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Journal articles on the topic 'Aluminum construction'

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1

Alawady, Mohamed Ahmed. "استكشاف تعدد استخدامات الألمنيوم في الهندسة الميكانيكية". Journal of engineering sciences and information technology 8, № 2 (2024): 27–37. http://dx.doi.org/10.26389/ajsrp.k290524.

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Aluminum, known for its lightweight, high strength, and excellent corrosion resistance, is a critical material in mechanical engineering. Its unique properties make it indispensable in various industries, including aerospace, automotive, construction, and packaging. This research paper explores the fundamental properties of aluminum that contribute to its widespread use. It discusses the metal's high strength-to-weight ratio, excellent thermal and electrical conductivity, and significant ductility and malleability. These characteristics allow aluminum to be formed into complex shapes and struc
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Suwasono, Bagiyo, Mochammad Rizky Darmawan, and Intan Baroroh. "Material Effectiveness Model for the Construction of Aluminum Hull." Kapal: Jurnal Ilmu Pengetahuan dan Teknologi Kelautan 18, no. 1 (2020): 18–27. http://dx.doi.org/10.14710/kapal.v18i1.29974.

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Construction of a hull generally requires several plates and profile material. Early indications for shipbuilding indicate that in manner, the linear function approach for installed material was 75% to 90%, and waste material was 10% to 25%. This study is conducting an assessment of the area of installed material and waste material on small vessels made of aluminum with variations in ship length and the method of approach trend lines both linear and nonlinear. Secondary data retrieval in the form of an aluminum cutting plan for plate material and profile from the AutoCAD application, which is
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KUNIMOTO, Takashi. "The aluminum alloy sandwich construction." Journal of Japan Institute of Light Metals 40, no. 5 (1990): 390–405. http://dx.doi.org/10.2464/jilm.40.390.

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4

Sanders, Robert, and Graeme Marshall. "Aluminum Applications in Marine Transportation." AM&P Technical Articles 181, no. 4 (2023): 23–27. http://dx.doi.org/10.31399/asm.amp.2023-04.p023.

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Abstract Beyond weight savings, aluminum products offer corrosion resistance, weldability, and ease of maintenance for a wide range of marine vessels. Aluminum was recognized as a promising material for marine construction from the early days of the industry. The development of 5xxx alloys and large production capacity made aluminum use more technically and economically possible beginning in the 1950s. The variety of aluminum vessels ranges from small fishing boats and fast ferry catamarans to cruise ships and military vessels. All benefit from aluminum's relatively light weight, low maintenan
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Abdunnafi, Ginanjar, M. Agung Wibowo, and Bambang Purwanggono. "KAJIAN PERBANDINGAN PENGARUH PENGGUNAAN BEKISTING ALUMINIUM DAN PERTH CONSTRUCTION HIRE (PCH) DALAM MEWUJUDKAN LEAN CONSTRUCTION." Wahana Teknik Sipil: Jurnal Pengembangan Teknik Sipil 26, no. 2 (2021): 156. http://dx.doi.org/10.32497/wahanats.v26i2.3130.

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Technological developments have led to innovations in construction materials science, one of which is formwork materials. There are several important aspects in formwork innovation, namely cost, speed, quality, waste, and health safety environtment (HSE), but they have not fully had a positive impact on construction project development. However, it has not fully had a positive impact on construction projects. In addition, what aluminum formwork manufacturers offer so far may not necessarily suit the needs of customers. The purpose of this study is to analyze the comparison in terms of cost, ti
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Shoag, Md, and M. F. Rahman. "Using Recycling Aluminum Cans as Composite Materials Aluminum Fiber." IOP Conference Series: Earth and Environmental Science 943, no. 1 (2021): 012028. http://dx.doi.org/10.1088/1755-1315/943/1/012028.

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Abstract The sustained and developing construction industry needs a vast amount of material because it is becoming more extensive and sustainable day by day. Problems are also increasing in line with development. Many advanced composite materials and solutions are coming up in the current construction industry to solve these problems. However, these require more comfortable and extensive use. For that, we have to find out cheap and sustainable materials. This research paper aims to combine advanced materials and solutions to create more sustainable solutions and new material. That will enrich
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Nethercot, D. "Aluminum structures: advances, design and construction." Engineering Structures 11, no. 1 (1989): 57. http://dx.doi.org/10.1016/0141-0296(89)90035-7.

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Gelfgat, Mikhail, Alexey Alkhimenko, and Sergey Kolesov. "Corrosion and the role of structural aluminum alloys in the construction of oil and gas wells." E3S Web of Conferences 121 (2019): 04003. http://dx.doi.org/10.1051/e3sconf/201912104003.

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This paper presents the main research results and examples of structural aluminium alloys (SAA) effective use in the oil and gas wells construction onshore and offshore. The known application cases are drill pipes, tubing and casing. Competitive properties of SAA for hydrocarbons exploration and production were identified as strength-to-weight ratio, high total corrosion resistance, including dissolved hydrogen sulphide and carbon dioxide, absence of cold-shortness effect. The issues with the natural properties of aluminum alloys requiring process and structural corrections were addressed as w
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Bock, Marina, Junaid Bawazeer, John Robinson, Marios Theofanous, and Konstantinos Skalomenos. "Structural performance of additive manufactured aluminum tubular stub columns." ce/papers 6, no. 3-4 (2023): 751–56. http://dx.doi.org/10.1002/cepa.2603.

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AbstractAluminum is gaining more popularity in the construction industry due to its light weight, mechanical resistance and corrosion properties. Although several studies covering extruded and cold‐rolled aluminium members exist, research into the structural performance of 3D printed aluminium remains scarce. With the increasing importance of digital engineering in the construction industry and the transition from traditional to digital lean, it is important to investigate whether existing design codes are suitable to design 3D printed cross‐sections. To address this, the present paper reports
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Perkasa, Veryawan nanda, Sovian Aritonang Djamarel, and Hermanto Hermanto. "Modification of the Main Deck of Pc40 Using the Sandwich Plate System to Support Marine Defense Operations." Journal Research of Social, Science, Economics, and Management 1, no. 7 (2022): 767–73. http://dx.doi.org/10.36418/jrssem.v1i7.88.

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Indonesia is the largest archipelagic maritime country in the world, it should strengthen its ability to secure a very wide territorial waters, in order to ensure the security and safety of shipping in Indonesian jurisdictional. PC 40 ship is a reliable TNI-AL patrol ship with relatively small dimensions and will be easy to operate in archipelagic areas. In general, structural construction on conventional PC 40 ships, along with the times, the Sandwich Plate System material has been found to have characteristics that provide advantages in terms of strength and a simpler structure compared to c
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Perkasa, Veryawan nanda, Sovian Aritonang Djamarel, and Hermanto Hermanto. "Modification of the Main Deck of Pc40 Using the Sandwich Plate System to Support Marine Defense Operations." Journal Research of Social Science, Economics, and Management 1, no. 7 (2022): 767–73. http://dx.doi.org/10.59141/jrssem.v1i7.88.

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Indonesia is the largest archipelagic maritime country in the world, it should strengthen its ability to secure a very wide territorial waters, in order to ensure the security and safety of shipping in Indonesian jurisdictional. PC 40 ship is a reliable TNI-AL patrol ship with relatively small dimensions and will be easy to operate in archipelagic areas. In general, structural construction on conventional PC 40 ships, along with the times, the Sandwich Plate System material has been found to have characteristics that provide advantages in terms of strength and a simpler structure compared to c
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12

Bouzekova-Penkova, Anna, and Adelina Miteva. "Some Aerospace Applications of 7075 (B95) Aluminium Alloy." Aerospace Research in Bulgaria 34 (2022): 165–79. http://dx.doi.org/10.3897/arb.v34.e15.

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Nowadays, aluminium alloys are of growing interest to scientists and are widely used in aerospace and allied industries due to their inherent lightness, high strength to weight ratio, excellent thermal and electrical conductance, good reflectivity and low working cost. Among the conventional structural materials used in aerospace applications aluminium alloys are frontrunners. This is due to the ability of modern aluminium alloys to achieve unique combination of properties, through alloying and heat treatment, tailored to particular applications. Aluminum alloy 7075 (B95) is a high-strength al
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Klakurková, Lenka, Martin Juliš, and Pavel Gejdoš. "Analysis of Causes of Baby Stroller Construction Damage." Defect and Diffusion Forum 405 (November 2020): 179–84. http://dx.doi.org/10.4028/www.scientific.net/ddf.405.179.

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The paper deals with the complaint between the manufacturer and the customer. The object of the dispute is a damaged stroller construction made by welding Al-Mg-Si aluminum alloy profiles with the final surface layer produced by anodic oxidation. The aim of the analysis is to identify clearly the causes of breaking the aluminum structure using fractographic and metallographic techniques.
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Zinoveev, Dmitry, Pavel Grudinsky, Vladimir Korneev, Valery Dyubanov, and Mark Zheleznyi. "Recycling Red Mud of JSC Ural Aluminum Plant with the Recovery of Iron and Construction Materials." Key Engineering Materials 743 (July 2017): 331–37. http://dx.doi.org/10.4028/www.scientific.net/kem.743.331.

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Red mud is a by-product of alumina industry which is currently almost completely stored in landfill sites without further use. It contains considerable amounts of valuable components such as iron, aluminum, titanium and rare-earth metals. The reduction smelting of red mud was carried out in laboratory scale to recover iron and obtain slag suitable for use in the construction industry. It has been shown that it is expedient to obtain pig iron and slag from the unprocessed red mud. Those two are suitable for the subsequent leaching of aluminum, titanium and rare-earth metals. It is practical to
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15

Fan, Miao Miao, Shu Ping Wang, Zhi Hong Wang, and Yu Liu. "Environmental Impact Analysis of Typical Exterior Windows for Residential Construction." Materials Science Forum 847 (March 2016): 374–80. http://dx.doi.org/10.4028/www.scientific.net/msf.847.374.

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The energy consumption due to heat loss from exterior windows plays an important part in that of the whole building. Therefore, the environmental impact of exterior windows couldn’t be neglected. In this study, the energy consumption and environmental impact were quantified and analyzed based on life cycle assessment methodology. The results showed that both energy consumption and environmental impact of aluminum alloy windows and wood-plastic (WPC) windows mainly occurred at the production stage of aluminum alloy profile and flat glass respectively. At the stage of aluminum alloy profile prod
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16

Pană, Gabriela Monica. "Developments of Audi Space Frame Technology for Automotive Body Aluminum Construction." Applied Mechanics and Materials 896 (February 2020): 127–32. http://dx.doi.org/10.4028/www.scientific.net/amm.896.127.

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With ASF (Audi Space Frame) technology, Audi has completely reinvented the body construction using aluminum as a material and a concept adapted to light metal. ASF technology has undergone developments that efficiently exploit the knowledge accumulated from the efficient use of aluminum alloys, the optimization of casting and profiling processes, to the most appropriate techniques for joining components. The paper analyzes the main technical and technological developments adopted by Audi in designing and manufacturing the aluminum space frame for the car body.
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17

Cai, Yunan, Shaole Yu, Lianping Yang, et al. "Case Study of Structural Design and Construction Process Analysis for an Aluminum Alloy Free Form Reticulated Shell of Nanjing Niushou Mountain." Journal of the International Association for Shell and Spatial Structures 64, no. 2 (2023): 86–98. http://dx.doi.org/10.20898/j.iass.2023.011.

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The aluminum alloy reticulated shell structure of Nanjing Niushou Mountain, the largest single-layer aluminum alloy reticulated shell in Asia, is 227m long from south to north, 130m spanning from east to west. In the design process, the aluminum alloy reticulated shells has been established, then the whole stability of the structure was analyzed to get the first six buckling modes and the safety factors through elastic and elastic-plastic analyses of the whole process. According to the complex construction conditions and the difficulties of construction for a super-large free form reticulated
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18

Joux, Sebastien. "Aluminium Bridges." Key Engineering Materials 710 (September 2016): 378–82. http://dx.doi.org/10.4028/www.scientific.net/kem.710.378.

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Until recently a lack of knowledge and understanding of the structural advantages of aluminium has limited the use of the material in building and construction. Today, advances in engineering and standardization have improved our knowledge of this versatile material and it is becoming more widely accepted in many industries.This paper contains examples of structural applications where aluminum has been selected for bridge construction in Europe: The first project was launched and supported by the E.U. and forms part of the European Cycle Route Network development. The second bridge structure i
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19

Lubis, Ahliyatu Putri Ahmadyna, Alka Alvindra, and Lukas Beladi Sihombing. "Metode Pelaksanaan dan Analisa Efisiensi Pekerjaan Aluminium Formwork System pada Proyek Apartemen Sudimara Forestwalk Tower Albizia." Jurnal Komposit 7, no. 1 (2023): 71–75. http://dx.doi.org/10.32832/komposit.v7i1.9402.

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Abstrak: Seiring dengan perkembangan teknologi di bidang industri yang terus meningkat, pelaksanaan proyek konstruksi mengalami hal yang serupa dimana terdapat berbagai macam inovasi yang dapat mempermudah dan mempercepat proses pekerjaan. Terdapat tiga item pekerjaan yang paling berpengaruh dalam pembangunan proyek konstruksi gedung, yaitu pekerjaan pembesian, bekisting, dan pengecoran. Pekerjaan bekisting dinilai paling banyak dalam penggunaan sumber daya, seperti penggunaan material yang boros dan tenaga kerja yang lebih banyak dibandingkan dengan item pekerjaan lainnya. Penelitian ini bert
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20

Koganti, Ramakrishna, and Joseph Weishaar. "Aluminum Vehicle Body Construction and Enabling Manufacturing Technologies." SAE International Journal of Materials and Manufacturing 1, no. 1 (2008): 491–502. http://dx.doi.org/10.4271/2008-01-1089.

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21

Galaxy, Agustinaputri Bintang, M. Agung Wibowo, and Suharyanto Suharyanto. "PENGHAMBAT DAN PENDORONG GREEN SUPPLY CHAIN MANAGEMENT (Studi Kasus : Aluminium Formwork)." Wahana Teknik Sipil: Jurnal Pengembangan Teknik Sipil 26, no. 2 (2021): 189. http://dx.doi.org/10.32497/wahanats.v26i2.3133.

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Technological innovation in the construction sector is needed not only aimed at faster construction but also environmentally friendly. Engineering the formwork system using aluminum is one of the technological innovations to accelerate development and adopt the 3R (Reuse, Reduce, and Recycle) concept. To support the use of aluminum formwork, an environmentally friendly supply chain activity management model is needed. The Green Supply Chain Management (GSCM) approach is one method that can reduce waste. This study analyzes the driving and inhibiting factors of GSCM using aluminum formwork in a
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22

Li, Huan, Zhen Yi Feng, Yan Ju Li, Yu Xiao, and Min Zheng. "The Practice of Aluminum Plate Material in Modern Traffic Architecture." Advanced Materials Research 919-921 (April 2014): 1195–98. http://dx.doi.org/10.4028/www.scientific.net/amr.919-921.1195.

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With the rapid development of China's railway construction, the modern traffic architecturee used aluminum plate material in decoration more widely. This paper describes the different types of aluminum plate materials, and then introduces the function and the economy of the ceramic aluminum plate in modern traffic architecture.
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23

Widiasanti, Irika. "The Most Influential Factor as The Cause of Delays in Aluminum Form Work in The Sakura Project, East Jakarta." International Journal on Recent and Innovation Trends in Computing and Communication 11, no. 9 (2023): 1042–48. http://dx.doi.org/10.17762/ijritcc.v11i9.8996.

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Project development in Indonesia, especially DKI Jakarta continues to grow, especially in the construction of a multi-storey building concept. These high-rise buildings, including apartments, offices, and flats, have different construction methods. The construction method used in the construction of buildings with multilevel concepts is now more advanced, using a method called aluminum formwork. Aluminum formwork work in several projects in multi-storey buildings sometimes has problems in its work which can cause delays, one of which is in the Sakura Project, East Jakarta. For example, delays
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24

Oyeyemi, Abiodun, Ayokunle Olawepo, and Vershima Kiekwe. "Pisidium Guajava Ameliorates Testicular Distortions Triggered by Aluminium Chloride in Adult Male Wistar Rats." ULUTAS MEDICAL JOURNAL 9, no. 4 (2023): 213. http://dx.doi.org/10.5455/umj.20231003030105.

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Introduction: Aluminium (Al) is a trivalent cation that does not undergo redox changes. Extensive experimental shreds of evidence demonstrate in-vitro and in-vivo, that high Al concentrations cause oxidative stress; an imbalance between free radical generation and the antioxidant defense system. Oxidative stress induced by Aluminium is one of the major contributing factors to male reproductive disorders. Psidium guajava, the guava tree is widely distributed as a native plant in Latin America and Sub-Saharan Africa, with its leaves being deployed in folk medicine to manage several diseased cond
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Tong, Lu, Wang Shuai, Li Wenxiang, et al. "The construction and application of the unit curtain wall system of the steel-aluminum combination." E3S Web of Conferences 283 (2021): 01009. http://dx.doi.org/10.1051/e3sconf/202128301009.

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Curtain walls are widely used in the epidermis of buildings. At present, the unit curtain wall system production frame is mainly aluminum profile. But taking into account the weak aluminum strength and soft characteristics, the existing curtain wall often ensure the frame carrying capacity by increasing the amount of aluminum per unit area, which makes the high curtain wall costs. At the same time, the nodes of its production process are complex and require higher functions of production equipment. In this paper, a unit curtain wall system of steel-aluminum combination is proposed, which has t
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Li, Ying, An Jian Wang, Qi Shen Chen, and Qun Yi Liu. "Influencing Factors of Chinese Aluminium Resources Demand in the Next 20 Years." Advanced Materials Research 734-737 (August 2013): 122–28. http://dx.doi.org/10.4028/www.scientific.net/amr.734-737.122.

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This paper analyzed the development path of the major aluminum consumption department, such as construction, machinery manufacturing, transportation and so on, to discern its future trend along with its effects on aluminum consumption. With the experiences from developed countries, this paper dissected Chinas aluminum comsumption intensity and substitution effect. This article also pointed out that the influencing factors will keep on developing, which will promote Chinas aluminum consumption growth.
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Changlong, Yang, Zhang Hongzhi, Wang Wei, Li Yueyue, Han Rongzhuan, and Dong Qiang. "Application of Pre-stranded Tensile Clamp for Aluminum Composite Carbon Fiber Core." E3S Web of Conferences 136 (2019): 01013. http://dx.doi.org/10.1051/e3sconf/201913601013.

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The growth of electricity demand has put forward higher requirements for transmission line performance. Aluminum composite carbon fiber cores (ACCC) has better performance than traditional steel core aluminum conductor and can better meet the requirements of power transmission and transformation field. However, at present, the wedge-shaped self-locking tension clamp is usually used for aluminum composite carbon fiber cores, which is complicated in construction technology and poor in economy, which restricts the promotion and application of aluminum composite carbon fiber cores.In order to solv
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Shih, Yeng-Fong, Chun-Wei Chang, Teng-Hsiang Hsu, and Wei-Yi Dai. "Application of Sustainable Wood-Plastic Composites in Energy-Efficient Construction." Buildings 14, no. 4 (2024): 958. http://dx.doi.org/10.3390/buildings14040958.

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Wood–plastic composites (WPCs), abbreviated as WPCs, are typically composite materials made by mixing wood flour and thermoplastic resins, and then shaped through processes such as extrusion or compression. They have emerged as a viable and advanced alternative to traditional wood and plastic materials, offering an amalgamation of the best properties of both. This study utilized discarded milk bottles as the polymer matrix (mainly composed of high-density polyethylene, HDPE) and added wood flour, recycled protective clothing (Tyvek®), and diatomite recycled from brewery waste as reinforcement.
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29

Wen, Qing Jie, and Yan Jun Qi. "Rearch on Design of Aluminum Truss Bridge." Advanced Materials Research 168-170 (December 2010): 1776–79. http://dx.doi.org/10.4028/www.scientific.net/amr.168-170.1776.

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In recent years aluminum bridges have been constructed in China, but lack of aluminum design and construction standards limits its development. Traditional design theory of concrete and steel can’t be completely adopted for its application in bearing structures. In order to solve technical difficulty, material type, deflection under live load, frequency and bucking of aluminum bridges are analyzed based on aluminum half-opened truss bridges constructed in China. Compared with related design standards at home and abroad, recommendations are put forward to provide theoretical basis for further a
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Zhou, Xing, Mengyao Li, Dong Wang, et al. "The construction of pyramid structure of micro aluminum oxide." Ceramics International 48, no. 6 (2022): 8733–39. http://dx.doi.org/10.1016/j.ceramint.2021.12.255.

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31

Fuentes, Natalia, Darlys N. Cujia, and Dino Manco. "Aluminum sludge as an alternative in non-structural construction." Contemporary Engineering Sciences 11, no. 97 (2018): 4817–24. http://dx.doi.org/10.12988/ces.2018.89526.

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32

Pang, Wei. "Technical Research on New Transmission Conductor in Medium Ice Area." Journal of Physics: Conference Series 2310, no. 1 (2022): 012020. http://dx.doi.org/10.1088/1742-6596/2310/1/012020.

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Abstract In this paper, aluminum conductor steel reinforced(ACSR), high conductivity aluminum conductor steel reinforced, heat-resisting aluminum alloy conductor steel reinforced, and all aluminum alloy conductor are compared and analyzed in detail from the electrical characteristics, mechanical characteristics, and annual cost. Finally, combined with factors such as production process and construction technology, the transmission line conductor that is most suitable for a 15mm medium ice area is recommended. It provides a reference for the selection of transmission lines in future design.
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Hu, Chun Hua, Yong Jun Xia, and Wen Ming Mei. "Research on Project Test Tensioning of 1250mm2 Large-Section Conductor." Advanced Materials Research 1070-1072 (December 2014): 1123–26. http://dx.doi.org/10.4028/www.scientific.net/amr.1070-1072.1123.

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The paper introduces project test tensioning of 1250mm2 large-section conductor and validate structural stability and tensioning characteristics of newly developed 1250mm2 large-section aluminum stranded conductor, reasonability of construction processes and critical construction parameters and applicability of newly developed construction machines and tools to the conductor.
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Mallieswaran, K., C. Rajendran, R. Padmanabhan, and S. Rajasekaran. "Evaluation of nickel shot peening process on strength of friction stir welded AA2014-T6 aluminum alloy joints." Practical Metallography 60, no. 7 (2023): 442–60. http://dx.doi.org/10.1515/pm-2022-1038.

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Abstract The best aluminum alloys for construction are those that incorporate copper. However, welding engineers find it difficult to join aluminium and its alloys as a result of cracking. One of the popular methods for joining nonferrous materials, especially aluminum alloys, is friction stir welding (FSW). A tensile strength of 75 % to 85 % of the basic material strength is produced by FSW joints. The majority of studies have documented a reduction in strength as a result of incomplete melting, creating a soft region at the boundary between the thermo – mechanically influenced zone and the s
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Luo, Tianhui, Peng Xu, and Chang Guo. "Controllable Construction and Corrosion Resistance Mechanism of Durable Superhydrophobic Micro-Nano Structure on Aluminum Alloy Surface." Sustainability 15, no. 13 (2023): 10550. http://dx.doi.org/10.3390/su151310550.

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Aluminum alloy corrosion resistance could be improved by micro-nanostructures on superhydrophobic surfaces, but inadequate mechanical stability remains a bottleneck concern in the sector. Herein, femtosecond laser processing and spray modification techniques are employed to fabricate “armor-style” micro-nanostructures on aluminum alloy surfaces. The construction of durable superhydrophobic surfaces was controllably constructed using this strategy. Applying a spray of hydrophobic nano silica onto the surface of aluminum alloys is an effective method for creating a low surface energy coating, wh
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Wang, Shu Ping, Zhi Hong Wang, Wen Juan Chen, Xian Zheng Gong, Yu Liu, and Li Ping Ma. "Comparison of Environmental Impact Analysis of Two Typical Construction Windows Production." Materials Science Forum 787 (April 2014): 97–101. http://dx.doi.org/10.4028/www.scientific.net/msf.787.97.

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The energy consumption of window accounts for nearly half of buildings. The purpose of this study is to compare the environmental impact of plastic windows and aluminum alloy windows production, including resource and energy consumption, waste emission. The result shows that energy consumption of plastic window production is only 0.24 times of aluminum alloy window production, and the overall environmental impact of the former is 30% of the later. This study is a quantitative description of energy consumption and environmental impact of two windows production pattern, which intends to fill the
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Lou, Xiejin. "Influencing Factors of Aluminum Futures Price and Forecast Arbitrage." Finance and Market 5, no. 3 (2020): 135. http://dx.doi.org/10.18686/fm.v5i3.2117.

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<p>With the rapid development of China’s social economy, the development of related industries has driven the rapid growth of aluminum consumption. As the second largest metal, aluminum products have been integrated into real life and widely used in aerospace, construction, transportation, electricity, packaging and other fields. This paper takes Shanghai Aluminum Continuous Futures (AL7777) as an example to study its influencing factors and arbitrage possibilities.</p>
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Kah, Paul, Esa Hiltunen, and Jukka Martikainen. "Sensing in Aluminum Alloy Welding." Advanced Materials Research 849 (November 2013): 291–97. http://dx.doi.org/10.4028/www.scientific.net/amr.849.291.

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With the emerging trends of automation of welding technology for high volume manufacturing and use of aluminum for lightweight construction, continuous efforts have been undertaken to improve sensing and data acquisition for automated welding of aluminum and its alloys. This work aims to present and compare various sensing methods i.e. touch sensing, through-arc seam tracking (TAST), vision and composite sensing for automated fusion welding of aluminum alloys. Sensing technologies used for sensing of the seam and weld process are analyzed with focus on difficulties specific to aluminum alloy w
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Lertora, Enrico, Chiara Mandolfino, and Carla Gambaro. "Effect of Welding Parameters on AA8090 Al-Li Alloy FSW T-Joints." Key Engineering Materials 554-557 (June 2013): 985–95. http://dx.doi.org/10.4028/www.scientific.net/kem.554-557.985.

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In aeronautics and aerospace construction, whenever a seam is needed between aluminum alloy parts, riveting, nailing or bolting are the preferred methods of junction. Friction stir welding technology has made possible the realization of high strength aluminum alloy joints, which are normally considered non-weldable with conventional welding techniques.
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Yuan, Li Yan, Zhi Jun Han, and Li Qiang Gao. "The Application of Aluminum and its Alloy Materials in Energy-Saving Building." Applied Mechanics and Materials 253-255 (December 2012): 655–57. http://dx.doi.org/10.4028/www.scientific.net/amm.253-255.655.

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First,this document explains the characters about Aluminum and its alloy materials in light without heat absorption,the fast heat condution and so on. Second,the doucument demonstrates that Aluminum and its alloy materials have been applied in the roofs, windows and doors,floor strata,the walls etc..Last, based on aluminum and its alloy materials in energy-saving advantages, the engineers should take them into account in architectural design,construction and maintenance.
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41

Jakubovičová, Lenka, Milan Sága, Peter Kopas, and Milan Vaško. "The Modern Conveyor System and its Construction." MATEC Web of Conferences 357 (2022): 02010. http://dx.doi.org/10.1051/matecconf/202235702010.

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Rexroth systems are the right solution to move materials and it ensures a smooth transfer of material along the tracks Modern conveyor system is often used in industrial automatization. Presented system offers a full and diverse range of custom conveyor types and solutions. Designed conveyor system is an example of the use of aluminum profiles for students of secondary industrial school as a teaching tool.
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42

Gao, Kun, Jinjun Xu, Yue Zhu, Zhiyan Zhang, and Quansheng Zeng. "Study on the Technology and Mechanism of Cleaning Architectural Aluminum Formwork for Concrete Pouring by High Energy and High Repetition Frequency Pulsed Laser." Photonics 10, no. 3 (2023): 242. http://dx.doi.org/10.3390/photonics10030242.

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In the field of construction, the surface of architectural aluminum formwork for concrete pouring will remain the concrete adhesion layer of heterogeneous composite structures. In view of the difficulty of removing the concrete adhesion layer, we studied the technology and mechanism of removing the concrete adhesion layer by laser cleaning technology in this paper. We analyzed the composition and distribution characteristics of residual concrete on the surface of architectural aluminum formwork, set up a laser cleaning test system, carried out laser cleaning experiments on the concrete layer o
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43

Zhang, Xiang Rong, and Lu Li. "Analysis of Primary Aluminum Composite Panel Gypsum Board Construction Method Paste." Advanced Materials Research 255-260 (May 2011): 161–65. http://dx.doi.org/10.4028/www.scientific.net/amr.255-260.161.

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Gypsum board as the basis, combined with double-sided adhesive sponge and neutral silicone adhesive connection, this method using gypsum board as the primary fire to A-level, affordable. With high construction speed, short construction period, it can save money and meet the quality requirements and bring greater economic benefits to investors. Therefore, the gypsum board primary aluminum plate construction method paste will be introduced to more and more application.
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44

Brown, K. C., and P. N. Joubert. "Pressure Loading of Aluminum Plating." Marine Technology and SNAME News 27, no. 06 (1990): 378–86. http://dx.doi.org/10.5957/mt1.1990.27.6.378.

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The pressure loads applied to yacht hull plating by slamming have been estimated by pressure testing small sections of aluminium hull and comparing the resultant damage with service damage to hulls of similar construction. The structural response of the plating to the pressure load is discussed with reference to current design practice. The design pressures in current use are found to be unrealistically low and the cause of failure has been found to be elastoplastic buckling, rather than bending.
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45

Shavelkin, Denis. "Investigation of the feasibility of using aluminum honeycomb cores in the design of the fin of the aircraft." E3S Web of Conferences 515 (2024): 01021. http://dx.doi.org/10.1051/e3sconf/202451501021.

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The issues related to the use of a honeycomb cores in the design, the weight ratio of the empennage units are considered on the example of the fin of an aircraft. The article provides a comparative qualitative assessment of the weight efficiency, manufacturability of the design and design features of the fin with the use of honeycomb panels, compared with the classical frame construction of fin units. In addition, the article discusses the problems associated with the operation and repair of honeycomb core constructions. In the article the calculations of mass determination of honeycomb panel
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Margarita, Valigun. "MODERN APPROACHES TO THE USE OF COMPOSITE MATERIALS IN CONSTRUCTION." American Journal of Engineering and Technology 6, no. 7 (2024): 57–65. http://dx.doi.org/10.37547/tajet/volume06issue07-07.

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A review of the literature on scientific approaches in the development of composite materials and building structures made of composites is carried out. When creating and manufacturing traditional and new composite materials, for example, by additive manufacturing, and when creating structures and structures in engineering calculations, new techniques, finite element computational software systems, and neural network technologies are used, which are used in the creation of modern metal and composite materials, analysis of mechanical characteristics of materials, forecasting loads on the struct
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D. Т. Tolegenov, М. А. Yelubay, A. V. Bogomolov, О. Shtyka та D. Zh. Tolegenova. "РROSPECTS FOR THE USE OF ENERGY PRODUCTION WASTE IN CONSTRUCTION CERAMICS". Bulletin of Toraighyrov University. Energetics series, № 1,2024 (29 березня 2024): 313–25. http://dx.doi.org/10.48081/qjkv5653.

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This article studies the possibility of the use of red bauxite sludge of JSC «Aluminium of Kazakhstan» and fly ash from energy production of the Pavlodar region in construction ceramics. Refractory clay from the Kemertuz deposit, located 250 km away from Pavlodar, was used as a binder. The samples were prepared with additives of red mud and a combination of red mud with fly ash from Pavlodar CHP-1, which is a low-calcium variety of acidic ash with a high content of aluminum oxide. These materials were molded by the plastic molding method. The following physicochemical properties of raw materia
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Иконников, С., S. Ikonnikov, А. Блажнов, and A. Blazhnov. "CORROSION OF GALVANIZED STEEL AND ALUMINUM ALLOYS IN THE INDUSTRIAL ENVIRONMENT OF CHAMPIGNON." Bulletin of Belgorod State Technological University named after. V. G. Shukhov 4, no. 5 (2019): 50–55. http://dx.doi.org/10.34031/article_5ce292c9d48174.48469908.

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Generalization the experience building for the cultivation of champignons shows the diversity of construction solutions. The method of layer-by-layer assembly with galvanized steel and aluminum alloy coverings is economically feasible to use in champignons of frame structural scheme, enclosing structures of industrial premises. However, the technologically required wet air conditions of the premises and aggressive gases during construction design complicate the selection of a rational type of outer layers of enclosing structures. To reveal the rational material of coverings in the production p
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Hodowanec, M., and W. R. Finley. "Copper versus aluminum-which construction is best? [induction motor rotors]." IEEE Industry Applications Magazine 8, no. 4 (2002): 14–25. http://dx.doi.org/10.1109/mia.2002.1011184.

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Schimek, M., A. Springer, S. Kaierle, D. Kracht, and V. Wesling. "Laser-welded Dissimilar Steel-aluminum Seams for Automotive Lightweight Construction." Physics Procedia 39 (2012): 43–50. http://dx.doi.org/10.1016/j.phpro.2012.10.012.

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