, Khaswar Syamsu, Farah Fahma, and Gustan Pari. "Structure analysis of three non-wood materials for liner paper." Nordic Pulp & Paper Research Journal 34, no. 4 (2019): 453–66. http://dx.doi.org/10.1515/npprj-2019-0043.

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Abstract The potential use of sago pith waste, bamboo, and water hyacinth based on the characteristics of raw materials to make liner paper were studied. The analysis conducted covered the analysis of physical characteristics, chemical components, morphology (SEM), functional groups (FTIR), and crystallinity (XRD). The pulp from the three kinds of fiber was molded into paper with a certain formulation. The parameters of pulp and paper observed covered the alkaline consumption, Kappa number, pulp yield, and paper physical characteristics (grammage, bursting strength, Ring Crush Test/RCT, water
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2

Supriadi, A., and D. R. Trisatya. "Engineered bamboo: The promising material for building and construction application in Indonesia." IOP Conference Series: Earth and Environmental Science 886, no. 1 (2021): 012040. http://dx.doi.org/10.1088/1755-1315/886/1/012040.

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Abstract There is a rising gap between supply and demand of wood as building and construction materials. The search of alternative materials to fill in the gap is an urgent concern. Bamboo is one of locally abundant resources; 88 out of 135 species growth in Indonesia is an endemic. It is a renewably material and has comparable characteristics to wood. Notable efforts to reduce the variability of raw bamboo have led to the improved physical and mechanical properties of the engineered bamboo. Laminated bamboo and hybrid laminated bamboo-wood had superior wood strength in comparison to the raw m
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3

Nguyen, Thanh Nam, Tuyen Vo, and Tran Van Hung. "Study on the Effects of Technology Parameters on the Water Absorption and the Thickness Swelling of the Pressed Bamboo Pulp Plywood." Key Engineering Materials 863 (September 2020): 1–11. http://dx.doi.org/10.4028/www.scientific.net/kem.863.1.

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The application of bamboo by-products such as bamboo branches, chips to recycle and produce pressed bamboo pulp is an urgent task in Vietnam. It perfectly replaces natural wood with artificial wood embryos from bamboo powder, which has both economic benefits of reserving the source of raw materials, environmental protection... The paper presents a study of the influence of technological parameters on the water absorption and swelling thickness of pressed bamboo pulp plywood in order to ameliorate the quality of pressed bamboo pulp plywood in production of new materials for civil engineering wi
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4

Dwianto, Wahyu, Ratih Damayanti, Teguh Darmawan, et al. "BENDING STRENGTH OF LIGNOCELLULOSIC MATERIALS IN SOFTENING CONDITION." Indonesian Journal of Forestry Research 7, no. 1 (2020): 59–70. https://doi.org/10.59465/ijfr.2020.7.1.59-70.

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This research aimed to understand the softening behaviour and viscoelastic property of wood, rattan, and bamboo as lignocellulosic materials. Nine years-old fast growing teak wood [Tectona grandis L.f.], rattan [Calamus sp.], and 3 years-old andong bamboo [Gigantochloa pseudoarundinaceae (Steud.) Widjaja] were used for the experiments. The samples were taken from the bottom, middle and upper parts for wood and rattan, and that for bamboo were cut from the 1st to 20th internodes. Static bending tests were carried out in fresh (green) as control samples, air-dried, and softened by microwave heat
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Li, Tao, Junxiong Yi, and Junjie Jiang. "A Review of Research on Bamboo Wood Composite Structures." Academic Journal of Science and Technology 11, no. 3 (2024): 27–33. http://dx.doi.org/10.54097/tgmgzc98.

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As one of the industries most closely related to human social life, the construction industry is beginning to transform towards green buildings and intelligent construction in the context of the new era. Bamboo and wood, as natural biomass materials, have excellent mechanical properties and convenient material extraction, which will help them occupy a place in the future construction industry. The mechanical properties, bonding performance, and deformation performance of bamboo and wood materials are similar, and they can jointly bear forces under load, with consistent deformation. The combina
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Sathish, T., S. Dinesh Kumar, M. Ravichandran, et al. "Waste Food Cans Waste Bamboo Wood Based AA8079/SS304/Bamboo Wood Ash Hybrid Nanocomposite for Food Packaging." Key Engineering Materials 928 (August 16, 2022): 69–78. http://dx.doi.org/10.4028/p-9lpz3q.

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Nowadays life style practices demand more packed foods in the market around the world. In this trend increases the demand for researches on developing new packaging materials. In this research focuses novel AA8079/ SS304/ Wood ash hybrid nanocomposites development for meeting packaging related applications. The materials like aluminum alloy AA8079 (matrix material) obtained from waste food cans, Nanoparticles of stainless steel SS304 and Nanoparticles of Wood ash which obtained from waste bamboo woods were utilized to compose through stir casting process. Two set of Six different novel AA8079/
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7

Arsad, Effendi. "KARAKTERISTIK SERTA PENGEMBANGAN PENGGUNAAN KAYU KARET DAN BAMBU UNTUK BAHAN BAKU PERUMAHAN RAKYAT DAN INDUSTRI." Jurnal Riset Industri Hasil Hutan 4, no. 1 (2012): 36. http://dx.doi.org/10.24111/jrihh.v4i1.1200.

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Rubber wood and bamboo is an important natural resource to be developed as residential and industrial raw materials which are the raw material of commercial products. The presence of rubber wood and bamboo needs to be supported by the preservation and processing industry in order to be optimally utilized. Rubber wood has physical properties, mechanical and chemical equivalent of natural forest wood. properties of rubber wood used in rural as well fuel wood rafters to corral. While bamboo also has certain advantages compared to wood because it is easily preserved, processed and have a high elas
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8

Trisatya, D. R., M. Iqbal, and I. M. Sulastiningsih. "Enhancing the properties of damar (Agathis loranthifolia Salisb.) wood by making hybrid bamboo-wood composite." IOP Conference Series: Earth and Environmental Science 914, no. 1 (2021): 012066. http://dx.doi.org/10.1088/1755-1315/914/1/012066.

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Abstract This study was carried out to investigate the characteristics of laminated bamboo and damar (Agathis loranthifolia Salisb.) wood as the core layer of the bamboo-damar hybrid composite beam. Andong bamboo (Gigantochloa pseudoarundinacea (Steud.) Widjaja) and mayan bamboo (Gigantochloa robusta Kurz.) were used as the face and back layers of the beam, glued with isocyanate adhesive. Four types of composite beam were produced with various number of laminated bamboo layers. Results showed that the four layers (two layers for each face and back sides) laminated andong bamboo performed super
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9

Hartono, Rudi, Jajang Sutiawan, Dede Hermawan, Santiyo Wibowo, and Deni Zulfiana. "Termite and decay resistances of Sumatran elephant dung-based particleboard modified with wood shavings and bamboo layering." BioResources 18, no. 3 (2023): 5073–84. http://dx.doi.org/10.15376/biores.18.3.5073-5084.

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Elephant dung (ED) particleboard (PB) still has subpar physical and mechanical qualities. In earlier research, adding wood shavings and bamboo layers to ED-derived PB successfully enhanced its physical and mechanical qualities. However, the resistance to termites and decay of this PB is still unknown. Therefore, this study examines the resistances to termites and decay of the PBs from ED fiber-modified with wood shavings and bamboo layering. ED and wood shavings were distributed throughout the PB in ratios of 100/0, 90/10, 80/20, 70/30, 60/40, and 50/50 (w/w %). Meanwhile, tali bamboo (Giganto
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10

Antonov, Svetlin, Nguyen Thanh Nam, Tran Trong Hy, and Le Khanh Dien. "A Study on the Effects of Technical Parameters on the Tensile Strength of Bamboo Plywood." E3S Web of Conferences 207 (2020): 05004. http://dx.doi.org/10.1051/e3sconf/202020705004.

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The application of bamboo by-products such as bamboo branches, chips to recycle and produce pressed bamboo pulp is an urgent task in Vietnam. It perfectly replaces natural wood with artificial wood embryos from bamboo powder, which has both economic benefits of reserving the source of raw materials, environmental protection The paper presents a study on the influence of technological parameters on the tensile strength of pressed bamboo plastic fiber that is a new product of a project of our laboratory.
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11

Sujito, S., Hanim Munawaroh, and Endhah Purwandari. "Mechanical Properties and Biodegradability of Bamboo and Sengon Wood Thin Sheets Reinforced Poly Latic Acid (PLA) Biocomposites)." Jurnal ILMU DASAR 14, no. 2 (2014): 67. http://dx.doi.org/10.19184/jid.v14i2.513.

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Development of biocomposite materials based on natural fibers and environmentally friendly resins to replace composite materials made from plastic and synthetic fibers give the consideration that the biocomposite materials are environmentally friendly materials. In this paper, we discuss the synthesis and characterization of biocomposite materials using a combination of thin sheets of bamboo reinforcement and resin sengon and poly lactic acid (PLA). As controls were also carried out the synthesis and characterization of biocomposite material with a thin layer of reinforcement only sengon bambo
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12

Lin, Chang. "Research and Development of Bamboo Glulam Furniture." Open Construction and Building Technology Journal 9, no. 1 (2015): 99–102. http://dx.doi.org/10.2174/1874836801509010099.

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China is theone of the origins of bamboo plants and distribution centers in the world, is one of the most abundant bamboo resources countries, and is known as the "kingdom of bamboo". According to authoritative department statistics show that China's bamboo species has accounted for about 37% of the world total. With the increasingly shortage of wood resources, the sustainable development of the high, Bamboo Glulam Furniture, as a kind of processing is better than wood, without being limited by the resources of new materials, gradually entered the market. While the development of Bamboo Glulam
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13

Hong, Pei Fen. "Furniture Materials Research in Kinmen." Advanced Materials Research 1091 (February 2015): 45–50. http://dx.doi.org/10.4028/www.scientific.net/amr.1091.45.

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The purpose of this study is to explore furniture materials and feature in Kinmen of Taiwan. The methods include document analysis , field research and interview. The results indicate that kinmen furniture materials commonly used china-fir and another bamboo, china tree and Taiwan acacia, and in terms of the material properties of wood, Taiwan acacia the highest hardness, but poor drying and processing, the other hand fir, china-fir and bamboo materials, due to easy drying and processing, so it is a higher probability of use. However, the Golden Gate itself does not produce china-fir, wood sou
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14

Van Hung, Tran, Le Khanh Dien, and Vo Tuyen. "A research on the design a bamboo powder drying machine." Science & Technology Development Journal - Engineering and Technology 3, SI1 (2020): First. http://dx.doi.org/10.32508/stdjet.v3isi1.733.

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Bamboo is a sustainable and environmentally friendly material that has the potential to improve the global decline of natural resources. Bamboo is very popular in the countryside of almost all Southeast countries, particularly in Vietnam. Its ability can replace some kinds of wood in decoration and household goods. Bamboo grows up rapidly and can be harvested within 3 to 5 years of planting, in the meanwhile, the harvesting time of other hardwood trees must be from 8 to 10 years or longer. The inherent characteristics of bamboo are lighter than other wood materials and have a value in social a
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15

Wulandari, Febriana Tri, and I. Gde Dharma Atmaja. "Analisis Perbandingan Sifat Fisika dan Mekanika Papan Laminasi Kayu Jati Putih (Gmelina arborea. Roxb) dan Papan Lamninasi Bambu Petung (Dendrocalamus asper)." Daun: Jurnal Ilmiah Pertanian dan Kehutanan 9, no. 2 (2022): 67–75. http://dx.doi.org/10.33084/daun.v9i2.4186.

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This study of laminated boards wants to compare laminated boards made of wood and non-wood raw materials. For wood, use white teak (Gmelina arborea. Roxb) and non-wood using petung bamboo (Dendrocalamus asper). Teak wood is easy to work either by machine or by hand. It has an average fiber length of 1.32 mm with a diameter of 24.8 μm. Teak wood is included in durable class 1 and strong class II, has a fairly good nail resistance and can withstand rust with the age of an old tree. Petung bamboo has a diameter that can reach 20 cm with a wall thickness of 1-3 cm, making it suitable for use as la
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16

Li, Yan, and Wen Yang Dong. "The Anti-Seismic Numerical Simulation for a Multi-Storey Frame with Bamboo Engineering Materials." Advanced Materials Research 450-451 (January 2012): 1284–87. http://dx.doi.org/10.4028/www.scientific.net/amr.450-451.1284.

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Bamboo has many good features, is an ideal material for the construction industry. The numerical simulation of multi-layer seismic frame structure of bamboo by hand shows that, for re-bamboo wood columns, typical of the two failure modes for the transverse deformation is too large can not continue to load and top of the fibers in the lateral pressure exploded; bamboo column can be restored in the unloaded more than 80% of deformation, has excellent elastic recovery; bamboo can withstand the load beam is actually controlled by the stiffness, not strength.
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17

Böck, Felix. "Green gold of Africa – Can growing native bamboo in Ethiopia become a commercially viable business?" Forestry Chronicle 90, no. 05 (2014): 628–35. http://dx.doi.org/10.5558/tfc2014-127.

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With concerns about climate change and the search for sustainable construction materials, significant attention is now being paid to Africa's natural resources. Ethiopia, known as Africa's political capital, has a rapidly expanding economy with increasing demand for new construction materials. Through public private partnerships projects the country is developing a sustainable business model to promote bamboo as a raw material. The subtropical zone of Ethiopia is home to approximately 65% of Africa's bamboo resources, an area of over 1 million hectares. Bamboo is potentially an ideal source of
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18

Yusof, Ahmad Amirul Mukmin Yusof, Mohammad Sukri Mustapa, Ahmad Hamdan Ariffin, et al. "The Effect of Bamboo Charcoal Powder on the Tensile Strength of Wood Plastic Composite." Materials Science Forum 1075 (November 30, 2022): 79–85. http://dx.doi.org/10.4028/p-4952o3.

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This research study was focused on the effect of bamboo charcoal powder on the tensile strength of wood plastic composite reinforced with rice husk ash (silica). This study used 3 different proportions of composite that is 10% bamboo charcoal powder-90% polypropylene, 20% bamboo charcoal powder-80% polypropylene and 30% bamboo charcoal powder-70% polypropylene with added rice husk ash of 0%, 5% and 10%. The size of the particle for the bamboo charcoal powder is 60μm. The method used to produce this wood plastic composite is by mixing and injection molding method. The test performed on the samp
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19

Wang, Tong, Jing Di, and Hongliang Zuo. "Experimental study on bending behavior of glulam beams strengthened with bamboo scrimber." International Journal of Structural Integrity 13, no. 1 (2021): 44–56. http://dx.doi.org/10.1108/ijsi-03-2021-0037.

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PurposeIn view of the defects of glued wood beams, a new composite member – reconstituted bamboo board reinforced glued wood beams is proposed to improve the bearing capacity of glued wood beams.Design/methodology/approachThe bending test studied the ordinary glulam beams and the reinforced glulam beams with different layer numbers and different layer thicknesses by comparing with six kinds of glulam beams strengthened with bamboo scrimber and one kind of ordinary glulam beams and used the method of third-point stepwise loading on the glulam beams strengthened with bamboo scrimber.FindingsThe
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20

Feng, Yongshun, Xin Pan, Hui Qiao, and Xiaowei Zhuang. "Preparation and Characterization of a Novel Lightweight Bio-Degradable Lignocellulosic Porous Molding Material." Buildings 14, no. 1 (2023): 49. http://dx.doi.org/10.3390/buildings14010049.

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Wood is an abundant biomaterial and widely used in construction and furniture. Timber processing produces large amounts of residues and byproducts, which are of low value. In this study, we proposed a new strategy for the recycle of wood residues to prepare a wood porous molding material. A hydrated thermochemical grinding process followed by high-temperature and high-pressure refining was developed to convert wood powder into high-viscosity suspension. Lignocellulosic raw materials, including pine wood, beech wood, and bamboo, were compared with different grinding time. A porous material with
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Hoang Hiep, Nguyen, Vo Tuyen, Le Khanh Dien, and Nguyen Tan Hung. "A study on the design of bamboo grinding machine." Science & Technology Development Journal - Engineering and Technology 3, SI1 (2020): First. http://dx.doi.org/10.32508/stdjet.v3isi1.734.

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Bamboo is a sustainable and environmentally friendly material that has the potential to improve the global decline of natural resources. Bamboo is one of the popular flora in Southeast Asia; it is also traditional plants that grow abundantly in Vietnamese villages from north to south. Its ability can replace some kinds of wood in decoration and household goods. Bamboo grows up rapidly and can be harvested within 3 to 5 years of planting, in the meanwhile, the harvesting time of other hardwood trees must be from 8 to 10 years or longer. The inherent characteristics of bamboo are lighter than ot
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22

GV, Vimalarasi, MS Varnitha, and Nischay N. Gowda Dr. "Exploring sensory mapping in interior design by using sustainable materials in residential spaces." International Journal of Trends in Emerging Research and Development 2, no. 6 (2024): 239–45. https://doi.org/10.5281/zenodo.14652264.

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This study aims to review the usage of renewable resources to enhance sensory experiences sustainably and investigates sensory mapping in Residential spaces. The study also emphasizes how texture, sound, and scent impact how we perceive places. Several studies recommend enhancing sensory experiences with renewable resources including plants, bamboo, wool, and repurposed wood. This strategy encourages user involvement in using sustainable materials and ecological responsibility in line with biophilic design concepts. The study also covers techniques for recording and evaluating sensory experien
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23

Wang, Zhe, Feng-Yu Huang, Yan Liu, et al. "Adsorption properties and mechanism of uranium by three biomass materials." Radiochimica Acta 110, no. 1 (2021): 23–35. http://dx.doi.org/10.1515/ract-2021-1078.

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Abstract Wood fibers, bamboo fibers and rice husk were applied to the adsorption of uranium from aqueous solution to understand the uranium adsorption behavior and mechanism by these natural sorbents. The effects of time, adsorbent particle size, pH, adsorbent dosage, temperature and initial concentration were studied using batch technique. The adsorption mechanism was discussed by isothermal adsorption models, adsorption kinetic models. The results suggested that the three biomass adsorbents showed great efficiency of adsorption for uranium. The adsorption capacity of biosorbents of comparati
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Chen, Aonan, Yi Liang, Zhilin Jiang, and Jianping Sun. "Prediction of elastic modulus and mid-span deflection of bamboo-wood composite laminates." BioResources 16, no. 4 (2021): 7784–98. http://dx.doi.org/10.15376/biores.16.4.7784-7798.

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To better guide the manufacturing of bamboo-wood composite laminates, classical theory, first-order shear theory, and finite element method were used to predict the elastic modulus and deflection of bamboo-wood composite laminates. The influence of the adhesive layer on the elastic modulus and deflection of composite materials was considered. The effect of transverse shear on the mechanical properties of materials became smaller and smaller with an increasing span-to-height ratio. The effects of the adhesive layer on the elastic modulus and deflection were ± 0.5% and -0.1% to 0.3%, respectivel
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Huang, Yanhui, and Benhua Fei. "Comparison of the mechanical characteristics of fibers and cell walls from moso bamboo and wood." BioResources 12, no. 4 (2017): 8230–39. http://dx.doi.org/10.15376/biores.12.4.8230-8239.

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Bamboo and wood fibers are important raw materials for pulp and papermaking, as well as fiber-reinforced composites. The mechanical properties of single fibers and the cell walls of moso bamboo (Phyllostachys heterocycla), Masson pine (Pinus massoniana), and Chinese fir (Cunninghamia lanceolata) were tested via single fiber tensile test and nanoindentation; their fracture characteristics were also compared. The single fibers and cell walls of moso bamboo had superior mechanical properties compared with those of Masson pine and Chinese fir. The bamboo fibers exhibited high strength, high elasti
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Komariah, Iis siti. "SENI KERAJINAN PERPADUAN LIMBAH KAYU JATI DAN AKAR BAMBU DI FLODISTA BALE ROSO TAMANSARI BONDOWOSO." Jurnal Pendidikan Seni Rupa Undiksha 11, no. 3 (2021): 244–53. http://dx.doi.org/10.23887/jjpsp.v11i3.42056.

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Abstrak Penelitian ini bertujuan untuk mengetahui (1) alat dan bahan yang di gunakan dalam pembuatan Seni Kerajinan Perpaduan Limbah Kayu Jati Dan Akar Bambu Di Flodista Bale Roso Tamansari Bondowoso, (2) proses pembuatan Seni Kerajinan Perpaduan Limbah Kayu Jati Dan Akar Bambu Di Flodista Bale Roso Tamansari Bondowoso, (3) mengetahui jenis dan hasil peroduk Seni Kerajinan Perpaduan Limbah Kayu Jati Dan Akar Bambu Di Flodista Bale Roso Tamansari Bondowoso. Sasaran Penelitian ini adalah pemilik dan perajinLimbah Kayu Jati Dan Akar Bambu Di Flodista Bale Roso Tamansari Bondowoso. Penelitian ini
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Yang, Bajin, Xu Guo, Wu Chen, Xingyu Wang, Guanben Du, and Chunlei Dong. "Research on Gluing Properties of Thick Bamboo–Wood-Oriented Strand Boards." Forests 14, no. 10 (2023): 2094. http://dx.doi.org/10.3390/f14102094.

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This study investigated the effects of adhesive resination and bamboo strand content on the physical and mechanical properties of thick bamboo–wood-oriented strand board (BWOSB), such as the air dry density (ADD), internal bond strength (IB), water absorption thickness swelling (TS), modulus of rupture (MOR), modulus of elasticity (MOE), and gluing properties. The raw materials used included large strands prepared from Chinese fir (Cunninghamia lanceolata), bamboo (Phyllostachys edulis), and modified isocyanate resin (PMDI). In this study, BWOSB specimens with different adhesive resination and
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Baiti, Risa Nurin, Sena Maulana, Wahyu Solafide Sipahutar, et al. "Evaluation of surface properties of betung bamboo (Dendrocalmus asper) strands under various heat treatment duration and temperature." Journal of Science and Applicative Technology 5, no. 2 (2021): 411. http://dx.doi.org/10.35472/jsat.v5i2.457.

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The abundance, rapid growth characteristics and good mechanical properties have made betung bamboo as good alternative materials to replace the slow growing wood. To adress the susceptibility to insects and water attack, the making of bamboo composites, using resin as matrix, has been widely practiced. Thus, the surface properties of bamboo strands are crucial to determine the optimum interaction with resin. This study evaluate the effect of heat treatment to improve the surface properties of bamboo strands, such as the wettability and the color change. Beforehand, the freshly cut bamboo was c
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Kitiyanun, Krittapat, Waranon Kongsong, Seree Tuprakay, et al. "Mechanical Properties of Parallel TDG Bamboo Laminated Columns with Tough and Grove Joints." Designs 6, no. 6 (2022): 107. http://dx.doi.org/10.3390/designs6060107.

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The problem of bamboo’s strength depends on the length used. From past experiments, it was found that the physical properties of bamboo have thickness at the bottom and a tapered end, resulting in the strength of the bamboo in each part being different. The bottom part can resist more compression than the tip, which corresponds to the physical characteristics of bamboo. To use bamboo for main construction, such as columns, many select raw bamboo that measures approximately 3 m from the ground and is considered the strongest part. The present bamboo laminated products are limited to 2.4 m in le
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Wegst, Ulrike G. K. "Bamboo and Wood in Musical Instruments." Annual Review of Materials Research 38, no. 1 (2008): 323–49. http://dx.doi.org/10.1146/annurev.matsci.38.060407.132459.

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Chen, Zheng, Hao Du, Libin Wang, and Xiang Ding. "Embedment Performance of Glued Laminated Bamboo and Timber Composite Joints." Buildings 14, no. 12 (2024): 4043. https://doi.org/10.3390/buildings14124043.

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Dowel connectors are extensively utilized to establish joint connections in timber constructions. This study investigated the embedment performance of glued laminated bamboo and timber composite joints through half-hole tests, focusing on the effects of dowel diameter, loading direction, contact condition, combination method, and moisture content. The experimental results indicated that the embedment strength of the specimens decreased progressively with an increase in dowel diameter. For wood–bamboo–wood (WBW) specimens, the embedment strength in the longitudinal to the grain was 18% higher t
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Solihat, Raizal Fahmi, and Yogi Saputra. "ANALISIS KEKUATAN PATAH DAN DAYA SERAP AIR PAPAN KOMBINASI SERAT DENGAN LAMINASI BAMBU BETUNG (Dendrocalamus asper)." Wanamukti: Jurnal Penelitian Kehutanan 22, no. 1 (2021): 33. http://dx.doi.org/10.35138/wanamukti.v22i1.327.

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The problem faced by the wood processing industry in Indonesia today is the shortage of wood raw materials. This occurs because the speed at which timber is used is not balance with the speed at which new stands are build. Meanwhile, the need for wood for furniture, building materials and other needs continues to increase in line with population growth. Therefore, it is necessary to find alternative raw materials for the wood processing industry. Bamboo is one material that can be use for this purpose. Bamboo is a long fiber and has advantages in terms of the harvest period, namely within 3-4
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Wulandari, Febriana Tri, Radjali Amin, and Dini Lestari. "ANALISIS SIFAT FISIKA DAN MEKANIKA PAPAN LAMINASI KOMBINASI KAYU SENGON BAMBU PETUNG DAN KEMIRI BAMBU PETUNG." Jurnal Sylva Scienteae 6, no. 6 (2023): 1018. http://dx.doi.org/10.20527/jss.v6i6.11109.

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Bamboo has various advantages such as relatively cheap price, fast growing, physical and mechanical properties comparable to wood, and suitable for application with existing processing technologies. A combination of wood and bamboo laminated boards is an attractive choice in wood and bamboo processing. Previous studies have shown that testing of physical and mechanical properties has been carried out on laminated boards made from wood or bamboo only. Information regarding laminated boards with a combination of wood and non-timber is still very limited. Laminate boards are made from a combinati
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Wang, Xuehua. "Topicalities in the Research and Application of Bamboo and Wood." Forests 15, no. 11 (2024): 1917. http://dx.doi.org/10.3390/f15111917.

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J.V.N.S. PRASAD, B. GANGAIAH, S. KUNDU, G.R. KORW R, B. VENKATESWARLU, and V . SINGH. "Potential of short rotation woody crops for pulp fiber production from arable lands in India J.V.N.S. PRASAD , 6. GANGAIAH2, S. KUNDU1, G.R. KORWAR', B. VENKATESWARLU1 AND V.P. SINGH3." Indian Journal of Agronomy 54, no. 4 (2001): 380–94. http://dx.doi.org/10.59797/ija.v54i4.4812.

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Wood fiber is used for the manufacture of various kinds of paper, packaging material, tissues, paperboard etc. The conventional soft woods and hard woods used as raw materials by pulp, paper and cellulose based indus- tries are depleting day by day and the wood imports are draining country's foreign exchange. Short rotation in- dustrial agroforestry plantations with the fast growing tree species are potential sources to fill this gap and to make the nation self reliant in pulpwood supply. Poplar, eucalyptus, leucaena and bamboo are the ideal spe- cies that can be grown commercially in private
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Khanh Dien, Le, Tran Van Hung, Hoang Duc Lien, and Svetlin Antonov. "A Design of Bamboo Plywood Pressing Machine." Science & Technology Development Journal - Engineering and Technology 3, SI1 (2020): First. http://dx.doi.org/10.32508/stdjet.v3isi1.735.

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Bamboo is very popular in the countryside of almost all Southeast countries, particularly in Vietnam. Its ability can replace some kinds of wood in decoration and household goods. Bamboo grows up rapidly and can be harvested within 3 to 5 years of planting; in the meanwhile, the harvesting time of other hardwood trees must be from 8 to 10 years or longer. The inherent characteristics of bamboo are lighter than other wood materials and have a value in social and environmental benefits. Its advances in manufacturing technology have created high-value products such as bamboo flooring and bamboo f
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Tawachkultanadilok, Pimrapus, Nattawut Osakoo, Chalermpan Keawkumay, et al. "Synthesis and Characterization of Zeolite NaY Dispersed on Bamboo Wood." Materials 16, no. 14 (2023): 4946. http://dx.doi.org/10.3390/ma16144946.

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Zeolites in powder form have the potential to agglomerate, lowering access to active sites. Furthermore, a suspension of fine zeolite powder in liquid media is difficult to separate. Such drawbacks could be improved by dispersing zeolite crystals on support materials. This work demonstrates the dispersion of zeolite NaY crystals on bamboo wood by mixing the wood with zeolite gel before hydrothermal treatment. The syntheses were performed with acid-refluxed and non–refluxed wood. The phase of zeolites, particle distribution and morphology, zeolite content in the wood, and zeolite–wood interacti
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Hu, Fu, Lifen Li, Zhigang Wu, et al. "Surface Characteristics of Thermally Modified Bamboo Fibers and Its Utilization Potential for Bamboo Plastic Composites." Materials 15, no. 13 (2022): 4481. http://dx.doi.org/10.3390/ma15134481.

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Bamboo fibers are considered as a more attractive option for the reinforcement of wood plastic composites as compared to wood fiber due to its fast growth rate and good toughness. Heat treatment is an environment-friendly method of improving the integrated performance of bamboo materials. This paper highlights the heat treatment of bamboo fiber for suitable properties as reinforcements in bamboo plastic composites. The effects of vacuum heat treatment on the surface characteristics of bamboo fibers and the properties of bamboo plastic composites were analyzed by studying the chemical compositi
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Wulandari, Febriana Tri, and Radjali Amin. "Sifat Fisika Papan Laminasi Kombinasi Kayu Sengon dan Bambu Petung (Dendrocalamus asper)." Empiricism Journal 4, no. 1 (2023): 61–68. http://dx.doi.org/10.36312/ej.v4i1.1200.

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Penelitian ini mengkombinasikan bahan baku dari kayu sengon dengan non kayu yakni bambu petung menjadi produk laminasi. Sengon memiliki beberapa kelemahan yaitu berat jenisnyanya yang ringan yakni sekitar 0,33 dengan kelas kuat III-IV sehingga tidak layak digunakan sebagai bahan kontruksi karena masuk dalam kelas kuat. Sedangkan bambu petung memiliki karakteristik dasar mirip dengan kayu bahkan dalam beberapa hal bambu petung memiliki keunggulan dibandingkan kayu. Keunggulan bambu petung selain kekuatan mekaniknya yang kuat, bambu ini dapat mudah ditemukan di daerah tropis dan waktu tumbuh yan
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Jeon, Woo-Seok, Yun-Ki Kim, Ju-Ah Lee, et al. "Anatomical Characteristics of Three Korean Bamboo Species." Journal of the Korean Wood Science and Technology 46, no. 1 (2018): 29–37. http://dx.doi.org/10.5658/wood.2018.46.1.29.

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Siregar, Sri Hilma, Syafri Rahmadini, Nasution Hasmalina, Ramadhanti Aulia Rizki, and Kafri Eri. "Pulp synthesis using bamboo raw materials through unbleached and bleached processes." Acta Chimica Asiana 6, no. 1 (2023): 247–53. http://dx.doi.org/10.29303/aca.v6i1.135.

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This study aims to see the potential of bamboo as a new raw material for the Indonesian pulp industry, specifically for the manufacture of pulp products, because in Indonesia, the import value for dissolving is still high, and the raw materials used still use wood plants. This study consists of three stages: the pre-hydrolysis stage using water, the cooking stage with the kraft pulping method, and bleaching using the elemental chlorine-free (ECF) method. Bamboo flakes that run into the pre-hydrolysis process decreased the Kappa Number value of pulp produced, which ranges from 4.63% - 14.52% co
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Будаш, Ю. О., Є. В. Кучеренко, В. П. Плаван, Я. В. Фещенко та О. І. Верейко. "ПОРІВНЯЛЬНИЙ АНАЛІЗ РОЗМІРНИХ ХАРАКТЕРИСТИК НЕДЕРЕВНИХ ВОЛОКОН РІЗНОЇ ПРИРОДИ". Bulletin of the Kyiv National University of Technologies and Design. Technical Science Series 118, № 1 (2018): 43–50. http://dx.doi.org/10.30857/1813-6796.2018.1.5.

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Comparison of dimensional characteristics of various non-wood fibers (flax, hemp, bamboo, cotton), which can be used as an additional component in the production of non-woven composite materials from synthetic fibrous waste. The structure of the fibers was studied by optical polarization microscopy. The dimensional characteristics of the fibers were determined by the method of analyzing digital images, followed by statistical processing and graphical analysis of the obtained data. A quantitative comparative analysis of the transverse dimensions and distribution for this indicator for non-wood
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Subyakto, Subyakto, Ismail Budiman, and Gustan Pari. "Effects of Temperature and Time of Carbonization on the Properties of Bamboo (Dendrocalamus asper) Carbon." Wood Research Journal 4, no. 1 (2017): 68–73. http://dx.doi.org/10.51850/wrj.2012.3.2.68-73.

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Lignocellulosic materials such as wood and bamboo have special characteristics when carbonized at high temperature. For example the electrical conductivity of wood and bamboo increases when carbonized at temperature of 800°C or higher. This property can be used for developing smart materials such as fiber reinforced concrete which has function as sensors for load, damage or temperature. In this experiment, betung bamboo (Dendrocalamus asper) was carbonized at different temperatures and times of carbonization. The purpose of this experiment was to observe the effect of temperature and time of c
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Hu, Ailian, Chungui Du, Yating Hua, et al. "Preparation and Flame Retardant Properties of Calcium–Aluminium Hydrotalcite with Root Cutting Silicate Layers as Bamboo Flame Retardants." Materials 14, no. 23 (2021): 7319. http://dx.doi.org/10.3390/ma14237319.

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Bamboo has been widely used in architecture, decoration and other fields because of its advantages of short growth period, high strength and degradability. However, bamboo, as a combustible material like wood, are easy to burn and cause building fires. However, the existing bamboo water-based flame retardants have some shortcomings, such as strong hygroscopicity and easy loss, which limits the application of bamboo products. In order to improve the flame retardant performance of bamboo, CaAl-SiO2 layered double hydroxide (LDH) as bamboo flame retardant was synthesised by coprecipitation method
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Sun, Penghui, Kuibin Zhou, and Zhi Li. "An experimental study of flame spread over the bamboo slab of different inclination angles and thicknesses." Thermal Science, no. 00 (2024): 260. https://doi.org/10.2298/tsci240224260s.

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Bamboo as a new type of building material, is an alternative raw material for wood and wood-based composites, but its burning could result in fire disaster. The aim of this study was to examine the surface flame spread behavior over the inclined bamboo slab. A series of experiments were conducted using bamboo slabs with thicknesses of 2.5 mm, 3.5 mm, and 5 mm. The flame morphology, flame spread rate, and mass loss rate versus the inclination angle and thickness were measured and physically explained. The results show that the flame spread rate increases with increasing inclination angle of sla
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Eilsa Adelia, Nukhbah Sany, Prasiska Damastuti, Friska Damayanti, and Safarah Putri Ma’Wa. "KAJIAN ESTETIKA IMPLEMENTASI BAMBU LAMINASI PADA TRANSFORMABLE FURNITURE BRUNA CABINET." Jurnal Kreatif : Desain Produk Industri dan Arsitektur 12, no. 02 (2024): 19. http://dx.doi.org/10.46964/jkdpia.v12i1.715.

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The limitation of wood as a raw material for furniture production has prompted researchers to seek non-wood alternative materials. Among these alternatives, bamboo has been utilized for furniture production. However, the bamboo used is typically in its whole form, which restricts the types and shapes of furniture that can be produced. Using the design thinking method, starting from the empathize, define, ideate, prototype, and test stages, the goal of this research was to explore the aesthetic value of a cabinet that can transform from one function to another using processed bamboo material—sp
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Thi My Chau, LE, NGUYEN Tan Thanh, DINH Thi Phuong An, et al. "APPLICATION OF NATURAL-BASED ANTI-FUNGAL FORMULATIONS FOR BAMBOO AND WOODEN HOUSEHOLD PRODUCTS." Vinh University Journal of Science 52, no. 4A (2023): 59–70. http://dx.doi.org/10.56824/vujs.2023a059.

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This paper is concerned with the ability of natural products such as vinegar, tea, okra, lemon juice, grapefruit peel essential oil, and baking soda to prevent mold growth on bamboo and wood materials. The results showed that grapefruit peel essential oil had the highest biological activity compared to the other products in preventing mold growth on wood materials. Additionally, a process for preventing mold growth on bamboo and wood materials was developed and the parameters were optimized using the Box-Behnken surface response correlation method. The optimal process conditions were determine
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Wang, Qingping, Xing'e Liu, and Shumin Yang. "Predicting Density and Moisture Content of Populus xiangchengensis and Phyllostachys edulis using the X-Ray Computed Tomography Technique." Forest Products Journal 70, no. 2 (2020): 193–99. http://dx.doi.org/10.13073/fpj-d-20-00001.

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Abstract Density (D) and moisture content (MC) are two important physical properties of wood and bamboo, which are highly correlated with many other physical and mechanical properties. In this study, the X-ray computed tomography (CT) technique was used to determine the D and MC of poplar (Populus xiangchengensis) and bamboo (Phyllostachys edulis). There was a statistically significant difference in the CT-measured numbers for D and MC between these species. The D-CT and MC-CT linear models for both species were independently established: Dpoplar = 0.00098 × H + 1.02603, Dbamboo = 0.00118 × H
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Zhou, Yunxia, Shiqin Liu, Mengjia Zhu, et al. "Multifunctional wood-bamboo hybrid materials for effective electromagnetic interference shielding." Construction and Building Materials 440 (August 2024): 137450. http://dx.doi.org/10.1016/j.conbuildmat.2024.137450.

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Vo, Tuyen, Thanh Nam Nguyen, Khanh Dien Le, and Svetlin Antonov. "Study on the Effects of Technology Parameters on the Bending Strength of Press Bamboo Powder Plywood." Key Engineering Materials 863 (September 2020): 19–24. http://dx.doi.org/10.4028/www.scientific.net/kem.863.19.

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The application of bamboo by-products such as bamboo branches, debris... to recycle and produce bamboo powder plywood, perfectly saves high price natural resource of national wood with artificial wooden boards made from bamboo powder that ensures the reservation of natural source of raw materials and protecting of environment. Plywood that is made from bamboo powder has both economic and environmental benefits. It is an urgent task for providing a new version of material for civil engineering in Vietnam. The paper presents a study of the effect of technological parameters on the bending streng
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