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Journal articles on the topic 'Reloading path'

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1

Fozao, D. S., A. E. Foudjet, A. Kouam, and D. Fokwa. "Modeling the stress-strain behavior of Bamboo under cyclic uniaxial loading." Revue Scientifique et Technique Forêt et Environnement du Bassin du Congo 2 (November 16, 2015): 9–27. https://doi.org/10.5281/zenodo.33836.

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This paper presents a series of cyclic uniaxial compressive loading tests carried out on cylindrical samples of bamboo, in order to develop unloading and reloading stress-strain models. Two bamboo species from Congo Basin, the Bambusa vulgaris and Oxytenantera abyssinica were used for these experiments.   It is found from the test results that the unloading and reloading do not essentially change the shape of the envelope curves of the stress-strain relations and that to predict models for an unloading and a reloading path, the plastic strain, the unloading strain, the strain at yield, th
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2

Jia, Wei Ping, and José Valdemar Fernandes. "Plastic Behaviour of Copper Polycrystal Subjected to Fatigue-Tension Sequential Loading Tests." Materials Science Forum 514-516 (May 2006): 897–900. http://dx.doi.org/10.4028/www.scientific.net/msf.514-516.897.

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Sequences of fatigue-tension tests were performed on copper polycrystal sheet, with 32µm mean grain size. The effect of strain path change on subsequent reloading yield stress as well as work hardening rate has been investigated. Dislocation microstructure was observed by transmission electron microscopy after mechanical tests. Under present conditions, it was found that fatigue prestraining caused the increase of reloading yield stress, larger amplitude of strain path change resulted in higher reloading yield stress and lower work hardening rate. Reloading tensile curves are independent of pr
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3

Guo, Gaofeng, Zhong Li, Yong Hou, Dewu Yang, Haohao Cui, and Hui Tan. "Simulation and optimization of a replenishment device for chainless ammunition feeding system." Journal of Physics: Conference Series 2891, no. 10 (2024): 102021. https://doi.org/10.1088/1742-6596/2891/10/102021.

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Abstract In order to improve the efficiency of rapid replenishment of chainless ammunition feeding system, the dynamics simulation analysis of the movement relationship between the driving sprocket and the shell and the handover relationship between the toggle wheel and the shell in the replenishment device is carried out for the replenishment device of chainless ammunition feeding system as an object. Firstly, based on multi-body dynamics theory and contact collision theory, the dynamics model of the reloading device is established by using multi-body dynamics analysis software RecurDyn, and
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4

Liu, Enlong, Shanyong Wang, Cheng Zhou, and Qing Nie. "Mechanical Properties of Artificial Structured Soils Under a Conventional Drained Loading–Unloading–Reloading Stress Path." International Journal of Civil Engineering 16, no. 4 (2016): 383–93. http://dx.doi.org/10.1007/s40999-016-0133-z.

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5

Feng, Wang, Chi Shichun, Li Shijie, and Jia Yufeng. "Testing and Micromechanical Modelling of Rockfill Materials Considering the Effect of Stress Path." Mathematical Problems in Engineering 2016 (2016): 1–14. http://dx.doi.org/10.1155/2016/7630541.

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We have extended the micromechanics-based analytical (M-A) model to make it capable of simulating Nuozhadu rockfill material (NRFM) under different stress paths. Two types of drained triaxial tests on NRFM were conducted, namely, the stress paths of constant stress ratio (CSR) and the complex stress paths with transitional features. The model was improved by considering the interparticle parameter variation with the unloading-reloading cycles and the effect of the stress transition path. The evolution of local dilatancy at interparticle planes due to an externally applied load is also discusse
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6

Karstunen, Minna, and Mirva Koskinen. "Plastic anisotropy of soft reconstituted clays." Canadian Geotechnical Journal 45, no. 3 (2008): 314–28. http://dx.doi.org/10.1139/t07-073.

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The aim of the paper is to extend the experimental validation of the S-CLAY1 model, which is a recently proposed elastoplastic constitutive model that accounts for initial and plastic strain-induced anisotropy. Drained stress path controlled tests were performed on reconstituted samples of four Finnish clays to study the effects of anisotropy in the absence of the complexities of structure present in natural undisturbed clays. Each test involved several loading, unloading, and reloading stages with different values of stress ratio and, hence, induced noticeable changes in the fabric anisotropy
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7

Sritharan, Thirumany, T. Saraswati, and S. Mhaisalkar. "Cyclic Depth-Sensing Indentation of Gold Wire." Key Engineering Materials 378-379 (March 2008): 163–74. http://dx.doi.org/10.4028/www.scientific.net/kem.378-379.163.

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Conventional depth-sending indentation and novel cyclic indentation were performed to study the mechanical properties and strengthening mechanism of pure gold and Ca-doped gold of up to 90 ppm. The system was chosen because it is popular materials for microelectronics interconnection, yet the strengthening mechanism is not well-understood. Conventional depthsensing indentation showed an increase in hardness and modulus of gold with increasing Ca content of up to 90 ppm, which remained significantly higher after annealing. Cyclic depth sensing indentation, where the specimen is loaded to a spec
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8

Liu, Zhi, Li Zhang, Lanhao Zhao, Zihan Wu, and Bowen Guo. "A Damage Model of Concrete including Hysteretic Effect under Cyclic Loading." Materials 15, no. 14 (2022): 5062. http://dx.doi.org/10.3390/ma15145062.

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A novel damage model for concrete has been developed, which can reflect the complex hysteresis phenomena of concrete under cyclic loading, as well as other nonlinear behaviors such as stress softening, stiffness degradation, and irreversible deformation. The model cleverly transforms the complex multiaxial stress state into a uniaxial state by equivalent strain, with few computational parameters and simple mathematical expression. The uniaxial tensile and compressive stress–strain curves matching the actual characteristics are used to accommodate the high asymmetry of concrete in tension and c
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9

Mackenzie-Helnwein, Peter, Josef Eberhardsteiner, and Herbert A. Mang. "Rate-independent mechanical behavior of biaxially stressed wood: Experimental observations and constitutive modeling as an orthotropic two-surface elasto-plastic material." Holzforschung 59, no. 3 (2005): 311–21. http://dx.doi.org/10.1515/hf.2005.052.

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Abstract Recent biaxial experiments on spruce wood show that consideration of an elliptic failure surface according to Tsai and Wu and an elastic model for stress states within this envelope lead to an insufficient description of the mechanical behavior. As compression perpendicular to the grain occurs, a non-linear stress path results from a proportional biaxial strain path. Investigation of characteristic samples with respect to loading-unloading-reloading cycles for states of stress below failure reveals behavior similar to what is known as hardening type plasticity. The experimentally obse
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10

Jończyk-Szostek, Małgorzata, Piotr Kanty, Jarosław Rybak, Jakub Saloni, and Karolina Trybocka. "Uniaxial Testing of Soil–Cement Composites to Obtain Correlations to Be Used in Numerical Modeling." Applied Sciences 13, no. 18 (2023): 10268. http://dx.doi.org/10.3390/app131810268.

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This paper presents the results of laboratory testing of samples obtained from soil–cement composite columns produced on a real-world test site as part of a research and development project. The introduction presents the motivation of the research and the goals that guided the layout of a research program. The general geotechnical conditions, initially assumed methodology of soil–cement composite sampling, and finally, the methodology of strength tests were presented. In tests conducted with the measurement of the strain-stress path, the strength and stiffness of the material were determined i
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11

Wang, J. G., W. P. Jia, and D. Y. Ju. "Cyclic Deformation Behavior and Fatigue Crack Propagation of Low Carbon Steel Prestrained in Tension." Research Letters in Materials Science 2009 (2009): 1–4. http://dx.doi.org/10.1155/2009/657284.

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The tests were performed on low carbon steel plate. In the tension fatigue tests, two angle values (ϕ=0°andϕ=45°,ϕis the angle between the loading and the rolling direction) have been chosen. The influence of strain path change on the subsequent initial work softening rate and the saturation stress has been investigated. Dislocation microstructure was observed by transmission electron microscopy. It was found that the strain amount of preloading in tension has obviously affected the cyclic softening phenomenon and the initial cyclic softening rate. It was observed that the reloading axial stre
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12

Guo, Zhenghuai, Klaus Regenauer-Lieb, Phung Nhu Hao Vu, and Zhenliang Guan. "Characteristics of Elastoplastic Consolidation by Compaction and Its Effects on Coal Permeability." Energies 15, no. 20 (2022): 7647. http://dx.doi.org/10.3390/en15207647.

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This paper presents a combined experimental–analytical investigation of coal strain development under fluctuating applied hydrostatic stress. The laboratory setup mimics the isotropic volumetric compaction of coal under burial–uplift cycles in the absence of tectonic stress. Special emphasis is placed on the corresponding permeability evolution of the coal strata. Our results show that the stress–strain path is exponential, approaching a linear relation in the logarithmic stress–strain space with the monotonic increase in stress. A similar behavior is found for the strain–permeability path in
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13

Gulgazli, Alasgar, and Ali Hikmat Ahmadov. "CYCLIC TORSION WITH INTERNAL PRESSURE OF PRE-STRETCHED THIN-WALLED CYLINDERS." ETM - Equipment, Technologies, Materials 05, no. 01 (2021): 21–24. http://dx.doi.org/10.36962/swd0202202021.

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The article considers the following two tasks. 1) Strength calculations are carried out for a long thin-walled cylinder, the ends of which are not closed during reloading. At the first loading, the thin-walled cylinder is stretched by a longitudinal force leading to longitudinal plastic deformations. When reloaded, the cylinder twists and at the same time uniform pressure acts from the inside. It is noted that, in particular, the shaft of wind generators is subjected to such loading. It is proved that the equation of the yield curve in the plane of the normal and tangential stresses of the str
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14

Young, Erik M., Christie D. Rowe, and James D. Kirkpatrick. "Shear zone evolution and the path of earthquake rupture." Solid Earth 13, no. 10 (2022): 1607–29. http://dx.doi.org/10.5194/se-13-1607-2022.

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Abstract. Crustal shear zones generate earthquakes, which are at present unpredictable, but advances in mechanistic understanding of the earthquake cycle offer hope for future advances in earthquake forecasting. Studies of fault zone architecture have the potential to reveal the controls on fault rupture, locking, and reloading that control the temporal and spatial patterns of earthquakes. The Pofadder Shear Zone exposed in the Orange River in South Africa is an ancient, exhumed, paleoseismogenic continental transform which preserves the architecture of the earthquake source near the base of t
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15

Unitsky, А. E. "The Union State of Russia and Belarus as a Center for Reloading the New World on the Biosphere Path of Civilizational Development." Information and Innovations 17, no. 4 (2023): 17–33. http://dx.doi.org/10.31432/1994-2443-2022-17-4-17-33.

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The article main goal is research continuation on the development and detailed study of the socio-technological path for a civilizational solution of the critical situation our planet has faced. The key tasks here are import substitution, i.e., technological independence, reducing the energy source export importance for the economy, and the most intensive increase in political, social, technological and economic sovereignty. Moreover, the need in searching for new partners, reorientation exports and imports to new markets, strengthening integration with allied countries (Russia and Belarus), w
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16

Zhu, Yongjian, Peng Li, Ping Wang, Chengcheng Mei, Heng Ren, and Xizhi Wang. "Mechanical Characteristics of Pre-Peak Unloading Damage and Mechanisms of Reloading Failure in Red Sandstone." Applied Sciences 12, no. 24 (2022): 13046. http://dx.doi.org/10.3390/app122413046.

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The mining of deep coal resources occurs in a high-stress geological environment as well as an engineering environment of rock excavation and unloading. Research on the re-bearing capacity characteristics and damage mechanism of rock masses damaged by peak front unloading is critical in revealing the destabilization and rupture law of deep rock bodies. The triaxial pre-peak unloading point was controlled to prepare damaged sandstone specimens, and the RMT-150C rock mechanics test loading system and the AEwin USB-type acoustic emission monitor were used to perform uniaxial reloading tests on th
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17

Oleg, V. Chernoyarov, N. Glushkov Alexey, Y. Kalinin Maksim, Myat San Kaung, and P. Litvinenko Vladimir. "Random Signal Digital Simulator Based on Its Double Chain Markov Model." IAENG International Journal of Computer Science 48, no. 4 (2021): pp1108–1117. https://doi.org/10.5281/zenodo.5838667.

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The universal digital simulator of a random signal with the required three-dimensional probability distribution of its discrete values is introduced. The simulation algorithm is based on a double chain Markov model of the signal samples. Thus, at the simulator output, a sequence of binary codes of the samples with the required probabilistic and correlation properties of the three adjacent random or pseudo-random values is generated. A technique for determining the parameters of the double chain Markov model is considered. It is based either on the specified three- dimensional probability densi
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18

Song, Wennan, Di Liu, and Wenyu Rong. "Optimization of Passenger-like Container Train Running Plan Considering Empty Container Dispatch." Sustainability 14, no. 8 (2022): 4697. http://dx.doi.org/10.3390/su14084697.

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Railway container transportation plays an important role in the sustainable development of transportation. In order to improve the efficiency of container transportation and maximize the transportation revenue of railway enterprises, taking the passenger-like container train running plan as the research object, we established an optimization model. The model considers the transportation requirements of empty and heavy containers, aiming at the maximum revenue of railway transportation enterprises, the conservation of container flow, train stops, container reloading, and other constraints. It i
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19

STRELBITSKIY, Victor. "RESEARCH OF THE INFLUENCE OF THE MOVEMENT MECHANISM ON THE RESOURCE OF METAL STRUCTURES OF OVERHEAD CRANES OF SEAPORTS." Herald of Khmelnytskyi National University. Technical sciences 309, no. 3 (2022): 249–53. http://dx.doi.org/10.31891/2307-5732-2022-309-3-249-253.

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Overhead cranes are widely used when performing reloading operations on closed ones (fig.1) and open warehouses of sea and river ports. Since they are a link in the technological process, the productivity of Port lines depends on their reliable and continuous operation. Overtime and long term operation of metal structures of overhead cranes in the mode of intensive cyclic loading leads to the formation of fatigue defects and subsequent failure of components and accidents. The main criterion for achieving the maximum condition of metal structures is considered to be the development of its resou
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20

Wen, Hua, Matthew J. McGinley, Gail Mandel, and Paul Brehm. "Nonequivalent release sites govern synaptic depression." Proceedings of the National Academy of Sciences 113, no. 3 (2015): E378—E386. http://dx.doi.org/10.1073/pnas.1523671113.

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Synaptic depression is prominent among synapses, but the underlying mechanisms remain uncertain. Here, we use paired patch clamp recording to study neuromuscular transmission between the caudal primary motor neuron and target skeletal muscle in zebrafish. This synapse has an unusually low number of release sites, all with high probabilities of release in response to low-frequency stimulation. During high-frequency stimulation, the synapse undergoes short-term depression and reaches steady-state levels of transmission that sustain the swimming behavior. To determine the release parameters under
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21

Khadka, Bikram, Byeongmoon Lee, and Ki-Taek Kim. "Drug Delivery Systems for Personal Healthcare by Smart Wearable Patch System." Biomolecules 13, no. 6 (2023): 929. http://dx.doi.org/10.3390/biom13060929.

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Smart wearable patch systems that combine biosensing and therapeutic components have emerged as promising approaches for personalized healthcare and therapeutic platforms that enable self-administered, noninvasive, user-friendly, and long-acting smart drug delivery. Sensing components can continuously monitor physiological and biochemical parameters, and the monitoring signals can be transferred to various stimuli using actuators. In therapeutic components, stimuli-responsive carrier-based drug delivery systems (DDSs) provide on-demand drug delivery in a closed-loop manner. This review provide
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22

Pan, Wu Min. "Dynamic Update Mechanism in Wireless Sensor Networks." Applied Mechanics and Materials 526 (February 2014): 267–72. http://dx.doi.org/10.4028/www.scientific.net/amm.526.267.

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Many researches use diff environmental conditions or application requirements in WSN. In the default Deluge mechanism, it will recover a sensor node from an updating error by reloading the stored full image again or waiting for the host machine to retransmit the full image again. This strategy is easy to implement and intuitive, but replacing the current executing image by retransmitting a full image file again is resource-consuming. To avoid retransmitting the full image when performing recovery, at the time when diff-based updating procedures have been finished, sensor nodes using our recove
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23

Ren, Xinyue, Weiwei Zhang, Minghui Wu, Chuanchang Li, and Xiaolan Wang. "Meta-YOLO: Meta-Learning for Few-Shot Traffic Sign Detection via Decoupling Dependencies." Applied Sciences 12, no. 11 (2022): 5543. http://dx.doi.org/10.3390/app12115543.

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Considering the low coverage of roadside cooperative devices at the current time, automated driving should detect all road markings relevant to driving safety, such as traffic signs that tend to be of great variety but are fewer in number. In this work, we propose an innovative few-shot object detection framework, namely Meta-YOLO, whose challenge is to generalize to the unseen classes by using only a few seen classes. Simply integrating the YOLO mechanism into a meta-learning pipeline will encounter problems in terms of computational efficiency and mistake detection. Therefore, we construct a
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24

Jingmao, Liu, Zou Degao, Ning Fanwei, and Kong Xianjing. "A unified constitutive model for instantaneous elastic-plastic and time-dependent creep behaviour of gravelly soils under complex loading." Canadian Geotechnical Journal, March 30, 2023. http://dx.doi.org/10.1139/cgj-2022-0635.

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The behaviours of gravelly soils under monotonic, cyclic and creep loading are generally simulated in separated processes with different models, which cannot describe the interactions between the instantaneous elastic-plastic and time-dependent creep behaviours under complex loading. To address the problem, an elastic-plastic-creep model framework for gravelly soils is described to present its basic components and the differences from the elastic-plastic model framework. Within this framework, a unified constitutive model for instantaneous elastic-plastic and time-dependent creep behaviour is
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25

Dhara, Sisir, Scott Taylor, Łukasz Figiel, Darren Hughes, Barbara Shollock, and Sumit Hazra. "In-situ study of strain and texture evolution during continuous strain path change." ESAFORM 2021, March 29, 2021. http://dx.doi.org/10.25518/esaform21.2168.

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Automotive stamping is a multi-stage process where a sheet material is drawn in first stage and then redrawn, flanged and pierced in subsequent stages. In the first draw stage, continuous strain path change is induced in the material while a discontinuous strain path change occurs when the material is processed in the subsequent stages of a multi-stage stamping operation. The strain path transition can potentially alter the forming limit of the material. Previous research has investigated the effect of the discontinuous mode of strain path change by loading the sample in one strain path, unloa
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26

Nakafuji, Keiichiro, Motomichi Koyama, and Kaneaki Tsuzaki. "In-Situ Electron Channeling Contrast Imaging under Tensile Loading: Residual Stress, Dislocation Motion, and Slip Line Formation." Scientific Reports 10, no. 1 (2020). http://dx.doi.org/10.1038/s41598-020-59429-x.

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AbstractElastoplastic phenomena, such as plastic deformation and failure, are multi-scale, deformation-path-dependent, and mechanical-field-sensitive problems associated with metals. Accordingly, visualization of the microstructural deformation path under a specific mechanical field is challenging for the elucidation of elastoplastic phenomena mechanisms. To overcome this problem, a dislocation-resolved in-situ technique for deformation under mechanically controllable conditions is required. Thus, we attempted to apply electron channeling contrast imaging (ECCI) under tensile loading, which en
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27

Granata, Donatella. "On penalized reload cost path, walk, tour and maximum flow: hardness and approximation." Optimization Letters, April 3, 2024. http://dx.doi.org/10.1007/s11590-024-02108-x.

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AbstractA meticulous description of a real network with respect to its heterogeneous physical infrastructure and properties is necessary for network design assessment. Quantifying the costs of making these structures work together effectively, and taking into account any hidden charges they may incur, can lead to improve the quality of service and reduce mandatory maintenance requirements, and mitigate the cost associated with finding a valid solution. For these reasons, we devote our attention to a novel approach to produce a more complete representation of the overall costs on the reload cos
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28

Lian, Junhe, Wenqi Liu, Xabier Gastañares, Rongfei Juan, and Joseba Mendiguren. "Plasticity evolution of an aluminum-magnesium alloy under abrupt strain path changes." International Journal of Material Forming 15, no. 3 (2022). http://dx.doi.org/10.1007/s12289-022-01692-6.

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Abstract During the forming and manufacturing of engineering materials, plasticity behavior could be evolving significantly due to complex deformation history. Therefore, this study aims to characterize the plasticity evolution of an aluminum-magnesium alloy under simple monotonic and non-monotonic loading with abrupt strain path changes. Instead of focusing only on one single stress state in the first-step loading for most of the studies in the literature, the current non-monotonic strain path testing program investigates three stress states – uniaxial, plane-strain, and biaxial tension – in
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29

Evgeniya Burdilnaya, Oleksii Chornyi, Valerii Tytiuk та Serhiienko Serhii. "СИНТЕЗ ЗАКОНУ КЕРУВАННЯ ЕЛЕКТРОПРИВОДОМ ВЕНТИЛЯТОРА ЗЕРНОКИДАЧА ДЛЯ ФОКУСУВАННЯ ЗЕРНОВОГО ПОТОКУ". World Science, № 5(66) (20 квітня 2021). http://dx.doi.org/10.31435/rsglobal_ws/30052021/7584.

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The work considers the solution to the urgent problem of reloading grain into vehicles and reducing its damage. The possibility of throwing grain at a given range by creating an appropriate ballistic flight path by adjusting the speed of the electric drive of the belt when it is powered by a frequency converter is substantiated. The problem of reducing the focus of grain scattering by forming the flow of grain and controlling its movement not only when moving on the belt, but also after the separation of the flow and its movement in the air. Focusing of the lower layer is achieved by giving it
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30

Jia, Dongge, John C. Brigham, and Alessandro Fascetti. "An efficient static solver for the lattice discrete particle model." Computer-Aided Civil and Infrastructure Engineering, July 15, 2024. http://dx.doi.org/10.1111/mice.13306.

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AbstractThe lattice discrete particle model (LDPM) has been proven to be one of the most appealing computational tools to simulate fracture in quasi‐brittle materials. Despite tremendous advancements in the definition and implementation of the method, solution strategies are still limited to dynamic algorithms, resulting in prohibitive computational costs and challenges related to solution accuracy for quasi‐static conditions. This study presents a novel static solver for LDPM, introducing fundamental innovation: (1) LDPM constitutive laws are modified to provide continuous response through al
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31

Liu, Yin, Hongwu Zhang, and Yonggang Zheng. "A Micromechanically Based Constitutive Model for the Inelastic and Swelling Behaviors in Double Network Hydrogels." Journal of Applied Mechanics 83, no. 2 (2015). http://dx.doi.org/10.1115/1.4031897.

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This paper presents a micromechanically based constitutive model within the framework of the continuum mechanics to characterize the inelastic elastomeric and swelling behaviors of double network (DN) hydrogels, such as the stress-softening, necking instability, hardening, and stretch-induced anisotropy. The strain-energy density function of the material is decomposed into two independent contributions from the tight and brittle first network and the soft and loose second network, each of which is obtained by integrating the strain energy of one-dimensional (1D) polymer chains in each directio
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32

Roten, Daniel, Te-Yang Yeh, Kim B. Olsen, Steven M. Day, and Yifeng Cui. "Implementation of Iwan-Type Nonlinear Rheology in a 3D High-Order Staggered-Grid Finite-Difference Method." Bulletin of the Seismological Society of America, September 8, 2023. http://dx.doi.org/10.1785/0120230011.

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ABSTRACT We have implemented and verified a parallel-series Iwan-type nonlinear model in a 3D fourth-order staggered-grid velocity–stress finite-difference method. The Masing unloading and reloading behavior is simulated by tracking an overlay of concentric von Mises yield surfaces. Lamé parameters and failure stresses pertaining to each surface are calibrated to reproduce the stress–strain backbone curve, which is controlled by the reference strain assigned to a given depth level. The implementation is successfully verified against established codes for 1D and 2D SH-wave benchmarks. The capab
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33

Karabulut, H., M. Bouchon, M.-P. Bouin, A. Ö. Konca, J. Schmittbuhl, and S. E. Güvercin. "Slow and progressive deformation of the Narlı pull-apart basin prior to the 2023 Mw7.8 kahramanmaraş, Turkey earthquake." Geophysical Journal International, March 27, 2025. https://doi.org/10.1093/gji/ggaf108.

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Summary The ∼300km-long rupture of the February 6 2023 Kahramanmaraş earthquake began in the Narlı section of the Karasu trough, a pull-apart basin sandwiched and sheared between the two major strike-slip faults of the region, the East Anatolian Fault (EAF) on the west and the Dead Sea Fault (DSF) on the east. Rupture started where the northern segment of the DSF enters the Narlı Basin with Mw7.0 sub-event and propagated across the basin before making its junction with the EAF. In the seven months preceding the earthquake this basin was the seat of anomalous seismic activity. This activity occ
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34

Park, Jooyoung, Dongyoung Ko, and Seunghee Park. "Embeddable elasto-magnetic sensor-based residual tension estimation method of ground anchors for slope stability monitoring using irreversibility of magnetic permeability under various loading conditions." Structural Health Monitoring, June 9, 2025. https://doi.org/10.1177/14759217251330927.

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To ensure the safety of cut slopes and excavated surfaces, it is crucial to manage the residual tension in ground anchors. Most existing studies for tension estimation failed to fundamentally eliminate the influence of environmental factors (e.g., temperature), and the analysis of tension index according to the loading conditions was insufficient. This article introduces a modified approach for accurate estimation of the residual tension to settle the issues that arise when using elasto-magnetic (EM) sensors. The proposed method involves applying an initial prestressing force and subsequently
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35

Brill, Sina E., Ayse Maraslioglu, Catharina Kurz, et al. "Glycinergic Transmission in the Presence and Absence of Functional GlyT2: Lessons From the Auditory Brainstem." Frontiers in Synaptic Neuroscience 12 (February 9, 2021). http://dx.doi.org/10.3389/fnsyn.2020.560008.

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Synaptic transmission is controlled by re-uptake systems that reduce transmitter concentrations in the synaptic cleft and recycle the transmitter into presynaptic terminals. The re-uptake systems are thought to ensure cytosolic concentrations in the terminals that are sufficient for reloading empty synaptic vesicles (SVs). Genetic deletion of glycine transporter 2 (GlyT2) results in severely disrupted inhibitory neurotransmission and ultimately to death. Here we investigated the role of GlyT2 at inhibitory glycinergic synapses in the mammalian auditory brainstem. These synapses are tuned for r
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