Tag Archives: Alloying elements

Fig. 1.Some automotive components made of Mg alloy and obtained weight reduction[14]

A Review on Corrosion behaviour of Mn added Magnesium and its alloys

This article introduces the paper [‘A Review on Corrosion behaviour of Mn added Magnesium and its alloys’] published by [‘International Advanced Research Journal in Science, Engineering and Technology’]. 1. Overview: 2. Abstracts or Introduction This research review elucidates the corrosion behavior of Manganese (Mn) added Magnesium (Mg) and its alloys. Magnesium, the lightest of all

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Figure 3: Effect of Zn content on the yield strength of crossover alloys. Plots in (a) after stabilization (250°C/1 h) [109]; (b) after solutionizing and natural aging for 60 days, where onset of serrated flow is shifted to higher strain levels [114]; (c) engineering stress-strain curves after solution annealing (430°C/10 min) and quenching; (d) engineering stress-strain curves after aging for 24 h at 120°C [117]. (Reprinted from [109,114,117] with permission from Elsevier and Trans Tech Publications, Ltd.)

On the potential of aluminum crossover alloys

This article introduces the paper [‘On the potential of aluminum crossover alloys’] published by [‘Elsevier’]. 1. Overview: 2. Abstracts or Introduction The abstract of the paper states: “For almost a century commercial aluminum alloys were developed and optimized for high performance in a specific and narrow range of application, which commonly coincides with their industrial

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Fig. 1 Relationships among commonly used alloys in the 2xxx series (Al-Cu)

Aluminum and Aluminum Alloys

This article introduces the paper ‘Aluminum and Aluminum Alloys’ published by ‘ASM International’. 1. Overview: 2. Abstracts or Introduction The article “Aluminum and Aluminum Alloys” provides an introduction and overview of aluminum and its alloys, highlighting their general characteristics and versatile applications. Aluminum and its alloys are presented as highly versatile, economical, and attractive metallic

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Figure 3.2.1.3 Room temperature tensile properties of H-13 steel in relation to hardness and Charpy V-notch impact energy (Ref. 44)

Aerospace and High Performance Alloys Database Ferrous • FeUH H-13

This article introduces the paper “Aerospace and High Performance Alloys Database Ferrous • FeUH H-13 August 2008” published by “CINDAS LLC”. 1. Overview: 2. Abstracts or Introduction 1.0 General This medium alloy, martensitic, air hardening, Ultrahigh-strength steel is similar to H-11 and H 11 Mod in composition, heat treatment, and many properties. The steels H-11,

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Figure 2. Base alloy- 17hrs of aging.

Effect of Cr Addition on Mechanical Properties and Wear Rate of Cast Al-Cu Alloy

This article introduces the paper[‘Effect of Cr Addition on Mechanical Properties and Wear Rate of Cast Al-Cu Alloy’] published by [‘Indian Journal of Science and Technology’]. 1. Overview: 2. Abstracts or Introduction This paper investigates the effect of Chromium (Cr) addition on the hardness, tensile properties, and wear behavior of Aluminum-4.5%Copper (Al-4.5Cu) alloy A206. The

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Figure 2: SEM micrographs of the PM AM50 alloy in: (a) skin region, and (b) central region, and the PM AC51 alloy in: (c) central region and the PM AC52 alloy in: (d) central region

Development of creep-resistant magnesium casting alloys for high temperature automotive applications

This article introduces the paper [‘Development of creep-resistant magnesium casting alloys for high temperature automotive applications’] presented at the [‘WIT Transactions on The Built Environment, Vol 97, 2008 WIT Press’] 1. Overview: 2. Research Background: Background of the Research Topic: Magnesium alloys, owing to their low specific gravity, are highly desirable in automotive and aerospace

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Fig.1: Sequence for Anodizing Process.

A Review on Anodizing Process of Aluminum and Non-Aluminium Alloys

This article introduces the paper ‘A Review on Anodizing Process of Aluminum and Non-Aluminium Alloys’ published by ‘ResearchGate’. 1. Overview: 2. Abstracts or Introduction This paper provides a comprehensive review of the anodizing process applied to aluminum and non-aluminum alloys, a critical surface treatment for enhancing corrosion resistance in industrial applications. Anodizing, achieved by making

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Fig. 1 – Position of the spoke and the rim zone in the wheels analysed.

Impact behaviour of A356 alloy for low-pressure die casting automotive wheels

This article introduces the paper [‘Impact behaviour of A356 alloy for low-pressure die casting automotive wheels’] published by [‘Journal of Materials Processing Technology’]. 1. Overview: 2. Abstracts or Introduction Instrumented impact strength tests have been carried out on KV sub-size Charpy samples drawn from A356 aluminium alloy 17-in. wheels, produced by a low-pressure die casting.

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Figure 2. Use of magnesium-based materials in the automotive industry. Reproduced with permission from Sankaranarayanan, S. and M. Gupta (2021). “Emergence of god’s favorite metallic element: Magnesium based materials for engineering and biomedical applications.”; published by Elsevier, 2021 [54].

Applications of Magnesium and Its Alloys: A Review

This article introduces the paper [‘Applications of Magnesium and Its Alloys: A Review’] published by [‘Applied Sciences’]. 1. Overview: 2. Abstracts or Introduction Magnesium is highlighted as a promising material in this review, owing to its unique combination of mechanical and biomedical properties that render it suitable for a broad spectrum of applications. The abstract

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Figure 9. Baseline part and demonstration part geometry (reproduced with permission from Reference [279]; copyright © 2024, The Minerals, Metals & Materials Society).

Current Trends in Metallic Materials for Body Panels and Structural Members Used in the Automotive Industry 2024

This article introduces the paper ‘Current Trends in Metallic Materials for Body Panels and Structural Members Used in the Automotive Industry’ published by ‘MDPI’. 1. Overview: 2. Abstracts or Introduction Abstract: The development of lightweight and durable materials for car body panels and load-bearing elements in the automotive industry results from the constant desire to

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