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8篇 您的检索式:作者名="Emmanuel Lima"
    题名 作者 年代 出处 被引量
1Effect of Moringa oleifera lectins on survival and enzyme activities of Aedes aegypti larvae susceptible and resistant to organophosphate显示文摘Afonso Cordeiro Agra-Neto Thiago Henrique Napole?o Emmanuel Viana Pontual Nataly Diniz Lima Santos Luciana Andrade Luz Cláudia Maria Fontes Oliveira Maria Alice Varjal Melo-Santos Luana Cassandra Breitenbach Barroso Coelho Daniela Maria Amaral Ferraz Nava 2014Parasitology Research2014,,1:1
2Study of Reinforcement Distribution,Adhesion between Layers,and Porosity Induced by FDM显示文摘This study aims to understand the distribution of reinforcement material in the matrix,evaluate the adherence between layers,and determine the air gap between printing roads.We printed the specimen with two different composite materials,Polylactic Acid(PLA)reinforced with acrylic particles,and another filament reinforced with short carbon fibers.For the observations of the samples,we used a Confocal Microscope.We estimated the porosity of the material by comparing the expected mass with that achieved after manufacture.By pixel count,after binarization,we found the average percentage of acrylate particulate.They showed fair distribution through the PLA matrix even after the manufacturing process.The determination of fibers alignment was made by binarization of image,together with k-means and edge detection.This combination of methods allows estimating the fiber alignment by orientation straight lines.The manufacturing process did not offer good alignment of the fibers,even with the filament initially well aligned.Arthur Wernke Rafael dos Santos Leonardo Santos Manuel Barcelos Jr Emmanuel Lima 2021材料科学与工程(中英文A版)2021,11,2:1
3Rock Cutting Analysis Employing Finite and Discrete Element Methods显示文摘Carla Massignani Carrapatoso Carlos Emmanuel Ribeiro Lautenschlager Guilherme Lima Righetto Sergio Augusto Barreto da Fontoura and Nelson Inoue 2016Journal of Mechanics Engineering and Automation2016,6,2:0
4Influence of the Deep Cryogenic Treatment at the Stabilization of Martensitic Transformation Temperatures at the Smart Material Alloy Cu-14Al-4Ni显示文摘DCT(deep cryogenic treatment)is commonly used in industry to improve the wear resistance characteristics of steels,especially.However,there are just a few researches about the effects on non-ferrous metals.The purpose of this work was to investigate how DCT affects the properties of Cu-14Al-4Ni alloy treated at different soak time and submitted to thermomechanical cycling.A comparative experimental analysis was performed of the thermal properties of alloys obtained on a vacuum furnace,treated by DCT and thermomechanically cyclized.The results indicates that thermomechanical cycling promoted the appearance and growth of the martensitic phaseγ'1,less ductile than the martensitic phaseβ'1,which together with the induced hardening produced an increase in transformation temperatures and microhardness.The higher the number of cycles,the greater these effects.The DCT promoted an increase in the intensity of the diffraction peaks corresponding to the phaseβ'1 and the maintenance of them during the thermomechanical cycling of the material,which indicates that the DCT stabilizes the martensitic phaseβ'1 and,consequently,caused a reduction and stabilization of the martensitic transformation temperatures and the microhardness,when compared to the untreated material.The longer the soaking time of DCT,the greater these effects.Emmanuel Pacheco Rocha Lima Marcelo Nava Pedro Cunha de Lima 2020材料科学与工程(中英文A版)2020,10,2:0
5Comparisson of Recrystallization Kinetics and Grain Growth in Polycrystalline Shape Memory Alloys显示文摘The non-ferrous SMAs(shape memory alloys)have,normally,two problems that hinder the use in industrial scale:the natural aging and grain growth.The first degrades the memory effect,while the second,observed during the alloy’s mechanical processing,modifies the phase transformation temperatures.Thus,the study of recrystallization kinetics is important for enabling the control of hardened state as a function of treatment time without allowing the exaggerated grain growth.The objective of this study is to determine the recrystallization kinetics in different SMAs(Cu-14Al-4Ni,Cu-12Al-0.5Be and Ni-42Ti),based on an empirical law of J-M-A(Johnson-Mehl-Avrami),as well as their activation energies for grain growth process according to the empirical Arrhenius law.Quantitative evaluations of the grain growth kinetics over a wide range of indicated DSC(differential scanning calorimetry)temperatures have been performed.The results show that the alloy less susceptible to aging in temperatures below the recrystallization peak is the Ni-42Ti,because it presented the highest activation energy,followed by the Cu-14Al-4Ni.The equations that describe the recrystallization kinetics follow the empirical law of J-M-A.The recrystallization kinetics accompanied by hardness variation was an important tool,working as an advisor for selection of treatment time as a function of temperature.Marcelo Nava Emmanuel Pacheco Rocha Lima Pedro Cunha de Lima 2020材料科学与工程(中英文A版)2020,10,2:0
6Enriched Artemia Nauplii with Commercial Probiotic in the Larviculture of Angelfish Pterophyllum scalare Lichtenstein (1823)显示文摘This study evaluated the effect of enriched artemia nauplii with commercial probiotic for angelfish larvae determining growth perfomance,survival and modulation of the intestinal microbiota.Therefore,it experiment occurred in completely randomized design with five treatments(T1-0.0,T2-1.5,T3-3.0,T4-4.5 and T5-6.0g of commercial probiotic)and four replaces during 20 days.After larvaculture,post larvae passed by biometric procedures to determine productive performance and then microbiological analysis.Occurred reduction of total heterotrophic bacteria while increased lactic acid bacteria in the intestinal tract from the post larvae for treatments T3,T4 and T5.The commercial probiotic also increased the survival and performance as final weight,weight gain and specific growth rate.For these reasons,the use of 3g of commercial probiotic promotes greater performance and intestinal modulation for angelfish larvae.Natalino da Costa Sousa José Araújo da Silva Emilly Monteiro Lopes Arthur Felipe Lima dos Santos Francisco Alex Lima Barros Carlos Alberto Martins Cordeiro Peterson Emmanuel Guimarães Paixão Estela dos Santos Medeiros João Carlos Nunes de Souza Márcia Valéria Silva do Couto 2020Journal of Fisheries Science2020,2,1:0
7Effect of Titanium on the Martensitic Transformation Temperature of Cu-14Al-4Ni Shape Memory Alloy Rapidly Solidified显示文摘The present research aimed to analyze the influence that different contents of titanium(x=0.5,0.6 and 0.7 wt.%)have on the martensitic transformation temperature of a Cu-14Al-4Ni(wt.%)SMA(shape memory alloy).The Cu-14Al-4Ni-xTi samples were casted in an arc-melting furnace and rapidly solidified.All samples underwent heat treatment in a tubular furnace at a temperature of 1,100°C for 30 min and water quenched at 25°C.Subsequently,samples were analyzed by SEM(scanning electron microscopy)with EDS(energy dispersive spectroscopy),XRD(X-ray diffraction)and DSC(differential scanning calorimeter).SEM images and XRD patterns showed that the presence of titanium modified the alloy’s microstructure,induced the formation of three titanium rich phases called“X”phase(CuNi2Ti,Cu3Ti and AlCu2Ti)and reduced the presence of the brittle phaseγ2(Cu9Al4)for samples with 0.6 and 0.7 wt.%Ti.The titanium added to the copper based SMA also functioned as a refiner,reducing GS(grain size)up to approximately 80%with the increase of Ti content.DSC results exhibited low enthalpy levels,hysteresis,as well as low start martensitic transformation temperatures.Nicole Araujo Marília Bortolotto Marlon Silva Marcelo Nava Pedro Lima Emmanuel Lima 2020材料科学与工程(中英文A版)2020,10,3:0
8Influence of Cu9Al4 Phase on Nanomechanical Behavior of Cu-14Al-4Ni-xTi Shape Memory Alloy Rapidly Solidified显示文摘This paper aims to verify the Cu9Al4 phase influence on the nanomechanical behavior of the Cu-14Al-4Ni-xTi alloy obtained by rapid solidification with addition of different amounts of Ti.Using the Scanning Electron Microscopy(SEM),Atomic Force Microscopy(AFM),Energy Dispersion Spectroscopy(EDS)and X-Ray Diffraction(XRD),it was possible to perform the samples’microstructural characterization.In addition,the reduction of the Cu9Al4 phase precipitation and the X-phase appearance were verified according to the increase of the titanium percentage added.The nanomechanical behavior was evaluated by nanoindentation tests,which showed a significant decrease of the elastic modules and an increase of the Poisson coefficient’s according to the titanium amount.This research establishes that the reduction of Cu9Al4 phase implies on the increase of the capacity to dissipate energy.Therefore,the high damping capacity combined with the X-phase presence increases the super elasticity and the alloy ductility.Marlon Silva Igor Santos Marília Bortolotto Nicole Araújo Pedro Lima Marcelo Nava Emmanuel Lima 2020材料科学与工程(中英文A版)2020,10,3:0
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