1,721,065 research outputs found
Going Beyond Counting First Authors in Author Co-citation Analysis
The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation
counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings
are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that
only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into
account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed
Variations on the Author
“Variations on the Author” discusses two of Eduardo Coutinho’s recent films (Um Dia na Vida, from 2010, and Últimas Conversas, posthumously released in 2015) and their contribution to the general question of documentary authorship. The director’s filmography is characterized by a consistent yet self-effacing form of authorial self-inscription: Coutinho often features as an interviewer that rather than express opinions propels discourses; an interviewer that is good at listening. This mode of self-inscription characterizes him as an author who is not expressive but who is nonetheless markedly present on the screen. In Um Dia na Vida, however, Coutinho is completely absent form the image, while Últimas Conversas, on the contrary, includes a confessional prologue that moves the director from the margins to the center of his films. This article examines the ways in which these works stand out in the filmography of a director who offers new insights into the notion of cinematic authorship
Influence of ageing heating rates on the microstructure and mechanical properties of Ti-5553 alloy
The Ti-5553 alloy, a high-strength β-titanium alloy, is increasingly recognised for its exceptional mechanical properties, making it a preferred material for critical aerospace applications. This thesis examines the effects of varying ageing heating rates on the microstructure and mechanical properties of the forged Ti-5553 alloy, focusing on hardness, tensile properties, and fatigue performance. Following solution treatment at 810°C, the alloy was aged at 610°C with heating rates of 1°C/min, 5°C/min, 10°C/min, and 15°C/min. Detailed microstructural analysis was conducted using Scanning Electron Microscopy (SEM) and Energy Dispersive X ray Spectroscopy (EDX). The microstructural examination revealed that different ageing heating rates caused only minor variations in the alloy's bimodal microstructure. Slower ageing heating rates produced a relatively fine, homogeneously distributed primary α phase within the β grains, while faster rates resulted in a slightly coarser bimodal microstructure. Chemical homogeneity analysis confirmed a consistent distribution of critical elements, with α stabilisers concentrated in the primary α phase and β stabilisers in the β phase, ensuring stable phase compositions across all samples. The observed slight microstructural changes were reflected in the alloy's mechanical properties. Hardness across different ageing heating rates varied between 357.4 HV and 372.6 HV. The ultimate tensile strength (UTS) declined from 1307.2 MPa at 1°C/min to 1264.5 MPa at 15°C/min, while ductility improved from 15.6% to 17.1% over the same range. The alloy demonstrated good fatigue resistance at lower stress amplitudes and ageing heating rates, enduring over 10 million cycles at 337.5 MPa under the 1°C/min condition. However, fatigue life decreased with higher stress amplitudes and ageing heating rates, highlighting the alloy's sensitivity to more extreme conditions. In summary, while the varying ageing heating rates resulted in only minor changes to the microstructure, these alterations had some impact on the mechanical properties of the Ti-5553 alloy. These findings highlight the importance of precise microstructural control in optimising the alloy's performance, especially in applications where achieving a balance between strength, ductility, and fatigue resistance is crucial
Appropriate Similarity Measures for Author Cocitation Analysis
We provide a number of new insights into the methodological discussion about author cocitation analysis. We first argue that the use of the Pearson correlation for measuring the similarity between authors’ cocitation profiles is not very satisfactory. We then discuss what kind of similarity measures may be used as an alternative to the Pearson correlation. We consider three similarity measures in particular. One is the well-known cosine. The other two similarity measures have not been used before in the bibliometric literature. Finally, we show by means of an example that our findings have a high practical relevance.information science;Pearson correlation;cosine;similarity measure;author cocitation analysis
Analysis of fracture, fatigue, and metallurgical properties of dissimilar TIG & RFW Welds: S355J2/SS316L and Ti-64/Ti-1023
Weld joints comprising dissimilar metals with varying compositions are widely utilized across numerous contemporary industrial sectors such as aerospace, automotive manufacturing, shipbuilding, oil and gas, power generation, and medical device production. They offer cost efficiency, performance enhancement, weight reduction, design flexibility, and functionality. However, welding dissimilar metals with varying compositions poses complexity due to compositional gradient and differences in microstructure, leading to variations in properties across the joint. Gaining insight into the influence of parameters in welding on material properties for manufacturing defect-free welded joints is crucial. Nonetheless, there is a considerable gap in knowledge in understanding the relationship between welding parameters, microstructure, fracture toughness, and fatigue in dissimilar material joints.
This study focuses on investigating how parameters in welding influence the microstructure and fracture toughness of welds between two dissimilar materials i.e. structural steel (S355J2) and stainless steel (SS) (316L) using Rotary Friction Welding (RFW) and Tungsten Inert Gas (TIG) welding. Additionally, the study explores how parameters in welding affect the microstructure and fatigue characteristics of welds between two dissimilar titanium alloys i.e. Ti-6Al-4V (Ti-64) and Ti-10V-2Fe-3Al (Ti-1023) using RFW. To achieve the project objectives, dissimilar welding preforms of S355J2 and SS316L are meticulously prepared using corresponding pipe pup pieces and welded via RFW and TIG processes. A comprehensive series of tests are conducted, including microstructural analysis, tensile, hardness, and fracture toughness characteristics are accomplished using compact tension (CT) specimens extracted from various zones of both dissimilar weld joints. For titanium, dissimilar weld joints are fabricated using a round bar of Ti-64 and Ti-1023 via RFW, and tests, including microstructural analysis, tensile, hardness, and stress-controlled high cycle fatigue (HCF), are performed.
Results reveal significant microstructural variations in both dissimilar welding processes for the S355J2 and SS316L as well as the Ti-64 and Ti-1023 alloys. RFW joint between S355J2 and SS316L shows less instability in hardness across the weld with the highest hardness of 208 HV1 in the thermo-mechanically affected zone (TMAZ) of S355J2. Noticeable changes in hardness are observed across the TIG weld with 419 HV1 at the weld centre line (WCL) due to chromium carbide precipitation and 284 HV1 at the TIG heat affected zone (HAZ) of S355J2 is attributed to martensite formation. Both welds exhibit superior tensile characteristics, with the RFW weld displaying ultimate tensile strength (UTS) of 540 MPa and yield strength (YS) of 367 MPa, while the TIG weld shows UTS of 526 MPa and YS of 300 MPa. Tensile failures predominantly occur on the S355J2 side, exhibiting ductile features. Both welds show nearly identical fracture toughness (KQ) values, closely matching those of the parent metal, whereas, in terms of crack tip opening displacement (CTOD), RFW-WCL shows superior performance with 0.35 mm compared to TIG-WCL's 0.32 mm. Notably, the HAZ of S355J2 in the TIG weld exhibits the lowest CTOD of 0.31 mm. Fractography exhibits ductile failure, except for the TIG WCL, which displays cleavage fracture.
In the RFW joint between Ti-64 and Ti-1023, the highest hardness of 342 HV1 occurs at the WCL, gradually diminishing on either side of the weld, attributed to formation of hard microstructural phases and the growth of secondary alpha (αs) phases. The weld exhibits remarkable tensile properties, comparable with those of the parent metal, with a UTS of 826 MPa and an YS of 792 MPa. Tensile failures primarily manifest on the Ti-1023 side, demonstrating ductile characteristics. The HCF test, conducted at a frequency of 40 Hz with a R value of 0.1, reveals a fatigue strength of the weld at 550 MPa, surpassing that of the Ti-64 parent metal. In all HCF specimens, crack initiates at the surface, with those under higher stress exhibiting a narrow crack propagation area characterized by coarse fatigue striation marks indicative of dominant tensile overloading, while specimens under lower stress reveal a wider crack propagation area with quasi-cleavage facets and very fine fatigue striations.
Overall, the study findings establish that the RFW process yields a robust dissimilar weld joint between different materials S355J2 / SS316l and Ti-64 / Ti-1023
Dispelling the Myths Behind First-author Citation Counts
We conducted a full-scale evaluative citation analysis study of scholars in the XML research field to explore just how different from each other author rankings resulting from different citation counting methods actually are, and to demonstrate the capability of emerging data and tools on the Web in supporting more realistic citation counting methods. Our results contest some common arguments for the continued
use of first-author citation counts in the evaluation of scholars, such as high correlations between author rankings by first-author citation counts and other citation
counting methods, and high costs of using more realistic citation counting methods that are not well-supported by the ISI databases. It is argued that increasingly available digital full text research papers make it possible for citation analysis studies to go beyond what the ISI databases have directly supported and to employ more
sophisticated methods
3D-printed robotic gripper fingers with lattice structures for kiwifruit harvesting
With the growing demand for agricultural automation due to labour shortages and rising costs,
the robotics industry must develop effective and sustainable solutions. Soft robotics has
emerged as a transformative approach, offering flexibility and safety for handling delicate
objects. Advancements in 3D printing technology further enable innovative gripper designs
tailored for specific applications. This research focuses on developing 3D-printed soft robotic
gripper fingers for kiwifruit harvesting, aiming to overcome challenges such as fruit damage,
slippage, and inefficiencies in automated processes.
The study investigates enhancing the coefficient of friction through textured surfaces and
optimising bulk stiffness using lattice structures with varying wall thicknesses to maximise
contact area and grip stability. Using 3D printing, multiple testing samples were designed with
various textured surfaces and advanced lattice configurations, including gyroid, honeycomb,
and Schwarz primitive structures, to improve grasping performance while optimising stiffness.
Experimental results revealed that textured surfaces increased the coefficient of friction by 8–
10%, while gyroid infill patterns nearly doubled the contact surface area compared to rigid
designs, significantly improving grip stability and reducing pressure on the fruit. Rubber was
identified as the most effective material for soft gripper fingers, offering a high coefficient of
friction, flexibility, and the ability to conform to the irregular shapes of kiwifruit. Conversely,
silicone and nylon were less effective, with silicone providing inadequate friction and nylon
exhibiting rigidity that risked fruit damage. Among the tested lattice structures, gyroid patterns
demonstrated superior mechanical properties, outperforming other designs that exhibited
failure modes, such as buckling under compressive loads.
Overall, this research highlights the potential of 3D-printed soft robotic gripper fingers in
horticultural automation by integrating advanced materials, textures, and lattice structures to
improve performance. The findings provide critical insights into design principles for
developing durable, adaptable, and effective grippers for delicate agricultural applications.
While the results are promising, further research is required to address challenges such as
scalability, extensive field testing, and seamless integration with automated harvesting
systems
koamabayili/VECTRON-author-checklist: VECTRON author checklist
We have done our best to complete the author checklist relating to the use of animals in the hut study. Note that the objective for the hut study was to evaluate the IRS treatment applications for residual efficacy against Anopheles mosquitoes, including the local An. coluzzii mosquito population. Cows were only used to attract mosquitoes into the huts and no tests were carried out directly on the cows. The author checklist is intended for use with studies where experiments are carried out on animals, which is why we have had such difficulty in completing this for the hut study, as many of the questions do not relate to how the cows were used
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