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Journal articles on the topic 'Al-6061-T'

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1

Goel, M. D., N. S. Choudhary, and Sandeep Panchal. "Comparative Analysis of Aluminum Alloy 6061-T6 and Mild Steel Tubes in Sacrificial Protection System under Blast Loading." Proceedings of the 12th Structural Engineering Convention, SEC 2022: Themes 1-2 1, no. 1 (2022): 1299–304. http://dx.doi.org/10.38208/acp.v1.654.

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A sacrificial cladding consist of hollow metal tubes and steel sheet, is proposed in this study to protect a square concrete panel subjected to blast loading. Herein, comparative analysis of aluminum alloy 6061-T6 (Al 6061-T6) and mild steel tubes in sacrificial cladding is done using 3-D non-linear Finite Element (FE) software ABAQUS/Explicit®. Blast load is applied through ConWep program developed by US Army. Simplified Concrete Damage Plasticity (SCDP) model is used to define the material behavior of concrete slabs of thickness 250 mm. Johnson-Cook (J-C) plasticity model is used to model th
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2

Nayak, J., and K. R. Hebbar. "Corrosion inhibition of T-6 treated 6061 Al-SiC(p) composite in hydrochloric acid." Transactions of the Indian Institute of Metals 61, no. 2-3 (2008): 221–24. http://dx.doi.org/10.1007/s12666-008-0006-5.

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3

Zheng, M., J. Hu, H. P. Teng, and Y. Zhao. "On the evaluation of plastic buckling of pipeline bending." International Review of Applied Sciences and Engineering 8, no. 1 (2017): 25–35. http://dx.doi.org/10.1556/1848.2017.8.1.5.

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In the present paper, various formulae for evaluating critical buckling strain of bending pipeline are analyzed on basis of its actual nature, available test data or finite element calculation results. The available test data is from different resources, it provides a more objective comparison; Especially, the experimental bending buckling data of Corona et al. and Kyriakides et al. for Al-6061-T6 aluminum pipes with various D/t value, as well as the prediction of Minnaar’s FEM regressive formula for high grade steel pipe are reanalyzed to check the reasonability of the plastically elliptical
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4

Santana, Carlos, Luis Reyes-Osorio, Jesus Orona-Hinojos, Lizbeth Huerta, Alfredo Rios, and Patricia Zambrano-Robledo. "Numerical Study of Reinforced Aluminum Composites for Steering Knuckles in Last-Mile Electric Vehicles." World Electric Vehicle Journal 15, no. 3 (2024): 109. http://dx.doi.org/10.3390/wevj15030109.

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The steering knuckle is a critical component of the suspension and steering drive systems of electric vehicles. The electrification of last-mile vehicles presents a challenge in terms of cost, driving range and compensation of battery weight. This work presents a numerical methodology to evaluate 60XX series aluminum metal matrix composites (AMMCs) with reinforcement ceramic particles for steering knuckle components in medium heavy-duty last-mile cargo vehicles. The use of AMMCs provides lightweight knuckles with sufficient strength, stiffness and safety conditions for electrical vehicle cargo
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5

El-Axir, M. H., M. M. Elkhabeery, and M. M. Okasha. "Modeling and Parameter Optimization for Surface Roughness and Residual Stress in Dry Turning Process." Modeling and Parameter Optimization for Surface Roughness and Residual Stress in Dry Turning Process 7, no. 5 (2017): 2047–55. https://doi.org/10.5281/zenodo.1037236.

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The influence of some turning variables and tool overhang on surface roughness parameters and residual stress induced due to machining 6061-T6 aluminum alloy is investigated in this paper. Four input parameters (cutting speed, feed rate, depth of cut and tool overhang) are considered. Tests are carried out by precision turning operation on a lathe. Design of experiment techniques, i.e. response surface methodology (RSM) and Taguchi's technique have been used to accomplish the objective of the experimental study. Surface roughness parameters are measured using a portable surface roughness devic
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6

Li, Heng, He Yang, Yu Li Tian, and Kai Peng Shi. "Experimental Study on Bendability of Thin-Walled 6061-T4 Tube under Different Bending Velocities." Applied Mechanics and Materials 184-185 (June 2012): 196–200. http://dx.doi.org/10.4028/www.scientific.net/amm.184-185.196.

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The larger bending velocity is needed in practice to improve efficiency of tube bending, however, whether it has undesired effects on bending behavior has not been identified and clarified. In this study, taking thin-walled 6061-T4 Al-alloy tube of Φ50.8×0.889×101.6mm (out diameter D×wall thickness t×bending radius R) as the objective, the physical experiments are carried out to explore the influence rules of the bending velocity on tube bending in terms of major defects such as wall thinning, wrinkling and springback. The results show that: 1) both higher and lower bending velocities result i
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7

ŁUKASZEWICZ, Andrzej, Jerzy JÓZWIK, and Kamil CYBUL. "IMPACT OF FRICTION COEFFICIENT VARIATION ON TEMPERATURE FIELD IN ROTARY FRICTION WELDING OF METALS – FEM STUDY." Applied Computer Science 19, no. 3 (2023): 17–27. http://dx.doi.org/10.35784/acs-2023-22.

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A mathematical model is presented for investigating the temperature field caused by the rotary friction welding of dissimilar metals. For this purpose, an axisymmetric, nonlinear, boundary value problem of heat conduction is formulated with allowance for the frictional heating of two cylindrical specimens of finite length made of Al 6061 aluminium alloy and 304 stainless steel. The thermo-physical properties of materials change with increasing temperature. It was assumed that the coefficient of friction does not depend on the temperature. The mechanism of heat generation due to friction on the
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8

Prabowo, Aditya Rio, Toeri Fathuddin Yusuf, Prayoga Wira Adie, et al. "Engineered novel-mechanical design and performance assessment of stiffened plates against ballistic loading." Structural Integrity and Life 25, no. 1 (2025): 89–98. https://doi.org/10.69644/ivk-2025-01-0089.

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This study shows a numerical analysis of the ballistic characteristic of a bullet on a targeted stiffened plate. The numerical analysis compares the structural strength of the target plate with stiffener variations of I, L, T, Y, and X types with various material variations of Al 6061-T651, Al 6082-T6, Weldox 460E, and Armox 500T. Numerical simulations are performed at a squared stiffened target plate at projectile impact velocity of 341-863 m/s using ABAQUS/ Explicit® with the Johnson-Cook material model. The initial validation is successfully achieved by comparing the residual velocity value
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9

Zhang, Lu, Xuefeng Wang, Shaowei Lu, Xinhua Liu, Binbin Zhang, and Xiaoqiang Wang. "Monitoring the damage evolution of Al 6061-T6 laser welded T-joint structure using nano-carbon tube based buckypaper film sensor." Diamond and Related Materials 146 (June 2024): 111217. http://dx.doi.org/10.1016/j.diamond.2024.111217.

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10

Anand Babu, K., and P. Venkataramaiah. "Multi-response Optimization in Wire Electrical Discharge Machining (WEDM) of Al6061/SiCp Composite Using Hybrid Approach." Journal for Manufacturing Science and Production 15, no. 4 (2015): 327–38. http://dx.doi.org/10.1515/jmsp-2015-0010.

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AbstractIn recent days, the silicon carbide particulate reinforced aluminium metal matrix composites are most promising material in various engineering applications due to their strength to weight ratio, wear resistance and thermal resistance over the non-reinforced alloys. However, these materials are very difficult to cut by conventional machining methods due to the presence of silicon carbide particles. To overcome this limitation, the wire electrical discharge machining (WEDM) is employed to machine these composites. The aim of this study is to optimize the process parameters in wire elect
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11

Henkel, Sebastian, Carl Wolf, Horst Biermann, Andreas Burgold, and Meinhard Kuna. "Cruciform specimens used for determination of the influence of T-stress on fatigue crack growth with overloads on aluminum alloy Al 6061 T651." Frattura ed Integrità Strutturale 13, no. 48 (2019): 135–43. http://dx.doi.org/10.3221/igf-esis.48.16.

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12

Shao, Qing, Fuxing Tan, Kai Li, Tatsuo Yoshino, and Guikai Guo. "Multi-Objective Optimization of MIG Welding and Preheat Parameters for 6061-T6 Al Alloy T-Joints Using Artificial Neural Networks Based on FEM." Coatings 11, no. 8 (2021): 998. http://dx.doi.org/10.3390/coatings11080998.

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To control the welding residual stress and deformation of metal inert gas (MIG) welding, the influence of welding process parameters and preheat parameters (welding speed, heat input, preheat temperature, and preheat area) is discussed, and a prediction model is established to select the optimal combination of process parameters. Thermomechanical numerical analysis was performed to obtain the residual welding deformation and stress according to a 100 × 150 × 50 × 4 mm aluminum alloy 6061-T6 T-joint. Owing to the complexity of the welding process, an optimal Latin hypercube sampling (OLHS) meth
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13

Khan, Akhtar S., Amit Pandey, and Thomas Stoughton. "Evolution of subsequent yield surfaces and elastic constants with finite plastic deformation. Part III: Yield surface in tension–tension stress space (Al 6061–T 6511 and annealed 1100 Al)." International Journal of Plasticity 26, no. 10 (2010): 1432–41. http://dx.doi.org/10.1016/j.ijplas.2009.07.007.

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14

Li, Heng, Kai Peng Shi, He Yang, and Yu Li Tian. "Significance Analysis of Processing Parameters on Wall Thinning in Tube Bending." Advanced Materials Research 622-623 (December 2012): 437–41. http://dx.doi.org/10.4028/www.scientific.net/amr.622-623.437.

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Tube bending is a complex process with multi-factor coupling effect and multiple defects occurring. The wall thinning, as one of the important defects in tube bending, determines the bending quality. In this study, taking thin-walled 6061-T4 Al-alloy tube with Φ50.8×t0.889×R101.6mm (outer diameter D × wall thickness t × bending radius R) as the objective, the significance of processing parameters on the wall thinning degree is studied using the orthogonal test under ABAQUS/Explicit platform. The results show that: 1) the bending radius, the clearance between the tube and the pressure die, the
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15

Siddiqui, Humera Khatoon, Aamir Iqbal Waidha, Sabine Kanbach та ін. "Influence of Fe Content in the Bifunctional Activity of LaFexCo1-XO3-δ Perovskite Catalysts for Zinc Air Batteries and Reversible Fuel Cells". ECS Meeting Abstracts MA2022-02, № 54 (2022): 2033. http://dx.doi.org/10.1149/ma2022-02542033mtgabs.

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Eco-friendly energy-storage systems are needed to lower the fossil-fuel dependence and environmental contamination. Among energy storage technologies, metal air batteries offer a good and cheap perspective for the energy supply in small devices. However, its efficiency is low due to the slow kinetics of key reactions namely oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). The same reactions occur in a reversible fuel cell. Perovskites have emerged as a promising candidate for alkaline condition due to the diversity in crystal structure, possibility of tuning electronic prop
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16

Tu, Chaohui, Xuanyu Chen, Cancan Liu, and Deye Li. "Plasma Electrolytic Oxidation Coatings of a 6061 Al Alloy in an Electrolyte with the Addition of K2ZrF6." Materials 16, no. 11 (2023): 4142. http://dx.doi.org/10.3390/ma16114142.

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In this study, white thermal control coatings were produced on a 6061 Al alloy using plasma electrolytic oxidation (PEO). The coatings were mainly formed by incorporating K2ZrF6. The phase composition, microstructure, thickness, and roughness of the coatings were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), a surface roughness tester, and an eddy current thickness meter, respectively. The solar absorbance and infrared emissivity of the PEO coatings were measured using a UV–Vis–NIR spectrophotometer and FTIR spectrometer, respectively. The addition of K2ZrF6
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17

"DIRECT FORGE 6069." Alloy Digest 50, no. 7 (2001). http://dx.doi.org/10.31399/asm.ad.al0374.

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Abstract Direct Forge 6069 is a Mg-Si-Cu age-hardenable aluminum alloy. Tensile strength in the T-6 condition is approximately 40% higher than that of 6061 alloy with similar corrosion resistance. Applications include light wall bicycle frames and seamless gas cylinders. This datasheet provides information on composition, physical properties, and tensile properties as well as fracture toughness and fatigue. It also includes information on corrosion resistance as well as heat treating and joining. Filing Code: AL-374. Producer or source: Northwest Aluminum Company.
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18

Wolfenden, Alan, and Jeffrey M. Wolla. "Mechanical Damping and Dynamic Modulus Measurements in Continuous Fiber-Reinforced Composite Materials: Al/Al2O3 and Al/W." MRS Proceedings 153 (1989). http://dx.doi.org/10.1557/proc-153-409.

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AbstractMeasurements of mechanical damping, or internal friction (Q−1), and dynamic Young's modulus (E) have been made near 80 kHz and at strain amplitudes (ε) in the range of 10−8 to 10−4 on small specimens of the following two continuous fiber-reinforced metal matrix composites (MMCs): 6061 aluminum reinforced with alumina (Al/A12O3) and 6061 aluminum reinforced with tungsten (AI/W). Baseline experiments were also performed on 99.999% aluminum (pure Al) for comparison puposes. The temperature (T) dependence of modulus up to 475°C was determined for AI/A12O3 and pure Al. The rate of modulus d
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19

Maulana, Muhammad Irfan, and Akhmad Hafizh Ainur Rasyid. "SIMULASI PARAMETER PENGELASAN GESEK ROTARI PADA AL ALLOY 6061 T-6 DAN AISI 1018 DENGAN FINITE ELEMENT METHOD (FEM)." Otopro, May 11, 2022, 38–47. http://dx.doi.org/10.26740/otopro.v17n2.p38-47.

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Rotary Friction Welding is a welding process that is carried out to connect metal materials in the form of a cylinderby means of friction against the two materials to be joined by applying pressure. Therefore, researchers are interested in conducting simulations based on the finite element method with FEM software to solve the problem. The purpose of the simulation is to analyze the results of rotational speed, axial pressure, forging pressure and welding time. Parameters were analyzed for stress-strain values, temperature distribution and displacement visualized through contours. The paramete
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20

Asta, Eduardo Pablo, Francisco Adrián Cambiasso, Juan Carlos Ríos, Juan José Balderrama, and Enrique Chomik. "Determinación de la tenacidad a la fractura J en laminados fibra-metal del tipo CARALL con láminas de aluminio 6061 y 1050." Matéria (Rio de Janeiro) 23, no. 2 (2018). http://dx.doi.org/10.1590/s1517-707620180002.0427.

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RESUMEN La determinación de la tenacidad a la fractura en materiales compuestos híbridos y laminados fibra-metal - FML (Fiber Metal Laminates) - resulta muy importante para poder realizar un análisis de integridad estructural que permita estimar la tolerancia al daño y la resistencia remanente del material frente a la propagación de una fisura. Dicha evaluación debe realizarse tanto en estructuras aeronáuticas como navales que utilizan compuestos FML del tipo CARALL (CArbonReinforcedAluminumLaminates). En este trabajo se presenta la determinación experimental de la tenacidad a la fractura en t
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21

Naguib, M. E., S. I. Gad, M. Megahed, and M. A. Agwa. "Insights into particle dispersion and damage mechanisms in functionally graded metal matrix composites with random microstructure-based finite element model." Scientific Reports 14, no. 1 (2024). http://dx.doi.org/10.1038/s41598-024-70247-3.

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AbstractThis study investigates the impact of $$\mathrm {Al_2O_3}$$ Al 2 O 3 particle volume fraction and distribution on the deformation and damage of particle-reinforced metal matrix composites, particularly in the context of functionally graded metal matrix composites. In this study, a two-dimensional nonlinear random microstructure-based finite element modeling approach implemented in ABAQUS/Explicit with a Python-generated script to analyze the deformation and damage mechanisms in $$\mathrm{AA6061\mbox{-}T6/Al_2O_{3}}$$ AA 6061 - T 6 / Al 2 O 3 composites. The plastic deformation and duct
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22

Asta, Eduardo, Francisco Cambiasso, Juan Balderrama, and Juan Ríos. "Determinación y análisis de la tenacidad a la fractura en materiales compuestos laminados fibra-metal." Matéria (Rio de Janeiro) 25, no. 3 (2020). http://dx.doi.org/10.1590/s1517-707620200003.1133.

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RESUMEN La determinación de la tenacidad a la fractura en materiales compuestos híbridos, laminados fibra-metal, FML (Fiber Metal Laminates) resulta muy importante para poder realizar un análisis de integridad estructural que permita estimar la tolerancia al daño y la resistencia remanente del material frente a la propagación de una fisura. Dicha evaluación debe realizarse tanto en estructuras aeronáuticas como navales que utilizan compuestos FML del tipo CARALL (CArbon Reinforced Aluminum Laminates). En este trabajo se presenta la determinación experimental de la tenacidad a la fractura en té
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23

"Parametric Optimization of EDM Process for Hybrid Metal Matrix using GRA Method." International Journal of Recent Technology and Engineering 8, no. 3 (2019): 5844–48. http://dx.doi.org/10.35940/ijrte.c5353.098319.

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Metal matrix composites (MMC’s) have evolved an extreme attention in current era for their superior applications in aerospace, defence and automobile industries. Metal matrix composites are found as current materials, possessing the characteristics of light in weight, greater wear resistance & superior specific strength. Due to presents of high hardened reinforcement strength, composite materials are very difficult to do machining by traditional techniques. Therefore unconventional machining like Electrical Discharge Machining becomes feasible method to these kinds of composite materials.
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24

Özdemir, Cihat, Barış Özlü, and Halil Demir. "Al 6061-T6 Alaşımının Delinmesinde Proses Parametrelerinin ve Matkap Geometrisinin Performans Analizi." Journal of Polytechnic, September 26, 2024. http://dx.doi.org/10.2339/politeknik.1535204.

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Bu çalışmada, AA 6061-T6 alaşımının farklı kesme parametreleri ve farklı matkap helis açıları ile delinmesine odaklanılmıştır. Delme performansı ortaya çıkan yüzey pürüzlülüğü (Ra), kesme sıcaklığı (T) ve enerji tüketimi (ET) açısından değerlendirilmiştir. Delme deney tasarımı Taguchi yönteminin L27 ortogonal dizisi kullanılarak hazırlanmıştır. Kesme parametreleri ve matkap helis açıları Ra, T ve ET değerleri kullanılarak optimize edilmiştir. Deney sonuçları ilk olarak üç boyutlu grafikler ile değerlendirilmiştir. Elde edilen veriler sinyal/gürültü oranı (S/N), varyans analizi (ANOVA) ve regre
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