aerospace industry
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2022 ◽  
Author(s):  
Bastin Francis

While considering the aerospace domain, the internet of things (IoT) provides the way for new development and this IoT technology allows many possibilities in the aerospace domain. This study aims to examine the theoretical aspect of IoT in the aerospace industry. And propose a system that enhances the flight journey experience from the flight booking of each customer. This will also improve the manufacturing end-to-end process in the aerospace industry with the help of IoT sensors. These can be achieved with help of the data collection (Previous sensor data), cloud computing, and machine learning. As per the proposing system, all IoT sensor data will be collected and saved the data in the cloud server. These data will be used for training the algorithm to achieve the optimum solution in the future.


2022 ◽  
Author(s):  
Y. Wu ◽  
Fei Zhang ◽  
Fengshou Li ◽  
Yi Yang ◽  
Jiaming Zhu ◽  
...  

Superelasticity associated with the martensitic transformation has found a broad range of engineering applications such as low-temperature devices in aerospace industry. Nevertheless, the narrow working temperature range and strong temperature...


2022 ◽  
pp. 150-172
Author(s):  
Carlos Raul Navarro Gonzalez ◽  
Juan Ceballos-Corral ◽  
Olivia Yessenia Vargas-Bernal ◽  
Gustavo Lopez Badilla ◽  
Judith M. Paz-Delgadillo

This investigation was made to evaluate the health and well-being of workers who made activities in the manufacturing processes of an aerospace industry installed in the city of Mexicali and based on the evidence presented in certain stages of a production line. The cost-benefit of applying ergonomic methods was analyzed, developing a descriptive model, which involved important aspects. Said aspects analyzed were (1) work methods, (2) training of employees in the operational area, (3) evaluation of times and movements of industrial operations, and (4) working conditions as the relationship of workers with supervisors and managers.


Author(s):  
Shiva Prasad U ◽  
Akshay Gharat ◽  
Minal Babar ◽  
Priyansh Saxena ◽  
Vaibhav Arya

The Primarily focus on Graphene Aerogel, its synthesis and structural integrity together with high electrical conduction. Graphene could be a new nanocarbon that has, single-, bi- or few- layers of carbon atoms forming membered rings. Mechanically powerful and electrically semiconductive graphene aerogels will be produced by either essential drying or freeze of gel precursors integration from the reduction of graphene substance with L-ascorbic acid. In distinction to ways in which utilize physical cross-links between GO, this approach provides valency carbon bonding between the graphene sheets. The graphene aerogels put together possess large surface areas and pore volumes, creating those materials to a feasible possibility to be used in energy repository, catalysis, and sensing applications. We've additionally showcased some applications for Graphene Aerogel such as their electrical conductivities, Lithium-ion batteries and electrical phenomenon devices, Supercapacitors and photocatalysis.


Author(s):  
Adolfo Cano-Carrasco ◽  
René Daniel Fornés-Rivera ◽  
María Del Carmen Vásquez-Torres ◽  
Arlene Amalia Guerrero-Portillo

This research addresses the problem of leveling workloads in a multi-product final assembly area. In which it was found that 27.4% of the time is used for set up and the current distribution presents areas of opportunity. The target was to implement improvement actions to make use of resources more efficient in the production process in the aforementioned area through Lean Manufacturing tools. The results obtained consist of eight products generated with the support of lean manufacturing support tools such as SMED, Workload Balancing and MUDA waste identification, achieving important results among which productivity in the area stands out from 109% to 125%, as well as a reduction in set-up time from 17 min to 4.4 min.


2021 ◽  
Vol 5 (74) ◽  
pp. 38-42
Author(s):  
A. Kasymova

This article examines the roles of men and women in living-organ kidney transplantation and provides indepth analysis of an issue by considering alternative perspectives. The main purpose of an article is to identify the roles of women and men during donor-recipient interactions in living-organ kidney transplantation in the Republic of Kazakhstan. The article is based on the theories of Alice Eagle about ‘culture and biology interconnection mechanism’ and Sylvia Walby about the ‘Patriarchy system’. In terms of resources, statistical data from RSE on PCV "Republican center for coordination of transplantation and high-tech medical services" of the Ministry of health Of the Republic of Kazakhstan, database of the Ministry of Digital Development, Innovations and Aerospace Industry of the Republic of Kazakhstan, and data related to the donors and recipients from Hospital №7 in Almaty between 2012 and 2016 have been used. The paper considers the importance of gender equality in living-organ kidney transplantation and presents the possible ways of reslving a problem.


Author(s):  
Sevim Yolcular Karaoglu ◽  
Serdar Karaoglu ◽  
Imgesu Unal

Researchers have turned to search for new materials that will meet all the aerospace industry requirements. When it is almost impossible to achieve this with a single material, composite materials have been studied, and there have been great developments in this field. Many elements are used in aircraft construction, but aluminum is the most preferred due to its low density, good castability, high strength, corrosion resistance, and good fatigue strength. However, its strength and stiffness limit its usability. To solve this problem, aluminum is combined with various elements. Aluminum metal matrix composites are an example of this. Aluminum metal matrix composites are preferred in aircraft applications due to their high specific modulus and good mechanical and thermal properties. This review provides information on the use of aluminum metal matrix composite materials in the aerospace industry.


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