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Journal articles on the topic 'Float Glass Manufacturing Plant Cost'

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1

Anderson, Shannon W., and Karen L. Sedatole. "Evidence on the Cost Hierarchy: The Association between Resource Consumption and Production Activities." Journal of Management Accounting Research 25, no. 1 (2012): 119–41. http://dx.doi.org/10.2308/jmar-50293.

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ABSTRACT Modern cost accounting posits that manufacturing overhead costs vary with production unit volume, batches of production, and with the variety of products produced. However, many studies fail to find an association between manufacturing overhead costs and activities associated with production batches and product variety; rather, the traditional fixed and (unit) variable cost structure is validated. One explanation is that flexible manufacturing methods and optimized production scheduling restore the relevance of the traditional cost model. Another explanation is that the relation holds
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Ito, Masafumi, and Taisuke Doi. "(Invited) Glass and Metal Separation Technology to Improve Solar Panel Recycling." ECS Meeting Abstracts MA2024-02, no. 19 (2024): 1744. https://doi.org/10.1149/ma2024-02191744mtgabs.

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NPC Inc.(“NPC”) has been developing and assembling photovoltaic panel manufacturing equipment for more than 30 years, providing domestic and overseas module manufacturers with equipment designed for various types of modules, including crystalline and thin-film type. NPC’s proprietary “Hot Knife Separation Method” has successfully realized the separation of glass and metal, contributing to the solar panel recycling sector. 1. INTRODUCTION The Japanese solar panel market has grown rapidly due to the introduction of feed-in tariff in 2012. However, a massive amount of end of life solar panels are
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Phillips, Raymond, Matthew Woolway, Dario Fanucchi, and M. Montaz Ali. "Mathematical Modeling and Optimal Blank Generation in Glass Manufacturing." Journal of Applied Mathematics 2014 (2014): 1–12. http://dx.doi.org/10.1155/2014/959453.

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This paper discusses the stock size selection problem (Chambers and Dyson, 1976), which is of relevance in the float glass industry. Given a fixed integerN, generally between 2 and 6 (but potentially larger), we find theNbest sizes for intermediate stock from which to cut a roster of orders. An objective function is formulated with the purpose of minimizing wastage, and the problem is phrased as a combinatorial optimization problem involving the selection of columns of a cost matrix. Some bounds and heuristics are developed, and two exact algorithms (depth-first search and branch-and-bound) ar
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Aldoumani, Nada, Cinzia Giannetti, Zakaria Abdallah, et al. "Optimisation of the Filament Winding Approach Using a Newly Developed In-House Uncertainty Model." Eng 1, no. 2 (2020): 122–36. http://dx.doi.org/10.3390/eng1020008.

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The device under investigation in this paper consists of a float used to capture tidal energy, which is tethered by multiple flexible cables to a large barge-like reactor. The proposed float is made of a continuously wound glass-reinforced composite shell with stainless steel bolting plates integrated into the float walls to allow the connection of 5 stainless steel cables. Numerical computations are required to assess whether a delamination of the composite layers in the float is likely. The manufacturing of the device has various potential uncertainties that should be investigated, such as t
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Ikegbula, S. O., and P. C. Nwosu. "Optimal Mixture of Materials and Condition in Producing Flat Glasses for Automobile Windscreens in Nigeria." Journal of Applied Sciences and Environmental Management 27, no. 3 (2023): 549–54. http://dx.doi.org/10.4314/jasem.v27i3.19.

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The selection of materials is an essential element for engineering designers. This study investigated the optimal mixture of materials and condition in producing flat glasses for automobile windscreens in Nigeria. To achieve this, 10 pairs of compositions of material mixtures and cullet (broken glasses) were used. The standard material mixture (80/20 wt. % of material mix/cullet) from the local industry was modified to have batches of up to 60/40 wt. % material mix/cullet. These material mixtures were used to produce flat glasses by adopting procedures of industrial float glass process of Pilk
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Bencivenni, G., I. Balossino, G. Cibinetto, et al. "Thermal neutron detection based on resistive gaseous devices." EPJ Web of Conferences 288 (2023): 06012. http://dx.doi.org/10.1051/epjconf/202328806012.

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In the framework of the uRANIA (u-Rwell Advanced Neutron Imaging Apparatus) project, we are developing innovative thermal neutron detectors based on resistive gaseous devices such as micro-Resistive WELL (μ-RWELL) and surface Resistive Plate Counter (sRPC). The μ-RWELL is a single amplification stage resistive MPGD developed for HEP applications. The amplification stage, based on the same Apical® foil used for the manufacturing of the GEM, is embedded through a resistive layer in the readout board. The resistive layer is realized by sputtering the back side of the Apical® foil with DiamondLike
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Samuel, Olusegun David, ThankGod Enatimi Boye, and Aanuoluwapo Ezekiel Ojelade. "Preliminary Energy Assessment of Glass Production in Nigeria." International Journal of Energy Optimization and Engineering 7, no. 3 (2018): 61–75. http://dx.doi.org/10.4018/ijeoe.2018070104.

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This article describes how the high energy consumption associated with glass factories has been responsible for high cost of manufacturing of glass. However, there is a need for a systematic approach to assess energy consumption in the factory in order to avoid wastage. Previous methods of assessment could not take into cognizance of assessing the entire unit. Additionally, the methods are mostly complex and not straight forward"To overcome these constraints, an approach for audit energy consumption was developed. Energy study was conducted in a glass production plant in Ughelli, Nigeria to de
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Dean, Robert N., Elizabeth Guertal, Adam Newby, and Glenn Fain. "A PCB Technology Moisture Content and Electrical Conductivity Sensor Probe for Agricultural and Horticultural Applications." Additional Conferences (Device Packaging, HiTEC, HiTEN, and CICMT) 2014, DPC (2014): 000984–1011. http://dx.doi.org/10.4071/2014dpc-tp32.

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Commercial printed circuit board (PCB) technology affords the realization of low-cost sensor probes for agricultural and horticultural applications. Plant growth can be optimized when the soil (in field crop applications) or the substrate (in greenhouse crop applications) properties can be measured and properly adjusted. Two important parameters are moisture content and electrical conductivity. Measuring moisture content allows the grower to better time irrigation for most efficient crop growth. Accurate moisture content measurement also allows the grower to apply sufficient irrigation volume
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Tirschmann, Ramon, Jens Czäczine, and Mathias Hunold. "High Volume Production Technology for Corrosive Resistant Long-Fiber-Reinforced Plastic Extinguishers." Materials Science Forum 825-826 (July 2015): 724–31. http://dx.doi.org/10.4028/www.scientific.net/msf.825-826.724.

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Portable fire extinguishers need to be reliable and fully functional at all given environmental conditions. Especially in off-shore and power plant applications a specific range of properties is necessary, e.g. corrosive resistance and electromagnetic compatibility. Hence, the application of fiber reinforced composites and fiber composite design offers an alternative to the traditional application of metallic materials.Within the scope of the development of an innovative fire extinguisher, a process-chain for manufacturing of composite fire extinguishers suitable for aggressively corrosive env
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Reisner, Erwin. "(Invited) Solar Panel Technologies for Light-to-Chemical Conversion." ECS Meeting Abstracts MA2023-02, no. 47 (2023): 2370. http://dx.doi.org/10.1149/ma2023-02472370mtgabs.

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Solar panels are well known to produce electricity, but they are also in early-stage development for the production of sustainable fuels and chemicals. These panels mimic plant leaves in shape and function as demonstrated for overall solar water splitting to produce green H2 by the laboratories of Nocera and Domen.1,2 This presentation will give an overview of our recent progress to construct prototype solar panel devices for the conversion of carbon dioxide and solid waste streams into fuels and higher-value chemicals through molecular surface-engineering of solar panels with suitable catalys
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11

Denanto, Mulugeta, Ramesh Babu Nallamothu, Deresse Firew, and Idiris Ilmi. "Production and Testing of Bamboo Composite for Door of a Three-Wheeled Vehicle." Journal of Engineering 2023 (April 24, 2023): 1–11. http://dx.doi.org/10.1155/2023/8375287.

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Natural fiber reinforced composite material has recently attracted interest due to its low density, low cost, acceptable specific characteristics, ease of separation, improved energy recovery, CO2 neutrality, biodegradability, and renewable nature. The goal of this paper is to design and construct a three-wheeled Bajaj door panel using composite materials reinforced with bamboo fiber. Design, manufacture of the component, and experimental techniques are used to meet the goals given. The bamboo plant is the raw material chosen for this thesis project. The matrix material (polyester resin) and h
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Proost, Joris. "(Invited) Techno-Economic Aspects of Hydrogen Production from Water Electrolysis." ECS Meeting Abstracts MA2024-01, no. 34 (2024): 1735. http://dx.doi.org/10.1149/ma2024-01341735mtgabs.

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Hydrogen production today Today, hydrogen is still mainly being used as a specialty chemical, including the synthesis of ammonia and methanol, and during steel and glass manufacturing where it is the preferred reducing gas during annealing and forming processes. The great majority of all these H2 is being produced by 2 large-scale chemical processes : steam methane reforming (SMR) and coal gasification. Both of these processes are heavily CO2 intensive, SMR emitting up to 8 tons of CO2 per ton of H2 produced. Therefore, with the objective of reaching the CO2 emission targets already in today's
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13

Christian, Adams. "Float Glass Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." March 10, 2022. https://doi.org/10.5281/zenodo.6344119.

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The rising product demand in the commercial and residential sectors, owing to the expanding construction industry, is among the key factors driving the float glass market. Besides this, float glass is utilized in architectural and interior design applications, such as flooring, ceiling, insulated glass, mirrors, reflective windows, tabletops, etc., which is further catalyzing the market growth.
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Pennetier, Sophie, and Baizhen (Shirley) Yu. "Re-Glass: Product Development Pathways for Post-Consumer Glass." Challenging Glass Conference Proceedings 9 (June 16, 2024). http://dx.doi.org/10.47982/cgc.9.649.

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Our research examines the viability of recycling soda lime glass from post-consumer Insulated Glass Units (IGU), mixing various types of architectural glass cullet and fusing them into flat plates by using electric kilns. Those kilns operate at lower temperatures than standard float glass production, which significantly reduces manufacturing emissions. The research outcomes suggest the potential for near-site operations, reducing transportation logistics, costs, and emissions. Strength and emissivity tests were performed on the recycled glass samples, to assess challenges arising from various
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15

Christian, Adams. "Glass Bottles Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." March 9, 2022. https://doi.org/10.5281/zenodo.6340358.

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The elevating alcohol consumption levels across the globe are among the primary factors driving the glass bottles market. In addition to this, the growing adoption of glass-based packaging solutions in the personal grooming sector for catering to the safe and seamless transportation and storage of various fragrances and cosmetic products is further catalyzing the market growth.
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Christian, Adams. "Toughened Glass Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." March 22, 2022. https://doi.org/10.5281/zenodo.6375809.

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The elevating alcohol consumption levels across the globe are among the primary factors driving the glass bottles market. In addition to this, the growing adoption of glass-based packaging solutions in the personal grooming sector for catering to the safe and seamless transportation and storage of various fragrances and cosmetic products is further catalyzing the market growth.
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17

Christian, Adams. "Aluminium Can Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." March 24, 2022. https://doi.org/10.5281/zenodo.6381945.

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The elevating alcohol consumption levels across the globe are among the primary factors driving the glass bottles market. In addition to this, the growing adoption of glass-based packaging solutions in the personal grooming sector for catering to the safe and seamless transportation and storage of various fragrances and cosmetic products is further catalyzing the market growth.
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18

Zhang, Wei, Tom Salagaj, Christopher Jensen, Karlheinz Strobl, and Michael Davies. "APCVD SiCxOy Deposition as Na Barrier Layers for TCO/Low-E Glass Coatings." MRS Proceedings 1220 (2009). http://dx.doi.org/10.1557/proc-1220-bb02-02.

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AbstractWe report on the experimental investigation of the use of Sixtron Advanced Materials Silane-free gas generation system to deposit a transparent SiCxOy Na-diffusion barrier and anti-reflection film (for subsequent TCO thin film coatings) onto glass sheets with an APCVD deposition process. SiCxOy thin films (50-250nm thickness) with a tunable index of 1.65-1.75 are currently being deposited by APCVD On-line float glass coating systems depositing Transparent Conductive Oxide (TCO) coatings (both for Low-E windows and for solar panel manufacturing applications these coatings typically have
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19

Christian, Adams. "Glass Cleaning Spray Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." January 20, 2022. https://doi.org/10.5281/zenodo.5881236.

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The elevating consumer awareness towards the importance of regular household cleaning is primarily driving the glass cleaning spray market. Additionally, the widespread product adoption, owing to its simple and disposable nature, to ensure a clean and spotless home at minimal effort is further catalyzing the market growth. Besides this, the development of glass cleaning sprays that are skin-friendly, biodegradable, and possess a thick formulation for better dispensing control is acting as another significant growth-inducing factor.
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20

Oikonomopoulou, Faidra. "Material compositions and production methods for solid cast glass components." Architecture and the Built Environment, 2019. http://dx.doi.org/10.59490/abe.2019.9.4086.

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Glass can be made by different manufacturing processes and by numerous of varied recipes that in return provide the material with different properties. Owing to their workability in lower melting temperatures and the corresponding decreased manufacturing costs, soda-lime and borosilicate glass types are preferred for cast glass applications in structures. Glass can be cast in two ways: primary and secondary casting. In primary casting, glass is molten from its primary raw ingredients, whereas in secondary casting, solid existing pieces of glass are re-heated until the (semi-) liquid mass can f
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21

Christian, Adams. "Glass Cleaning Spray Manufacturing Plant Project Report 2022-2027 | Syndicated Analytics." April 6, 2022. https://doi.org/10.5281/zenodo.6417061.

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The elevating consumer awareness towards the importance of regular household cleaning is primarily driving the glass cleaning spray market. Additionally, the widespread product adoption, owing to its simple and disposable nature, to ensure a clean and spotless home at minimal effort is further catalyzing the market growth.
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22

Wisniewski, Hayden, Ian J. Arnold, Daewook Kim, Heng Zuo, and Brandon Chalifoux. "Laboratory demonstration of Grating Embedded Mirrors for single-shot heliostat optical metrology." Journal of Solar Energy Engineering, April 30, 2024, 1–14. http://dx.doi.org/10.1115/1.4065432.

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Abstract Concentrated solar power (CSP) plants need to monitor the surface slope error of thousands of heliostats with sub-milliradian accuracy. Large numbers of heliostats installed in harsh environments means that measurement speed and durability are key design considerations for metrology systems. We present a compact, accurate, and high-speed heliostat slope error metrology system that is robust to the harsh environmental conditions at CSP plants. The system is composed of (1) Grating Embedded Mirrors (GEMs), which have multiple phase diffraction gratings written within a glass mirror subs
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23

Memon, Muhammad Faseeh, Zubair Ahmed Memon, and Omar Shabbir Ahmed. "A Review on Various Techniques for Boron Recovery: Focusing on Efficiency, Sustainability, Scalability, and Cost-Effectiveness." Journal of Ecohumanism 3, no. 7 (2024). http://dx.doi.org/10.62754/joe.v3i7.4704.

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Boron is a critical element extensively used across various industries—such as glass manufacturing, ceramics, agriculture, detergents, nuclear energy, and aerospace—due to its unique chemical and physical properties. However, its widespread industrial use has raised significant environmental concerns, particularly its accumulation in aquatic systems, posing risks to biodiversity, plant life, and human health. This review examines the impacts of boron pollution on aquatic organisms, plants, and humans, highlighting the necessity for effective recovery strategies. We provide a comprehensive anal
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Oikonomopoulou, Faidra. "Unveiling the third dimension of glass." Architecture and the Built Environment, 2019. http://dx.doi.org/10.59490/abe.2019.9.4088.

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Glass as a material has always fascinated architects. Its inherent transparency has given us the ability to create diaphanous barriers between the interior and the exterior that allow for space and light continuity. Yet, we are just starting to understand the full potential, properties and characteristics of glass as a material. Only in the last decades did we discover the structural potential of glass and started to use it, besides as a cladding material, also for load-bearing applications thanks to its high compressive strength. Indeed, at present the structural applications of glass in arch
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25

Namrata, Kumari, Kavita Verma, Sunita Kushwah, et al. "Comparative Study On Shade Drying, Sun Drying And Direct Solar Drying Of Mint Leaves." Agriculture Association of Textile Chemical and Critical Reviews Journal 11, no. 4 (2023). http://dx.doi.org/10.58321/aatccreview.2023.11.04.246.

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Aromatic herbs are in high demand in food processing industries, Cosmetics, biotechnology and pharmaceuticals. Mint leaves can be used as a flavoring agent in food; they are also valued for their antibacterial and antioxidant properties. Mints (Mentha spp.) are a well-known medicinal and aromatic plant. The mint leaves are used as fresh due to high moisture content. Drying helps to inhibit bacterial growth and decrease water activity. The purpose of this study was to enhance their shelf life and save packaging and shipping costs. A comparative study on the drying process of mint leaves was con
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