Academic literature on the topic 'Printing equipment repair'

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Journal articles on the topic "Printing equipment repair"

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Kowalski, Kazimierz, Wiktor Biernikowicz, and Grzegorz Stankiewicz. "POSSIBILITIES OF USING 3D PRINTING IN FIELD REPAIRS OF MILITARY EQUIPMENT." Rocznik Bezpieczeństwa Morskiego XVIII (November 6, 2024): 873–86. https://doi.org/10.5604/01.3001.0054.8334.

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Current armed conflicts confirm the thesis about the necessity of repairing damaged military equipment in the shortest possible time and in the closest possible location to the damaged equipment. These repairs are performed by the users of the equipment themselves, or with the participation of mobile repair teams, or service groups (so called „field repairs”). The continuous development of technologies used in technical repairs, including 3D printing, increases the potential possibilities of their use in the field repair process. The aim of the article is to identify the possible advantages an
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Li, Chongqing, Fuqiuxuan Liu, and Quanyue Zhang. "Research on Potential Application of FDM 3D Printing Equipment Rush Repair Support." Academic Journal of Science and Technology 5, no. 3 (2023): 93–95. http://dx.doi.org/10.54097/ajst.v5i3.7784.

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According to the characteristics and application of 3D printing technology, the problems to be faced in the process of equipment maintenance and rush repair are analyzed, and the advantages of 3D printing technology for equipment maintenance and rush repair are summarized. Moreover, the phenomenon analysis, finite element analysis and analysis optimization are carried out in combination with the vulnerable parts in large engineering equipment. To provide data samples based on FDM 3D printing technology in equipment maintenance and rush repair, explore potential applications.
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Gong, Fangyuan, Xuejiao Cheng, Qinghua Wang, Yi Chen, Zhanping You, and Yu Liu. "A Review on the Application of 3D Printing Technology in Pavement Maintenance." Sustainability 15, no. 7 (2023): 6237. http://dx.doi.org/10.3390/su15076237.

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To examine the application and significance of 3D printing technology in pavement maintenance engineering, a review of the current developments in principles, types, materials, and equipment for 3D printing was conducted. A comparison and analysis of traditional methods and 3D printing for asphalt pavement maintenance led to an investigation of 3D asphalt printing technologies and equipment. As a result, the following suggestions and conclusions are proposed: 3D printing technology can increase the level of automation and standardization of pavement maintenance engineering, leading to effectiv
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Senin, Petr V., Mikhail N. Chatkin, and Evgeniy A. Kilmyashkin. "Additive Technologies for Production and Repair of Agricultural Equipment." Engineering technologies and systems 34, no. 4 (2024): 584–96. https://doi.org/10.15507/2658-4123.034.202404.584-596.

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Introduction. The article raises the issue of repairing modern agricultural machinery. Because of increasing the complexity of the design of machine components, there is a problem of failure of their parts. Manufacturers often do not sell these parts separately that makes it impossible to repair failed machine components. In this case, the purchase of a machine component assembly is required. The problem of supplying service parts is very significant. This significantly increases the repair time that negatively affects the agricultural production profitability due to the extremely limited time
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Yustiani Frastika, Frisca Mareyta Pongoh, Dedtri Anwar, Arika Palapa, and Jaya Alamsya. "Analysis of the Application of Additive Manufacturing for On-Demand Repair and Maintenance of Naval Equipment in Remote Maritime Operations." International Journal of Mechanical, Industrial and Control Systems Engineering 2, no. 1 (2025): 46–61. https://doi.org/10.61132/ijmicse.v2i1.255.

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Background: Traditional naval maintenance strategies rely on centralized supply chains and pre-manufactured spare parts, leading to long repair downtimes and logistical inefficiencies, particularly for vessels operating in remote maritime regions. Additive manufacturing (3D printing) offers a disruptive alternative by enabling on-demand production of spare parts, reducing dependence on external suppliers, and enhancing fleet self-sufficiency. However, material durability, operational feasibility, and cost-effectiveness remain underexplored for naval applications. Original Value: This research
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Sherov, K. T., D. I. Berdimuratova, B. Myrzahmet, A. A. Sagitov, and S. I. Mendalieva. "Study of the possibility of using additive technology methods in the repair of agricultural machinery parts." BULLETIN of the L.N. Gumilyov Eurasian National University. Technical Science and Technology Series 148, no. 3 (2024): 241–52. http://dx.doi.org/10.32523/2616-7263-2024-148-3-241-252.

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Currently, maintaining agricultural machinery in a constant working condition is an urgent task. Studies carried out to study the state of the problem in the conditions of agricultural enterprises of the Republic of Kazakhstan have shown that the lack of centralized repair and restoration bases and production facilities has a negative impact on the quality organization of agricultural machinery. Because of this, it is impossible to carry out repair and restoration work in a timely and high-quality manner, as well as technical maintenance of agricultural machinery and equipment. To solve this p
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Rimmer, Matthew. "The Medical Right to Repair: Intellectual Property, the Maker Movement, and COVID-19." Sustainability 15, no. 20 (2023): 14839. http://dx.doi.org/10.3390/su152014839.

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This article considers the strengths and limitations of the use of 3D printing and additive manufacturing for the production of personal protective equipment (PPE) during the COVID-19 public health crisis. It explores the role of the Maker Movement in addressing the shortfall in medical equipment during the public health pandemic. Taking a comparative approach, this article evaluates the responses of both the commercial and amateur sides of the 3D printing community to the COVID-19 public health crisis. In the EU, the Fab Lab Network sought to overcome a breakdown in supply chains. In the US,
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Sevostyanov, Ivan, and Maryna Pidlypna. "MODEL OF OPTIMIZATION OF FUNCTIONING OF MODERN POLYGRAPHIC AND PUBLISHING COMPLEXES." ENGINEERING, ENERGY, TRANSPORT AIC, no. 4(111) (December 18, 2020): 90–99. http://dx.doi.org/10.37128/2520-6168-2020-4-10.

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Analysis of known methods and modern equipment for printing and publishing (sheet rotary machines, roll machines, flat-printing and platen machines for flat impression block, relief, intaglio and digital printing) is conducted in this article. In a result of the analysis article authors have to make a conclusion, that most prospective equipment for automated printing and publishing complexes are: high-performance sheet and roll machines, in that number crucible, flatbed and rotary three-cylinder machines and also single-layer and multi-layer sectional machines, digital laser and inkjet machine
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Golubev, I. G. "Promising Paths for the Use of Additive Technologies in the Repair Industry." Machinery and Equipment for Rural Area, no. 6 (June 14, 2023): 35–38. http://dx.doi.org/10.33267/2072-9642-2023-6-35-38.

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Promising paths for the development of additive technologies in the Russian Federation, technologies for automated repair of machines and equipment using machine vision and learning, as well as the creation of mobile workshops and complexes for the repair of machine parts are shown. In the repair industry, 3D scanning and reverse engineering of parts, 3D printing of spare parts and 3D technologies for repairing parts and components will be in great demand. The use of 3D technologies in the repair of machines reduces the consumption of filler material during the restoration of parts and increas
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Kataev, Yu V., Yu A. Goncharova, A. S. Sviridov, and S. P. Tuzhilin. "Application of 3D Printing and 3D Scanning Technologies in the Manufacture and Repair of Agricultural Machinery." Machinery and Equipment for Rural Area, no. 1 (January 7, 2023): 34–38. http://dx.doi.org/10.33267/2072-9642-2023-1-34-38.

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Data are presented on the study of the concept of a 3D farm in production, as well as an assessment of the possibilities and prospects for using this concept in the agribusiness based on real cases performed using the material and technical base of the Federal Scientific Agroengineering Center VIM. The main advantages and disadvantages of 3D printing were identified, the world experience in the use of additive technologies, as well as 3D printing and 3D scanning sites using technical base of the Federal Scientific Agroengineering Center VIM, both in the manufacture of prototypes and mock-ups,
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Dissertations / Theses on the topic "Printing equipment repair"

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Басова, А. Г. "Влияние скорости и температуры частиц напыляемого материала на получение покрытий газоплазменным напылением порошков". Thesis, Видавництво СумДУ, 2010. http://essuir.sumdu.edu.ua/handle/123456789/11228.

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Целью работы является обоснование применения газоплазменного напыления при ремонте полиграфического оборудования. При цитировании документа, используйте ссылку http://essuir.sumdu.edu.ua/handle/123456789/11228
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Books on the topic "Printing equipment repair"

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England and Wales. Sovereign (1625-1649 : Charles I). By the King: Whereas there hath fallen out an interruption of amitie betweene the Kings Maiestie and the most Christian king .. By Bonham Norton and Iohn Bill ..., 1985.

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Conference papers on the topic "Printing equipment repair"

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Tavares, Joao A., and Faisal M. Alshammari. "Utilizing 3D Printing in Oil & Gas Applications." In MECC 2023. AMPP, 2023. https://doi.org/10.5006/mecc2023-19931.

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Abstract Additive manufacturing is an advanced manufacturing method where parts get manufactured by joining materials to make objects from 3D model data. The 3D printer stacks layer upon layer of material to form the final object, as opposed to subtractive manufacturing methodologies. 3D printing brings value to businesses by addressing many operational challenges: enabling the production of obsolete parts that are no longer produced by the original manufacturer, reducing the lead time significantly and returning critical equipment back in operation in very short time frame. The process of 3D
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Reilly, Thomas, and Dominic Przano. "Utilizing Additive Manufacturing / 3-D Printing to Optimize Design and Support Solutions for One-Off Spares and Support Product Requirements." In Vertical Flight Society 71st Annual Forum & Technology Display. The Vertical Flight Society, 2015. http://dx.doi.org/10.4050/f-0071-2015-10201.

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Out-of-production aircraft continue to have demand for spare parts that are designed and fabricated with the tooling, processes and materials that were optimized during the high-rate production periods. Similarly, component repair and overhaul support equipment can require broaching, machining, electrical discharge machining (EDM), grinding and polishing and other techniques necessary to achieve reliable functionality of the system. In both cases the low production volume for these parts requires significant non-recurring set-up, tooling, and quality controls costs that affect the per-unit cos
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Wewel, M., G. Langer, and C. Wasserman. "Die Welt des thermischen Spritzens – Anwendungsbeispiele aus der Praxis (The World of Thermal Spraying – Some Practical Applications)." In ITSC2002, edited by C. C. Berndt and E. Lugscheider. Verlag für Schweißen und verwandte Verfahren DVS-Verlag GmbH, 2002. http://dx.doi.org/10.31399/asm.cp.itsc2002p0161.

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Abstract This paper provides a sampling of current and emerging applications for thermal spraying both in manufacturing and in equipment repair. As the examples show, thermal spraying is making an impact in many areas of industry, including automotive, aviation, biomedical, energy, printing, pulp and paper, and textiles, as well as in military and defense. Paper text in German.
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Tavares, J. A., and D. A. Aldakhil. "The Utilization of 3D Printing in O&G Applications." In International Petroleum Technology Conference. IPTC, 2024. http://dx.doi.org/10.2523/iptc-23611-ea.

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3D Printing, also known as Additive Manufacturing (AM), is a manufacturing method that has revolutionized the production of engineered parts, by enabling companies from multiple different industrial sectors such as transportation and medical, and ultimately Oil & Gas to prototype or re-build and replace any part, regardless of geometrical complexity. Such disruption has been enabled by the unique characteristics of 3D Printing that allow for logistical flexibility and full independence when manufacturing parts to repair existing equipment and re-commission them for operation. This use-case
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