Academic literature on the topic 'Edge Prediction Based Skelton Formation'

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Journal articles on the topic "Edge Prediction Based Skelton Formation"

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Krishna, Prasad K., and Aithal Sreeramana. "A Conceptual Study on Fingerprint Thinning Process based on Edge Prediction." International Journal of Applied Engineering and Management Letters (IJAEML) 1, no. 2 (2017): 98–111. https://doi.org/10.5281/zenodo.1067110.

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Biometric recognition encompasses numerous modern strategies. Among them, fingerprint reputation is taken into consideration to be the most effective approach for utmost security authentication.  As industrial incentives boom, many new technologies for user identity are being advanced, each with its very own strengths and weaknesses and a potential area of interest marketplace. Fingerprint matching consists of a different process like filtering or preprocessing, binarisation, thinning or skeletonisation, postprocessing, feature extraction, and matching. Out of these fingerprint thinning o
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Qu, Hai Jun, Gui Cheng Wang, Yun Ming Zhu, and X. D. Zhu. "Analysis of the Feed Direction Burr in Turning Based on FEM." Advanced Materials Research 268-270 (July 2011): 1222–27. http://dx.doi.org/10.4028/www.scientific.net/amr.268-270.1222.

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A finite element model was developed for simulation of feed direction burr formation process in turning. Based on a series of stress and strain contours the progressive change of geometry at the edge of workpiece edge from simulation, a turning feed direction burr formation mechanism is proposed and divided into four stages: normal cutting stage, deformation of workpiece edge stage, continues cutting stage and final developed stage. The removal of the remaining part of allowance takes place close to the tool tip as the material has sufficient rigidity to allow cutting only in this area in fina
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Feistle, Martin, Isabella Pätzold, Roland Golle, and Wolfram Volk. "Predicting Edge Cracks on Shear-Cut High-Strength Steels by Modified Uniaxial Tensile Tests." Key Engineering Materials 703 (August 2016): 49–55. http://dx.doi.org/10.4028/www.scientific.net/kem.703.49.

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During the forming of high-strength steels, edge cracks occur unexpectedly on sheared edges e.g. during collar forming. A non-contact measurement method based on the well-known tensile test was developed. It allows the investigation of the formation of edge cracks under tensile loads and determining general criteria to predict the formation of edge cracks during a specific forming process. The criteria are validated experimentally by means of the collar-forming test. In conjunction with the proposed line-fit-method these criteria can be implemented easily in FEM software in the near future for
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Khitrenko, A. V., A. M. Minkhatova, V. A. Orlov, D. A. Kotunov, and S. A. Khalilov. "INFLUENCE OF THE MAIN FACTORS ON THE CONDITIONS OF FORMATION OF THE ACHIMOV FORMATION." Энергия: экономика, техника, экология, no. 2 (2020): 18–24. http://dx.doi.org/10.7868/s2587739920020020.

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Western Siberia is a unique geological area for testing different approaches of sequential stratigraphy and their impact on deep-sea sediment architecture. There are many different various techniques allow us to reduce geological uncertainty and predict distribution and architecture of deep-water sediments. The architecture of deepwater sediments is influenced by the basin topography and volume of sediment supply. In this paper the main factors and their influence on the deep-water sediments accumulation will be considered. This approach was used for prediction distribution and quality of deep
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Yan, Yu Xi, Quan Sun, Jian Jun Chen, and Hong Liang Pan. "Analysis for the Propagation of Edge Crack of Silicon Steel during Cold Rolling Process Based on GTN Damage Model." Advanced Materials Research 482-484 (February 2012): 487–92. http://dx.doi.org/10.4028/www.scientific.net/amr.482-484.487.

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Silicon steels tend to develop edge cracks during cold rolling, which need to be removed and cause rupture of the steel in the rolling mill. Hence, it is necessary to understand the formation of edge cracks. The damage distribution and the initiation and propagation of edge cracks occur around the notch tip during cold rolling process was investigated by using GTN damage model. The damage parameters f0, fcand fFare determined by tension experiments and SEM observation. The influence of various rolling parameters on damage distribution and crack length was simulated by using ABAQUS. The numeric
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Huang, Quan Hua, and Xing Yu Lin. "Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs." E3S Web of Conferences 213 (2020): 02009. http://dx.doi.org/10.1051/e3sconf/202021302009.

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Horizontal Wells are often used to develop condensate gas reservoirs. When there is edge water in the gas reservoir, it will have a negative impact on the production of natural gas. Therefore, reasonable prediction of its water breakthrough time is of great significance for the efficient development of condensate gas reservoirs.At present, the prediction model of water breakthrough time in horizontal Wells of condensate gas reservoir is not perfect, and there are mainly problems such as incomplete consideration of retrograde condensate pollution and inaccurate determination of horizontal well
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Babina, E. O., G. A. Kalmykov, A. V. Stoupakova, et al. "Geometry analysis and oil reservoirs prediction in the Lower Cretaceous clinoforms of the northern Priobskoye field." Moscow University Bulletin. Series 4. Geology, no. 4 (December 15, 2022): 111–30. http://dx.doi.org/10.33623/0579-9406-2022-4-111-130.

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. Developing of the exploration criteria for oil reservoirs and non-structural traps in the clinoform successions are the key target as for detailed field appraisal in the West-Siberia basin well as for exploration in the clinoform complexes in the new sedimentary basins without drilling. Based on complex analysis of the seismic, well logs, well tests and core data in the northern Priobskoye field, the correlation between clinoform geometry, edge trajectory and distribution pattern of the reservoirs in the productive formation AS is established. The highest flow rates and reservoir properties
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Chen, Yun, Huaizhong Li, and Jun Wang. "Predictive modelling of cutting forces in end milling of titanium alloy Ti6Al4V." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 232, no. 9 (2016): 1523–34. http://dx.doi.org/10.1177/0954405416673108.

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A cutting force model, based on a predictive model for orthogonal cutting, is developed for force predictions in end milling of titanium alloy Ti6Al4V. The model assumes a semi-stationary process for the serrated chip formation. The Johnson–Cook material model that couples strain hardening, strain rate sensitivity and thermal softening effects is applied to represent the material strength. A thermal model considering the tool thermal properties is integrated to account for the high temperature rise due to the low thermal conductivity of Ti6Al4V. To extend the predictive model to milling, the e
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Hao, Pujun, Anrui He, and Wenquan Sun. "Formation mechanism and prediction of plane shape in angular rolling of aluminum alloy thick plate." Transactions of the Canadian Society for Mechanical Engineering 42, no. 2 (2018): 81–89. http://dx.doi.org/10.1139/tcsme-2017-0039.

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A finite element model (FEM) was developed to study the plane shape of an aluminum alloy thick plate after angular rolling. Results show that the plane shape is a parallelogram after the first pass of angular rolling. When the angular rolling process is completed after a second pass, the plane shape becomes symmetric about the center lines in both length and width directions. The width increases more at the edge that enters the deformation zone earlier. Next, a mathematical model to predict plane shape after angular rolling was proposed based on a sectional calculation method. By simulating th
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Agati, Giuliano, Adriano Evangelisti, Serena Gabriele, Franco Rispoli, Paolo Venturini, and Domenico Borello. "Liquid film formation: prediction accuracy of different numerical approaches." Journal of Physics: Conference Series 2385, no. 1 (2022): 012138. http://dx.doi.org/10.1088/1742-6596/2385/1/012138.

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Abstract In counteracting fouling phenomenon in gas turbines, which leads to system inefficiencies and performance degradation, water washing technique is very often adopted. Water droplets sprays are injected and, hitting the solid surfaces, remove the dirt deposition. Among the collateral undesirable phenomena related to water washing, blades erosion and liquid film formation are the most remarkable. Despite the former issue was extensively assessed by the authors in previous works, up to the authors’ knowledge the risk of liquid film formation due to water washing was scarcely investigated.
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Book chapters on the topic "Edge Prediction Based Skelton Formation"

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Droste, Henk, and Mia Van Steenwinkel. "Stratal Geometries and Patterns of Platform Carbonates." In Seismic Imaging of Carbonate Reservoirs and Systems. American Association of Petroleum Geologists, 2004. https://doi.org/10.1306/m81928c9.

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Abstract Extensive carbonate platforms covered the eastern part of the Arabian Plate during Mesozoic times. The interior parts of these platforms are commonly visualized as undifferentiated, extensive shallow-water areas, where carbonates accumulate by aggradation. This view is based on the fact that individual shallowing-upward carbonate packages are laterally extensive. The improvement of seismic quality and resolution, however, reveal internal geometries within the carbonates. The Cretaceous carbonate platform of Oman, for example, shows a complex internal architecture, rather than a “layer
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Conference papers on the topic "Edge Prediction Based Skelton Formation"

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Brune, T., K. M. Kraemer, C. Kontermann, M. Oechsner, M. Bellmer, and M. Schlesinger. "Atmosphere Influence on the Fatigue Crack Growth Behavior of Wrought, Cast and PBF-LB/M Processed IN718 under Different Loading Conditions at 650 °C." In AM-EPRI 2024. ASM International, 2024. http://dx.doi.org/10.31399/asm.cp.am-epri-2024p0483.

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Abstract For the safe life prediction of components under high cycle fatigue loading at high temperature, such as gas turbine blades and turbocharger components, the behavior of initial defects, which are physically short cracks below the long crack threshold ΔK is of crucial importance. The evolution of different crack closure mechanisms (such as plasticity, roughness and oxide induced crack closure) can lead to crack arrest by a reduction of the effective crack tip loading. To visualize the crack growth behavior of such cracks, cyclic crack resistance curves (cyclic R-curves) are used. The e
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Dular, Matevzˇ, Bernd Stoffel, and Brane Sˇirok. "Method for Cavitation Erosion Prediction: Model Development." In ASME 2005 Fluids Engineering Division Summer Meeting. ASMEDC, 2005. http://dx.doi.org/10.1115/fedsm2005-77352.

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A study of visual and erosion effects of cavitation on simple single hydrofoil configurations in a cavitation tunnel was made. A two-dimensional hydrofoil with circular leading edge was used for the experiments. In addition, the hydrofoil geometry was modified to obtain some three-dimensional cavitation effects. A thin copper foil, applied to the surface of the hydrofoil, was used as an erosion sensor. The cavitation phenomenon on hydrofoils at different flow conditions (system pressure, water gas content, flow velocity) was observed. Images of vapour cavities from above and from a side view w
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Li, Bing-ran, Cun-liang Liu, Lin Ye, Fan Zhang, and Tian-liang Zhou. "Showerhead Film Cooling Mechanism and Superposition Characteristics of Turbine Blade Leading-Edge." In ASME Turbo Expo 2024: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2024. http://dx.doi.org/10.1115/gt2024-127944.

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Abstract Based on the turbine blade model, the film cooling effectiveness data of single rows of holes at different positions were obtained through numerical simulation, and the superposition characteristics of multiple rows of holes under different average blowing ratios were studied. The applicability of the Sellers superposition formula to the blade leading-edge is discussed. The showerhead film cooling effectiveness distribution of the leading-edge was studied through pressure sensitive paint (PSP) experimental measurement, and the numerical simulation method was verified. The results show
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Vasko, Galyna M., Perry H. Leo, and Thomas W. Shield. "Prediction of the Initial Crack Tip Microstructure in a Single Crystal of CuAlNi." In ASME 1999 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1999. http://dx.doi.org/10.1115/imece1999-0934.

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Abstract The austenite to martensite pseudoelastic transformation induced by the anisotropic elastic crack tip stress field in a single crystal of shape memory alloy is considered. It is proposed that the orientation of the initial austenite-martensite interface that forms can be predicted based on knowledge of the stress field, the crystallography of the transformation and one of two selection criteria. These criteria are based on the work of formation of the martensite in stress field and the crack opening displacement the martensite causes at the crack. Predictions of the criteria are compa
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Kumar, Aitha Sudheer, Ankit Agarwal, Vinita Gangaram Jansari, K. A. Desai, Chiranjoy Chattopadhyay, and Laine Mears. "Vision-Based Tool Wear Classification During End-Milling of Inconel 718 Using a Pre-Trained Convolutional Neural Network." In ASME 2023 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2023. http://dx.doi.org/10.1115/imece2023-113344.

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Abstract Nickel-Based Superalloys (NBSAs) are widely used for components subjected to high-temperature applications due to their excellent mechanical strength, toughness, and corrosion resistance. Despite favorable properties, NBSAs work-harden during machining, resulting in acute temperature rise at the cutting edge, severe plastic deformation, and rapid tool wear. The lower thermal conductivity, intense friction at the chip-tool interface, chemical affinity with tool material, and temperature gradients typically lead to abrupt crater formation or cutting-edge chipping in addition to rapid fl
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Kibsey, Mitch, Xiao Huang, Ashok Koul, and Michael Hildebrand. "Life Prediction and Metallographical Examination of SAGBO Cracking in RB211 High Pressure Turbine Blades." In ASME Turbo Expo 2012: Turbine Technical Conference and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/gt2012-68366.

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In a previous study, high pressure turbine blades from an RB211-24C aero-derivative industrial gas turbine engine were sectioned and metallographically examined. The turbine blades were made of cast Mar-M002, a nickel-based superalloy. It was found that stress-assisted grain boundary oxidation (SAGBO) had occurred along the inner cooling channels near the leading edge at the turbine blade root, which accelerated crack formation and propagation through dynamic embrittlement. The cracks were characterized by the presence of large Hf, Al and O concentration. It appeared that the presence of oxyge
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Abdi, Frank, Cody Godines, Michael J. Presby, et al. "CMC Mode II Crack Growth Resistance Prediction of ASTM Specimen and Test Validation." In ASME Turbo Expo 2019: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/gt2019-90985.

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Abstract The objective of this effort is to predict ceramic matrix composites (CMC) interlaminar Mode II Crack Growth Resistance (CGR), and the design of ASTM test specimen. Currently, there are a number of test standards and American Society for Testing and Materials (ASTM) for CMC’s at both ambient and elevated temperatures; however, there are no standardized test methods for determination of interlaminar shear (Mode II) fracture toughness in CMC’s. Although research work exists on interlaminar Mode II fracture toughness of CMC’s, the test methods applied showed definite drawbacks and limita
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Singh, Kundan K., V. Kartik, and Ramesh Singh. "Segmented Cutting Coefficient Based Chatter Modeling for High-Speed Micromilling of Ti6Al4V." In ASME 2016 11th International Manufacturing Science and Engineering Conference. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/msec2016-8778.

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Miniature components with complex shape can be created by micromilling with high surface accuracy. However, for difficult-to-machine materials, such as Ti-alloys, failure of low flexural stiffness micro-tools is a big limitation. High spindle speeds (20,000 to 100,000 rpm) can be used to reduce the undeformed chip thickness and the cutting forces and hence the catastrophic failure of the tool can be avoided. This reduced uncut chip thicknesses, in some cases lower than the cutting edge radius, can result in intermittent chip formation which can lead to dynamic variation in cutting forces. Thes
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Szolwinski, Matthew P., G. Harish, and Thomas N. Farris. "Comparison of Fretting Fatigue Crack Nucleation Experiments to Multiaxial Fatigue Theory Life Predictions." In ASME 1997 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1997. http://dx.doi.org/10.1115/imece1997-0745.

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Abstract Fretting is associated with microslip at the interface of contacts experiencing oscillatory loads. One consequence of fretting is the formation and subsequent growth of cracks at the edge of contact, a phenomenon known as fretting fatigue. Fretting fatigue is an important high cycle fatigue failure mechanism in aircraft structural lap joints and turbine blade/disk contacts. A well-characterized, integrated fretting test system has been developed in which both normal and cyclic tangential fretting loads are applied and monitored in conjunction with a bulk load on the specimen. The expe
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Nomura, Yukito, Mariam Sultan Almarzooqi, Ken Makishima, and Jon Tuck. "Water Compatibility and Scale Risk Evaluation by Integrating Scale Prediction of Fluid Modelling, Reservoir Simulation and Laboratory Coreflood Experiment for a Giant Oil Field in Offshore Abu Dhabi." In Abu Dhabi International Petroleum Exhibition & Conference. SPE, 2021. http://dx.doi.org/10.2118/207319-ms.

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Abstract An offshore field is producing oil from multiple reservoirs with peripheral water injection scheme. Seawater is injected through a subsea network and wellhead towers located along the original reservoir edge. However, because its OWC has moved upward, wells from wellhead towers are too remote to inject seawater effectively, with some portion going to the aquifer rather than oil pool. Therefore, it is planned to migrate injection strategy from peripheral to mid-dip pattern. An expected risk is scaling by mixing incompatible seawater and formation water. Such risk and mitigation measure
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